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Visualization analysis of reciprocating plastication process by glass-inserted heating cylinder - Part 3: modeling for reciprocating plastication process

机译:玻璃插入加热缸往复式塑性工艺的可视化分析 - 第3部分:往复式塑化过程的建模

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The reciprocating plastication process in injection molding is a cyclical and dynamic phenomenon during which (factor I ) the screw moves forward and backward and (factor H ) the screw rotates periodically. Analysis separating these two factors is necessary to probe the causes of characteristic phenomena in the reciprocating plastication process. In this study, the reciprocating plastication process and periodic plastication process in which a screw is set at a fixed position and is rotated intermittently were analyzed visually and compared. The results are summarized below: 1) It was clarified from factor I that a solid bed (SB) containing considerable melt phase appears in the feed zone at the beginning of the process, and breaks into fragments in the compression zone in the latter half of the process. This phenomenon may be explained by the following: a low bulk density group of plastic pellets was heated from the surface of each pellet during the waiting time in the feed zone. During the subsequent gathering and compression of pellets, the SB interior melted prior to the exterior regions due to heat conduction effects. 2) It was clarified from factor II that the SB in the screw compression zone increases from the start to the end of the reciprocating plastication process. It was also confirmed that an insufficiently heated SB appeared in the latter half of the charge process as the backward movement of the screw reduced the distance from the pellet feed position to the observation point in the reciprocating plastication process. 3) Based on a summary of these results, a plastication process model of injection molding was proposed.
机译:注塑成型中的往复式塑化过程是循环和动态现象,在此期间(因子I)螺杆向前和向后移动(因子H)螺杆周期性地旋转。分析分离这两个因素是探测往复式塑性过程中特征现象的原因所必需的。在该研究中,视觉并在视觉上分析螺钉在固定位置处设定螺钉的往复式塑化过程和周期性塑化过程,并在视觉上进行间歇地进行旋转。结果总结如下:1)从因子I澄清了含有相当大熔体相的固体床(Sb)在进料区的开始时出现在该过程的开始处,并且在后半部分的压缩区中的碎片中分成碎片这个过程。该现象可以通过以下方式解释:在进料区的等待时间期间,从每个颗粒的表面加热低堆积密度组。在随后的聚集和压缩颗粒中,SB内部由于导热效应而在外部区域之前熔化。 2)从因子II澄清,螺杆压缩区中的SB从往复式塑化过程的开始增加。还证实,由于螺杆的后向移动在往复式塑化过程中,在电荷过程的后半部分减小到往复式塑性过程中的观察点的后半部分,所以在电荷过程的后一半中出现了不充分的SB。 3)基于这些结果的概述,提出了一种注射成型的塑化过程模型。

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