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Study on the damping behavior of Al/SiCp composite in thermal cycling

机译:Al / SiCp 复合材料在热循环中的阻尼行为研究

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摘要

A SiC particulate reinforced 1040 commercially pure aluminum was thermally cycled in air between 20 and 300 °C up to 500 cycles. And the damping capacities of the specimens after 50 and 500 cycles were measured against temperature and strain amplitude. Thermal cycling causes the increase in damping, and dislocation damping is the main mechanism. A damping peak was observed in the range of 150–200 °C, which is related to dislocation motion. Thermal cycling leads to the increase in the peak temperature. The activation energy of the internal friction peak was calculated by Arrhenius equation, yielding 1.02 and 1.09 eV for 50 and 500 cycles, respectively. Increase in dislocation during thermal cycling is responsible for the increase in peak temperature and activation energy.
机译:将SiC颗粒增强的1040商业纯铝在20至300°C的空气中热循环多达500个循环。并测量了50和500次循环后样品的阻尼能力与温度和应变幅度的关系。热循环导致阻尼增加,位错阻尼是主要机制。在150-200°C的范围内观察到阻尼峰,这与位错运动有关。热循环导致峰值温度升高。内部摩擦峰的活化能通过Arrhenius方程计算,分别在50和500个循环中得到1.02和1.09 eV。热循环过程中位错的增加是峰值温度和活化能增加的原因。

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  • 来源
    《Journal of Materials Science》 |2007年第15期|6260-6266|共7页
  • 作者

    Hongxiang Zhang; Mingyuan Gu;

  • 作者单位

    State Key Laboratory of Metal Matrix Composites Shanghai Jiao Tong University No. 1954 Huashan Rd Shanghai 200030 China;

    State Key Laboratory of Metal Matrix Composites Shanghai Jiao Tong University No. 1954 Huashan Rd Shanghai 200030 China;

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