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Toughening due to Crack Deflection in Ceramic- and Metal-graphene nanocomposites

机译:陶瓷和金属石墨烯纳米复合材料中由于裂纹挠度引起的增韧

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A model is suggested which describes fracture toughness of ceramics and nanocrystalline metals containing graphene (nano)platelets with random orientations. Within the model, the toughening is primarily associated with two-dimensional deflection of cracks that bypass graphene nanoplatelets. Using the boundary element method, it is demonstrated that two-dimensional crack deflection can increase fracture toughness by up to 90 percent. It is shown that the optimum graphene concentration that corresponds to maximum toughening is determined by the aspect ratio of graphene nanoplatelets. The results of the model explain the results of the experiments demonstrating strong toughening of ceramics containing graphene nanoplatelets. The situation where graphene nanoplatelets have the same orientation is also briefly discussed.
机译:建议使用一个模型来描述陶瓷和含有随机取向的石墨烯(纳米)血小板的纳米晶体金属的断裂韧性。在模型中,增韧主要与绕过石墨烯纳米片的裂纹的二维变形有关。使用边界元方法,证明了二维裂纹偏转可以使断裂韧性提高多达90%。结果表明,对应于最大增韧的最佳石墨烯浓度由石墨烯纳米片的长径比决定。模型的结果解释了实验结果,证明了含有石墨烯纳米片的陶瓷的强韧性。还简要讨论了石墨烯纳米片具有相同取向的情况。

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