PARAPET BRACKET AND METHOD OF USING THEREOF
A parapet bracket is disclosed that may be mounted on a parapet wall of a roof without the usage of fasteners. The parapet bracket may be used to attach utility pipes to the parapet wall without using fasteners directly on the parapet wall. The parapet bracket may have a short leg, long leg, and a connecting plate between the two legs that form an inverted U-shape. The short leg may be used to hook the parapet bracket on the parapet wall, and the long leg may be used to couple pipes to the parapet bracket. Consequently, the pipes may be mounted to the parapet wall indirectly and without having to pierce the parapet wall with fasteners, such as screws and nails.
The present application is a continuation-in-part of U.S. Patent Application No. 19/064,382, filed February 26, 2025, which is a continuation of U.S. Patent Application No. 18/830,328, filed September 10, 2024, now U.S. Patent No. 12264473, the disclosures of which are incorporated herein by reference in their entireties.
STATEMENT RE: FEDERALLY SPONSORED RESEARCH/DEVELOPMENTNot Applicable
BACKGROUNDThe various aspects and embodiments described herein relate to a parapet bracket and method of using thereof.
Commercial, industrial, and even some residential buildings have roof decks that are surrounded by a vertical parapet wall. Such parapet wall may serve multiple purposes, such as being a protection barrier to prevent people from slipping and falling off the roof. Another purpose of the parapet wall may be to hang components thereon.
Accordingly, there is a need in the art for an improved device, system, and method for utilizing the parapet wall of a roof.
BRIEF SUMMARYThe various embodiments and aspects disclosed herein address the needs discussed above, discussed below and those that are known in the art.
A parapet bracket is disclosed that may be mounted on a parapet wall of a roof without the usage of fasteners that penetrate the parapet wall. The parapet bracket may be used to attach utility pipes (e.g., gas, water, electric) to the parapet wall without using fasteners that penetrate the the parapet wall. As a result, the parapet bracket and the pipes may not leave any markings, holes, or cracks on the parapet wall when they are attached and detached to such wall. The parapet bracket may have a short leg, long leg, and a connecting plate between the short and long legs that form an inverted U-shape. The short leg may be used to hook the parapet bracket on the parapet wall, and the long leg may be used to couple pipes to the parapet bracket. Consequently, the pipes may be mounted to the parapet wall indirectly and without having to pierce the parapet wall with fasteners, such as screws and nails. The connecting plate may come in two parts such that its length may be adjustable to match different thicknesses of different parapet walls. The parapet bracket may also be used to mount other components, such as an electric box, to the parapet wall other than pipes.
In particular, a method of renovating a parapet of a roof and using a parapet bracket to reattach a pipe to the parapet is disclosed that may include removing the pipe from an interior surface of the parapet, the interior surface facing a roof deck of the roof, cleaning the interior surface of the parapet, coating the interior surface of the parapet with a weather-resistant coating, hanging the parapet bracket on the parapet such that a long leg of the parapet bracket hangs vertically along the interior surface of the parapet, a connecting plate of the parapet bracket that is connected to the long leg lays horizontally on a top surface of the parapet, and a short leg of the parapet bracket connected to the connecting plate and opposite to the long leg hangs vertically along an exterior surface of the parapet, the exterior surface being opposite to the interior surface of the parapet, and coupling the pipe to an external surface of the long leg of the parapet bracket, the external surface of the long leg facing away from the parapet.
In some embodiments, the method further includes adjusting the connecting plate to change a bracket spacing between the long and short leg based on a thickness of the parapet before hanging the parapet bracket on the parapet.
In some embodiments, the pipe is coupled to the external surface of the long leg using coupling holes on the long leg of the parapet bracket and also using a pipe hanger and fasteners. In some embodiments, the coupling holes are threaded and the fasteners are screws.
In some embodiments, the pipe is coupled to the external surface of the long leg using rectangular bores on the long leg of the parapet bracket and also using a metal zip tie.
In some embodiments, the connecting plate is a first connecting plate and the parapet bracket has a second connecting plate removably attached on top of the first connecting plate. In some embodiments, wherein the first connecting plate is directly attached to the long leg of the parapet bracket, and the second connecting plate is directly attached to the short leg of the parapet bracket.
