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首页> 外文期刊>Journal of teoretical and applied mechanics >INVESTIGATION OF CRACK RESISTANCE IN EPOXY/BORON NITRIDE NANOTUBE NANOCOMPOSITES BASED ON MULTI-SCALE METHOD
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INVESTIGATION OF CRACK RESISTANCE IN EPOXY/BORON NITRIDE NANOTUBE NANOCOMPOSITES BASED ON MULTI-SCALE METHOD

机译:基于多尺度方法的环氧树脂/氮化硼纳米管纳米复合材料抗裂性能的研究

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摘要

Boron nitride nanotubes (BNNTs) possess superior mechanical, thermal and electrical properties and are also suitable for biocomposites. These properties make them a favorable reinforcement for nanocomposites. Since experimental studies on nanocomposites are time-consuming, costly, and require accurate implementation, finite element analysis is used for nanocomposite modeling. In this work, a representative volume element (RVE) of epoxy/BNNT nanocomposites based on multi-scale modeling is considered. The bonds of BNNT are modeled by 3D beam elements. Also non-linear spring elements are employed to simulate the van der Waals bonds between the nanotube and matrix based on the Lennard-Jones potential. Young's and shear modulus of BNNTs are in ranges of 1.039-1.041 TPa and 0.44-0.52 TPa, respectively. Three fracture modes (opening, shearing, and tearing) have been simulated and stress intensity factors have been determined for a pure matrix and nanocomposite by J integral. Numerical results indicate that by incorporation of BNNT in the epoxy matrix, stress intensity factors of three modes decrease. Also, by increasing the chirality of BNNT, crack resistance of shearing and tearing modes are enhanced, and stress intensity factor of opening mode reduced. BNNTs bridge the crack surface and prevent crack propagation.
机译:氮化硼纳米管(BNNT)具有优异的机械,热和电性能,也适用于生物复合材料。这些性质使它们成为纳米复合材料的有利增强剂。由于对纳米复合材料的实验研究耗时,昂贵且需要精确实施,因此有限元分析用于纳米复合材料建模。在这项工作中,考虑了基于多尺度建模的环氧/ BNNT纳米复合材料的代表性体积元素(RVE)。 BNNT的键由3D梁元素建模。还使用非线性弹簧元件基于Lennard-Jones势来模拟纳米管和基质之间的范德华键。 BNNT的杨氏和剪切模量分别在1.039-1.041 TPa和0.44-0.52 TPa的范围内。模拟了三种断裂模式(开裂,剪切和撕裂),并通过J积分确定了纯基质和纳米复合材料的应力强度因子。数值结果表明,通过在环氧树脂基体中掺入BNNT,三种模式的应力强度因子减小。而且,通过增加BNNT的手性,剪切和撕裂模式的抗裂性得到增强,并且开口模式的应力强度因子减小。 BNNT桥接裂纹表面并防止裂纹扩展。

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