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首页> 外文期刊>International Journal of Solids and Structures >Void nucleation and growth in mineral-filled PVC - An experimental and numerical study
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Void nucleation and growth in mineral-filled PVC - An experimental and numerical study

机译:矿物填充PVC中的空泡成核和生长-实验和数值研究

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The nucleation and growth of voids in mineral-filled PVC have been investigated through experimental and numerical studies. Uniaxial tensile specimens were deformed in tension to different elongation levels and then unloaded. The macroscopic strain fields were recorded by use of digital image correlation. After the test, the microstructure of the deformed specimens was investigated in a scanning electron microscope. It was found that the observed volume strain on the macroscale is related to void growth on the microscale. In addition, finite element simulations were performed on unit cell models representing the microstructure of the material in a simplified manner. The numerical simulations demonstrate macroscopic dilation as a result of void growth. Moreover, the numerical simulations indicate that the experimentally observed stress-softening response of the PVC composite material may result from matrix-particle debonding.
机译:通过实验和数值研究,研究了填充矿物的PVC中孔隙的形核和生长。将单轴拉伸试样拉伸变形至不同的伸长水平,然后卸载。通过使用数字图像相关性记录宏观应变场。试验后,在扫描电子显微镜中研究了变形试样的微观结构。发现在宏观上观察到的体积应变与在微观上的空隙生长有关。此外,对以简化方式表示材料微观结构的晶胞模型进行了有限元模拟。数值模拟表明,由于孔隙增长,宏观膨胀。此外,数值模拟表明,实验观察到的PVC复合材料的应力软化响应可能是由基体颗粒脱粘引起的。

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