IP Library › Granted Patent US 8,678,658
Granted Patent B2
US 8,678,658 · App. 13/245,549 · Granted Mar 25, 2014

Tilting pad bearing

Inventors: Nigel H. New (Harrow, GB); Guy Pethybridge (High Wycombe, GB)
Assignee: Waukesha Bearings Corporation
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Quick Facts
Patent No.
US 8,678,658
App. No.
13/245,549
Granted
Mar 25, 2014
Kind
B2
Abstract

A tilting pad bearing comprises a piston carrier ring that may include a plurality of voids spaced around the piston carrier ring, wherein a channel may be formed in a surface of the piston carrier ring opposite the plurality of voids. A carrier end plate may be positioned in the channel and secured to the piston carrier ring, wherein a recess may be formed in a top surface of the carrier end plate. A piston may be positioned in each void, wherein a bottom face of each piston is positioned adjacent the recess. The pistons may be substantially secured in the voids using a plurality of membranes, wherein one membrane corresponds to one piston and one void. Alternatively, the pistons may be formed in two pieces secured via a membrane. Each piston may be engaged with a bearing pad and/or interface member in a bearing pad carrier ring.

Claims (38)

1. A tilting pad bearing comprising:

a. a piston carrier ring with a plurality of voids distributed circumferentially around said piston carrier ring, wherein a channel is formed in a surface of said piston carrier ring opposite said plurality of voids;

b. a carrier end plate positioned in said channel and cooperating with said piston carrier ring, wherein a recess is formed in a top surface of said carrier end plate;

c. a plurality of pistons distributed circumferentially around said piston carrier ring, wherein one of each said pistons is positioned in one of each said voids, and wherein a bottom face of each said piston is positioned toward said recess;

d. a plurality of membranes distributed circumferentially around said piston carrier ring, wherein one of each said membranes is positioned adjacent to a corresponding said piston and void, and wherein each said membrane is configured to flexibility secure said corresponding piston in said corresponding void;

e. a plurality of bearing pads distributed circumferentially around said piston carrier ring, wherein one of each said bearing pads is positioned adjacent a top face of a corresponding piston.

2. The tilting pad bearing according to claim 1 wherein said tilting pad bearing further comprises a fluid, wherein said fluid is positioned between said plurality of membranes and said carrier end plate top surface.

3. The tilting pad bearing according to claim 1 wherein an interface between said piston and a corresponding bearing pad is further defined as a non-pivoting interface.

4. The tilting pad bearing according to claim 1 wherein said carrier end plate and said piston carrier ring are configured such that the relative positions thereof are substantially fixed.

5. The tilting pad bearing according to claim 1 wherein said plurality pistons and said plurality of membranes cooperate with said piston carrier ring to form a plurality of interstitial spaces.

6. The tilting pad bearing according to claim 5 wherein said plurality of interstitial spaces is further defined as being hermetically sealed from an external environment.

7. The tilting pad bearing according to claim 6 wherein said piston carrier ring further comprises a fill aperture and a corresponding plug, wherein said fill aperture is in fluid communication with at least one said interstitial space and said recess in said carrier end plate.

8. A tilting pad bearing comprising:

a. a piston carrier ring, said piston carrier ring comprising:

i. a void formed in said piston carrier ring, wherein said void includes an annular lip extending radially inward from said piston carrier ring;

ii. a channel formed in a surface of said piston carrier ring opposite said void;

b. a carrier end plate positioned in said channel and secured to said piston carrier ring, wherein a recess is formed in a top surface of said carrier end plate such that said recess is adjacent said void;

c. a piston positioned in said void, said piston comprising:

i. a top face opposite said carrier end plate;

ii. a bottom face adjacent said carrier end plate;

iii. a piston shoulder intermediate said top and bottom faces;

iv. a relief formed adjacent said piston shoulder and extend to said bottom face;

d. a membrane cooperating with said lip and said piston shoulder, wherein said membrane allows a predetermined amount of axial and rotational relative motion between said piston and said piston carrier ring;

e. a bearing pad cooperating with said top face of said piston; and

f. a retaining plate cooperating with said piston carrier ring.

9. The tilting pad bearing according to claim 8 wherein said tilting pad bearing further comprises:

a. a second void formed in said piston carrier ring;

b. a second piston positioned in said second void, said second piston comprising:

i. a top face opposite said carrier end plate;

ii. a bottom face adjacent said carrier end plate;

iii. a piston shoulder intermediate said top and bottom faces;

iv. a relief formed adjacent said piston shoulder and extend to said bottom face;

c. a second membrane cooperating with said lip and said second piston shoulder, wherein said second membrane allows a predetermined amount of axial and radial relative motion between said second piston and said piston carrier ring, and wherein an interstitial space between said piston bottom face and said carrier end plate top surface is in fluid communication with a second interstitial space between said second piston bottom face and said carrier end plate top surface via said recess in said carrier end plate.

10. The tilting pad bearing according to claim 9 wherein an interface between said top face of said piston and said bearing pad is further defined as a non-pivoting interface.

11. The tilting pad bearing according to claim 9 wherein said carrier end plate and said piston carrier ring are configured such that the relative positions thereof are substantially fixed.

12. The tilting pad bearing according to claim 9 wherein said piston and said membrane cooperate with said piston carrier ring to form an interstitial space.

13. The tilting pad bearing according to claim 12 wherein said interstitial space is further defined as being hermetically sealed from an external environment.

14. The tilting pad bearing according to claim 13 wherein said piston carrier ring further comprises a fill aperture and a corresponding plug, wherein said fill aperture is in fluid communication with said interstitial space and said recess in said carrier end plate.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 23, 2012
From: NEW, NIGEL H., MR.
To: WAUKESHA BEARINGS CORPORATION
Reel/Frame 028612/0361 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 26, 2012
From: PETHYBRIDGE, GUY, MR.
To: WAUKESHA BEARINGS CORPORATION
Reel/Frame 028110/0436 →
Continuity (9)
Continuation In Part 12962430 · Dec 7, 2010
Continuation 11787146 · Apr 13, 2007
Continuation 13245549
Continuation In Part 11998279 · Nov 29, 2007
Continuation In Part 12793983 · Jun 4, 2010
Continuation In Part 13005997 · Jan 13, 2011
Provisional Application 61217989 · Jun 8, 2009
Provisional Application 61386054 · Sep 24, 2010
Related Publication 20120020598A1 · Jan 26, 2012