Patent · US5228785A · A · US
Stepped foil journal foil bearing
- (11) Publication number
- US5228785A
- (21) Application number
- 07/883,235
- (22) Filing date
- 1992-05-07
- (30) Priority date
- 1990-12-20
- (43) Publication date
- 1993-07-20
- (45) Date of grant
- 1993-07-20
- (51) IPC
- F16C 17/12
- (52) CPC
- F16C Shafts; flexible shafts; elements or crankshaft mechanisms; rotary bodies other than gearing elements; bearings: 17/024, 2300/22, 33/101, 43/02
- (73) Assignee
- AlliedSignal Inc
- (72) Inventors
- Marshall P. Saville; Alston L. Gu
- (54) Title
- Stepped foil journal foil bearing
- (57) Abstract
A journal bearing including a plurality of individual foils mounted to one of a pair of relatively rotatable members, and a plurality of undersprings which provide resilient support for the foils. The foils include a transition area defined for example by a step, adjacent the trailing edge of the preceding foil. The use of the stepped foil optimizes the geometry of the air gap profile, and thereby increases the load capacity of the journal foil bearing.
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Claims (11)
- A foil bearing foil element: said foil element being of fine-dimension pliable sheet material and having a thickness, an axial width, and a circumferential length; said foil element being generally arcuate in the circumferential direction and including an overlappable portion and an adjacent portion adapted to overlap a like foil element; said adjacent and overlappable portions being of like circumferential extent and differing arcuate radius; said foil element further including a step-like transition portion connecting said overlappable and adjacent portions and being of from 5% to 15% of the circumferential extent of the latter.
- The foil element of claim 1 wherein the overlappable and adjacent portions have a common axial width.
- A journal foil bearing comprising: a bushing member; a shaft member arranged for unidirectional relative rotation within said bushing member; a compliant foil assembly disposed between said shaft and bushing members, said foil assembly including a plurality of circumferentially evenly arrayed and overlapping like arcuate foil elements mounted to said bushing member, each foil element being of fine-dimension sheet material having a thickness and extending with a uniform axial width circumferentially between said shaft and bushing members, each foil element defining a surface portion having a circumferential dimension and confronting said shaft and in operation of said bearing defining an operating clearance therewith, and also including an overlapping portion and an overlapped portion respectively overlapping and overlapped by next adjacent foil elements of said plurality of foil elements, and a transition portion connecting said overlapped and overlapping portions; each foil element at said transition portion thereof defining a step-like discontinuity so that said transition portion connects overlapped and overlapping portions of said foil element and has a circumferential dimension which is from 5% to 15% inclusive of the circumferential dimension of said surface portion; wherein said discontinuity is one of arcuate curvature, said transition portion having a radial dimension substantially equal to said thickness; and wherein each of the foil elements has a uniform axial width over its entire circumferential length.
- The foil bearing of claim 3 wherein said transition portion has a radial dimension of from 0.0025 cm to and including and 0.05 cm.
- The foil bearing of claim 3 wherein said overlapping portion and said overlapped portion have a differing arcuate radius according to the radial dimension of said transition portion.
- The foil bearing of claim 3 wherein said transition surface is converging with said shaft in the direction of shaft rotation between said overlapped and said overlapping foil portions.
- A journal foil bearing comprising: a bushing member; a shaft member arranged for unidirectional relative rotation within said bushing member; a compliant foil assembly disposed between said shaft and bushing members, said foil assembly including a plurality of circumferentially evenly arrayed and overlapping like arcuate foil elements mounted to said bushing member, each foil element being of fine-dimension sheet material having a thickness and extending with a uniform axial width circumferentially between said shaft and bushing members, each foil element defining a surface portion confronting said shaft and in operation of said bearing defining an operating clearance therewith, and also including an overlapping portion and an overlapped portion respectively overlapping and overlapped by next adjacent foil elements of said plurality of foil elements, and a transition portion connecting said overlapped and overlapping portions; each foil element at said transition portion thereof defining a step-like discontinuity so that said transition portion connects overlapped and overlapping portions of said foil element and presents to said shaft a transition surface which is from 5% to 15% inclusive of the circumferential dimension of said surface portion; wherein said discontinuity is one of foil thickness, said foil elements each defining an axial groove opening radially outwardly on said transition portion, whereby said groove provides a structurally weakened zone of increased pliability connecting said overlapped and overlapping portions.
