Rotary shaft for compressor

4508495
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Inventors

Monden, Tsuneo
Ozu, Masao
Ikegami, Satoshi

Application #

567345

Filed

Dec-30-1983

Published

Apr-2-1985

Current US Class

029/525
074/434
219/121.63
219/121.64
416/213A
418/63
418/91

International Classes

F04C 002/00; B23K 026/00

Field of Search

415/175 219/121 418/91 418/63 417/902 74/434 29/525 416/213

Assignee

Tokyo Shibaura Denki Kabushiki Kaisha (Kawasaki, JP)

Examiners

Garrett; Robert E.

Attorney, Agent or Firm

Cushman, Darby & Cushman

US Patent References

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Referenced by:

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Citation

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Abstract
A rotary shaft for compressor includes a cylindrical shaft body and a cylindrical eccentric member. The shaft body is rotatably arranged in an outer box of the compressor and is connected to an electric motor at one end portion thereof. The eccentric member has a through hole extending along the axis thereof and formed eccentric thereto, and also has a groove extending from the upper end face to the lower end face thereof to form a passage for lubrication oil. The groove is provided with a bottom face adjacent to the shaft body. The shaft body is inserted into the through hole. The eccentric member is secured to the other end portion of the shaft body by laser-welding the bottom of the groove to the shaft body. An annular eccentric roller is rotatably fitted onto the eccentric member.
 
Claims
What is claimed is:

1. A rotary shaft for a compressor which includes an outer box, driving means arranged within the outer box to drive the rotary shaft, and a compression section arranged within the outer box and having a compression chamber, comprising:

a cylindrical shaft body rotatably arranged within the outer box and connected to the driving means at one end portion thereof;

a cylindrical eccentric member having a through-hole extending along the axis thereof and formed eccentric thereto, and also having a groove extending from one end face to the other end face of the eccentric member to form a passage for lubrication oil, being provided with a bottom face adjacent to the shaft body, the shaft body being inserted into the through-hole and the eccentric member being secured to the other end portion of the shaft body by laser-welding the bottom of the groove to the shaft body, and being housed within the compression chamber; and



Description
BACKGROUND OF THE INVENTION

The present invention relates to a rotary shaft for a compressor.

Generally, a compressor of the closed type, for example, has a closed outer box in which electromotor and compressor sections are included. In addition, the outer box includes a rotary shaft which has a cylindrical rotary shaft body and an eccentric crank. A rotor in the electromotor section is secured to one end portion of the rotary shaft, and the eccentric crank is located in a compression chamber of the compressor section. An annular eccentric roller is fitted around the eccentric crank.

Conventionally, the eccentric crank is integrally formed, with the shaft body, or it is formed apart from the shaft body and is then secured to the shaft body by shrinkage fit, pressure fit, bonding or the like.

When the eccentric crank is integrally formed with the shaft body, it is made by casting or forging. Its materials are therefore limited in number and its manufacturing cost is substantially increased. When the eccentric crank is formed apart from the shaft body and is then secured to the shaft body by shrinkage fit, the dimensions of the rotary shaft may be changed, due to thermal influence, i.e., due to the residual stress caused by heating. In cases of pressure-fitting, there is the danger that the shaft body or eccentric crank might be deformed, damaging the outer circumference of the shaft body, as a result of resistance to the fitting pressure. In cases of bonding, the eccentric crank would be low in strength and lacking in reliability.
 
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