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Metal Additive Manufacturing of a High-pressure Micro-pump

机译:高压微型泵的金属增材制造

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For the thermal control of future space applications pumped two-phase loops are an essential part to handle the increasing thermal power densities. This study investigates the design of a reliable, leak tight, low-weight and high-pressure micro-pump for small satellite applications. The developed micro-pump uses a piezoelectric disk to create a pressure head and propel the working fluid. The micro-pumps are produced from Titanium alloy (Ti6Al4V) using Selective Laser Melting (SLM) as a metal additive manufacturing technique. Two types of micro-valve designs are explored, namely (1) no moving parts valves and (2) passive check valves. Experimental validation shows promising results especially for micro-pumps using passive check micro-valves. Finally, the assembly of the entire micro-pump has been designed for SLM production. In the end, this would enable the future use of micro- pumps for space applications. Metal additive manufacturing, as relatively new manufacturing system, showcases promising results for both research work and final production.
机译:对于未来空间应用的热控制,抽运的两相环路是应对不断增长的热功率密度的重要组成部分。这项研究调查了用于小型卫星应用的可靠,不漏气,重量轻和高压的微型泵的设计。开发的微型泵使用压电盘创建压力头并推动工作流体。微型泵由钛合金(Ti6Al4V)使用选择性激光熔化(SLM)作为金属增材制造技术生产。研究了两种类型的微型阀设计,即(1)无活动部件阀和(2)被动止回阀。实验验证显示出令人鼓舞的结果,尤其是对于使用被动检查微型阀的微型泵而言。最后,整个微型泵的组装已设计用于SLM生产。最后,这将使微型泵将来可以用于太空应用。金属增材制造作为一种相对较新的制造系统,在研究工作和最终生产中均显示出可喜的成果。

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