IP Library Granted Patent US 9,556,872
Granted Patent B2
US 9,556,872 · App. 14/624,805 · Granted Jan 31, 2017

Gas compressor formed with a high-pressure supply hole

Inventors: Keisuke Nakazawa (Saitama, JP); Eiki Yanagawa (Saitama, JP)
Assignee: Calsonic Kansei Corporation
F04C29/023F01C21/0872F04C18/321F04C18/3446F04C29/028F04C29/124F04C29/025F04C29/026F04C29/128
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 9,556,872
App. No.
14/624,805
Granted
Jan 31, 2017
Kind
B2
Abstract

A gas compressor comprises a rotor having vane grooves, a cylinder shaped to surround an outer circumference of the rotor, vanes plate-shaped, slidably inserted into the vane grooves, and abuttable at one ends on the inner circumference of the cylinder, upon receiving a back pressure from the vane grooves, two side blocks to enclose both ends of the rotor and the cylinder, respectively, compression chambers supplied with a medium to compress the medium to a high-pressure medium for discharge, an oil separator to separate, from the discharged high-pressure medium, oil to be used as the back pressure, an oil path through which the oil at a certain pressure is supplied to the vane grooves, and a high-pressure supply hole formed in at least one of the side blocks, including a small diameter portion and a large diameter portion integrally formed.

Claims (25)

1. A gas compressor comprising:

a compressor body comprising

a rotor in a cylindrical shape to rotate integrally with a rotational shaft, having vane grooves,

a cylinder with an inner circumference shaped to surround an outer circumference of the rotor,

vanes plate-shaped, slidably inserted into the vane grooves, and

abuttable at one ends on the inner circumference of the cylinder, upon receiving a back pressure from the vane grooves,

front and rear side blocks to enclose both ends of the rotor and the cylinder, respectively,

compression chambers partitioned by the outer circumference of the rotor, the inner circumference of the cylinder, inner faces of the front and rear side blocks, and the vanes, and supplied with a medium, to compress the medium to a high-pressure medium for discharge;

an oil separator to separate, from the discharged high-pressure medium, oil to be used as the back pressure;

an oil path through which the oil at a certain pressure is supplied to the vane grooves in a compression process of the medium in the compression chambers; and

a high-pressure supply hole through which the oil at a pressure higher than the certain pressure is supplied to the vane grooves in a last stage of the compression process, the high-pressure supply hole formed in at least one of the side blocks by drilling, including a small diameter portion upstream of an oil flow direction and a large diameter portion downstream of the oil flow direction, larger in diameter than the small diameter portion, the small and large diameter portions being integrally formed along a length of the high-pressure supply hole; wherein

the small diameter portion and the large diameter portion are integrally and coaxially formed; and wherein the at least one of the side blocks includes a shaft hole into which the rotational shaft is rotatably inserted and having an oil groove of a ring shape on an inner surface of the shaft hole, extending in a circumferential direction, to be supplied with the oil at a higher pressure than the certain pressure; and

an upstream end of the small diameter portion is open to the oil groove.

2. A gas compressor comprising:

a compressor body comprising

a rotor in a cylindrical shape to rotate integrally with a rotational shaft, having vane grooves,

a cylinder with an inner circumference shaped to surround an outer circumference of the rotor,

vanes plate-shaped, slidably inserted into the vane grooves, and

abuttable at one end on the inner circumference of the cylinder, upon receiving a back pressure from the vane grooves,

front and rear side blocks to enclose both ends of the rotor and the cylinder, respectively,

compression chambers partitioned by the outer circumference of the rotor, the inner circumference of the cylinder, inner faces of the front and rear side blocks, and the vanes, and supplied with a medium, to compress the medium to a high-pressure medium for discharge;

an oil separator to separate, from the discharged high-pressure medium, oil to be used as the back pressure;

an oil path through which the oil at a certain pressure is supplied to the vane grooves in a compression process of the medium in the compression chambers; and

a high-pressure supply hole through which the oil at a pressure higher than the certain pressure is supplied to the vane grooves in a last stage of the compression process, the high-pressure supply hole formed in at least one of the side blocks by drilling, including a small diameter portion upstream of an oil flow direction and a large diameter portion downstream of the oil flow direction, larger in diameter than the small diameter portion, the small and large diameter portions being integrally formed along a length of the high-pressure supply hole; wherein

the small diameter portion and the large diameter portion are integrally and coaxially formed.

Assignments (3)
CHANGE OF NAME Recorded Feb 22, 2022
From: MARELLI CABIN COMFORT JAPAN CORPORATION
To: HIGHLY MARELLI JAPAN CORPORATION
Reel/Frame 059216/0974 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 16, 2020
From: CALSONIC KANSEI CORPORATION
To: MARELLI CABIN COMFORT JAPAN CORPORATION
Reel/Frame 054664/0390 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 18, 2015
From: NAKAZAWA, KEISUKE; YANAGAWA, EIKI
To: CALSONIC KANSEI CORPORATION
Reel/Frame 035033/0737 →
Priority Claims (2)
JP 2014-043193 · Mar 5, 2014 · national
JP 2014-235515 · Nov 20, 2014 · national
Continuity (1)
Related Publication 20150252806A1 · Sep 10, 2015