Furthermore, a method of attaching a pipe to a parapet using a parapet bracket is disclosed that may include adjusting a bracket spacing between a long leg and a short leg of the parapet bracket by horizontally moving a first connecting plate attached to the long leg relative to a second connecting plate attached to the short leg, the bracket spacing being greater than or equal to a thickness of the parapet, hanging the parapet bracket on the parapet such that the long leg of the parapet bracket hangs vertically along an interior surface of the parapet facing a roof deck, the first and second connecting plates of the parapet bracket lay horizontally on a top surface of the parapet, and the short leg of the parapet bracket hangs vertically along an exterior surface of the parapet, the exterior surface being opposite to the interior surface of the parapet, and coupling the pipe to an external surface of the long leg of the parapet bracket using a plurality of coupling holes on a column of coupling holes on the long leg of the parapet bracket, the external surface of the long leg facing away from the parapet.
In some embodiments, the method further includes inserting a flexible membrane between the parapet bracket and the parapet.
In some embodiments, the first connecting plate has a first set of teeth structures along a length of the first connecting plate, and the second connecting plate has a second set of teeth structures along a length of the second connecting plate, the first and second set of teeth structures configured to engage each other after adjusting the bracket spacing to be greater than or equal to the thickness of the parapet. In some embodiments, the first connecting plate has a first plurality of fastening holes along the length of the first connecting plate, and the second connecting plate has a second plurality of fastening holes along the length of the second connecting plate. In some embodiments, the first and second connecting plates are fastened to each other using the first and second plurality of fastening holes after adjusting the bracket spacing between the long leg and the short leg of the parapet bracket.
In some embodiments, the plurality of coupling holes are threaded and screws are used to couple the pipe to the external surface of the long leg.
In some embodiments, a metal zip tie is used with the plurality of coupling holes to couple the pipe to the external surface of the long leg.
Additionally, a parapet bracket for hanging a pipe to a parapet of a roof is disclosed that may include a long leg having a column of coupling holes, the long leg configured to hang vertically along an interior surface of the parapet facing a roof deck of the roof, a first connecting plate orthogonally attached to the long leg and configured to lay horizontally on a top surface of the parapet, the first connecting plate having a first set of teeth structures extending along a length of the first connecting plate, a short leg being shorter than the long leg and configured to hang vertically along an exterior surface of the parapet that is opposite to the interior surface of the parapet, and a second connecting plate orthogonally attached to the short leg and configured to lay horizontally on the top surface of the parapet, the second connecting plate having a second set of teeth structures extending along a length of the second connecting plate, the second set of teeth structures configured to face the first set of teeth structures of the first connecting plate, wherein the first and second connecting plates are configured to move longitudinally relative to each other to define a bracket spacing between the long leg and the short leg, the bracket spacing being greater than or equal to a thickness of the parapet, wherein the first set of teeth structures are configured to engage the second set of teeth structures to keep the first and second connecting plates stationary relative to each other after creating the bracket spacing.
In some embodiments, the first connecting plate has a first plurality of fastening holes along the length of the first connecting plate, and the second connecting plate has a second plurality of fastening holes along the length of the second connecting plate. In some embodiments, the first and second connecting plates are configured to be fastened to each other using the first and second plurality of fastening holes to affix the first and second connecting plates to each other.
In some embodiments, the column of coupling holes has threaded coupling holes.
In some embodiments, the parapet bracket is made from stainless steel. In some embodiments, the long leg is welded to the first connecting plate and the short leg is welded to the second connecting plate.
