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Cu-Al-Mn-Zn-Zr记忆合金的显微组织与力学行为 被引量:7

Microscopic structure and mechanical behavior of CuAlMnZnZr shape memory alloy
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摘要 利用金相显微镜、透射电镜、扫描电镜观察和力学性能测试等手段研究了Cu 18.4Al 8.7Mn 3.4Zn 0.1Zr(摩尔分数,%)记忆合金(多晶)在不同温度与组织下变形时的力学行为。实验合金在不同温度下变形时延伸率不同,变形温度(Td)在Ms与Af之间时的延伸率小于变形温度(Td)高于Af时的延伸率。对实验合金施加应力时,最初的变形主要来自应力诱发马氏体,继而发生马氏体变体择优合并,二者对合金的变形都有贡献;变形量更大时,变体界面共格性被破坏,部分马氏体丧失热弹性。少量α相的析出不影响记忆效应,可使延伸率得以提高。 Mechanical behavior of CuAlMnZnZr shape memory alloy with different microstructures deformed at different temperatures was studied by means of optical microscopy, scanning fracture morphology, TEM observation and the mechanical property measurement. The elongations are different when the tested alloy are deformed at different temperatures. Under the stress, the original deformation derives from the stressinduced martensite, and then the stressinduced martensite takes preferential merger. With the increase of the deformation, the coherent boundaries between the variants are destroyed, a part of the stressinduced martensite lose the thermoelasticity. The precipitation of minor α phase which has little effect on its shape memory effect can enhance its elongation .
出处 《中国有色金属学报》 EI CAS CSCD 北大核心 2003年第2期399-403,共5页 The Chinese Journal of Nonferrous Metals
基金 国家自然科学基金资助项目(50071069)
关键词 Cn—Al-Mn—Zn—Zr合金 应力诱发马氏体 延伸率 形状记忆合金 力学行为 显微组织 Cu-Al-Mn-Zn-Zr shape memory alloy stress-induced martensite elongation
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二级参考文献1

  • 1刘锦文,1984年马氏体相变讨论会文集,1984年

共引文献7

同被引文献48

  • 1韩永梅,丁坤英,马会娜,林晓娉.Cu-Al-Mn-Zn-Zr合金的显微组织及其形状记忆效应[J].河北工业大学学报,2004,33(3):73-76. 被引量:2
  • 2郝玉琳,杨锐.纳米高强Ti-Nb-Zr-Sn合金[J].金属学报,2005,41(11):1183-1189. 被引量:21
  • 3蔡莲淑,余业球,罗继辉,黎沃光.热型连铸超弹性CuAlNi合金丝的拉伸疲劳性能[J].热加工工艺,2006,35(9):5-8. 被引量:3
  • 4CLEMENT G, NAUDOT P, WELTER J M. Cu-A1-Ni shape memory alloys[J]. M.ateriaux et Techniques, 1993, 81 (6/7), 65-76.
  • 5WU M H, SEMIATIN S L, SECHETKY L M. Fabrication of a Cu-A1-Ni-Mn shape memory alloy[J~. Materials Charac- terization, 1994,32 (3) : 195-204.
  • 6EDUARD O, CARLOS F, LLUIS M. Order disorder transi- tions of Cu-A1-Mn shape memory alloys[J].Physical Review B, 1998,58 : 14245-14255.
  • 7MALLIK U S, SAMPATH V. Influence of aluminum and manganese concentration on the shape memory characteristic of Cu-A1-Mn shape memory alloys [J]. Journal of Alloys and Compounds, 2008,459 : 142-147.
  • 8SUTOU Y, KAINUMA R, ISHIDA K. Effect of alloying ele- ments on the shape memory properties of ductile Cu-A1-Mn alloys[J]. Mater Sci Eng A, 1999,273/275:375-379.
  • 9SUTOU Y, OMORI T, KAINUMA R,et al. Ductile Cu A1 Mn based shape memory alloys= General properties and appli cations[J]. Materials Science and Technology, 2008, 24 (8) 896-901.
  • 10Li Zhou, Wang Mingpu. Crystal structure and thermal stability of martensite in Cu-25Al-3Mn alloy[J] .Transactions of Nonferrous Metals Society of China,2002, 12(1):6- 12.

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