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Multiscale mechanical characterization of iPP injection molded samples

机译:IPP注塑样品的MultiSscale机械表征

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摘要

Mechanical characterizations at different length scales represent a very intriguing possibility for correlating the fine internal morphologies with the macroscopic properties of a polymer material. In this work, molded samples of isotactic polypropylene obtained by injection molding in different processing conditions have been characterized on different lengths scales. The developed morphologies characterized by optical and atomic force microscopy reveal a complex multilayer morphology with globular elements, fibrils and spherulites, from the surface to the sample core. A multiscale mechanical characterization has been performed by Dynamic Mechanical Analysis (DMA), micro indentation and by HarmoniX Atomic Force Microscopy (AFM) tests, from millimeter to nanometer scale. Results show that along sample thickness, well organized and oriented structures (i.e. fibrils) characterized by higher values of mechanical modulus coexist with less organized structures (globules) characterized by mechanical properties closer to the quiescent amorphous phase. Intermediate elasticity is found in the central part of the sample, where well developed spherulitic structures are characterized by both higher crystallinity and lower level of orientation. A good agreement among the relative experimental results has been found, confirming the good complementarity among these techniques for a complete multi-scale sample characterization.
机译:不同长度尺度的机械表征代表了与聚合物材料的宏观性质相关的非常有趣的可能性。在这项工作中,在不同加工条件下通过注射成型获得的全同立构聚丙烯的模塑样品已经表征在不同的长度尺度上。特征在于光学和原子力显微镜的发育形态显示出从表面到样品芯的表面,与球状元素,原纤维和球晶的复合多层形态。通过动态机械分析(DMA),微压痕和谐原子力显微镜(AFM)测试,从毫米到纳米刻度进行多尺度机械表征。结果表明,沿着样品厚度,组织良好的结构和定向的结构(即原纤维),其特征在于具有较少有组织的结构(小球)的机械模量与较近静态非晶相的机械性能相同的机械模量相同的较高值。中间弹性在样品的中心部分中发现,其中良好发育的球晶结构的特征在于较高的结晶度和较低水平的取向。已经发现了相对实验结果之间的良好一致性,确认这些技术的良好互补性,用于完全多尺度样本表征。

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  • 来源
    《European Polymer Journal》 |2017年第2017期|共13页
  • 作者单位

    Univ Salerno Dept Ind Engn Via G Paolo 2 132 I-84084 Fisciano SA Italy;

    Inst Polymers Composites &

    Biomat IPCB CNR Ple E Fermi 1 I-80055 Portici NA Italy;

    Univ Salerno Dept Ind Engn Via G Paolo 2 132 I-84084 Fisciano SA Italy;

    Univ Salerno Dept Ind Engn Via G Paolo 2 132 I-84084 Fisciano SA Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有机化学;
  • 关键词

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