Vapor chamber structure
11060799 ยท 2021-07-13
Assignee
Inventors
Cpc classification
F28F2240/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28D15/046
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28F19/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28F2225/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28F21/082
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H05K7/20509
ELECTRICITY
F28F21/086
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28F3/022
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28D15/0233
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A vapor chamber structure includes a thin-sheet housing with a hollow interior and a composite capillary layer installed in the thin-sheet housing. The composite capillary layer is a metal woven mesh formed by weaving plural metal filaments, and each metal filament of the composite capillary layer is a steel wire having a coating layer on the exterior of the steel wire. By pulling and drawing the steel into a linear shape, a smaller wire diameter is obtained, so that the composite capillary layer will not be broken easily and can be used for making a finer woven mesh which can be installed in a thinner vapor chamber.
Claims
1. A vapor chamber structure, comprising: a housing, with an interior substantially in a hollow form and comprising a first plate and a second plate, the first plate comprising a plurality of first support portions and the second plate comprising a plurality of second support portions, wherein the first support portions and the first plate are in a single piece form, and the second support portions and the second plate are in a single piece form; and a composite capillary layer, disposed on the first plate, and the second plate being free from the composite capillary layer; wherein, the composite capillary layer is a metal woven mesh and formed by weaving a plurality of metal filaments, and each metal filament of the composite capillary layer is a steel wire having a coating layer disposed on the external surface thereof, each of the first support portions comprises a first upper surface and a plurality of first upper surfaces are coplanar, and each of the second support portions comprises a second upper surface and a plurality of second upper surfaces are coplanar, and the first upper surfaces and the second upper surfaces are coplanar, and the coating layer is made of titanium.
2. The vapor chamber structure as claimed in claim 1, wherein the housing is made of copper or aluminum.
3. The vapor chamber structure as claimed in claim 1, wherein the first plate has a first recessed space continuously formed around the periphery of the first sealing edge and enclosed by the first plate and the first sealing edge, and the second plate is covered onto the first sealing edge to seal the first recessed space.
4. The vapor chamber structure as claimed in claim 3, wherein the first recessed space is formed by an etching method.
5. The vapor chamber structure as claimed in claim 3, wherein the second plate has a second recessed space continuously formed around the periphery of the second sealing edge and enclosed by the second plate and the second sealing edge.
6. The vapor chamber structure as claimed in claim 1, wherein the coating layer is formed by a coating method.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DESCRIPTION OF THE PREFERRED EMBODIMENTS
(5) The technical contents of this disclosure will become apparent with the detailed description of preferred embodiments accompanied with the illustration of related drawings as follows. It is intended that the embodiments and drawings disclosed herein are to be considered illustrative rather than restrictive.
(6) With reference to
(7) The thin-sheet housing 1 has an interior substantially in a hollow form and is made of copper or aluminum, and the thin-sheet housing 1 is formed by covering a first plate 10 and a second plate 11 with each other. In the first embodiment of this disclosure, the first plate 10 has a first recessed space 101 continuously formed around the periphery of the first sealing edge 100 and enclosed by the first plate 10 and the first sealing edge 100, and the second plate 11 is covered onto the first sealing edge 100 to seal the first recessed space 101, so as to form the thin-sheet housing 1. In addition, the first recessed space 101 is formed by etching a surface of the first plate 10 to be indented inwardly into the surface, and a non-etched portion is reserved inside the first recessed space 101 for forming a plurality of first support portions 102 and provided for the second plate 11 to seal the first recessed space 101 and stack onto the first plate 10, so that the first support portions 102 can abut against the inner surface of the second plate 11 to serve as a support structure.
(8) The composite capillary layer 2 is disposed in the thin-sheet housing 1. In the first embodiment of this disclosure, the composite capillary layer 2 is disposed in the first recessed space 101. The composite capillary layer 2 of this disclosure is a metal woven mesh formed by weaving a plurality of metal filaments, wherein each metal filament of the composite capillary layer 2 is a steel wire with coating layer 21 coated onto the steel wire. When the steel is pulled and drawn into a linear shape, a smaller wire diameter is obtained, so that the composite capillary layer will not be broken easily and can be used for making a finer woven mesh which can be installed in a thinner vapor chamber, while maintaining the necessary capillary force of the composite capillary layer 2. In addition, the coating layer 21 is coated onto the steel wire, and the coating is made of titanium. Before each steel wire is woven into the capillary layer 2 of the woven mesh, the coating layer 21 is coated first; or after each steel wire is woven into the capillary layer 2 of the woven mesh, the coating layer 21 is coated onto the capillary layer 2, so as to ensure the composite capillary layer 2 formed by the steel wire can provide the required capillary force, while the composite capillary layer 2 is prevented from being corroded by the working fluid and an anti-rust effect is achieved.
(9) In
(10) In the second embodiment of this disclosure as shown in
(11) In summation of the description above, this disclosure definitely can achieve the expected objectives and overcome the drawbacks of the prior art, and the disclosure complies with the patent application requirements, and thus is duly filed for patent application.
(12) While this disclosure has been described by means of specific embodiments, numerous modifications and variations could be made thereto by those skilled in the art without departing from the scope and spirit of this disclosure set forth in the claims.