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The impact damage and residual load capacity of composite stepped bonding repairs and joints

机译:复合阶梯结合修补和接头的冲击损伤和残余承载能力

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摘要

Step topology adhesively bonded structure is preferable applied in composite repairs and joints of primary load-bearing structure. The failure mechanism and responses under low velocity impact are still not expressly revealed. A series of experiments for impact are conducted. Responses of impact contact load, deflection, absorbed energy and speed were tested. A critical impact energy of adhesive damage and residual strength was found. Above the energy level, tension capability after impact would drop largely. The stepped adhesive damage occur in the second step to the fifth step. The bondline damage modes include adhesive cohesive failure, composite-adhesive interface failure, matrix crack, interlamina delamination. The failure adhesive, interlamina, and matrix are bear tension-shear combined stress in the bottom-half at thickness direction. To testify the failure mechanism and reveal more, a progressive damage model of FEM based on zero thickness cohesive zone method was built. The constitutive relation is considered linear strain softening. The simulation results show more accurate damage detail of adhesive and composite materials with time varying. Synthesizing experimentation and simulation, the failure mechanism of composite stepped structure with impact load is distinctly known. The experimental results also help the parametric inversion of the simulated model. The cohesive zone element parameters of stiffness, strength and fracture toughness are validated and useful.
机译:阶梯拓扑粘合结构优选用于复合材料的修补和主要承重结构的接缝。仍未明确揭示低速冲击下的失效机理和响应。进行了一系列冲击试验。测试了冲击接触载荷,挠度,吸收能量和速度的响应。发现粘合剂破坏和残余强度的临界冲击能。超过能量水平,冲击后的抗拉能力将大大下降。在第二步骤至第五步骤中发生阶梯状的粘合剂损坏。键合线损坏模式包括粘合剂内聚破坏,复合材料-粘合剂界面破坏,基体裂纹,层间分层。失效粘合剂,层间和基体在厚度方向的下半部分承受拉伸-剪切组合应力。为了验证失效机理并揭示更多信息,建立了基于零厚度内聚区法的有限元渐进损伤模型。本构关系被认为是线性应变软化。仿真结果表明,随着时间的变化,粘合剂和复合材料的损伤细节更加精确。综合实验与仿真,明确了复合阶梯结构在冲击载荷作用下的破坏机理。实验结果还有助于仿真模型的参数反演。刚度,强度和断裂韧性的内聚区元素参数得到了验证和有用。

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