HEAT DISSIPATION MEMBER
20230164955 · 2023-05-25
Inventors
Cpc classification
F28F2250/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28F2240/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28F3/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H05K7/20418
ELECTRICITY
International classification
Abstract
The disclosure discloses a heat dissipation member, including a base plate, a plurality of first sheet structures, and a plurality of second sheet structures. Each first sheet structure is vertically arranged on a side of the base plate, and an end of the each first sheet structure is arranged adjacent to a side edge of the base plate. A spacing between two adjacent first sheet structures gradually increases from a first side edge of the base plate to a second side edge of the base plate. The first side edge is not adjacent to the second side edge. Each second sheet structure is arranged between two adjacent first sheet structures.
Claims
1. A heat dissipation member, comprising: a base plate, comprising a first side edge and a second side edge that are not adjacent; a plurality of first sheet structures, wherein each first sheet structure is vertically arranged on the base plate, one end of the each first sheet structure is arranged adjacent to the first side edge, a spacing between two adjacent first sheet structures gradually increases from the first side edge to the second side edge, an other end of a part of the first sheet structures is arranged adjacent to a third side edge of the base plate, and the third side edge is adjacent to the first side edge; and a plurality of second sheet structures, wherein each second sheet structure is arranged between two adjacent first sheet structures.
2. The heat dissipation member according to claim 1, wherein a minimum spacing between the two adjacent first sheet structures is defined as a preset spacing, and a spacing between one end of the each second sheet structure and an adjacent first sheet structure is not greater than twice the preset spacing.
3. The heat dissipation member according to claim 2, wherein a minimum spacing between any two adjacent first sheet structures is the same.
4. The heat dissipation member according to claim 1, wherein the first sheet structure is a side surface vertically arranged on the base plate, and an included angle between an orthographic projection of the first sheet structure away from a central position of the first side edge on the side surface and an orthographic projection of the first sheet structure at the central position of the first side edge on the side surface of the base plate is between 5 degrees and 45 degrees.
5. The heat dissipation member according to claim 4, wherein the base plate is a rectangular flat plate, the base plate comprises a first side edge, a second side edge, a third side edge, and a fourth side edge, the first side edge and the second side edge are opposite to each other on the base plate, the third side edge and the fourth side edge are opposite to each other on the base plate, an included angle between an orthographic projection of the first sheet structure closest to the third side edge on the side surface and an orthographic projection of the first sheet structure at the central position of the first side edge on the side surface is 45 degrees, and an included angle between an orthographic projection of the first sheet structure closest to the fourth side edge on the side surface and an orthographic projection of the first sheet structure at the central position of the first side edge on the side surface is 45 degrees.
6. The heat dissipation member according to claim 4, wherein an included angle between an orthographic projection of the each second sheet structure on a plane of the base plate and an orthographic projection of an adjacent first sheet structure on the plane of the base plate is between 5 degrees and 10 degrees.
7. The heat dissipation member according to claim 6, wherein two included angles between the orthographic projection of the second sheet structure on the plane of the base plate and an orthographic projection of each of two first sheet structures on two adjacent sides on the plane of the base plate are equal.
8. The heat dissipation member according to claim 1, wherein a spacing between the each second sheet structure and any adjacent first sheet structure gradually increases from the first side edge to the second side edge.
9. The heat dissipation member according to claim 1, wherein an avoidance notch is formed on the first side edge of the base plate, the first side edge of the base plate is partitioned into a plurality of transverse sections and a plurality of longitudinal sections, and an end of at least part of the first sheet structures is arranged adjacent to one of the transverse sections.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
[0014] In the following description, if “refer to a specific drawing” or “as shown in a specific drawing” is indicated, it is only used to emphasize that in a subsequent description, most of the related content mentioned is shown in the specific drawing, but does not limit that reference can only be made to the specific drawing in the subsequent description.
[0015] Referring to
[0016] Each first sheet structure 12 is vertically arranged on a side surface 111 of the base plate 11. One end of the each first sheet structure 12 is arranged adjacent to the first side edge 111A. An other end of a part of the first sheet structures 12 is arranged adjacent to the second side edge 111B. An other end of a part of the first sheet structures 12 is adjacent to the third side edge 111C, and an other end of an other part of the first sheet structures 12 is arranged adjacent to the fourth side edge 111D. As shown in
[0017] Each second sheet structure 13 is arranged between two adjacent first sheet structures 12. A minimum spacing L3 between one end of the each second sheet structure 13 and an adjacent first sheet structure 12 is not greater than twice the preset spacing L1. Preferably, the minimum spacing L3 between one end of the each second sheet structure 13 and the adjacent first sheet structure 12 is approximately the same as the preset spacing L1, and a minimum spacing L2 between the two first sheet structures 12 adjacent to one end of the each second sheet structure 13 is approximately equal to twice the preset spacing L1. That is to say, one second sheet structure 13 is arranged at a position at which a spacing between the two adjacent first sheet structures 12 is greater than or equal to twice the preset spacing L1. An other end of the each second sheet structure 13 is arranged adjacent to the second side edge 111B of the base plate 11, which is not limited thereto. In different embodiments, an other end of a part of the second sheet structures 13 may alternatively be arranged adjacent to the third side edge 111C or the fourth side edge 111D. In addition, the spacing between the each second sheet structure 13 and any of the adjacent first sheet structures 12 gradually increases from the first side edge 111A to the second side edge 111B.
[0018] A number of the first sheet structures 12 and a number of the second sheet structures 13 included in the heat dissipation member 1 are not limited to those shown in the figures. The number of the second sheet structures 13 is mainly related to the size of the base plate 11 and the number of the first sheet structures 12. In practical application, the base plate 11, the each first sheet structure 12, and the each second sheet structure 13 may be integrally formed by using the die casting technology.
[0019] Based on the above, as shown in
[0020] Referring to
[0021] Carrying on with the above, for example, included angles θ3-θ7 between orthographic projections of the first sheet structures 12C1-12C5 shown in
[0022] Referring to
[0023] One ends of four first sheet structures 12 are arranged adjacent to one transverse section 111A1 of the first side edge 111A. One ends of seven first sheet structures 12 are arranged adjacent to one transverse section 111A1 of the first side edge 111A, and other four first sheet structures 12 are arranged adjacent to another transverse section 111A1 of the first side edge 111A. In the drawings of this embodiment, one end of the each first sheet structure 12 is arranged only adjacent to one transverse section 111A1, and one end of the each first sheet structure 12 is not arranged adjacent to any longitudinal section 111A2 by way of example, which is not limited thereto. In different embodiments, at least one first sheet structure 12 may alternatively be arranged adjacent to one longitudinal section 111A2.
[0024] In addition, a preset spacing L4 (L5, L6) among the plurality of first sheet structures 12 adjacent to a same transverse section 111A1 may be exactly the same, and the preset spacings L4, L5, and L6 among the plurality of first sheet structures adjacent to different transverse sections 111A1 may not be exactly the same.
[0025] Based on the above, when the heat dissipation member of the disclosure is arranged on the to-be-dissipated electronic device in the form of wall hanging, the heat energy is relatively not easily accumulated at the middle position of the heat dissipation member, and the heat dissipation member has a better overall heat dissipation effect.
[0026] The above are only preferred feasible embodiments of the present invention, and are not intended to limit the patent scope of the present invention. Any equivalent structural changes made based on the contents of the specification and the drawings of the present invention shall all fall within the protection scope of the present invention.