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A Process Optimization and Performance Study of Environmentally Friendly Waste Newspaper/Polypropylene Film Layered Composites

机译:环保废物报纸/聚丙烯薄膜层复合材料的过程优化与性能研究

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摘要

Waste newspaper are currently used in a single way and have low utilization rates. In this paper, the optimal process of preparing environmentally friendly layered composites by using waste newspaper combined with polypropylene film lamination was studied. The effects of hot-pressing temperature, hot-pressing time and paper content on the properties of the composites were analyzed. The results showed that under the process conditions of hot-pressing temperature 180 degrees C, compression time 20 min and paper content 66.7%, the obtained composite material had a flexural strength of 126 MPa, a tensile strength of 95 MPa, an impact strength of 5.3 kJ/m(2) and a water absorption thickness expansion ratio of 3.2%. Tensile performance increased by 164% compared to the original waste newspaper. Compared to our previous work, the hot processing time had been cut in half and costs were lower. In terms of creep properties, the unrecoverable strain rate was reduced by 57.5% compared to pure polypropylene. The results show that the material can maintain excellent flexural strength, tensile strength and water absorption performance while making good use of waste newspaper.
机译:废物报纸目前以单一方式使用,利用率低。本文研究了通过使用废纸与聚丙烯薄膜层压相结合的制备环保分层复合材料的最佳过程。分析了热压温度,热压时间和纸质含量对复合材料性能的影响。结果表明,在热压温度180℃的过程条件下,压缩时间20分钟和纸含量66.7%,所得复合材料的弯曲强度为126MPa,拉伸强度为95MPa,冲击强度5.3 kJ / m(2)和吸水厚度膨胀比为3.2%。与原始废物报纸相比,拉伸性能增加了164%。与我们以前的工作相比,热处理时间已经减半,成本较低。就蠕变性能而言,与纯聚丙烯相比,不可恢复的应变率降低了57.5%。结果表明,该材料可以保持优异的弯曲强度,抗拉强度和吸水性,同时利用废物报纸。

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