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Time dependence of mesoscopic strain distribution for triaxial woven carbon-fiber-reinforced polymer under creep loading measured by digital image correlation

机译:通过数字图像相关测量蠕变载荷下三轴编织碳纤维增强聚合物的介观应变分布的时间依赖性

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摘要

This paper presents the time dependence of the mesoscopic strain of a triaxial woven carbon-fiber-reinforced polymer under creep loading measured using digital image correlation (DIC). Two types of DIC techniques were employed for the measurement: conventional subset DIC and mesh DIC. Static tensile and creep tests were carried out, and the time dependence of the mesoscopic strain distribution was investigated by applying these techniques. The ultimate failure of this material is dominated by inter-bundle decohesion caused by relative rigid rotation and relating shear stress. Therefore, these were focused on in the present study. During the creep tests, the fiber directional strain, shear strain, and rotation were monitored using the DIC, and the mechanism for the increase in the specimen's macro-strain over time was investigated based on the results obtained by the DIC measurement.
机译:本文介绍了在蠕变载荷下使用数字图像相关(DIC)测量的三轴编织碳纤维增强聚合物的介观应变的时间依赖性。测量使用了两种类型的DIC技术:常规子集DIC和网格DIC。进行了静态拉伸和蠕变测试,并通过应用这些技术研究了介观应变分布的时间依赖性。这种材料的最终失效主要是由相对刚性旋转和相关的剪切应力引起的束间脱粘。因此,这些是本研究中的重点。在蠕变测试期间,使用DIC监测纤维的定向应变,剪切应变和旋转,并根据DIC测量获得的结果研究随时间推移而试样宏观应变增加的机理。

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