Heat sink with slotted pin fins
11252841 ยท 2022-02-15
Assignee
Inventors
Cpc classification
H05K7/2039
ELECTRICITY
F28F13/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28F3/022
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28F13/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
H05K7/20
ELECTRICITY
Abstract
The heat sink with slotted pin fins includes a thermally conductive base and a plurality of pin fins, which may be substantially cylindrical. Each pin fin has axially opposed upper and lower ends, the lower ends being attached to the base. Each of the pin fins is formed of a thermally conductive material and extends from the base. Each of the pin fins has a slot formed therein extending both diametrically and axially through the pin fin, such that a surrounding fluid medium can flow through the slot formed through pin fin, thus reducing the drag force on the surrounding fluid medium as it impinges upon and flows through the pin fins, increasing the rate of thermal transfer.
Claims
1. A heat sink with slotted pin fins, comprising: a thermally conductive base; and a plurality of solid heat conducting pin fins extending from the base parallel to each other, each of the heat conducting pin fins having a peripheral outer surface and axially opposed upper and lower ends, each of the heat conducting pin fins being attached to the thermally conductive base at their lower ends, each of the pin fins being formed of a thermally conductive material and having at least one slot defined therein, the at least one slot extending axially through the peripheral outer surface of the heat conducting pin fin from the upper end to the lower end and defining a continuous passage for flow of surrounding cooling medium through the heat conducting pin fin, wherein the at least one slot is oriented to admit the surrounding cooling medium moving in a first direction substantially parallel to the thermally conductive base, further wherein the at least one slot comprises two slots extending parallel to each other across the pin fin.
2. The heat sink as recited in claim 1, wherein each said pin fin extends substantially perpendicular to the base.
3. The heat sink as recited in claim 1, wherein each said pin fin is cylindrical.
4. A heat sink with slotted pin fins, comprising: a thermally conductive base; and a plurality of solid heat conducting pin fins extending from the base parallel to each other, each of the heat conducting pin fins having a peripheral outer surface and axially opposed upper and lower ends, each of the heat conducting pin fins being attached to the thermally conductive base at their lower ends, each of the pin fins being formed of a thermally conductive material and having at least one slot defined therein, the at least one slot extending axially through the peripheral outer surface of the heat conducting pin fin from the upper end to the lower end and defining a continuous passage for flow of surrounding cooling medium through the heat conducting pin fin, wherein the at least one slot is oriented to admit the surrounding cooling medium moving in a first direction substantially parallel to the thermally conductive base, further wherein the at least one slot comprises two slots extending orthogonal to each other across the pin fin, defining a cruciform slot and orthogonal passages for flow of surrounding medium through the pin fin.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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(7) Similar reference characters denote corresponding features consistently throughout the attached drawings.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(8) Referring to
(9) Each of the pin fins 14 has a slot 16 defined therein, the slot 16 extending both diametrically and axially through the body of the pin fin 14. In use, the surrounding fluid medium can flow through the slot 16, thus reducing the drag force of the surrounding fluid medium as it impinges upon, and flows through, the plurality of pin fins 14, increasing the rate of thermal transfer. The slot 16 increases the surface area across which the heat transfer takes place.
(10) In the alternative embodiment of
(11) Further, although shown as being cylindrical in
(12) In the embodiment of
(13) Further, although shown as being cylindrical in
(14) It should be understood that the above embodiments of the heat sink with slotted pin fins may be used with any suitable type of flow of the surrounding fluid medium, such as forced convective flow/heat transfer, impingement flow, natural convection, and the like.
(15) It is to be understood that the heat sink with slotted pin fins is not limited to the specific embodiments described above, but encompasses any and all embodiments within the scope of the generic language of the following claims enabled by the embodiments described herein, or otherwise shown in the drawings or described above in terms sufficient to enable one of ordinary skill in the art to make and use the claimed subject matter.