Machine armor fan

By introducing storage and multiple folding mechanisms into the portable fan, the problem of housing design limiting function expansion is solved, and a unique appearance and multi-function integrated mecha fan is achieved.

CN223089597UActive Publication Date: 2025-07-11中山玲烨科技有限公司
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Patent Information

Application Number
CN202421701611.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-17
Publication Date
2025-07-11
Estimated Expiration
2034-07-17

AI Technical Summary

Technical Problem

The existing portable fan housing design limits functional expansion and fails to achieve multifunctional integration.

Method used

The storage mechanism and multiple folding mechanism design are adopted, including a storage mechanism in the mecha main body, a first folding mechanism between the mecha main body and the fan assembly, a second folding mechanism between the mecha main body and the support assembly, and a third folding mechanism between the connecting arm and the support claw, so as to realize multi-angle adjustment of the fan and portable folding of the fan.

Benefits of technology

It realizes the unique appearance design of the fan and excellent folding portability, while also having strong functional integration and expansion, enhancing the versatility of the fan.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223089597U_ABST
    Figure CN223089597U_ABST
Patent Text Reader

Abstract

The utility model discloses a machine armor fan which comprises a machine armor body, a fan assembly, a supporting assembly, a containing mechanism, a first folding mechanism, a second folding mechanism and a third folding mechanism. According to the mobile phone shell fan, the storage mechanism is additionally arranged in the mobile phone shell body, so that the function of storing the power supply element can be achieved; the first folding mechanism is adopted between the mobile armor body and the fan assembly, and the function that the fan assembly can swing and be folded relative to the mobile armor body is achieved. A second folding mechanism is adopted between the mobile armor body and the supporting assembly, and the function that the supporting assembly can swing and be folded relative to the mobile armor body is achieved; a third folding mechanism is arranged between a connecting arm and a supporting claw, the overturning and folding functions of the supporting mechanism are achieved, the fan with the shell appearance is more unique compared with a common portable fan in appearance, the storage mechanism and the multiple folding mechanisms are combined, and the folding function is achieved. Therefore, the first fan has high function integration and expansibility.
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Description

Technical Field

[0001] The utility model relates to the technical field of fans, in particular to a mecha fan. Background Art

[0002] With the improvement of people's requirements for travel convenience, personalization and functionality, small portable fans have gradually become popular products in the market. Although the current small portable fans show extremely high diversity in appearance design, there are still significant limitations in terms of function expansion and applicability. Specifically, the housing designs of most small portable fans often adopt a fixed molding state or a simple splicing structure. This design method simplifies the production process and reduces costs, but at the same time limits the further function integration and expansion ability of the fan. Therefore, there is an urgent need for a fan with a unique appearance housing with multiple functions to improve the function expansion of existing portable fans. Summary of the Utility Model

[0003] The purpose of the utility model is to provide a mecha fan to solve the problem of poor function expansion of the housing of existing portable fans.

[0004] The utility model provides the following technical solution: A mecha fan, comprising a mecha main body, a fan assembly connected to the mecha main body, and a support assembly for supporting the mecha main body. A storage mechanism for storing power supply components is arranged in the mecha main body. A first folding mechanism is arranged between the mecha main body and the fan assembly, and the first folding mechanism enables the fan assembly to swing close to or away from the mecha main body. A second folding mechanism is arranged between the mecha main body and the support assembly, and the second folding mechanism enables the support assembly to swing close to or away from the mecha main body. The support assembly includes a plurality of support claws arranged along the circumferential side of the mecha main body. A connecting arm is further arranged between the support claws and the mecha main body. A third folding mechanism is arranged between the support claws and the connecting arm, and the third folding mechanism enables the support claws to swing close to or away from the connecting arm. When the mecha fan is folded, the fan assembly swings close to and fits against the mecha main body, and the support claws and the connecting arm both swing close to and fit against the mecha main body.

[0005] For a mecha fan as described above, the first folding mechanism includes a functional part and a rotating groove arranged around the circumferential side of the functional part. The fan assembly includes a fan and fan housing covers arranged on the front and rear sides of the fan. The lower side of the fan housing cover is hinged to the functional part, and the rotating groove is opened on the mecha main body. When the fan housing cover swings and unfolds around the hinge axis with the functional part, the functional part can rotate along the rotating groove to drive the fan housing cover to rotate, thereby adjusting the orientation of the fan.