- The foil bearing of claim 7 wherein said axial groove has a radial depth of about one-half said thickness and a circumferential width of from one-half to three times said thickness.
- A journal foil bearing comprising: a bushing member; a shaft member arranged for unidirectional relative rotation within said bushing member; a compliant foil assembly disposed between said shaft and bushing members, said foil assembly including a plurality of circumferentially evenly arrayed like arcuate foil elements mounted to said bushing member, each foil element being of fine-dimension sheet material having a thickness and extending with a uniform axial width circumferentially between said shaft and bushing members, each foil element defining a surface portion confronting said shaft and in operation of said bearing defining an operating clearance therewith, and also including an overlapping portion and an overlapped portion respectively overlapping and overlapped by next adjacent foil elements of said plurality of foil elements, and a transition portion connecting said overlapped and overlapping portions; each foil element at said transition portion thereof defining a step-like discontinuity so that said transition portion extends between overlapped and overlapping portions of said foil and presents to said shaft a transition surface which is from 5% to 15% inclusive of the circumferential dimension of said surface portion; wherein said discontinuity is one of foil thickness, said foil elements being of two-part construction with cooperating radially inner compliant portions and radially outer and stiffer spacer portions, said radially inner portion of each foil element having a circumferential extent in the direction of shaft rotation which is less than the circumferential extent of its respective spacer portion, said radially inner portion terminating in an edge defining a leading edge of said transition portion, and said spacer portion defining a radially inwardly disposed surface which defines said transition surface beyond said terminating edge of said radially inner portion.
- The foil bearing of claim 9 wherein each foil element radially inner portion also includes a leading edge overlapping with the spacer portion of the preceding foil, each foil radially inner portion leading edge defining the trailing edge of said transition surface of the preceding foil element.
- The foil bearing of claim 9 wherein said radially inner compliant portion and said radially outer spacer portion each have respective thickness dimensions, these thickness dimensions being related by a ratio in the range of from 1.2:1 to 2:1.
Description
This is a continuation-in-part application from application Ser. No. 07/631,604, filed Dec. 20, 1990, now abandoned.
Process fluid or gas bearings are utilized in a number of diverse applications. These fluid bearings generally comprise two relatively movable elements with a predetermined spacing therebetween filled with a fluid such as air, which, under dynamic conditions, form between converging relatively moving surfaces a supporting fluid pressure wedge sufficient to prevent contact between the two relatively movable elements.
Improved fluid bearings, particularly gas bearings of the hydrodynamic type, have been developed by providing foils in the space between the relatively movable bearing elements. Such foils, which are generally thin pliable, fine-dimension sheets of a compliant material, are deflected by the hydrodynamic film forces between adjacent bearing surfaces and the foils thus enhance the hydrodynamic characteristics of the fluid bearings and also provide improved operation under extreme load conditions when normal bearing failure might otherwise occur. Additionally, these foils provide the added advantage of accommodating eccentricity of the relatively movable elements and further provide a cushioning and dampening effect.
The ready availability of relatively clean process fluid or ambient atmosphere as the bearing fluid makes these hydrodynamic, fluid film lubricated, bearings particularly attractive for high speed rotating machinery.
