Geometrical Parameter Optimization of Circular Cross-Section Conformal Cooling Channels in Injection Molds of Plastic Paving Block Molds

IF 0.8 Q3 ENGINEERING, MULTIDISCIPLINARY
Laura W. Simiyu, James M. Mutua, P. Muiruri, B. Ikua, Simon N. Gacharu
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引用次数: 0

Abstract

High productivity and product quality are sought after by manufacturers due to the increasing demand for and use of plastic items. Injection molding is the most famous method used to make majority of the plastic items. Injection molding is however known for its lengthy production durations and poor product quality. This study shows the optimization of multiple design characteristics of circular cross-sectioned conformal cooling channels in response to reducing production time while improving product quality, at the same time, using Taguchi design-of-experiments approach. Diameter, depth, and pitch were the three main design variables examined. A Computer Aided Design software was used to create three dimensional designs and to conduct simulations. The responses obtained from simulations were time for cooling to ejection temperature, overall product shrinkage, extents of warpage and dimensions of sink marks. These output parameters were taken as input variables for multi-response optimization utilizing the method of Taguchi Grey Relational evaluation. The outcome obtained revealed that the minimum design variables resulted in the concurrent minimization of all responses for the particular geometry studied. Study of variance showed that the diameter to be the design factor that most significantly influenced all the responses simultaneously. Additionally, it was shown that conformal cooling channels yield better production outcomes than straight cooling channels whereby they gave the minimum cooling time and product defects. The optimized conformal cooling channels, when compared with straight cooling channels, reduced the time to cool the product, product shrinkage, dimension of warpage, and extent of sink marks by 29.35%, 5.99%, 19.77%, and 38.85% respectively.
塑料铺路块模具注塑模具中圆形截面共形冷却通道的几何参数优化
由于塑料制品的需求和使用量不断增加,高生产率和高质量成为制造商的追求。注塑成型是制造大多数塑料制品最常用的方法。然而,注塑成型以生产时间长、产品质量差而闻名。本研究采用田口试验设计方法,对圆形截面保形冷却水道的多个设计特征进行了优化,以缩短生产时间,同时提高产品质量。直径、深度和间距是三个主要的设计变量。使用计算机辅助设计软件创建三维设计并进行模拟。模拟得到的反应是冷却到顶出温度的时间、产品整体收缩率、翘曲程度和凹痕尺寸。利用田口灰色关联评价方法,将这些输出参数作为多响应优化的输入变量。结果表明,最小设计变量导致了所研究的特定几何形状的所有响应同时最小化。方差研究表明,直径是同时对所有响应影响最大的设计因素。此外,研究还表明,保形冷却水道比直冷却水道能产生更好的生产结果,冷却时间最短,产品缺陷最少。优化后的保形冷却通道与直冷却通道相比,产品冷却时间、产品收缩率、翘曲尺寸和凹痕程度分别减少了 29.35%、5.99%、19.77% 和 38.85%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.80
自引率
14.30%
发文量
62
期刊介绍: "International Journal of Engineering Research in Africa" is a peer-reviewed journal which is devoted to the publication of original scientific articles on research and development of engineering systems carried out in Africa and worldwide. We publish stand-alone papers by individual authors. The articles should be related to theoretical research or be based on practical study. Articles which are not from Africa should have the potential of contributing to its progress and development.
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