Fan module
11578728 · 2023-02-14
Assignee
Inventors
- Han-Hsuan Tsai (Taipei, TW)
- Jui-Min Huang (Taipei, TW)
- Wei-Hao Lan (Taipei, TW)
- Chien-Chu Chen (Taipei, TW)
- Ching-Ya Tu (Taipei, TW)
- Chih-Wen Chiang (Taipei, TW)
- Ching-Tai Chang (Taipei, TW)
- Ken-Ping Lin (Taipei, TW)
- Yao-Lin Chang (Taipei, TW)
- Cheng-Ya Chi (Taipei, TW)
Cpc classification
F04D17/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/287
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/281
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D25/0613
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D27/002
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/305
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/023
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04D29/28
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D17/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/30
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D27/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A fan module including a body and a plurality of blades is provided. The body has a rotating axis and the body is telescopic along the rotating axis to have an elongated state and a shortened state. The blades are respectively disposed on the body and rotate along with the body along the rotating axis. At least a portion of each blade is flexible and a bending state of each blade is changed along with the elongated state or the shortened state of the body. An axial size of each blade along the rotating axis when the body is in the elongated state is greater than the axial size of each blade along the rotating axis when the body is in the shortened state.
Claims
1. A fan module, comprising: a body, having a rotating axis, wherein the body is telescopic along the rotating axis to have an elongated state and a shortened state, and a size of the body in the elongated state is greater than the size of the body in the shortened state; and a plurality of blades, respectively disposed on the body, wherein the plurality of blades rotate along with the body along the rotating axis, wherein at least a portion of each of the plurality of blades is flexible and a bending state of each of the plurality of blades is changed along with the elongated state or the shortened state of the body, wherein an axial size of each of the plurality of blades along the rotating axis when the body is in the elongated state is greater than the axial size of each of the plurality of blades along the rotating axis when the body is in the shortened state.
2. The fan module according to claim 1, wherein the body comprises: a first hub; a first disc, disposed on the first hub; a second hub, wherein the first hub and the second hub are movably sleeved together along the rotating axis; and a second disc, disposed on the second hub, wherein each of the plurality of blades has a plurality of regions connected to each other in sequence along an axial direction of the rotating axis, and a first position and a last position of the plurality of regions are respectively connected to the first disc and the second disc.
3. The fan module according to claim 2, wherein the plurality of regions are divided into a first type and a second type, the region belonging to the second type is flexible, and the region belonging to the first type is adjacent and connected to the region belonging to the second type.
4. The fan module according to claim 3, wherein a toughness of the region belonging to the second type is greater than a toughness of the region belonging to the first type and the region belonging to the second type maintains a gap relative to the first hub and the second hub.
5. The fan module according to claim 3, wherein the region belonging to the first type and located in the first position or the last position is connected to the first hub or the second hub.
6. The fan module according to claim 5, wherein the first hub or the second hub also has a connecting layer to connect to the region belonging to the second type, the connecting layer is flexible, and a toughness of the connecting layer is consistent with the toughness of the region belonging to the second type.
7. The fan module according to claim 3, wherein an area of the region belonging to the first type is greater than an area of the region belonging to the second type.
8. The fan module according to claim 3, wherein an area of the region belonging to the first type is equal to an area of the region belonging to the second type.
9. The fan module according to claim 3, wherein an area of the region belonging to the first type is smaller than an area of the region belonging to the second type.
10. The fan module according to claim 3, wherein one of the first hub and the second hub has a guiding post, the other one of the first hub and the second hub has a guiding groove, and the guiding post is coupled to the guiding groove, so that the first hub and the second hub move relative to each other along the rotating axis.
11. The fan module according to claim 10, wherein the guiding groove is parallel to the rotating axis.
12. The fan module according to claim 10, wherein the guiding groove is inclined relative to the rotating axis.
13. The fan module according to claim 12, wherein an included angle of the guiding groove relative to the rotating axis is consistent with a relative rotation angle of the first hub and the second hub in the shortened state or the elongated state based on the rotating axis.
14. The fan module according to claim 3, wherein at a junction of two adjacent regions, one of the regions has at least one protruding rib, the other one of the regions has at least one opening groove, the protruding rib is rotatably buckled to the opening groove, and there is a bend at the junction of the two adjacent regions.
