1. Field of the Invention
The present invention relates to a cooling module, particularly to a cooling module with reduced disturbed flow and low noise during operation.
2. Description of the Related Art
Referring to
In application of cooling electrical devices, a heat-generating unit, such as a central processing unit, a chip set, or a light-emitting diode, is attached to a bottom surface of the base plate 811 of the conventional cooling module 8. Heat generated by the heat-generating unit is absorbed by the bottom surface of the heat sink 81 and transmitted to the upper surface of the base plate 811 and the fins 812 in order to proceed a heat exchange process between the heat sink 81 and air around. Besides, the axial fan 82 axially drives an air flow towards the base plate 811 to refresh the air inside or around the heat sink 81 so as to facilitate said heat exchange process. Additionally, the heat air undergoing said heat exchange process is finally exhausted out of the cooling module 8 through an outer opening of the air-guiding channels 813.
In order to improve the cooling efficiency, the axial fan 82 preferably drives the air flow in a direction straight towards the base plate 811 of the heat sink 81. However, because the base plate 811 completely covers an outlet area of the axial fan 82 and the heat air can only be exhausted through the outer opening of the guiding air-channels 813, the disturbed flows are easily caused in a position adjacent to a section of each blade 822 where the blade 822 connects with the hub 821, as shown in
Please further refer to
In application, a bottom surface of the heat sink 91 connects a heat-generating unit to directly absorb heat generated thereby, and the axial fan 92 continuously drives air toward the heat sink 91 to achieve a cooling purpose and to further ensure the proper operation temperature of the heat-generating unit.
However, the conventional cooling module 9 still has the drawbacks of the previously mentioned cooling module 8. In detail, when air is driven by the axial fan 92 into the air-guiding channels 912 of the heat sink 91, the air is easily separated into two parts with opposite flow directions, and this may result in disturbed flows at a position adjacent to the hub 9221 as shown in
It is the primary objective of this invention to provide a cooling module that reduces a disturbed flow generated between a fan unit and a heat sink.
It is the secondary objective of this invention to provide a cooling module with a reduced wind noise during operation.
It is another objective of this invention to provide a cooling module that facilitates the air flow and improves the cooling efficiency.
The cooling module in accordance with an aspect of the present invention comprises a heat sink and a fan unit. The heat sink has a base plate and a plurality of fins, wherein the base plate has a first surface, a second surface and an outlet extending from the first surface to the second surface, and the fins are arranged on the first surface of the base plate. The fan unit is mounted on the fins, aligned with the outlet, and has a fan wheel with a hub and a plurality of blades. A bottom edge of each of the fins connecting with the first surface extends along the first surface with a curve-pattern while an air-guiding channel is formed between any adjacent two of the fins, extends in a curved manner, and communicates with the outlet of the base plate.
The cooling module in accordance with another aspect of the present invention comprises a heat sink and a fan unit. The heat sink has a base plate and a plurality of fins, wherein an outlet and an auxiliary outlet section extend through the base plate, the outlet separates the base plate into a core portion on a center of the base plate and an outer portion and is sandwiched between the core and outer portions, the auxiliary outlet section is formed on an outer periphery of the outer portion, and the fins are arranged on a surface of the base plate and connect with the core and outer portions. The fan unit is mounted on the fins, aligned with the core portion of the base plate, and has a fan wheel with a hub and a plurality of blades. An air-guiding channel is formed between any adjacent two of the fins and communicates with the outlet and the auxiliary outlet section by two ends thereof.
Further scope of the applicability of the present invention will become apparent from the detailed description given hereinafter. However, it should be understood that the detailed description and specific examples, while indicating preferable embodiments of the invention, are given by way of illustration only, since various will become apparent to those skilled in the art from this detailed description.
The present invention will become more fully understood from the detailed description given hereinbelow and the accompanying drawings which are given by way of illustration only, and thus are not limitative of the present invention, and wherein:
In the various figures of the drawings, the same numerals designate the same or similar parts. Furthermore, when the term “first,” “second,” “third,” “top,” “bottom,” “inner,” “outer,” and similar terms are used hereinafter, it should be understood that these terms are reference only to the structure shown in the drawings as it would appear to a person viewing the drawings and are utilized only to facilitate describing the invention.
