首页> 外文会议>ASME conference on smart materials, adaptive structures and intelligent systems;SMASIS2009 >THERMO-ELECTRO-MECHANICAL SHAKEDOWN RESPONSE OF CONDITIONED SHAPE MEMORY ALLOY WIRES
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THERMO-ELECTRO-MECHANICAL SHAKEDOWN RESPONSE OF CONDITIONED SHAPE MEMORY ALLOY WIRES

机译:形状记忆合金丝的热电机械响应

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The shakedown response of conditioned shape memory alloy wires (Flexinol~?) is examined experimentally during constant tension thermal cycles, at several load levels. Strain, temperature, and electrical resistivity are measured simultaneously using a specialized experimental setup that enables a relatively rapid temperature rate (1°C/s) while preserving the temperature uniformity along the gauge length to less than 1.5°C. Both elongation and electrical resistance are measured from the same local gauge length, allowing strain-corrected electrical resistivity to be inferred. The most repeatable behavior (least shakedown) occurs at the intermediate load of 191 MPa (consistent with the supplier's maximum stress recommendation), with a small amount of shakedown (and some loss of two-way shape memory) at lower loads and progressively larger shakedown (strain ratcheting and reduction in hysteresis) at higher loads.
机译:在各种负载水平下,在恒定张力热循环过程中,通过实验检查了条件形状记忆合金丝(Flexinol?)的击落响应。应变,温度和电阻率是使用专门的实验装置同时测量的,该装置可实现相对较快的温度速率(1°C / s),同时将沿标距的温度均匀性保持在1.5°C以下。伸长率和电阻都是从相同的本地标距测量的,从而可以推断出应变校正后的电阻率。最可重复的行为(最小摇动)发生在191 MPa的中间负载下(与供应商的最大应力建议一致),在较低的负载下出现少量的摇动(并损失了双向形状记忆),并且逐渐增大了摇动(较高的载荷下,应变棘轮和滞后性降低)。

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