These and other features and advantages of the various embodiments disclosed herein will be better understood with respect to the following description and drawings, in which like numbers refer to like parts throughout, and in which:
Referring now to the figures, a parapet bracket 100 and a method of using thereof is disclosed. As shown in
The rooftops of commercial, industrial, and even some residential buildings may have vertical parapet walls 102 surrounding horizontal roof decks 103. Conventionally, and as shown in
Additionally, the direct attachment of pipes 106 to the parapet 102 may void the warranty of material used when constructing or renovating the parapet 102. By way of example, and as shown in
To avoid the aforementioned problems created by directly fastening pipes 106 to the parapet 102, one or more parapet brackets 100 (see
Ultimately, mounting the one or more pipes 106 to the parapet bracket 100 that is hung on the parapet wall 102 may prevent damaging the parapet wall 102. The pipes 106 may be removed from the parapet bracket 100 without damaging the parapet 102. Also, the parapet bracket 100 may be removed from the parapet 102 without damaging such vertical wall. As described elsewhere herein, the parapet brackets 100 may also be used to mount other components, such as an electric box 502 shown in
With reference to
The short leg 206 may act as a hooking structure for the bracket 100 to latch and hang onto the parapet wall 102. The long leg 202 may have a column of coupling holes 210 that allow the pipes 106 to be fastened to the long leg 202. The connecting plate 204 may balance the bracket 100 on top of the parapet 102 and along the parapet thickness 110 (see
With further reference to
The length 220 of the connecting plate 204 (see
The utility pipes 106 may be mounted on the outer surface 214 of the parapet bracket 100 and specifically to the long leg 202. One or more hangers, fasteners, and straps may be used to mount a pipe 106 to the long leg 202 of the parapet bracket 100. By way of example and not limitation, the long leg 202 may have a column of coupling holes 210 extending vertically along the long leg 202. As a result, the vertical positioning of the pipe 106 along the long leg 202 may be adjustable. By way of example and not limitation, the pipe 106 may be enclosed on the outer surface 214 of the long leg 202 by a pipe hanger 108 (see
In another example, and as shown in
In some examples, a flexible membrane 426 (see
Referring now to
As shown in
The bottom side of the top connecting plate 204a may have adjustment teeth 302a, and the top side of the bottom connecting plate 204b may have corresponding adjustment teeth 302b. The adjustment teeth 302a and the corresponding adjustment teeth 302b may be configured to engage each other and interlock the first and second parts 300a-b of the parapet bracket 100. The two sets of adjustment teeth 302a-b may zigzag along the lengths of the top and bottom connecting plates 204a-b, respectively. By way of example and not limitation, the adjustment teeth 302a-b of the of the top and bottom connecting plates 204a-b may be gear teeth similar to a gear rack. The two sets of adjustment teeth 302a-b may prevent the top and bottom connecting plates 204a-b to slide lengthwise against each other once the bracket spacing 306 is adjusted to the desired length.
The top connecting plate 204a may have a plurality of adjustment holes 304a extending through its thickness, and the adjustment holes 304a may be symmetrically distributed along the length of the top connecting plate 204a. Also, the bottom connecting plate 204b may have a plurality of corresponding adjustment holes 304b extending through its thickness, and the corresponding adjustment holes 304b may be symmetrically distributed along the length of the bottom connecting plate 204b. The adjustment holes 304a-b may be used to affix and clamp down the first and second parts 300a-b of the parapet bracket 100 when the bracket spacing 306 is widened or narrowed to the desired length. As such, the first and second parts 300a-b of the parapet bracket 100 may not slide sideways apart from each other. By way of example and not limitation, the two sets of adjustment holes 304a-b may be threaded such that one or more screws may be used to fasten the top and bottom connecting plates 204a-b together. By way of example and not limitation, bolts and nuts may be used to fasten the top and bottom connecting plates 204a-b together using the two sets of adjustment holes 304a-b thereon, respectively.
To adjust the bracket spacing 306 of
The dimensions of the different components of the parapet bracket 100 will now be discussed. By way of example and not limitation, the long leg 202 of the parapet bracket 100 may have a height 218 (see
By way of example and not limitation, the short leg 206 of the parapet bracket 100 may have a height 222 (see
As shown in
As shown in
As shown in
By way of example and not limitation, the long leg 202, connecting plate 204, and short leg 206 may each be separate metal plates that are welded together. The long leg 202 and the connecting plate 204 may be welded together orthogonally at the first connection edge 208a to form an L-shape together. The short leg 206 and the connecting plate 204 may be welded together orthogonally at the second connection edge 208b to form a second L-shape together. The two L-shapes may be in the same direction to form the inverted U-shape, where the short leg 206 is shorter than the long leg 202. Welding metal plates to form the parapet bracket 100 may allow for using stronger and sturdier material. By way of example and not limitation, the parapet bracket 100 and its components may be made from stainless steel. In other examples, the parapet bracket 100 and its components may be made from other steel alloys.
