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Mechanical characterization of iPP injection molded samples on multiple length scale

机译:IPP注塑样品的机械表征多长度尺度

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The mechanical characterization at different length scales, from macro to nanometer scale, represents a very intriguing possibility to analyze the effect of developed morphologies on the properties of a molded polymer material. In this work, isotactic polypropylene molded samples, obtained with different processing conditions, have been mechanically characterized on different lengths scales. Dynamic Mechanical Analysis (DMA), micro Indentation and HarmoniX Atomic Force Microscopy (AFM) tests have been carried out to characterize injection molding iPP samples from millimeter to nanometer scale. Optical microscopy and AFM analyses show a complex morphology composed ? by a thin layer of globular elements at the sample surface, spherulites in the sample core and fibrils in the intermediate zone. The well organized and oriented structures, i.e. the fibrils, are characterized by higher values of mechanical modulus, whereas the globules, less organized structures, show very small elastic modulus values, close to the characteristic values observed in quiescent amorphous phase. Intermediate values of elastic modulus are observed in the sample core, where well developed spherulitic structures are characterized by both higher crystallinity and lower level of orientation. The elastic modulus obtained by HarmoniX AFM technique are in good agreement with the values obtained by Indentation tests in the same sample positions, confirming the complementarity of these techniques for a complete multi-scale sample characterization. The cross section modulus distributions nicely compare with DMA results.
机译:从宏观到纳米级的不同长度尺度的机械表征代表了分析发育形态对模塑聚合物材料性质的影响非常有趣的可能性。在这项工作中,用不同的加工条件获得的全同立构聚丙烯模塑样品已经机械表征在不同的长度尺度上。已经进行了动态力学分析(DMA),微压痕和谐原子力显微镜(AFM)测试,以表征从毫米到纳米级的注射成型IPP样品。光学显微镜和AFM分析显示组成复杂的形态?通过在样品表面的薄层球形元素,在样品芯中的球晶和中间区域的原纤维。良好的组织和定向的结构,即原纤维的特征在于机械模量的值较高,而球状较少,组织结构较少,表现出非常小的弹性模量值,接近在静态非晶相中观察到的特征值。在样品芯中观察到弹性模量的中间值,其中良好发育的球晶结构的特征在于更高的结晶度和更低的取向。 Harmonix AFM技术获得的弹性模量与通过相同样本位置中的压痕测试获得的值吻合良好,确认了这些技术的互补性,以实现完全的多尺度样本表征。横截面模量分布与DMA结果相比很好。

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