Claims
- 1. A system for supporting lateral loads on a piston undergoing reciprocating motion along a longitudinal axis in a cylinder, the piston coupled to a guide link having a length and for coupling the piston to a crankshaft undergoing rotary motion about a rotation axis of the crankshaft, the longitudinal axis and the rotation axis being substantially orthogonal to each other, the system comprising:a first guide element located along the length of the guide link, the first guide element having a spring mechanism for urging the first guide element into contact with the guide link, the spring mechanism having a first spring with a first natural frequency of oscillation and a second spring with a second natural frequency of oscillation; and a second guide element in opposition to the first guide element.
- 2. A system according to claim 1, wherein the first guide element is a roller having a rim in rolling contact with the guide link and the second guide element is a roller with a rim in rolling contact with the guide link.
- 3. A system according to claim 1, wherein the second guide element includes a precision positioner for positioning the second guide element with respect to the longitudinal axis.
- 4. A device according to claim 3, wherein the precision positioner is a vernier mechanism having an eccentric shaft for varying a distance between the second guide element and the longitudinal axis.
- 5. A linkage for coupling a piston undergoing reciprocating linear motion along a longitudinal axis to a crankshaft undergoing rotary motion about a rotation axis of the crankshaft, the longitudinal axis and the rotation axis being substantially orthogonal to each other, the linkage comprising:a guide link having a first end proximal to the piston, the first end coupled to the piston, and having a second end distal to the piston such that the rotation axis is disposed between the proximal end and the distal end of the guide link; a connecting rod having a connecting end and a crankshaft end, the connecting end rotatably connected to the end of the guide link distal to the piston at a rod connection point and the crankshaft end coupled to the crankshaft at a crankshaft connection point offset from the rotation axis of the crankshaft; and a guide link guide assembly for supporting lateral loads at the distal end of the guide link, the guide link assembly including: a. a first roller having a center of rotation fixed with respect to the rotation axis of the crankshaft and a rim in rolling contact with the distal end of the guide link; and b. a spring mechanism for urging the rim of the first roller into contact with the distal end of the guide link, the spring mechanism having a first spring with a first natural frequency of oscillation and a second spring with a second natural frequency of oscillation.
- 6. A linkage according to claim 5, wherein the guide link guide assembly further includes a second roller in opposition to the first roller, the second roller having a center of rotation and a rim in rolling contact with the distal end of the guide link.
- 7. A linkage according to claim 6, wherein the second roller further includes a precision positioner to position the center of rotation of the second roller with respect to the longitudinal axis.
- 8. A linkage according to claim 7, wherein the precision positioner is a vernier mechanism having an eccentric shaft for varying the distance between the center of rotation of the second roller and the longitudinal axis.
- 9. In a Stirling cycle machine of the type wherein at least one piston undergoes reciprocating motion along a longitudinal axis in a cylinder, the piston coupled to a crankshaft undergoing rotary motion about a rotation axis using a guide link having a first end proximal to the piston and coupled to the piston and a second end distal to the piston, the improvement comprising:a guide link guide assembly in contact with the distal end of the guide link and for supporting lateral loads at the distal end of the guide link, the guide link guide assembly including: a. a first roller having a center of rotation fixed with respect to the rotation axis of the crankshaft and a rim in rolling contact with the distal end of the guide link; and b. a spring mechanism for urging the rim of the first roller into contact with the distal end of the guide link, the spring mechanism having a first spring with a first natural frequency of oscillation and a second spring with a second natural frequency of oscillation.
- 10. In a Stirling cycle machine according to claim 9, wherein the guide link guide assembly further includes a second roller in opposition to the first roller, the second roller having a center of rotation and a rim in rolling contact with the distal end of the guide link.
- 11. In a Stirling cycle machine according to claim 10, wherein the second roller further includes a precision positioner to position the center of rotation of the second roller with respect to the longitudinal axis.
- 12. In a Stirling cycle machine according to claim 11, wherein the precision positioner is a vernier mechanism having an eccentric shaft for varying a distance between the center of rotation of the second roller and the longitudinal axis.
PRIORITY
The present application is a continuation-in-part of U.S. patent application Ser. No. 09/335,392, filed Jun. 17, 1999, which is herein incorporated by reference.
US Referenced Citations (23)
Foreign Referenced Citations (10)
Number |
Date |
Country |
445033 |
Dec 1922 |
DE |
40 18943 |
Dec 1991 |
DE |
40 18 943 A 1 |
Dec 1991 |
DE |
42 05 283 |
Aug 1993 |
DE |
42 05 283 A 1 |
Aug 1993 |
DE |
2.067.119 |
Aug 1971 |
FR |
2 067 119 |
Aug 1971 |
FR |
2 721 982 |
Jan 1996 |
FR |
2 721 982 |
May 1996 |
FR |
WO 0079114 |
Dec 2000 |
WO |
Non-Patent Literature Citations (1)
Entry |
International Search Report, PCT/US00/01931, dated Apr. 27, 2000. |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09/335392 |
Jun 1999 |
US |
Child |
09/883080 |
|
US |