Alternatively, a long metal strip may be bent to create the inverted U-shape of the parapet bracket 100. A long strip of metal may be bent twice orthogonally towards each other to create the first and second connection edges 208a-b. The long leg 202, connecting plate 204, and short leg 206 may also be defined by such two orthogonal bending. By way of example and not limitation, the parapet bracket 100 and its components may be made from mild steel or aluminum alloy. In other examples, the parapet bracket may be made from a rigid polymer material and may also be manufactured using a 3D printer.
Referring now to
In block 602, the method 600 renovates the parapet wall 102 that the mounting bracket 100 will be attached thereto. The method 600 may renovate the parapet wall 102 since there may exist cracks and holes in such wall that may have been caused by the improper mounting of pipes 106 to the parapet 102, as described elsewhere herein and shown in
After cleaning the parapet 102, a coating layer 112 (see
In other example, block 602 may pertain to constructing new parapet walls 102 instead of renovating old ones. The pipes 106 may still need to be attached to the newly constructed parapets 102 using the parapet brackets 100 to ensure no cracks are created in the walls. The material used for construction of the parapet 102, including coating layer 112, may also have factory warranty. During construction of new parapet 102, the structure may still need to be cleaned and spray washed to apply the coating layer 112.
In block 604, the method 600 adjusts the parapet bracket 100 to fit the parapet wall 102. Block 604 may only apply to parapet brackets 100 that have adjustable bracket spacing 306 (see
In block 604, the connecting plate 204a attached to the long leg 202 may be traversed lengthwise relative to the connecting plate 204b attached to the short leg 206 to narrow or widen the bracket spacing 306. The bracket spacing 306 may be narrowed and widened based on how thick the parapet thickness 110 (see
By way of example and not limitation, bracket spacing 306 may be adjusted to have a length between six and 12 inches to fit the size of the parapet thickness 110. In other examples, the bracket spacing 306 may be adjusted to have a length greater than 12 inches or less than six inches. By way of example and not limitation, the bracket spacing 306 may be adjusted such that there exists a snug fit or clearance fit between the opposing surfaces 104a-b of the parapet 102 and the inner surfaces 216 of the long and short legs 202, 206 of the parapet bracket 100. By way of example, there may exist a clearance in the range of 1/32 to 3/4 inches between the legs 202, 206 and the surfaces 104a-b of the parapet 102, which may mean that the bracket spacing 306 of the connecting plate 204 may be greater than the parapet thickness 110 by 1/32 to 3/4 inches. In other examples, the clearance may be greater than 3/4 inches. After the bracket spacing 306 is adjusted based on parapet thickness 110, the connecting plate 204a of the long leg 202 may be secured to the connecting plate 204b of the short leg 206 so that the two separate parts 300a-b of the parapet bracket 100 are affixed to each other and the bracket spacing 306 does not change.
In block 606, the method 600 mounts the parapet bracket 100 to the parapet wall 102. The parapet bracket 100 may be hang on the parapet 102 such that the inner surface 216 of the connecting plate 204 is placed on a top surface of the parapet 102 and horizontally along the parapet thickness 110. The inner surface 216 of the long leg 202 may touch and lay vertically on the interior surface 104a of the parapet 102, where the long leg 202 provides a column of coupling holes 210 to attach pipes 106 thereon. The inner surface 216 of the short leg 206 may touch and lay vertically on the exterior surface 104b of the parapet 102, where the short leg 206 may act as a hooking mechanism that keeps the parapet bracket 100 attached to the parapet. In the mounted position, the parapet bracket 100 may remain static and fixed in place relative to the parapet 102. However, the parapet bracket 100 may be conveniently removable from the parapet 102 since no fasteners are used to affix the parapet bracket 100 to the parapet wall 102. As described elsewhere herein, the weight of the pipes 106 that may be attached to the parapet bracket 100 may help keep the bracket 100 static relative to the parapet 102.
