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Effect of texture on internal friction of Cu-Al-Mn based shape memory alloys

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【作者】 须藤祐司; OMORI Toshihiro; KOEDA Naoki; KAINUMA Ryosuke; ISHIDA Kiyohito;

【Author】 SUTOU Yuji1, OMORI Toshihiro1, KOEDA Naoki2, KAINUMA Ryosuke2, ISHIDA Kiyohito2(1.Biomedical Engineering Research Organization, Tohoku University, 2-1 Seiryo-machi, Aoba-ku, Sendai 980-8575, Japan;2.Department of Metallurgy, Graduate School of Engineering, Tohoku University,Aoba-yama 6-6-02, Sendai 980-8579, Japan)

【机构】 日本东北大学; Biomedical Engineering Research Organization; Tohoku University; 2-1 Seiryo-machi; Aoba-ku; Sendai 980-8575; Japan; Department of Metallurgy; Graduate School of Engineering; Aoba-yama 6-6-02; Sendai 980-8579; Japan;

【Abstract】 Shape memory alloys (SMAs) are well-known as high damping materials. Recently,we have reported that the Cu-Al-Mn SMAs show a high internal friction as well as the other SMAs such as Ni-Ti, Cu-Zn-Al SMAs. Since the Cu-Al-Mn-based SMAs possess an excellent cold-workability, a strong recrystallization texture can be formed by thermomechanical treatment. The present authors demonstrated that the texture control is considerably effective for improving the SM properties and especially, in the Cu-Al-Mn-Ni SMAs with a strong {112}<110> recrystallization texture, a large pseudoelastic (PE) of about 7% can be obtained. Such a texture control is expected to enhance the damping capacity in the Cu-Al-Mn-based SMAs as well as PE. In this study, the effect of texture on the internal friction in Cu-Al-Mn and Cu-Al-Mn-Ni SMAs was investigated by tensile testing mode of Dynamic Mechanical Spectrometer (DMS). In sheet specimens with the {112}<110> texture, value of dynamic damping tanφ depends on the loading direction and an excellent damping capacity of tanφ= 0.1 can be obtained at the rolling direction in the martensite phase condition. Moreover, these Cu-Al-Mn-based SMAs show a high tensile strength over 600 MPa in the martensite phase. The present Cu-Al-Mn-based SMAs should have a great potential as the damping materials.

  • 【文献出处】 材料与冶金学报 ,Journal of Materials and Metallurgy , 编辑部邮箱 ,2005年02期
  • 【分类号】TG139.6
  • 【下载频次】53
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