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  • PERFORMANCES OF HEAT PIPES BASED ON METAL-FIBROUS CAPILLARY STRUCTURES.

    Paper number

    IAC-08.A2.4.7

    Author

    Prof. Jean Claude Legros, University of Brussels, Belgium

    Coauthor

    Prof. Kostornov A.G., Ukraine

    Coauthor

    Dr. CHERNYSHEV L.I., Ukraine

    Coauthor

    Dr. Shapoval A.A., Ukraine

    Coauthor

    Prof. Mgalobishvili O., United Kingdom

    Coauthor

    Prof. Lalor M.J., United Kingdom

    Year

    2008

    Abstract

    Porous capillary structures are used inside heat pipes to transfer liquid from the condenser zone toward the evaporator. This transport capacity is one of the main parameter governing the performance of this kind of device with the heat of vaporization of the working fluid. Capillary structures provide in general a higher capillary pressure than grooves which are currently used. The present report is related to porous materials produced by sintering metal fibers with length much larger than their diameters (e.g. diameter = 70 µm and length 4 mm). The permeability of such a structure is rather large as all pores are communicating and the porosity can be as large as 89The prepared layer is sintered under vacuum at temperatures depending on the used materials (Copper, Stainless Steel, Titanium,…). After the sintering step, the final permeability is adjusted to the need by rolling the system over the plasticity limit. Sheets have been used to prepare 10 Copper heat pipes, 10 mm diameter and 300 mm length. The performances have been characterized for 5 different porous structures, in configuration up to the vertical orientation with the evaporator on the top. The obtained performances of these 10 sample heat pipes will be detailed at the presentation.

    This research was supported by a joint INTAS – CNES – NSAU programme.

    Abstract document

    IAC-08.A2.4.7.pdf

    Manuscript document

    IAC-08.A2.4.7.pdf (🔒 authorized access only).

    To get the manuscript, please contact IAF Secretariat.