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Experimental studies on the punch shear characterization of satin weave graphite/epoxy composites at room and elevated temperatures

机译:缎纹编织石墨/环氧树脂复合材料在室温和高温下的冲剪特性试验研究

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In many situations, composite structures are subjected to dynamic loading. To design such structures, there is a need of dynamic material properties. In the current investigation, a compression split Hopkinson pressure bar (SHPB) was modified to load the samples in punch shear mode. Experimental studies were conducted to characterize 24-layer satin weave graphite/epoxy laminate samples. Laminates were manufactured using vacuum assisted resin infusion molding (VARIM) process. Samples of nominal size 26 mm X 13 mm X 4 mm were subjected to dynamic punch shear test at three different pressure settings that yielded strain rates in the range of 1500-3500 s~(-1) at room and elevated temperatures of 51.7, 79.4 and 107.2 deg C. Dynamic shear stress-strain properties were evaluated. Failure modes were characterized through optical and scanning electron microscopy. Results of the tests indicate that the dynamic shear strength increases with increase with the strain rate and decreases with temperature for a given strain rate. Higher temperature causes the softening of matrix.
机译:在许多情况下,复合结构会承受动态载荷。为了设计这样的结构,需要动态的材料特性。在当前的研究中,对压缩裂口霍普金森压力杆(SHPB)进行了修改,以冲模剪切模式加载样品。进行了实验研究,以表征24层缎纹编织石墨/环氧层压板样品。层压板是使用真空辅助树脂灌注成型(VARIM)工艺制造的。将标称尺寸为26 mm X 13 mm X 4 mm的样品在三种不同的压力设置下进行动态冲剪试验,在室温和升高的温度51.7、79.4下,应变率在1500-3500 s〜(-1)范围内。和107.2℃。评估了动态剪切应力-应变特性。通过光学和扫描电子显微镜表征失效模式。测试结果表明,在给定的应变速率下,动态剪切强度随应变速率的增加而增加,而随温度降低。较高的温度导致基质软化。

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