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On the optimization of the mechanical behavior of a class of composite systems under both quasi-static and dynamic loading

机译:准静态和动态载荷作用下一类复合系统力学性能的优化

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This paper is concerned with the optimization, with the inclusion of the microstructure, of the mechanical behavior of fiber-reinforced polymeric composites under both quasi-static and dynamic loading. Analytical models pertaining to both continuous- and discontinuous-fiber composites are investigated.In the first part of the presentation, the effects of microstructural parameters, such as fiber-aspect ratio, fiber off-axis angle and fiber-volume fraction, on the damping and stiffness of a fiber-composite system are examined. Quasi-static models are, then, developed by using a "forced balance approach" to define the mechanical response properties of discontinuous fiber-reinforced composites. Subsequently, simultaneous optimization of the damping, stiffness and specific weight is carried out by using the so-called "inverted utility function methods". The obtained results show that discontinuous fiber-reinforced composites have superior design flexibility and damping properties as compared with those pertaining to continuous fiber-reinforced composites.In the second part of the presentation, the determination of the impact response of a composite laminate is dealt with. In this context, the "first shear deformation theory (FSDT)" is employed to deal with the transit wave-propagation phenomenon. The "correspondence principle" is, then, utilized to extend the obtained elastic solutions to a corresponding viscoelastic problem. The obtained results emphasize the importance of including material viscoelasticity in the analysis concerning the prediction of the mechanical response of laminated composites under impact loading.
机译:本文关注的是,包括微观结构在内的纤维增强聚合物复合材料在准静态和动态载荷下的力学性能的优化。研究了连续纤维和不连续纤维复合材料的分析模型。在本报告的第一部分中,微观结构参数(例如纤维长径比,纤维偏轴角和纤维体积分数)对阻尼的影响检查纤维复合系统的刚度。然后,通过使用“强制平衡法”来开发准静态模型,以定义不连续的纤维增强复合材料的机械响应特性。随后,通过使用所谓的“倒置效用函数法”同时进行阻尼,刚度和比重的优化。所得结果表明,与连续纤维增强复合材料相比,不连续纤维增强复合材料具有更好的设计柔韧性和阻尼性能。在本报告的第二部分,研究了复合材料层压板的冲击响应的确定。 。在这种情况下,采用“第一剪切变形理论(FSDT)”来处理过渡波的传播现象。然后,利用“对应原理”将获得的弹性解扩展到相应的粘弹性问题。所得结果强调了在涉及冲击载荷下层压复合材料的机械响应预测的分析中包括材料粘弹性的重要性。

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