[0006] A mecha fan as described above, wherein the second folding mechanism includes a bi-directional hinge hinged between the mecha main body and the connecting arm. The bi-directional hinge is provided with a main body hinge portion and a connecting arm hinge portion. The main body hinge portion is hinged to the mecha main body, and the connecting arm hinge portion is hinged to the connecting arm.

[0007] A mecha fan as described above, wherein the main body hinge portion and the connecting arm hinge portion are perpendicular to each other.

[0008] A mecha fan as described above, wherein the third folding mechanism includes a corresponding hinge shaft and hinge holes. The hinge shaft is provided on the connecting arm, and the hinge holes are provided in pairs on the support claws. The opposite ends of the hinge shaft are respectively inserted into the opposite hinge holes to hinge the support claws and the connecting arm.

[0009] A mecha fan as described above, wherein one end of the support claw away from the hinge hole is provided with a claw tip portion. The support claw can swing along the hinge shaft of the connecting arm, driving the claw tip portion to swing close to and fit against the mecha main body to fold the support assembly.

[0010] A mecha fan as described above, wherein the mecha main body includes a detachable upper shell and a lower shell. The storage mechanism includes a battery storage cavity formed between the upper shell and the lower shell. A locking mechanism is provided between the upper shell and the lower shell, and the locking mechanism is used to lock the lower shell when the lower shell is assembled to the upper shell.

[0011] A mecha fan as described above, wherein the lower shell is provided with a charging port and a plurality of heat dissipation ports communicating with the storage cavity.

[0012] A mecha fan as described above, wherein the locking mechanism includes a plurality of fixing holes provided on the lower side of the lower shell, and fixing latches corresponding to the fixing holes. A lever protrudes from the fixing latches.

[0013] A mecha fan as described above, when the support assembly is folded, the claw tip portion is located on the lower side of the lower shell.

[0014] Compared with the prior art, the present utility model has the following advantages:

[0015] The mecha fan of the present utility model can achieve the function of storing power supply components by adding a storage mechanism in the mecha main body; a first folding mechanism is adopted between the mecha main body and the fan assembly to realize the function that the fan assembly can swing and fold relative to the mecha main body; a second folding mechanism is adopted between the mecha main body and the support assembly to realize the function that the support assembly can swing and fold relative to the mecha main body; a third folding mechanism is also arranged between the connecting arm and the support claw to realize the function of the support mechanism's own flipping and folding. This fan with a mecha shape is more unique in appearance compared to ordinary portable fans, and the combination of the storage mechanism and multiple folding mechanisms makes this mecha fan also have excellent folding portability, as well as strong function integration and expandability. Brief Description of the Drawings

[0016] Figure 1 It is a three-dimensional schematic diagram of the mecha fan of the present utility model in the unfolded state.

[0017] Figure 2 It is an exploded schematic diagram of the mecha main body and the fan assembly of the mecha fan of the present utility model.

[0018] Figure 3 It is an exploded schematic diagram of the support assembly of the mecha fan of the present utility model.

[0019] Figure 4 It is an exploded schematic diagram of the mecha main body of the mecha fan of the present utility model from another angle.

[0020] Description of the reference numerals: 1. Mecha main body; 2. Fan assembly; 3. Support assembly; 4. Storage mechanism; 5. First folding mechanism; 6. Second folding mechanism; 7. Third folding mechanism; 8. Locking mechanism; 11. Upper shell; 12. Lower shell; 21. Fan; 22. Fan cover; 31. Support claw; 32. Connecting arm; 41. Storage cavity; 51. Functional part; 52. Rotation groove; 61. Double hinge; 71. Hinge shaft; 72. Hinge hole; 81. Fixed hole; 82. Fixed lock; 121. Charging port; 122. Heat dissipation port; 311. Claw tip; 611. Main body hinge part; 612. Connecting arm hinge part; 821. Lever. Detailed Description of the Embodiments

