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The Flow Behavior of Core Material and Breakthrough Phenomenon in Sandwich Injection Molding

机译:三明治注射成型中芯材的流动行为和突破现象

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The processing variables that control the occurrence of breakthrough phenomenon in sandwich injection molding were investigated.Particular attention was paid to the conditions that would yield an optimum sandwich molded part.The effects of variation of core volume ratio that would yield optimum core shot size,injection speed and the skin/core viscosity ratio were examined.The flow morphology at the various stages of flow was also explored.The study was conducted with a bar-flow mold mounted on a twin-barrel injection machine fitted with a common nozzle.It was noted that the core material flow distance depends on the core cylinder screw metering position (core shot size).At the stage at which the core material completely penetrated through the skin material (breakthrough),four distinct regions of flow could be identified.The flow distance of the core material is controlled by the injection speed of the core material while the injection speed of the skin material is of little significance.In order to increase the flow distance of the core material,it is effective to increase the core material injection speed albeit limited by an optimum value of screw metering position.It was found that the flow distance of the core material was longer when the core material viscosity was lower than that of the skin material but breakthrough occurred much earlier so core volume is limited.Breakthrough failed to occur when the viscosity of the core material was higher than that of the skin material.It was found that optimum core volume and core distribution occurred when skin/core viscosities were intermediate.The morphology of the skin material leading to breakthrough was also analyzed.
机译:研究了控制夹层注射成型过程中出现突破现象的工艺变量。特别注意了能够获得最佳夹层成型零件的条件。型芯体积比变化的影响将产生最佳型芯注射量,注射量并研究了在不同流动阶段的流动形态,并使用安装在装有普通喷嘴的双筒注射机上的棒流模具进行了研究。请注意,芯材的流动距离取决于芯筒螺杆的计量位置(芯粒尺寸)。在芯材完全穿透表皮材料(突破)的阶段,可以识别出四个不同的流动区域。芯材的距离由芯材的注射速度控制,而表皮材料的注射速度几乎没有意义。 e。为了增加芯材的流动距离,有效的是增加芯材的注射速度,尽管受到螺杆计量位置的最佳值的限制。芯材的粘度低于表皮材料,但突破发生的时间较早,因此芯材的体积受到限制;当芯材的粘度高于表皮材料时,突破不会发生。当皮肤/核心粘度处于中等水平时,发生了核心分布。还分析了导致突破的表皮材料形态。

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