COMBINATION HEAT SINK AND HEAT PIPE ASSEMBLY
20170307299 · 2017-10-26
Inventors
Cpc classification
F28D15/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28D15/0275
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A combination heat sink base and heat pipe assembly includes a top base plate having multiple female engagement members symmetrically located on a bottom wall thereof at two opposite lateral sides, heat pipe grooves located on the bottom wall and multiple mounting ribs and mounting grooves alternatively located on the bottom wall; a bottom base plate having multiple heat pipe grooves located on a top wall thereof to cooperate with the heat pipe grooves of the top base plate, multiple male engagement members symmetrically located on the top wall and respectively forced into engagement with the female engagement members of the top base plate and multiple mounting grooves and mounting ribs alternatively located on the top wall and respectively forced into engagement with the respective mounting ribs and mounting grooves of the top base plate; and heat pipes mounted and secured in the heat pipe grooves.
Claims
1. A combination heat sink base and heat pipe assembly, comprising a heat sink base consisting of a top heat sink base plate and a bottom heat sink base plate and a plurality of heat pipes mounted in said heat sink base between said top heat sink base plate and said bottom heat sink base plate, wherein: said top heat sink base plate comprises a plurality of female engagement members symmetrically located on a bottom wall thereof at two opposite lateral sides, and a plurality of heat pipe grooves located on said bottom wall and extended through opposing front and rear sides thereof for accommodating said heat pipes; said bottom heat sink base plate comprises a plurality of heat pipe grooves located on a top wall thereof and extended through opposing front and rear sides thereof to cooperate with the said heat pipe grooves of said top heat sink base plate for accommodating said heat pipes respectively, and a plurality of male engagement members symmetrically located on said top wall and respectively forced into engagement with said female engagement members of said top heat sink base plate to secure said top heat sink base plate and said bottom heat sink base plate together and hold on said heat pipes in the respective said heat pipe grooves of said top heat sink base plate and the respective said heat pipe grooves of said bottom heat sink base plate.
2. The combination heat sink base and heat pipe assembly as claimed in claim 1, wherein said top heat sink base plate further comprises a plurality of mounting ribs and a plurality of mounting grooves respectively located on said bottom wall between each two adjacent said heat pipe grooves of said top heat sink base plate; said bottom heat sink base plate further comprises a plurality of mounting grooves and a plurality of mounting ribs respectively located on said top wall between each two adjacent said heat pipe grooves of said bottom heat sink base plate and respectively forced into engagement with the respective said mounting ribs and said mounting grooves of said top heat sink base plate.
3. The combination heat sink base and heat pipe assembly as claimed in claim 2, wherein the said mounting ribs and mounting grooves of said top heat sink base plate are alternatively located on said bottom wall between each two adjacent said heat pipe grooves of said top heat sink base plate; the said mounting grooves and mounting ribs of said bottom heat sink base plate are alternatively located on said top wall between each two adjacent said heat pipe grooves of said bottom heat sink base plate.
4. The combination heat sink base and heat pipe assembly as claimed in claim 2, wherein the said mounting grooves of said top heat sink base plate and the said mounting grooves of said bottom heat sink base plate are oblique grooves that incline at a predetermined angle of inclination.
5. The combination heat sink base and heat pipe assembly as claimed in claim 1, wherein the said male engagement members of said bottom heat sink base plate exhibit a double-pin design, each comprising two upright pins; the said female engagement members of said top heat sink base plate exhibit a double-groove design, each comprising two grooves for engagement with the respective said two upright pins of one respective said male engagement member.
6. The combination heat sink base and heat pipe assembly as claimed in claim 5, wherein the said grooves of said female engagement members of said top heat sink base plate are oblique grooves that incline at a predetermined angle of inclination.
7. The combination heat sink base and heat pipe assembly as claimed in claim 1, wherein the said male engagement members of said bottom heat sink base plate exhibit a single-pin design, each comprising one single upright pin; the said female engagement members of said top heat sink base plate exhibit a single-groove design, each comprising one single groove for engagement with the said upright pin of one respective said male engagement member.
8. The combination heat sink base and heat pipe assembly as claimed in claim 7, wherein the said grooves of said female engagement members of said top heat sink base plate are oblique grooves that incline at a predetermined angle of inclination.
9. The combination heat sink base and heat pipe assembly as claimed in claim 1, wherein each of said heat pipes has one end thereof terminating in a respective heat-absorbing end and mounted in one respective said heat pipe groove of said top heat sink base plate and one respective said heat pipe groove of said bottom heat sink base plate, and an opposite end thereof terminating in a respective heat-releasing end and mounted in a radiation fin module.
10. The combination heat sink base and heat pipe assembly as claimed in claim 1, wherein said heat pipe grooves of said top heat sink base plate and said bottom heat sink base plate have a semi-circular cross section so that each said heat pipe groove of said top heat sink base plate cooperates with one respective said heat pipe groove of said bottom heat sink base plates to form a circular hole.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0022] Referring to
[0023] As stated above, the top heat sink base plate 1 and the bottom heat sink base plate 2 are fastened together by means of forcing the female engagement members 11 into engagement with the respective male engagement members 21 using a stamping technique. This mounting procedure ensures secure surface-to-surface contact between the top and bottom heat sink base plates 1 and 2 and the heat pipes 3.
[0024] The top heat sink base plate 1 further comprises a plurality of mounting ribs 14 and mounting grooves 13 alternatively located on the bottom wall between each two adjacent heat pipe grooves 12 and extended through the opposing front and rear sides thereof (see
[0025] As the mounting ribs 14 and mounting grooves 13 of the top heat sink base plate 1 are alternatively located on the bottom wall between each two adjacent heat pipe grooves 12, and the mounting grooves 23 and mounting ribs 24 of the bottom heat sink base plate 2 are alternatively located on the top wall between each two adjacent heat pipe grooves 22 for engagement with the mounting ribs 14 and mounting grooves 13 of the top heat sink base plate 1 respectively, the stamping pressure applied in the stamping procedure can be evenly distributed through the top and bottom heat sink base plates 1 and 2 and the heat pipes 3, preventing deformation of the top and bottom heat sink base plates 1 and 2 and ensuring tight connection between the top and bottom heat sink base plates 1 and 2 and the heat pipes 3.
[0026] Referring to
[0027] In another embodiment of the present invention, as shown in
[0028] Referring to
[0029] Further, the heat pipe grooves 12 and 22 of the top and bottom heat sink base plates 1 and 2 have a semi-circular cross section. After the top heat sink base plate 1 and the bottom heat sink base plate 2 are connected, each heat pipe groove 12 of the top heat sink base plate 1 cooperates with one respective heat pipe groove 22 of the bottom heat sink base plates 2 to form a circular hole of a diameter slightly smaller than (or equal to) the outer diameter of the heat pipes 3. Thus, the heat pipes 3 can be tightly fitted into the circular holes that are formed of the heat pipe grooves 12 and 22 of the top and bottom heat sink base plates 1 and 2.
[0030] Referring to
[0031] Although a particular embodiment of the invention has been described in detail for purposes of illustration, various modifications and enhancements may be made without departing from the spirit and scope of the invention. Accordingly, the invention is not to be limited except as by the appended claims.