Variable valve timing control device

6920853
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Inventors

Nakajima, Shigeru
Iwata, Taiyu
Hiratsuka, Ichiro
Kurumi, Takayuki
Ogawa, Kazumi

Application #

382880

Filed

Mar-7-2003

Published

Jul-26-2005

Current US Class

092/122
092/125
123/90.15
123/90.16
123/90.17
123/90.18
123/90.31
418/111
418/178
418/235
418/46
464/160
464/2

International Classes

F01L 001//34

Field of Search

123/9015- 464/1 464/2 464/160 92/120-126 418/46 418/78-82 418/111 418/178 418/179 418/206.9 418/235 428/908.8 148/206 148/207 148/210 148/212 148/218 148/239 427/523 427/528 427/531 427/905

Assignee

Aisin Seiki Kabushiki Kaisha (Kariya, JP)

Examiners

Denion; Thomas

Attorney, Agent or Firm

Burns; Doane; Swecker & Mathis; L.L.P.;;

US Patent References

5937810   Valve timing contro...
5947067   Valve timing adjust...
6413061   Rotary compressor...

Referenced by:

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Citation

Cite This Patent

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Abstract
A variable valve timing control device includes a rotation member for opening or closing a valve, a rotation transmission member engaged with the rotation member to be relatively rotatable, a vane provided on either one of the rotation member or the rotation transmission member, a hydraulic chamber formed between the rotation member and the rotation transmission member and including an advance angle chamber and a retarded angle chamber, the advance angle chamber and the retarded angle chamber being formed by dividing the hydraulic chamber by the vane, a first hydraulic passage for supplying and discharging a fluid to the advance angle chamber, and a second hydraulic passage for supplying and discharging the fluid to the retarded angle chamber. The vane includes a surface hardness determined to be higher than a surface hardness of a sliding surface of the rotation member or the rotation transmission member for sliding the vane.
 
Claims
1. A variable valve timing control device for controlling a valve timing of an intake valve or an exhaust valve of an internal combustion engine comprising:

a rotation member for opening or closing a valve;

a rotation transmission member engaged with the rotation member to be relatively rotatable;

a vane provided on either one of the rotation member or the rotation transmission member;

a hydraulic chamber formed between the rotation member and the rotation transmission member and including an advance angle chamber and a retarded angle chamber, the advance angle chamber and the retarded angle chamber being formed by dividing the hydraulic chamber by the vane;



Description
This application is based on and claims priority under 35 U.S.C. § 119 with respect to Japanese Patent Application No. 2002-063402 filed on Mar. 8, 2002 and Japanese Patent Application No. 2003-051581 filed on Feb. 27, 2003, the entire content of which is incorporated herein by reference.

FIELD OF THE INVENTION

The present invention relates to a variable valve timing control device. More particularly, the present invention pertains to a variable valve timing control device for controlling a valve timing of an intake and exhaust valves of an internal combustion engine.

BACKGROUND OF THE INVENTION

A known variable valve timing control device is disclosed in Japanese Patent Laid-Open Publication No. H11(1999)-81928. The known variable valve timing control device is provided on a drive force transmission system for transmitting a drive force from a driving shaft of the internal combustion engine to a driven shaft for opening and closing at least one of an intake valve or an exhaust valve of an internal combustion engine. The known variable valve timing control device includes a housing, a vane rotor having vanes rotating relative to the housing within a predetermined angle range, and sealing members supported by the vane rotor to contact the housing for sealing the housing and the vane rotor. With the known variable valve timing control device disclosed in Japanese Patent Laid-Open Publication No. H11(1999)-81928, aluminum or an iron system metal is applied as the housing and the sealing member made of resin with lower hardness than the housing is applied to each tip end of the vane. Because the sealing members always slidingly contact to an internal surface of the housing, the sealing members with low hardness likely to be worn. In case the housing and the vane are applied with the same material such as aluminum, the abrasion may be increased. In this case, for example as shown in FIG. 2, when hard foreign materials (e.g., molding sand) included in engine oil are jammed between the vane and the housing during the sliding operation of the vane, the foreign materials are buried in sliding surfaces on the housing side and on the vane side. Thus, the buried foreign materials on the hosing side and on the vane side scrape the opposing sliding surfaces on the housing side and the vane side one another to accelerate the abrasion as aggressive abrasion. Thus, the performance of the variable valve timing control device may be deteriorated. And foreign materials generated by the sliding abrasion influence causing defects such as burning of a camshaft and an operation lock of an OCV (i.e., oil pressure control valve).
 
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