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石墨颗粒/CuAlMn形状记忆合金复合材料中的位错内耗峰

孙 蔚 王清周 韩福生

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石墨颗粒/CuAlMn形状记忆合金复合材料中的位错内耗峰

孙 蔚, 王清周, 韩福生
cstr: 32037.14.aps.56.1020

The internal friction related to dislocation peak in a graphite particulate CuAlMn shape memory alloy composite

Sun Wei, Wang Qing-Zhou, Han Fu-Sheng
cstr: 32037.14.aps.56.1020
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  • 利用渗流技术制备出了以石墨颗粒为阻尼增强相、以Cu-11.9Al-2.5Mn(wt%)形状记忆合金为基体的复合材料,对该合金的内耗行为进行了研究. 在淬火态样品的内耗-温度曲线上观察到两个内耗峰,分别位于240 ℃和370 ℃附近. 对其中低温峰的变化规律和机理进行了研究. 实验发现,低温峰仅在复合材料中出现,峰位与频率无关,峰高随频率升高而上升;随升温速率增加,峰高增加,峰位移向高温;随石墨颗粒体积分数增加,峰高增加;经多次热循环后该内耗峰消失. 由以上特征和微观观察,可以证明该峰起因于外加交变应力与位错的相互作用.
    A composite was fabricated by an infiltration process using graphite particulates for damping enhancement phase and a Cu-11.9Al-2.5Mn (wt%) shape memory alloy as the matrix, and the internal friction of the resulting composite was studied. Two internal friction peaks were observed in the quenched specimens during heating at 240℃ and 370℃ respectively, of which only the evolvement and the mechanism of the low-temperature peak were investigated in the present study. It was found that, the peak only appears in the composite; the location of the peak is independent of frequency but its height increases with increasing frequency; the peak rises and shifts towards high temperature as the heating rate is increased; the height increases with increasing volume fraction of the graphite particulates; and it disappears after several thermal cycles. It is demonstrated from these features together with microstructure examinations that the peak results from the interaction between the applied stress and the dislocations in the matrix.
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  • 文章访问数:  10093
  • PDF下载量:  1211
  • 被引次数: 0
出版历程
  • 收稿日期:  2006-06-02
  • 修回日期:  2006-07-18
  • 刊出日期:  2007-01-05

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