Reciprocating compressor

5943941
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Inventors

Kato, Masafumi
Ito, Akichika

Application #

981695

Filed

Jan-6-1998

Published

Aug-31-1999

Current US Class

092/12.2
092/57
092/71
417/222.1
417/269

International Classes

F01B 013/04

Field of Search

92/12.2 92/57 92/71 417/269 417/227.1 417/227.2

Assignee

Kabushiki Kaisha Toyoda Jidoshokki, Seisakusho (Kariya, JP)

Examiners

Nguyen; Hoang

Attorney, Agent or Firm

Morgan & Finnegan, L.L.P.

US Patent References

4037522   Vehicle air conditio...
4244679   Swash-plate-type co...
4263814   Shoe for use in a s...
4283997   Refrigerant compr...
5056417   Swash plate type co...
5655432   Swash plate with p...

Referenced by:

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Citation

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Abstract
A compressor has pistons slidably housed in cylinder bores. Respective shoes slide against each of the pistons and a swash plate or cam to convert rotation of the swash plate to reciprocation of the pistons. Each piston has a recess for slidably receiving the shoe. A friction reducing layer containing tin as a major component is formed between the shoe and the piston. Additionally, a tin-based layer may be formed between the shoe and the swash plate.
 
Claims
What is claimed is:

1. A reciprocating compressor comprising:

a cylinder block containing a cylinder bore;

a drive shaft;

a cam connected to and rotated by the drive shaft;

a piston slidably housed in the cylinder bore;

a follower device located between the piston and the cam, wherein the piston is reciprocated via the follower device as the cam is rotated, wherein the follower device has at least one load bearing surface that slides with respect to a cooperative surface; and

a layer containing more than 90% tin by weight formed on at least a portion of one of the load bearing surface of the follower device and the piston, wherein the layer containing tin reduces friction between itself and another surface with which it engages.



Description
TECHNICAL FIELD

The present invention relates generally to a reciprocating compressor, which converts rotation of a drive shaft to reciprocating motion of pistons, and more particularly, to a structure for reducing sliding resistance occurring at cam-piston joints.

BACKGROUND ART

A reciprocating compressor, for example, as shown in FIG. 10, is typically employed in air conditioners for automobiles and the like. This compressor has a pair of cylinder blocks 30 and 31 combined with each other. A swash plate chamber 32 is defined between these cylinder blocks 30 and 31. Housings 35 and 36 are attached to the outer end faces of the cylinder blocks 30 and 31 via valve plates 33 and 34, respectively. An intake chamber 37 and a discharge chamber 38 are defined between the valve plate 33 and the housing 35 and also between the valve plate 34 and the housing 36.

The drive shaft 39 is rotatably supported in these cylinder blocks 30 and 31. A swash plate 40 serving as a cam is fixed, in the swash plate chamber 32, to the drive shaft 39. Plural pairs of cylinder bores 41 and 42 are defined in the cylinder blocks 30 and 31 around the drive shaft 39. A double-headed piston 43 is housed in each pair of cylinder bores 41 and 42. Shoes 44, which serve as cam followers, are located between the swash plate 40 and each piston 43. Each shoe 44 has a sliding surface 45 that makes sliding contact with the front face or rear face of the swash plate 40 and a spherical surface 47 that makes sliding contact with a receiving recess 46 of the piston 43.
 
  A reciprocating compressor includes a cylinder block, a plurality of cylinder bores extending through the cylinder block, and a plurality of pistons slidably...  A reciprocating piston type compressor for compressing refrigerant gas is provided with a main housing which includes a plurality of parallel cylinder...