VAPOR CHAMBER WITH IMPROVED FIXING STRUCTURE FOR DEGASSING TUBE
20230356113 ยท 2023-11-09
Inventors
Cpc classification
H05K7/2039
ELECTRICITY
F28F2230/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28F11/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F28D15/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A vapor chamber includes a vapor chamber main body, a degassing tube, and a fixing layer. The vapor chamber main body includes a first casing and a second casing correspondingly sealed with the first casing. The first casing is disposed with a tube trough. One of the first casing and the second casing is formed with a filling hole corresponding to the tube trough. The degassing tube is placed in the tube trough. A feeding channel communicating with the filling hole is formed between the degassing tube, the tube trough and the second casing. The fixing layer is formed in the feeding channel to fasten the degassing tube on the vapor chamber main body. Therefore, the production procedure may be simplified and the degassing tube may be firmly fastened on the vapor chamber main body.
Claims
1. A vapor chamber comprising: a vapor chamber main body, comprising a first casing and a second casing correspondingly sealed with the first casing, the first casing comprising a tube trough, wherein a filling hole is disposed on one of the first casing and the second casing corresponding to the tube trough; a degassing tube, placed in the tube trough, wherein a feeding channel is defined between the degassing tube, the tube trough and the second casing, and the feeding channel communicates with the filling hole; and a fixing layer, disposed in the feeding channel to fasten the degassing tube on the vapor chamber main body.
2. The vapor chamber of claim 1, wherein the filling hole is a through hole defined on the second casing.
3. The vapor chamber of claim 1, wherein the filling hole is a notch defined on the second casing.
4. The vapor chamber of claim 1, wherein the fixing layer comprises a curable copper paste.
5. The vapor chamber of claim 1, wherein the filling hole is a through hole or a notch defined on the first casing.
6. The vapor chamber of claim 1, wherein the first casing comprises a bottom plate, a surrounding plate upward extended from the bottom plate, and a flange bent and extended from the surrounding plate, and the tube trough is disposed on the surrounding plate and the flange.
7. The vapor chamber of claim 6, wherein a cavity is enclosed jointly between the bottom plate and the surrounding plate, and the bottom plate is upward extended with multiple support bumps in the cavity.
8. The vapor chamber of claim 1, wherein the second casing comprises an inner edge, and the filling hole is disposed on the inner edge.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
[0018] The technical contents of this disclosure will become apparent with the detailed description of 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.
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[0021] The second casing 12 is made of a material with desirable thermo-conductivity such as copper, aluminum, magnesium, or an alloy thereof. In an embodiment, the second casing 12 is, but not limited to, a flat plate and is correspondingly sealed with the first casing 11. An inner edge 121 is formed in the contour of the second casing 12. A position on the inner edge 121 of the second casing 12 corresponding to the tube trough 116 is disposed with a filling hole 122. In the embodiment, the filling hole 122 is a round through hole.
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[0024] When assembling, a welding base material (not shown in figures) is coated on the flange 113 of the first casing 11 and the inner edge 121 of the second casing 12, an end of the degassing tube 20 is placed corresponding to the tube trough 116, and the copper paste is placed on the filling hole 122 and treated with heating and pressing for connection. As a result, the first casing 11 is correspondingly sealed with the second casing 12. The copper paste enters through the filling hole 122, flows in along the feeding channel A, and forms the fixing layer 30 by a solidification process.
[0025] Next, a working fluid such as pure water is filled in the cavity 114 from the degassing tube 20. Finally, the above assembled structure is heated to eject air in the cavity 114. The degassing tube 20 is treated with sealing to make the cavity 114 form a vacuum chamber so as to finish the manufacturing of a vapor chamber.
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[0029] 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.