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Modeling of the stress-strain behavior of an epoxy-based nanocomposite filled with silica nanoparticles

机译:填充二氧化硅纳米颗粒的环氧基纳米复合材料的应力-应变行为建模

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摘要

The method of movable cellular automata (MCA) was applied to simulate the stress-strain behavior of a nanocomposite consisting of an epoxy matrix and 6 vol.% silica nanoparticles. The size of the elements used for modeling was fixed at 10 nm. corresponding approximately to the diameter of the filler particles. Since not only the stress-strain response of the two constituents but also debonding of neighboring particles and granular flow was taken into account, plastic deformation as well as crack initiation and propagation could be simulated with the model. Modeling results were compared with tensile test results of both, pure epoxy as well as the epoxy-6 vol.% SiO_2 composite. Since assuming bulk properties of the two constituents did not yield satisfactory results, slight modifications of the nanoparticle response functions and nanostructures were tested numerically. Finally, it was observed that only the assumption of slightly increased strength properties of the epoxy yielded good correlation between experimental and modeling results. This was attributed to an increased cross linking of the epoxy caused by the presence of silica nanoparticles.
机译:应用可移动细胞自动机(MCA)的方法来模拟由环氧基质和6%(体积)二氧化硅纳米颗粒组成的纳米复合材料的应力应变行为。用于建模的元素的大小固定为10 nm。大约相当于填料颗粒的直径。由于不仅考虑了这两种成分的应力应变响应,而且考虑了相邻颗粒的脱粘和颗粒流,因此可以使用该模型模拟塑性变形以及裂纹的萌生和扩展。将建模结果与纯环氧以及环氧含量为6%(体积)的SiO_2复合材料的拉伸试验结果进行了比较。由于假设这两种成分的整体性能无法获得令人满意的结果,因此对纳米粒子响应功能和纳米结构的微小变化进行了数值测试。最后,观察到只有假设环氧树脂强度特性略有增加,才能在实验结果和模型结果之间产生良好的相关性。这归因于二氧化硅纳米颗粒的存在引起的环氧树脂交联的增加。

著录项

  • 来源
    《Materials & design 》 |2016年第1期| 950-956| 共7页
  • 作者单位

    ISPMS Institute of Strength Physics and Materials Science SB RAS, Akademicheskii pr. 2/4, 634021 Tomsk, Russia,TSU Tomsk State University, Lenin Av. 36, 634050 Tomsk, Russia,TPU Tomsk Polytechnic University, Lenin Av. 30, 634050 Tomsk, Russia;

    BAM Federal Institute for Materials Research and Testing, Unter den Eichen 87, 12205 Berlin, Germany;

    BAM Federal Institute for Materials Research and Testing, Unter den Eichen 87, 12205 Berlin, Germany;

    IVW Institute for Composite Materials, Erwin-Schroedinger Str., 67663 Kaiserslautern, Germany;

    State Key Laboratory of Solid Lubrication, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Nanocomposites; Polymer matrix; Mechanical properties; Modeling; Computational mechanics;

    机译:纳米复合材料;聚合物基质机械性能造型;计算力学;

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