Ceramic camshaft

5067369
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Inventors

Taniguchi, Masato

Application #

538310

Filed

Apr-12-1990

Published

Nov-26-1991

Current US Class

074/567
123/90.6

International Classes

F16H 053/00; F01L 001/04

Field of Search

74/567 74/572 123/90.60 123/90.39 123/90.49 123/48 51/165.71 51/281 148/127 148/321 228/903 164/6 164/9 29/447 29/525

Assignee

NGK Spark Plug (Nagoya, JP)

Examiners

Luong; Vinh T.

Attorney, Agent or Firm

Sughrue, Mion Zinn Macpeak & Seas

US Patent References

4643144   Operating element...
4659245   Gas turbine
4697325   Method for joining...
4768476   Tappet with cerami...
4829951   Injection pump ca...
4848286   Ceramic tiped pivot...
4890783   Ceramic-metal join...
4902358   Ceramic to metal b...
4906306   Amorphous metal-...

Referenced by:

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Citation

Cite This Patent

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Abstract
A camshaft structure has shaft portions made of metal and which are axially aligned with each other. Ceramic cam portions are axially sandwiched between adjacent shaft portions. A thin layer of brazing alloy is arranged between adjacent surfaces of the shaft portions and cam portions so as to integrally bond the portions together to provide a high ridigity structure.
 
Claims
I claim:

1. A camshaft structure comprising:

a plurality of axially aligned shaft portions, each of which is made of metallic material; and

cylindrical cam portions each made from a ceramic material, and alternately arranged between the shaft portions with end surfaces of the cam portions being integrally bonded to adjacent surfaces of the shaft portions by means of a thermal bonding agent which has been brazed.

2. A camshaft structure as recited in claim 1, wherein each of the cam portions is made from an attrition resistant material selected from the group consisting of silicon nitride, sialon, silicon carbide, aluminum nitride and alumina.

3. A camshaft structure as received in claim 1, wherien the thermal bonding agent is comprised of brazing alloys.



Description
BACKGROUND OF THE INVENTION

1. Field of the Invention

This invention relates to camshaft structure which translates rotary movement into reciprocal movement, and particularly concerns a cam-shaft having ceramic cam portions which have an attrition-resistant property when applied to a valve system in an internal combustion engine.

2. Description of Prior Art

In a camshaft as shown in Japanese Utility Model Provisional Publication No. 61-8171 published March 13, 1986, a ceramic cam is inserted into a metallic shaft body to improve an attrition-resistant property of the cam, and at the same time, increasing light weight property.

In this instance, a pin and a metallic sleeve are used as an axial positioning means, while a key and groove are employed to protect the cam against a rotary slip. The groove is provided in the outer surface of the metallic shaft body, and inner surface of the ceramic cam, the key is placed in both the grooves, Further, the outer surface of the shaft body and the inner surface of the cam are bonded by means of brazing.
 
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