Method and apparatus for erecting wall panels
원문보기
IPC분류정보
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
E04B-002/16
E04B-002/14
출원번호
UP-0138444
(2002-05-02)
등록번호
US-7614191
(2009-11-23)
발명자
/ 주소
Mitchell, Everett Lee
출원인 / 주소
Elward Systems Corporation
대리인 / 주소
Sheridan Ross P.C.
인용정보
피인용 횟수 :
7인용 특허 :
64
초록
The wall panel system of the present invention includes an attachment member that is received in a groove in a panel to align and hold the panel in place on a perimeter framing member.
대표청구항▼
What is claimed is: 1. A wall system, comprising: (a) a first panel having a predetermined groove in a surface thereof, and a peripheral edge; (b) a first perimeter framing member including two opposing surfaces forming a corresponding first pocket for receiving the peripheral edge of the first pan
What is claimed is: 1. A wall system, comprising: (a) a first panel having a predetermined groove in a surface thereof, and a peripheral edge; (b) a first perimeter framing member including two opposing surfaces forming a corresponding first pocket for receiving the peripheral edge of the first panel; and (c) a first attachment member including a first bearing surface and a second bearing surface wherein: (1) the first bearing surface for being received in the predetermined groove in the surface of the first panel, the predetermined groove provided prior to engagement of the first bearing surface with the first panel; (2) the second bearing surface for pressing against a portion (P) of the first perimeter framing member outside of the first pocket; and (3) at least a portion of the first attachment member for extending substantially rigidly from the first bearing surface to the second bearing surface, each of the first and second bearing surfaces contributing to inhibiting the first panel from disengaging from the first pocket. 2. The wall system of claim 1, wherein the first panel includes at least one of wood, plastic, metal, ceramics, masonry, and composites thereof. 3. The wall system of claim 1, wherein the first attachment member has an extent with a predetermined rigidity for inhibiting a deformation of the extent from a predetermined shape; wherein the inhibiting of deformation of the extent operably contributes to the first attachment member remaining in a position where: (i) the first bearing surface is received in the predetermined groove, and (ii) the second bearing surface is pressed against the portion P. 4. The wall system of claim 3, wherein the first attachment member is "L" shaped. 5. The wall system of claim 3, wherein the first panel is folded such that the peripheral edge is offset from a face of the first panel. 6. The wall system of claim 3 further including: (d) a second panel having third and fourth panel surfaces and a groove in the third panel surface; (e) a second perimeter framing member having opposing first and second pocket surfaces for defining a second pocket for receiving a peripheral edge of the second panel; and (f) a second attachment member having a first bearing surface to be received in the groove in the third panel surface, and having a second bearing surface for engaging a portion (Q) of the second perimeter framing member; wherein when the first bearing surface of the second attachment member is received in the groove in the third panel surface, and the second bearing surface of the second attachment member is coupled to the portion Q, the first and second bearing surfaces of the second attachment member contribute to inhibiting the second panel from disengaging from the second pocket; and wherein the first and second perimeter framing members are operably connected together for fixedly positioning the first and second panels adjacent to one another, wherein each of the first and second perimeter framing members is provided as a single unit prior to the first and second perimeter framing members being connected together. 7. The wall system of claim 6, wherein the first and second panels are spaced apart from one another by a channel, and the channel includes opposing first and second sides, each of the first and second sides provided by a different one of the first and second perimeter framing members. 8. The wall system of claim 6, wherein the first and second perimeter framing members movably engage one another. 9. The wall system of claim 6, wherein the second bearing surface of the second attachment member engages a receiving surface of the second perimeter framing member and the receiving surface is located outside of the second pocket. 10. The wall system of claim 6, wherein when the first and second perimeter framing members are operably connected together, each of the first and second pockets are spaced apart from one another by a gap bounded by opposing first and second sides, wherein the first side is exterior to the first pocket of the first perimeter framing member, and the second side is exterior to the second pocket of the second perimeter framing member. 11. The wall system of claim 10, wherein a corresponding surface for defining each of the first pocket and the second pocket is positioned between the first and second attachment members. 12. The wall system of claim 6, wherein for each of the first and second panels, the panel is folded such that a portion of the panel, positioned in a corresponding one of the first pocket and the second pocket, is transverse to a face of the panel. 13. The wall system of claim 6, wherein at least one of the first and second attachment members is metal. 14. The wall system of claim 6, wherein at least one of the first and second attachment members attaches its corresponding one of the first and second perimeter framing members to the corresponding one of the first and second panels after the corresponding panel is positioned within the pocket of the corresponding one of the first and second perimeter framing members. 15. The wall system of claim 6, wherein at least one peripheral edge of one of the first and second panels abuts a back wall of a respective one of the first pocket and the second pocket. 16. The wall system of claim 1, wherein the pocket includes sidewalls that are fixedly spaced apart prior to a securing of the first panel therein. 17. The wall system of claim 1, wherein the first attachment member has an extent with a predetermined rigidity for inhibiting a deformation of the extent from a predetermined shape. 18. The wall system of claim 1, wherein the first attachment member includes an operably non-deformable extent extending from the predetermined groove to a portion outside of the pocket, wherein a persistent force applied to the extent from outside of the pocket maintains the first bearing surface in the predetermined groove; wherein the force is in a direction operably traverse to a direction of the first panel extending out of the pocket. 