注射工艺参数对等规聚丙烯力学性能影响的实验设计方法

N. Phupewkeaw, Pattarawit Srimuang
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引用次数: 0

摘要

本研究优化了熔化温度、注射压力、注射速度、保压压力、模具温度和冷却时间等注射参数对等规聚丙烯(iPP)成型的影响。采用2k析因设计来规划试验,研究iPP试件的抗拉性能,如极限抗拉强度和屈服应变。通过方差分析确定了各参数对力学性能的影响。熔融温度、保压压力、模具温度、冷却时间四个因素是全因子设计筛选得到的结果,是一个重要的参数。在熔融温度、模温、保压压力和冷却时间分别为230°C、60°C、80 bar和20秒的注射成型条件下,获得了iPP拉伸性能最高的最佳条件。基于方差分析,建立了预测iPP极限拉伸强度和屈服应变的经验方程。从结晶度的角度讨论了注射成型试样显微组织的变化。所有这些都得到了偏振光学显微镜(POM)和一维广角x射线衍射(1D-WAXD)测量的支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of injection process parameters on mechanical properties of isotactic polypropylene: A design of experiments approach
This study optimizes the effect of injection parameters such as melting temperature, injection pressure, injection speed, holding pressure, mold temperature, and cooling time on isotactic polypropylene (iPP) moldings. The 2k factorial design is used to employ for planning the experiment to study the tensile properties of iPP specimens, such as ultimate tensile strength, and strain at yield. The effect of the parameters on the mechanical properties is determined by using the variance analysis. The four factors as melting temperature, holding pressure, mold temperature, and cooling time were the results obtained by screening with a full factorial design, which is a significant parameter. The optimum condition for the highest tensile properties of iPP was obtained when setting injection molding conditions with melting temperature, mold temperature, holding pressure, and cooling time remained at 230 °C, 60 °C, 80 bar, and 20 sec. Base on ANOVA, empirical equations are proposed to relationship for predicting the ultimate tensile strength and strain at yield. The changes in the microstructure of the injection molding specimens are discussed in terms of crystallinity degree. All of this was supported by a polarized optical microscopy (POM) and one-dimension wide-angle X-ray diffraction (1D-WAXD) measurements.
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