SYSTEM AND COMPONENTS FOR SAFELY ENCLOSING HANDRAILS, STAIRWAYS, WALKWAYS AND PLATFORMS
Safety barriers such as guardrails, handrails, walkways, and platforms are found in a large variety of industrial commercial, residential and public sites typically consist of an open framework of horizontal, vertical or inclined pipes. However in some cases such open systems do not provide a sufficient barrier to prevent dropped objects such as tools from escaping the confines of the handrail system and creating a hazard. To address this deficiency a system for enclosing a safety barrier has been developed which includes a specially adapted bracket for attachment to posts such as stanchions, hand rails or knee rails and a guard panel which is attached to the bracket and is used to enclose the side walls of the safety barrier to reduce the dropped object hazard. The bracket has an open clipping configuration to allow it to clipped onto the stanchions (or other supports) and left in place. There bracket can then moved into a closed configuration and clamped in place, after which a guard panel can be mounted onto the bracket. The bracket has a number of safety advantages. Firstly as the bracket can be clipped in place the installer can safely work from within the confines of the walkway. Secondly once the bracket is clipped in place, the installer is free to let go of the bracket and can pick up other tools or perform other tasks, and is not required to continue to hold the bracket until it is clamped in place (and risk dropping either the bracket or tools). The system additionally comprises step guards for enclosing the vertical gap (rise) between steps, and floor brackets and flooring sheet for covering grid mesh floors.
The present application claims priority from Australian Provisional Patent Application No 2010905499 entitled “SYSTEM AND COMPONENTS FOR SAFELY ENCLOSING HANDRAILS, STAIRWAYS, WALKWAYS AND PLATFORMS” filed on 15 Dec. 2010, and Australian Innovation Patent No 2011100489 entitled SYSTEM AND COMPONENTS FOR SAFELY ENCLOSING HANDRAILS, STAIRWAYS, WALKWAYS AND PLATFORMS filed on 29 Apr. 2011, the entire contents of which are hereby incorporated by reference.
TECHNICAL FIELDThe present invention relates to safety barriers. In a particular form the present invention relates systems and components for safely enclosing substantially open barriers such as handrails, stairways walkways, and platforms.
BACKGROUNDSafety barriers such as guardrails, handrails, walkways, and platforms are found in a large variety of industrial commercial, residential and public sites. They are typically located at the edge of walkways, stairs, or platforms where they are used to prevent falls, limit access to potentially unsafe or dangerous areas, and/or to provide support or protection in uneven or potentially slippery ground.
In particular Australian Standard AS1657-1192 relates to the design, construction, and installation of fixed platforms, walkways, stairways, and ladders which are intended to provide means of safe access to and safe working at places normally used by operating, inspection, maintenance, and servicing personnel. This standard defines guard railing as any structure to prevent persons from falling off any platform, walkway or landing. Handrails include rails to provide handhold on a platform, walkway, stairway, or step ladder and may form part of a guard railing. A walkway is passageway that is either level or sloping from the surrounding floor or level. It may be a continuous structure or steps with landings and covers inclinations in the range from 0° to 26.5°. A stairway is a sloping stepped structure having not less than three rises and having a slope within the range of 26.5° to 45 degrees inclusive. A platform is an area provided for access or working, which is elevated above the surrounding floor or level, and a landing is a level area used to provide access to a stairway or ladder, or located at an intermediate level in a system of stairways or ladders.
A common type of guardrail or handrail system often found in public and industrial sites uses an open framework of horizontal, vertical or inclined pipes or tubes (which in cross section may be circular, square, rectangular, oval, etc) to support a handrail. However in some cases such open systems do not provide a sufficient barrier to prevent people, or carried objects such as tools or products, from escaping the confines of the handrail system. This can create hazards for both people on the walkways, who can slip out of, or may be forced to lean out over the handrail or through gaps into potentially unsafe areas to retrieve lost objects, as well as to persons below them who may be hit by falling objects potentially causing significant injury or even death depending upon the object dropped and the height it is dropped from. Further, many walkways, stairways and platforms in industrial or commercial sites include floors constructed of open grid mesh or grating, which provide little protection to persons or equipment below the floor from material (solid or liquid) spilled or dropped whilst being carried across the floor.
There is thus a need to provide systems and components to at least partially enclose open barrier systems, or at least provide a useful alternative.
SUMMARYAccording to a first aspect, there is provided a guarding system for enclosing a substantially open sidewall of a barrier system, the barrier system comprising a plurality of support members each having a predefined profile, comprising:
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- a plurality of brackets for attachment to two or more of the plurality of support members, each of the plurality of brackets comprising:
- a post engaging portion wherein the post engaging portion has an open configuration to allow the bracket to be removably clipped onto and retained around the post whilst in the open configuration, and a closed configuration to allow clamping of the post engaging portion to the post;
- a clamping portion comprising:
- a first clamping portion; and
- a second clamping portion wherein in the closed configuration the second clamping portion is brought towards the first clamping portion to clamp the bracket to the post and are fastened in the closed configuration by a first set of one or more fasteners passing through apertures in the first and second clamping portions; and
- a mounting portion comprising a mounting plate to allow mounting of the guard panel to the bracket with a second set of one or more fasteners and a standoff arm for spacing the mounting plate from the post, wherein the standoff arm is orthogonal to the mounting plate; and
- a plurality of guard panels for attachment to the plurality of brackets, to enclose at least a portion of the vertical space of the open sidewall.
In a further aspect the post engaging portion is located between the mounting portion and the clamping portion and comprises a profile matching at least a portion of the predefined profile of the post to allow clipping of the bracket to the post when in the open configuration and the first and second clamping portions extend from a first end and a second end of the post engaging portion so that movement of the first clamping portion towards the second clamping portion clamps the bracket around the post to form the closed configuration.
