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通过使用保形通道的计算机模拟评估聚合物注塑模具的冷却效率。

Evaluating the Cooling Efficiency of Polymer Injection Molds by Computer Simulation Using Conformal Channels.

作者信息

Vargas-Isaza Carlos, Benitez-Lozano Adrian, Rodriguez Johnnatan

机构信息

Grupo Investigación Materiales Avanzados y Energía, Instituto Tecnológico Metropolitano, Medellín 050034, Colombia.

Grupo Investigación Calidad Metrología y Producción, Instituto Tecnológico Metropolitano, Medellín 050034, Colombia.

出版信息

Polymers (Basel). 2023 Oct 10;15(20):4044. doi: 10.3390/polym15204044.

Abstract

Injection molds are production tools that require detailed analysis based on the quality of the resulting part, the impact on cycle times, and the expected production volume. Cooling channels also play a critical role in mold performance and product quality as they largely determine cycle time. Designs that incorporate conformal cooling channel (CCC) geometries that conform to or align with the part contour are currently being explored as an alternative to conventional cooling channel designs in injection molds. In this study, a simulation of CCC geometries was performed and their effects on mold temperatures and warpage were investigated. Two cross-sectional geometries, circular and square, were selected for a three-factor level design of experiments (DOE) analysis. The response variables used were mold temperatures and part warpage. A cup-shaped part with upper and lower diameters of 54 and 48 mm, respectively, a height of 23 mm and a thickness of 3 mm was used for the injection molded part. A comparison was also made between two materials for the injection mold, steel and polycarbonate. The DOE results showed that the distance between the CCC and the injected part and the diameter or side of the square have significant effects on the response variables for both systems (steel and polycarbonate molds). In addition, a comparison between conventional and conformal cooling channels was analyzed using a cup-shaped part and a less rigid part geometry. The finite element simulation results show a 9.26% reduction in final warpage in the cup-shaped part using CCCs compared with the conventional cooling methods in steel. When using parts with lower geometry stiffness, the use of CCCs reduced final part warpage by 32.4% in metal molds and by 59.8% in polymer molds.

摘要

注塑模具是生产工具,需要根据成型零件的质量、对周期时间的影响以及预期产量进行详细分析。冷却通道在模具性能和产品质量方面也起着关键作用,因为它们在很大程度上决定了周期时间。目前正在探索采用与零件轮廓相符或对齐的保形冷却通道(CCC)几何形状的设计,以替代注塑模具中的传统冷却通道设计。在本研究中,对CCC几何形状进行了模拟,并研究了它们对模具温度和翘曲的影响。选择了圆形和方形两种横截面几何形状进行三因素水平的实验设计(DOE)分析。所使用的响应变量是模具温度和零件翘曲。注塑成型零件采用一个杯形零件,其上、下直径分别为54毫米和48毫米,高度为23毫米,厚度为3毫米。还对注塑模具的两种材料——钢和聚碳酸酯进行了比较。DOE结果表明,CCC与注塑零件之间的距离以及方形的直径或边长对两种系统(钢模和聚碳酸酯模)的响应变量都有显著影响。此外,使用杯形零件和较低刚性的零件几何形状对传统冷却通道和保形冷却通道进行了比较分析。有限元模拟结果表明,与钢模中的传统冷却方法相比,使用CCC时杯形零件的最终翘曲降低了9.26%。当使用几何形状刚度较低的零件时,在金属模具中使用CCC可使最终零件翘曲降低32.4%,在聚合物模具中降低59.8%。

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