MULTI-TRACK BEAM MODULAR ASSEMBLY SYSTEM
Embodiments of a multi-track beam for use in modular assembly systems for office and industrial work stations. The embodiments have four corner tubes, bars, or channels arranged in a rectangular pattern in cross-section and connected in ways that provide improved ability to transmit torque along a long axis of the multi-track beam while providing improved resistance to bending under the forces of the torque. Fastening devices such a jam nuts may be inserted into the tracks to secure accessories to the multi-track beam or to other multi-track beams.
The present application claims the benefit of, and priority to, U.S. Provisional Application No. 61/974,676 filed on 3 Apr. 2014, and U.S. Provisional Application No. 62/137,681 filed on 24 Mar. 2015, both incorporated herein by reference.
FIELD OF THE INVENTIONThe present invention relates to modular assembly systems. More particularly, the present invention relates to modular assembly systems for office and industrial work stations.
BACKGROUNDModular building assembly systems have long been available to for the construction and erection of various structures such as office cubicles, industrial work stations, and scaffolding. Such modular building assembly systems usually have some type of standard beam that can be joined to other beams and to which various accessories can be attached. Solid bars, of circular or regular polygonal shape (such as square or hexagonal) may be used, but are inferior to tubes of the same shape because tubes have a better resistance to torsion for the same mass of material than do solid bars. Circular or regular polygons lack an easy point of attachment for accessories and other beams, so more complex shapes are preferred. One such complex shaped beam is a cruciform beam (see U.S. Pat. No. 5,481,842 to Gautreau,
What is needed is a modular building system with a beam that has strong resistance to torsion around its long axis.
The present invention will be described by way of exemplary embodiments, but not limitations, illustrated in the accompanying drawings in which like references denote similar elements, and in which:
The accompanying drawings, which are incorporated into and constitute a part of this specification, illustrate one or more embodiments of the invention and, together with the detailed description, serve to explain the principles and implementations of the invention.
Before beginning a detailed description of the subject invention, mention of the following is in order. When appropriate, like reference materials and characters are used to designate identical, corresponding, or similar components in different figures. The figures associated with this disclosure typically are not drawn with dimensional accuracy to scale, i.e., such drawings have been drafted with a focus on clarity of viewing and understanding rather than dimensional accuracy.
In the interest of clarity, not all of the routine features of the implementations described herein are shown and described. It will, of course, be appreciated that in the development of any such actual implementation, numerous implementation-specific decisions must be made in order to achieve the developer's specific goals, such as compliance with application and business related constraints, and that these specific goals will vary from one implementation to another and from one developer to another. Moreover, it will be appreciated that such a development effort might be complex and time-consuming, but would nevertheless be a routine undertaking of engineering for those of ordinary skill in the art having the benefit of this disclosure.
Use of directional terms such as “upper,” “lower,” “above,” “below”, “in front of,” “behind,” etc. are intended to describe the positions and/or orientations of various components of the invention relative to one another as shown in the various Figures and are not intended to impose limitations on any position and/or orientation of any embodiment of the invention relative to any reference point external to the reference.
Those skilled in the art will recognize that numerous modifications and changes may be made to the exemplary embodiment(s) without departing from the scope of the claimed invention. It will, of course, be understood that modifications of the invention, in its various aspects, will be apparent to those skilled in the art, some being apparent only after study, others being matters of routine mechanical, chemical and electronic design. No single feature, function or property of the exemplary embodiment(s) is essential. Other embodiments are possible, their specific designs depending upon the particular application. As such, the scope of the invention should not be limited by the particular embodiments herein described but should be defined only by the appended claims and equivalents thereof.
Quad-Track Beam First Exemplary EmbodimentThe first embodiment quad-track beam 100 also has four channel bars 108. Each of the first embodiment channel bars 108 has two lateral sides 110 and a back side 112. Collectively, the lateral sides 110 and the back side 112 define a channel bar cavity 114 therein. Each corner tube 104 is coupled to two of the other corner tubes 104 by one of the channel bars 108 with each lateral side 110 of each of the channel bars 108 contacting one of the interior sides 106 of one of the corner tubes 104. In the first embodiment, the channel bars 108 are made of steel and welded to the corner tubes 104, but in other embodiments, may be made of other materials and attached in other ways.
