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首页> 外文期刊>Polymer engineering and science >Visualization Analysis of Side-Edge Flow Phenomena in Different Thickness/Width Rectangular Cavities Using a Rotary Runner Exchange System
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Visualization Analysis of Side-Edge Flow Phenomena in Different Thickness/Width Rectangular Cavities Using a Rotary Runner Exchange System

机译:使用旋转流道交换系统对不同厚度/宽度矩形腔体中的边流现象进行可视化分析

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The authors developed a rotary runner exchange system which is able to instantaneously switch between flow resins of two colors before the gate and proposed a new visualization method which enables observation of the internal flow behavior. In this study, the authors confirmed that resins of the initial filling stage are stretched into a horn shape along both sides of the cavity. This side-edge flow area found to distribute along both sides of the rectangular cavity, and the distribution state varied with the change in the aspect ratio between the cavity width and thickness. With square cross sections, the side-edge flow area was confirmed to divide into four corners. The same flow behavior does not occur with circular cross sections. With rectangular cross sections, a solidified layer and a nonflow layer grow consistently from the cavity wall during the flow process. This causes the shape of the residual flow area around the center of the cross section to change during the flow process. As a result of flow history of regions, where shear flow selectively continues over a long time, a horn-shaped side flow is thought to be formed near both sides of the cavity or its four corners.
机译:作者开发了一种旋转流道交换系统,该系统能够在浇口之前立即在两种颜色的流动树脂之间进行切换,并提出了一种新的可视化方法,可以观察内部流动行为。在这项研究中,作者证实了初始填充阶段的树脂沿模腔的两侧拉伸成角状。发现该侧边缘流动区域沿着矩形腔的两侧分布,并且分布状态随着腔宽度和厚度之间的纵横比的变化而变化。对于正方形横截面,证实了侧边缘流动区域分为四个角。圆形横截面不会发生相同的流动行为。具有矩形横截面,在流动过程中,凝固层和非流动层从型腔壁始终生长。这导致横截面中心周围的残留流动区域的形状在流动过程中发生变化。作为区域的流动历史的结果,在该区域中剪切流选择性地长时间持续,因此认为在空腔的两侧或其四个角附近形成了喇叭状的侧流。

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