Experimental Study of the Stability of Layered Composite Plates

L. Bokhoeva, E. Bochektueva, V. Rogov
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Abstract

This article presents the results of experimental studies of definition the mechanical characteristics of epoxy resin and hardener without adding nanopowder and with the inclusion of nanopowders. The stability and destruction process of laminated plates made of composite material with different numbers of layers without nano-additives and with nanopowders in the binder has been studied. The results of experimental studies of the stability and destruction process of laminated plates made of composite material are presented. Experimental and numerical methods are used to estimate the carrying capacity of laminated plates. A technique has been developed for the experimental study of the deformation and strength properties of composite materials using modern test equipment. It was established that the discrepancies between the values of the critical load of four-layer samples and the critical load of three-layer samples are 2-3%, therefore, to reduce the weight, products from composite materials can be made of three-layer plates. In the ANSYS system, twolayer, three-layer and four-layer plates were modeled. The results of numerical calculation by the finite element method are presented. Comparison of the obtained experimental results with numerical values is made, the possibility of using experimental data on the mechanical behavior of layered composite materials in the design and calculation of protective screen modules is estimated.
层状复合材料板稳定性试验研究
本文介绍了不添加纳米粉末和添加纳米粉末的环氧树脂和固化剂的力学特性的实验研究结果。研究了不同层数的复合材料层合板在不添加纳米添加剂和粘结剂中添加纳米粉末的情况下的稳定性和破坏过程。本文介绍了复合材料层合板的稳定性和破坏过程的实验研究结果。采用实验和数值方法对叠合板的承载能力进行了估算。本文提出了一种利用现代试验设备对复合材料的变形和强度特性进行试验研究的方法。确定了四层样品的临界载荷值与三层样品的临界载荷值之间的差异为2-3%,因此,为了减轻重量,复合材料产品可以采用三层板。在ANSYS系统中分别对两层、三层和四层板进行了建模。给出了有限元数值计算的结果。将得到的实验结果与数值结果进行了比较,估计了层状复合材料力学性能实验数据应用于防护网模块设计计算的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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