Fan braking structure
11936278 ยท 2024-03-19
Assignee
Inventors
Cpc classification
H02K7/1025
ELECTRICITY
H02K7/14
ELECTRICITY
International classification
Abstract
A fan braking structure includes a fan including a frame having an upright bearing cup, and a fan impeller having a vertical rotating shaft pivotally received in the bearing cup and provided at a free end with a groove; a braking structure located at a lower part of the bearing cup and including a brake plate and an electromagnet, and the brake plate being provided at one side with a protruded brake pin and at another side with a magnetic member; and an elastic element disposed between and pressed against the brake plate and the electromagnet. When the fan is powered off, the electromagnet is energized and produces magnetic poles that magnetically repel the magnetic member, such that the brake pin is pushed by a magnetic force and the elastic element toward the rotating shaft to engage with the groove, causing the fan to brake and stop rotating inertially.
Claims
1. A fan braking structure, comprising: a fan including a frame, a fan impeller and a stator; the frame including an upright bearing cup, and the stator being externally fitted around the bearing cup to be located corresponding to the fan impeller; and the fan impeller including a rotating shaft vertically received in the bearing cup, an end of the rotating shaft being pivotally received in the bearing cup, and another end of the rotating shaft being a free end having a groove formed thereat; a braking structure including a regenerative module and a shell located at a lower part of the bearing cup; the shell being internally provided with a brake plate and an electromagnet; the brake plate being provided at one side with a protruded brake pin and at another opposite side with a magnetic member; and the regenerative module including an electrical connection section and a power storage element, and the electrical connection section being electrically connected to the fan; and an elastic element being disposed between and pressed against the brake plate and the electromagnet.
2. The fan braking structure as claimed in claim 1, wherein the brake pin of the braking structure and the groove on the rotating shaft of the fan have mating male and female configurations to be fitly and detachably engaged with each other; and wherein the regenerative module of the braking structure is selected from the group consisting of a capacitor, a battery and an accumulator, and the elastic element is selected from the group consisting of a compression spring and a conical spring.
3. The fan braking structure as claimed in claim 1, wherein the brake plate has a non-circular external shape and the shell has a corresponding non-circular internal spatial shape to prevent the brake plate from rotating radially while moving axially in the shell.
4. The fan braking structure as claimed in claim 1, wherein the fan internally includes a plurality of blades, which respectively have an end connected to the frame and another end connected to the bearing cup.
5. The fan braking structure as claimed in claim 1, wherein the magnetic member is a permanent magnet.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The structure and the technical means adopted by the present invention to achieve the above and other objects can be best understood by referring to the following detailed description of the preferred embodiments and the accompanying drawings, wherein
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(6) The present invention will now be described with a preferred embodiment thereof.
(7) Please refer to
(8) According to the present invention, the fan 1 includes a frame 2, a fan impeller 3, and a stator 4. The frame 2 includes an upright bearing cup 21; the stator 4 is externally fitted around the bearing cup 21 to be located corresponding to the fan impeller 3. The fan impeller 3 includes the above-mentioned rotating shaft 31, which is vertically received in the bearing cup 21 with an end thereof pivotally received the bearing cup 21; and another end of the rotating shaft 31 is a free end having the above-mentioned groove 311 formed thereat.
(9) Preferable, the frame 2 internally includes a plurality of blades 22, which are respectively connected at one end to the frame 2 and at another end to the bearing cup 21.
(10) Please refer to
(11) The elastic element 6 is disposed between and pressed against the brake plate 51 and the electromagnet 52.
(12) Preferably, the brake pin 511 and the groove 311 have mating geometrical configurations to be fitly and detachably engaged with each other. For example, the brake pin 511 may be rectangular, polygonal or triangular in shape, while the groove 311 is correspondingly shaped.
(13) Preferably, the elastic element 6 is a compression spring or a conical spring.
(14) Preferably, the magnetic member 512 is a permanent magnet.
(15) Preferably, the shell 50 of the braking structure 5 has a non-circular internal spatial shape and the brake plate 51 has a corresponding non-circular external shape. For example, the brake plate 51 may be rectangular, polygonal or triangular in shape, while the shell 50 has a corresponding rectangular, polygonal or triangular internal spatial shape. With this arrangement, it is able to prevent the brake plate 51 from rotating radially while moving axially in the shell 50.
(16) The electrical connection section 531 may be a pin socket, a flat cable, a wire, or an electrical contact. The power storage element 532 may be a capacitor, a battery, or an accumulator to serve as a device for storing and releasing electricity. When the fan 1 operates in a normal power supply condition, the power storage element 532 is electrically connected to the fan 1 via the electrical connection section 531 and stores electricity at the same time. On the other hand, when the fan 1 is powered off, the power storage element 532 releases the stored electricity to the electromagnet 52.
(17) Please refer to
(18) Please refer to
(19) The present invention has been described with a preferred embodiment thereof and it is understood that many changes and modifications in the described embodiment can be carried out without departing from the scope and the spirit of the invention that is intended to be limited only by the appended claims.