[미국특허]
Air-cooled centrifugal clutch with air impeller plate
원문보기
IPC분류정보
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
F16D-043/08
F16D-013/72
출원번호
US-0242280
(2002-09-12)
발명자
/ 주소
Martin, William A.
출원인 / 주소
Horstman Manufacturing Co., Inc.
대리인 / 주소
Fulwider Patton Lee & Utecht, LLP
인용정보
피인용 횟수 :
6인용 특허 :
10
초록▼
The centrifugal clutch includes one or more clutch plates having a plurality of air impeller vanes to circulate air through the centrifugal clutch during its operation in order to extend the useful life of the clutch. A pressure plate includes a plurality of air impeller vanes formed by alternating
The centrifugal clutch includes one or more clutch plates having a plurality of air impeller vanes to circulate air through the centrifugal clutch during its operation in order to extend the useful life of the clutch. A pressure plate includes a plurality of air impeller vanes formed by alternating raised impeller vane portions and impeller vane channels, with the weighted levers of the centrifugal clutch aligned with the raised portions of the air impeller vanes of the pressure plate. A fixed plate may also include a plurality of air impeller vanes formed on a side surface of the fixed plate by alternating raised impeller vane portions and impeller vane channels. A floating plate may also include a plurality of air impeller channels formed internally within the floating plate and having openings at the outer and inner edges of the floating plate.
대표청구항▼
1. In a centrifugal clutch for transmission of torque from a rotating input connector for supplying rotational power to an output connector for receiving the rotational power, the centrifugal clutch having frictional surfaces adapted to be engaged at a predetermined engagement speed of rotation of s
1. In a centrifugal clutch for transmission of torque from a rotating input connector for supplying rotational power to an output connector for receiving the rotational power, the centrifugal clutch having frictional surfaces adapted to be engaged at a predetermined engagement speed of rotation of said input connector, the centrifugal clutch including a cylindrical housing drum, a pressure plate disposed within said cylindrical housing drum, a centrifugal force lever support plate disposed within said cylindrical housing drum adjacent to said pressure plate, the centrifugal force lever support plate being operatively engaged with the input connector, means for applying an adjustable biasing force on the pressure plate toward the centrifugal force lever support plate, a plurality of centrifugal force levers symmetrically disposed on and pivotally attached to said centrifugal force lever support plate, at least one clutch disk disposed within said cylindrical housing drum adjacent to the pressure plate, respectively, and a fixed plate disposed within the cylindrical housing drum between the at least one clutch disk and the cylindrical housing drum, and a drive hub disposed within the cylindrical housing drum and engaging the input connector, the drive hub being mounted to the fixed plate, the improvement in the centrifugal clutch comprising:the pressure plate having a contact friction side and an opposing side, and a plurality of air impeller vanes being formed on said opposing side of said pressure plate by a plurality of alternating raised impeller vane portions and impeller vane channels, with the weighted levers of the centrifugal clutch aligned with the raised portions of the air impeller vanes, so as to cause the weighted levers to press against the raised portions of the air impeller vanes; andsaid at least one clutch disk including a floating plate having an outer edge and an inner edge, said floating plate including a plurality of air impeller channels formed internally within the floating plate and having openings at the outer and inner edges of the floating plate. 2. The centrifugal clutch of claim 1, wherein said plurality of air impeller vanes of the pressure plate curve radially outward so as to thereby cause air to circulate within the centrifugal clutch to cool the centrifugal clutch during operation of the centrifugal clutch. 3. The centrifugal clutch of claim 1, wherein the fixed plate has a contact friction side and an opposing side, and the fixed plate comprises a plurality of air impeller vanes formed on said opposing side by alternating raised impeller vane portions and impeller vane channels. 4. The centrifugal clutch of claim 3, wherein said plurality of air impeller vanes of the fixed plate curve radially outward so as to thereby cause air to circulate within the centrifugal clutch to cool the centrifugal clutch during operation of the centrifugal clutch. 5. The centrifugal clutch of claim 1, wherein said plurality of air impeller vanes of the floating plate curve radially outward so as to thereby cause air to circulate within the centrifugal clutch to cool the centrifugal clutch during operation of the centrifugal clutch. 