When mounting the parapet bracket 100 on the parapet wall 102, a flexible membrane 426 (see
In block 608, the method 600 secures the pipes 106 to the parapet bracket 100. By way of example and not limitation, the side of a pipe 106 may be placed between two coupling holes 210 and at a desired height on the long leg 202 of the parapet bracket 100. The side of the pipe 106 on the long leg 202 may be enclosed on the leg using a pipe hanger 108 (see
Alternatively, the pipe 106 may be mounted to the parapet bracket 100 using a metal zip tie 402 and two rectangular bores 226 on the long leg 202 of the bracket, as described elsewhere herein. The side of the pipe 106 may be placed between two rectangular bores 226 at a desired height on the long leg 202 of the bracket 100. The metal strip 408 of the metal zip tie 402 may be wrapped around the pipe 106, inserted in the two rectangular bores 226, and tightened to hold the pipe 106 in place at the desired height. The tightened metal strip 408 may be locked into place using the locking head 410 of the zip tie 402.
The weight of the pipe 106, which may be hundreds of pounds, may keep the parapet bracket 100 stationary and affixed to the parapet 102 since such downward force is being applied on the bracket. However, the parapet bracket 100 may conveniently be detached from the parapet 102 when the pipes 106 are detached from the parapet bracket 100 since no fasteners or securing means is used to affix the bracket to the parapet wall. As shown in
Referring now to
The plate making up the long leg 702 may have a T-shape. The upper portion 708 of the long leg 702 may extend laterally from the right and left sides of the center vertical strip of the long leg 702 having the coupling holes 710. Consequently, a T-shape may be formed where the two connecting plates 704a-b having the two short legs 706a-b may extend from the opposite ends of the T-shape. At the opposite ends of the upper portion 708, and to the right and left of the center vertical portion of the long leg 702, two connecting plates 704a-b may extend forward horizontally. One connecting plate 704a-b may extend from each opposite ends of the upper portion 708. The connecting plates 704a-b may each have short legs 706a-b extending downwards therefrom, where the short legs 706a-b may act as hook structures.
The parapet bracket 700 of
Referring now to
The two long legs 702a-b may be connected to each other at their top and bottom. A top lateral extension 708a may extend between and connect the long legs 702a-b, and a bottom lateral extension may extend between and also connect the long legs 702a-b. As a result, the parapet bracket 701 may have an overall rectangular plate shape with a rectangular hole about its center and two connecting plates 704a-b, having the two short legs 706a-b, extending from top corner edges of the rectangular plate. The two columns of coupling holes 710 may also extend vertically along the side-length of the rectangular plate shape. The parapet bracket 701 of
The insertable connecting plate 801a may be directly attached to the long leg 202 and the hollow connecting plate 801b may be directly attached to the short leg 206, or vice versa. To adjust the bracket spacing 306, the insertable connecting plate 801a may slide within the cavity of the hollow connecting plate 801b to widen or narrow the bracket spacing 306 to the desired length. When the desired bracket spacing 306 is achieved, the insertable connecting plate 801a may be secured to the hollow connecting plate 801b, as described elsewhere herein.
Referring now to
To adjust bracket spacing 306, the insertable connecting plate 801a may slide in or out of the hollow connecting plate 801b to achieve the desired length. At the desired length of the bracket spacing 306, the fastening bores 804a-b on the insertable and hollow connecting plates 801a-b may align with each other. This may be because the parapet thickness 110, which the brackets spacing 306 may equal to such thickness, may follow a standardized dimension for constructing buildings and be predetermined. When the fastening bores 804a-b on the insertable and hollow connecting plates 801a-b align with each other at the adjusted bracket spacing 306, fasteners may be used with the fastening bores to secure the two connecting plates to each other. Such fasteners may be as described elsewhere herein. By way of example and not limitation, the fastening bore 804a on the insertable connecting plate 801a may be threaded such that screws may be used to secure such plate to the hollow connecting plate 801b.
