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Effects of Wall Slip on Filling Flow for Polymer Melt in Micro Injection Molding

机译:壁滑对微注塑成型中聚合物熔体灌装流动的影响

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Effect of wall slip on melt filling flow behaviors in micro injection molding are investigated based on analysis of wall slip mechanism for polymer melt flowing at filling stage. By means of comparisons, slip coefficients in different microchannels are confirmed. With finite element method, the relationship between slip velocity and inlet flow rate or length-diameter ratio is analyzed. The results indicate that the wall slip happen for polymeric melt in microchannels, and slip coefficients are related with the size characteristics of microchannels. Moreover, wall slip velocity has the size effect and increase with the decrease of the section size of microchannels, which cause melt velocity distribution to smooth. At the same time, slip velocity is proportional to length-diameter ratio of microchannel, namely when wall shear stress is uniform, the slip velocity rises with increasing length-diameter ratio of microchannel.
机译:研究了壁滑对微注塑成型中熔体填充流动的影响,基于填充阶段的聚合物熔体壁滑移机构分析。通过比较,确认不同微通道中的滑动系数。通过有限元方法,分析了滑移速度和入口流速或长直径比之间的关系。结果表明,微通道中的聚合物熔体发生壁滑移,滑动系数与微通道的尺寸特性有关。此外,壁滑速具有尺寸效应,随着微通道截面尺寸的减小而增加,导致熔体速度分布平滑。同时,滑动速度与微通道的长度比例成比例,即当壁剪切应力均匀时,滑移速度随着微通道的长度直径比而上升。

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