In a further aspect the post engaging portion comprises a clip portion having a profile matching at least a portion of the predefined profile of the post to allow clipping of the bracket to the post when in the open configuration; and a moveable portion comprising a slot to allow the moveable portion to be deformed to allow the bracket to be reconfigured from the open configuration to the closed configuration. In one aspect the slot extends over an arc of 90°, and the moveable portion is hand deformable.
In a further aspect the mounting plate further comprises a plurality of apertures to allow a guard panel to be mounted at a range of locations and inclinations with respect to the plate.
In a further aspect the guard panels are mounted to extend continuously up from the floor to a height below the handrail sufficient to provide hand access to the handrail, so as to substantially enclose side wall of the barrier. In a further aspect the guard panels are formed from a sheet comprising a plurality of apertures. This assists in reducing the additional wind load on the structure.
According to a second aspect, there is provided a method of installing a guarding system for enclosing a substantially open sidewall of a barrier system comprising a plurality of support members, the method comprising the steps of
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- obtaining a plurality of brackets according to the first aspect for attachment to two or more of the plurality of support members; and
- obtaining at least one guard panel for attachment to the plurality of brackets, to enclose at least a portion of the vertical space of the open sidewall;
- clipping at least one of the plurality of brackets to each of two or more of the plurality of support members;
- for each of the at least one brackets clipped to each of two or more of the plurality of support members:
- moving one or more portions of the respective bracket to change the configuration of the bracket from the open configuration to the closed configuration; and
- fastening the bracket in the closed configuration so as to clamp the bracket to the respective support member;
- fastening one of the at least one guard panel to at least one bracket clamped to two or more of the plurality of support members.
According to a third aspect, there is provided a bracket for use in mounting a guard panel to a post having a predefined profile in an open barrier system so as to reduce the dropped object hazard, comprising:
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- a post engaging portion wherein the post engaging portion has an open configuration to allow the bracket to be removably clipped onto and retained around the post whilst in the open configuration, and a closed configuration to allow clamping of the post engaging portion to the post;
- a clamping portion comprising:
- a first clamping portion; and
- a second clamping portion wherein in the closed configuration the second clamping portion is brought towards the first clamping portion to clamp the bracket to the post and are fastened in the closed configuration by a first set of one or more fasteners passing through apertures in the first and second clamping portions; and
- a mounting portion comprising a mounting plate to allow mounting of the guard panel to the bracket with a second set of one or more fasteners and a standoff arm for spacing the mounting plate from the post, wherein the standoff arm is orthogonal to the mounting plate.
According to a fourth aspect, there is provided a flooring bracket for use in mounting a floor sheet to cover a grid mesh floor comprising at two support members having a predefined profile and pitch, comprising:
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- an upper surface comprising:
- two flange portions for engaging the upper surface of two adjacent support members in a grid mesh floor; and
- a mounting portion to allow mounting of a sheet to the top surface of the flooring bracket;
- two resilient arms for engaging adjacent support members, each arm connected to the upper surface and spaced apart by distance matching the gap between the interior side faces of the adjacent support members and each arm having a lower projection for resiliently engaging the lower surface of the respective support member so that in use the flooring bracket is retained by engaging the upper and lower surfaces of adjacent support members.
- an upper surface comprising:
According to a fifth aspect, there is provided a flooring bracket for use in mounting a floor sheet to cover a grid mesh floor comprising at two support members having a predefined profile and pitch spacing, comprising:
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- an upper surface comprising a mounting portion for mounting a floor sheet, and at least one flange portion with a width less than the predefined pitch spacing;
- a lower channel portion, comprising a bottom surface and two opposite site walls, wherein the opposite sidewalls comprise alternate cut away portions located at opposite ends of the channel; and
- a fastener which passes though an aperture in the upper surface and an aperture in the bottom surface of the lower channel portion, and having a shaft portion joining the upper surface, wherein in use, the flooring bracket is inserted between adjacent load bars of the grid mesh floor such that the at least on flange portion is located between adjacent load bars, and the side walls of the lower channel portion are at a position above the bottom edge of a load bar and the lower channel portions are a position below the bottom edge of the load bar, and rotating the fastener causes the channel portion to move upwards and engage with the bottom edge of the load bars to lock the flooring bracket to the grid mesh floor.
According to a sixth aspect, there is provided a step guard for enclosing a vertical space of predefined dimensions between consecutive grid mesh steps, comprising:
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- a first set of tongue and grooves along a first horizontal edge for engagement with a first step;
- a second set of tongue and grooves along the opposite horizontal edge for engagement with a second step adjacent; and
- a riser plate joining the first and second set of tongue and grooves,
- wherein the spacing of the tongues in the first and second set are based on the spacing of crossbars in the grid mesh steps, and the first set of tongue and grooves are offset with respect to the second set of tongue to accommodate a range of distances between the edge of a step and the first cross bar in the step.
According to an seventh aspect, there is provided a step guard for enclosing a vertical space of predefined dimensions between an upper grid mesh step and lower grid mesh step, comprising:
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- a first set of tongue and grooves along a lower horizontal edge for engagement with the lower step;
- a nosing for engaging with the front and upper edge of the upper step; and
- a riser plate joining the first set of tongue and grooves and the nosing and which encloses the vertical gap between the upper and lower step,
- wherein the spacing of the tongues is based on the spacing of crossbars in the grid mesh steps.
