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ASTM Selected Technical Papers
Wear and Friction of Elastomers
By
R Denton
R Denton
symposium co-chairmen and editors
1
Materials Engineering, Smith International, Inc.
,
16740 Hardy Street, Houston, TX 77205-0068
Search for other works by this author on:
MK Keshavan
MK Keshavan
symposium co-chairmen and editors
1
Materials Engineering, Smith International, Inc.
,
16740 Hardy Street, Houston, TX 77205-0068
Search for other works by this author on:
ISBN-10:
0-8031-1467-2
ISBN:
978-0-8031-1467-8
No. of Pages:
134
Publisher:
ASTM International
Publication date:
1992

Friction induced vibration of an epoxy coated shaft rotating in an elastomer bushing is investigated. Three factional regimes were observed. System stiffness and load were varied to observe changes in the critical velocities bounding each regime. The load, velocity, and support stiffness interact to influence the vibration amplitude, the vibration frequency, and the frequency content of the friction torque.

1.
Bowden
F.P.
and
Leben
,
L.
, “
The Nature of Sliding and the Analysis of Friction
,”
Proc. Roy. Soc. London
 0370-1662,
A169
,
1939
, pp. 371–391.
2.
Rabinowicz
,
E.
,
Friction and Wear of Materials
,
John Wiley and Sons, Inc.
,
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,
1965
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3.
Brockley
,
C. A.
,
Cameron
R.
, and
Potter
,
A. F.
, “
Friction-Induced Vibration
,”
ASME Journal of Lubrication Technology
, Vol.
89
,
04
1967
, pp. 101–108.
4.
Ko
,
P. L.
, and
Brockley
,
C. A.
, “
The Measurement of Friction and Friction-Induced Vibration
,”
ASME Journal of Lubrication Technology
, Vol.
92
,
10
1970
, pp. 543–549.
5.
Brockley
,
C. A.
, and
Ko
,
P. O.
, “
Quasi-Harmonic Friction Induced Vibration
,”
ASME Journal of Lubrication Technology
,
10
1970
Vol.
92
, pp. 550–556.
6.
Aronov
,
V.
,
D'Souza
,
A. F.
,
Kalpakjian
,
S.
, and
Shareef
,
I.
,“
Interactions Among Friction, Wear, and System Stiffness—Part 2: Vibrations Induced by Dry Friction
,”
ASME Journal of Lubrication Technology
, Vol.
106
,
01
1984
, pp. 59–64.
7.
Aronov
,
V.
,
D'Souza
,
A. F.
,
Kalpakjian
,
S.
, and
Shareef
,
I.
,“
Experimental Investigation of the Effect of System Rigidity on Wear and Friction-Induced Vibrations
,”
ASME Journal of Lubrication Technology
, Vol.
105
,
04
1983
, pp. 206–211.
8.
Othman
,
M. O.
,
Elkholy
,
A. H.
, and
Seireg
,
A. A.
, “
Experimental Investigation of Frictional Noise and Surface-roughness Characteristics
,”
Experimental Mechanics
, Vol.
30
(
4
),
12
1990
, pp. 328–331.
9.
Kiryu
,
K.
,
Yanai
,
T.
,
Matsumoto
,
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, and
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,
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, “
An Analysis of “Ringing” Phenomena on a Water Pump Mechanical Seal (Part III)
,”
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, Vol.
31
, No.
2
, pp. 269–275.
10.
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,
V.
,
D'Souza
,
A. F.
,
Kalpakjian
,
S.
, and
Shareef
,
I.
,“
Interactions Among Friction, Wear, and System Stiffness—Part 1: Effect of Normal Load and Systen. Stiffness
,”
ASME Journal of Lubrication Technology
, Vol.
106
,
01
1984
, pp. 54–58.
11.
Kato
S.
and
Matsubayachi
T.
, “
On the Dynamic Behavior of Machine Tool Slideways
,”
Bulletin of the JSME
 0021-3764, Vol.
13
(
55
),
1970
, pp. 170–179.
12.
Bhushan
,
B.
, “
Stick-slip Induced Noise Generation in Water Compliant Rubber Bearings
”,
ASME Journal of Lubrication Technology
, Vol.
102
,
04
1980
, pp. 201–212.
13.
Schwartz
H.W.
,
Hays
,
D.
 Jr.
, and
Tarter
,
J.H.
, “
A systematic Approach to the Analysis of Brake Noise
,”
Surface Vehicle Noise and Vibration Conference Proceedings, P-161, Society of Automotive Engineers, Inc.
,
05
1985
, pp. 267–275.
14.
Earles
,
S.W.E.
, and
Soar
,
G.B.
, “
A Vibrational Analysis of a Pin-Disc System with Particular Reference to Squeal Noise in Disc Brakes
,”
Stress, Vibration, and Noise Analysis in Vehicles
,
Halsted Press
,
1975
, pp. 237–251.
15.
Sweet
,
G.C.
, in
Developments in Rubber Technology—1
, ed.
Whelan
,
A.
and
Lee
,
K.S.
,
Applied Science
,
London
,
1979
, Chapter 2.
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