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铁镍合金的热加工工艺 被引量:1

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作者 连奇方
出处 《首钢科技》 1996年第2期29-33,共5页 Shougang Science and Technology
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  • 1李正邦.超洁净钢和零非金属夹杂钢[J].特殊钢,2004,25(4):24-27. 被引量:20
  • 2Guo X, Kusabiraki K, Saji S. High-temperature scale formation of Fe- 36% Ni bicrystals in air[J]. Oxidation of Metals, 2002, 58(5-6): 589-605.
  • 3草明清志,桉谷贤,佐治重典.Fe-36%Ni合金の粒界选择酸化に及はす引报广力の影响[J].铁と钢:日本铁钢协会々志,1998,B4(4):291-296.
  • 4Guo X, Kusabiraki K. High temperature oxidation of the bicrystals of incoloy alloy 909 and an Fe-36% Ni alloy in air under tensile stress? [ J]. Materials at High Temperatures, 2001, 18 (1) : 57-64.
  • 5Yu Y C, Chen W Q, Zheng H G. Influence of heating conditions on the oxidation behavior of Fe-36Ni invar alloy [ J 1. High Temperature Materials and Processes, 2014, 33(3) : 253-260.
  • 6Yu Y C, Chen W Q, Zheng H G. High-temperature oxidation behavior and formation mechanism of rolling cracks of Fe-36Ni invar alloy [ J ]. High Temperature Materials and Processes, 2013, 32( 1 ) : 83-88.
  • 7李铁藩.金属高温氧化和热腐蚀[M].北京:化学工业出版社,1993:16-18.
  • 8Matsuda F, Nakagawa H, Minehisa S, et al. Weldability of Fe-36% Ni alloy report II: Effect of chemical composition on reheated hot cracking in weld metal[J]. Trans JWRI, 1984, 13(2) : 69-75.
  • 9Yushchenko K A, Savchenko V S, Starushchenko T M. The role of segregation of oxygen in welding alloys of the invar type [ M]//Hot Cracking Phenomena in Welds. Berlin Heidelberg: Springer, 2005: 59-70.
  • 10Zhang L, Thomas B G. State of the art in evaluation and control of steel cleanliness[ J]. ISIJ Intemational, 2003, 43 (3) : 271-291.

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