In the first embodiment, the corner tubes 104 are square in cross-section, but in other embodiments may be rectangular. A rectangular cross-section provides flat corner tube interior sides 106 for joining with the flat lateral sides 110 of the channel bars 108. The rectangular cross-section provides a flat surface for accommodating accessory parts (e.g., the single channel leg 120 in
In the first embodiment, the channel bar lips 116 are flush or nearly flush with the exterior sides 107 of the corner tubes 104. This is to facilitate the coupling of accessories, which is more difficult when the channel bar 108 is recessed. The channel bar lateral sides 110 are just long enough to provide sufficient depth in the channel bar cavity 114 for insertion of a strut-nut 140. This keeps the channel bar back side 112 close to the exterior of the quad-track beam 100, as defined by the exterior sides 107 of the adjacent corner tubes 104. The channel bar back sides 112 bear forces caused by torsion of the quad-track beam 100 about its long axis and will do so more efficiently when they are closer to the exterior of the quad-track beam 100. In the first embodiment, the channel bar lateral sides 110 in cross-section are no greater in length than the corner tube interior sides 106 with which they are in contact. More specifically, the channel bar lateral sides 110 in cross-section are half or less in length than the corner tube interior sides 106 with which they are in contact. In the first embodiment, the corner tubes 104 are square in cross-section with corner tube interior sides 106 of 1½ inches and the channel bar lateral sides 110 are ¾ inches.
Quad-Track Beam Second Exemplary EmbodimentThe corner tubes 158 in the second embodiment quad-track beam 156 are made of steel in 12, 14, or 16 gauges. The side plates 162 are made of 14 gauge steel. However in other embodiments, other suitable materials may be used for the corner tubes 158 and side plates 162. In a cross-section of the second embodiment quad-track beam 156, the corner tubes 158 are 1½ inches on each side and the side plates 162 are 1½ inches wide. However, in other embodiments, the corner tubes 158 and side plates 162 may have other dimensions.
The side plates 162 of the second embodiment quad-track beam 156 have slots 164 for insertion of the jam nut 168. The side slots 164 run along the long axis of the side plate 162, interrupted by side plate webs 166. The side plate webs 166 bear the forces caused by torsion of the second embodiment quad-track beam 156 about its long axis. The side slots 164 have a width parallel to the long axis of the side plate 162 and a height orthogonal to the width. The width of each of the side slots 164 is at least as wide as the length (largest dimension) of the jam nut 168. The height of each of the side slots 164 is at least as high as the thickness (smallest dimension) of the jam nut 168. In the second embodiment, the side slots 164 are 9/16 inch high, which is slightly larger than the ⅜ inch thickness of the jam nut 168 used to attach accessories. In other embodiments, the side slots 164 may have a different height. For example, in some embodiments, the height of the side slots 164 is at least as high as the width of the jam nut 168 intended to be used. This would allow the jam nut 168 to be inserted into one of the side slots 164 while a bolt or threaded rod is inserted into a threaded hole 174 of the jam nut 168.
Longer side slots 164 and shorter side plate webs 166 will weaken resistance of the second embodiment quad-track beam 156 to torsion about its long axis, and shorter side slot 164 with longer side plate webs 166 will strengthen resistance to torsion. A trade-off must be made between the better torsion resistance of shorter side slots 164 and flexibility in attaching accessories that comes from longer side slots 164. In the second embodiment, the side slots 164 are 4 inches wide and the side plate webs 166 are 1 inch wide, but other embodiments may have different widths for these features.
The second embodiment quad-track beam 156 has a central cavity 176 defined by the corner tubes 158 and the side plates 162. The central cavity 176 has a nut-retention foam 160 positioned therein. The nut-retention foam 160 is compressible and resilient. A jam nut 168 to be inserted through one of the side slots 164 compresses the nut-retention foam 160. The resilience of the nut-retention foam 160 then holds the jam nut 168 in position.
Similar to the strut-nut 140 in the first embodiment, the purpose of the jam nut 168 is to attach accessories to the second embodiment quad-track beam 156. The jam nut 168 can be inserted into the central cavity 176, pushing back the nut-retention foam 160. Then the jam nut 168 can be twisted so that the ends of the longer dimension of the jam nut 168 slip behind the side plate 162. The jam nut 168 has two rounded corners 170, diagonally opposed and two angled corners 172, diagonally opposed. The longer dimension of the jam nut 168 is configured to be slightly shorter than the width of the side plate 162, where the width refers to the dimension between the corner tubes 158. When the jam nut 168 is twisted clockwise, the jam nut rounded corners 170 slide past the corner tubes 158 until the angled corners 172 contact the corner tubes 158, preventing further clockwise rotation of the jam nut 168. The jam nut 168 also has a threaded hole 174 configured to accept a threaded rod, bolt or screw, which is used to attach an accessory to the second embodiment quad-track beam 156.
