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首页> 外文期刊>International journal of impact engineering >Energy absorption and ballistic limit of nanocomposite laminates subjected to impact loading
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Energy absorption and ballistic limit of nanocomposite laminates subjected to impact loading

机译:冲击载荷作用下纳米复合材料层板的能量吸收和弹道极限

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摘要

Composite laminates made of glass/epoxy with and without nano fillers were subjected to projectile impact. The laminates of different thicknesses were prepared by hand lay-up and compression molding processes. Laminates were made from glass woven roving mats of 610 gsm, epoxy resin and nano clay of 1-5 wt.% of matrix. A piston type gas gun setup was used to impact a spherical nose projectile of diameter 9.5 mm and mass of 7.6 g, on the nanocomposite laminates at impact velocities in the range of their ballistic limit and above. The energy absorbed during penetration and ballistic limit of the nanocomposite laminates were studied both experimentally and analytically. The analytical model also predicts the energy absorbed in various failure modes due to tensile failure of primary fibers, deformation of secondary fibers, delamination and matrix crack. Mechanical properties like tensile modulus, stress -strain function, shear modulus, and strain energy release rate were used as input to the analytical model. Laminates of three, five and eight layers have been considered for the analysis. The effect of clay dispersion in the matrix for different failure modes is discussed. Ballistic limit obtained from the model is validated with experimental results and good agreement is found.
机译:由具有/不具有纳米填料的玻璃/环氧树脂制成的复合层压板经受弹丸冲击。通过手工铺层和压模工艺制备不同厚度的层压板。层压板由610 gsm的玻璃纤维编织粗纱垫,环氧树脂和1-5%的基体的纳米粘土制成。使用活塞式气枪装置以在其弹道极限及以上范围内的冲击速度冲击直径为9.5mm且质量为7.6g的球形鼻部射弹。通过实验和分析研究了纳米复合材料层压板在穿透过程中吸收的能量和弹道极限。该分析模型还预测了由于初级纤维的拉伸断裂,次级纤维的变形,分层和基体裂纹而在各种失效模式下吸收的能量。诸如拉伸模量,应力-应变函数,剪切模量和应变能释放速率的机械性能被用作分析模型的输入。分析中考虑了三层,五层和八层的层压板。讨论了不同破坏模式下基体中粘土分散的影响。通过实验结果验证了从模型获得的弹道极限,并找到了很好的一致性。

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