Referring to
The heat sink 1 has a base plate 11, a plurality of fins 12, and a plurality of air-guiding channels 13. The base plate 11 has a first surface 111 and a second surface 112 oppositely arranged at two sides of the base plate 11. Besides, the base plate 11 is preferably in the form of a round plate, but a plate in other shape such as rectangle, triangle, or any other polygon is also applicable. An outlet 113 is formed on a center of the base plate 11 and extends from the first surface 111 to the second surface 112. The fins 12, which radially extend relative to the center of the base plate 11 from the outlet 113 to an outer periphery of the base plate 11, are arranged on the first surface 111 of the base plate 11. Each of the fins 12 has a narrow section 121 and a wide section 122 aligned with the narrow section 121. The narrow section 121 and the wide section 122 are arranged from an edge of the outlet 113 to said outer periphery of the base plate 11 in order. Specifically, an end of the narrow section 121, which is away from the wide section 122, is adjacent to the outlet 113, and an end of the wide section 122, which is away from the narrow section 121, is adjacent to the outer periphery of the base plate 11. Specifically, a height between a top edge of the narrow section 121 and the first surface 111 is smaller than that between a top edge of the wide section 122 and the first surface 111, wherein the top edges thereof are edges of any one of the fins 12 opposite to a bottom edge of the fin 12 connecting with the first surface 111, and a lateral edge of the wide section 122 is formed between and links the top edges of the narrow and wide sections 121, 122 of each fin 12. With the above structure, a recess 14 is defined by the top edges of the narrow sections 121 and lateral edges of the wide sections 122 and communicates with the outlet 113 of the base plate 11.
Now referring to
The fan unit 2 is received in the recess 14 of the heat sink 1 and supported by and positioned on the top edges of the narrow sections 121, so that the fan unit 2 is aligned with the outlet 113. The fan unit 2 is preferably an axial fan and includes a base 21 and a fan wheel 22 that is rotatably mounted on the base 21. The fan wheel 22 has a hub 221 and a plurality of blades 222 arranged along a lateral wall of the hub 221 while the air-guiding channels 13 between the narrow sections 121 are disposed between the base plate 11 and the blades 222 in an axial direction of the fan unit 2. Each of the blades 222 includes an air input side 222a and an air output side 222b respectively at the top and the bottom thereof.
Referring to
Furthermore, the inward air flow guided by the air-guiding channels 13 and absorbing heat of the heat sink 1 finally reaches the outlet 113 and is exhausted from the cooling module through the outlet 113, and thus avoiding disturbed flow near the hub 221 of the fan wheel 22. On the other hand, the outward air flow also guided by the air-guiding channels 13 and absorbing heat of the heat sink 1 is exhausted by the outer openings 132. Accordingly, the ventilation of air flow is facilitated and heat dissipation efficiency is improved. As a result, a preferable working temperature is maintained for long-term operation of the heat generating unit 3, achieving purposes such as high operation efficiency and longer lifetime of the heat generating unit 3.
Besides, with the design of the curved fins 12 and air-guiding channels 13 according to the rotational direction of the fan wheel 22, the cool air can be smoothly guided inside the air-guiding channels 13 to undergo the heat exchange process without loud wind noise and disturbed flow.
Referring to
Accordingly, with the above-illustrated design of the base plate 11 of this second embodiment, the cool air entering the fan unit 2 can still straightly send to and contact with the base plate 11 for the heat exchange process. Moreover, areas of interfaces between the air-guiding channels 13 and the outside of the cooling module can be further increased for the inward and outward air flows to be exhausted fast.
Now turning to
With the core portion 115 of this third embodiment, a circular edge of the core portion 115 defining a side of the outlet 113 perfectly aligns with the lateral wall of the hub 221 when the fan wheel 22 is received in the recess 14. In addition, the outer portion 116 in this embodiment serves like the whole base plate 11 in the second embodiment to block the straight way of the air flow outputted by the fan unit 2 and to increase areas of interfaces between the air-guiding channels 13 and the outside of the cooling module for the inward and outward air flows to be exhausted fast. Moreover, in reference to the
Although the invention has been described in detail with reference to its presently preferred embodiment, it will be understood by one of ordinary skill in the art that various modifications can be made without departing from the spirit and the scope of the invention, as set forth in the appended claims.
Number | Date | Country | Kind |
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98138641 | Nov 2009 | TW | national |