首页> 外文期刊>International journal of nanomechanics science and technology >A NUMERICAL SOLUTION FOR PREDICTING THE STIFFNESS OF NANOPHASE BIAXIALLY BRAIDED COMPOSITES
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A NUMERICAL SOLUTION FOR PREDICTING THE STIFFNESS OF NANOPHASE BIAXIALLY BRAIDED COMPOSITES

机译:用于预测纳米双轴编织复合材料刚度的数值溶液

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摘要

The significant mechanical properties exhibited by nanoclay have turned the attention to their use for reinforcing biaxially braided carbon composites. An experimental investigation reveals that the addition of different weight percentages of nanoclay significantly alters the tensile strength, shear strength, and the corresponding stiffness of the material. The model has been developed, which is based on discrete three-layer model and thickness-average method for predicting the stiffness and shear modulus of unfilled biaxially braided carbon composites and of those with 1 wt.%, 3 wt.%, and 5 wt.% of nanoclay. Comparisons between the theoretical and experimental results are made. The theoretical results show that the incorporation of different percentages of nanoclay has a significant influence on the stiffness properties and shear modulus of biaxially braided carbon composites.
机译:纳米粘土表现出的显着的机械性能使注意其用于加强双轴编织碳复合材料。实验研究表明,添加不同重量百分比的纳米粘土显着改变了拉伸强度,剪切强度和材料的相应刚度。已经开发了该模型,其基于离散的三层模型和厚度平均方法,用于预测未填充的双轴编织碳复合材料的刚度和剪切模量,以及1重量%,3重量%,5重量% 。纳米粘土的%。制造了理论和实验结果之间的比较。理论结果表明,不同百分比的纳米粘土的掺入对双轴编织碳复合材料的刚度性能和剪切模量具有显着影响。

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