Two-way wobble plate compressor
10253764 ยท 2019-04-09
Assignee
Inventors
Cpc classification
F04B27/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2240/34
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2360/42
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C19/184
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B27/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B39/122
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B39/0005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04B39/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C19/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B39/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B27/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A two-way wobble plate compressor, comprising: a cylinder block (100); a two-way piston (200) capable of reciprocating within a cylinder bore (110) of the cylinder block (100); a drive shaft (310) driving the two-way piston (200); a bearing unit, including a plurality of contact balls and an inner ring and an outer ring fitting with the plurality of contact balls, and having a central plane (P-P) angled to a perpendicular plane (I-I) of the drive shaft; wherein said drive shaft (310) is sleeved in the inner ring of the bearing unit, and is fixed to the inner ring; the outer ring of said bearing unit is coupled to the two-way piston, and when the drive shaft rotates, the two-way piston is driven via the bearing unit to perform reciprocating motion. The two-way wobble plate compressor of the present invention has a compact design, and may significantly reduce friction loss.
Claims
1. A two-way wobble plate compressor, comprising: a cylinder block, the cylinder block having a cylinder bore; a two-way piston capable of reciprocating within the cylinder bore of the cylinder block; a drive shaft driving the two-way piston; a bearing unit, the bearing unit including a plurality of contact balls and an inner ring and an outer ring fitting with the plurality of contact balls, and the bearing unit having a central plane angled to a perpendicular plane of the drive shaft, wherein said drive shaft is sleeved in the inner ring of the bearing unit, and is fixed to the inner ring; the outer ring of said bearing unit is coupled to the two-way piston, and when the drive shaft rotates, the two-way piston is driven via the bearing unit to perform reciprocating motion; wherein said bearing unit is a double row angular contact ball bearing unit, and a bearing contact angle a of said bearing unit is greater than 45.
2. The two-way wobble plate compressor according to claim 1, wherein said outer ring includes a coupling end, said coupling end including a first peripheral portion and a second peripheral portion; and said two-way piston includes two socket portions, wherein two hemispherical sliding shoes are provided within the two socket portions for interacting with the first peripheral portion and the second peripheral portion of said coupling end, respectively.
3. The two-way wobble plate compressor according to claim 1, wherein said outer ring is fixedly connected with a drive pin; a center of said two-way piston is provided with a cylindrical hole, an axis of the cylindrical hole being perpendicular to and intersecting with an axis of the two-way piston, and the cylindrical hole being provided with a slot fitting with the drive pin; and a piston pin is provided in the cylindrical hole, the piston pin having a cross hole, and the piston pin passing through the slot to insert into the cross hole.
4. The two-way wobble plate compressor according to claim 1, wherein said inner ring is fastened to said drive shaft via a nut.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE EMBODIMENTS
(7) With reference to particular embodiments and corresponding drawings, the structure composition and the operating principles of a two-way wobble plate compressor of the present invention will be described in detail in the following.
(8) Generally speaking, in one aspect of the present invention, the two-way wobble plate compressor adopts a two-way piston structure, which uses a wobble plate to drive a two-way piston to reciprocate, and motion of the wobble plate is driven by a rotor fixed on a drive shaft. The present invention is particularly characterized by the manner of fitting between the wobble plate and the rotor. Bearing(s) may be fit between the wobble plate and the rotor so as to form a combined bearing unit; in other words, in addition to operating to drive the two-way piston into motion, the wobble plate may also directly serve as the outer ring of the combined bearing unit; and in addition to operating to drive the wobble plate into wobbling motion, the rotor mounted on drive shaft may also directly serve as the inner ring of the combined bearing unit. As such, high speed sliding motion in traditional swash plate compressors is replaced by rolling motion of the combined bearing unit; and meanwhile, as compared with the prior art, the wobble plate compressor of the present invention is of a compact structure with low design complexity, which improves efficiency and output power, and at the same time, cost can be successfully controlled, so it is suitable for application in commercial compressors.
(9) In another aspect of the present invention, the bearing unit may directly serve as a drive mechanism of the two-way wobble plate compressor, the outer ring of the bearing unit may serve as the wobble plate per se of the compressor, and the inner ring of the bearing unit may serve as the rotor per se of the compressor; as such, at the same time when friction loss is reduced, it may also realize a compact design of the overall compressor structure, and reduce cost.
