Claims
- 1. A double acting type compressor comprising:
- a main body including a cylinder block having at least one cylinder bore axially extending therethrough and a pair of cylinder heads secured to opposite ends of said cylinder block;
- at least one double headed piston received within said at least one cylinder bore for reciprocating motion therein;
- a pair of suction chambers formed in said main body at opposite ends thereof, at least of said suction chamber being disposed to be supplied with compression medium from outside the compressor;
- a suction passageway formed in said main body and communicating said suction chambers with each other;
- a pair of discharge chambers fromed in said main body at said opposite ends thereof;
- one of said discharge chambers being disposed for communication with a first cylinder chamber defined in said at least one cylinder bore by one end of a double-headed piston therein, and the other one of said discharge chambers being disposed for communication with a second cylinder chamber defined in said cylinder bore by the other end of said double-headed piston, whereby compression strokes take place alternately in said first and second cylinder chambers;
- a discharge passageway formed in said main body and communicating said discharge chambers with each other;
- a pair of valve plates interposed between said cylinder heads and said cylinder block;
- a pair of valve sheets interposed between said cylinder block and said valve plates;
- a discharge port formed in one of said cylinder heads of said main body for allowing said compression medium to be discharged to the outside therethrough, said discharge port extending through one of said discharge chambers;
- a gasket interposed between one of said cylinder heads within which said one of said discharge chambers is formed and one of said valve plates corresponding to said one of said discharge chambers;
- communication means communicating said discharge port substantially directly with said discharge passageway, said communication means comprising a first through hole formed through said one of said valve plates corresponding to said one of said discharge chambers, a second through hole formed through one of said valve sheets corresponding to said one of said discharge chambers, and a third through hole formed through said gasket, said first, second and third through holes being aligned with said discharge port; and
- a pair of pulsation attenuating means interposed between said discharge chambers and said discharge passageway, each of said pulsation attenuating means having restriction hole means communicating a corresponding one of said discharge chambers with said discharge passageway, said restriction hole means of each of said pulsation attenuating means having a substantially reduced cross-sectional area relative to the cross-sectional area of said corresponding one of said discharge chambers so as to impart increased flow resistance to said compression medium passing through said restriction hole means;
- said restriction hole means of said pair of pulsation attenuating means being directed in directly opposite directions to each other;
- said pair of pulsation attenuating means being located at different distances from said discharge port;
- said discharge passageway having a substantially large cross-sectional area relative to the cross-sectional area of said restriction hole means of each of said pulsation attenuating means; and
- said discharge port communicating with each of said discharge chambers solely through said communication means, said discharge passageway and a corresponding one of said pulsation attenuating means, whereby the total quantity of said compression medium discharged into said discharge chambers is caused to flow through said restriction hole means of said pulsation attenuating means into said discharge passageway, to thereby substantially attenuate pulsations of said compression medium and to reduce noise.
- 2. A double acting type compressor as claimed in claim 1, wherein each of said valve plates has a discharge through hole formed therein, said discharge through hole communicating a corresponding one of said discharge chambers formed within said cylinder heads with said discharge passageway axially extending through said cylinder block, said restriction hole means of said pulsation attenuating means being formed in each of said valve sheets at a location facing said discharge through hole formed in a corresponding one of said valve plates.
- 3. A double acting type compressor as claimed in claim 1, wherein said restriction hole means of said pulsation attenuating means each comprise a single through hole.
- 4. A double acting type compressor as claimed in claim 1, including a drive shaft axially extending in said main body, and a swash plate rigidly fitted on said drive shaft for rotation in unison with said drive shaft, said swash plate engaging said double headed pistons for causing reciprocating motions of the latter within respective ones of said cylinder bores, as said swash plate rotates.
- 5. A double acting type compressor as claimed in claim 1, including a suction port formed in one of said cylinder heads and opening in a corresponding one of said suction chambers formed within said cylinder heads for allowing compression medium to be introduced from outside into said corresponding one of said suction chambers therethrough.
- 6. A double acting type compressor as claimed in claim 1, wherein said suction chambers are formed within said cylinder heads, each of said discharge chambers having an annular configuration and located radially outwardly of a corresponding one of said suction chambers, each of said discharge chambers and a corresponding one of said suction chambers being disposed concentrically of each other.
- 7. A double acting type compressor as claimed in claim 6, wherein said cylinder block has opposite ends thereof formed with a pair of suction spaces, each of said valve plates having a through hole formed therein and communicating a corresponding one of said suction chambers with a corresponding one of said suction spaces, whereby each of said suction chambers has a substantially increased internal volume.
Priority Claims (1)
Number |
Date |
Country |
Kind |
57-122593[U] |
Aug 1982 |
JPX |
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Parent Case Info
This is a continuation-in-part of U.S. application Ser. No. 520,137, filed Aug. 4, 1983, now U.S. Pat. No. 4,544,332, issued Oct. 1, 1985.
US Referenced Citations (8)
Foreign Referenced Citations (1)
Number |
Date |
Country |
47687 |
Apr 1981 |
JPX |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
520137 |
Aug 1983 |
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