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Investigation of a Self-Healing Bolted Joint Employing a Shape Memory Actuator

机译:采用形状记忆驱动器的自修复螺栓连接的研究

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This paper is a report of an initial investigation into the active control of preload in the joint using a shape memory actuator around the axis of the bolt shaft. Specifically, the actuator is a cylindrical Nitinol washer that expands axially when heated, according to the shape memory effect. The washer is actuated in response to an artificial decrease in torque. Upon actuation, the stress generated by its axial strain compresses the bolted members and creates a frictional force that has the effect of generating a preload and restoring lost torque. In addition to torque wrenches, the system in question was monitored in all stages of testing using piezoelectric impedance analysis. Impedance analysis drew upon research techniques developed at Center for Intelligent Material Systems and Structures, in which phase changes in the impedance of a self-sensing piezoceramic actuator correspond to changes in joint stiffness. Through experimentation, we have documented a successful actuation of the shape memory element. Due to complexity of constitutive modeling, qualitative analysis by the impedance method is used to illustrate the success. Additional considerations encountered in this initial investigation are made to guide further thorough research required for the successful commercial application of this promising technique.
机译:本文是对围绕螺栓轴轴线使用形状记忆执行器主动控制关节中预紧力进行初步研究的报告。具体地,致动器是圆柱形的镍钛诺垫圈,其根据形状记忆效应在加热时轴向膨胀。响应于人为降低的扭矩来启动洗衣机。在致动时,由其轴向应变产生的应力会压缩螺栓构件并产生摩擦力,该摩擦力具有产生预紧力和恢复损失的扭矩的作用。除扭矩扳手外,还使用压电阻抗分析在测试的所有阶段对系统进行监控。阻抗分析借鉴了智能材料系统和结构中心开发的研究技术,其中自感应压电陶瓷执行器阻抗的相位变化与关节刚度的变化相对应。通过实验,我们记录了形状记忆元件的成功驱动。由于本构模型的复杂性,使用阻抗法进行定性分析可证明成功。在此初步研究中遇到的其他考虑因素,是为了指导对该有希望的技术的成功商业应用进行进一步深入的研究。

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