360-degree circulating fan with intelligent temperature control system

By introducing intelligent temperature control system and control components into the 360-degree circulating fan, the problem that existing fans cannot adjust the air supply temperature is solved, achieving flexible temperature regulation and service life extension.

CN120140255AActive Publication Date: 2025-06-13GUANGDONG UNIQUE ELECTRICAL
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Patent Information

Application Number
CN202510479346.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-16
Publication Date
2025-06-13
Estimated Expiration
2045-04-16

AI Technical Summary

Technical Problem

The existing 360-degree circulating fan cannot adjust the air supply temperature and cannot meet the needs of different groups of people and environments.

Method used

A 360-degree circulating fan with an intelligent temperature control system was designed. By setting a temperature control mechanism inside the fan, the airflow temperature is adjusted using copper tubes and fins, and manual state switching is achieved through the control component and the rod component.

Benefits of technology

The function of adjusting the air supply temperature according to different needs is realized, extending the service life of the fan, and protecting the inside of the fan during natural air supply.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a 360-degree circulating fan with an intelligent temperature control system, and belongs to the technical field of circulating desk fans. The device mainly comprises a chassis, and the interior of the chassis is hollow and forms a cavity; the upper cover covers the chassis, and a first air window is formed in the upper cover; a blowing mechanism is mounted on the upper cover; a circulating mechanism and a temperature control mechanism are installed in the cavity, the temperature control mechanism comprises a shell installed on the upper cover, an opening end is arranged at one end of the shell, and an air outlet corresponding to the first air window is formed in the opposite face of the opening end; the fins are arranged in the shell in an array mode, and gaps allowing airflow to pass through are formed between the fins; and the copper pipe is arranged on the fins in a penetrating manner and is provided with a liquid inlet and a liquid outlet. According to the 360-degree circulating fan with the intelligent temperature control system, by arranging the temperature control mechanism, the temperature of airflow guided into the circulating fan can be adjusted, then the airflow is blown out through the circulating fan, and therefore the air supply temperature of the circulating fan is adjusted.
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Description

Technical Field

[0001] This application relates to the technical field of circulating desktop fans, and specifically to a 360-degree circulating fan with an intelligent temperature control system. Background Art

[0002] A 360-degree air-supply fan refers to a type of fan that can supply air in all directions and at multiple angles. The 360-degree air-supply fan is a type of fan that has gradually become popular in the market in recent years. It is loved by consumers for its unique air-supply method and wide air-supply range. It breaks the limitation of the traditional fan's one-way air supply and achieves an all-round and dead-angle-free air-supply effect through special design.

[0003] For example, the Chinese patent with the publication number CN201382006Y specifically discloses a desktop electric fan that can shake its head three-dimensionally. The patent includes a base, a support housing, and fan bodies rotatably installed on both sides of the support housing. The fan bodies include motors, fan blades, and mesh covers. The support housing is rotatably installed on the base, and a crank-rocker mechanism for making the support housing swing left and right is provided between the base and the support housing; another crank-rocker mechanism for making the fan bodies pitch up and down is provided between the support housing and the fan bodies. The desktop electric fan that can shake its head three-dimensionally with this structure can swing the air supply left and right and also pitch up and down to achieve a comfortable air-supply effect.

[0004] During the implementation of the above patent, although the effect of swinging air supply is achieved, the temperature of the air supply cannot be adjusted. When different people need air supply at different temperatures, the above device cannot be adjusted. Therefore, it is necessary to provide a 360-degree circulating fan with an intelligent temperature control system to solve the above problems.

[0005] It should be noted that the above information disclosed in this background art section is only used to understand the background art of the concept of this application, and therefore, it may include information that does not constitute prior art. Summary of the Invention

[0006] Based on the above problems existing in the prior art, the problem to be solved by this application is to provide a 360-degree circulating fan with an intelligent temperature control system, achieving the effect of being able to change the air-supply temperature according to the needs of different people and environments.

