1. Field of the Invention
This invention relates to a heat-dissipating device, more particularly to a heat-dissipating device that has a high heat-dissipating efficiency.
2. Description of the Related Art
During assembly, as illustrated in
During a cooling operation, heat generated by the heat source is conducted through the planar plate 111 to the heat-dissipating fins 112, and, at the same time, the fan unit 113 generates airflow to cool the heat-dissipating fins 112, thereby removing the heat conducted by the heat-dissipating fins 112.
Although the aforementioned conventional heat-dissipating device 11 achieves its intended purpose, the conventional heat-dissipating device 11 has a low heat-dissipating efficiency.
Therefore, the object of the present invention is to provide a heat-dissipating device that has a high heat-dissipating efficiency.
According to the present invention, a heat-dissipating device comprises a planar plate, a cap-like cover, a finned structure, and a discharge pipe. The cap-like cover includes a base wall and a surrounding wall. The base wall of the cap-like cover is spaced apart from the planar plate. The surrounding wall of the cap-like cover interconnects the planar plate and the base wall, cooperates with the planar plate and the base wall to define an inner space thereamong, and defines an inlet. The inner space is divided into first and second compartments. The finned structure includes a plurality of partitioning plates and a plurality of heat-dissipating fins. The partitioning plates of the finned structure are disposed in the first compartment so as to divide the first compartment into a plurality of partitioned sections that are connected to form a continuous meandering fluid path for permitting fluid communication between the first and second compartments. The meandering fluid path has first and second ends that are respectively connected to the inlet and the second compartment. The heat-dissipating fins of the finned structure are disposed in each of the partitioned sections. The discharge pipe is connected to the surrounding wall of the cap-like cover, is in fluid communication with the second compartment, and has an open end disposed adjacent to the base wall of the cap-like cover.
Other features and advantages of the present invention will become apparent in the following detailed description of the preferred embodiments with reference to the accompanying drawings, of which:
Before the present invention is described in greater detail, it should be noted that like elements are denoted by the same reference numerals throughout the disclosure.
Referring to
The planar plate 31 has top and bottom surfaces 311, 312. In this embodiment, the planar plate 31 is made from a material having a high thermal conductivity.
The cap-like cover 32 includes a base wall 321 and a surrounding wall 322. The base wall 321 of the cap-like cover 32 is spaced apart from the planar plate 31, and has a left wall portion 3211, a right wall portion 3212, and an intermediate wall portion 3213 that interconnects the left and right wall portions 3211, 3212 thereof. In this embodiment, the left wall portion 3211 of the base wall 321 of the cap-like cover 32 is convex and defines a recess 3210, and the intermediate and right wall portions 3213, 3212 of the base wall 321 of the cap-like cover 32 are flat. The surrounding wall 322 of the cap-like cover 32 interconnects the bottom surface 312 of the planar plate 31 and the base wall 321 and cooperates with the bottom surface 312 of the planar plate 31 and the base wall 321 to define an inner space 30 thereamong. In this embodiment, the surrounding wall 322 of the cap-like cover 32 has left and right wall portions 3221, 3222, and front and rear wall portions 3223, 3224 that interconnect the left and right wall portions 3221, 3222 thereof. The front wall portion 3223 of the surrounding wall 322 of the cap-like cover 32 defines an inlet 40.
The heat-dissipating device further includes a partitioning member 34 that is disposed in the inner space 30, that extends parallel to the planar plate 31, and that is disposed between and spaced apart from the planar plate 31 and the base wall 321 of the cap-like cover 32. In this embodiment, the partitioning member 34 has a right end connected to the right wall portion 3222 of the surrounding wall 322 of the cap-like cover 32, front and rear ends respectively connected to the front and rear wall portions 3223, 3224 of the surrounding wall 322 of the cap-like cover 32, and a left end spaced apart from the left wall portion 3221 of the surrounding wall 322 of the cap-like cover 32.