19. The wall system of claim 18, further including a fastener for operably coupling the first attachment member to the first perimeter framing member, the fastener being effective for pressing the second bearing surface against the portion P of the first perimeter framing member. 20. The wall system of claim 1, wherein the first attachment member induces a substantially greater total force for pressing the first panel against one of the two opposing surfaces of the first pocket, than a total force the first attachment member induces against the other of the two opposing surfaces of the first pocket. 21. The wall system of claim 3, wherein the extent extends from the first bearing surface to the second bearing surface. 22. A wall system, comprising: (a) a panel having a groove in a first panel surface of the panel; (b) a perimeter framing member having two opposing surfaces for forming a pocket for receiving a peripheral edge of the panel; and (c) an attachment member for aligning and maintaining the peripheral edge in the pocket, the attachment member including first and second bearing surfaces, the first bearing surface to be received in the groove in the first panel surface, and the second bearing surface for engaging a surface of the perimeter framing member, wherein at least a portion of the attachment member is to be positioned between: a surface (S) of the opposing surfaces of the pocket, and a surface of the panel; wherein the second bearing surface is received in a groove located outside of the pocket when the panel is engaged with the attachment member. 23. The wall system of claim 22, wherein a surface (S0) that opposes S for forming the pocket is such that S0 contacts a second surface of the panel when the panel is engaged with the attachment member, and the surface S is mostly spaced apart from the panel. 24. The wall system of claim 23, wherein the two opposing surfaces are substantially parallel to one another and to the first panel surface, when the attachment member is engaged with the panel; wherein the attachment member induces a substantially greater total force for pressing the panel against one of the two opposing surfaces of the pocket, than a total force the first attachment member induces against the other of the two opposing surfaces of the pocket. 25. The wall system of claim 22, wherein the panel is folded such that the peripheral edge of the panel is offset from a face of the panel. 26. The wall system of claim 25, wherein the pocket opens towards the face of the panel. 27. A wall system, comprising: (a) a panel having a groove in a first surface of the panel; (b) a perimeter framing member engaging a peripheral edge of the panel, the perimeter framing member having two opposing surfaces for forming a pocket for receiving the peripheral edge of the panel; and (c) an attachment member having a first bearing surface to be received in the groove in the first surface of the panel and a second bearing surface wedging against a surface of the perimeter framing member to align and maintain the panel in the pocket, wherein at least a portion of the attachment member is provided in a predetermined position between: (i) a surface (S) of the opposing surfaces of the pocket, and (ii) a surface of the panel; wherein the second bearing surface is received in a groove located outside of the pocket when the panel is engaged with the attachment member; and (d) a fastener for coupling with the attachment member outside of the pocket, wherein the fastener secures the portion of the attachment member in the predetermined position so that the following are provided: (1) the first bearing surface is held in the groove in the first surface of the panel, (2) the second bearing surface and a portion (P) of the perimeter framing member outside of the pocket are held together, and (3) each of the first and second bearing surfaces contributes to inhibiting the panel from disengaging from the pocket. 28. A method of providing a wall system, comprising: providing a panel having a predetermined groove in a surface thereof, and a peripheral edge; inserting the peripheral edge in a pocket formed by two opposing surfaces of a framing member for the wall system; securing the panel in the pocket using an attachment member having a first bearing surface and a second bearing surface; the securing step including the substeps of: (a) inserting the first bearing surface in the predetermined groove, the predetermined groove provided prior to insertion of the first bearing surface in the pocket; and (b) coupling the second bearing surface with a portion of the framing member outside of the pocket; wherein each of the first and second bearing surfaces contribute to inhibiting the panel from disengaging from the pocket. 29. The method of claim 28, wherein the step of securing includes a step of fastening the attachment member to the framing member with a fastener, wherein the fastener secures the attachment member in a predetermined position so that: (a) there is a first coupling between the first bearing surface and the predetermined groove, (b) there is a second coupling between the second bearing surface and a portion a portion of the framing member outside of the pocket, and (c) at least a portion of the attachment member is operably rigid, and extends from the first bearing surface to the second bearing surface, each of the first and second couplings and the rigidity contributes to inhibiting the panel from disengaging from the pocket. 30. The method of claim 28, wherein the attachment member includes an operably non-deformable extent extending from the predetermined groove to a portion outside of the pocket, further including applying a persistent force applied to the extent from outside of the pocket for maintaining the first bearing surface in the predetermined groove; wherein the force is in a direction operably traverse to a direction of the panel extending out of the pocket. 31. The method of claim 28, further including coupling a fastener to the attachment member and the framing member, the fastener being effective for pressing the second bearing surface against a portion (P) of the framing member outside of the pocket. 32. The method of claim 28, further including a step of inducing by the attachment member, a substantially greater total force for pressing the panel against one of the two opposing surfaces of the pocket, than a total force the attachment member induces against the other of the two opposing surfaces of the pocket.
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