Swing type rotary compressors having a cut-off portion on the ro

Rotary expansible chamber devices – Working member has planetary or planetating movement – With relatively movable partition member

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Details

F04C 18356, F04C 2908

Patent

active

056412797

DESCRIPTION:

BRIEF SUMMARY
TECHNICAL FIELD

The present invention relates to a swing type rotary compressor primarily employed in a refrigeration apparatus.


BACKGROUND ART

Generally, rotary compressors are set to different predetermined compression capacities depending on models, and in order to reduce their cost as low as possible, capacities thereof are adjusted by changing an eccentricity amount of a drive shaft and an outer diameter of a roller without changing a shape of a cylinder of the compressor. In this case, however, while the cylinder can be made common between different models, the control of parts becomes complicated because the kinds of drive shafts and rollers increase in number. In addition, there has been such a problem that changes in their production line and changes in centering become necessary, resulting in cost increase.
Furthermore, while there is known an inverter controlled type rotary compressor which is made variable in its compression capacity by control of the number of revolutions to achieve the use of the same of parts, because such an inverter-controlled compressor is very expensive, a refrigeration apparatus incorporating such a compressor becomes very expensive in manufacturing cost.
As a result, as another means for adjusting the compression capacity of the rotary compressor, there is conventionally known, as described in Japanese Utility Model Application Laid-Open Publication No. 54-29403, a method constituted so that a thin plate is inserted between a cylinder and a front head or a rear head, a bypass passage communicating, at starting time of suction, a suction chamber in which a suction port of the cylinder opens with a compression chamber in which a discharge port opens is formed on said thin plate and the compression capacity is adjusted by shifting a suction shut-off position of suction gas toward the compression chamber side.
Namely, said capacity adjustment method is constructed as follows. As shown in FIG. 6, in a rotary compressor wherein, in a cylinder chamber A1 of a cylinder A arranged between a front head and a rear head, a roller B is internally installed with an eccentric portion C1 of a drive shaft C being fitted on said roller B, and on an intermediate position between a discharge port A2 and a suction port A3 formed on said cylinder A. A blade D divides an inner space of said cylinder chamber A1 into a compression chamber X communicating with said discharge port A2 and a suction chamber Y communicating with said suction port A3 and the blade D reciprocably mounted. A rear end of said blade D is urged by a spring D1 so as to contact a tip end thereof with an outer circumference of said roller B at all times. A circular thin plate E having the same diameter as that of said cylinder A and having a shaft hole E2 pierced by said drive shaft C at the center thereof is inserted between said front head and said cylinder A. A bypass passage E1 shifting the suction shut-off position of suction gas sucked from said suction port A3 into said suction chamber Y toward said compression chamber X side is formed on this thin plate E. Said bypass passage E1 is formed in a long circular arc shape along an inner wall of said cylinder chamber A1 and said bypass passage E1 is formed through the thickness of said thin plate E.
Accordingly, with said configuration, the internal space of said cylinder chamber A1 is partitioned, by the blade D and a contact point O in which the outer circumference of said roller B is brought into contact with the inner wall face of said cylinder chamber A1, into a suction chamber Y formed between the contact point O and a wall face of the blade D in the forward side of the rotation direction of said eccentric shaft portion C1 and a compression chamber X formed between said contact point O and a wall face of the blade D in the backward side of the rotation direction of said eccentric shaft portion C1. When driving the drive shaft C, said contact point O of the roller B with the inner wall of said cylinder chamber A1 is moved along the inner wall of said cylinder cha

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