Kuo Chil-Chyuan, Nguyen Trong-Duc, Zhu Yi-Jun, Lin Shi-Xun
Department of Mechanical Engineering, Ming Chi University of Technology, No. 84, Gungjuan Road, New Taipei City 243303, Taiwan.
Research Center for Intelligent Medical Devices, Ming Chi University of Technology, No. 84, Gungjuan Road, New Taipei City 243303, Taiwan.
Micromachines (Basel). 2021 Mar 16;12(3):311. doi: 10.3390/mi12030311.
Rapid tooling technology (RTT) provides an alternative approach to quickly provide wax injection molds for the required products since it can reduce the time to market compared with conventional machining approaches. Removing conformal cooling channels (CCCs) is the key technology for manufacturing injection mold fabricated by rapid tooling technology. In this study, three different kinds of materials were used to fabricate CCCs embedded in the injection mold. This work explores a technology for rapid development of injection mold with high cooling performance. It was found that wax is the most suitable material for making CCCs. An innovative method for fabricating a large intermediary mold with both high load and supporting capacities for manufacturing a large rapid tooling using polyurethane foam was demonstrated. A trend equation for predicting the usage amount of polyurethane foam was proposed. The production cost savings of about 50% can be obtained. An optimum conformal cooling channel design obtained by simulation is proposed. Three injection molds with different cooling channels for injection molding were fabricated by RTT. Reductions in the cooling time by about 89% was obtained. The variation of the results between the experiment and the simulation was investigated and analyzed.
快速模具技术(RTT)提供了一种替代方法,能够快速为所需产品提供蜡注射模具,因为与传统加工方法相比,它可以缩短产品上市时间。去除随形冷却通道(CCC)是制造通过快速模具技术制造的注塑模具的关键技术。在本研究中,使用了三种不同的材料来制造嵌入注塑模具中的CCC。这项工作探索了一种快速开发具有高冷却性能注塑模具的技术。结果发现,蜡是制造CCC最合适的材料。展示了一种使用聚氨酯泡沫制造具有高负载和支撑能力的大型中间模具以制造大型快速模具的创新方法。提出了一个预测聚氨酯泡沫用量的趋势方程。可实现约50%的生产成本节约。提出了通过模拟获得的最佳随形冷却通道设计。通过RTT制造了三个具有不同冷却通道的注塑模具用于注塑成型。冷却时间减少了约89%。对实验和模拟结果之间的差异进行了调查和分析。