According to an eighth aspect, there is provided a step guard for enclosing a vertical space of predefined dimensions between an upper grid mesh step and lower grid mesh step, comprising:
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- a riser plate which encloses the vertical gap between the upper and lower step; and
- a stair plate, for at least partially covering and reducing the size of the gaps between grid mesh elements in either the upper or lower step and comprising a stair tread for engaging with the front and upper edge of the step.
According to an ninth aspect, there is provided a dropped object prevention system for a guardrail, the guardrail comprising a plurality of support members each having a predefined profile and a floor, comprising:
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- a plurality of brackets for attachment to two or more of the plurality of support members and for mounting a guard panel, each bracket comprising a post engaging portion to allow the bracket to be clipped onto and retained about a support member from above the floor and within the guardrail prior to clamping, and then subsequently clamped around the support member, and a mounting portion comprising a mounting plate to allow mounting of the guard panel to the bracket, and a standoff arm for spacing the mounting plate from the post
- a plurality of guard panels for attachment to the plurality of brackets to enclose at least a portion of a vertical space of an open sidewall of the guardrail, wherein each guard panel is mounted to the mounting portion of at least one bracket, and in use is mounted from above the floor and within the guard rail.
The system of the first or ninth aspect may further comprise the flooring bracket of the fifth or sixth aspect, and/or the step guard of the sixth, seventh, or eighth aspect.
Illustrative embodiments will be discussed with reference to the accompanying figures wherein:
In the following description, like reference characters designate like or corresponding parts throughout the figures.
DESCRIPTION OF ILLUSTRATIVE EMBODIMENTSThe system described herein includes three components used to enclose various parts of open safety barrier systems such as handrails, walkway, stairs, platforms, grid mesh flooring etc. Such safety barriers are typically substantially open structures include a coarse grid of support (or structural) members with a variety of large and small gaps between the support members. All three components described herein may be used together, or various combinations of the three, or each components may be used separately or independently of each other depending upon the requirements of the site, and whether full or partial enclosure is required. To assist in understanding the system, illustrative embodiments of the system will be described in relation to enclosing a walkway incorporating an open handrail. Such open handrails comprise vertical supports, referred to as stanchions, and horizontal middle and upper rails at approximately knee and waist heights above a walkway (which may also include a kick plate). The first component is a guard system comprising a bracket and guard panel for enclosing the sides of open barrier systems such as walkways, stairs, or the vertical space below a handrail. The second component is a step guard which provides a stair tread and back plate to fill in the vertical gap (rise) between two stairs and the third component is a flooring system for covering a grid mesh floor comprising a floor bracket which is inserted between the gaps in a grid mesh floor and secured in place, and which includes a mounting platform to allow sheeting to be laid over the grid mesh floor. These components allow for safe and efficient enclosing of handrails, stairways, walkways and elevated platforms.
A walkway enclosed using the above described embodiment is illustrated in
The guard panels 40 may be made of flat sheet without any apertures, perforated sheet having a regular array of apertures (as in
An embodiment of a suitable bracket 1 for safely mounting guard panels 40 to posts such as stanchion 50, handrails 60 and knee rails 61 which form a safety barrier is illustrated in
In order for the bracket to clip on (or self-clamp) onto the bracket in the open configuration, the bracket must not deform plastically when applied to post. That is in order to maintain clamping force after placement, it must only be flexed over within its elastic zone and the angle of wrap around the post should exceed 180° to ensure it will stay in the initial position is fitted. The characteristics of elasticity and springiness, and the angle of wrap largely determine the capability of the bracket to clip on. Thus varying materials, or thicknesses of materials or cross sectional profiles can be chosen provided these characteristics are retained. The cross sectional profile can be varied to have stiff and flexible zones, provided they are still working via elastic deformation and springiness (ie they spring back) and the contact (or contacts) span greater than 180°.
Whilst in
The bracket 1 broadly includes a post engaging portion 10, a clamping portion 20 and a mounting portion 30. The bracket shown in
In one embodiment the slot extends over an arc of at least 90° to provide a sufficiently large opening so that the post engaging portion of the bracket is not required to significantly bend to receive the post to which the bracket is being clipped (that is to ensure the bracket does not deform when being applied). The length of the slot may be selected based on the strength of the material used to form the bracket. Further in the case that the post varies from the nominal dimensions, the slot enables hand tightening of the bracket to allow the bracket to clip onto and grip the post in the desired position, prior to clamping. In another embodiment the bracket could be formed of two or more members and a hinge provided between the clip portion and the moveable portion. In this embodiment the moveable portion could be shaped to match the profile of the portion of the post will be contacted or engaged when in the close configuration so that no deformation of the shape of the movable portion is required. Various additional stiffening elements may be added to the post engaging portion increase the strength as required to ensure the bracket can support the panel when subjected to wind, impact or other loads.
