1. Technical Field
The present invention relates to centrifugal blowers, and particularly to a centrifugal blower for dissipating heat generated by electronic components.
2. Description of Related Art
It is well known that heat is generated by electronic components such as integrated circuit chips during operation thereof. If the heat is not efficiently removed, these electronic components may suffer damage. Thus, centrifugal blowers are often used to cool the electronic components.
A typical centrifugal blower includes a housing, a cover on the housing, and a stator and an impeller received in a space formed between the housing and the cover. The housing includes a bottom wall and a sidewall extending upwardly from the bottom wall. The bottom wall and the cover each define an air inlet therein. The sidewall defines an air outlet therein, and has a tongue adjacent to the air outlet. The tongue extends from the sidewall into the space between the housing and the cover, and protrudes toward the impeller, so as to increase a pressure of an airflow generated by the impeller.
However, the tongue of the centrifugal blower has a relatively greater thickness, which requires more raw materials to construct it. In addition, since a distance of the tongue protruding to the impeller is different at different positions, the thickness of the tongue is not even. Thus, the tongue is easily desiccated, shrunk to deform during the molding fabrication process, which reduces a quality of the production.
What is needed, therefore, is a centrifugal blower which can overcome the above-mentioned disadvantage.
A centrifugal blower according to an embodiment of the present invention includes a housing, a cover arranged on the housing, and an impeller received in a space formed between the housing and the cover. The housing includes a bottom wall and a sidewall surrounding the bottom wall. The sidewall defines an air outlet therein. The sidewall and the impeller cooperatively define an air channel therebetween. The cover includes a main body and a tongue extending from the main body toward the bottom wall of the housing. The tongue is flake-shaped with an even thickness and adjacent to the air outlet. The tongue extends into the air channel and protrudes toward the impeller.
Other advantages and novel features of the present impeller and centrifugal blower will become more apparent from the following detailed description of preferred embodiments when taken in conjunction with the accompanying drawings.
Many aspects of the present centrifugal blower can be better understood with reference to the following drawings. The components in the drawings are not necessarily drawn to scale, the emphasis instead being placed upon clearly illustrating the principles of the disclosed centrifugal blower. Moreover, in the drawings, like reference numerals designate corresponding parts throughout the several views.
Reference will now be made to the drawing figures to describe the embodiments in detail.
Referring to
Referring to
The cover 30 includes a main body 31 and a tongue 32 extending downwardly from the main body 31. The main body 31 is flake-shaped, and has a similar configuration as the bottom wall 11. The main body 31 defines an air inlet 311 at a middle thereof and a cutout 312 adjacent to the rear side 1212 of the air outlet 121. The air inlet 311 aligns with the air inlet 111 of the bottom wall 11. The cutout 312 is substantially V-shaped. The tongue 32 extends integrally from an outer periphery of the main body 31 which is adjacent to cutout 312. Particularly referring to
A thickness of the third flake 322 is equal to a width of the step 122 along a direction protruding toward the impeller 20, whereby the third flake 322 connects smoothly with the sidewall 12. An angle θ is defined between outer surfaces of the first and second flakes 321, 322, and the angle θ is larger than 90 degree. The first, second and third flakes 321, 322, 323 respectively and gradually inclines toward the free ends of the blades 22 from a bottommost end of the tongue 32 toward a topmost end of the tongue 32. That is, the tongue 32 is slantingly arranged in respect with the free ends of the blades 22.
Referring back to
In the present centrifugal blower, the flake-shaped tongue 32 can save raw material for constructing it when compared with typical centrifugal blowers, since the tongue 32 has a small thickness which is achieved due to the formation of the cutout 312. In addition, since the flake-shaped tongue 32 has a substantially even thickness, the tongue 32 is not easily desiccated, shrunk to deform during the molding fabrication process. Thus, a quality of the production is reduced. Furthermore, the tongue 32 extends downwardly from the main body 31. When the tongue 32 is unexpectedly deformed or needs to be redesigned to satisfy different requirements, only the cover 30 needs to be disassembled and replaced. Thus, there is no need to disassemble the stator and the impeller 20 from the housing 10, which reduces a manufacturing cost of the centrifugal blower. Moreover, the distance from the first, second and third flakes 321, 322, 323 of the tongue 32 to the free ends of the blades 22 is respectively variable along the direction from the bottom wall 11 toward the main body 31. The slantwise tongue 32 disturbs the superposition of the harmonic waves and thereby decreases noise generated by the centrifugal blower.
Referring to
It is believed that the present invention and its advantages will be understood from the foregoing description, and it will be apparent that various changes may be made thereto without departing from the spirit and scope of the invention or sacrificing all of its material advantages, the examples hereinbefore described merely being preferred or exemplary embodiments of the invention.
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| 2008 1 0304493 | Sep 2008 | CN | national |
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| Number | Date | Country | |
|---|---|---|---|
| 20100068047 A1 | Mar 2010 | US |