IP Library Granted Patent US 9,107,548
Granted Patent B2
US 9,107,548 · App. 13/994,840 · Granted Aug 18, 2015

Toilet seat hinge assembly

Inventors: Joseph Hand (Sheboygan Falls, WI); Brian L. Le Mahieu (Sheboygan, WI); Brian A. Henne (Plymouth, WI); Randall Grebel (Plymouth, WI)
Assignee: Bemis Manufacturing Company
A47K13/12F16B13/128A47K13/26F16B33/00
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Quick Facts
Patent No.
US 9,107,548
App. No.
13/994,840
Granted
Aug 18, 2015
Kind
B2
Abstract

A hinge assembly for mounting a toilet seat to a toilet bowl includes a hinge post, a threaded fastener extending through the hinge post and configured to extend into a bore in the toilet bowl, a bushing positioned around a portion of the threaded fastener, and a nut threadably coupled to the threaded fastener. The nut includes an expandable section configured to extend into the bore in the toilet bowl. The nut has a surface that is engaged by a surface of the bushing so that the expandable section of the nut expands as the nut moves relative to the threaded fastener to secure the hinge post to the toilet bowl.

Claims (48)

1. A hinge assembly for mounting a toilet seat to a toilet bowl, the hinge assembly comprising:

a hinge post;

a threaded fastener extending through the hinge post and configured to extend into a bore in the toilet bowl;

a bushing positioned around a portion of the threaded fastener; and

a nut threadably coupled to the threaded fastener, the nut including an expandable section configured to extend into the bore in the toilet bowl, the expandable section defining at least two slots that divide the expandable section into two axially extending segments to facilitate expansion of the nut;

wherein the nut has a surface that is engaged by a surface of the bushing so that the expandable section of the nut expands as the nut moves relative to the threaded fastener to secure the hinge post to the toilet bowl; and

wherein each axially extending segment has an upper end that is obliquely angled relative to a longitudinal axis of the nut such that one side of each segment is relatively shorter than an opposite side of each segment.

2. The hinge assembly of claim 1 , wherein the nut is generally cylindrical and has an outer diameter configured to be smaller than an inner diameter of the bore in the toilet bowl when the expandable section is not expanded.

3. The hinge assembly of claim 1 , wherein the nut includes a threaded inner surface that engages the threaded fastener, and wherein the surface of the nut that is engaged by the bushing is an unthreaded inner surface of the expandable section.

4. The hinge assembly of claim 1 , wherein the expandable section of the nut is located at the upper end of the nut.

5. The hinge assembly of claim 1 , wherein the surface of the bushing that engages the nut includes a frustoconical lower surface, and wherein the frustoconical lower surface enters the expandable section of the nut as the nut moves relative to the threaded fastener.

6. The hinge assembly of claim 5 , wherein the bushing includes a rib, and wherein the rib fits within one of the at least two slots of the nut to inhibit the nut from rotating relative to the bushing.

7. The hinge assembly of claim 6 , wherein the rib extends from the frustoconical lower surface of the bushing.

8. The hinge assembly of claim 1 , wherein the bushing is a separate component from the hinge post.

9. The hinge assembly of claim 8 , wherein the hinge post defines an opening and includes an upper surface that surrounds the opening, and wherein the bushing includes a flange that is supported by the upper surface of the hinge post over the opening.

10. The hinge assembly of claim 9 , wherein the hinge post is movable relative to the threaded fastener and the bushing to adjust a position of the hinge post on the toilet bowl.

11. The hinge assembly of claim 10 , wherein the hinge post includes a first series of teeth formed on the upper surface, wherein the flange of the bushing includes a lower surface and a second series of teeth formed on the lower surface, and wherein the first series of teeth engages the second series of teeth to inhibit movement of the hinge post relative to the bushing when the threaded fastener is tightened.

12. The hinge assembly of claim 1 , wherein the bushing includes a plurality of projections extending radially outward therefrom, wherein the plurality of projections is configured to engage an inner surface of the bore in the toilet bowl, and wherein at least some of the plurality of projections are configured to deform as the bushing is inserted into the bore in the toilet bowl to conform to the shape of the bore.

13. The hinge assembly of claim 1 , further comprising an adaptor having a first segment coupled to the threaded fastener, a second segment, and a shear segment connecting the first and second segments, wherein the first and second segments are both configured to be engaged by a tool to rotate the threaded fastener, and wherein the shear segment has a lower torque resistance than the first and second segments such that the shear segment breaks when a torque applied to the second segment reaches a predetermined amount.

14. The hinge assembly of claim 1 , wherein the hinge post defines an opening, and wherein the nut has an outer diameter that, before the expandable section is expanded, is smaller than the opening in the hinge post such that the nut is insertable through the opening with the threaded fastener and the bushing.

15. The hinge assembly of claim 13 , wherein the threaded fastener includes a bolt having a head, and wherein the head is fit into the adaptor such that the first segment of the adaptor surrounds the head.

