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首页> 外文期刊>Composite Structures >Experimental investigations on the response of stitched/unstitched woven S2-glass/SC15 epoxy composites under single and repeated low velocity impact loading
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Experimental investigations on the response of stitched/unstitched woven S2-glass/SC15 epoxy composites under single and repeated low velocity impact loading

机译:缝合/未缝合编织S2-玻璃/ SC15环氧复合材料在单次和反复低速冲击载荷下的响应的实验研究

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摘要

In the current investigation, damage resistance of stitched/unstitched S2-glass/epoxy composites is studied. Five layer stitched/ unstitched plain weave S2-glass woven fabric composite laminates were manufactured using toughened SC15 epoxy resin system. For stitching, two configurations: one with 25.4 mm grid and other with 12.7 mm grid, were used with 6 mm pitch. Damage resistance was evaluated by subjecting 100 x 100 mm samples to low velocity impact loading at energy levels ranging 10-80 J using DYNATUP Model 8210, an instrumented impact test system. Three samples were tested at each energy level. The extent of damage was evaluated using ultrasonic C-scan. Results of the study indicate that stitching confined the damage size. As the damage was low over most of the energy range, the study was further extended to determine the effect of repeated impact loading. Under this study, laminates were subjected to repeated impact loading up to maximum of 40 impacts at energy levels ranging from 10 to 50 J. Results of repeated impact study are reported in terms of peak load, absorbed energy and projected damage area. All the laminates, sustained repeated impact loading up to 30 J. Beyond 30 J, laminates failed to carry repeated loading beyond certain numbers, which depended on the laminate configuration.
机译:在目前的研究中,研究了缝合/未缝合的S2-玻璃/环氧树脂复合材料的抗损伤性。使用增韧的SC15环氧树脂体系制造了五层缝合/未缝合的平纹S2-玻璃机织物复合层压板。对于缝合,使用了两种配置:一种具有25.4 mm网格,另一种具有12.7 mm网格,间距为6 mm。通过使用仪器冲击测试系统DYNATUP 8210对100 x 100 mm样品在10-80 J的能量水平下进行低速冲击载荷进行评估,以评估其抗损伤性。在每个能级上测试了三个样品。使用超声C-扫描评估损伤的程度。研究结果表明,缝合限制了损伤的大小。由于在大部分能量范围内损伤很小,因此该研究进一步扩展,以确定重复冲击载荷的影响。在这项研究中,层压板在10至50 J的能量水平下承受了最多40次冲击的反复冲击载荷。根据峰值载荷,吸收的能量和预计的破坏面积报告了重复冲击研究的结果。所有层压板都承受高达30 J的反复冲击载荷。超过30 J,层压板无法承受超过一定数量的重复载荷,这取决于层压板的构造。

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