Quad-Track Beam Third Exemplary EmbodimentThe corner tubes 232 each have a corner tube cavity 234. The corner tubes 232 are each generally rectangular in shape in cross-section with some rounded corners, but in other embodiments may have circular cross-sections or some other suitable shape. The corner tubes 232 each have at least one exterior side 248 and at least one interior side 246. The corner tubes 232 each have two corner tube lips 236 that each project from one of the interior sides 246 of the corner tube 232 towards an adjacent corner tube 232. Each two corner tubes 232, the corner tube web 238 between them and the corner tube lips 236 adjacent this corner tube web 238, together define a channel cavity 242.
The channel cavity 242 is “T” shaped to accept a jam nut, similar to the jam nut 168 of the second embodiment. The jam nut is configured to be inserted into the channel cavity 242 with its length axis parallel to the length of the channel cavity 242, and then turned so that its length axis is parallel to the width of the channel cavity 242. With a jam nut that has a length that is the same dimension as the width of the channel cavity 242, the jam nut will jam against the corner tubes 232. The jam nut can be used to attach an accessory much in the same way as the strut-nut 140 of the first embodiment or the jam nut 168 of the second embodiment.
Each of the four corner tubes 232 has a corner tube neck 244 projecting from the corner tube 232 towards the center of the rectangular pattern of corner tubes 232. Each corner tube neck 244 connects that corner tube 232 with the two closest corner tube webs 238. Each corner tube neck 244 is relatively thick to facilitate transmittal of torsion force from an adjacent corner tube 232 to the adjacent corner tube webs 238 without undue bending or deformation of the corner tube neck 244. If the corner tube neck 244 is too thin, an accessory cantilevered off of the third embodiment quad-track beam 230 and attached with a jam nut in one of the channel cavities 242 would bend the corner tube 232 above the channel cavity 242 back and away from the channel cavity 242, potentially unseating and releasing the jam nut. To prevent this, each of corner tube necks 244 is at least as thick as half the distance between the adjacent corner tube cavity 234 and the central cavity 240.
To facilitate transmittal of torque about the long axis of the third embodiment quad-track beam 230 without undue twisting, the corner tube webs 238 are relatively thick and as close to the outer edge of the third embodiment quad-track beam 230 as possible. Each corner tube web 238 is at least as thick as half one of the adjacent corner tube necks 244. Each corner tube web 238 is at least closer to the outer edges of the third embodiment quad-track beam 230 than to a center of the central cavity 240. Stated differently, each corner tube web 238 is at least closer to one of the exterior sides 248 one of the corner tubes 232 than to a center of the central cavity 240.
Basic Assemblies and Accessories Using Quad-Track BeamsOne type of accessory that can be joined to a quad-track beam is a channel leg.
The angle bars 264 in the fourth embodiment quad-track beam 260 are made of steel 3/16 inch thick, however in other embodiments, other suitable materials and thicknesses may be used. The angle bars 264 may be a length suitable for constructing workstations. A length of 60 inches is usually suitable, but other lengths may prove to be desirable. The angle bar legs 266 may have a suitable width, such as 1½ inches, but may have other widths. The inter-bar gap 276 may have a suitable width, such as ¾ inches, but may have other widths as well. Length and thickness of the angle bars 264 may be selected based on the situations in which the quad-track beam 260 is intended to be used. Situations that will put more torsion on the quad-track beam 260 may call for thicker angle iron.
In the fourth embodiment quad-track beam 260, the four angle bars 264 are coupled with one or more beam mount brackets 274. Typically, there is one beam mount bracket 274 every 30 inches down the length of the quad-track beam 260, but other spacing may be used. The beam mount bracket 274 is formed in a shape of a rectangular tube. Each of the four corners of the beam mount bracket 274 is nested inside of one of the four angle bars 264 and coupled thereto. The beam mount bracket 274 may be coupled to the four angle bars 264 by welding, by threaded bolts and nuts or some other suitable coupling. In
Bolting of the dual quad-track beam assembly 262 and of the constituent quad-track beams 260 provides a logistical advantage as separate angle bars 264, beam mount brackets 274, and dual beam brace brackets 282 can be stored, shipped and moved more conveniently than fully assembled dual quad-track beam assemblies 262. The dual quad-track beam assembly 262 may be made to any convenient length. A typical configuration would be a dual quad-track beam assembly 262 of 120 inches with dual beam brace brackets 282 at each end and at 30 inch intervals.
