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首页> 外文期刊>Journal of Macromolecular Science. Physics >Study of Energy Consumption in the Injection Molding Process
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Study of Energy Consumption in the Injection Molding Process

机译:注塑成型过程中能耗研究

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摘要

A computing method for simulating the energy consumption in an injection molding process using the Moldflow MPI analysis software is proposed. Considering such factors as product structure, processing parameters, and mold structure, it was shown by orthogonal testing that the melt temperature, product diameter, product wall thickness, and gate diameter are the four largest factors impacting on the injection energy consumption. Based on the MATLAB curve fitting toolbox, the relationship between the four main factors and the injection energy consumption was established, and a calculation model for the injection energy consumption was proposed. The accuracy of the model was above 95%. Finally, by using an experimental system of injection energy consumption to research the relationship between energy consumption and actual injection power, and by verifying the calculation accuracy of injection energy consumption of the established model, the results show that the established model can be an excellent predictor of the actual electric energy required and the accuracy of it was above 85% compared with measured experimental data.
机译:提出了一种使用模型MPI分析软件模拟注塑过程中的能量消耗的计算方法。考虑到产品结构,加工参数和模具结构等因素,通过正交测试显示熔融温度,产品直径,产品壁厚和栅极直径是影响注射能耗的四个最大因素。基于MATLAB曲线配件工具箱,建立了四个主要因素与注射能量消耗的关系,提出了一种用于注射能耗的计算模型。该模型的准确性高于95%。最后,通过使用注射能量消耗的实验系统来研究能源消耗与实际喷射功率之间的关系,并通过验证建立模型的注射能耗的计算精度,结果表明,建立的模型可以是一个优秀的预测因子与测量的实验数据相比,所需的实际电能和其准确性高于85%。

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