6. A centrifugal clutch for transmission of torque from a rotating input connector for supplying rotational power to an output connector for receiving the rotational power, the centrifugal clutch having frictional surfaces adapted to be engaged at a predetermined engagement speed of rotation of said input connector, the centrifugal clutch comprising:a cylindrical housing drum;a pressure plate disposed within said cylindrical housing drum, the pressure plate having a contact friction side and an opposing side, and a plurality of air impeller vanes being formed on said opposing side of said pressure plate by a plurality of alternating raised impeller vane portions and impeller vane channels;a centrifugal force lever support plate disposed within said cylindrical housing drum adjacent to said pressure plate, the centrifugal force lever support plate being operatively engaged with the input connector;means for applying an adjustable biasing force on the pressure plate toward the centrifugal force lever support plate;a plurality of centrifugal force levers symmetrically disposed on and pivotally attached to said centrifugal force lever support plate, with the centrifugal force levers of the centrifugal clutch aligned with the raised portions of the air impeller vanes, so as to cause the weighted levers to press against the raised portions of the air impeller vanes;at least one clutch disk disposed within said cylindrical housing drum adjacent to the pressure plate, said at least one clutch disk including a floating plate having an outer edge and an inner edge, and wherein said floating plate comprises a plurality of air impeller channels formed internally within the floating plate and having openings at the outer and inner edges of the floating plate;a fixed plate disposed within the cylindrical housing drum between the at least one clutch disk and the cylindrical housing drum, wherein the fixed plate has a contact friction side and an opposing side, and the fixed plate comprises a plurality of air impeller vanes formed on said opposing side by alternating raised impeller vane portions and impeller vane channels; anda drive hub disposed within the cylindrical housing drum and engaging the input connector, the drive hub being mounted to the fixed plate. 7. The centrifugal clutch of claim 6, wherein said plurality of air impeller vanes of the pressure plate curve radially outward so as to thereby cause air to circulate within the centrifugal clutch to cool the centrifugal clutch during operation of the centrifugal clutch. 8. The centrifugal clutch of claim 6, wherein said plurality of air impeller vanes of the fixed plate curve radially outward so as to thereby cause air to circulate within the centrifugal clutch to cool the centrifugal clutch during operation of the centrifugal clutch. 9. The centrifugal clutch of claim 6, wherein said plurality of air impeller vanes of the floating plate curve radially outward so as to thereby cause air to circulate within the centrifugal clutch to cool the centrifugal clutch during operation of the centrifugal clutch. 10. A centrifugal clutch for transmission of torque from a rotating input connector for supplying rotational power to an output connector for receiving the rotational power, the centrifugal clutch having frictional surfaces adapted to be engaged at a predetermined engagement speed of rotation of said input connector, the centrifugal clutch comprising:a cylindrical housing drum;a pressure plate disposed within said cylindrical housing drum, the pressure plate having a contact friction side and an opposing side;a centrifugal force lever support plate disposed within said cylindrical housing drum adjacent to said pressure plate, the centrifugal force lever support plate being operatively engaged with the input connector;means for applying an adjustable biasing force on the pressure plate toward the centrifugal force lever support plate;a plurality of centrifugal force levers symmetrically disposed on and pivotally attached to said centrifugal force lever support plate;at least one clutch disk disposed within said cylindrical housing drum adjacent to the pressure plate, said at least one clutch disk including a floating plate having an outer edge and an inner edge, and wherein said floating plate comprises a plurality of air impeller channels formed internally within the floating plate and having openings at the outer and inner edges of the floating plate;a fixed plate disposed within the cylindrical housing drum between the at least one clutch disk and the cylindrical housing drum; anda drive hub disposed within the cylindrical housing drum and engaging the input connector, the drive hub being mounted to the fixed plate. 11. The centrifugal clutch of claim 10, where in said pressure plate comprises a plurality of air impeller vanes formed on said opposing side of said pressure plate by a plurality of alternating raised impeller vane portions and impeller vane channels. 12. The centrifugal clutch of claim 11, wherein said centrifugal force levers of the centrifugal clutch are aligned with the raised portions of the air impeller vanes, so as to cause the weighted levers to press against the raised portions of the air impeller vanes. 13. The centrifugal clutch of claim 11, wherein said plurality of air impeller vanes of the pressure plate curve radially outward so as to thereby cause air to circulate within the centrifugal clutch to cool the centrifugal clutch during operation of the centrifugal clutch. 14. The centrifugal clutch of claim 10, wherein said fixed plate has a contact friction side and an opposing side, and the fixed plate comprises a plurality of air impeller vanes formed on said opposing side by alternating raised impeller vane portions and impeller vane channels. 15. The centrifugal clutch of claim 14, wherein said plurality of air impeller vanes of the fixed plate curve radially outward so as to thereby cause air to circulate within the centrifugal clutch to cool the centrifugal clutch during operation of the centrifugal clutch. 16. The centrifugal clutch of claim 10, wherein said plurality of air impeller vanes of the floating plate curve radially outward so as to thereby cause air to circulate within the centrifugal clutch to cool the centrifugal clutch during operation of the centrifugal clutch.
Brevick, John Edward; Leone, Thomas G.; Frait, Steven Anatole; Bird, Norman Jerry; Gooden, James Thomas, Powertrain thermal management system for a dry-clutch transmission.
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