Dynamical Young's Modulus and Internal Friction in Ultra-High Molecular Weight Polyethylene Composites

D. A. Kalganov, V. V. Kaminskii, N. M. Yurchenko, N. Silnikov, I. Guk, A. I. Mikhailin, A. Podshivalov, A. Romanov
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Abstract

This work is devoted to the acoustic spectroscopy investigation of self-reinforced ultra-high molecular weight polyethylene composites made of pressed unidirectional sheets stacked orthogonally to each other. The studied samples demonstrate excellent mechanical properties in a wide temperature range from –5 °C to 50 °C. The relative change in the modulus of longitudinal elasticity for all samples in the studied temperature range did not exceed 1.6%. Depending on pressure value that is used at the stage of fabrication, the studied samples demonstrated dynamic Young's modulus values up to 17.8 GPa and internal friction up to 16∙10–2. Quasi-static mechanical properties are measured using the specimens of various shapes by tensile test. The values of Young's modulus, determined in the elastic part of the tension curves, reach 16.9 GPa.
超高分子量聚乙烯复合材料的动态杨氏模量和内摩擦
本文研究了由单向板垂直堆叠而成的自增强超高分子量聚乙烯复合材料的声光谱研究。所研究的样品在-5°C至50°C的宽温度范围内表现出优异的机械性能。在研究温度范围内,各试样纵向弹性模量的相对变化量均不超过1.6%。根据制造阶段使用的压力值,研究样品的动态杨氏模量值高达17.8 GPa,内耗高达16∙10-2。通过拉伸试验,测量了不同形状试样的准静态力学性能。在张力曲线的弹性部分测定的杨氏模量达到16.9 GPa。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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