[0021] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0022] Embodiment 1: Please refer to the attachedFigure 1 to the appendix Figure 4 , this embodiment provides a mecha fan, which includes a mecha main body 1, a fan assembly 2 connected to the mecha main body 1, and a support assembly 3 for supporting the mecha main body 1. A storage mechanism 4 for storing power supply components is provided inside the mecha main body 1. A first folding mechanism 5 is provided between the mecha main body 1 and the fan assembly 2. The first folding mechanism 5 enables the fan assembly 2 to swing closer to or away from the mecha main body 1. A second folding mechanism 6 is provided between the mecha main body 1 and the support assembly 3. The second folding mechanism 6 enables the support assembly 3 to swing closer to or away from the mecha main body 1. The support assembly 3 includes a plurality of support claws 31 arranged along the circumferential side of the mecha main body 1. A connecting arm 32 is further provided between the support claws 31 and the mecha main body 1. A third folding mechanism 7 is provided between the support claws 31 and the connecting arm 32. The third folding mechanism 7 enables the support claws 31 to swing closer to or away from the connecting arm 32. When the mecha fan is folded, the fan assembly 2 swings closer and fits against the mecha main body 1, and both the support claws 31 and the connecting arm 32 swing closer and fit against the mecha main body 1. For the novel mecha fan of this embodiment, in the mecha main body 1, the addition of the storage mechanism 4 can achieve the storage function of the power supply components; the first folding mechanism 5 is adopted between the mecha main body 1 and the fan assembly 2 to realize the function that the fan assembly 2 can swing and fold relative to the mecha main body 1; the second folding mechanism 6 is adopted between the mecha main body 1 and the support assembly 3 to realize the function that the support assembly 3 can swing and fold relative to the mecha main body 1; the third folding mechanism 7 is also provided between the connecting arm 32 and the support claws 31 to realize the flipping and folding function of the support mechanism 3 itself. This fan with a mecha shape is more unique in appearance compared with ordinary portable fans. The combination of the storage mechanism 4 and multiple folding mechanisms makes this mecha fan have excellent folding portability, and also has strong function integration and expandability.

[0023] The first folding mechanism 5 includes a functional part 51 and a rotating groove 52 arranged around the circumferential side of the functional part 51. The fan assembly 2 includes a fan 21 and fan covers 22 surrounding the front and rear sides of the fan 21. The lower side of the fan cover 22 is hinged to the functional part 51. The rotating groove 52 is opened on the mecha main body 1. When the fan cover 22 swings and unfolds around the hinge axis with the functional part 51, the functional part 51 can rotate along the rotating groove 52 to drive the fan cover 22 to rotate, thereby adjusting the orientation of the fan 21 and achieving the effect of the left and right shaking of the fan assembly 2.

[0024] The second folding mechanism 6 includes a bidirectional hinge 61 hinged between the mecha main body 1 and the connecting arm 32. The bidirectional hinge 61 is provided with a main body hinge portion 611 and a connecting arm hinge portion 612. The main body hinge portion 611 is hinged to the mecha main body 1, and the connecting arm hinge portion 612 is hinged to the connecting arm 32. Preferably, the main body hinge portion 611 and the connecting arm hinge portion 612 are perpendicular to each other, so that the connecting arm 32 can swing relative to the mecha main body 1 in two different degrees of freedom directions.

[0025] The third folding mechanism 7 includes a corresponding hinge shaft 71 and hinge holes 72. The hinge shaft 71 is provided on the connecting arm 32, and the hinge holes 72 are arranged in pairs on the support claws 31. The opposite ends of the hinge shaft 71 are respectively inserted into the opposite hinge holes 72 to hinge the support claws 31 and the connecting arm 32, and the swinging of the support claws 31 around the axis is realized through the hinge of the hinge shaft 71 and the hinge holes 72.

[0026] One end of the support claw 31 far from the hinge hole 72 is provided with a claw tip portion 311. The support claw 31 can swing along the hinge axis of the connecting arm 32, driving the claw tip portion 311 to swing close to and fit the mecha main body 1 to fold the support assembly 3. The support assembly 3 can be four support claws 31 provided on the mecha main body 1 and their corresponding connecting arms 32. When the support assembly 3 is unfolded, the claw tip portions 311 on the four support claws 31 support on the tabletop, forming four support points for the mecha main body 1.

[0027] The mecha main body 1 includes a detachable upper shell 11 and a lower shell 12. The storage mechanism 4 includes a battery storage cavity 41 formed between the upper shell 11 and the lower shell 12. A locking mechanism 8 is provided between the upper shell 11 and the lower shell 12. The locking mechanism 8 is used to lock the lower shell 12 when the lower shell 12 is assembled to the upper shell 11. Various charging systems with functional expandability can be set in the battery storage cavity 41 to realize functions such as forward charging, providing reverse charging for electronic devices, or wireless charging for mobile phones. Secondly, a charging port 121 and a plurality of heat dissipation ports 122 communicating with the storage cavity 41 are provided on the lower shell 12, facilitating the charging and heat dissipation of the power supply components inside the mecha main body 1 by the outside; further, the locking mechanism 8 includes a plurality of fixing holes 81 provided on the lower side of the lower shell 12, and fixing latches 82 corresponding to the fixing holes 81. A lever 821 protrudes from the fixing latch 82.