Referring now to
Referring now to
Referring now to
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Referring now to
As shown in
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As shown in
The method 600 described elsewhere herein with respect to
At block 606, the bracket 1200, with the bracket spacing 306 set to the appropriate width, may be mounted to the parapet wall 102. The inner surface 216 of the connecting plate 204 may be placed on the top surface of the parapet wall 102, with the long leg 202 hanging vertically along and against the interior surface 104a of the parapet wall 102, and the short leg 206 hanging vertically along and against the exterior surface 104b of the parapet wall 102. No fasteners that penetrate the parapet wall 102 are needed to mount the bracket 1200. At block 608, utility pipes 106 or other components may be secured to the outer surface 214 of the long leg 202 using the coupling holes 210 and pipe hangers 108 with fasteners, as described elsewhere herein, or using metal zip ties 402, as described elsewhere herein. The weight of the attached pipes 106 may further assist in keeping the bracket 1200 stationary on the parapet wall 102 without the use of fasteners penetrating the parapet wall 102.
It is also contemplated that the parapet bracket 100, including the embodiments described herein, may be manufactured and sold as a fixed-width device having a single, predetermined bracket spacing 306 that is not adjustable in the field. A fixed-width parapet bracket 100 may have a single, unitary connecting plate 204 — rather than two sliding connecting plate portions — permanently set to a specific bracket spacing 306 corresponding to a particular parapet wall thickness 110. By way of example and not limitation, fixed-width brackets 100 may be produced in standardized bracket spacings 306 of six inches, eight inches, ten inches, twelve inches, eighteen inches, twenty-four inches, or other standard dimensions corresponding to parapet wall thicknesses 110 commonly specified in commercial and residential construction. Similarly, fixed-width brackets 100 may be produced with a long leg 202 of standardized heights 218, such as twelve inches or twenty-four inches, to accommodate different installation requirements. Multiple combinations of fixed bracket spacings 306 and leg heights 218 may be stocked as standard product offerings.
Multiple fixed-width brackets 100 having different bracket spacings 306 and leg heights 218 may be stocked and made available for sale to contractors, roofers, and other customers, so that a user may select and purchase the bracket 100 that matches or closely approximates the thickness 110 of the parapet wall 102 and the leg height required for the particular job site. Stocking a range of fixed-width bracket sizes may simplify installation by eliminating the need to measure and adjust the bracket spacing 306 in the field, and may reduce manufacturing cost since the adjustable connecting plate mechanism is not required. In some examples, a contractor or distributor may maintain an inventory of multiple fixed-width bracket sizes and select the appropriate size upon assessing the parapet thickness 110 and the required leg height 218 at the job site. In other examples, a contractor may use the extension piece 1230 of
The above description is given by way of example, and not limitation. Given the above disclosure, one skilled in the art could devise variations that are within the scope and spirit of the invention disclosed herein. Further, the various features of the embodiments disclosed herein can be used alone, or in varying combinations with each other and are not intended to be limited to the specific combination described herein. Thus, the scope of the claims is not to be limited by the illustrated embodiments.
Claims
1. A method of renovating a parapet of a roof and using a parapet bracket to reattach a pipe to the parapet, comprising:
- removing the pipe from an interior surface of the parapet, the interior surface facing a roof deck of the roof;
- cleaning the interior surface of the parapet;
- coating the interior surface of the parapet with a weather-resistant coating;
- hanging the parapet bracket on the parapet such that a long leg of the parapet bracket hangs vertically along the interior surface of the parapet, a connecting plate of the parapet bracket that is connected to the long leg lays horizontally on a top surface of the parapet, and a short leg of the parapet bracket connected to the connecting plate and opposite to the long leg hangs vertically along an exterior surface of the parapet, the exterior surface being opposite to the interior surface of the parapet; and
- coupling the pipe to an external surface of the long leg of the parapet bracket, the external surface of the long leg facing away from the parapet.
2. The method of claim 1, further comprising adjusting the connecting plate to change a bracket spacing between the long and short leg based on a thickness of the parapet before hanging the parapet bracket on the parapet.
3. The method of claim 1, wherein the pipe is coupled to the external surface of the long leg using coupling holes on the long leg of the parapet bracket and also using a pipe hanger and fasteners.
4. The method of claim 3, wherein the coupling holes are threaded and the fasteners are screws.
5. The method of claim 1, wherein the pipe is coupled to the external surface of the long leg using rectangular bores on the long leg of the parapet bracket and also using a metal zip tie.