Citations (15)
- US3615121A
- US3893733A
- US4153315A
- US4178046A
- US4195395A
- US4229054A
- US4348066A
- US4415280A
- US4616388A
- US4451163A
- US4475824A
- US4552466A
- US4818123A
- US4950089A
- EP0375001A1
Record as JSON
{
"publication_number": "US5228785A",
"country": "US",
"kind": "A",
"title": "Stepped foil journal foil bearing",
"abstract": "A journal bearing including a plurality of individual foils mounted to one of a pair of relatively rotatable members, and a plurality of undersprings which provide resilient support for the foils. The foils include a transition area defined for example by a step, adjacent the trailing edge of the preceding foil. The use of the stepped foil optimizes the geometry of the air gap profile, and thereby increases the load capacity of the journal foil bearing.",
"claims": [
"1. A foil bearing foil element: said foil element being of fine-dimension pliable sheet material and having a thickness, an axial width, and a circumferential length; said foil element being generally arcuate in the circumferential direction and including an overlappable portion and an adjacent portion adapted to overlap a like foil element; said adjacent and overlappable portions being of like circumferential extent and differing arcuate radius; said foil element further including a step-like transition portion connecting said overlappable and adjacent portions and being of from 5% to 15% of the circumferential extent of the latter.",
"2. The foil element of claim 1 wherein the overlappable and adjacent portions have a common axial width.",
"3. A journal foil bearing comprising: a bushing member; a shaft member arranged for unidirectional relative rotation within said bushing member; a compliant foil assembly disposed between said shaft and bushing members, said foil assembly including a plurality of circumferentially evenly arrayed and overlapping like arcuate foil elements mounted to said bushing member, each foil element being of fine-dimension sheet material having a thickness and extending with a uniform axial width circumferentially between said shaft and bushing members, each foil element defining a surface portion having a circumferential dimension and confronting said shaft and in operation of said bearing defining an operating clearance therewith, and also including an overlapping portion and an overlapped portion respectively overlapping and overlapped by next adjacent foil elements of said plurality of foil elements, and a transition portion connecting said overlapped and overlapping portions; each foil element at said transition portion thereof defining a step-like discontinuity so that said transition portion connects overlapped and overlapping portions of said foil element and has a circumferential dimension which is from 5% to 15% inclusive of the circumferential dimension of said surface portion; wherein said discontinuity is one of arcuate curvature, said transition portion having a radial dimension substantially equal to said thickness; and wherein each of the foil elements has a uniform axial width over its entire circumferential length.",
"4. The foil bearing of claim 3 wherein said transition portion has a radial dimension of from 0.0025 cm to and including and 0.05 cm.",
"5. The foil bearing of claim 3 wherein said overlapping portion and said overlapped portion have a differing arcuate radius according to the radial dimension of said transition portion.",
"6. The foil bearing of claim 3 wherein said transition surface is converging with said shaft in the direction of shaft rotation between said overlapped and said overlapping foil portions.",
"7. A journal foil bearing comprising: a bushing member; a shaft member arranged for unidirectional relative rotation within said bushing member; a compliant foil assembly disposed between said shaft and bushing members, said foil assembly including a plurality of circumferentially evenly arrayed and overlapping like arcuate foil elements mounted to said bushing member, each foil element being of fine-dimension sheet material having a thickness and extending with a uniform axial width circumferentially between said shaft and bushing members, each foil element defining a surface portion confronting said shaft and in operation of said bearing defining an operating clearance therewith, and also including an overlapping portion and an overlapped portion respectively overlapping and overlapped by next adjacent foil elements of said plurality of foil elements, and a transition portion connecting said overlapped and overlapping portions; each foil element at said transition portion thereof defining a step-like discontinuity so that said transition portion connects overlapped and overlapping portions of said foil element and presents to said shaft a transition surface which is from 5% to 15% inclusive of the circumferential dimension of said surface portion; wherein said discontinuity is one of foil thickness, said foil elements each defining an axial groove opening radially outwardly on said transition portion, whereby said groove provides a structurally weakened zone of increased pliability connecting said overlapped and overlapping portions.",
