IP Library Granted Patent US 9,476,508
Granted Patent B2
US 9,476,508 · App. 14/657,520 · Granted Oct 25, 2016

Valve assembly having improved rotational feel

Inventors: David H. Ritter (Kohler, WI); Chad J. Cochart (Sheboygan, WI); Douglas J. Brouwer (Sheboygan, WI); Christopher M. Shay (Fredonia, WI); Brian S. Core (Fond du Lac, WI); Michael W. Smith (Plymouth, WI)
Assignee: KOHLER CO.
F16K3/08B23P15/001E03C1/0403F16K3/0236Y10T29/4941Y10T137/598Y10T137/7504Y10T137/86743Y10T137/86751Y10T137/88054Y10T137/9029Y10T137/9464
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Quick Facts
Patent No.
US 9,476,508
App. No.
14/657,520
Granted
Oct 25, 2016
Kind
B2
Abstract

A valve assembly includes a valve housing having an internal generally cup-shaped bore, a valve control cartridge inserted into the bore and having a rotatable control stem extending upwardly therefrom, and a bonnet nut having a through-bore. The bonnet nut is threaded to the valve housing such that the control stem extends through the through-bore. Flexible fingers are provided along the through-bore to control a level of resistance to a rotation of the rotatable control stem. The stem is positioned to frictionally engage the flexible fingers as the stem is rotated.

Claims (27)

1. A valve assembly, comprising:

a valve housing having an internal generally cup-shaped bore;

a valve control cartridge inserted into the bore and having a rotatable control stem extending upwardly therefrom; and

a bonnet nut having a through-bore and a counterbore axially aligned with the through-bore, the bonnet nut coupled to the valve housing such that the control stem extends through the through-bore;

wherein the valve control cartridge is received in the counterbore;

wherein flexible fingers are provided along the through-bore and along a surface between, and perpendicular to, the counterbore and the through-bore to control a level of resistance to a rotation of the rotatable control stem; and

wherein the control stem is positioned to frictionally engage the flexible fingers as the control stem is rotated.

2. The valve assembly of claim 1 , wherein the bonnet nut is threaded to an internal wall of the valve housing.

3. The valve assembly of claim 2 , wherein the valve housing comprises internal threads and the bonnet nut comprises external threads, the external threads of the bonnet nut engaging the internal threads of the valve housing.

4. The valve assembly of claim 1 , wherein the valve control cartridge includes a valve cartridge housing that is received in the bore of the valve housing and in the counterbore.

5. The valve assembly of claim 4 , wherein the flexible fingers are also provided along the counterbore.

6. The valve assembly of claim 4 , further comprising an o-ring located in a groove of the control stem and configured to seal between the valve control cartridge and the control stem.

7. The valve assembly of claim 1 , wherein the flexible fingers are formed of an elastomeric material.

8. The valve assembly of claim 1 , wherein the bonnet nut is coupled to the valve housing via bayonet mounting.

9. The valve assembly of claim 1 ,

wherein the valve control cartridge includes one or more tabs configured to rotationally align and fix the valve control cartridge in relation to the bore of the valve housing.

10. The valve assembly of claim 9 , wherein the bonnet nut is threaded to an internal wall of the valve housing.

11. The valve assembly of claim 10 , wherein the valve housing comprises internal threads and the bonnet nut comprises external threads, the external threads of the bonnet nut engaging the internal threads of the valve housing.

12. The valve assembly of claim 9 , wherein the flexible fingers are formed of an elastomeric material.

13. The valve assembly of claim 9 , wherein the bonnet nut is coupled to the valve housing via bayonet mounting.

14. The valve assembly of claim 4 , wherein the valve control cartridge further comprises a stationary disk and a moveable disk in the valve cartridge housing, the moveable disk configured to move relative to the stationary disk between a first position preventing fluid flow between an inlet port and an outlet port and a second position permitting fluid flow from the inlet port to the outlet port.

15. The valve assembly of claim 14 , wherein the control stem is configured to move the moveable disk.

16. The valve assembly of claim 15 , wherein the valve control cartridge further comprises a disk adapter provided between the control stem and the moveable disk, wherein the control stem is configured to rotate the disk adapter upon rotation of the control stem, and wherein the disk adapter is configured to rotate the moveable disk upon rotation of the disk adapter.

17. The valve assembly of claim 16 , wherein the control stem has a foot that engages a slot in the disk adapter to rotatably drive the disk adapter as the control stem is rotated.

18. The valve assembly of claim 16 , wherein the disk adapter includes a pair of axially downwardly extending tabs that engage tab cutouts of the moveable disk to rotatably drive the moveable disk as the disk adapter is rotated.

19. The valve assembly of claim 14 , wherein each of the stationary disk and the moveable disk includes a ceramic material.

20. The valve assembly of claim 19 , wherein the moveable disk has a pair of recesses separated by a wall on a face that is in contact with the stationary disk.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 19, 2015
From: RITTER, DAVID H.; COCHART, CHAD J.; BROUWER, DOUGLAS J.; SHAY, CHRISTOPHER M.; CORE, BRIAN S.; SMITH, MICHAEL W.
To: KOHLER CO.
Reel/Frame 035209/0249 →
Continuity (4)
Continuation 13660913 · Oct 25, 2012
Division 12358696 · Jan 23, 2009
Provisional Application 61023917 · Jan 28, 2008
Related Publication 20150184757A1 · Jul 2, 2015