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Martensitic Transformation and Response Characteristics in Bias-SMA Spring Actuators with Thermal Cycling

机译:热循环偏置 - SMA弹簧执行器中的马氏体转换和响应特性

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The effect of thermal cycling on the martensitic transformation and response characteristics has been studied in bias-SMA spring actuators aged at 350 °C ~ 500 °C. As the number of thermal cycling increases, the Ms temperature of the SMA spring showing only B2→B19' martensitic transformation by aging at 350 or 500 °C goes down. However, SMA spring in which B2→R→B19' martensitic transformation taken place by aging at 400 or 450 °C shows multi-step transformations i.e., M1 and M2 transformations with thermal cycling. The heat flow of M2 transformation increases while the transformation temperature difference between M1 and M2 transformations is enlarged as the number of cycling increases. The recovery displacement and force of bias-SMA spring actuator increase up to the 10th cycle and the extent of increase is the largest at aging temperature of 500 °C. However, both recovery properties decrease after the 103 or 104 cycles, while the decreasing tendency becomes larger with a rise in aging temperature. Such a change in recovery characteristics of bias-SMA spring actuator with thermal cycling is discussed in connection with training effect or lattice defects introduced during thermal cycling.
机译:在350℃〜500℃下的偏差-MA弹簧致动器中研究了热循环对马氏体转化和响应特性的影响。随着热循环的数量增加,SMA弹簧的MS温度仅以350或500°C的老化显示为B2→B19'马氏体转变。然而,在400或450℃下老化发生B2→R→B19'马氏体变换的SMA弹簧显示了热循环的多步变度,M1和M2变换。随着循环增加的数量增加,M2变换的热流增加,而M1和M2变换之间的变换温差被增大。偏置 - SMA弹簧致动器的恢复位移和力量增加到第10周期,增加程度在500℃的老化温度下最大。然而,在103或104周期之后,恢复性质的速度均降低,而随着老化温度的增加,降低趋势变大。在热循环期间引入的训练效果或晶格缺陷讨论了具有热循环的偏置SMA弹簧致动器的恢复特性的这种变化。

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