Bracket assembly including a fiber reinforced polymer bracket having a backer and method of use thereof
US-2023134969-A1 · May 4, 2023 · US
US12359770B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12359770-B2 |
| Application number | US-202318518140-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 22, 2023 |
| Priority date | Nov 22, 2022 |
| Publication date | Jul 15, 2025 |
| Grant date | Jul 15, 2025 |
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A system for assembling a bracket assembly comprising a base, a coupling guide block, at least one bracket support block and at least one backer guide block. The coupling guide block is coupled to the base and includes a bracket receiving bore on one side and at least one backer receiving bore on an opposite side. The at least one bracket support bracket is coupled to the base and spaced apart from a first side of the coupling guide block. The at least one backer guide block is coupled to the base and spaced apart from a second side of the coupling guide block. Methods are likewise disclosed.
Opening claim text (preview).
What is claimed is: 1. A coupling guide block attachable to a base, the coupling guide block comprising: a body having a first end and a second end; a bracket receiving bore having an entry region at the first end of the body and extending toward the second end of the body, the bracket receiving bore structurally configured to receive an end of a bracket member therewithin; and a backer receiving bore having an entry region at the second end of the body and extending toward the first end of the body, the backer receiving bore meeting the bracket receiving bore between the first end and the second end of the body at a mating region, the backer receiving bore having at least one backer bore region configured to receive an end of a backer that is slidably attachable to the bracket member; wherein the maintaining of the bracket within the bracket receiving bore while inserting the backer into the backer receiving bore directs the bracket into slidable engagement with the bracket member. 2. The coupling guide block of claim 1 wherein the backer receiving bore includes a first backer bore region and a second backer bore region that is spaced apart from the first backer bore region, the first backer bore region structurally configured to receive a first backer therewithin for slidable coupling with the bracket and the second backer bore region structurally configured to receive a second backer therewithin for slidable coupling with the bracket. 3. The coupling guide block of claim 1 wherein the mating region includes a bracket stop wall corresponding to the bracket receiving bore and an insert opening corresponding to the backer receiving bore, the bracket stop wall precluding further insertion of the bracket into the body of the coupling guide block, and the insert opening configured to align with a portion of the bracket structurally configured to receive the backer. 4. The coupling guide block of claim 1 wherein the first end and the second end are substantially parallel to each other. 5. The coupling guide block of claim 1 further including a first flange extending from a first side of the body and a second flange extending from a second side of the body, the first and second flanges positioned proximate a base of the body so as to overly the base. 6. The coupling guide block of claim 5 wherein each of the first flange and the second flange include a plurality of openings, structurally configured to receive a fastener therethrough. 7. The coupling guide block of claim 5 wherein the first flange and the second flange span between the first end and the second end of the body and are substantially perpendicular to each of the first end and the second end. 8. The coupling guide block of claim 1 wherein the backer receiving bore includes an entry region that inwardly tapers to a transition region that further inwardly tapers to an end region. 9. The coupling guide block of claim 8 wherein, at the end region, the backer receiving bore includes a central channel having an upper transverse channel and a lower transverse channel opposite the upper transverse channel, the upper and lower transverse channels being substantially perpendicular to the central channel therebetween. 10. A system for assembling a bracket comprising: the coupling guide block of claim 1 ; at least one bracket support block positioned in a spaced apart orientation from the first end of the coupling guide block, each of the at least one bracket support blocks comprising a body with an upper surface defining a profile, the profile substantially corresponding to at least a portion of the bracket positionable thereon, the profile aligning with the bracket receiving bore of the coupling guide block; and at least one backer guide block positioned in a spaced apart orientation from the second end of the coupling guide block, each of the at least one backer guide block comprising a body having at least one insert guide member defining a channel to receive the backer member therealong, the channel aligning with the backer receiving bore of the coupling guide block. 11. The system of claim 10 wherein the at least one insert guide member comprises a first insert guide member and a second insert guide member, the backer receiving bore including a first backer bore region and a second backer bore region, the first insert guide member defining a first channel that is aligned with the first backer bore region and the second insert guide member defining a second channel that is aligned with the second backer bore region. 12. The system of claim 10 wherein the at least one bracket support block comprises at least three backer bore support blocks positioned in an aligned and spaced apart orientation. 13. The system of claim 12 wherein the at least one backer guide block comprises at least three backer guide blocks positioned in an aligned and spaced apart orientation. 14. The system of claim 10 wherein the backer is one of manually directed and directed through automation along the at least one backer support block and through the coupling guide block into the slidable engagement with the bracket. 15. The system of claim 10 wherein the at least one channel of the backer guide block is configured in one of a “U” shaped configuration and a “C” shaped configuration. 16. A method of assembling a bracket with a backer comprising the steps of: providing a system of claim 10 ; providing a bracket member; providing a backer member; placing the bracket member on the at least one bracket support block; slidably directing the bracket member into the bracket receiving bore of the coupling guide block; placing the backer member in the at least one channel of the at least one backer block; slidably directing the backer member into the backer receiving bore of the coupling guide block; and continuing to slide the backer member through the receiving bore and into slidable engagement with the bracket, while maintaining the bracket within the bracket receiving bore. 17. The method of claim 16 wherein the step of slidably directing the bracket member further comprises the step of slidably directing the bracket member until the bracket member reaches the mating region. 18. The method of claim 16 further comprising the steps of: providing a second backer member; placing the backer member in a second channel of the at least one backer block; slidably directing the second backer member into a second backer receiving bore region of the coupling guide block; and continuing to slide the second backer member through the second backer receiving bore region of the coupling guide block and into slidable engagement with the bracket, while maintaining the bracket within the bracket receiving bore. 19. The method of claim 18 wherein the step of continuing to slide the backer member and the step of continuing to slide the second bracket member occur simultaneously. 20. The method of claim 16 wherein the step of continuing to slide can occur manually or through automation.
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