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PROCESS ANALYSIS OF FOAM INJECTION MOULDING WITH PHYSICAL BLOWING AGENTS

机译:物理发泡剂泡沫注射成型的过程分析

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Through the application of structural foam injection moulding it is possible to reduce cycle time and thereby to attain economic benefits compared with conventional injection moulding. The highest savings potential is offered by the cooling phase. To determine possible savings, the surface temperature distribution of the parts produced was measured by infrared thermography after identical cooling times of compact and foamed parts. The cooling time was then shortened at selected test points to the minimum necessary for stable demoulding. A direct comparison between compact and foamed parts shows that, for a filled polypropylene, a cooling time reduction of up to 25 % is possible with a wall thickness of 4 mm. An influence of the process parameters and geometric boundary conditions was also established. The causes of these phenomena are analysed and discussed in detail.
机译:通过使用结构泡沫注射成型,与传统的注射成型相比,可以减少循环时间,从而获得经济利益。冷却阶段可提供最高的节省潜力。为了确定可能的节省,在紧凑和发泡的零件经过相同的冷却时间后,通过红外热像仪测量所生产零件的表面温度分布。然后在选定的测试点将冷却时间缩短至稳定脱模所需的最短时间。紧凑型零件和发泡零件之间的直接比较显示,对于填充的聚丙烯,壁厚4 mm时,冷却时间最多可减少25%。还确定了工艺参数和几何边界条件的影响。对这些现象的原因进行了详细分析和讨论。

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