"8. The foil bearing of claim 7 wherein said axial groove has a radial depth of about one-half said thickness and a circumferential width of from one-half to three times said thickness.",
"9. A journal foil bearing comprising: a bushing member; a shaft member arranged for unidirectional relative rotation within said bushing member; a compliant foil assembly disposed between said shaft and bushing members, said foil assembly including a plurality of circumferentially evenly arrayed like arcuate foil elements mounted to said bushing member, each foil element being of fine-dimension sheet material having a thickness and extending with a uniform axial width circumferentially between said shaft and bushing members, each foil element defining a surface portion confronting said shaft and in operation of said bearing defining an operating clearance therewith, and also including an overlapping portion and an overlapped portion respectively overlapping and overlapped by next adjacent foil elements of said plurality of foil elements, and a transition portion connecting said overlapped and overlapping portions; each foil element at said transition portion thereof defining a step-like discontinuity so that said transition portion extends between overlapped and overlapping portions of said foil and presents to said shaft a transition surface which is from 5% to 15% inclusive of the circumferential dimension of said surface portion; wherein said discontinuity is one of foil thickness, said foil elements being of two-part construction with cooperating radially inner compliant portions and radially outer and stiffer spacer portions, said radially inner portion of each foil element having a circumferential extent in the direction of shaft rotation which is less than the circumferential extent of its respective spacer portion, said radially inner portion terminating in an edge defining a leading edge of said transition portion, and said spacer portion defining a radially inwardly disposed surface which defines said transition surface beyond said terminating edge of said radially inner portion.",
"10. The foil bearing of claim 9 wherein each foil element radially inner portion also includes a leading edge overlapping with the spacer portion of the preceding foil, each foil radially inner portion leading edge defining the trailing edge of said transition surface of the preceding foil element.",
"11. The foil bearing of claim 9 wherein said radially inner compliant portion and said radially outer spacer portion each have respective thickness dimensions, these thickness dimensions being related by a ratio in the range of from 1.2:1 to 2:1."
],
"description_excerpt": "This is a continuation-in-part application from application Ser. No. 07/631,604, filed Dec. 20, 1990, now abandoned.\n\nProcess fluid or gas bearings are utilized in a number of diverse applications. These fluid bearings generally comprise two relatively movable elements with a predetermined spacing therebetween filled with a fluid such as air, which, under dynamic conditions, form between converging relatively moving surfaces a supporting fluid pressure wedge sufficient to prevent contact between the two relatively movable elements.\n\nImproved fluid bearings, particularly gas bearings of the hydrodynamic type, have been developed by providing foils in the space between the relatively movable bearing elements. Such foils, which are generally thin pliable, fine-dimension sheets of a compliant material, are deflected by the hydrodynamic film forces between adjacent bearing surfaces and the foils thus enhance the hydrodynamic characteristics of the fluid bearings and also provide improved operation under extreme load conditions when normal bearing failure might otherwise occur. Additionally, these foils provide the added advantage of accommodating eccentricity of the relatively movable elements and further provide a cushioning and dampening effect.\n\nThe ready availability of relatively clean process fluid or ambient atmosphere as the bearing fluid makes these hydrodynamic, fluid film lubricated, bearings particularly attractive for high speed rotating machinery.",
"cpc": [
"F16C 17/024",
"F16C 2300/22",
"F16C 33/101",
"F16C 43/02"
],
"ipc": [
"F16C 17/12"
],
"assignees": [
"AlliedSignal Inc"
],
"inventors": [
"Marshall P. Saville",
"Alston L. Gu"
],
"filing_date": "1992-05-07",
"publication_date": "1993-07-20",
"grant_date": "1993-07-20",
"priority_date": "1990-12-20",
"application_number": "US-88323592-A",
"family_id": "27091438",
"cited_by_count": 54,
"citations": [
"US3615121A",
"US3893733A",
"US4153315A",
"US4178046A",
"US4195395A",
"US4229054A",
"US4348066A",
"US4415280A",
"US4616388A",
"US4451163A",
"US4475824A",
"US4552466A",
"US4818123A",
"US4950089A",
"EP0375001A1"
]
}
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