IP Library Granted Patent US 8,708,103
Granted Patent B2
US 8,708,103 · App. 12/396,675 · Granted Apr 29, 2014

Joints for a stand

Inventor: Dan Bulley (British Columbia, CA)
Assignee: Quick Products, Inc.
B25H1/06
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Quick Facts
Patent No.
US 8,708,103
App. No.
12/396,675
Granted
Apr 29, 2014
Kind
B2
Abstract

An interconnect structure of a support apparatus. The interconnect structure includes a channel configured to receive a portion of a cross member. The interconnect structure further includes a pair of openings oriented relative opposite sides of the channel, each opening configured to receive a leg member of the support apparatus. The interconnect structure is a single-piece structure.

Claims (30)

1. An interconnect structure for a stand having a crossbeam, the interconnect structure comprising:

a pair of top walls;

a front wall extending from the top walls;

a rear wall spaced from the front wall and extending from the top walls, the distance between the front and rear walls establishing the entire depth dimension of the interconnect structure, the rear wall comprising the same shape configuration as the front wall; and

a channel comprising a pair of inner side walls spaced apart and connected by a support surface, the support surface extending from the front wall to the rear wall and configured to be elevationally below and supporting the crossbeam; and

wherein the pair of the top walls is planar and wherein the support surface of the channel is planar, the pair of the top walls is not parallel with the support surface.

2. The interconnect structure of claim 1 wherein the front wall is a planar structure and wherein the rear wall is a planar structure parallel to the front wall.

3. The interconnect structure of claim 1 wherein the top walls are coplanar structures and wherein the support surface comprises a planar upper surface that extends at an angle relative the planar top walls.

4. The interconnect structure of claim 1 wherein the support surface comprises openings configured to receive fasteners.

5. The interconnect structure of claim 1 wherein the support surface comprises a planar lowermost surface spaced from a planar uppermost surface, the lowermost surface extends at an angle relative to the uppermost surface.

6. The interconnect structure of claim 1 wherein the support surface comprises first thickness adjacent one of the rear and front walls and a second thickness adjacent the other of the rear and front walls, the first thickness being different relative the second thickness.

7. The interconnect structure of claim 1 further comprising spaced receptacles configured to receive legs of the stand, the respective receptacles terminate at bottom portions of the top walls, the receptacles configured to receive uppermost portions of the legs adjacent the bottom portions of the top walls.

8. The interconnect structure of claim 1 wherein the front wall is planar and comprises an entirety of the front-most periphery of the interconnect structure, and wherein the rear wall is planar and comprises an entirety of the rear-most periphery of the interconnect structure.

9. The interconnect structure of claim 1 wherein the support surface comprises a thickness, and wherein, as the support surface extends between the front and rear walls, the support surface increases in thickness.

10. The interconnect structure of claim 1 wherein the channel is defined by the support surface and the inner side walls extending upwardly from opposite edges of the support surface, at least one inner side wall comprising a recess.

11. The interconnect structure of claim 1 wherein the channel is defined by the support surface and the inner side walls extending upwardly from opposite edges of the support surface, at least one inner side wall comprising a ridge portion and a recess portion.

12. An interconnect structure for a stand having a crossbeam, the interconnect structure comprising:

a pair of top walls;

a front wall extending from the top walls;

a rear wall spaced from the front wall and extending from the top walls, the distance between the front and rear walls establishing the entire depth dimension of the interconnect structure, the rear wall comprising the same shape configuration as the front wall;

a channel comprising a pair of inner side walls spaced apart and connected by a support surface, the support surface extending from the front wall to the rear wall and configured to be elevationally below and supporting the crossbeam; and

wherein the top walls are coplanar structures and wherein the support surface comprises a planar upper surface that extends at an angle relative the planar top walls.

13. The interconnect structure of claim 12 wherein the front wall is a planar structure and wherein the rear wall is a planar structure parallel to the front wall.

14. The interconnect structure of claim 12 wherein the support surface comprises openings configured to receive fasteners.

15. The interconnect structure of claim 12 wherein the support surface comprises a planar lowermost surface spaced from a planar uppermost surface, the lowermost surface extends at an angle relative to the uppermost surface.

16. The interconnect structure of claim 12 wherein the support surface comprises first thickness adjacent one of the rear and front walls and a second thickness adjacent the other of the rear and front walls, the first thickness being different relative the second thickness.

17. The interconnect structure of claim 12 further comprising spaced receptacles configured to receive legs of the stand, the respective receptacles terminate at bottom portions of the top walls, the receptacles configured to receive uppermost portions of the legs adjacent the bottom portions of the top walls.

18. The interconnect structure of claim 12 wherein the front wall is planar and comprises an entirety of the front-most periphery of the interconnect structure, and wherein the rear wall is planar and comprises an entirety of the rear-most periphery of the interconnect structure.

19. The interconnect structure of claim 12 wherein the support surface comprises a thickness, and wherein, as the support surface extends between the front and rear walls, the support surface increases in thickness.

20. The interconnect structure of claim 12 wherein the channel is defined by the support surface and the inner side walls extending upwardly from opposite edges of the support surface, at least one inner side wall comprising a recess.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 18, 2009
From: BULLEY, DAN
To: QUICK PRODUCTS INC.
Reel/Frame 022698/0686 →
Continuity (1)
Related Publication 20100224446A1 · Sep 9, 2010