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首页> 外文期刊>Nonlinear dynamics >Nonlinear low-velocity impact on damped and matrix-cracked hybrid laminated beams containing carbon nanotube reinforced composite layers
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Nonlinear low-velocity impact on damped and matrix-cracked hybrid laminated beams containing carbon nanotube reinforced composite layers

机译:含有碳纳米管增强复合层的阻尼和矩阵裂纹混合层压梁的非线性低速冲击

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This paper investigates the low-velocity impact response of a shear deformable laminated beam which contains both carbon nanotube reinforced composite (CNTRC) layers and carbon fiber reinforced composite (CFRC) layers. The effect of matrix cracks is considered, and a refined self-consistent model is selected to describe the degraded stiffness caused by the damage. The beam including damping effects rests on a two-parameter elastic foundation in thermal environments. Based on a higher-order shear deformation theory and von Karman nonlinear strain-displacement relationships, the motion equations of the beam and impactor are established and solved by means of a two-step perturbation approach. The material properties of both CFRC layers and CNTRC layers are assumed to be temperature-dependent. To assess engineering application of this hybrid structure, two conditions for outer CNTRC layers and outer CFRC layers are compared. Besides, the effects of the crack density, volume fraction of carbon nanotube, temperature variation, the foundation stiffness and damping on the nonlinear low-velocity impact behavior of hybrid laminated beams are also discussed in detail.
机译:本文研究了剪切可变形层压光束的低速冲击响应,其含有碳纳米管增强复合材料(CNTRC)层和碳纤维增强复合材料(CFRC)层。考虑基质裂缝的效果,选择精制的自我一致模型来描述由损伤引起的降级的刚度。包括阻尼效果的光束依赖于热环境中的双参数弹性基础。基于高阶剪切变形理论和von Karman非线性应变 - 位移关系,通过两步扰动方法建立和解决光束和冲击器的运动方程。假设CFRC层和CNTRC层的材料特性是温度依赖性的。为了评估该混合结构的工程应用,比较了外部CNTRC层和外CFRC层的两个条件。此外,还详细讨论了抗裂纹密度,碳纳米管,温度变化,基础刚度和阻尼在混合层压梁的非线性低速冲击行为上的影响。

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