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EMEDS: A SYSTEM TO DETERMINE EJECTION LAYOUT FOR RAPID-TOOLED INJECTION MOLDS

机译:EMEDS:一种用于确定快速成型模具的喷射布局的系统

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One of the main issues in injection molding is the amount of time required to design and fabricate a mold once a part representation has been created. Rapid tooling methods, the usage of rapid prototyping methods to fabricate molds, have been developed to speed up mold fabrication, but mold design time remains a bottleneck. The design of ejection mechanisms for rapid tools is investigated in this paper. By eliminating elements from a mold that are specific to the molded part, mold design time can be reduced. For instance, the use of a standardized ejector plate with an array of pre-drilled holes significantly reduces part specific elements from the ejector mechanism. The EMEDS system. Ejection Mechanism Design Synthesis, was developed to facilitate the rapid design and incorporation of ejection into rapid tools with standardized ejector plates. Problem formulations and solution algorithms will be presented for the two main elements of EMEDS. the Pin Composer and Pin Locator. In support of EMEDS, an analytical model of ejection force was developed and will be presented here. Application of the EMEDS system to an example illustrates the design of an ejection mechanism for an industrial part.
机译:注塑成型中的主要问题之一是一旦创建了零件表示,就需要设计和制造模具所需的时间。已经开发了快速工具方法,即使用快速原型方法来制造模具,以加快模具制造的速度,但是模具设计时间仍然是瓶颈。本文研究了快速工具弹出机构的设计。通过消除模具中特定于模制零件的元素,可以减少模具设计时间。例如,使用带有一系列预钻孔的标准化顶板可以大大减少顶板机构中的零件特定元件。 EMEDS系统。推出了弹出机构设计综合程序,以帮助快速设计和将弹出功能合并到带有标准弹出板的快速工具中。针对EMEDS的两个主要元素,将提出问题公式和解决方案算法。引脚编辑器和引脚定位器。为了支持EMEDS,开发了一种弹射力分析模型,并将在此处介绍。 EMEDS系统在一个示例中的应用说明了工业零件顶出机构的设计。

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