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Prediction of flow length in injection molding for engineering plastics by fuzzy logic under different processing conditions

机译:不同加工条件下工程塑料注塑成型流动长度的模糊逻辑预测

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Flow length determination is one of the most important tasks in injection mold design. In order to achieve the perfect filling of the mold, proper designs for the channel depth and other injection parameters (such as melt temperature, injection pressure and etc.) should be conducted. In this research, melt temperature and injection pressure were considered as input parameters to investigate the flow length, in the most commonly used plastics including acrylonitrile butadiene styrene (ABS), polycarbonate (PC), polyamide 6.6 (PA 6.6), polyoxymethylene (POM). This study was carried out, based on various channel depths, according to ASTM D 3123. A new method based on a fuzzy logic method was developed to predict the amount of flow length in relation to the input parameters such as pressure, channel depth, and temperature. When the present method is used, the problem of finding the optimum mold design can be solved faster compared to the traditional modeling programs. The largest estimated amounts of flow lengths by the fuzzy logic model were 1215, 596, 963 and 1040 mm for POM, PC, PA 6.6 and ABS, respectively. The maximum measured values were 1235, 579, 948 and 1050 mm for the same material. Experimental tests have been conducted to justify the accuracy of the developed method. It was confirmed by regression analysis that the amount of R-2 for the measured and estimated values was 0.920529. The results of this research show that the fuzzy logic system is a reliable method to predict the short shots in an injection process.
机译:流动长度的确定是注塑模具设计中最重要的任务之一。为了达到模具的完美填充,应进行适当的通道深度和其他注射参数(如熔体温度、注射压力等)的设计。在这项研究中,熔体温度和注射压力被认为是研究流动长度的输入参数,在最常用的塑料中,包括丙烯腈丁二烯苯乙烯 (ABS)、聚碳酸酯 (PC)、聚酰胺 6.6 (PA 6.6)、聚甲醛 (POM)。这项研究是根据 ASTM D 3123 根据不同的通道深度进行的。开发了一种基于模糊逻辑方法的新方法,用于预测与压力、通道深度和温度等输入参数相关的流量长度。与传统的建模程序相比,使用该方法可以更快地解决寻找最佳模具设计的问题。对于POM、PC、PA 6.6和ABS,模糊逻辑模型估计的最大流动长度估计量分别为1215、596、963和1040 mm。相同材料的最大测量值分别为 1235、579、948 和 1050 mm。已经进行了实验测试,以证明所开发方法的准确性。回归分析证实,实测值和估计值的R-2量为0.920529。本研究结果表明,模糊逻辑系统是预测注射过程中短镜头的可靠方法。

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