16. A fastener assembly comprising:

a threaded fastener having a first end portion and a second end portion;

an adaptor having a first segment coupled to the first end portion of the threaded fastener to inhibit rotation of the adaptor relative to the threaded fastener, a second segment, and a shear segment connecting the first and second segments, the first and second segments both configured to be engaged by a tool to rotate the threaded fastener, the shear segment having a lower torque resistance than the first and second segments such that the shear segment breaks when a torque applied to the second segment reaches a predetermined amount;

a nut threadably coupled to the second end portion of the threaded fastener; and

a bushing positioned around a portion of the threaded fastener between the adaptor and the nut;

wherein one of the nut and the bushing includes an expandable section, and wherein the expandable section has a surface that is engaged by a surface of the other of the nut and the bushing so that the expandable section expands as the nut moves relative to the threaded fastener; and

wherein the threaded fastener includes a bolt having a head at the first end portion, and wherein the head is fit into the adaptor such that the first segment of the adaptor surrounds the head.

17. The fastener assembly of claim 16 , wherein the surface of the other of the nut and the bushing that engages the expandable section includes a frustoconical surface, and wherein the frustoconical surface enters the expandable section as the nut moves relative to the threaded fastener.

18. The fastener assembly of claim 17 , wherein the expandable section defines at least two slots to facilitate expansion of the one of the nut and the bushing.

19. The fastener assembly of claim 18 , wherein the at least two slots divide the expandable section into at least two axially extending segments, and wherein the at least two axially extending segments deflect radially outward as the nut moves relative to the threaded fastener.

20. The hinge assembly of claim 19 , wherein each axially extending segment has an end that is obliquely angled relative to a longitudinal axis of the nut such that one side of each segment is relatively shorter than an opposite side of each segment.

21. The fastener assembly of claim 18 , wherein the other of the nut and the bushing includes a rib, and wherein the rib fits within one of the at least two slots to inhibit the nut from rotating relative to the bushing.

22. The fastener assembly of claim 21 , wherein the rib extends from the frustoconical surface of the other of the nut and the bushing.

23. The fastener assembly of claim 16 , wherein the bushing includes a flange.

24. The fastener assembly of claim 16 , wherein the bushing includes a plurality of projections extending radially outward therefrom, and wherein at least some of the plurality of projections are configured to deflect as the bushing is inserted into a bore to conform to the shape of the bore.

25. The fastener assembly of claim 16 , wherein the nut is generally cylindrical.

26. A hinge assembly for mounting a toilet seat to a toilet bowl, the hinge assembly comprising:

a hinge post defining an opening and including an upper surface that surrounds the opening;

a threaded fastener extending through the opening of the hinge post and configured to extend into a bore in the toilet bowl, the threaded fastener having a first end portion and a second end portion;

an adaptor having a first segment coupled to the first end portion of the threaded fastener, a second segment, and a shear segment connecting the first and second segments, the first and second segments both configured to be engaged by a tool to rotate the threaded fastener, the shear segment having a lower torque resistance than the first and second segments such that the shear segment breaks when a torque applied to the second segment reaches a predetermined amount;

a bushing positioned around a portion of the threaded fastener, the bushing having a flange and a lower section configured to extend into the bore in the toilet bowl, the flange supported by the upper surface of the hinge post over the opening, the lower section having an outer diameter that is smaller than the opening in the hinge post such that the hinge post is movable relative to the threaded fastener and the bushing to adjust a position of the hinge post on the toilet bowl; and

a nut threadably coupled to the second end portion of the threaded fastener, the nut including an expandable upper section configured to extend into the bore in the toilet bowl;

wherein the nut has a surface that is engaged by a surface of the bushing so that the expandable section of the nut expands as the nut moves relative to the threaded fastener to secure the hinge post to the toilet bowl; and

wherein the nut has an outer diameter that, before the expandable section is expanded, is smaller than the opening in the hinge post such that the nut is insertable through the opening with the threaded fastener and the bushing.

27. The hinge assembly of claim 26 , wherein the expandable upper section of the nut defines at least two slots that divide the expandable upper section into two axially extending segments to facilitate expansion of the nut.

28. The hinge assembly of claim 27 , wherein each axially extending segment has an upper end that is obliquely angled relative to a longitudinal axis of the nut such that one side of each segment is relatively shorter than an opposite side of each segment.

29. The hinge assembly of claim 26 , wherein the threaded fastener includes a bolt having a head at the first end portion, and wherein the head is fit into the adaptor such that the first segment of the adaptor surrounds the head.

Assignments (2)
SECURITY INTEREST Recorded Jan 26, 2021
From: BEMIS MANUFACTURING COMPANY; BIOBIDET INNOVATION LLC
To: BMO HARRIS BANK N.A.
Reel/Frame 055123/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 29, 2013
From: HAND, JOSEPH; LE MAHIEU, BRIAN L.; HENNE, BRIAN A.; GREBEL, RANDALL
To: BEMIS MANUFACTURING COMPANY
Reel/Frame 030897/0457 →
Continuity (5)
Continuation In Part PCTUS2011065315 · Dec 16, 2011
Provisional Application 61451708 · Mar 11, 2011
Provisional Application 61514209 · Aug 2, 2011
Provisional Application 61550155 · Oct 21, 2011
Related Publication 20130340154A1 · Dec 26, 2013