首页> 外文期刊>Journal of Computational and Applied Research in Mechanical Engineering (JCARME) >Optimization of the injection molding process of Derlin 500 composite using ANOVA and grey relational analysis
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Optimization of the injection molding process of Derlin 500 composite using ANOVA and grey relational analysis

机译:基于ANOVA和灰色关联分析的Delrin 500复合材料注射成型工艺优化。

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Warpage and shrinkage control are important factors in proving the quality of thin-wall parts in injection modeling process.In the present paper, grey relational analysis was used in order to optimize these two parameters in manufacturing plastic bush of articulated garden tractor.The material used in the plastic bush is Derlin 500.The input parameters in the process were selected according to their effect on shrinkage and warpage values, melt temperature, mold temperature, injection rate, injection pressure, and packing pressure.Then, the Taguchi method was applied to design the experiments, and through the use of Mold Flow software injection molding process was simulated based on these experiments and the input parameters.Based on the results obtained from the simulation, the input parameters were analyzed in three levels using grey relational analysis.Then, analysis of variance and confirmation tests were carried out on the output of grey relational analysis to predict the optimum values of the input parameters and to calculate the dimensional changes of the plastic bush.Gaining these values, the plastic bush sample was manufactured, and its 3D point cloud model was generated by a scanner.At the end, by generating 3D solid model of the plastic bush its dimensional features were studied.The comparison of the warpage and shrinkage values between grey relational analysis and 3D CAD model indicates the precision of the method in controlling and measuring these two parameters.
机译:翘曲和收缩控制是证明注射成型过程中薄壁零件质量的重要因素。本文采用灰色关联分析来优化这两种参数,以优化铰接式园林拖拉机塑料衬套的制造。在塑料衬套中使用Derlin 500,根据其对收缩率和翘曲值,熔体温度,模具温度,注射速率,注射压力和填充压力的影响选择工艺中的输入参数,然后将Taguchi方法应用于设计实验,并根据这些实验和输入参数,通过使用Mold Flow软件对注塑过程进行仿真。基于仿真结果,使用灰色关联分析法对输入参数进行三个层次的分析。对灰色关联分析的输出进行方差分析和确认检验,以预测最佳v根据输入的参数并计算出塑料衬套的尺寸变化,获得这些值,制造出塑料衬套样品,并通过扫描仪生成其3D点云模型。最后,通过生成塑料衬套的3D实体模型通过灰色关联分析和3D CAD模型对翘曲率和收缩率值的比较,表明了该方法控制和测量这两个参数的精度。

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