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Mechanical and thermo-physical properties of high-density polyethylene modified with talc

机译:滑石粉改性的高密度聚乙烯的机械和热物理性质

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摘要

The aim of this study was to examine the physical, mechanical, and thermo-physical properties of high-density polyethylene (HDPE) modified with talc. Different weight fractions of talc (up to 35 wt %) were compounded with an HDPE matrix containing 2.5 wt % of carbon black (CB) in a twin-screw compounder. The composites were then processed by injection moulding to obtain specimens for testing. The results indicate that CB causes a significant decrease in the toughness, while talc not only enhances the thermal conductivity and thermo-physical properties of the composites but can also play a role in compensating for the negative effects of CB on impact resistance. The experimental data show that the presence of CB reduces the impact resistance of HDPE by up to 34%, while addition of up to 8 wt % talc can return this value to close to that of pure HDPE. No significant effect on the composite tensile yield and fracture strength was observed for either component at all concentrations. The thermal conductivity, thermal diffusivity, and specific density values of the composites increased almost linearly, but the increase in moisture absorption in the long term showed nonlinear behavior in the concentration range of the experiment.
机译:这项研究的目的是检查滑石粉改性的高密度聚乙烯(HDPE)的物理,机械和热物理性质。在双螺杆混合机中,将不同重量分数的滑石(最高35 wt%)与包含2.5 wt%炭黑(CB)的HDPE基质混合。然后通过注射成型对复合材料进行处理,以获得用于测试的样品。结果表明,CB导致韧性显着降低,而滑石粉不仅增强了复合材料的导热性和热物理性能,而且还可以弥补CB对耐冲击性的负面影响。实验数据表明,CB的存在使HDPE的抗冲击性降低多达34%,而添加高达8 wt%的滑石粉可使该值接近纯HDPE的值。对于所有浓度的任何一种组分,均未观察到对复合材料的拉伸屈服强度和断裂强度产生明显影响。复合材料的热导率,热扩散率和比密度值几乎呈线性增加,但长期吸水率的增加在实验浓度范围内显示出非线性行为。

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