As shown in
The clamping portion 22 includes a first clamping portion 22 connected to one end of the clip portion 22 of the post engaging portion 20 and a second clamping portion 20 connected to one end of the movable portion 24 of the post engaging portion 20. The second clamping portion is arranged so that when the movable portion is in the closed configuration, the second clamping portion is brought towards or in close proximity with the first clamping portion (for example a 1-2 mm gap). This then allows the post engaging portion and thus the bracket to be clamped to the post and so provide a structurally rigid connection both before and after panel installation. A range of fasteners may be used. In the embodiment illustrated in
A mounting portion 30 is attached to the clamping portion 20 to allow mounting of the guard panel to the bracket at a panel offset distance 26 from the centre of the post or a stand off distance 27 from the surface of the post. In this embodiment the mounting portion includes a flat plate which is attached to the other end of the first clamping portion. Typically the guard panel is orientated in a plane parallel to a plane tangential to the cross section of the post, with the clamping portion acting as a standoff arm to space the post away from the guard panel. That is the radially directed standoff arm is orthogonal (90°) to the mounting plate which is parallel to the guard panel. As shown in
In the embodiment show in
Providing a plurality of apertures provides flexibility in mounting the panel to the bracket. For example if the apertures in the panel are large diameter, then the plurality of apertures in the mounting portion increase the likelihood that at least one of the apertures in the mounting plate will be aligned over an aperture free section of the perforated guard panel. Alternatively the apertures in the guard panel may be selected to be a size to act as pilot holes for the screw fasteners to be used, and thus providing a plurality of apertures in the mounting plate increase the likelihood that at least one aperture in the guard panel will align with one of the apertures in the mounting portion of the bracket. Providing a plurality of apertures in the mounting plate also allows the guard panel to be mounted to level ground (platform or walkway), inclined ground, or to stairs. This is further illustrated in
To assist in fastening the panel to a bracket, or to fasten adjacent panels together, a washer plate (or button) as shown in
In one embodiment the bracket shown in
It is to be understood that the above described bracket represent embodiments of the system and may be varied and still provide the same functionality of a clipable bracket for retrofitting of guard panels to open barrier systems.
This join could be formed through welding during construction of the bracket, or performed in the field using appropriate fasteners such as self drilling TEK screws or a nut and bolt arrangement. Each of the half sections has a profile which at least partially matches a post 50 (eg stanchion) to which the bracket is to be clipped around. The two ends 522 and 524 of the half sections are flanged outward to leave an opening for receiving the post.
The installation method includes a first step 502 of clipping a bracket onto a post 50 by pushing the opening of the bracket towards the post. At step 504 the outward flanges are (resiliently) pushed outward by engagement with the post, and once the flanges have passed the halfway point (ie diameter) the elasticity or resiliency of the bracket will force the flange sections towards each other and thus act to clip the bracket around the post into a clipping configuration. As described above, slots could be provided in the flange sections and/or the post engaging portions to weaken a section of the bracket to facilitate clipping of the bracket over or around the post. A clamping step 506 is performed in which the two flange portions (acting as first and second clamping portions) are moved, deformed or otherwise brought together and then fastened into a clamping configuration through the use of fastener such as a nut 528 and bolt 526. The clamping portions need not meet, or engage with each other provided the fastener acts to clamp the bracket around the post (eg the fastener may span the gap and act to pull the two clamping portions towards each other). The use of slots in the flanged sections facilitates the movement of the sections into the clamped configuration. Finally in a panel mounting step 508 a guard panel 40 is mounted onto the mounting portion 30 of the bracket in the clamped configuration. This may involve resting the flanged portion at the bottom of the guard panel on or overlapping the edge of the kick plate to ensure there is no gap formed between the guard panel and the kickplate. Then the guard panel is fastened to the brackets using fasteners such as one or more TEK screws, optionally using a washer plate.
In this embodiment matching apertures are provided in the outwardly flanged clamping portions so that the clamping portions also act as a mounting portion. The guard panel 640 includes an orthogonal mounting projection 644 including one or more apertures. Clamping and mounting of the panel is performed as a single operation. The mounting projection of the panel is placed between the two outwardly flanged portions, which are then moved towards each other so that they are either side of the mounting projection. The apertures in the clamping portions and the mounting portion are aligned and a bolt 626 is passed through the apertures and then fastened in place using a nut 628. In an alternative embodiment apertures need not be provided and a self drilling TEK screw could be used as a fastener. In another alternative embodiment a T shaped mount is used comprising a mounting plate (2342) and an orthogonal mounting projection (2344) which is placed between clamping arms 2326, 2328, which are then clamped to secure the mount. A panel 40 is then mounted onto the mounting plate 2342.
The above examples illustrate various alternative embodiments of the bracket. These may be constructed from flat strips of suitable materials such as 1.2 mm thick 316 Stainless Steel. The bracket is designed to clip and grip onto posts of nominal (or standard) diameters. However due to manufacturing variations the inner diameter or profile of the bracket, may not always match the diameter or profile of the post. If the inner diameter of the bracket is too large compared to the diameter of the post then their may be insufficient frictional contact to ensure the bracket remains in place after it is placed around the pole (ie it may slip down). In this case the installer may simply have to squeeze the bracket once fitted (ie adjust the open configuration) to ensure that the bracket clips onto and is retained around the post. This facilitates clamping the bracket as the installer does not need to hold the bracket at the desired height, and can instead concentrate on installing the fastener to clamp the bracket, reducing the risk of dropping the fastener or tools when clamping the bracket. In a further embodiment, the bracket is designed to have an initial snap on configuration with a diameter larger than the nominal diameter, but with a portion that spans at least 180° and in which the opening is less than the nominal diameter so that the bracket will enclose the pipe, but not necessarily grip the pipe. This will allow the bracket to be snapped on to the post but also prevent the bracket from falling off the support. The bracket can then be adjusted such as by hand deformation to reduce the radius from the initial configuration to the open clipping configuration so that it will then grip the pipe in the desired position. The bracket can then be clamped onto the post. In this case installation would comprise snapping on the bracket, deforming the bracket to the open configuration to grip the post in the desired position, and then clamping the bracket in place.
