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Rapid control of mold temperature during injection molding process

机译:注塑过程中模具温度的快速控制

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The control of mold surface temperature is an important factor that determines surface morphology and its dimension in thickness direction. It can also affect the frozen molecular orientation and the mold surface replicability in injection molded products. In this work, thin thermally active films were used to quickly control the mold surface temperature. In particular, an active high electrical conductivity carbon black loaded polyimide composites sandwiched between two insulating thin polymeric layers was used to condition the mold surface. By controlling the heating time, it was possible to control precisely the temporal variation of the mold temperature surface during the entire cycle. The surface heating rate was about 40°C/s and upon contact with the polymer the surface temperature decreased back to 40°C within about 5 s; the overall cycle time increased only slightly. The effect on cross section sample morphology of samples of iPP were analyzed and discussed on the basis of the recorded temperature evolution.
机译:模具表面温度的控制是确定表面形态的重要因素及其厚度方向的尺寸。它还可以影响注塑产品中的冷冻分子取向和模具表面可再压性。在这项工作中,使用薄的热活性薄膜来快速控制模具表面温度。特别地,使用夹在两个绝缘薄的聚合物层之间的有源高电导碳黑负载的聚酰亚胺复合材料来调节模具表面。通过控制加热时间,可以在整个循环期间精确地控制模具温度表面的时间变化。表面加热速率约为40℃/ s,并且在与聚合物接触后,表面温度在约5秒内降至40℃;整体循环时间仅增加。分析了对IPP样品样品形态的影响,并在记录的温度进化的基础上进行讨论。

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