[0028] When the support assembly 3 is folded, the claw tip portion 311 is located on the lower side of the lower shell 12. At this time, the connecting arm 32 and the support claw 31 are in a folded state of holding the upper shell 11 and the lower shell 12, making its overall folded form more compact.

[0029] Although embodiments of the present utility model have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present utility model. The scope of the present utility model is defined by the appended claims and their equivalents.

Claims

1. A mecha fan, characterized in that: It includes a mecha main body (1), a fan assembly (2) connected to the mecha main body (1), and a support assembly (3) for supporting the mecha main body (1). A storage mechanism (4) for storing power supply components is provided inside the mecha main body (1). A first folding mechanism (5) is provided between the mecha main body (1) and the fan assembly (2), and the first folding mechanism (5) enables the fan assembly (2) to swing closer to or away from the mecha main body (1). A second folding mechanism (6) is provided between the mecha main body (1) and the support assembly (3), and the second folding mechanism (6) enables the support assembly (3) to swing closer to or away from the mecha main body (1). The support assembly (3) includes a plurality of support claws (31) arranged along the circumferential side of the mecha main body (1). A connecting arm (32) is further provided between the support claw (31) and the mecha main body (1). A third folding mechanism (7) is provided between the support claw (31) and the connecting arm (32), and the third folding mechanism (7) enables the support claw (31) to swing closer to or away from the connecting arm (32). When the mecha fan is folded, the fan assembly (2) swings closer and fits against the mecha main body (1), and both the support claw (31) and the connecting arm (32) swing closer and fit against the mecha main body (1).

2. The mecha fan according to claim 1, wherein: The first folding mechanism (5) includes a functional member (51) and a rotation groove (52) arranged circumferentially around the functional member (51). The fan assembly (2) includes a fan (21) and fan casings (22) surrounding the front and rear sides of the fan (21). The lower side of the fan casing (22) is hinged to the functional member (51). The rotation groove (52) is formed on the mecha main body (1). When the fan casing (22) swings and unfolds around the hinge axis with the functional member (51), the functional member (51) can rotate along the rotation groove (52) to drive the fan casing (22) to rotate, thereby adjusting the orientation of the fan (21).

3. The mecha fan according to claim 1, characterized in that: The second folding mechanism (6) includes a bi-directional hinge (61) hinged between the mecha main body (1) and the connecting arm (32). A main body hinge portion (611) and a connecting arm hinge portion (612) are formed on the bi-directional hinge (61). The main body hinge portion (611) is hinged to the mecha main body (1), and the connecting arm hinge portion (612) is hinged to the connecting arm (32).

4. The mecha fan according to claim 3, characterized in that: The main body hinge portion (611) and the connecting arm hinge portion (612) are perpendicularly arranged to each other.

5. The mecha fan according to claim 3, wherein: The third folding mechanism (7) includes a corresponding hinge shaft (71) and hinge holes (72). The hinge shaft (71) is arranged on the connecting arm (32), and the hinge holes (72) are arranged in pairs on the support claw (31). Opposite ends of the hinge shaft (71) are respectively inserted into the opposite hinge holes (72) to hinge the support claw (31) and the connecting arm (32).

6. The mecha fan according to claim 5, characterized in that: One end of the support claw (31) away from the hinge hole (72) is provided with a claw tip (311). The support claw (31) can swing along the hinge axis of the connecting arm (32), driving the claw tip (311) to swing close to and fit against the mecha main body (1) to fold the support assembly (3).

7. The mecha fan according to claim 6, characterized in that: The mecha main body (1) includes a detachable upper shell (11) and a lower shell (12). The storage mechanism (4) includes a battery storage cavity (41) formed between the upper shell (11) and the lower shell (12). A locking mechanism (8) is provided between the upper shell (11) and the lower shell (12). The locking mechanism (8) is used to lock the lower shell (12) when the lower shell (12) is assembled to the upper shell (11).

8. The mecha fan according to claim 7, characterized in that: A charging port (121) and a plurality of heat dissipation ports (122) communicating with the storage cavity (41) are formed on the lower shell (12).

9. The mecha fan according to claim 7, characterized in that: The locking mechanism (8) includes a plurality of fixing holes (81) provided on the lower side of the lower shell (12), and fixing latches (82) correspondingly arranged with the fixing holes (81). A lever (821) protrudes from the fixing latch (82).

10. The mecha fan according to claim 7, wherein: When the support assembly (3) is folded, the claw tip (311) is located on the lower side of the lower shell (12).