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Monitoring the dynamic mechanical behavior of polymers and composites using mechanical impedance analysis (MIA)

机译:使用机械阻抗分析(MIA)监测聚合物和复合材料的动态机械行为

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AbstractThe techniques of mechanical impedance analysis (MIA) have been evaluated in terms of its potential for use as a reliable dynamic mechanical methodology. The method involves measuring the relation between a force input (excitation) and a motion output (response) between various points on the structure. In its most common and simple form, the force input and velocity output are measured at a single point of the structure and the values of the mechanical admittance (velocity/force) are plotted as a function of frequency. Rapid measurements and analysis of the dynamic mechanical properties of polymers and composites can be obtained by using a dual‐channel FFT spectrum analyzer interfaced with a personal computer. It is demonstrated that the technique can be used to analyze polymer viscoelasticity, to study phase transformation of thermosetting resins, and to monitor cure of integrated composite structures. Also discussed are the potential advantages and limitations of the MIA technique when applied in the fields of polymer science and engineerin
机译:摘要机械阻抗分析(MIA)技术已经根据其作为可靠的动态力学方法的潜力进行了评估。该方法涉及测量结构上不同点之间的力输入(激励)和运动输出(响应)之间的关系。在其最常见和最简单的形式中,在结构的单个点测量力输入和速度输出,并将机械导纳(速度/力)的值绘制为频率的函数。通过使用与个人计算机连接的双通道FFT频谱分析仪,可以快速测量和分析聚合物和复合材料的动态机械性能。结果表明,该技术可用于分析聚合物粘弹性,研究热固性树脂的相变,并监测集成复合材料结构的固化。还讨论了MIA技术在高分子科学和工程领域应用时的潜在优势和局限性

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