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A non-contact real-time strain measurement and control system for multiaxial cyclic/fatigue tests of polymer materials by digital image correlation method

机译:数字图像相关方法的聚合物材料多轴循环/疲劳试验的非接触实时应变测量与控制系统

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摘要

A non-contact real-time strain measurement and control system based on the Digital Image Correlation Method (DICM), has been successfully established for cyclic/fatigue tests of polymer materials. It allows recording of the evolution of strain during the entire fatigue life of the polymer materials under test. The stress-strain hysteresis loops can also be accurately recorded through synchronizing the stress and strain data. A minimum detectable strain of 0.01% was achieved. In addition, through simplifying the calculation procedure and optimizing the searching algorithm in DICM, a frequency of 10 Hz for strain data acquisition was reached. This made it possible to perform strain-range-controlled fatigue tests on the specimens. The reliability and universality of the system was verified by carrying out different types of multiaxial cyclic/fatigue tests on specimens of an epoxy polymer. The success of this method would facilitate performing various types of fatigue tests on polymer materials and would allow gaining better insight and understanding of their fatigue and failure behavior. (c) 2005 Elsevier Ltd. All rights reserved.
机译:基于数字图像相关方法(DICM)的非接触式实时应变测量和控制系统已成功建立,用于聚合物材料的循环/疲劳测试。它可以记录受测聚合物材料在整个疲劳寿命期间的应变变化。通过同步应力和应变数据,也可以准确地记录应力-应变磁滞回线。达到0.01%的最小可检测应变。此外,通过简化计算程序和优化DICM中的搜索算法,可以获取10 Hz的应变数据采集频率。这样就可以对样品进行应变范围控制的疲劳测试。通过对环氧聚合物样品进行不同类型的多轴循环/疲劳测试,验证了系统的可靠性和通用性。这种方法的成功将有助于对聚合物材料进行各种类型的疲劳测试,并使他们能够更好地了解和理解其疲劳和失效行为。 (c)2005 Elsevier Ltd.保留所有权利。

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