HEAT SINK DEVICE USING GRAPHITE SHEETS AS FINS
20240027147 ยท 2024-01-25
Inventors
Cpc classification
F28F21/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28F2215/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
Proposed is a heat sink device that uses graphite sheets as fins. The heat sink device includes graphite sheet fins having a predetermined height and width in a height direction and in a width direction, the graphite sheet fins being arranged parallel to each other while being spaced a predetermined distance apart from each other in a depth direction, insert plates formed of metal material, the insert plates being disposed at one end of the graphite sheet fins in the height direction and being arranged alternately with the graphite sheet fins, and a fixing means configured to press and fix the graphite sheet fins and the insert plates while the graphite sheet fins and the insert plates are in an alternately arranged state.
Claims
1. A heat sink device using graphite sheets as fins, the heat sink device comprising: graphite sheet fins having a predetermined height and width in a height direction and in a width direction, the graphite sheet fins being arranged parallel to each other while being spaced a predetermined distance apart from each other in a depth direction; insert plates formed of metal material, the insert plates being disposed at one end of the graphite sheet fins in the height direction such that the insert plates are elongated in the width direction of the graphite sheet fins, and the insert plates being arranged alternately with the graphite sheet fins such that elongated distal end surfaces thereof in the height direction forms a heat absorption surface together with distal end surfaces of the graphite sheet fins in the height direction; and a fixing means configured to press and fix the graphite sheet fins and the insert plates while the graphite sheet fins and the insert plates are in an alternately arranged state.
2. The heat sink device of claim 1, further comprising additional insert plates formed of metal material, the insert plates being disposed at other end of the graphite sheet fins in the height direction and being arranged alternately with the graphite sheet fins.
3. The heat sink device of claim 1, wherein the fixing means comprises a bolt which is formed of metal material and which passes through through-holes formed at corresponding positions of the graphite sheet fins and the insert plates in the depth direction, comprises a nut fixed to the bolt, and a thermal expansion coefficient of the bolt is smaller than a thermal expansion coefficient of the insert plates.
4. The heat sink device of claim 1, wherein the fixing means comprises a fixing plate which is formed of metal material and which is coupled to distal ends of one ends of the graphite sheet fins and the insert plates in the height direction, and a thermal expansion coefficient of the fixing plate is smaller than a thermal expansion coefficient of the insert plates.
Description
DESCRIPTION OF DRAWINGS
[0015]
[0016]
[0017]
[0018]
MODE FOR INVENTION
[0019] Hereinafter, a heat sink device using graphite sheets as fins according to an embodiment of the present disclosure will be described in detail with reference to attached drawings.
[0020]
[0021] As illustrated in
[0022] Each of the graphite sheet fins 11 has predetermined lengths in a horizontal direction z and in a width direction x, and is arranged parallel to each other while being spaced a predetermined distance apart from each other in a depth direction y.
[0023] The insert plates 12 are positioned at one end of the graphite sheet fins 11 in the height direction z and are arranged alternately with the graphite sheet fins 11, and are formed of metal material. A surface formed at a distal end of one end of the graphite sheet fins 11 in the height direction z is a heat absorption surface 10a that is in close contact with a heat source such as an electric/electronic device and so on. It is preferable that the heat absorption surface 10a is polished smoothly so that the heat absorption surface 10a is in contact with the heat source in a wide area as much as possible.
[0024] In the embodiment illustrated in
[0025] However, it is possible that the insert plates 12 are positioned only at one end of the graphite sheet fins 11 in the height direction z (for example, a lower side in the height direction z), and only the graphite sheet fins 11 exist at other end of the graphite sheet fins 11 (for example, an upper side in the height direction z). In this case, the fixing means 13 and 14 may be mounted only at one end of the graphite sheet fins 11 in the height direction z (for example, the lower side in the height direction z), and may not be mounted at other end of the graphite sheet fins 11 in the height direction z (for example, the upper side in the height direction z).
[0026] A surface formed at a distal end of other end of the graphite sheet fins 11 in the height direction z is indicated as 10b so as to distinguish the surface from the heat absorption surface 10a.
[0027] The fixing means 13 and 14 presses and fixes the graphite sheet fins 11 and the insert plates 12 so that a state in which the graphite sheet fins 11 and the insert plates 12 are alternately arranged is maintained.