[0007] The technical solution adopted by this application to solve its technical problems is as follows: A 360-degree circulating fan with an intelligent temperature control system, including a chassis, the interior of which is hollow and forms a cavity; an upper cover that covers the chassis, and a first air window is opened on the upper cover; a blowing mechanism that is installed on the upper cover; a circulating mechanism that is installed inside the cavity and is used to drive the blowing mechanism to rotate; a temperature control mechanism that is installed inside the cavity, and the temperature control mechanism includes: a housing that is installed on the upper cover, one end of the housing is open and forms an open end, and an air outlet is provided opposite to the open end, and the air outlet corresponds to the first air window; at least two groups of fins that are arranged in an array inside the housing, and there is a gap for air flow between the fins; a copper tube that passes through the fins, and the copper tube has a liquid inlet and a liquid outlet for introducing and discharging a coolant.

[0008] Further, the blowing mechanism includes a rear cover installed on the upper cover, the rear cover is hemispherical, a front cover is installed on the hemispherical section of the rear cover, a receiving space is formed between the front cover and the rear cover, and a fan blade is arranged inside the receiving space, and the fan blade is adapted to rotate under the action of a rotating device; the rotating device includes a rotating motor installed on the rear cover and a fan shaft installed at the output end of the rotating motor, and the fan shaft is connected to the fan blade.

[0009] Further, a connecting seat is fixedly arranged on the rear cover, a connecting shaft is installed on the connecting seat, and the connecting shaft is installed on the upper cover by bearings; the circulating mechanism includes a bracket fixedly installed at the bottom of the upper cover, a motor is fixedly installed on the bracket, a first gear is fixedly installed at the output end of the motor, a second gear is fixedly installed at the bottom of the connecting shaft, and the second gear meshes with the first gear.

[0010] Further, the axis lines of the fan shaft and the connecting shaft are arranged in the same plane, and both pass through the center of the sphere of the rear cover.

[0011] Further, a window is arranged on one side of the chassis, and a first filter screen is installed at the position of the window.

[0012] Further, a shielding mechanism is arranged on the upper cover, and the shielding mechanism includes a wind cap fixedly installed on the first air window, the wind cap protrudes from the surface of the upper cover and is provided with a protruding end, the protruding end is made of a flexible material and has a certain elasticity; a slide rail is arranged on the upper cover, a slider is slidably arranged on the slide rail, a shielding plate is fixedly installed on the slider, a second air window is arranged on one side of the shielding plate, a ventilation plate is arranged on the second air window, and one side of the shielding plate located at the second air window is a closed end.

[0013] Furthermore, a control component is provided on the upper cover, and a rod component is installed at the bottom of the baffle. The rod component is adapted to cooperate with the control component to control the position of the baffle.

[0014] Furthermore, the control component includes a control board fixedly installed on the upper cover, and a first slideway parallel to the slide rail is provided on the control board; the rod component includes a seat body fixedly installed at the bottom of the baffle, a rod body is hinged on the seat body, and a sphere is fixedly installed at one end of the rod body away from the seat body, and the sphere has a certain elasticity.

[0015] Furthermore, an inclined second slideway is provided on the control board. The starting end of the second slideway is communicated with the end of the first slideway, and the bottom of the second slideway is lower than the bottom of the first slideway; the end of the second slideway is communicated with a third slideway. The third slideway is a retracting slideway, and the bottom of the third slideway is lower than the position of the second slideway. The connection between the second slideway and the third slideway forms a first vertex, and the first vertex is located inside the third slideway; the end of the third slideway is communicated with a fourth slideway. The fourth slideway is a forward slideway, and the bottom of the fourth slideway is lower than the bottom of the third slideway. The connection between the third slideway and the fourth slideway forms a second vertex, and the second vertex is located in the fourth slideway;

[0016] A spring is fixedly installed between the upper cover and the baffle.

