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Thermal conductivity of flat-pressed wood plastic composites at different temperatures and filler content

机译:不同温度和填料填料的扁平压制木塑复合材料的导热系数

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The thermal conductivity of wood flour (WF) filled high-density polyethylene composites (wood plastic composite, WPC) is investigated experimentally as a function of filler content and temperature. Samples are prepared by compression molding process of previously blended and extruded WPC pellets, up to 50% weight content of WF. The thermal conductivity is measured by the heat flow meter technique in a temperature range from -15°C to 80°C. Experimental results show that the WPC thermal conductivity decreases with temperature and WF content, with the last effect due to the increase in porosity with the filler content, as confirmed by density measurements. Using the thermal conductivity of bare WF, the thermal conductivity of the wood material in WPC is estimated. This value successfully predicts the upper and lower bounds of the WPC thermal conductivity by means of the parallel and series conduction model of a multiphase composite material.
机译:以填料含量和温度的函数实验研究木粉(WF)填充高密度聚乙烯复合材料(木塑复合材料,WPC)的导热率。通过预先混合和挤出的WPC粒料的压缩成型方法制备样品,其WF的50%重量含量高达50%。通过热流量计技术在-15℃至80℃的温度范围内测量导热率。实验结果表明,WPC导热率随温度和WF含量降低,并且由于密度测量的孔隙率的增加,由于孔隙率的增加,最后效果。使用裸晶的导热率,估计WPC中的木材的导热率。该值通过多相复合材料的平行和串联传导模型成功地预测WPC热导率的上限和下限。

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