6. The method of claim 1, wherein the connecting plate is a first connecting plate and the parapet bracket has a second connecting plate removably attached on top of the first connecting plate.
7. The method of claim 6, wherein the first connecting plate is directly attached to the long leg of the parapet bracket, and the second connecting plate is directly attached to the short leg of the parapet bracket.
8. A method of attaching a pipe to a parapet using a parapet bracket, comprising:
- adjusting a bracket spacing between a long leg and a short leg of the parapet bracket by horizontally moving a first connecting plate attached to the long leg relative to a second connecting plate attached to the short leg, the bracket spacing being greater than or equal to a thickness of the parapet;
- hanging the parapet bracket on the parapet such that the long leg of the parapet bracket hangs vertically along an interior surface of the parapet facing a roof deck, the first and second connecting plates of the parapet bracket lay horizontally on a top surface of the parapet, and the short leg of the parapet bracket hangs vertically along an exterior surface of the parapet, the exterior surface being opposite to the interior surface of the parapet; and
- coupling the pipe to an external surface of the long leg of the parapet bracket using a plurality of coupling holes on a column of coupling holes on the long leg of the parapet bracket, the external surface of the long leg facing away from the parapet.
9. The method of claim 8, further comprising inserting a flexible membrane between the parapet bracket and the parapet.
10. The method of claim 8, wherein the first connecting plate has a first set of teeth structures along a length of the first connecting plate, and the second connecting plate has a second set of teeth structures along a length of the second connecting plate, the first and second set of teeth structures configured to engage each other after adjusting the bracket spacing to be greater than or equal to the thickness of the parapet.
11. The method of claim 10, wherein the first connecting plate has a first plurality of fastening holes along the length of the first connecting plate, and the second connecting plate has a second plurality of fastening holes along the length of the second connecting plate.
12. The method of claim 11, wherein the first and second connecting plates are fastened to each other using the first and second plurality of fastening holes after adjusting the bracket spacing between the long leg and the short leg of the parapet bracket.
13. The method of claim 8, wherein the plurality of coupling holes are threaded and screws are used to couple the pipe to the external surface of the long leg.
14. The method of claim 8, wherein a metal zip tie is used with the plurality of coupling holes to couple the pipe to the external surface of the long leg.
15. A parapet bracket for hanging a pipe to a parapet of a roof, comprising: wherein the first and second connecting plates are configured to move longitudinally relative to each other to define a bracket spacing between the long leg and the short leg, the bracket spacing being greater than or equal to a thickness of the parapet; wherein the first set of teeth structures are configured to engage the second set of teeth structures to keep the first and second connecting plates stationary relative to each other after creating the bracket spacing.
- a long leg having a column of coupling holes, the long leg configured to hang vertically along an interior surface of the parapet facing a roof deck of the roof;
- a first connecting plate orthogonally attached to the long leg and configured to lay horizontally on a top surface of the parapet, the first connecting plate having a first set of teeth structures extending along a length of the first connecting plate;
- a short leg being shorter than the long leg and configured to hang vertically along an exterior surface of the parapet that is opposite to the interior surface of the parapet; and
- a second connecting plate orthogonally attached to the short leg and configured to lay horizontally on the top surface of the parapet, the second connecting plate having a second set of teeth structures extending along a length of the second connecting plate, the second set of teeth structures configured to face the first set of teeth structures of the first connecting plate;
16. The parapet bracket of claim 15, wherein the first connecting plate has a first plurality of fastening holes along the length of the first connecting plate, and the second connecting plate has a second plurality of fastening holes along the length of the second connecting plate.
17. The parapet bracket of claim 16, wherein the first and second connecting plates are configured to be fastened to each other using the first and second plurality of fastening holes to affix the first and second connecting plates to each other.
18. The parapet bracket of claim 15, wherein the column of coupling holes has threaded coupling holes.
19. The parapet bracket of claim 15, wherein the parapet bracket is made from stainless steel.
20. The parapet bracket of claim 19, wherein the long leg is welded to the first connecting plate and the short leg is welded to the second connecting plate.
Type: Application
Filed: Mar 31, 2026
Publication Date: Aug 6, 2026
Inventor: Craig John Cechini (Laguna Hills, CA)
Application Number: 19/634,506