[0028] In the embodiment illustrated in
[0029] In the embodiment illustrated, the bolt 13 and the nut 14 are only an example of a fixing means configured to press and fix the graphite sheet fins 11 and the insert plates 12 in the depth direction y by passing the bolt 13 through the through-holes 11h and 12h. For example, caulking of an end of a bolt, using a rivet instead of a bolt, or the like may be applied instead of using the bolt 13 and the nut 14, and should be considered equivalent to the bolt 13 and the nut 14.
[0030] The inventors of the present disclosure have found out the following technical details. That is, as the adhesion between the graphite sheet fins 11 and the insert plates 12 improves, the contact thermal resistance between the graphite sheet fins 11 and the insert plates 12 decreases, so that the heat dissipation performance expected from the high thermal conductivity of the graphite sheet fins 11 may be realized from the heat sink device 10.
[0031] Accordingly, the bolt 13 and the nut 14 are used so as to press and fix the graphite sheet fins 11 and the insert plates 12 such that the graphite sheet fins 11 and the insert plates 12 are pressed. Furthermore, the bolt 13 having a thermal expansion coefficient smaller than a thermal expansion coefficient of the insert plates 12 are selected so that a pressing force by the bolt 13 and the nut 14 increases as the heat sink device receives heat and a temperature of the heat sink device becomes a high temperature. The heat sink device 10 expands in the depth direction y as a temperature of the heat sink device 10 becomes a high temperature, and the thermal expansion coefficient of the bolt 13 is smaller than the thermal expansion coefficient of the insert plates 12. Therefore, the insert plates 12 intend to expand more, but are constrained by a head of the bolt 13 and the nut 14, and do not actually expand. As a result, the pressing force acting on interfaces between the graphite sheet fins 11 and the insert plates 12 is increased. Therefore, as a temperature increases, the pressing force rapidly increases, and the contact thermal resistance between the graphite sheet fins 11 and the insert plates 12 converges to zero, so that a thermal bottleneck phenomenon occurring at the interfaces may be removed.
[0032] The reference numerals 15a and 15b represent protective plates for protecting the opposite ends of the heat sink device 10 in the depth direction y and for increasing durability of the heat sink device 10. The protective plates 15a and 15b do not have to be provided.
[0033] The heat sink device using graphite sheets as fins, i.e., the heat sink device 10 using graphite sheet fins, is highly productive and has a small thermal resistance between the graphite sheet fins 11 and the insert plates 12, so that the heat dissipation performance is excellent. Furthermore, a heat sink device product having a desired distance and a desired size may be easily manufactured since a distance between the graphite sheet fins 11 is capable of being easily adjusted according to a thickness selection of the insert plates 12. In addition, a very small distance between the graphite sheet fins 11 comparing to a conventional technology may be realized by selecting thin insert plates 12, so that a product having an excellent heat dissipation performance while the product has a small size may be manufactured.
[0034]
[0035] In embodiments respectively illustrated in
[0036] In
[0037] In
[0038] In the embodiment of
[0039] In the embodiment of
[0040] In the embodiments illustrated in
[0041] However, it is possible that the insert plates 12 are positioned only at one end of the graphite sheet fins 11 in the height direction z (for example, a lower side in the height direction z), and only the graphite sheet fins 11 exist at other end of the graphite sheet fins 11 (for example, an upper side in the height direction z). In this case, the respective fixing plates 16 and 17 may be mounted only at one end of the graphite sheet fins 11 in the height direction z (for example, the lower side in the height direction z), and may not be mounted at other end of the graphite sheet fins 11 in the height direction z (for example, the upper side in the height direction z).
[0042] In the embodiments illustrated in
[0043] Various expressions (terms, visualized images, and so on) used in the description of the embodiments of the present disclosure are merely selected for the purpose of improving the understanding of the technology.
[0044] In addition, the present disclosure has been described by way of a limited number of embodiments for the sake of convenience, and those of ordinary skill in the art would be able to devise new embodiments without departing from the technical spirit of the present disclosure on the basis of the described content.
[0045] Accordingly, the claims of the present disclosure should not be limited by some of the expressions shown in the description of the invention and drawings, but should be interpreted broadly on the basis of the fundamental technical idea contained throughout the specification.