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首页> 外文期刊>Journal of Composite Materials >Investigation of indentation damage resistance on normal and inclined plane of glass/epoxy composite laminates using acoustic emission monitoring
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Investigation of indentation damage resistance on normal and inclined plane of glass/epoxy composite laminates using acoustic emission monitoring

机译:使用声发射监测对玻璃/环氧复合层压板正常和倾斜平面进行压痕损伤阻力

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This work relates to the investigation of indentation induced damage resistance in glass fiber reinforced polymer composite laminates under normal and inclined planes. Uni-directional [0] and cross-ply [0/90] glass fiber reinforced polymer composite specimens were subjected to 0 degrees and 20 degrees indentation loading with acoustic emission monitoring. The specimens were loaded at the centre using a hemispherical steel indenter with 12.7 mm diameter. Mechanical responses such as force-displacement behavior, absorbed energy and resulting damage area were used for the quantification of the indentation damage. Acoustic responses such as normalized cumulative counts, energy, duration and peak frequency were considered for monitoring damage progression during 0 degrees and 20 degrees indentation loading. The residual compressive strength of the glass fiber reinforced polymer specimens following indentation was measured by testing them under in-plane loading, once again with acoustic emission monitoring. The correlation between mechanical and acoustic strain energy was used for the evaluation of the damage severity of the laminates. The result revealed indentation damage resistance in cross-ply laminates as 65.08% and 68.01% higher than uni-directional laminates for 0 degrees, whereas for 20 degrees, there was a reduction in the damage resistance in cross-ply laminates to 43.27% and 57.39%. These were higher than uni-directional laminates under the displacements of 2 mm and 3 mm, respectively. The conclusion from these results was that transverse shear load at 20 degrees inclination of laminate leads to reduction in residual compressive strength. Moreover, uni-directional glass/epoxy laminates have better residual compressive strength than cross-ply laminates for both 2 mm and 3 mm indentation displacements.
机译:该工作涉及在正常和倾斜平面下玻璃纤维增​​强聚合物复合层压板上压痕诱导损伤性的调查。单向[0]和交叉层[0/90]玻璃纤维增​​强聚合物复合标本经受声发射监测的0度和20度压痕载荷。使用12.7mm直径的半球形钢压痕在中心装载样品。使用力 - 位移行为,吸收能量和产生的损伤区域的机械响应用于定量压痕损伤。被认为是归一化累积计数,能量,持续时间和峰值频率的声响应,以监测在0度和20度压痕加载期间监测损坏进展。通过在面内载荷下测试它们,测量压痕后玻璃纤维增​​强聚合物样本的残余抗压强度,再次用声发射监测。机械和声学应变能之间的相关性用于评估层压板的损伤严重程度。结果揭示了十字层层压板的压痕损伤性,比单向层压板高出0度,呈现出0度的68.01%,而20度,交叉层层压板的损伤阻力降低至43.27%和57.39 %。它们分别高于2mm和3mm的位移下的单向层压板。从这些结果的结论是,在20度的横向剪切载荷的层压材料的倾斜度导致残留抗压强度的降低。此外,单向玻璃/环氧树脂层压材料具有比2mm和3mm压痕位移的交叉层层压材料具有更好的残余抗压强度。

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