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Effect of growth rate on the tensile properties of DS NiAl/Cr(Mo) eutectic alloy produced by liquid metal cooling technique; Effect of growth rate on the tensile properties of DS NiAl/Cr(Mo) eutectic alloy produced by liquid metal cooling technique
Y. C. Liang; J. T. Guo; Y. Xie; L. Y. Sheng; L. Z. Zhou; Z. Q. Hu
2010 ; 2010
Source PublicationIntermetallics ; Intermetallics
ISSN0966-9795 ; 0966-9795
Volume18Issue:3Pages:319-323
AbstractAn eutectic multiphase alloy NiAl-28Cr-5.94Mo-0.05Hf-0.01Ho (at.%) was directionally solidified by liquid metal cooling technique at withdrawal rates of 3, 8 and 10 mm min(-1). The microstructure and tensile properties of alloys at room temperature, 1253 K and 1373 K were investigated. With the increase of withdrawal rate, the microstructure was refined including the refinement of eutectic cells and lamellae between the NiAl and Cr(Mo) phases. At room temperature, the alloys fractured as cleavage mode. At 1253 K, yield behavior occurred which lead to higher of tensile strength and ductility compared to those at room temperature, and the properties are independent of withdrawal rate. At 1373 K, tensile properties increase with the increase of withdrawal rate, and both the strength and elongation rate are lower than those at 1253 K. The mechanisms responsible for these changes were discussed. (C) 2009 Elsevier Ltd. All rights reserved.; An eutectic multiphase alloy NiAl-28Cr-5.94Mo-0.05Hf-0.01Ho (at.%) was directionally solidified by liquid metal cooling technique at withdrawal rates of 3, 8 and 10 mm min(-1). The microstructure and tensile properties of alloys at room temperature, 1253 K and 1373 K were investigated. With the increase of withdrawal rate, the microstructure was refined including the refinement of eutectic cells and lamellae between the NiAl and Cr(Mo) phases. At room temperature, the alloys fractured as cleavage mode. At 1253 K, yield behavior occurred which lead to higher of tensile strength and ductility compared to those at room temperature, and the properties are independent of withdrawal rate. At 1373 K, tensile properties increase with the increase of withdrawal rate, and both the strength and elongation rate are lower than those at 1253 K. The mechanisms responsible for these changes were discussed. (C) 2009 Elsevier Ltd. All rights reserved.
description.department[guo, j. t.] chinese acad sci, superalloys div, inst met res, shenyang 110016, peoples r china.;guo, jt (reprint author), chinese acad sci, superalloys div, inst met res, shenyang 110016, peoples r china;jtguo@imr.ac.cn ; [guo, j. t.] chinese acad sci, superalloys div, inst met res, shenyang 110016, peoples r china.;guo, jt (reprint author), chinese acad sci, superalloys div, inst met res, shenyang 110016, peoples r china;jtguo@imr.ac.cn
KeywordNickel Aluminides Nickel Aluminides Based On Nial Based On Nial Mechanical Properties At Ambient Mechanical Properties At Ambient Temperature Temperature Mechanical Properties At High temperAtures Mechanical Properties At High temperAtures Nial-cr Nial-cr Mechanical-properties Mechanical-properties Microstructure Microstructure
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WOS IDWOS:000274970700004 ; WOS:000274970700004
Citation statistics
Cited Times:14[WOS]   [WOS Record]     [Related Records in WOS]
Document Type期刊论文
Identifierhttp://ir.imr.ac.cn/handle/321006/31257
Collection中国科学院金属研究所
Recommended Citation
GB/T 7714
Y. C. Liang,J. T. Guo,Y. Xie,et al. Effect of growth rate on the tensile properties of DS NiAl/Cr(Mo) eutectic alloy produced by liquid metal cooling technique, Effect of growth rate on the tensile properties of DS NiAl/Cr(Mo) eutectic alloy produced by liquid metal cooling technique[J]. Intermetallics, Intermetallics,2010, 2010,18, 18(3):319-323, 319-323.
APA Y. C. Liang,J. T. Guo,Y. Xie,L. Y. Sheng,L. Z. Zhou,&Z. Q. Hu.(2010).Effect of growth rate on the tensile properties of DS NiAl/Cr(Mo) eutectic alloy produced by liquid metal cooling technique.Intermetallics,18(3),319-323.
MLA Y. C. Liang,et al."Effect of growth rate on the tensile properties of DS NiAl/Cr(Mo) eutectic alloy produced by liquid metal cooling technique".Intermetallics 18.3(2010):319-323.
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