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首页> 外文期刊>Physical Review & Research International >The Impact of Embedded Nanoinclusion in Nanofiber Reinforced Composite
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The Impact of Embedded Nanoinclusion in Nanofiber Reinforced Composite

机译:纳米纤维增强复合材料中嵌入纳米包裹体的影响

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摘要

Studying the influence of a nanoinclusion embedded in nanofiber reinforced composite alongside a nanofiber is the objective of the present investigation. The analysis is done based on 2D, linear elastic finite element through using finite element package ANSYS/Mechanical to explore the impact of the nanoinclusion on the mechanical behavior of the nanocomposite. Mainly, two scenarios are the major outlines of the study, first whenever the presence of the nanoinclusion is located at the longitudinal side of the nanofiber, whereas in the second case, the nanoinclusion is proposed to be along the transverse side of the nanofiber. The levels of the interfacial stresses, normal and shear along the nanofiber’s sides are estimated and discussed. The mechanical properties of the matrix and the nanofiber of the nanocomposite are considered be similar to the traditional well known materials, while for the modeling purposes of the stiffness of the nanoinclusion, is taken as 1/100 of the matrix stiffness. The nanocomposite is subjected to uniaxial tensile stress which is the main stress applied. The implications of the existence of the nanoinclusion on the failure of the nanocomposite due to increases of the interfacial stresses in the nanofiber/matrix line are discussed as well. It is shown through the analysis that the nanoinclusion has a great influence on the increase of the interfacial stresses along the sides of the nanofiber in a nanocomposite in different level and conditions according to the location of the nanoinclusion, and this essentially is considered as one of the main reasons of the anticipated nanocomposite failure.
机译:研究与纳米纤维一起嵌入在纳米纤维增强复合物中的纳米包含物的影响是本研究的目的。通过使用有限元程序包ANSYS / Mechanical对二维线性弹性有限元进行分析,以探讨纳米夹杂物对纳米复合材料力学行为的影响。主要有两种情况是研究的主要内容,首先是当纳米夹杂物的存在位于纳米纤维的纵向侧时,而在第二种情况下,建议纳米夹杂物沿纳米纤维的横向侧。估算并讨论了纳米纤维侧面的界面应力,法向和剪切水平。基质和纳米复合材料的纳米纤维的机械性能被认为与传统的众所周知的材料相似,而出于纳米夹杂物刚度建模的目的,将其取为基质刚度的1/100。纳米复合材料承受单轴拉伸应力,这是施加的主要应力。还讨论了纳米夹杂物的存在对由于纳米纤维/基质线中界面应力增加而导致的纳米复合材料的破坏的影响。通过分析表明,纳米夹杂物根据纳米夹杂物的位置在不同的水平和条件下对沿纳米纤维侧面的纳米纤维侧面的界面应力的增加有很大的影响,这实质上被认为是其中一种。预期的纳米复合材料失效的主要原因。

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