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Fabrication of circular and Profiled Conformal Cooling Channels in aluminum filled epoxy injection mould tools

机译:铝填充环氧注塑模具中圆形和成型保形冷却通道的制造

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摘要

The purpose of this paper is to present a technique of fabricating Profiled Conformal Cooling Channels (PCCC) in an Aluminum filled epoxy mould using Rapid Prototyping (RP) and Rapid Tooling (RT) techniques. The cooling channels in injection mould tools have a circular cross section. In a PCCC, the cross sectional shape is so designed that the flat face surface of the channel facing the cavity follows the profile of the cavity. These types of channels can be manufactured through RP techniques. A part to be moulded was designed and modeled. Two moulds were then designed with the part cavity, one having a circular channel and the second with a profiled channel, both having the same cross sectional area for coolant flow. The channel patterns were designed with supports according to their position regarding height and distance from the cavity as designed earlier. Both channels have the same distance from the cavity wall. RP patterns were produced for both channels and part using the Thermojet 3D printer. The cooling channel and the moulded part were then assembled as designed in the moulds. Moulding frames were fabricated with aluminium plates and the pattern was placed in the frames. Epoxy was poured on the pattern and then cured. The moulded part and the channel patterns embedded inside epoxy were melted out during the final curing cycle, leaving behind the circular- and profiled-cooling channels in the moulds. The RT fabrication technique adopted in the current work was to make the profiled channels which cannot be fabricated through conventional manufacturing methods.
机译:本文的目的是介绍使用快速原型(RP)和快速工具(RT)技术在铝填充的环氧树脂中制造成型的共形冷却通道(PCCC)的技术。注塑模具中的冷却通道具有圆形横截面。在PCCC中,使横截面形状设计成使得腔的沟道的平坦面表面遵循腔的轮廓。这些类型的通道可以通过RP技术制造。设计和建模的待模塑部件。然后用部分腔设计两个模具,一个模具具有圆形通道的圆形通道,第二具有成型通道,两者都具有用于冷却剂流的相同横截面积。沟道图案根据其位置根据它们的位置与腔体的高度和距离的位置设计。两个通道距离腔壁具有相同的距离。使用热喷嘴3D打印机为两个通道和零件生产RP模式。然后如在模具中设计的冷却通道和模制部件。用铝板制造成型框架,并将图案放置在框架中。环氧倒在图案上,然后固化。在最终固化循环期间嵌入环氧树脂内部熔化成型部分和沟道图案,留下模具中的圆形和成型冷却通道。目前工作中采用的RT制造技术是制备不能通过常规制造方法制造的成型通道。

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