Research and Development advanced heat resistant steels

碩士 === 國立清華大學 === 材料科學工程學系 === 102 === Five heat resistant steel compositions (Alloy A-E) have been designed based on the Fe-Ni-Cr alloy system in attempts to increase cost performance of conventional heat resistant steels. With systematic additions of C, Si, Co, W, Nb, Mo, and the reduction of Ni...

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Main Authors: Fang, Hao-Hsien, 方皓賢
Other Authors: 葉安洲
Format: Others
Language:en_US
Published: 2014
Online Access:http://ndltd.ncl.edu.tw/handle/harm7x
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spelling ndltd-TW-102NTHU51591972019-05-15T21:42:04Z http://ndltd.ncl.edu.tw/handle/harm7x Research and Development advanced heat resistant steels 先進耐熱鋼的研究開發 Fang, Hao-Hsien 方皓賢 碩士 國立清華大學 材料科學工程學系 102 Five heat resistant steel compositions (Alloy A-E) have been designed based on the Fe-Ni-Cr alloy system in attempts to increase cost performance of conventional heat resistant steels. With systematic additions of C, Si, Co, W, Nb, Mo, and the reduction of Ni content, further strengthening can be provided by formation of various types of carbides such as MC, M7C3, and M23C6. To evaluate their properties, experimental work includes room temperature hardness, 1000°C tensile tests, creep tests under 900°C/65MPa and 982°C/35MPa, and high temperature oxidation of as-cast and pre-oxidized samples at 1000°C, 1100°C and 1150°C. Comparing to the properties commercial HP alloy, the newly designed alloy can exhibit more than 10 times increase in creep rupture life by discontinuous carbide distribution and higher MC to M23C6 ratio caused by Nb, W and Mo addition and Cr decrement. Besides, tensile strength at 1000°C and room temperature hardness is 1.4 times better than that of HP alloy. Furthermore, the oxidation resistance was maintained by pre-oxidized treatment at 1000°C. Advanced heat resistant steels have been developed successfully with much improved cost-performance in this work. 葉安洲 2014 學位論文 ; thesis 75 en_US
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description 碩士 === 國立清華大學 === 材料科學工程學系 === 102 === Five heat resistant steel compositions (Alloy A-E) have been designed based on the Fe-Ni-Cr alloy system in attempts to increase cost performance of conventional heat resistant steels. With systematic additions of C, Si, Co, W, Nb, Mo, and the reduction of Ni content, further strengthening can be provided by formation of various types of carbides such as MC, M7C3, and M23C6. To evaluate their properties, experimental work includes room temperature hardness, 1000°C tensile tests, creep tests under 900°C/65MPa and 982°C/35MPa, and high temperature oxidation of as-cast and pre-oxidized samples at 1000°C, 1100°C and 1150°C. Comparing to the properties commercial HP alloy, the newly designed alloy can exhibit more than 10 times increase in creep rupture life by discontinuous carbide distribution and higher MC to M23C6 ratio caused by Nb, W and Mo addition and Cr decrement. Besides, tensile strength at 1000°C and room temperature hardness is 1.4 times better than that of HP alloy. Furthermore, the oxidation resistance was maintained by pre-oxidized treatment at 1000°C. Advanced heat resistant steels have been developed successfully with much improved cost-performance in this work.
author2 葉安洲
author_facet 葉安洲
Fang, Hao-Hsien
方皓賢
author Fang, Hao-Hsien
方皓賢
spellingShingle Fang, Hao-Hsien
方皓賢
Research and Development advanced heat resistant steels
author_sort Fang, Hao-Hsien
title Research and Development advanced heat resistant steels
title_short Research and Development advanced heat resistant steels
title_full Research and Development advanced heat resistant steels
title_fullStr Research and Development advanced heat resistant steels
title_full_unstemmed Research and Development advanced heat resistant steels
title_sort research and development advanced heat resistant steels
publishDate 2014
url http://ndltd.ncl.edu.tw/handle/harm7x
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