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Analysis of injection molding parameters for graphene/polypropylene composite material with thermal conductivity as quality objective

机译:以导热系数为质量指标的石墨烯/聚丙烯复合材料注塑参数分析

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Polypropylene (PP) is a common thermoplastic polymer material with high impact resistance and strong mechanical properties, and it is thus widely used in the industry. With high thermal conductivity and low resistivity, graphene is expected to be used to develop a new generation of electrical components. In this study, we mix blended graphene and PP into a composite material for injection molding specimens. Experiments were designed using an orthogonal array in the Taguchi method to obtain the optimal parameter combination for thermal conductivity, the process parameters including A. injection temperature, B. holding time, C. injection pressure, and D. the graphene ratio. The study results indicate that the optimal parameter combination in the Taguchi analysis was A3B1C2D3, the resulting thermal conductivity coefficient of which was 0.102 (W/m2·K). The optimal parameter combination of the original design in the L9 orthogonal array was A2B1C2D3, the thermal conductivity coefficient of which was 0.081 (W/m2·K). Thus, the improvement rate 25.9%.
机译:聚丙烯(PP)是具有高抗冲击性和强机械性能的普通热塑性聚合物材料,因此在工业中得到了广泛的应用。由于石墨烯具有高导热率和低电阻率,因此有望用于开发新一代电子元件。在这项研究中,我们将混合的石墨烯和PP混合到用于注塑样品的复合材料中。使用Taguchi方法中的正交阵列设计实验,以获得热导率的最佳参数组合,工艺参数包括A.注入温度,B。保持时间,C。注入压力和D.石墨烯比率。研究结果表明,在Taguchi分析中,最佳参数组合为A3B1C2D3,其导热系数为0.102(W / m2·K)。 L9正交阵列中原始设计的最佳参数组合为A2B1C2D3,其导热系数为0.081(W / m2·K)。因此,改善率为25.9%。

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