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Designing a New Dynamic Mechanical Analysis (DMA) System for Testing Viscoelastic Materials at High Frequencies

机译:设计新型动态机械分析(DMA)系统,用于高频测试粘弹性材料

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摘要

The aim of this study is to design a new dynamic mechanical analysis (DMA) measurement system that can operate for shear tests at frequencies as high as 10?kHz with strain amplitudes sufficient for viscoelastic materials operating in high-frequency deformation applications, such as tire rubbers. The available DMA systems in market cannot effectively operate for accurate and direct measurement of viscoelastic material properties for applications dealing with high-frequency deformation of materials. Due to this, the available DMA systems are used for indirect measurements at low frequencies and low temperatures, followed by using time-temperature superposition principle to predict the properties at high frequencies. The goal of this study is to make the range of the test broad enough to eliminate the use of the time-temperature superposition principle in the determination of properties of viscoelastic materials. Direct measurement of viscoelastic material properties and increasing the accuracy of results are the main motivations to design a new DMA system. For this purpose, the state-of-the-art technologies to achieve high frequencies and strain amplitudes as well as instrumentation and control of the system are studied. The design process is presented in this paper.
机译:本研究的目的是设计一种新的动态机械分析(DMA)测量系统,可用于频率高达10?KHz的剪切试验,其应变幅度足以用于在高频变形应用中操作的粘弹性材料,例如轮胎橡胶。市场上的可用DMA系统不能有效地操作用于处理材料高频变形的应用的准确和直接测量粘弹性材料。由此,可用的DMA系统用于低频和低温下的间接测量,然后使用时间温度叠加原理来预测高频处的性质。本研究的目标是使测试的范围足够宽,以消除时间 - 温度叠加原理在粘弹性材料的性能方面的使用。直接测量粘弹性材料的性质,增加结果的准确性是设计新DMA系统的主要动机。为此目的,研究了实现高频和应变幅度的最先进的技术以及系统的仪器和控制。本文提出了设计过程。

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