To ensure there are no gaps between the walkway/kickboard and panel, and to facilitate stacking of panels and overlapping of panels, the upper and lower edges of the guard panels may be bent to an angle under 90° to form upper flange section 42 and lower flange section 44. As shown in
In another embodiment the sheet may be a flat sheet with holes or apertures limited to a specific region of the sheet. For example if the brackets and guard sheets are to be used on a level walkway and it is desired to mount the guard sheet at a specific height, the brackets could all be mounted at the specific height on the poles, and holes could be provided in a strip on the sheet only at the appropriate height to ensure the guard panel is to be mounted at the desired height. In another alternative embodiment the guard panel could be provided as a flat sheet with no holes, and holes drilled as required. Alternatively the mounting portion need not include apertures and these could be drilled as required or self drilling TEK screws used to fasten the guard panel to the mount.
Preferably the size of apertures (or gaps) in the panel are chosen so that they are small enough to prevent, or at least to significantly reduce the risk, of dropped objects falling through the apertures (or at least dropped objects, and in particular tools, above a certain size). Suitable perforated sheets for use as guard panels may be source from the Locker group which manufacture sheets with a range of apertures sizes (1.6 mm to 9.5 mm), patterns (circles, squares, diamonds, clubs, etc), % open area (23 to 62%), and materials (steel alloys, Aluminium, etc). For example stock sheet R07962 comes in a standard size of 2440×140 mm with holes of diameter 7.94 mm, a pitch (hole spacing) of 9.55 mm and an open area 62%. Alternatively P081116 from the Graham group may be used. Mesh sheets formed from a regular array of rods, wires or pipes characterised in having very high open area percentages but small gap sizes (eg sides with lengths from 5 mm up to around 200 mm or areas up to 40000 mm2) can be used for sites subject to high wind loads (eg cyclonic). For example the mesh shown in
A method for installing a guarding system to a handrail will now be outlined with reference to
When installing the guarding system, the installer can add as many or as few brackets as required based upon the length of the section to be enclosed, weight of materials and strength of the brackets. In one embodiment the adjacent guard panels are each joined to each other, effectively forming a continuous panel. In this case a single bracket may only be required every third stanchion (post) to support the panels. For lighter panels this could be extended, and for heavier panels a bracket could be clipped and clamped to each post. Also the installer can choose the height at which to place the bracket. These could be alternated between high and low positions, or two (or more) brackets could be fitted to each post at high and low positions. Additionally rather than use a single panel which extends from the floor to the handrail, multiple independent panel strips could be mounted so as to partially enclose the handrail.
Walkways, stairways, and platforms in many sites use grid mesh flooring. Grid mesh is characterised by closely spaced parallel load bars and more sparsely spaced intersecting cross bars. Typically the gaps between adjacent load bars and cross bars can be quite large allowing tools, equipment and other material (solid or liquids) to fall between the gaps. Additionally grid mesh stairs often have large vertical gaps between adjacent or successive stairs (or a stair and platform). Such gaps can thus be a hazard for persons or equipment below.
As discussed in some environments it may be desirable to enclose or reduce the gaps in grid mesh flooring and/or the vertical rise between successive steps in stairways to provide full protection against a dropped (or kicked) object falling from the walkway, stairs or platform. Referring now to
To provide resiliency, the mounting portion includes a first aperture 1113 in the form of a slot, and a second aperture 1115 in the form of a slot. As can be seen in
The lower projection on each arm is an inclined plate section which outwardly projects from the arm towards the lower face of the respective support member. As can be seen in
Side view 1210 of a flooring bracket inserted into grate is shown in
The flooring bracket can thus be used as part of a guarding system for mounting a floor sheet to cover a grid mesh floor.
Another embodiment of a flooring bracket 1400 is illustrated in
The locking action of the flooring bracket is illustrated in
Additionally the tongues (or projections) in the upper first set of tongue and grooves may be offset with respect to the tongues in the lower second set of tongue and grooves in order to accommodate a range of distances between the edge of a step and the first cross bar in the step. This increases the usability of the rise plate as the offset distance 918 to the first cross bar, and then the subsequent cross bars, may not be located in a position to allow all the lower tongues of the riser plate to be inserted into gaps in the lower stair, ie one of the tongues may foul on a crossbar and prevent insertion into the lower step. In such a case the riser plate may be inverted, and as the tongues are offset between the top and bottom, the offset may be sufficient to allow the previously upper tongues to be inserted into the lower gap. In this case the fouling tongue is thus replaced with a clearing groove. As steps typically have standard widths, and cross bars in grid mesh typically have standard offset distances (eg 100 mm), then the required offset between the upper and lower tongues can be predetermined during manufacture based on these known distances so that the riser can be used on most stairs in either the standard or inverted configuration.
A further advantage of this riser is that it reuses the existing nosing on stairs, which thus saves overall cost (as new treads are not required). The plate may be manufactured from 0.8 mm steel plate sufficient to resist denting by steel cap boots or dropped objects. Additionally apertures such as slots or vents may be cut into the riser plate to reduce wind load on the structure. Alternatively other materials such as flattened diamond mesh or perforated steel may be used.
In an alternative embodiment, the riser plate could be attached to the bottom of the stair guard (ie front edge), and only a small vertical section (equivalent to 1840) provide on the rear edge of the stair plate (for overlapping with the bottom of the riser plate of the next step guard. In this case a step guard such as that illustrated in
In regions subject to high wind loads, the guard panels may be wire mesh arrangements such as those illustrated in
In the case that wire mesh is used, the washer plate of
Narrow meshes can also be provided for corners, or specialised sections, such as near stairs as shown in
Variants of the above system are also possible. For example a dropped object prevention system can be provided for a guardrail comprising a plurality of support members each having a predefined profile and a floor. A plurality of brackets can be attached to two or more of the plurality of support members and can be used for mounting a guard panel. Each bracket comprises a post engaging portion to allow the bracket to be clipped onto and retained about a support member from above the floor and within the guardrail prior to clamping, and then subsequently clamped around the support member. The bracket also comprises a mounting portion comprising a mounting plate to allow mounting of the guard panel to the bracket, and a standoff arm for spacing the mounting plate from the post. The system also comprises a plurality of guard panels for attachment to the plurality of brackets to enclose at least a portion of a vertical space of an open sidewall of the guardrail. Each guard panel is mounted to the mounting portion of at least one bracket, and in use is mounted from above the floor and within the guard rail. In one embodiment each bracket has an open configuration to allow the bracket to be clipped onto one of the plurality of support member, and the post engaging portion spans at least a 180° angle around the post and having a radius matching the radius of the post, and the bracket is manufactured from resilient material such that when clipped onto the post the bracket does not plastically deform. Each guard panel can comprise a plurality of apertures or a mesh to reduce the weight and wind load of the system.
