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首页> 外文期刊>International Journal of Mechanical Sciences >A modified Mori-Tanaka approach incorporating filler-matrix interface failure to model graphene/polymer nanocomposites
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A modified Mori-Tanaka approach incorporating filler-matrix interface failure to model graphene/polymer nanocomposites

机译:一种改进的森腾曲面掺入填料 - 矩阵界面失效的方法,可以模拟石墨烯/聚合物纳米复合材料

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摘要

A novel modified Mori-Tanaka (M-T) approach to modeling the stress-strain response of graphene nanocomposites subjected to large deformation is described. It is hypothesized that slip at the filler-matrix interface occurs, and this limits the stress which can be transferred to the filler through the interface. Although interfacial slip has a significant influence on the mechanical response of polymer nanocomposites, the M-T method, commonly employed to model nanocomposites, does not accommodate this effect. A pseudo-filler phase is defined to represent the filler when interfacial slip occurs, and this is modeled using finite elements to simulate a single filler flake encapsulated by the interface, interacting with the matrix. The stiffness of the pseudo-filler is determined by examination of the variation of stress in the filler when interfacial slip occurs; this interfacial slip model is incorporated into the M-T method. Quasi-static tensile loading and unloading tests were conducted on polyvinyl alcohol (PVA)-graphene oxide (GO) nanocomposite samples, and significant enhancement of the stress-strain response of the nanocomposite was observed by the addition of GO; e.g. a 5 wt% GO addition increases the initial elastic modulus of PVA from 330 MPa to 1.29 GPa. The modified M-T method was used to simulate the stressstrain response of the nanocomposites, and the theoretical results compare well with experimental stress-strain data for both loading and unloading.
机译:描述了一种用于建模经受大变形的石墨烯纳米复合材料的压力 - 应变响应的新型改性的森塔纳克(M-T)方法。假设在填充物矩阵界面处的滑动发生,并且这限制了可以通过界面转移到填充物的应力。尽管界面滑移对聚合物纳米复合材料的机械响应具有显着影响,但通常用于模型纳米复合材料的M-T方法不会适应这种效果。定义伪填充阶段以在发生界面滑移时表示填料,并且使用有限元建模以模拟封装在界面的单个填充片,与基质相互作用。伪填料的刚度是通过在界面滑移发生时检查填料中的应力的变化来确定;该界面滑动模型掺入M-T方法中。在聚乙烯醇(PVA)型氧化物(GO)纳米复合材料上进行准静态拉伸载荷和卸载试验,并通过添加去观察纳米复合材料的应力 - 应变响应的显着提高;例如5wt%Go加入将PVA的初始弹性模量从330MPa增加到1.29GPa增加。改进的M-T方法用于模拟纳米复合材料的应力串响应,理论结果与用于装载和卸载的实验性应力 - 应变数据相比很好。

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