Claims
- 1. In a downhole drilling motor for driving drilling tools of the type comprising a housing having an inlet end and an outlet end through which drilling fluid is pumped for activation of said drilling motor, a rigid stator former having a multi-lobed helical configuration including a multi-lobed helical inner surface, said stator former having a uniform thickness wall secured within said housing such that drilling fluid is pumped through said stator former, and a helical multi-lobed rotor disposed in said stator former for rotation therein, said rotor having an outer helical surface, the improvement comprising:
- an elastomeric material applied to one of said helical inner surface of said stator former and said helical outer surface of said rotor such that a supported sealing engagement is formed between said elastomeric surface and the other of said stator former and said rotor creating at least one fluid space through which drilling fluid is pumped to rotatively drive said rotor within said housing thereby driving said drill tool, said elastomeric material having a substantially uniform thickness to form a helical sealing surface, said elastomeric material being supported by the underlying lobed structure for improved sealing rigidity of said multiple lobes, said stator former forming a plurality of helical spaces between said housing and said stator former, said helical spaces filled with an elastomeric resin to provide added support to said stator former.
- 2. The drilling motor as defined in claim 1 wherein said elastomeric material forms a helical sleeve bonded to one of said helical inner surface of said stator former and said helical outer surface of said rotor.
- 3. A downhole drilling motor for driving drilling tools, said drilling motor comprising:
- a cylindrical housing having an inlet end and an outlet end through which drilling fluid is pumped for actuation of said drilling motor;
- a rigid stator former formed of a wall of uniform thickness and having a multi-lobed helical configuration including a helical inner surface, said stator former secured within said housing wherein drilling fluid is pumped through said stator former, a plurality of helical spaces formed between said cylindrical housing and said stator former, said plurality of helical spaces filled with an elastomeric material for support of said stator former; and
- a rotor having a multi-lobed helical outer surface disposed in said stator former for rotation therein as drilling fluid flows through said housing driving said drilling tool;
- one of said helical inner surface of said stator former and said helical outer surface of said rotor having a uniform thickness of elastomeric material applied thereto for sealing engagement of the other of said helical inner surface of said stator former and said helical outer surface of said rotor, said elastomeric material structurally supported for improved sealing engagement and shear resistance, said sealing engagement forming at least one fluid space through which drilling fluid is pumped to rotatively drive said rotor within said stator former thereby driving said drilling tool.
- 4. The drilling motor as defined in claim 3 wherein said elastomeric material forms a helical sleeve bonded to one of said helical inner surface of said stator former and said helical outer surface of said rotor.
- 5. The drilling motor as defined in claim 3 wherein said elastomeric material is extruded over one of said helical inner surface of said stator former and said helical outer surface of said rotor.
- 6. A downhole drilling motor for driving drilling tools, said drilling motor comprising:
- a cylindrical housing having an inlet end and an outlet end through which drilling fluid is pumped for activation of said drilling motor;
- a composite stator disposed within said housing having an inlet and an outlet communicating with said inlet and outlet ends of said housing, said stator including a rigid stator former having wall of uniform thickness and a multi-lobed configuration and an elastomeric material applied to an inner surface of said helical wall of said stator former to form an inner sealing surface for said composite stator, said stator former providing rigid support for said elastomeric sealing surface of said composite stator; and
- a multi-lobed helical rotor disposed in said composite stator for rotation therein, said rotor sealingly engaging said elastomeric surface of said composite stator to form at least one fluid space through which drilling fluid is pumped to rotatively drive said rotor within said composite stator thereby driving said drilling tool;
- a plurality of helical spaces being formed between said cylindrical housing and said wall of said composite stator, said helical spaces extending between said inlet and outlet ends of said composite stator whereby said stator former rigidly supports said elastomeric sealing surface while transferring heat from said composite stator, said helical spaces filled with an elastomer material to provide added support to said composite stator.
- 7. The drilling motor as defined in claim 6 wherein said elastomeric material is applied to said inner surface of said stator former in a uniform thickness along said inner surface, said stator former providing rigid support of said elastomeric layer.
- 8. The drilling motor as defined in claim 7 wherein said uniform elastomeric layer is formed as a helical sleeve mounted to said inner surface of said stator former.
- 9. The drilling motor as defined in claim 7 wherein said uniform elastomeric layer is extruded over said inner surface of said stator former.
- 10. A downhole drilling motor for driving drilling tools, said drilling motor comprising:
- a housing having an inlet end and an outlet end through which drilling fluid is pumped for activation of said drilling motor;
- a rigid stator former having a helical configuration including a helical inner surface, said stator former secured within said housing wherein drilling fluid is pumped through said stator former, a plurality of helical spaces being formed between stator former and said housing, said helical spaces filled with an elastomer for support of said stator former; and
- a rotor having a helical outer surface disposed in said stator former for rotation therein as drilling fluid flows through said housing driving said drilling tool;
- one of said helical inner surface of said stator former and said helical outer surface of said rotor having a uniform thickness of elastomeric material applied thereto for sealing engagement of the other of said helical inner surface of said stator former and said helical outer surface of said rotor, said sealing engagement forming at least one fluid space through which drilling fluid is pumped to rotatively drive said rotor within said stator former thereby driving said drilling tool.
Parent Case Info
This is a continuation of copending application(s) Ser. No. 07/632,247 filed on Dec. 20, 1990, now abandoned.
US Referenced Citations (15)
Foreign Referenced Citations (2)
Number |
Date |
Country |
2713468 |
Sep 1978 |
DEX |
2081812 |
Feb 1982 |
GBX |
Continuations (1)
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Number |
Date |
Country |
Parent |
632247 |
Dec 1990 |
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