The system and components, and variants described herein, can be retrofitted to open safety barrier systems, such as handrails, guardrails, walkways, platforms, etc, or can be included as part of the installation of such barrier systems. The modularity of the components in the system also allows selective use of the components, or the complete system only in those regions requiring additional protection. For example the complete system may only be required in locations which are elevated or which may become slippery (whether due to environmental effects or spillage of materials being carried). Alternatively just the guard panels could just be fitted around elevated platforms where the greatest risk is losing equipment or even persons through the gaps in the handrail. Similarly for handrails or walkways which provide a safe passage between equipment, the guard panels and/or flooring could only be placed where it is important to prevent accidental contact by a person and surrounding equipment (such as due to a person falling through the gaps in the handrail) or even to stop material being carried on the walkway from accidentally contaminating the surrounding area. The system could also be provided as a kit or kits (eg side panel kit, stairway kit, flooring kit, etc) comprising one or more components described herein such as brackets guard panels, fasteners, washer plates, joiners, floor brackets, flooring, riser plates etc. Further the system and components do not require the installer to place themselves or tools outside of barrier and into potentially unsafe locations, allowing safe installation from above the floor and within the guard rails. For example, in the case of an elevated walkway the installer can remain safely within the confines of the walkway at all times whilst installing the system, and there is typically no need for the installer to put an arm holding a tool outside the handrail or under a stair or platform, or perform any work at height (eg from external scaffolding or cranes). Further the use of a clipping configuration on the brackets allows them to be placed on and retained around support members. The spring action of bracket securely clips the bracket to the pipe when in the open position. Thus there is little or no risk of the bracket falling and the installer is then free to safely pick up other components or tools without losing or dropping the bracket. Further the standoff arm of the bracket allows panel to be secured to the bracket from inside of the handrail. This allows safe installation and ensures that these components do not become dropped objects themselves. Similarly the installation of the floor brackets and sheets can be done from above (i.e. on the walkway) and again does not require the installer to place themselves or tools outside of the confines of the walkway. Thus the installer can safely and progressively install the system.
Another advantage of the system is that it doesn't compromise the structural integrity of an existing safety barrier system. The use of brackets which clip onto the existing handrail or walkway structure eliminates the need for drilling into or welding to the handrail structure. The use of open mesh panels or sheets with apertures adds minimal additional wind load. Another advantage of the system is that it avoids the need to perform any hot work (e.g. welding) when installing the system. In some industrial sites (e.g. chemical sites and mines) hot work can be potentially dangerous, or incur significant overhead such as shutting down certain processes and obtaining hot work permits, barricading off of areas and posting of sentries, and thus avoiding any need to perform hot work simplifies the overall installation process, and minimally impacts other activities occurring at the site.
Further the system and components include a number of features which can assist in speeding up the installation process. The use of an extended slot in the bracket allows it deformed from hand from the open to the closed position. Additionally the use of a plurality of holes in the mounting bracket and in the guarding panels means these can be installed in both flat and inclined configurations providing greater flexibility in use.
In summary the system and components can be installed from above the floor or stairway and within the hand rails, so there is no need to work at height to install the system. Further the system and components are by design unlikely to become dropped objects themselves during installation. Further the system components do not require any welding, and subsequent repainting of structures to install. This allows installation with minimal disturbance to the work site, as no hot work permits are required, nor is there is a need for a sentry nor barricading off of lower levels. The various combination of features described herein thus provides an efficient and useful system and components for safely enclosing safety barrier systems such as handrails, walkways, stairs, platforms, and other open barriers used in a variety of locations.
Throughout the specification and the claims that follow, unless the context requires otherwise, the words “comprise” and “include” and variations such as “comprising” and “including” will be understood to imply the inclusion of a stated integer or group of integers, but not the exclusion of any other integer or group of integers. The reference to any prior art in this specification is not, and should not be taken as, an acknowledgement of any form of suggestion that such prior art forms part of the common general knowledge. It will be appreciated by those skilled in the art that the system is not restricted in its use to the particular application described. Neither is the present system restricted in its preferred embodiment with regard to the particular elements and/or features described or depicted herein, including dimensions and materials. It will be appreciated that the system is not limited to the embodiment or embodiments disclosed, but is capable of numerous rearrangements, modifications and substitutions without departing from the scope of as set forth and defined by the following claims.
