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Thermal Properties of Wood-Plastic Composites with Different Compositions

机译:不同组成的木塑复合材料的热性能

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摘要

The thermal performance of wood–plastic composites (WPCs) with different fiber, different fiber contents, and different lubricants were investigated in this paper. The results show that the thermal degradation temperature, melting temperature, crystallization temperature, crystallinity, and viscosity of WPCs with wood fiber were slightly higher than those of WPCs with floor sanding powder and rice husk. As the wood fiber content increased, the melting temperature and crystallinity of WPCs decreased while the crystallization temperature, viscosity, and pseudoplasticity increased. When the wood fiber content was increased to 60%, the dimensional stability of WPCs tended to be constant, and a higher wood fiber content was not conducive for processing of WPCs. WPCs had a small coefficient of linear thermal expansion at low temperature and demonstrated a good dimensional stability. The presence of lubricant reduced the viscosity and increased the pseudoplasticity of the WPCs, which is advantageous for the dimensional stability of WPCs at low temperature while making it worse for high temperatures.
机译:本文研究了具有不同纤维,不同纤维含量和不同润滑剂的木塑复合材料(WPC)的热性能。结果表明,木纤维木塑复合材料的热降解温度,熔融温度,结晶温度,结晶度和粘度均略高于木地板木塑复合材料和稻壳的木塑复合材料。随着木纤维含量的增加,木塑复合材料的熔融温度和结晶度降低,而结晶温度,粘度和假塑性却增加。当木纤维含量增加到60%时,木塑纤维的尺寸稳定性趋于恒定,并且较高的木纤维含量不利于木塑纤维的加工。 WPC在低温下线性热膨胀系数小,并显示出良好的尺寸稳定性。润滑剂的存在降低了WPC的粘度并增加了WPC的假塑性,这对于WPC在低温下的尺寸稳定性有利,而在高温下则较差。

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