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Prediction of warpage in plastic injection molding based on design of experiments

机译:基于实验设计的注塑成型翘曲预测

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In terms of injection processing parameters, a mathematical model for prediction of warpage was formulated based on design of experiments (DOE). First, the five most influential parameters were screened by using fractional factorial design (FFD): melt temperature, coolant temperature, injection time, V/P switch over and mold temperature. Second, considering the other four principal processing parameters except the melt temperature, the predicting mathematical model was founded by using central composite design (CCD) of experiments and FE simulation. Finally, the results of statistical analysis were collected from software Moldflow. The results suggested that the mathematical model can be used to predict warpage with adequate accuracy. Hence, it indicated that corrective and iterative design steps can be initiated and implemented for better quality of products without resorting to physical trials in plastics injection mold by using this predicting mathematical model.
机译:在注射工艺参数方面,基于实验设计(DOE)建立了用于预测翘曲的数学模型。首先,使用分数阶乘设计(FFD)筛选了五个最具影响力的参数:熔体温度,冷却液温度,注射时间,V / P转换和模具温度。其次,考虑熔体温度以外的其他四个主要加工参数,利用实验的中央复合设计(CCD)和有限元仿真建立了预测数学模型。最后,从Moldflow软件收集统计分析结果。结果表明,该数学模型可用于以足够的精度预测翘曲。因此,它表明可以通过使用这种预测数学模型来启动和实施纠正和迭代设计步骤,以提高产品质量,而无需借助塑料注射模中的物理试验。

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