首页> 外文期刊>Cellular Polymers: An International Journal >Effects of dynamic mold temperature control on melt pressure, cellular structure, and mechanical properties of microcellular injection-molded parts: An experimental study
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Effects of dynamic mold temperature control on melt pressure, cellular structure, and mechanical properties of microcellular injection-molded parts: An experimental study

机译:动态模具温度控制对微孔注塑部件熔体压力,细胞结构和力学性能的影响:实验研究

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摘要

In this work, the effects of dynamic mold temperature control (DMTC) on melt pressure, cellular structure, and mechanical properties of microcellular injection molding (MIM)-molded parts are investigated experimentally. It is found that with the increase of the mold temperature, the duration of foaming pressure in the cooling stage increases. Meanwhile, the average cell diameter and cell diameter dispersion increases as well as the cell density decreases in MIM molded parts. The turning point of mold temperature after which the foaming pressure in the cooling stage and the cellular structure in MIM molded parts generate a significant change is around the glass transition temperature of the used plastic material. Under DMTC conditions, with the increase of mold temperature, the tensile strength, flexural strength, and impact strength of MIM molded specimens of single gate without weld line change a little, while the tensile strength, flexural strength of MIM molded specimens of double gates with weld line increase obviously. When the mold temperature increases to 120 degrees C and over, the tensile strength, flexural strength of MIM molded specimens of double gates with weld line reach an equivalent level of specimens of single gate without weld line.
机译:在这项工作中,通过实验研究了动态模具温度控制(DMTC)对微孔注射成型(MIM) - 折叠零件的熔体压力,细胞结构和机械性能的影响。结果发现,随着模具温度的增加,冷却阶段的发泡压力的持续时间增加。同时,平均电池直径和电池直径分散率随着MIM成型部件的细胞密度降低而增加。模具温度的转弯点之后,在MIM模塑部件中的冷却级和蜂窝结构中的发泡压力产生显着变化是围绕所用塑料材料的玻璃化转变温度。在DMTC条件下,随着模具温度的提高,抗拉强度,弯曲强度和冲击强度的单闸MIM模制品,没有焊接线的变化,虽然抗拉强度,双门模压标本的抗弯强度,双栅焊接线显然增加。当模具温度越来越多,抗拉强度,带焊接线的双门模型的抗弯曲强度,没有焊接线的单闸门标本等效。

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