Influence of Heat Treatment and Composition Variations on Microstructure, Hardness, and Wear Resistance of C 18000 Copper Alloy

Author:

Osorio-Galicia Ramon1,Gomez-Garcia Carlos1,Alcantara Miguel Angel2,Herrera-Vazquez Andres1ORCID

Affiliation:

1. FES Cuautitlan, Universidad Nacional Autonoma de Mexico, Km 2.5 Carretera Cuautitlan-Teoloyucan, San Sebastian Xhala, Cuautitlan Izcalli, 54714 MEX, Mexico

2. CIATEQ (Advanced Technology Center) Aeronautical Materials Group, Avenue Manantiales No. 23-A, 76246 Qro, Parque Industrial Bernardo Quintana, El Marquez Qro, Mexico

Abstract

The hardness and wear behavior properties of two C 18000 copper alloys with variations in Ni, Si, and Cr concentrations, both within the range of C18000 chemical analysis standard, were studied after the alloy samples had been prepared by melting and casting in sand molds and then heat-treated in solution using two-stage aging for different heating time periods. The results obtained from sample sets of the aforementioned two alloys, and , show that the alloy , with slightly higher Si and Ni and lower Cr concentrations than the alloy , produced significantly higher hardness values and wear resistance than the alloy . Optical and electron microscopy microstructure studies of representative samples revealed a copper matrix containing nickel and silicon in solution and precipitates of chromium and nickel silicides. By studying the wear surfaces and debris of the former samples with electron microscopy, different types of wear mechanisms including adhesive, abrasive, oxidation, and repeated-cycle deformation were found. The wear behavior was expressed as mass weight loss, which correspondingly shows a typical inverse relationship with the hardness values for both the and alloy groups.

Publisher

Hindawi Limited

Subject

Industrial and Manufacturing Engineering,Mechanical Engineering

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