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首页> 外文期刊>Engineering Structures >Nonlinear flexural behavior of temperature-dependent FG-CNTRC laminated beams with negative Poisson's ratio resting on the Pasternak foundation
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Nonlinear flexural behavior of temperature-dependent FG-CNTRC laminated beams with negative Poisson's ratio resting on the Pasternak foundation

机译:温度依赖性FG-CNTRC层压梁的非线性弯曲行为,负泊松比在Pasternak基础上

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摘要

Nanocomposite materials, such as carbon nanotube-reinforced composites (CNTRCs), have emerged as a novel engineering material. They have received growing attentions in various engineering sectors. The fabrication process has also offered the possibility to design and make this type of material to have desired features, such as being functionally graded (FG) or/and having negative Poison's ratio. This paper reports an investigation on the nonlinear flexural behavior of auxetic laminated beams with each layer is made of CNTRC. Each layer may have different CNT volume fractions and the functional grading occurs in the thickness direction of the beam in the piece-wise pattern. The extended rule of mixture model is used to evaluate the temperature-dependent material properties of CNTRCs. The governing equations for the nonlinear bending of FG-CNTRC laminated beams are derived based on the high order shear deformation beam theory. These equations include the geometrical nonlinearity in the von Karman sense and take into account the thermal effect and the beam-foundation interaction. The nonlinear bending solutions can be obtained by employing a two-step perturbation approach. The nonlinear flexural responses of FG-CNTRC laminated beams under a uniform pressure in thermal environments are revealed and examined in details through a parametric study. Results showed that the negative Poisson's ratio has a significant impact on the nonlinear flexural behavior of CNTRC laminated beams.
机译:纳米复合材料如碳纳米管增强复合材料(CNTRC),已成为新颖的工程材料。他们在各种工程领域得到了不断发展的关注。制造过程还提供了设计和使这种类型的材料设计和使得具有所需特征的可能性,例如功能梯度(FG)或/并具有负毒率。本文报告了对每层的辅助层压梁的非线性弯曲行为的研究是由CNTRC制成的。每个层可以具有不同的CNT体积分数,并且在梁的厚度方向上发生功能分级,在截面明智的图案中。混合模型的扩展规则用于评估CNTRC的温度依赖性材料特性。基于高阶剪切变形光束理论导出FG-CNTRC层压光束的非线性弯曲的控制方程。这些方程包括Von Karman意义上的几何非线性,并考虑了热效应和光束基础相互作用。非线性弯曲溶液可以通过采用两步扰动方法获得。 FG-CNTRC层压梁在热环境中均匀压力下的非线性弯曲响应被揭示并通过参数研究详细检查。结果表明,负泊松的比例对CNTRC层压梁的非线性弯曲行为产生了重大影响。

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