Effects of Austempering Heat Treatment on Corrosion and Wear Properties of Ductile iron Containing 1% Cu.

碩士 === 大同大學 === 材料工程學系(所) === 107 === In the study , 1wt% copper ductile iron (FCD450) is examined in different austempering conditions (300℃-1hr、300℃-5hr、300℃-10hr、360℃-1hr、360℃-5hr、360℃-10hr) for transferring to austempered ductile iron (ADI) respectively. Then analysis of microstructures, mechani...

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Main Authors: Wei-Shih You, 游尉詩
Other Authors: Cheng-Hsun Hsu
Format: Others
Language:zh-TW
Published: 2019
Online Access:http://ndltd.ncl.edu.tw/handle/yy3vdj
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spelling ndltd-TW-107TTU051590022019-11-01T05:28:08Z http://ndltd.ncl.edu.tw/handle/yy3vdj Effects of Austempering Heat Treatment on Corrosion and Wear Properties of Ductile iron Containing 1% Cu. 沃斯回火條件對含1%Cu球墨鑄鐵腐蝕及磨耗性質之影響 Wei-Shih You 游尉詩 碩士 大同大學 材料工程學系(所) 107 In the study , 1wt% copper ductile iron (FCD450) is examined in different austempering conditions (300℃-1hr、300℃-5hr、300℃-10hr、360℃-1hr、360℃-5hr、360℃-10hr) for transferring to austempered ductile iron (ADI) respectively. Then analysis of microstructures, mechanical properties,and the mechanism of corrosive wear is made to understand different austempering conditions influence the mechanism of corrosive wear of ADI. The results of the experiment showed the needle-shaped lower bainite generated in lower austempering temperature (300℃) has higher hardness, lower retained austenite amount, higher carbon content of retained austenite and the wear resistance is better than that in higher austempering temperature(360℃). By increasing austempering time, the retained austenite amount decreases and carbide precipitate increases,and both improve the strength and the wear resistance. The findings of the study have led to the conclusion that ADI is superior to DI, and ADI in the condition of 300℃-10hr has the higest hardness and the best wear resistance. Cheng-Hsun Hsu 許正勳 2019 學位論文 ; thesis 70 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 大同大學 === 材料工程學系(所) === 107 === In the study , 1wt% copper ductile iron (FCD450) is examined in different austempering conditions (300℃-1hr、300℃-5hr、300℃-10hr、360℃-1hr、360℃-5hr、360℃-10hr) for transferring to austempered ductile iron (ADI) respectively. Then analysis of microstructures, mechanical properties,and the mechanism of corrosive wear is made to understand different austempering conditions influence the mechanism of corrosive wear of ADI. The results of the experiment showed the needle-shaped lower bainite generated in lower austempering temperature (300℃) has higher hardness, lower retained austenite amount, higher carbon content of retained austenite and the wear resistance is better than that in higher austempering temperature(360℃). By increasing austempering time, the retained austenite amount decreases and carbide precipitate increases,and both improve the strength and the wear resistance. The findings of the study have led to the conclusion that ADI is superior to DI, and ADI in the condition of 300℃-10hr has the higest hardness and the best wear resistance.
author2 Cheng-Hsun Hsu
author_facet Cheng-Hsun Hsu
Wei-Shih You
游尉詩
author Wei-Shih You
游尉詩
spellingShingle Wei-Shih You
游尉詩
Effects of Austempering Heat Treatment on Corrosion and Wear Properties of Ductile iron Containing 1% Cu.
author_sort Wei-Shih You
title Effects of Austempering Heat Treatment on Corrosion and Wear Properties of Ductile iron Containing 1% Cu.
title_short Effects of Austempering Heat Treatment on Corrosion and Wear Properties of Ductile iron Containing 1% Cu.
title_full Effects of Austempering Heat Treatment on Corrosion and Wear Properties of Ductile iron Containing 1% Cu.
title_fullStr Effects of Austempering Heat Treatment on Corrosion and Wear Properties of Ductile iron Containing 1% Cu.
title_full_unstemmed Effects of Austempering Heat Treatment on Corrosion and Wear Properties of Ductile iron Containing 1% Cu.
title_sort effects of austempering heat treatment on corrosion and wear properties of ductile iron containing 1% cu.
publishDate 2019
url http://ndltd.ncl.edu.tw/handle/yy3vdj
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