Expandable Joint for Variable Compression Ratio Engines
20180023487 ยท 2018-01-25
Inventors
Cpc classification
F02D15/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
According to the present invention an expandable joint is made without removable bearing caps by preassembling eccentric bushings onto the hinge pin. The expandable joint has a hinge type construction, but with the journals for each side of the hinge being spaced apart so that the distance between the two sides of the hinge changes with rotation of the hinge pin. The expandable joint of the present invention is assembled by sliding the hinge pin into the hinged joint with the eccentric bushings attached. Once the hinge pin is in place, the eccentric bushings are locked in place with fasteners so that they do not rotate. After the eccentric bushings are locked in place, the hinge pin can be turned to expand the joint. The expandable joint is intended for use in variable compression ratio engines, where expansion of the joint changes the compression ratio of the engine.
Claims
1. An eccentric hinged joint (2) having a first bearing housing (4) having a plurality of primary journal bearings (6), and a second bearing housing (8) having a plurality of secondary journal sockets (10), and a hinge pin (12) having a plurality of primary journals (14) and a plurality of secondary journals (16), said primary journals (14) defining a first journal axis (18) and said secondary journals (16) defining a second journal axis (20), said second journal axis (20) being offset from said first journal axis (18), wherein said eccentric hinged joint (2) further includes one or more eccentric bushings (22), said one or more eccentric bushings (22) being located in said second secondary journal sockets (10), said primary journals (14) being rotatably mounted in said primary journal bearings (6), and said secondary journals (16) being rotatably mounted in said eccentric bushings (22) for providing eccentric motion of the eccentric hinged joint (2).
2. The eccentric hinged joint of claim 1, further including eccentric bushing retaining means (24) for preventing movement of said one or more eccentric bushings (22) in said secondary journal sockets (10), thereby securing the offset location of the eccentric bushing (22) in the secondary journal sockets (10).
3. The eccentric hinged joint of claim 2 wherein said eccentric bushing retaining means (24) is selected from the group consisting of a threaded fastener; a compression fastener; a pin; a key; adhesive; solder; braze; weld; and an interference fit (26).
4. The eccentric hinged joint of claim 2 wherein said eccentric bushing retaining means (24) is a compression fastener (26b), wherein compression fastener (26b) includes a compression pin tip (62) for bearing down on eccentric bushing (22) and providing axial alignment of eccentric bushing (22).
5. The eccentric hinged joint of claim 1, wherein at least one of said eccentric bushings (22) is assembled onto said hinge pin (12) between two primary journals (14).
6. The eccentric hinged joint of claim 5, further having a first axial assembly clearance for slidably assembling said first eccentric bushing (22) on said hinge pin (12) through at least one primary journal bearing (6).
7. The eccentric hinged joint of claim 5, further having a second axial assembly clearance for slidably assembling said primary journal (14) on said hinge pin (12) through at least one secondary journal socket (10).
8. The eccentric hinged joint of claim 5, further having a first axial assembly clearance for slidably assembling said first eccentric bushing (22) on said hinge pin (12) through at least one primary journal bearing (6), and further having a second axial assembly clearance for slidably assembling said primary journal (14) on said hinge pin (12) through at least one secondary journal socket (10).
9. The eccentric hinged joint of claim 1, wherein eccentric bushing (22) has an outer bushing diameter and said primary journal (14) has an outer primary journal diameter, wherein said outer bushing diameter is within 0.007 inches of said outer primary journal diameter thereby enabling hinge pin (12) to slide into hinged joint (2).
10. The eccentric hinged joint of claim 1, wherein at least one primary bearing housing (4) has a contiguous material structure surrounding at least one primary journal bearing (6) thereby providing a rigid and compact eccentric hinged joint.
11. The eccentric hinged joint of claim 1, wherein at least one secondary bearing housing (8) has a contiguous material structure surrounding at least one secondary journal socket (10) thereby providing a rigid and compact eccentric hinged joint.
12. The eccentric hinged joint of claim 1, wherein at least one primary bearing housing (4) has a contiguous material structure surrounding at least one primary journal bearing (6), and at least one secondary bearing housing (8) has a contiguous material structure surrounding at least one secondary journal socket (10) thereby providing a rigid and compact eccentric hinged joint.
13. The eccentric hinged joint of claim 1, wherein said eccentric bushings (22, 22a) include separable bushing halves for assembly of said eccentric bushings (22, 22a) on said secondary journals (16).
14. The eccentric hinged joint of claim 13, further including alignment means (32) for alignment of said separable eccentric bushing halves.
15. The eccentric hinged joint of claim 14, wherein said alignment means (32) is selected from the group consisting of alignment pins; threaded fasteners; fractured surface alignment; adhesive; solder; brazing; and welding.
16. The eccentric hinged joint of claim 13, wherein said hinge pin (12) is a contiguous metal shaft including at least on primary journal (14) on either side of a secondary journal (16).
17. The eccentric hinged joint of claim 1, wherein said hinge pin (12, 12b) has a central shaft (44), wherein at least one primary journal eccentric (14b) is rigidly assembled onto said primary shaft (44).
18. The eccentric hinged joint of claim 17, further including retaining means (45) for rigidly retaining said primary journal eccentric (14b) on said central shaft (44).
19. The eccentric hinged joint of claim 18, wherein said retaining means (45) is selected from a group consisting of an interference fit; a key; a pin; a threaded fastener; adhesive; solder; braze; and weld.
