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A scaffolding architecture for conformal cooling design in rapid plastic injection moulding

机译:快速注塑成型中的保形冷却设计的脚手架架构

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Cooling design of plastic injection mould is important because it not only affects part quality but also the injection moulding cycle time. Traditional injection mould cooling layout is based on a conventional machining process. As the conventional drilling method limits the geometric complexity of the cooling layout, the mobility of cooling fluid within the injection mould is confined. Advanced rapid tooling technologies based on solid free-form fabrications have been exploited to provide a time-effective solution for low-volume production. In addition, research has made attempts to incorporate conformal cooling channel in different rapid tooling technologies. However, the cooling performance does not meet the mould engineer's expectations. This paper proposes a novel scaffold cooling for the design of a more conformal and hence more uniform cooling channel. CAD model for constructing the scaffolding structure is examined and cooling performances are validated by computer-aided engineering (CAE) and computer fluid dynamics (CFD) analysis.
机译:注塑模具的冷却设计很重要,因为它不仅影响零件质量,而且还会影响注塑成型周期。传统的注塑模具冷却布局基于常规的机加工工艺。由于常规钻孔方法限制了冷却布局的几何复杂性,因此冷却流体在注射模具内的流动性受到限制。已经开发了基于固态自由形式制造的先进快速工具技术,可为小批量生产提供及时有效的解决方案。另外,研究已经尝试将保形冷却通道并入不同的快速加工技术中。但是,冷却性能不能满足模具工程师的期望。本文提出了一种新颖的脚手架冷却系统,以设计更保形的冷却通道。检查了用于构建脚手架结构的CAD模型,并通过计算机辅助工程(CAE)和计算机流体动力学(CFD)分析验证了冷却性能。

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