首页> 外文期刊>Research in nondestructive evaluation: a journal of the American Society for Nondestructive Testing >INVESTIGATION OF STRESS AND TEMPERATURE EFFECT ON THE LONGITUDINAL ULTRASONIC WAVES IN POLYMERS
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INVESTIGATION OF STRESS AND TEMPERATURE EFFECT ON THE LONGITUDINAL ULTRASONIC WAVES IN POLYMERS

机译:应力和温度对聚合物纵向超声波影响的研究

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摘要

This work aims at establishing the effect of stress and temperature on the velocity of ultrasonic longitudinal waves in typical engineering polymers, and evaluating the potential of ultrasonic stress measurement in the evaluation of residual stresses in polymer parts. In order to estimate the effect of material morphology, two amorphous and two semicrystalline polymers have been considered. A series of tests are implemented, to determine the acoustoelastic constants and temperature constant of materials, by using the designed transducer fixtures for in situ measurement of longitudinal wave velocity. As expected, the velocity changes linearly with stress and temperature, and the temperature effect is as important as the acoustoelastic effect. It shows that this kind of nondestructive method is a valuable quantitative tool to estimate the residual stress in polymer products, but the material temperature influence must be considered during the estimation.
机译:这项工作旨在确定应力和温度对典型工程聚合物中超声纵波速度的影响,并评估超声应力测量在评估聚合物零件残余应力中的潜力。为了估计材料形态的影响,已经考虑了两种无定形和两种半结晶聚合物。通过使用设计的换能器夹具对纵波速度进行原位测量,进行了一系列测试,以确定材料的声弹性常数和温度常数。正如预期的那样,速度随应力和温度线性变化,温度效应与声弹效应一样重要。结果表明,这种非破坏性方法是估算聚合物产品中残余应力的有价值的定量工具,但是在估算过程中必须考虑材料温度的影响。

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