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The effect of meso-structure and surface topography on the indentation variability of viscoelastic composite materials

机译:细观结构和表面形貌对粘弹性复合材料压痕变异性的影响

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摘要

Most viscoelastic composites such as biomaterial, polymeric materials and silicone rubber consist of the viscoelastic matrix and the elastic inhomogeneities. Mechanical characterization of the viscoelastic composites helps us to better understand their responses under mechanical stimulation, or improve the design and manufacturing of composite products. The indentation test is the main method for measuring the mechanical properties of viscoelastic composites at present. However, the response of indentation test is sensitive to the microstructural of composites. What's more, the surface topography also has great influence on the indentation response that cannot be ignored. In this paper, a semi-analytical method is used to model the indentation test in order to explain and improve the indentation test results. The correlation between matrix and inhomogeneity is built by the equivalent inclusion method. The conjugate gradient method and the fast Fourier transform are used to accelerate the solution of unknown variables. Based on the developed model, the effect of micro structure and surface topography on the indentation creep is investigated. The conclusions obtained from the indentation simulation agree well with the experimental results in literatures and provide solid theoretical explanation for the scatter in experimental results.
机译:大多数粘弹性复合材料,例如生物材料,聚合物材料和硅橡胶,都由粘弹性基体和弹性不均匀性组成。粘弹性复合材料的机械特性有助于我们更好地了解它们在机械刺激下的反应,或改善复合材料产品的设计和制造。压痕测试是目前测量粘弹性复合材料力学性能的主要方法。但是,压痕测试的响应对复合材料的微观结构很敏感。此外,表面形貌对压痕响应也具有不可忽视的巨大影响。本文使用半分析方法对压痕测试进行建模,以解释和改善压痕测试结果。矩阵与不均匀性之间的相关性是通过等效包含法建立的。共轭梯度法和快速傅里叶变换用于加速未知变量的求解。基于开发的模型,研究了微观结构和表面形貌对压痕蠕变的影响。压痕模拟得到的结论与文献中的实验结果吻合良好,为实验结果的分散性提供了扎实的理论解释。

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