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EFFECT OF GRANULOMETRY IN RELATION TO WEAR PRODUCED BY A METAL MATRIX COMPOSITE IN 316 STEEL REINFORCED WITH TIC SINTERED BY PLASMA

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JANUARY 2016   -  Volume: 91 -  Pages: 69-75

DOI:

https://doi.org/10.6036/7590

Authors:

SANDRA PEREZ VELASQUEZ - YANETH PINEDA - ARMANDO SARMIENTO SANTOS

Disciplines:

  • Metallurgical technology (PULVIMETALURGIA )

Downloads:   340

How to cite this paper:  
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Received Date :   18 March 2015

Reviewing Date :   1 December 2015

Accepted Date :   6 December 2015


Key words:
Pulvimetalurgia, Compuesto de Matriz Metálica, Carburo de Titanio, Granulometría, Coeficiente de fricción, Coeficiente de desgaste.Powder Metallurgy, Metal Matrix Composite, Titanium Carbide, Granulometry, Coefficient of Friction, Wear Coefficient.
Article type:
ARTICULO DE INVESTIGACION / RESEARCH ARTICLE
Section:
RESEARCH ARTICLES

This research presents an analysis of the coefficient behavior of the dry wear of a metal matrix composite (MMC) in stainless steel 316 reinforced with particles of Titanium Carbide (TiC) according to ASTM G99 standard [1], in a pin-on-disc tribo meter. This study tests the granulometry effects on the MMC manufactured with 3% in volume of TiC, in samples compacted at 700 MPa and sintered through the abnormal glow discharge, at a temperature of 1200°C ± 5 ºC, with a protection atmosphere H2 - N2 and a permanence time of 30 minutes.

This research has demonstrated that the best wear behavior is obtained for the granulometry; as a result of the mixture milling process for 80 minutes . Under this parameter a highest density, a smaller size of pore and a low coefficient of friction were got, guaranteeing that the incorporation of ceramic particles (Tic) in a matrix of austenitic steel (316) shows significant improvements in the resistance to the corrosion, behavior observed in the topographical analysis and in the footprint profile by obtaining the least depth.

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