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Shape-memory alloy mechanical contact devices

机译:Shape-Memory合金机械接触设备

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摘要

The effect of current cycling on the performance of bolted aluminum-to-aluminum connections employing different mechanical contract devices has been studied. Current-cycling conditions and different initial contact loads (0.7 and 2 kN) have been used. The devices considered were lock-spring, conventional disc-spring (Belleville) and shape-memory alloy disc-spring washers. The results show that the mechanical and electrical integrity of the connections is strongly affected by the joint configuration, which differs according to the mechanical device used. The CuAlMn shape-memory alloy disc-spring washer was found to significantly lower and stabilize the contact resistance in a bolted joint, even when incorrectly installed (low initial contact force). The observed effect is explained in terms of a strong temperature dependence of the shape-memory alloy mechanical properties (spring rate) over a narrow temperature range. The mechanism responsible for this dependence is reversible martensite-austenite phase transformation which enables the shape-memory alloy to act as a sensor and a force actuator. This is of significant practical importance since field experience has shown that very often joint failures are linked to the incorrect installation of the joints.
机译:已经研究了当前循环对采用不同机械合同设备的螺栓铝至铝连接性能的影响。已经使用了电流周期条件和不同的初始接触载荷(0.7和2 kN)。所考虑的设备是锁弹簧,传统的圆盘弹簧(Belleville)和形状 - 内存碟形弹簧垫圈。结果表明,连接的机械和电气完整性受关节构型的强烈影响,关节构型根据所使用的机械设备而有所不同。发现CUALMN形状 - 内存合金圆盘弹簧垫圈显着降低并稳定在螺栓接头中的接触电阻,即使在不正确​​安装的情况下(低初始接触力)也是如此。观察到的效果是用在狭窄温度范围内的形状内存合金机械性能(弹簧速率)的强度依赖性来解释的。负责这种依赖性的机制是可逆的马氏岩 - 厄斯特矿相变,使形状 - 内存合金能够充当传感器和力执行器。这是重要的重要性,因为现场经验表明,通常与关节的不正确安装有关的关节故障。

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