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首页> 外文期刊>International Journal of Damage Mechanics >Experimental characterization of matrix cracking behavior in thermally cycled CFRP laminates
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Experimental characterization of matrix cracking behavior in thermally cycled CFRP laminates

机译:热循环CFRP层压板中基体开裂行为的实验表征

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摘要

The effect of thermal cycling on the mechanical properties of composite materials is an important issue in engineering, especially in their applications to the space environment. The present study concerned with the experimental study of both the thermal cycling induced matrix cracking and the effect of thermal cycling on the matrix cracking behavior under tensile loading in CFRP laminates. Two kinds of carbon/epoxy systems, T8OOH/3631 and T300/2500, are used for the laminate configurations of (0/90){sub}s and (90/0){sub}s. The specimens are thermally cycled between - 196 and 100℃. Thermal cycling tests are performed up to 1000 cycles. The polished edge surfaces of specimens are examined by the replica technique, and then the matrix crack density is measured as a function of the number of thermal cycles. It is found that the first matrix cracking in (0/90){sub}s and (90/0){sub}s laminates occurs at almost the same numbers of thermal cycles. It is also found that the matrix crack density increases more rapidly in (0/90){sub}s laminates than in (90/0){sub}s laminates in both material systems. To investigate the effect of thermal cycling on matrix cracking behavior under tensile loading, a series of tensile tests on thermally cycled specimens are performed. The effect of thermal cycling on matrix cracking under tension is evaluated in terms of the change in the critical energy release rate and the critical stress for matrix cracking.
机译:热循环对复合材料机械性能的影响是工程中的重要问题,尤其是在其应用于太空环境中。本研究涉及热循环引起的基体开裂的实验研究,以及热循环对CFRP层压板在拉伸载荷下基体开裂行为的影响。 (0/90){sub} s和(90/0){sub} s的层压结构使用两种碳/环氧体系T800H / 3631和T300 / 2500。样品在-196至100℃之间进行热循环。热循环测试最多执行1000次循环。通过复制技术检查样品的抛光边缘表面,然后测量基体裂纹密度作为热循环次数的函数。发现在(0/90){sub} s和(90/0){sub}层压板中的第一基质开裂在几乎相同数量的热循环下发生。还发现在两种材料体系中,(0/90){sub}层压板中的基体裂纹密度比(90/0){sub}层压板中的基体裂纹密度增加更快。为了研究热循环对拉伸载荷下基体开裂行为的影响,对热循环试样进行了一系列拉伸试验。根据临界能量释放速率和基体开裂的临界应力的变化,评估了热循环对张力下基体开裂的影响。

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