20. The eccentric hinged joint of claim 17, wherein said eccentric bushing (22, 22b) has a contiguous metal structure.
21. The eccentric hinged joint of claim 17, wherein said eccentric bushing (22, 22b) has a slip fit assembly onto said central shaft (44).
22. The eccentric hinged joint of claim 17, wherein said eccentric bushing (22, 22b) has a slip fit assembly onto said central shaft (44) between two primary journal eccentrics (14b) rigidly assembled onto said primary shaft (44).
Description
BRIEF DESCRIPTION OF THE FIGURES
[0009]
[0010]
[0011]
[0012]
[0013]
[0014]
[0015]
[0016]
[0017]
[0018]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0019]
[0020] Eccentric hinged joint 2 has a primary or first bearing housing 4 having a plurality of primary journal bearings 6, and a second bearing housing 8 having a plurality of secondary journal sockets 10.
[0021] Eccentric hinged joint 2 has a hinge pin 12 having a plurality of primary journals 14 and a plurality of secondary journals 16. The primary journals 14 define a first journal axis 18 and the secondary journals 16 define a second journal axis 20, second journal axis 20 being offset from said first journal axis 18.
[0022] According to the preferred embodiment of the present invention, eccentric hinged joint 2 further includes one or more eccentric bushings 22. The eccentric bushings 22 are located in secondary journal sockets 10 after assembly of the eccentric hinged joint 2.
[0023] The primary journals 14 are rotatably mounted in the primary journal bearings 6, and the secondary journals 16 are rotatably mounted in the eccentric bushings 22 for providing eccentric motion of the eccentric hinged joint 2.
[0024] Referring now to
[0025] The eccentric hinged joint 2 further includes eccentric bushing retaining means 24 for preventing movement of the eccentric bushings 22 in the secondary journal sockets 10 after assembly of the eccentric hinged joint 2. In more detail, the bushing retaining means 24 secure or fixes the offset location of the eccentric bushing 22 in the secondary journal sockets 10, and in more detail bushing retaining means 24 fixes the location of bushing minor axis 42 in second bearing housing 8. The eccentric bushing retaining means 24 may optionally be a threaded fastener 26, a compression fastener 26b, a pin, a key, adhesive, solder, braze, weld, an interference fit, a combination of the above or other functional means. Retaining means 24 may be located above secondary journal socket 10 as shown, or optionally below or to the side of secondary journal socket 10.
[0026]
[0027]
[0028] In the embodiment of the present invention shown in
[0029] According to the present invention, eccentric hinged joint 2 has at least one eccentric bushing 22 assembled onto hinge pin 12 between two primary journals 14.
[0030] Eccentric hinge joint 2 further has a first axial assembly clearance for slidably assembling an eccentric bushing 22 on hinge pin 12 through at least one primary journal bearing 6. Eccentric hinge joint 2 further has a second axial assembly clearance for slidably assembling a primary journal 14 on hinge pin 12 through at least one secondary journal socket 10. Preferably, according to the present invention, eccentric hinge joint 2 has a first axial assembly clearance for slidably assembling an eccentric bushing 22 on hinge pin 12 through at least one primary journal bearing 6, and eccentric hinge joint 2 has a second axial assembly clearance for slidably assembling a primary journal 14 on hinge pin 12 through at least one secondary journal socket 10. In more detail, second bearing housing 8 and secondary journal socket 10 have an internal diameter and primary journal 14 has an outer primary journal diameter, where the internal diameter is larger than the outer primary journal diameter, thereby providing assembly clearance for the primary journal 14 to pass through the secondary bearing housing 8 and secondary journal socket 10 for assembly of the eccentric hinged joint 2.
[0031] Eccentric bushing 22 also has an outer bushing diameter and primary journal 14 has an outer primary journal diameter. Preferably, according to the present invention, the outer bushing diameter is within 0.007 inches of the outer primary journal diameter thereby enabling hinge pin 12 to slide into hinged joint 2.
[0032] A significant benefit of the present invention is that removable bearing caps are not required for assembling the hinge pins in the engine. Referring now to
[0033] According to the present invention, hinge pin 12 may be a contiguous metal shaft including at least on primary journal 14 and at least one secondary journal 16. Assembled eccentric bushings 22a are typically employed in embodiments of the present invention having a secondary journal 16 located between two primary journals 14, and in more detail when the secondary journal has a smaller diameter than the two outer primary journals.
[0034] Referring now to
[0035] Referring now to
[0036] Assembled hinge pin 12b has a central shaft 44 and at least one primary journal eccentric 14b rigidly assembled onto central shaft 44. Hinge pin 12b further includes retaining means 45 for rigidly retaining primary journal eccentric 14b on central shaft 44. Preferably the retaining means 45 is selected from a group consisting of an interference fit; a key; a pin; a threaded fastener; adhesive; solder; braze; weld, or other functional means.
[0037] Eccentric bushing 22b has a slip fit assembly onto central shaft 44. Central shaft 44 has a secondary journal surface 16b for supporting eccentric bushings 22b.
[0038]
[0039]
[0040] Referring now to
[0041] According to an embodiment of the present invention, eccentric bushings 22 are mounted in first bearing housing 4, and primary journal bearings 6 are mounted in second bearing housing 8, and secondary journals 16 are repositioned to align with eccentric bushings 22, and primary journals 14 are repositioned to align with journal bearings 6, and retaining means 24 is repositioned to align with eccentric bushings 22.
[0042] The present invention is intended for use in variable compression ratio engines, but may also be used for other purposes where an expandable joint is needed.