Claims
1. A guarding system for enclosing a substantially open sidewall of a barrier system, the barrier system comprising a plurality of support members each having a predefined profile, comprising:
- a plurality of brackets for attachment to two or more of the plurality of support members, each of the plurality of brackets comprising: a post engaging portion wherein the post engaging portion has an open configuration to allow the bracket to be removably clipped onto and retained around the post whilst in the open configuration, and a closed configuration to allow clamping of the post engaging portion to the post; a clamping portion comprising: a first clamping portion; and a second clamping portion wherein in the closed configuration the second clamping portion is brought towards the first clamping portion to clamp the bracket to the post and are fastened in the closed configuration by a first set of one or more fasteners passing through apertures in the first and second clamping portions; and a mounting portion comprising a mounting plate to allow mounting of the guard panel to the bracket with a second set of one or more fasteners and a standoff arm for spacing the mounting plate from the post, wherein the standoff arm is orthogonal to the mounting plate; and
- a plurality of guard panels for attachment to the plurality of brackets, to enclose at least a portion of the vertical space of the open sidewall.
2. The guarding system as claimed in claim 1, wherein the post engaging portion is located between the mounting portion and the clamping portion and comprises:
- a profile matching at least a portion of the predefined profile of the post to allow clipping of the bracket to the post when in the open configuration and the first and second clamping portions extend from a first end and a second end of the post engaging portion so that movement of the first clamping portion towards the second clamping portion clamps the bracket around the post to form the closed configuration.
3. The guarding system as claimed in claim 1, wherein the post engaging portion comprises:
- a clip portion having a profile matching at least a portion of the predefined profile of the post to allow clipping of the bracket to the post when in the open configuration; and
- a moveable portion comprising a slot to allow the moveable portion to be deformed to allow the bracket to be reconfigured from the open configuration to the closed configuration.
4. The guarding system as claimed in claim 1, wherein the bracket is formed from a single sheet of material.
5. The guarding system as claimed in claim 4, wherein the material is stainless steel.
6. The guarding system as claimed in claim 3 wherein the slot extends over at a least 90° arc of the post when in the closed position.
7. The guarding system as claimed in claim 1, wherein the clamping portion is located between the mounting portion and the post engaging portion and the clamping portions provides the standoff arm.
8. The guarding system as claimed in claim 1, wherein the mounting plate further comprises a plurality of apertures to allow a guard panel to be mounted at a range of locations and inclinations with respect to the plate.
9. The guarding system as claimed in claim 8, wherein the mounting plate is provided with an aperture free portion in front of the region the first set of one or more fasteners used to clamp the bracket together will be located so that in use, the first set of one or more fasteners do not interfere with the second set of one or more fasteners used to mount the guard panel to the mounting plate.
10. The guarding system as claimed in claim 8, further comprising a plurality of washer plates for use in mounting panels to brackets, each washer plate comprising a flat plate with two apertures spaced apart by a first spacing distance, wherein the first spacing distance matches the spacing between at least two apertures in the plurality of apertures on the mounting plate of a bracket
11. The guarding system as claimed in claim 10, wherein the plurality of apertures are arranged into two or more pairs of apertures having the first spacing distance, and the two or more pairs are arranged to allow mounting of guard panels in two or more predefined orientations.
12. The guarding system as claimed in claim 1, wherein the panel is mounted to extend continuously up from the floor to a height below the handrail sufficient to provide hand access to the handrail, so as to substantially enclose side wall of the barrier.
13. The guarding system as claimed in claim 1, wherein lower edge of the panels are flanged so that when mounted the flange portion engages the top of the sidewall of the floor.
14. The guarding system as claimed in claim 1, wherein guard panels are formed from a sheet comprising a plurality of apertures.
15. The guarding system as claimed in claim 1, wherein guard panels are formed from a mesh sheet so that the additional wind load on the structure is minimised.
16. (canceled)
17. (canceled)
18. (canceled)
19. The guarding system as claimed in claim 1, wherein the open barrier system further comprises a grid mesh floor comprising at two support members having a predefined profile and pitch, a plurality of floor sheets and a plurality of flooring brackets for mounting a floor sheet to cover at least a section of the grid mesh floor, each flooring bracket comprising:
- an upper surface comprising: two flange portions for engaging the upper surface of two adjacent support members in a grid mesh floor; and a mounting portion to allow mounting of a sheet to the top surface of the flooring bracket;
- two resilient arms for engaging adjacent support members, each arm connected to the upper surface and spaced apart by distance matching the gap between the interior side faces of the adjacent support members and each arm having a lower projection for resiliently engaging the lower surface of the respective support member so that in use the flooring bracket is retained by engaging the upper and lower surfaces of adjacent support members.
20. The guarding system as claimed in claim 1, wherein the open barrier system further comprises a grid mesh floor comprising at two support members having a predefined profile and pitch, a plurality of floor sheets and a plurality of flooring brackets for mounting a floor sheet to cover at least a section of the grid mesh floor, each flooring bracket comprising:
- an upper surface comprising a mounting portion for mounting a floor sheet, and at least one flange portion with a width less than the predefined pitch spacing;
- a lower channel portion, comprising a bottom surface and two opposite side walls, wherein the opposite sidewalls comprise alternate cut away portions located at opposite ends of the channel; and
- a fastener which passes though an aperture in the upper surface and an aperture in the bottom surface of the lower channel portion, and having a shaft portion joining the upper surface, wherein in use, the flooring bracket is inserted between adjacent load bars of the grid mesh floor such that the at least on flange portion is located between adjacent load bars, and the side walls of the lower channel portion are at a position above the bottom edge of a load bar and the lower channel portions are a position below the bottom edge of the load bar, and rotating the fastener causes the channel portion to move upwards and engage with the bottom edge of the load bars to lock the flooring bracket to the grid mesh floor.
