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The influence of temperature and bonding thickness on the actuation of a cantilever beam by PZT patches

机译:温度和粘结厚度对PZT贴片对悬臂梁致动的影响

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The goal of this work is to investigate the sensitivity of transfer of piezoelectric actuation efficiency to a cantilever beam due to variations in the environmental temperature and possible variations in the thickness of the adhesive layers bonding actuators to a beam. Investigations are first done analytically on the basis of a static linear longitudinal strain distribution along the whole beam/bonding/actuators section, as well as the shear lag model. In addition to the known conditions for transfer of actuation efficiency such as impedance matching, one obtains further requirements for a transfer of this actuation efficiency, of which the most important is a small thickness of the adhesive layer. However, the influences of temperature and of bonding thickness are smaller than expected; that is, variations induced by practical mounting and by use outside the laboratory have no pronounced effect on the transfer of the actuation efficiency. Using then the finite element program ANSYS, the complete system was modelled, including the adhesive layers. For the FEM calculations, the temperature dependences of all material properties were linearized. Results show that the eigenfrequencies of the beam vibration decrease only slightly at higher temperature and for thicker adhesive layers, without any reduction in the resonance amplitude. The findings are partly validated by experimental measurements.
机译:这项工作的目的是研究由于环境温度的变化以及将致动器粘结到梁上的粘合剂层厚度的可能变化而引起的压电致动效率向悬臂梁传递的敏感性。首先,基于沿整个梁/粘结/执行器部分的静态线性纵向应变分布以及剪切滞后模型,进行分析性研究。除了诸如阻抗匹配之类的用于致动效率的转移的已知条件之外,还获得了对该致动效率的转移的进一步要求,其中最重要的是粘合剂层的小厚度。但是,温度和粘结厚度的影响小于预期。也就是说,实际安装和实验室外使用引起的变化不会对致动效率的传递产生明显影响。然后使用有限元程序ANSYS对整个系统进行建模,包括粘合剂层。对于FEM计算,将所有材料特性的温度依赖性线性化。结果表明,在较高温度下和较厚的粘合剂层中,梁振动的本征频率仅略有降低,而共振幅度没有任何降低。研究结果部分验证了这一发现。

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