MINI AXIAL FAN WITH AN IMPROVED CORE SHAFT STRUCTURE
A mini axial fan includes a fan housing and a fan unit, which is mounted in the fan housing. The fan unit has a hub with integrated blades around the periphery and integrated axles at front and back sides, and two metal pins respectively press-fitted into a respective blind hole in the free end of each of the axles for rotatably supporting the fan unit on a respective bearing in the fan housing. The fan unit is injection molded from plastics and then the metal pins are installed in the fan unit so that the precision of the metal pins is maintained and the manufacturing cost of the fan unit is reduced.
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(a) Field of the Invention
The present invention relates to a mini axial fan and, more particularly, to a mini axial fan with an improved core shaft structure for use in a computer or computer-related electronic apparatus as an effective heat dissipation device for forced air convection cooling.
(b) Description of the Prior Art
The present invention has been accomplished under the circumstances in view. It is one object of the present invention to provide a mini axial fan with an improved core shaft structure, which has metal pins respectively press-fitted into a respective plastic axle at each of two opposite sides of a plastic fan hub for rotatably supporting the fan unit inside a plastic fan housing, thereby eliminating the drawbacks of prior art insert molding technique, improving the production efficiency, and lowering the manufacturing cost.
To achieve this and other objects of the present invention, the mini axial fan comprises a fan housing and a fan unit mounted inside the fan housing. The fan housing comprises a plastic hub, which defines a backward hole, a plurality of plastic blades formed integral with and radially arranged around the periphery of the hub, two integrated plastic axles respectively extended from the front and back sides of the plastic hub at the center and axially aligned, each axle having a blind hole axially defined in the respective free end, and two metal pins respectively press-fitted into the blind holes of the axles for rotatably supporting the fan unit in the fan housing.
According to the present invention, the metal pins are respectively press-fitted into the blind holes of the plastic axles after injection molding of the plastic hub, the plastic blades and the plastic axles, and therefore the installation precision of the metal pins is free from the expansion and contraction effects of the plastic material during the injection molding of the fan unit, i.e., the invention eliminates the drawbacks of the aforesaid prior art mini axial fan design that employs an insert molding technique.
As shown in the annexed drawings in detail, a mini axial fan comprises a fan housing 1 and a fan unit 2 mounted in the fan housing 1.
As shown in
Referring to
Thus, as shown in
During the fabrication of the core shaft structure of the mini axial fan, the hub 21, the blades 22 and the axles 25 and 25′ are injection-molded from plastics in one piece, and then the pins 27 are respectively press-fitted into the blind holes 26 of the axles 25 and 25′ by means of a tool (see
Claims
1. A mini axial fan, comprising a fan housing and a fan unit mounted in said fan housing, wherein said fan unit comprises:
- a hub, said hub defining a backward hole;
- a plurality of blades formed integral with and radially arranged around the periphery of said hub;
- two axles respectively extending through the center of a front side and through the center of a back side of said hub and axially aligned with each other, each said axle having a free end and a blind hole axially defined in the free end; and
- two pins respectively press-fitted into the blind holes of said axles for rotatably supporting said fan unit in said fan housing.
2. The mini axial fan as claimed in claim 1, wherein said fan housing is a rectangular plastic frame shell, comprising a circular fan accommodation chamber, and two bearings respectively disposed at top and bottom sides of said circular fan accommodation chamber and facing each other, each said bearing having a recessed hole at the center thereof; and said fan unit is mounted in said circular fan accommodation chamber between said bearings, having said pins positioned in the recessed holes of said bearings.
3. The mini axial fan as claimed in claim 2, wherein said fan housing further comprises two bearing holders respectively disposed at top and bottom sides of said circular fan accommodation chamber to support said bearings in place, a plurality of radial ribs respectively equiangularly spaced around said bearing holders and respectively connected between said bearing holders and the periphery of said fan housing, and a motor stator affixed to one said bearing holder; and said fan unit further comprises a motor rotor mounted inside said fan hub.
4. The mini axial fan as claimed in claim 2, wherein each said pin has an outer end terminating in a conical point outside the respective axle and positioned in the recessed hole of a respective one of said bearings.
5. The mini axial fan as claimed in claim 1, wherein said pins are made of a high carbon steel.
6. The mini axial fan as claimed in claim 1, wherein said pins are made of zirconium.
Type: Application
Filed: Sep 22, 2008
Publication Date: Mar 25, 2010
Applicant: (Shulin City)
Inventors: Chien-Chun Yu (Shulin City), Chung-Lung Yu (Taichung County), Yu-Ching Yang (Taichung County)
Application Number: 12/234,712
International Classification: F04D 29/046 (20060101); F04D 19/00 (20060101);