21. A method of installing a guarding system for enclosing a substantially open sidewall of a barrier system comprising a plurality of support members, the method comprising the steps of:
- obtaining a plurality of brackets for attachment to two or more of the plurality of support members each of the brackets comprising: a post engaging portion wherein the post engaging portion has an open configuration to allow the bracket to be removably clipped onto and retained around the post whilst in the open configuration, and a closed configuration to allow clamping of the post engaging portion to the post; a clamping portion comprising: a first clamping portion; and a second clamping portion wherein in the closed configuration the second clamping portion is brought towards the first clamping portion to clamp the bracket to the post and are fastened in the closed configuration by a first set of one or more fasteners passing through apertures in the first and second clamping portions; and
- a mounting portion comprising a mounting plate to allow mounting of the guard panel to the bracket with a second set of one or more fasteners and a standoff arm for spacing the mounting plate from the post, wherein the standoff arm is orthogonal to the mounting plate; and
- obtaining at least one guard panel for attachment to the plurality of brackets, to enclose at least a portion of the vertical space of the substantially open sidewall;
- clipping at least one of the plurality of brackets to each of two or more of the plurality of support members;
- for each of the at least one brackets clipped to each of the two or more of the plurality of support members: moving one or more portions of the respective bracket to change the configuration of the bracket from the open configuration to the closed configuration; and fastening the bracket in the closed configuration so as to clamp the bracket to the respective support member;
- fastening one of the at least one guard panel to at least one bracket clamped to one of the two or more of the plurality of support members.
22. The method as claimed in claim 21, further comprising fastening adjacent guard panels together.
23. A bracket for use in mounting a guard panel to a post having a predefined profile in an open barrier system so as to reduce the dropped object hazard, comprising:
- a post engaging portion wherein the post engaging portion has an open configuration to allow the bracket to be removably clipped onto and retained around the post whilst in the open configuration, and a closed configuration to allow clamping of the post engaging portion to the post;
- a clamping portion comprising: a first clamping portion; and a second clamping portion wherein in the closed configuration the second clamping portion is brought towards the first clamping portion to clamp the bracket to the post and are fastened in the closed configuration by a first set of one or more fasteners passing through apertures in the first and second clamping portions; and
- a mounting portion comprising a mounting plate to allow mounting of the guard panel to the bracket with a second set of one or more fasteners and a standoff arm for spacing the mounting plate from the post, wherein the standoff arm is orthogonal to the mounting plate.
24. The bracket as claimed in claim 23, wherein the post engaging portion is located between the mounting portion and the clamping portion and comprises:
- a profile matching at least a portion of the predefined profile of the post to allow clipping of the bracket to the post when in the open configuration and the first and second clamping portions extend from a first end and a second end of the post engaging portion so that movement of the first clamping portion towards the second clamping portion clamps the bracket around the post to form the closed configuration.
25. The bracket as claimed in claim 23, wherein the post engaging portion comprises:
- a clip portion having a profile matching at least a portion of the predefined profile of the post to allow clipping of the bracket to the post when in the open configuration; and
- a moveable portion comprising a slot to allow the moveable portion to be deformed to allow the bracket to be reconfigured from the open configuration to the closed configuration.
26. The bracket as claimed in claim 25 wherein the slot extends over at a least 90° arc section of the post when in the closed position.
27. The bracket as claimed in claim 23, wherein the bracket is formed from a single sheet of material.
28. The bracket as claimed in claim 27, wherein the material is stainless steel.
29. The bracket as claimed in claim 23, wherein the clamping portion is located between the mounting portion and the post engaging portion and the clamping portions provides the standoff arm.
30. The bracket as claimed in claim 23, wherein the mounting plate further comprises a plurality of apertures to allow a guard panel to be mounted at a range of locations and inclinations with respect to the plate.
31. The bracket as claimed in claim 30, wherein the mounting plate is provided with an aperture free portion in front of the region the first set of one or more fasteners used to clamp the bracket together will be located so that in use, the first set of one or more fasteners do not interfere with the second set of one or more fasteners used to mount the guard panel to the mounting plate.
32. (canceled)
33. (canceled)
34. (canceled)
35. (canceled)
36. (canceled)
37. (canceled)
38. (canceled)
39. A dropped object prevention system for a guardrail, the guardrail comprising a plurality of support members each having a predefined profile and a floor, comprising:
- a plurality of brackets for attachment to two or more of the plurality of support members and for mounting a guard panel, each bracket comprising a post engaging portion to allow the bracket to be clipped onto and retained about a support member from above the floor and within the guardrail prior to clamping, and then subsequently clamped around the support member, and a mounting portion comprising a mounting plate to allow mounting of the guard panel to the bracket, and a standoff arm for spacing the mounting plate from the post
- a plurality of guard panels for attachment to the plurality of brackets to enclose at least a portion of a vertical space of an open sidewall of the guardrail, wherein each guard panel is mounted to the mounting portion of at least one bracket, and in use is mounted from above the floor and within the guard rail.
40. The dropped object prevention system as claimed in claim 39, wherein each bracket has an open configuration to allow the bracket to be clipped onto one of the plurality of support member, and the post engaging portion spans at least a 180° angle around the post and has a radius matching the radius of the post, and the bracket is manufactured from resilient material such that when clipped onto the post the bracket does not plastically deform.
41. The dropped object prevention system as claimed in claim 39, wherein each guard panel comprises a plurality of apertures.
Type: Application
Filed: Dec 15, 2011
Publication Date: Oct 30, 2014
Applicant: PRO 3 PRODUCTS PTY LTD (Beauty Point)
Inventors: Andrew Paul Crothers (Beauty Point), Simon Noack (Beauty Point), Philip Ooyendyk (Beauty Point)
Application Number: 13/993,825
International Classification: E04F 11/18 (20060101); E04H 17/24 (20060101); E04G 5/14 (20060101); E04H 17/16 (20060101); E04G 5/06 (20060101); E04G 21/32 (20060101);