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Heat transfer simulation for decision making in plastic injection mold design

机译:塑料注塑模具设计中决策传热仿真

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The solidification of a thermoplastic during the injection process directly influences the productivity and quality of the final product. This paper presents a study of the solidification performance of parts produced by a thermoplastic injection process, verifying their dimensional, visual, and production behavior according to the variation of geometry, temperature, and design of the injection mold cooling system. SolidWorks Plastics?? software was used to perform the simulations. Experiments were performed with a plastic injection mold to confront and validate the simulations. Given the comparison of different cooling geometries, the simulations made it possible to obtain parts with a shorter mold cooling cycle time. Payback analysis has the primary objective of determining which cooling system is the most viable and has the highest return on invested capital. The results demonstrated a solution for engineers and designers to justify maintenance or modifications to existing injection molds through numerical simulation.
机译:注射过程中热塑性塑料的凝固直接影响最终产品的生产率和质量。本文介绍了通过热塑性注入过程产生的部件的凝固性能,根据注射模具冷却系统的几何,温度和设计的变化来验证其尺寸,视觉和生产行为。 SolidWorks塑料?软件用于执行模拟。用塑料注射模具进行实验以面对并验证模拟。鉴于不同冷却几何形状的比较,模拟使得可以获得具有较短模具冷却循环时间的部件。回报分析具有确定哪种冷却系统最可行的主要目标,并具有投资资本的最高回报。结果表明了工程师和设计人员通过数值模拟来证明对现有注塑模具的维护或修改来证明对现有的注射模具的修改。

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