Effects of heat treatment on hardness and dry wear properties of a semi-solid processed Fe-27 wt pct Cr-2.9 wt pct C cast iron

Effects of heat treatments on hardness and dry wear properties of a semi-solid processed Fe-26.96 wt pct Cr-2.91 wt pct C cast iron were studied. Heat treatments included tempering at 500°C, destabilisation at 1075°C and destabilisation at 1075°C plus tempering at 500°C, all followed by air cooling....

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Main Authors: Wiengmoon A., Chairuangsri T., Chomsang N., Poolthong N., Pearce J.T.H.
Format: Article
Language:English
Published: 2014
Online Access:http://www.scopus.com/inward/record.url?eid=2-s2.0-45449114420&partnerID=40&md5=71068ead229852efc12c923ac8f6f0bb
http://cmuir.cmu.ac.th/handle/6653943832/5561
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Institution: Chiang Mai University
Language: English
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spelling th-cmuir.6653943832-55612014-08-30T02:56:40Z Effects of heat treatment on hardness and dry wear properties of a semi-solid processed Fe-27 wt pct Cr-2.9 wt pct C cast iron Wiengmoon A. Chairuangsri T. Chomsang N. Poolthong N. Pearce J.T.H. Effects of heat treatments on hardness and dry wear properties of a semi-solid processed Fe-26.96 wt pct Cr-2.91 wt pct C cast iron were studied. Heat treatments included tempering at 500°C, destabilisation at 1075°C and destabilisation at 1075°C plus tempering at 500°C, all followed by air cooling. Electron microscopy revealed that, in the as-cast condition, the primary proeutectic austenite was round in shape while the eutectic M7C3 carbide was found as radiating clusters mixed with directional clusters. Tempering did not change the microstructure significantly when observed by scanning or transmission electron microscopy. Destabilisation followed by air cooling led to a precipitation of secondary M23C6 carbide and a transformation of the primary austenite to martensite. Precipitation behaviour is comparable to that observed in the conventionally cast iron. Tempering after destabilisation resulted in a higher amount of secondary carbide precipitation within the tempered martensite in the eutectic structure. Vickers macrohardness and microhardness in the proeutectic zones were measured. Dry wear properties were tested by using a pin-on-disc method. The maximum hardness and the lowest dry wear rate were obtained from the destabilisation-plus-tempering heat treatment due to the precipitation of secondary carbides within the martensite matrix and a possible reduction in the retained austenite. 2014-08-30T02:56:40Z 2014-08-30T02:56:40Z 2008 Article 10050302 JSCTE http://www.scopus.com/inward/record.url?eid=2-s2.0-45449114420&partnerID=40&md5=71068ead229852efc12c923ac8f6f0bb http://cmuir.cmu.ac.th/handle/6653943832/5561 English
institution Chiang Mai University
building Chiang Mai University Library
country Thailand
collection CMU Intellectual Repository
language English
description Effects of heat treatments on hardness and dry wear properties of a semi-solid processed Fe-26.96 wt pct Cr-2.91 wt pct C cast iron were studied. Heat treatments included tempering at 500°C, destabilisation at 1075°C and destabilisation at 1075°C plus tempering at 500°C, all followed by air cooling. Electron microscopy revealed that, in the as-cast condition, the primary proeutectic austenite was round in shape while the eutectic M7C3 carbide was found as radiating clusters mixed with directional clusters. Tempering did not change the microstructure significantly when observed by scanning or transmission electron microscopy. Destabilisation followed by air cooling led to a precipitation of secondary M23C6 carbide and a transformation of the primary austenite to martensite. Precipitation behaviour is comparable to that observed in the conventionally cast iron. Tempering after destabilisation resulted in a higher amount of secondary carbide precipitation within the tempered martensite in the eutectic structure. Vickers macrohardness and microhardness in the proeutectic zones were measured. Dry wear properties were tested by using a pin-on-disc method. The maximum hardness and the lowest dry wear rate were obtained from the destabilisation-plus-tempering heat treatment due to the precipitation of secondary carbides within the martensite matrix and a possible reduction in the retained austenite.
format Article
author Wiengmoon A.
Chairuangsri T.
Chomsang N.
Poolthong N.
Pearce J.T.H.
spellingShingle Wiengmoon A.
Chairuangsri T.
Chomsang N.
Poolthong N.
Pearce J.T.H.
Effects of heat treatment on hardness and dry wear properties of a semi-solid processed Fe-27 wt pct Cr-2.9 wt pct C cast iron
author_facet Wiengmoon A.
Chairuangsri T.
Chomsang N.
Poolthong N.
Pearce J.T.H.
author_sort Wiengmoon A.
title Effects of heat treatment on hardness and dry wear properties of a semi-solid processed Fe-27 wt pct Cr-2.9 wt pct C cast iron
title_short Effects of heat treatment on hardness and dry wear properties of a semi-solid processed Fe-27 wt pct Cr-2.9 wt pct C cast iron
title_full Effects of heat treatment on hardness and dry wear properties of a semi-solid processed Fe-27 wt pct Cr-2.9 wt pct C cast iron
title_fullStr Effects of heat treatment on hardness and dry wear properties of a semi-solid processed Fe-27 wt pct Cr-2.9 wt pct C cast iron
title_full_unstemmed Effects of heat treatment on hardness and dry wear properties of a semi-solid processed Fe-27 wt pct Cr-2.9 wt pct C cast iron
title_sort effects of heat treatment on hardness and dry wear properties of a semi-solid processed fe-27 wt pct cr-2.9 wt pct c cast iron
publishDate 2014
url http://www.scopus.com/inward/record.url?eid=2-s2.0-45449114420&partnerID=40&md5=71068ead229852efc12c923ac8f6f0bb
http://cmuir.cmu.ac.th/handle/6653943832/5561
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