中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Heat exchanger arrangement and cooling system with at least one such heat exchanger arrangement

文献类型:专利

作者SCHULZ-HARDER, JURGEN; EXEL, KARL; MEDICK, BERND; BAUER-SCHULZ-HARDER, VERONIKA
发表日期1999-11-23
专利号US5987893
著作权人ROGERS GERMANY GMBH
国家美国
文献子类授权发明
其他题名Heat exchanger arrangement and cooling system with at least one such heat exchanger arrangement
英文摘要A microcooler with channels through which coolant flows. The channels are formed by individual cooler layers having a region which is structured in the manner of a screen and having a plurality of openings with edge lines closed and with material bridges or material regions remaining between these openings. None of the openings on any of the cooler layers form a continuous channel which extends from a collection space for feed of the coolant to a collection space for drainage of the coolant. The individual breaches, and the material bridges or material regions, provided between them are offset from cooler layer to cooler layer such that flow of the coolant through the cooler is possible only with continuous changing of the layers. Using the breaches within the cooler results in a highly branched labyrinth through which coolant flows. The size of the breaches and the width of the material sections and material bridges are matched to one another such that flow through is possible with continuous changing of the layers. This microcooler has the advantage that very intensive flow around the bridges and material regions formed by the individual layers takes place by the heat-transporting medium so that intensive heat transfer is achieved between this medium and the layers of the microcooler.
公开日期1999-11-23
申请日期1998-07-28
状态失效
源URL[http://ir.opt.ac.cn/handle/181661/36520]  
专题半导体激光器专利数据库
作者单位ROGERS GERMANY GMBH
推荐引用方式
GB/T 7714
SCHULZ-HARDER, JURGEN,EXEL, KARL,MEDICK, BERND,et al. Heat exchanger arrangement and cooling system with at least one such heat exchanger arrangement. US5987893. 1999-11-23.

入库方式: OAI收割

来源:西安光学精密机械研究所

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