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The scope of additive manufacturing in cryogenics, component design, and applications

机译:冷冻机,组件设计和应用中添加剂制造的范围

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Additive manufacturing techniques using composites or metals are rapidly gaining momentum in cryogenic applications. Small or large, complex structural components are now no longer limited to mere design studies but can now move into the production stream thanks to new machines on the market that allow for light-weight, cost optimized designs with short turnaround times. The potential for cost reductions from bulk materials machined to tight tolerances has become obvious. Furthermore, additive manufacturing opens doors and design space for cryogenic components that to date did not exist or were not possible in the past, using bulk materials along with elaborate and expensive machining processes, e.g. micromachining. The cryogenic engineer now faces the challenge to design toward those new additive manufacturing capabilities. Additionally, re-thinking designs toward cost optimization and fast implementation also requires detailed knowledge of mechanical and thermal properties at cryogenic temperatures. In the following we compile the information available to date and show a possible roadmap for additive manufacturing applications of parts and components typically used in cryogenic engineering designs.
机译:使用复合材料或金属的添加剂制造技术在低温应用中迅速增加动力。现在,小型或大型复杂的结构部件现在不再限制为仅仅是设计研究,但现在由于市场上的市场上的新机器即可进入生产流,这是允许轻量级的,成本优化的设计短时间。从加工到紧张耐受性的散装材料成本降低的可能性变得明显。此外,添加剂制造打开了用于迄今为止不存在的低温组件的门和设计空间,使用散装材料以及精细和昂贵的加工过程,例如,用于更粗略的加工过程。微机器。低温工程师现在面临着设计对这些新的添加剂制造能力的挑战。此外,重新思考优化和快速实施的设计还需要在低温温度下详细了解机械和热性能。在下文中,我们将可用的信息编译为迄今为止,并且可以为零件和组件的零件和组件的添加剂制造应用显示可能的路线图。

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