Dual Quad-Track Beam Assembly Second Exemplary EmbodimentAs shown in
The single-track beam assembly 316 may be used to provide support for mounting additional accessories to a work station. The single-track beam assembly 316 is not as strong in resisting torsion along its long axis as the quad-track beams, but in situations where no such torsion loads are expected, the single-track beam assembly 316 is a lighter weight alternative. Such situations would include where accessories are only mounted vertically and not cantilevered out sideways.
Dual-Track Beam Assembly Exemplary EmbodimentThe dual-track beam assembly 322 may be used to provide support for mounting additional accessories to a work station. The dual-track beam assembly 322 is stronger than the single-track beam assembly 316, but not as strong as the quad-beam assemblies in resisting torsion along its long axis. However, in situations where no such torsion loads are expected, the dual-track beam assembly 322 is an intermediate weight alternative.
Dual Quad-Track Beam Assembly Application ExamplesThe adjustable accessory brackets 334 each have a bracket tube 338 and a bracket mounting plate 340. The bracket mounting plate 340 couples to the dual quad-track beam assembly 284 using sets of bolts and jam nuts, such as the jam nut 168 shown in
Bracket arm 342 shown in
Claims
1. A quad-track beam comprising:
- four angle bars coupled in parallel lengthwise and in a pattern that is rectangular in cross-section, the pattern having four pattern corners, each of the four angle bars comprising two legs that join at an angle bar corner edge, wherein the angle bar corner edge of each of the four angle bars is in a different one of the four pattern corners and
- wherein the four angle bars are arranged such that for each leg of each of the four angle bars there is an inter-bar gap between that leg and an adjacent one of the legs of an adjacent one of the four angle bars.
2. The quad-track beam of claim 1, further comprising:
- an end plate coupled to ends of the four angle bars.
3. The quad-track beam of claim 1, further comprising:
- a plurality of stiffener plates, each coupling one of the four angle bars to an adjacent one of the four angle bars, each stiffener plate positioned in the inter-bar gap between one of the legs of one of the four angle bars and the adjacent one of the legs of the adjacent one of the four angle bars.
4. The quad-track beam of claim 1, further comprising:
- a beam mount bracket in a shape of a rectangular tube with four bracket corners, wherein each of the four bracket corners is coupled to an inside of one of the four angle bars.
5. The quad-track beam of claim 1, further comprising:
- a cavity defined by the four angle bars; and
- a block of nut-retaining foam positioned within the cavity.
6. A dual quad-track beam comprising:
- two quad-track beams coupled in parallel lengthwise with an inter-beam gap between them; and
- wherein each of the two quad-track beams comprises four angle bars coupled in parallel lengthwise and in a pattern that is rectangular in cross-section, the pattern having four pattern corners, each of the four angle bars comprising two legs that join at an angle bar corner edge, wherein the angle bar corner edge of each of the four angle bars is in a different one of the four pattern corners, wherein the four angle bars are arranged such that for each leg of each of the four angle bars there is an inter-bar gap between that leg and an adjacent one of the legs of an adjacent one of the four angle bars.
7. The dual quad-track beam of claim 6, further comprising:
- an end plate coupled to ends of the two quad-track beams.
8. The dual quad-track beam of claim 6, further comprising:
- a plurality of stiffener plates, each coupling one of the four angle bars of one of the two quad-track beams to an adjacent one of the four angle bars of that beam assembly, each stiffener plate positioned in the inter-bar gap between one of the legs of one of the four angle bars of that beam assembly and the adjacent one of the legs of the adjacent one of the four angle bars of that beam assembly.
9. The dual quad-track beam of claim 6,
- wherein each of the two quad-track beams has a beam mount bracket in a shape of a rectangular tube with four bracket corners, wherein each of the four bracket corners is coupled to an inside of one of the four angle bars of that beam assembly; and
- further comprising a plurality of dual beam brace brackets positioned in the inter-beam gap and coupling the two quad-track beams together.
10. The dual quad-track beam of claim 6,
- wherein each of the two quad-track beams has a cavity defined by the four angle bars of that beam assembly; and
- wherein each of the two quad-track beams has a block of nut-retaining foam positioned within the cavity.
