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Critical evaluation of additively manufactured metal lattices for viability in advanced heat exchangers

机译:高级换热器中可吸附性金属晶格的关键评价

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The advantages offered by the stochastic metal foams when used in high-performance compact heat exchangers is evident in the open literature. Recently, there has been a surge in investigations on regular metal lattices which can be manufactured additively, because of their "potential" to provide multifunctional and tunable characteristics to heat exchangers. These lattices are also reported to lend superior mechanical properties as well. The literature, however, lacks in the critical assessment of these additively manufactured regular lattices in terms of the quality of printed parts (defects, surface roughness, etc.), their compatibility in compact heat exchangers, flow and thermal transport characteristics, and whether or not they are viable alternatives to the commercial metal foams conventionally manufactured. This paper reports different manufacturing routes for the fabrication of conventional stochastic and regular lattices and additively manufactured regular lattices, and how these technologies have evolved over the years. The additively manufactured lattices different from the commercial TKD may result in significantly higher interstitial heat transfer coefficient. Further, the design freedom allows different porosities through which higher effective thermal conductivity can be achieved. The usage of regular lattices in tube-heat exchangers, as wicks in heat pipes, heat transfer enhancement features in boiling heat transfer and transpiration cooling mechanisms of turbine blades as an alternative to conventional technologies is promising. The role of inherent surface roughness in dictating the thermal and flow transport in additively manufactured lattices, especially for multi-phase flow applications, should be studied in more detail.
机译:在高性能紧凑型热交换器中使用时,随机金属泡沫提供的优点在开放文献中是显而易见的。最近,在普通金属晶格上的调查飙升,这可以加剧地制造,因为它们的“电位”提供对热交换器的多功能和可调特性。还报告了这些格子也借出了卓越的机械性能。然而,在印刷部件(缺陷,表面粗糙度等)的质量方面,这些文献缺乏对这些常规制造的常规格子的批判性评估,它们在紧凑型热交换器,流动和热传输特性的兼容性,以及是否或不是它们是常规制造商业金属泡沫的可行替代品。本文报告了常规随机和常规格子制造的不同制造路线,以及常规格式的常规格式,以及这些技术多年来如何发展。与商业TKD不同的加剧制造的格子可能导致高度较高的间隙传热系数。此外,设计自由允许不同的孔隙率可以实现更高的有效导热性。在管 - 热交换器中使用常规格子,如热管中的芯片,沸腾传热和涡轮机叶片的蒸发冷却机制中的传热增强特征是常规技术的替代。应该更详细地研究内在表面粗糙度在提出加热和流量运输中的内在表面粗糙度在加容量制造的格子中的作用,特别是对于多相流动应用。

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