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首页> 外文期刊>Journal of intelligent material systems and structures >Experimental characterization and viscoelastic modeling for thermo-mechanical creep of 1-3 piezocomposites
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Experimental characterization and viscoelastic modeling for thermo-mechanical creep of 1-3 piezocomposites

机译:1-3压电复合材料热机械蠕变的实验表征和粘弹性模型

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摘要

1-3 piezocomposites are often subjected to mechanical pre-stress under elevated temperatures in naval and offshore applications, actuators, and so on, where the presence of the ductile epoxy matrix causes considerable creep in the system. This deteriorates the system efficiency and its overall performance. To address this issue, experiments are performed to capture the electromechanical response for thermo-mechanical creep of 1-3 piezocomposites for different fiber volume fractions under various thermal loads, wherein mechanical depolarization is observed. The piezo-coupling coefficient is observed to degrade. Higher thermal loads resulted in an increase in creep strain coupled with a decrease in creep polarization. A Kelvin–Voigt fractal derivative viscoelastic model is used to capture the creep strain. The creep strain is decomposed into ferroelastic and anelastic parts. The evolution of creep polarization is obtained using the ferroelastic component of the creep strain. The model predictions are found to be in agreement with the experimental observations.
机译:1-3压电复合材料在海军和海上应用,执行器等环境中经常会在高温下承受机械预应力,其中延展性环氧基质的存在会导致系统出现明显的蠕变。这会降低系统效率及其整体性能。为了解决这个问题,进行了实验以捕获在各种热负荷下不同纤维体积分数的1-3个压电复合材料对热机械蠕变的机电响应,其中观察到机械去极化。观察到压电耦合系数降低。较高的热负荷导致蠕变应变增加,同时蠕变极化减小。 Kelvin-Voigt分形导数粘弹性模型用于捕获蠕变应变。蠕变应变分解为铁弹性和非弹性部分。使用蠕变应变的铁弹性分量获得蠕变极化的演化。发现模型预测与实验观察结果一致。

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