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Design of Conformal Cooling/Heating Channels for Layered Tooling

机译:分层工具保形冷却/加热通道的设计

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One of the advantages of Rapid tooling (RT) methods is flexibility in building conformal cooling/heating channels within a mold for enhanced thermal control, but tool size is currently limited. But Profiled Edge Laminae (PEL) method, which is a thick-layer laminated RT method intended for large-scale tooling applications, could allow more challengeable channels to layered tools. One of the biggest design issues with incorporating conformal channels in a PEL tool is to effectively seal the channels rapidly and inexpensively. Prior attempts in the literature at sealing laminated tools using diffusion bonding or brazing have been just the opposite. Recognizing that many manufacturing applications requiring large-scale tools (e.g., thermoforming, composites forming) do not need the temperature-resistance and strength of either diffusion bonded or brazed laminae, this paper investigates alternative sealing methods for laminated tooling.
机译:快速工具(RT)方法的一个优点是在模具内构建用于增强的热控制的模具的保形冷却/加热通道的灵活性,但目前有限的刀具尺寸。但是,作为用于大规模工具应用的厚层层压RT方法,型材覆盖的边缘薄层(PEL)方法可以允许更具竞争力的通道到分层工具。在PEL工具中包含共形通道的最大设计问题之一是能够快速且廉价地利用通道密封通道。使用扩散粘合或钎焊的密封层压工具在密封层压工具中的先前尝试已经相反。本文研究了多种扩散粘结或钎焊剂的许多制造应用,不需要大规模工具(例如,热成型,复合材料)不需要耐燃料或钎焊的耐燃烧层的耐温性和强度,研究了层压工具的替代密封方法。

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