PRESSING METHOD OF HEAT CONDUCTIVE BASE AND FINISHED PRODUCT THEREOF
20190339019 ยท 2019-11-07
Inventors
Cpc classification
F28F2255/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28D15/0275
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28F2275/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28D15/0233
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A pressing method and a finished product thereof are provided. The pressing method includes the steps of: providing a heat conductive base (1), and defining a pressed zone (10) on the heat conductive base (1); forming a plurality of penetrated holes (100) arranged with intervals in the pressed zone (10), and forming a pressed part (101) between any two of the adjacent penetrated holes (100); and processing a pressing and extruding operation to the pressed part (101) for allowing the pressed part (101) to be pressed and extruded so as to be extended and deformed towards the adjacent penetrated hole (100) for filling the penetrated hole (100).
Claims
1. A pressing method of heat conductive base, including the steps of: a) providing a heat conductive base, and defining a pressed zone on the heat conductive base; b) forming a plurality of penetrated holes arranged with intervals in the pressed zone (10), and forming a pressed part between every two of the adjacent penetrated holes; and c) processing a pressing and extruding operation to the pressed part for allowing the pressed part to be pressed and extruded so as to be extended and deformed towards the adjacent penetrated hole for filling the penetrated hole.
2. The pressing method of heat conductive base according to claim 1, wherein the heat conductive base is made of a metal material such as aluminum or copper.
3. The pressing method of heat conductive base according to claim 1, wherein in the step b), the penetrated holes are extended and arranged with intervals along a length direction of the pressed zone.
4. The pressing method of heat conductive base according to claim 1, wherein in the step b), the penetrated hole is formed as the pressed part after being processed with a material punching operation for removing residual material.
5. The pressing method of heat conductive base according to claim 1, wherein in the step c), the pressed zone is processed with the pressing and extruding operation by utilizing a pressing and extruding mold.
6. The pressing method of heat conductive base according to claim 1, wherein in the step c), the outmost pressed part is processed with operations of removing residual material and flattening.
7. A heat conductive base, comprising a thin plate part and two wing parts at two sides of the thin plate part, wherein thicknesses of the two wing parts are both thicker than a thickness of the thin plate part, and a plurality of engaged slits are formed in the thin plate part.
8. The heat conductive base according to claim 7, wherein a concave groove is formed by the thin plate part and the two wing parts.
9. The heat conductive base according to claim 7, wherein the thin plate part is formed through the pressed parts connected between the two wing parts and processed with a pressing and extruding operation for being deformed.
10. A heat dissipater having the heat conductive base claimed in claim 7, further including a heat pipe, wherein the heat pipe and the thin plate part are in a thermal contacting status.
Description
BRIEF DESCRIPTION OF DRAWING
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DETAILED DESCRIPTION OF THE INVENTION
[0022] A preferred embodiment of the present invention will be described with reference to the drawings.
[0023] Please refer from
[0024] As shown in a S2 of
[0025] Lastly, as shown in a S3 and
[0026] Please refer to
[0027] As such, with the above-mentioned components, the pressing method of heat conductive base and the finished product thereof are provided.
[0028] Accordingly, with the pressing method of heat conductive base and the finished product thereof provided by the present invention, the deforming direction and the deforming degree of a plate piece while being pressed can be more easily controlled through the plural penetrated holes 100 arranged with intervals, meanwhile a force applied to the plate piece can be more even and a greater hardness can be provided under a situation of being thinned.
[0029] Although the present invention has been described with reference to the foregoing preferred embodiment, it will be understood that the invention is not limited to the details thereof. Various equivalent variations and modifications can still occur to those skilled in this art in view of the teachings of the present invention. Thus, all such variations and equivalent modifications are also embraced within the scope of the invention as defined in the appended claims.