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Simulation of injection molding into rapid prototyped molds

机译:模拟快速成型模具中的注塑成型

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摘要

Injection molding is a very mature technology, but the growth of layer-build, additive, manufacturing technologies (rapid prototypying) has the potential of expanding injection molding into areas not commercially feasible with traditional molds and molding techniques. This integration of injection molding with rapid prototyping has undergone many demonstrations of potential. What is missing is the fundamental understanding of how the modifications to the mold material and mold manufacturing process impact both the mold design and the injection molding process. This work expanded on an approach to utilize current numerical simulation programs and created a tool for optimizing the creation and use of non-metal molds for injection molding. Verification and validation work is presented. The model was exercised by studying the effect of varying the thermal conductivity on final-part distortions. This work clearly showed that one could not obtain reasonable results by simply changing a few input parameters in the current simulations. Although the approach did produce more realistic results, more work will be required for a tool capable of accurate, quantitative predictions.
机译:注射成型是一项非常成熟的技术,但是随着层构建,添加剂,制造技术(快速原型制作)的发展,有可能将注射成型扩展到传统模具和成型技术无法在商业上实现的领域。注塑成型与快速成型的这种集成已经证明了许多潜力。缺少的是对模具材料和模具制造过程的修改如何影响模具设计和注塑过程的基本理解。这项工作扩展了利用当前数值模拟程序的方法,并创建了一种工具,用于优化非金属模具的创建和使用。介绍了验证和确认工作。通过研究改变导热系数对最终零件变形的影响来行使该模型。这项工作清楚地表明,仅通过在当前模拟中更改一些输入参数就无法获得合理的结果。尽管该方法确实产生了更现实的结果,但是对于能够进行准确,定量预测的工具,还需要做更多的工作。

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