11. A dual quad-track beam cruciform module comprising:
- a plurality of dual quad-track beam assemblies coupled in a cruciform shape;
- wherein each of the dual quad-track beam assemblies comprises two quad-track beams coupled in parallel lengthwise with an inter-beam gap between them; and
- wherein each of the two quad-track beams of each of the dual quad-track beam assemblies comprises four angle bars coupled in parallel lengthwise and in a pattern that is rectangular in cross-section, the pattern having four pattern corners, each of the four angle bars comprising two legs that join at an angle bar corner edge, wherein the angle bar corner edge of each of the four angle bars is in a different one of the four pattern corners, wherein the four angle bars are arranged such that for each leg of each of the four angle bars there is an inter-bar gap between that leg and an adjacent one of the legs of an adjacent one of the four angle bars.
12. The dual quad-track beam cruciform module of claim 11,
- further comprising a center mounting plate; and
- wherein the plurality of dual quad-track beam assemblies comprises four dual quad-track beam assemblies, each coupled to the center mounting plate.
13. The dual quad-track beam cruciform module of claim 11,
- wherein the plurality of dual quad-track beam assemblies comprises one long dual quad-track beam assembly and two short dual quad-track beam assemblies; and
- wherein the two short dual quad-track beam assemblies are coupled to the long dual quad-track beam using sets of jam nuts and threaded screws, each set of jam nut and threaded screw inserted into one of the inter-bar gaps of one of the quad-track beams of the long dual quad-track beam.
14. A single-track beam assembly comprising:
- two single-track beams coupled in parallel lengthwise with an inter-beam gap between them;
- wherein each of the two single track beams comprises two angle bars coupled in parallel lengthwise and in a pattern that is rectangular in cross-section, the pattern having four pattern corners, each of the two angle bars comprising two legs that join at an angle bar corner edge, wherein the angle bar corner edge of each of the two angle bars is in a different one of the four pattern corners;
- wherein the two angle bars are arranged such that for one leg of a first of the two angle bars there is an inter-bar gap between that leg and an adjacent one of the legs of a second of the two angle bars; and
- an end plate coupled to ends of the two angle bars.
15. A dual-track beam assembly comprising:
- two dual-track beams coupled in parallel lengthwise with an inter-beam gap between them;
- wherein each of the two dual track beams comprises two channel bars coupled in parallel lengthwise and in a pattern that is rectangular in cross-section, the pattern having four pattern corners, each of the two channel bars comprising two legs joined to a channel back, wherein the channel back of each of the two channel bars is in a different two of the four pattern corners;
- wherein the two channel bars are arranged such that for each leg of a first of the two channel bars there is an inter-bar gap between that leg and an adjacent one of the legs of a second of the two channel bars; and
- an end plate coupled to ends of the two channel bars.
16. A workstation assembly comprising:
- one or more dual quad-track beam assemblies;
- wherein each of the dual quad-track beam assemblies comprises two quad-track beams coupled in parallel lengthwise with an inter-beam gap between them;
- wherein each of the two quad-track beams of each of the dual quad-track beam assemblies comprises four angle bars coupled in parallel lengthwise and in a pattern that is rectangular in cross-section, the pattern having four pattern corners, each of the four angle bars comprising two legs that join at an angle bar corner edge, wherein the angle bar corner edge of each of the four angle bars is in a different one of the four pattern corners, wherein the four angle bars are arranged such that for each leg of each of the four angle bars there is an inter-bar gap between that leg and an adjacent one of the legs of an adjacent one of the four angle bars;
- a plurality of sets of jam nuts and threaded screws, each set of jam nut and threaded screw inserted into one of the inter-bar gaps of one of the quad-track beams of one of the dual quad-track beam assemblies;
- a plurality of workstation legs, each coupled to one of the dual quad-track beam assemblies; and
- one or more accessory mounts configured for holding one or more accessories, each accessory mount coupled to one of the dual quad-track beam assemblies using one or more of the sets of jam nuts and threaded screws.
17. The workstation assembly of claim 16,
- wherein the one or more dual quad-track beam assemblies further comprises a plurality of dual quad-track beam assemblies coupled in a cruciform shape.
18. The workstation assembly of claim 16, further comprising:
- an end zone bracket configured for holding one or more accessories comprising a back plate coupled to the end of the dual quad-track beam.
19. The workstation assembly of claim 16,
- wherein at least one of the plurality of workstation legs is coupled to one of the dual quad-track beam assemblies using one or more of the sets of jam nuts and threaded screws.
Type: Application
Filed: Apr 3, 2015
Publication Date: Oct 8, 2015
Inventor: Clifford Bollman (Vancouver, WA)
Application Number: 14/678,644