The study on Ultra-fine WC-6 wt.%Co for producing cutting tool inserts
WC–Co cutting tools insert can be manufactured by controlling liquid phase migration or liquid redistribution during liquid phase sintering. In this study, the effect of temperature on mechanical properties has been studied. Sintering was done in controlled atmosphere (95% Nitrogen and 5% Hydrogen)....
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Universiti Malaysia Perlis
2009
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my.unimap-48512009-03-02T03:23:58Z The study on Ultra-fine WC-6 wt.%Co for producing cutting tool inserts Mohd Shirul Hassan Shamsul Baharin Jamaludin, Dr. (Advisor) Cutting tools Sintering Metal-cutting tools -- Materials Metal-cutting tools Tungsten carbide WC–Co cutting tools insert can be manufactured by controlling liquid phase migration or liquid redistribution during liquid phase sintering. In this study, the effect of temperature on mechanical properties has been studied. Sintering was done in controlled atmosphere (95% Nitrogen and 5% Hydrogen). Scanning Electron Microscope was used to characterize the microstructure. Sintered density was determined using Archimedes principle method while Rockwell Hardness scale A (HRA) was used to measure sintered samples hardness. Changes in dimension were measured with electronic digital caliper to study the shrinkage of samples. Microstructure was uniform for every sintering temperature. The result shows that at temperature 14500C, cutting tool has the optimum properties. At temperature 14500C the hardness and density were 89.18 HRA and 14.82 g/cm3 respectively. The highest rupture strength (TRS) also obtained at temperature 14500C with the value of 1573MPa. 2009-03-02T03:23:58Z 2009-03-02T03:23:58Z 2008-04 http://hdl.handle.net/123456789/4851 en Universiti Malaysia Perlis School of Materials Engineering |
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Cutting tools Sintering Metal-cutting tools -- Materials Metal-cutting tools Tungsten carbide Mohd Shirul Hassan The study on Ultra-fine WC-6 wt.%Co for producing cutting tool inserts |
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WC–Co cutting tools insert can be manufactured by controlling liquid phase migration or liquid redistribution during liquid phase sintering. In this study, the effect of temperature on mechanical properties has been studied. Sintering was done in controlled atmosphere (95% Nitrogen and 5% Hydrogen). Scanning Electron Microscope was used to characterize the microstructure. Sintered density was determined using Archimedes principle method while Rockwell Hardness scale A (HRA) was used to measure sintered samples hardness. Changes in dimension were measured with electronic digital caliper to study the shrinkage of samples. Microstructure was uniform for every sintering temperature. The result shows that at temperature 14500C, cutting tool has the optimum properties. At temperature 14500C the hardness and density were 89.18 HRA and 14.82 g/cm3 respectively. The highest rupture strength (TRS) also obtained at temperature 14500C with the value of 1573MPa. |
author2 |
Shamsul Baharin Jamaludin, Dr. (Advisor) |
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Shamsul Baharin Jamaludin, Dr. (Advisor) Mohd Shirul Hassan |
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Mohd Shirul Hassan |
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Mohd Shirul Hassan |
title |
The study on Ultra-fine WC-6 wt.%Co for producing cutting tool inserts |
title_short |
The study on Ultra-fine WC-6 wt.%Co for producing cutting tool inserts |
title_full |
The study on Ultra-fine WC-6 wt.%Co for producing cutting tool inserts |
title_fullStr |
The study on Ultra-fine WC-6 wt.%Co for producing cutting tool inserts |
title_full_unstemmed |
The study on Ultra-fine WC-6 wt.%Co for producing cutting tool inserts |
title_sort |
study on ultra-fine wc-6 wt.%co for producing cutting tool inserts |
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Universiti Malaysia Perlis |
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2009 |
url |
http://dspace.unimap.edu.my/xmlui/handle/123456789/4851 |
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1643788253892968448 |
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13.214268 |