(10) Specifically, in
(11) With reference to the drawing, in this embodiment, the two-way wobble plate compressor includes a cylinder block 100, the cylinder block having several cylinder bores 110. Conventionally, the cylinder block 100 consists of a front cylinder block 120 and a rear cylinder block 130, and includes a pair of central holes 140 along a longitudinal axis O-O of the cylinder block; and the cylinder bores 110 are evenly arranged around the central hole 140.
(12) The two-way wobble plate compressor further includes several two-way pistons 200 capable of reciprocating in the cylinder bores 110 of the cylinder block 100. The two-way pistons 200 perform reciprocating motion in relevant cylinder bores 110 of the front cylinder block 120 and the rear cylinder block 130.
(13) The two-way wobble plate compressor further includes a drive assembly 300 driving the two-way pistons 200, the drive assembly 300 including a drive shaft 310, a rotor 320 fixedly connected with the drive shaft 310, and an annular wobble plate 330 fitting with the rotor 320; and further with reference to
(14) Conventionally, the drive shaft 310 is rotatably arranged the central hole 140 of the front cylinder block 120 and the rear cylinder block 130, and may be driven into rotation by an external driving force. The rotor 320 is fixedly connected with and integrated on the drive shaft, so it may rotate along with the rotation of the drive shaft 310. Further, with reference to
(15) As described above, the central plane P-P of the rotor 320 and the perpendicular plane I-I of the drive shaft 310 form an included angle . The included angle determines a stroke length when the two-way piston 200 performs reciprocating motion.
(16) Particularly, with reference to
(17) The wobble plate 330 is partially encircled within the inner surface 323 of the rotor 320, and includes respectively a first peripheral portion 334 adjacent to the first inner surface 324, a second peripheral portion 335 adjacent to the second inner surface 325 and opposite to the first peripheral portion 334, and a wobble plate contact surface 336 adjacent to the rotor 320 contact surface and arranged between the first peripheral portion 334 and the second peripheral portion 335.
(18) As a most prominent feature of the present invention, a first bearing 340 is provided between the first inner surface 324 and the first peripheral portion 334; a second bearing 350 is provided between the second inner surface 325 and the second peripheral portion 335; and a third bearing 360 is provided between the rotor contact surface 326 and the wobble plate contact surface 336.
(19) As shown in
(20) With reference to
(21) Of course, it will be easily understood that, the wobble plate 330 may also drive the two-way piston 200 into reciprocating motion by other conventional fitting means, for example, using a pin structure to implement a fitting connection between the wobble plate 330 and the two-way piston 200.
(22) As such, when the peripheral portion of the wobble plate 330 slidingly passes between two flat portions of a pair of sliding shoes 230, and the sliding shoe 230 is provided between the two-way piston 200 and the wobble plate 330, the two-way piston 200, the sliding shoe 230, and the peripheral portion wobble plate 330 collectively form a universal bearing structure, and in the present embodiment, the universal bearing structure is a sliding shoe universal joint structure.
(23) In the embodiments as shown in
(24) Further, with reference to
(25) In
(26) Particularly, in the embodiment as shown in
(27) Actually, as compared with the above described embodiment, the inner ring 620 of the bearing unit 600 may simultaneously have the function of the rotor in the above described embodiment, while the outer ring 630 of the bearing unit 600 may simultaneously have the function of the wobble plate in the above described embodiment. Thus, the two-way wobble plate compressor in this embodiment has a compact structure, suitable for application in commercial high power compressors.
(28) In this embodiment, the bearing unit 600 is of a double row angular contact ball bearing unit type. Preferably, a bearing contact angle of the bearing unit 600 is greater than 45.
(29) Preferably, a manner of coupling between the outer ring 630 of the bearing unit 600 and the two-way piston may adopt the above described sliding shoe type coupling. Specifically, also with reference to
(30) In addition, as shown in
(31) It will be easily understood that the present invention is not limited to the specific examples given by the above described embodiments, for example, the above described sliding shoe universal joint structure and pin universal joint structure may be interchangeable. Any combinations and readily conceivable variants of these particular embodiments shall fall into the scope of protection of the present invention.