'/> Expansion of Kolarik model for tensile strength of polymer particulate nanocomposites as a function of matrix, nanoparticles and interphase properties
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Expansion of Kolarik model for tensile strength of polymer particulate nanocomposites as a function of matrix, nanoparticles and interphase properties

机译:膨胀聚合物颗粒纳米复合材料的抗拉强度的Kolarik模型作为基质,纳米粒子和间性能的函数

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Graphical abstract Display Omitted Abstract Kolarik proposed a model for tensile strength of polymer particulate composites based on the cubic orthogonal skeleton or three perpendicular plates (3PP) system. In this paper, Kolarik model is expanded for tensile strength of polymer nanocomposites containing spherical nanoparticles assuming the interphase properties. This model expresses the strength as a function of interphase properties. This development is performed using some models such as Pukanszky and Nicolais-Narkis. The expanded model is applied to calculate the thickness and strength of interphase by the experimental results. Furthermore, the strength of polymer nanocomposites is evaluated at different levels of material and interphase properties. The experimental data show good agreement with the predictions of the developed model. ]]>
机译:<![cdata [ 图形摘要 显示省略 抽象 Kolarik提出了基于立方正交骨架的聚合物颗粒复合材料的拉伸强度模型三个垂直板(3pp)系统。本文,Kolarik模型扩大了含有球形纳米颗粒的聚合物纳米颗粒的拉伸强度,假设差异性。该模型表达了与间隙性能的函数的强度。使用诸如Pukanszky和Nicolais-Narkis等一些型号进行此开发。应用扩展模型来计算实验结果的厚度和强度。此外,在不同水平的材料和差异性质中评价聚合物纳米复合材料的强度。实验数据与开发模型的预测显示了良好的一致性。 ]]>

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