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首页> 外文期刊>Polymer Testing >Progressive failure numerical simulation and experimental verification of carbon-fiber composite corrugated beams under dynamic impact
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Progressive failure numerical simulation and experimental verification of carbon-fiber composite corrugated beams under dynamic impact

机译:动态冲击下碳纤维复合波纹梁的逐步失效数值模拟及实验验证

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摘要

AbstractTo explore the axial impact energy absorption capacity of bidirectional carbon pre-impregnated (prepreg) composite corrugated beams, a solid 3D finite element model with different trigger mechanism settings and different ply designs was established. Numerical simulation of dynamic impact was performed on the model. An in-plane damage model considering shear failure was created based on continuum damage mechanics and Hashin's criteria, and a stiffness degradation model of damage failure for G803/5224 is proposed. The cohesive zone model is used and the bilinear traction-separation constitutive model is considered to simulate inter-laminar delamination failure, thereby accurately reflecting the anisotropic progressive damage characteristics of bidirectional carbon-fiber prepreg composite corrugated beams. The results show that progressive failure and damage occur under impact loading of corrugated beams. The energy-absorbing load-displacement curve and specific energy absorption were obtained through simulation. Simulation results were validated by comparison with test results. With the maximum relative error of its average crushing load less than 11%, the damage morphology and test results of the beam has improved in uniformity. Furthermore, the validity of 3D finite element models considering inter-laminar delamination damage has been validated.]]>
机译:<![CDATA [ 抽象 探索双向碳预浸渍(预浸料)复合波纹梁的轴向冲击能量吸收能力,固体3D具有不同触发机制设置和不同的PLY设计的有限元模型。对模型进行了动态影响的数值模拟。考虑剪切失败的面内损伤模型是基于连续损伤力学和Hashin的标准而创建的,提出了G803 / 5224的损坏失效的僵硬降解模型。使用粘性区域模型,并且认为双线性牵引分离构成模型被认为模拟层间分层失效,从而精确地反映了双向碳纤维预浸料复合波纹梁的各向异性渐进式损伤特性。结果表明,在瓦楞梁的冲击载荷下发生了渐进式故障和损伤。通过模拟获得能量吸收载荷 - 位移曲线和特定能量吸收。通过与测试结果进行比较验证了仿真结果。随着其平均破碎负载的最大相对误差小于11%,梁的损伤形态和测试结果具有改善的均匀性。此外,考虑层间分层损坏的3D有限元模型的有效性已被验证。 ]]>

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