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首页> 外文期刊>Journal of Materials Processing Technology >Optimization of mechanical properties of recycled plastic products via optimal processing parameters using the Taguchi method
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Optimization of mechanical properties of recycled plastic products via optimal processing parameters using the Taguchi method

机译:使用Taguchi方法通过最佳加工参数优化再生塑料产品的机械性能

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The large amount of plastic products presently produced necessitates recycling and reuse of these non-biodegradable materials. However, the degradation in the mechanical properties of products made from recycled plastic is a major drawback that limits their use. This study aims to improve the mechanical properties of products made from recycled plastic by utilizing the Taguchi optimization method, instead of coupling the products with additives. By adopting L_9 Taguchi OA, products made from various compositions of virgin and recycled plastic are produced by injection moulding. Four controllable factors (i.e., melt temperature, packing pressure, injection time, and packing time), each at three levels, are tested to determine the optimal combination of factors and levels in the manufacturing process. By determining the optimal combination of factors and levels, the appropriate blending ratio of virgin and recycled plastic can be evaluated from the mechanical performance exhibited by the compound. The effects of the optimal processing parameters and the addition of recycled plastic in various compositions on the mechanical properties and melt flow index of the produced parts are also investigated. The results reveal that the product made of 25% recycled polypropylene (PP) and 75% virgin PP exhibits a better flexural modulus compared to the virgin form. The same product exhibits a 3.4% decrease in flexural strength. The degradation in mechanical properties of products produced from recycled plastic can be improved by optimizing the influence processing parameters during the manufacturing process.
机译:当前生产的大量塑料产品需要回收和再利用这些不可生物降解的材料。但是,由再生塑料制成的产品的机械性能下降是限制其使用的主要缺点。这项研究旨在通过使用Taguchi优化方法而不是将产品与添加剂耦合来改善由再生塑料制成的产品的机械性能。通过采用L_9 Taguchi OA,可以通过注塑生产由各种原始塑料和再生塑料制成的产品。测试了四个可控因素(即熔体温度,填充压力,注射时间和填充时间),分别在三个级别上进行测试,以确定制造过程中因素和级别的最佳组合。通过确定因素和含量的最佳组合,可以从该化合物表现出的机械性能来评估原始塑料和再生塑料的适当混合比例。还研究了最佳加工参数以及在各种成分中添加再生塑料对所生产零件的机械性能和熔体流动指数的影响。结果表明,与原始形式相比,由25%的回收聚丙烯(PP)和75%的原始PP制成的产品表现出更好的挠曲模量。同一产品的抗弯强度降低了3.4%。通过在制造过程中优化影响加工参数,可以改善由再生塑料生产的产品的机械性能的下降。

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