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dc.contributor.author林志龍en_US
dc.contributor.authorChin-Long Linen_US
dc.contributor.author劉增豐en_US
dc.contributor.authorT. F. Liuen_US
dc.date.accessioned2014-12-12T02:01:38Z-
dc.date.available2014-12-12T02:01:38Z-
dc.date.issued2003en_US
dc.identifier.urihttp://140.113.39.130/cdrfb3/record/nctu/#GT009118550en_US
dc.identifier.urihttp://hdl.handle.net/11536/51212-
dc.description.abstract我們利用穿透式電子顯微鏡研究鐵-8.8鋁-30錳-6鉻-1.0矽-1.0碳合金之相變化。在淬火狀態下,此合金的顯微組織為單一的沃斯田鐵相。當此合金在550至1000℃時效熱處理後隨溫度增加,其相變化過程為((Fe, Mn, Cr)7C3+D03)→((Fe, Mn, Cr)7C3+B2)→((Fe, Mn, Cr)7C3+α) +γ→((Fe, Mn, Cr)7C3 +γ) →γ,可以明顯地發現沒有(Fe, Mn, Cr)23C7碳化物的產生在此成份的合金。這樣的相變化過程與之前被研究的鐵-8.8鋁-30錳-6鉻-1.0碳合金的相變化過程非常不一樣。此外,650℃時的B2相擁有比在750℃時的α相較多的矽含量,因此,造成在650℃時效處理所產生的D03相會比在750℃時效處理還大。zh_TW
dc.description.abstractThe Phase transformations in the Fe-8.8Al-30Mn-6Cr- 1.0Si-1.0C alloy have been examined by means of transmission electron microscopy. In the as-quenched condition, the microstructure of the alloy was the single phase austenite. When the as-quenched alloy was aged at temperatures ranging from 550 to 1000℃, the phase transformation sequence as the aging temperature increased was found to be ((Fe,Mn,Cr)7C3+D03)→ ((Fe,Mn,Cr)7C3+B2)→((Fe,Mn,Cr)7C3+α) +γ→((Fe,Mn,Cr)7C3 +γ)→γ, in which no (Fe,Mn,Cr)23C7 carbides could be found in the present alloy. These results are quite different from that observed in the Fe-8.8Al-30Mn- 6Cr-1.0C alloy. Besides, since the B2 phase present at 650℃ contains much more silicon than the ferrite phase present at 750℃, the size of the D03 domains was much larger than that of the alloy aged at 750℃ and then quenched.en_US
dc.language.isoen_USen_US
dc.subject相變化zh_TW
dc.subject鐵鋁錳鉻矽碳合金zh_TW
dc.subject電子顯微鏡zh_TW
dc.subjectphase transformationsen_US
dc.subjectFe-Al-Mn-Cr-Si-Cen_US
dc.subjectTEMen_US
dc.title鐵-8.8鋁-30錳-6鉻-1.0矽-1.0碳合金之相變化zh_TW
dc.titlePhase Transformations in an Fe-8.8Al-30Mn-6Cr-1.0Si -1.0CAlloyen_US
dc.typeThesisen_US
dc.contributor.department材料科學與工程學系zh_TW
Appears in Collections:Thesis


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