HEAT DISSIPATION MODULE WITH SHOCK RESISTING EFFECT
20230254998 ยท 2023-08-10
Inventors
Cpc classification
F28F2013/006
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28F2255/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28D15/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H05K7/2039
ELECTRICITY
F28F2265/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28D15/0275
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28F2265/26
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A heat dissipation module with a shock resisting effect is provided. The heat dissipation module includes a heat absorbing unit, a heat dissipating unit and at least one flexible heat conducting bundle. The heat absorbing unit has a first installing surface. The heat dissipating unit is disposed corresponding to the heat absorbing unit and has a second installing surface facing the first installing surface. The flexible heat conducting bundle is connected between the first installing surface and the second installing surface, and used for transferring heat of the heat absorbing unit to the heat dissipating unit to dissipate the heat. Accordingly, the heat dissipation module is provided with a flexible stretching function and a shock resisting effect.
Claims
1. A heat dissipation module, comprising: a heat absorbing unit, comprising a first installing surface; a heat dissipating unit, disposed corresponding to the heat absorbing unit and comprising a second installing surface facing the first installing surface; and at least one flexible heat conducting bundle, connected between the first installing surface and the second installing surface, and configured to transfer heat of the heat absorbing unit to the heat dissipating unit.
2. The heat dissipation module according to claim 1, wherein the flexible heat conducting bundle comprises at least one bending segment.
3. The heat dissipation module according to claim 2, wherein the flexible heat conducting bundle is multiple in number, and the bending segments are bent in a same direction.
4. The heat dissipation module according to claim 2, wherein the flexible heat conducting bundle is multiple in number, and the bending segments are bent outward in a radial manner.
5. The heat dissipation module according to claim 2, wherein the bending segment is two in number, and the two bending segments are bent in an opposite direction in an S shape manner.
6. The heat dissipation module according to claim 1, wherein the flexible heat conducting bundle comprises a plurality of metal strings mutually twisted in a bundling manner.
7. The heat dissipation module according to claim 1, wherein the flexible heat conducting bundle comprises a metal woven net reeled in a bundling manner.
8. The heat dissipation module according to claim 1, wherein the heat absorbing unit and the heat dissipating unit are any one of a metal plate, a vapor chamber or a thinned heat pipe.
9. The heat dissipation module according to claim 1, wherein the heat absorbing unit and the heat dissipating unit respectively comprise at least one fastening hole, and two ends of the flexible heat conducting bundle are fastened in each of the fastening holes of the heat absorbing unit and the heat dissipating unit.
10. The heat dissipation module according to claim 9, wherein the two ends of the flexible heat conducting bundle are welded in each of the fastening holes.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0008] The features of the disclosure believed to be novel are set forth with particularity in the appended claims. The disclosure itself, however, may be best understood by reference to the following detailed description of the disclosure, which describes a number of exemplary embodiments of the disclosure, taken in conjunction with the accompanying drawings, in which:
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DETAILED DESCRIPTION
[0015] 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.
[0016] Please refer from
[0017] In some embodiments, the heat absorbing unit 10 is a metal plate (for example a copper plate or an aluminum plate) having a good heat conducting performance, but here is not intended to be limiting, any plate member having a good heat conducting performance may be adopted and the plate member may be formed in any geometric shape. The heat absorbing unit 10 has a first installing surface 11 and a contact surface 12 opposite to each other, the contact surface 12 is attached to a surface of the heat source A to make the heat generated by the heat source A be transferred to the heat absorbing unit 10.
[0018] The heat dissipating unit 20 is disposed corresponding to the heat absorbing unit 10, and has a second installing surface 21 facing the first installing surface 11. In some embodiments, the heat dissipating unit 20 is a metal plate (for example a copper plate or an aluminum plate) having a good heat conducting performance, but here is not intended to be limiting, any plate member having a good heat conducting performance may be adopted and the plate member may be formed in any geometric shape.
[0019] In some embodiments, there are a plurality of (equal to or more than two) of flexible heat conducting bundles 30, but here is not intended to be limiting, the amount of the flexible heat conducting bundles 30 may be adjusted according to actual needs of a designer, intervals between the flexible heat conducting bundles 30 and the amount of the flexible heat conducting bundles 30 shown in each figure are provided as examples and not intended to be limiting. Each of the flexible heat conducting bundles 30 is connected between the first installing surface 11 and the second installing surface 21, and used for transferring heat absorbed by the heat absorbing unit 10 to the heat dissipating unit 20 to be dissipated. Each of the flexible heat conducting bundles 30 may be formed through a plurality of metal strings being mutually twisted in a bundling manner, or through a metal woven net being reeled in a bundling manner, thus the flexible heat conducting bundle 30 provides certain flexibility and is capable of being bent and deformed. In some embodiments, the metal string or the metal woven net is made of any one of silver, copper, aluminum, iron, or steel, or an alloy thereof, thereby being provided with a good heat conducting effect, but here is not intended to be limiting.
[0020] Details are provided as follows. The heat absorbing unit 10 and the heat dissipating unit 20 respectively have a plurality of fastening holes 13, 22, and two ends of each of the flexible heat conducting bundles 30 are fastened in each of the fastening holes 13, 22. The fastening holes 13, 22 may be a blind hole or a through hole, but here is not intended to be limiting. In some embodiments, the two ends of each of the flexible heat conducting bundles 30 are disposed and welded in each of the fastening holes 13, 22, but here is not intended to be limiting. For example, each of the flexible heat conducting bundles 30 may be fastened with the heat absorbing unit 10 and the heat dissipating unit 20 by a riveting, an adhering or a soldering method, as long as a fastening effect may be effectively achieved. Each of the flexible heat conducting bundles 30 is pre-formed with at least one bending segment 31 before being fastened. As such, when the heat dissipating module of the present disclosure is subjected to a stretching or a shaking situation, the bending segment 31 of each of the flexible heat conducting bundles 30 is stretched for buffering to prevent an impact force from being directly applied to generate damages or cracks. Please refer to
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[0024] 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.