Effect of Sintering Atmosphere on the Mechanical Properties of Sintered Tungsten Carbide

One of the crucial stages in fabrication of WC-Co composite is sintering process. Inappropriate sintering state, especially sintering temperature will lead to an abnormal grain growth and thus reduce the mechanical properties of the sintered parts. Sintering atmosphere also plays a big role in oxida...

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Published in:MATEC Web of Conferences
Main Author: Budin S.; Jaafar T.R.; Selamat M.A.
Format: Conference paper
Language:English
Published: EDP Sciences 2017
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85033382197&doi=10.1051%2fmatecconf%2f201713003006&partnerID=40&md5=215ae96e1130c3cf83fc3ef158db0f95
id 2-s2.0-85033382197
spelling 2-s2.0-85033382197
Budin S.; Jaafar T.R.; Selamat M.A.
Effect of Sintering Atmosphere on the Mechanical Properties of Sintered Tungsten Carbide
2017
MATEC Web of Conferences
130

10.1051/matecconf/201713003006
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85033382197&doi=10.1051%2fmatecconf%2f201713003006&partnerID=40&md5=215ae96e1130c3cf83fc3ef158db0f95
One of the crucial stages in fabrication of WC-Co composite is sintering process. Inappropriate sintering state, especially sintering temperature will lead to an abnormal grain growth and thus reduce the mechanical properties of the sintered parts. Sintering atmosphere also plays a big role in oxidation, carburizing, decarburizing and nitriding on the surface of sintered parts. Prevention of any unwanted process during sintering is demanded to maintain the performance of WC-CO composites without any by-products. In this work, the effect of different sintering atmosphere and sintering temperatures was studied on the mechanical properties of WC-Co composites. 95% nitrogen (N2) mixed with 5% hydrogen (H2) gases was used as sintering atmosphere in a tube furnace whereas vacuum atmosphere was carried out in vacuum furnace. The sintering process was conducted at 1300°C and 1400°C, respectively. Higher relative density, hardness and transverse rupture strength (TRS) were observed on the sintered parts. Sintering under N2-H2 atmosphere exhibited better mechanical properties. Low mechanical properties observed in vacuum atmosphere was probably due to over-sintering which led to grain growth activities and formation of η-phase. © 2016 The Authors, published by EDP Sciences.
EDP Sciences
2261236X
English
Conference paper
All Open Access; Gold Open Access
author Budin S.; Jaafar T.R.; Selamat M.A.
spellingShingle Budin S.; Jaafar T.R.; Selamat M.A.
Effect of Sintering Atmosphere on the Mechanical Properties of Sintered Tungsten Carbide
author_facet Budin S.; Jaafar T.R.; Selamat M.A.
author_sort Budin S.; Jaafar T.R.; Selamat M.A.
title Effect of Sintering Atmosphere on the Mechanical Properties of Sintered Tungsten Carbide
title_short Effect of Sintering Atmosphere on the Mechanical Properties of Sintered Tungsten Carbide
title_full Effect of Sintering Atmosphere on the Mechanical Properties of Sintered Tungsten Carbide
title_fullStr Effect of Sintering Atmosphere on the Mechanical Properties of Sintered Tungsten Carbide
title_full_unstemmed Effect of Sintering Atmosphere on the Mechanical Properties of Sintered Tungsten Carbide
title_sort Effect of Sintering Atmosphere on the Mechanical Properties of Sintered Tungsten Carbide
publishDate 2017
container_title MATEC Web of Conferences
container_volume 130
container_issue
doi_str_mv 10.1051/matecconf/201713003006
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85033382197&doi=10.1051%2fmatecconf%2f201713003006&partnerID=40&md5=215ae96e1130c3cf83fc3ef158db0f95
description One of the crucial stages in fabrication of WC-Co composite is sintering process. Inappropriate sintering state, especially sintering temperature will lead to an abnormal grain growth and thus reduce the mechanical properties of the sintered parts. Sintering atmosphere also plays a big role in oxidation, carburizing, decarburizing and nitriding on the surface of sintered parts. Prevention of any unwanted process during sintering is demanded to maintain the performance of WC-CO composites without any by-products. In this work, the effect of different sintering atmosphere and sintering temperatures was studied on the mechanical properties of WC-Co composites. 95% nitrogen (N2) mixed with 5% hydrogen (H2) gases was used as sintering atmosphere in a tube furnace whereas vacuum atmosphere was carried out in vacuum furnace. The sintering process was conducted at 1300°C and 1400°C, respectively. Higher relative density, hardness and transverse rupture strength (TRS) were observed on the sintered parts. Sintering under N2-H2 atmosphere exhibited better mechanical properties. Low mechanical properties observed in vacuum atmosphere was probably due to over-sintering which led to grain growth activities and formation of η-phase. © 2016 The Authors, published by EDP Sciences.
publisher EDP Sciences
issn 2261236X
language English
format Conference paper
accesstype All Open Access; Gold Open Access
record_format scopus
collection Scopus
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