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110611

WEAR RESISTANCE OPTIMIZATION OF COPPER, LEAD, TIN ALLOYS

Article

Last updated: 26 Dec 2024

Subjects

-

Tags

Mechanical, Power, Production, Design and Mechatronics Engineering.

Abstract

In the present study different copper-lead-tin alloys were prepared by casting. A wear test device was designed and manufactured to study the wear resistance of these alloys under different values of contact forces and sliding velocities. The data obtained from the wear test is modeled by the Adaptive Nearo Fuzzy Inference System (ANFIS) to predict an alloy of the highest wear resistance. Comparison between predicted an experimental wear results show good agreement. There are more than one combination of the considered copper alloy that show optimum resistance to wear, namely an alloy composed of (Cu = 75 %, Pb = 5 %, Sn = 20 %), and that composed of (Cu = 85 %, Pb = 5 %, Sn = 10 %).It was also found that the increase of lead decreases the wear resistance, while percentage of tin above 7 % increases the wear resistance of these copper base alloys. This is attributed to the change in the micro-structure of the tested alloys.

DOI

10.21608/jesaun.2006.110611

Authors

First Name

K. N.

Last Name

Abushgair

MiddleName

-

Affiliation

Mechanical Engineering Department, Faculty of Engineering Technology, Al-balqa' Applied University, Amman, Jordan

Email

khaleel45@yahoo.com

City

P.O. Box 15008, 11134 Amman, Jordan

Orcid

-

Volume

34

Article Issue

No 3

Related Issue

16606

Issue Date

2006-05-01

Receive Date

2006-03-19

Publish Date

2006-05-01

Page Start

747

Page End

764

Print ISSN

1687-0530

Online ISSN

2356-8550

Link

https://jesaun.journals.ekb.eg/article_110611.html

Detail API

https://jesaun.journals.ekb.eg/service?article_code=110611

Order

8

Type

Research Paper

Type Code

1,438

Publication Type

Journal

Publication Title

JES. Journal of Engineering Sciences

Publication Link

https://jesaun.journals.ekb.eg/

MainTitle

WEAR RESISTANCE OPTIMIZATION OF COPPER, LEAD, TIN ALLOYS

Details

Type

Article

Created At

23 Jan 2023