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Influence and prediction of processing parameters on the properties of microcellular injection molded thermoplastic polyurethane based on an orthogonal array test

机译:基于正交试验的工艺参数对微孔注塑热塑性聚氨酯性能的影响和预测

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摘要

Thermoplastic polyurethane is a commonly used polymer in our daily lives. Microcellular injection molding (a.k.a. MuCell) is an emerging method capable of mass-producing thermoplastic polyurethane foams with tunable microstructures and properties. This study investigated the effects of four main processing parameters— namely, plasticizing temperature, carbon dioxide (CO2) content, injection volume, and injection speed—on microcellular injection molded thermoplastic polyurethane ASTM tensile test bars. Property variables of interest included the cell diameter, cell density, skin layer thickness, and Young's modulus. Influence sequences of parameters on each variable were obtained via the orthogonal array test method. It was found that the CO2 content primarily affected the cell diameter and cell density, whereas the temperature mainly influenced the skin layer thickness and Young's modulus. Surface fitting of each dependent variable was done by combining its two most influential parameters from the experiment data. The value of each property variable within the processing window could then be predicted from the fitted surface. In addition, microcellular injection molding of thermoplastic polyurethane was simulated by a commercial software package, and the simulated results confirmed the reliability of the cell diameter prediction.
机译:热塑性聚氨酯是我们日常生活中常用的聚合物。微孔注塑(又称MuCell)是一种新兴的方法,能够大量生产具有可调微结构和性能的热塑性聚氨酯泡沫。这项研究调查了四个主要加工参数,即增塑温度,二氧化碳(CO2)含量,注射量和注射速度对微孔注射成型热塑性聚氨酯ASTM拉伸试验棒的影响。感兴趣的属性变量包括泡孔直径,泡孔密度,表层厚度和杨氏模量。通过正交阵列检验方法获得参数对每个变量的影响序列。发现CO 2含量主要影响细胞直径和细胞密度,而温度主要影响皮肤层厚度和杨氏模量。每个因变量的表面拟合是通过结合来自实验数据的两个最有影响力的参数完成的。然后可以从拟合曲面预测处理窗口内每个属性变量的值。此外,通过商业软件包对热塑性聚氨酯的微孔注射成型进行了仿真,仿真结果证实了孔直径预测的可靠性。

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