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FUNCTIONAL COMPONENTS PRODUCED BY MULTI-JET MODELLING COMBINED WITH ELECTROFORMING AND MACHINING

机译:多射流建模与电铸加工相结合生产的功能部件

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In fuel cell technology, certain components are used that are responsible for guiding liquid media. When these components are produced by conventional manufacturing, there are often sealing issues, and trouble- and maintenance-free deployment cannot be ensured. Against this background, a new process combination has been developed in a joint project between the University of Duisburg-Essen, the Center for Fuel Cell Technology (ZBT), and the company Galvano-T electroplating forming GmbH. The approach is to combine multi-jet modelling (MJM), electroforming and milling in order to produce a defined external geometry. The wax models are generated on copper base plates and copper-coated to a desirable thickness. Following this, the undefined electroplated surfaces are machined to achieve the desired measurement, and the wax is melted out. This paper presents, first, how this process is technically feasible, then describes how the MJM on a 3-D Systems ThermoJet was adapted to stabilise the process.In the AiF-sponsored ZIM project, existing limits and possibilities are shown and different approaches of electroplating are investigated. This paper explores whether or not activation of the wax structure by a conductive initial layer is required. Using the described process chain, different parts were built: a heat exchanger, a vaporiser, and a reformer (in which pellets were integrated in an intermediate step). In addition, multiple-layer parts with different functions were built by repeating the process combination several times.?.
机译:在燃料电池技术中,使用某些负责引导液体介质的组件。当这些部件通过常规制造来生产时,经常会出现密封问题,并且无法确保无故障且无需维护。在这种背景下,杜伊斯堡-埃森大学,燃料电池技术中心(ZBT)和Galvano-T电镀成型公司之间的联合项目中开发了一种新的工艺组合。该方法是将多喷射建模(MJM),电铸和铣削相结合,以产生定义的外部几何形状。蜡模型在铜基板上生成并镀铜至所需厚度。然后,对未定义的电镀表面进行机加工以达到所需的测量效果,蜡融化。本文首先介绍了该过程在技术上如何可行,然后介绍了如何在3-D Systems ThermoJet上使用MJM来稳定该过程。在AiF赞助的ZIM项目中,显示了现有的限制和可能性以及不同的方法研究电镀。本文探讨了是否需要通过导电初始层活化蜡结构。使用所描述的过程链,构建了不同的部件:热交换器,蒸发器和重整器(其中颗粒在中间步骤中集成在一起)。另外,通过多次重复该过程组合来构建具有不同功能的多层部件。

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