15. The fan module according to claim 14, wherein a bending amount of the junction of the two adjacent regions is greater than a deformation amount of the region belonging to the second type.
16. The fan module according to claim 2, wherein each of the plurality of blades comprises a flexible material connected between the first disc and the second disc, and a rigid material covered by the flexible material, so that there is a bend at a region of the rigid material not covered by the flexible material relative to a region of the rigid material covered by the flexible material.
17. The fan module according to claim 1, further comprising at least one power source, connected to the rotating axis and configured to drive the body and the plurality of blades to rotate or drive the body to elongate and shorten.
18. The fan module according to claim 1, wherein each of the plurality of blades is entirely made of a single flexible material.
19. The fan module according to claim 18, wherein each of the plurality of blades is divided into different regions by at least one fold line.
20. The fan module according to claim 1, wherein an orthographic projection area of each of the plurality of blades on a plane when the body is in the elongated state is greater than the orthographic projection area of each of the plurality of blades on the plane when the body is in the shortened state, wherein the rotating axis is located on the plane.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF DISCLOSED EMBODIMENTS
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(13) Further, the body 110 of the embodiment includes a first hub 112, a first disc 111, a second hub 114, and a second disc 113. The first disc 111 is disposed on the first hub 112. The first hub 112 and the second hub 114 are movably sleeved together along the rotating axis C1. The second disc 113 is disposed on the second hub 114. Each blade 120 has a plurality of regions 121 and 122 connected to each other in sequence along an axial direction of the rotating axis C1, wherein the region 121 is connected to the first disc 111 with a side edge 121a thereof and the region 122 is connected to the second disc 113 with a side edge 122a thereof. Furthermore, the region 122 of the blade 120 is flexible (the region 121 is not flexible), so the region 121 is regarded as the first type and the region 122 is regarded as the second type, and are adjacent and connected to each other.
(14) Accordingly, as the first hub 112 (and the first disc 111) moves relative to the second hub 114 (and the second disc 113) along the rotating axis C1, the flexible region 122 changes the degree of deformation (bending) thereof accordingly.
(15) As such, it can be seen that as the first hub 112 (and the first disc 111) moves away from the second hub 114 (and the second disc 113), the blade 120 is elongated accordingly, thereby increasing the amount of airflow entering the fan module 100, that is, the wind catching amount of the blade 120 may also be increased. Also, it can be regarded as that during the telescopic processes of the body 110, the space between the first disc 111 and the second disc 113, that is, the space (regarded as a fan chamber) for driving and compressing the airflow entering the fan module 100, is also expanded or reduced.
(16) Since the region 122 is flexible, the fan module 100 of the embodiment needs to further adjust the relevant structural configuration.
(17) In addition, please refer to
(18) Please refer to
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(20) It should be noted that the configurations of the guiding post 112a and the guiding groove 114a are not limited, which may also be interchangeably disposed on the second hub 114 and the first hub 112. In addition, in another embodiment not shown, the guiding groove may be parallel to the rotating axis, so that the first hub 112 (and the first disc 111) and the second hub 114 (and the second disc 113) only move away from or close to each other along the rotating axis C1 without having any rotation angle.
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(24) In summary, in the embodiments of the disclosure, since the body of the fan module has a telescopic state change along the rotating axis while a portion of the blades is also flexible, the axial size of the blades along the rotating axis will be expanded or reduced due to the telescopic change of the body. Furthermore, the blade may be divided into at least two regions, which are arranged between the first disc and the second disc, wherein the region located at the first position or the last position is connected to the first disc and the second disc. Also, whether the regions are flexible may be appropriately adjusted according to requirements and the only constant is that the flexible regions need to maintain a gap with the first hub or the second hub, so that deformation can be smooth without any limitation.
(25) In other words, the user may adjust the telescopic state of the body according to the heat dissipation requirements, so as to change the size of the fan chamber while controlling the wind catching area of the blades, thereby controlling the wind amount of the fan module. Accordingly, the fan module is no longer limited by the body space of the electronic product, so as to improve the applicability thereof.