The finned structure 33 includes a plurality of partitioning plates 331 and a plurality of heat-dissipating fins 332.
The partitioning plates 331 are formed on the bottom surface 312 of the planar plate 31, are disposed in the inner space 30, and abut against the partitioning member 34.
The partitioning member 34 cooperates with one of the partitioning plates 331 of the finned structure 33, which is disposed farthest from the right wall portion 3222 of the surrounding wall 322 of the cap-like cover 32, to divide the inner space 30 into first and second compartments 301, 302.
With further reference to
The heat-dissipating fins 332 are formed on the bottom surface 312 of the planar plate 31 and are disposed in each of the partitioned sections 3010 of the first compartment 301.
The discharge pipe 50 is disposed externally of the inner space 30 and has an open end 501. In this embodiment, the open end 501 of the discharge pipe 50 is connected to an exterior of the front wall portion 3223 of the surrounding wall 322 of the cap-like cover 32, is in fluid communication with the second compartment 302, is disposed adjacent to a junction of the left wall portion 3211 of the base wall 321 of the cap-like cover 32 and the left and front wall portions 3221, 3223 of the surrounding wall 322 of the cap-like cover 32, and is further disposed at least partially adjacent to the recess 3210 defined by the left wall portion 3211 of the base wall 321 of the cap-like cover 32.
During assembly, as best shown in
During a cooling operation, heat generated by the heat source is conducted through the planar plate 31 to the finned structure 33. At the same time, the pump supplies a coolant (not shown) into the first compartment 301 through the inlet 40, and draws the coolant out of the second compartment 302 through the discharge pipe 50. During this operation, the coolant passes through the meandering fluid path and cools the finned structure 33, thereby permitting efficient dissipation of the heat conducted by the finned structure 33.
It is noted that, during the above-mentioned cooling operation, the amount of coolant is gradually reduced due to evaporation. However, since the open end 501 of the discharge pipe 50 is disposed adjacent to the base wall 321 of the cap-like cover 32 (i.e., at a position closes to the base wall 321 of the cap-like cover 32, it is ensured that the cooling operation of the heat-dissipating device of this embodiment may continue for a relatively long period of time.
In another embodiment, the heat-dissipating device is provided with a refill mechanism (not shown) for filling the inner space 30 with the coolant at anytime as needed.
In yet another embodiment, the left wall portion 3211 of the base wall 321 of cap-like cover 32 is flat, one of the intermediate and right wall portions 3213, 3212 of the base wall 321 of cap-like cover 32 is convex, and the other of the intermediate and right wall portions 3213, 3212 is flat.
Since the assembly and the cooling operation of the heat-dissipating device of this embodiment are similar to those described hereinabove in connection with the first preferred embodiment, a detailed description of the same will be dispensed with herein for the sake of brevity.
The partitioning member 34 is formed with a hole 304 therethrough.
The left wall portion 3211 of the base wall 321 of the cap-like cover 32, like the intermediate and right wall portions 3213, 3212 of the base wall 321 of the cap-like cover 32, is flat.
The open end 501 of the discharge pipe 50 is disposed adjacent to a junction of the right wall portion 3212 of the base wall 321 of the cap-like cover 32, and the right and front wall portions 3222, 3223 of the surrounding wall 322 of the cap-like cover 32.
The second end of the meandering fluid path is connected to and is in fluid communication with the second compartment 302 through the hole 304 in the partitioning member 34.
Since the assembly and the cooling operation of the heat-dissipating device of this embodiment are similar to those described hereinabove in connection with the first preferred embodiment, a detailed description of the same will be dispensed with herein for the sake of brevity.
While the present invention has been described in connection with what are considered the most practical and preferred embodiments, it is understood that this invention is not limited to the disclosed embodiments but is intended to cover various arrangements included within the spirit and scope of the broadest interpretation so as to encompass all such modifications and equivalent arrangements.
Number | Date | Country | Kind |
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096209304 | Jun 2007 | TW | national |