[0017] Furthermore, the end of the fourth slideway is communicated with a fifth slideway, and the end of the fifth slideway is communicated with the first slideway. The fifth slideway is divided into a first section communicated with the fourth slideway and a second section communicated with the first slideway. The bottom of the first section is lower than the bottom of the fourth slideway, and a third vertex is provided at the connection between the fourth slideway and the first section, and the third vertex is located in the first section; the bottom of the second section is higher than the bottom of the first slideway and forms a step; there is a transition slope between the first section and the second section.

[0018] The 360-degree circulating fan with an intelligent temperature control system provided by the present application has the following beneficial effects:

[0019] 1. By providing a temperature control mechanism, the airflow introduced into the circulating fan can be temperature-adjusted and then blown out through the circulating fan, so as to achieve the adjustment of the air supply temperature of the circulating fan. And the introduced airflow passes through the inside of the circulating fan, which can cool the electrical components inside to a certain extent, so as to extend the service life of the circulating fan.

[0020] 2. By providing an occlusion mechanism, the circulation fan can be switched between temperature control and natural air supply. Meanwhile, the interior of the circulation fan can be protected during natural air supply.

[0021] 3. By providing a control component and a rod component, the state of the circulation fan can be conveniently switched manually, avoiding the addition of extra electronic control equipment and thus extending the service life of the circulation fan.

[0022] In addition to the objectives, features, and advantages described above, the present application has other objectives, features, and advantages. The following will refer to the drawings for a further detailed description of the present application. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] The schematic diagrams in the specification forming a part of the present application are used to provide a further understanding of the present application. The illustrative embodiments and descriptions thereof of the present application are used to explain the present application and do not constitute an improper limitation of the present application.

[0024] In the drawings:

[0025] Figure 1 is the overall schematic diagram of a 360-degree circulation fan with an intelligent temperature control system in the present application Figure 1 ;

[0026] Figure 2 is Figure 1 the exploded schematic diagram of the overall structure in

[0027] Figure 3 is Figure 2 the partial structure schematic diagram at A in

[0028] Figure 4 is Figure 2 the partial structure schematic diagram at B in

[0029] Figure 5 is Figure 2 the structure schematic diagram of the temperature control mechanism in

[0030] Figure 6 is the overall schematic diagram of a 360-degree circulation fan with an intelligent temperature control system in the present application Figure 2 ;

[0031] Figure 7 is Figure 6 the exploded schematic diagram of the overall structure in

[0032] Figure 8 is Figure 7 the partial structure schematic diagram at C in

[0033] Figure 9 is Figure 8 the partial structure schematic diagram at D in

[0034] Figure 10 is Figure 9 a schematic diagram of the overall structure of the middle rod assembly;

[0035] Figure 11 is Figure 9 a schematic diagram of the overall structure of the middle control assembly;

[0036] Among them, the reference numerals in the figure are as follows:

[0037] 1. Chassis; 11. First filter screen; 12. Upper cover; 121. First air window;

[0038] 2. Blowing mechanism; 21. Rear cover; 211. Connecting seat; 22. Front cover; 221. Air net; 23. Connecting shaft;

[0039] 3. Circulation mechanism; 31. Bracket; 32. Motor; 33. First gear; 34. Second gear;

[0040] 4. Temperature control mechanism; 41. Shell; 42. Air outlet; 43. Copper tube; 44. Fins; 45. Liquid inlet; 46. Liquid outlet;

[0041] 5. Shielding mechanism; 51. Wind cap; 52. Baffle; 522. Second air window; 53. Ventilation plate; 54. Slide rail; 55. Slide block; 56. Spring;

[0042] 6. Rod assembly; 61. Base body; 62. Rod body; 63. Sphere;

[0043] 7. Control assembly; 71. Control board; 72. First slideway; 73. Second slideway; 74. Third slideway; 75. Fourth slideway; 76. Fifth slideway; 77. First vertex; 78. Second vertex; 79. Third vertex. Specific embodiments

[0044] It should be noted that, without conflict, the embodiments in the present application and the features in the embodiments may be combined with each other. The following will describe the present application in detail with reference to the drawings and in combination with the embodiments.

[0045] In order to enable those skilled in the art to better understand the solution of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments in the present application without creative efforts shall fall within the protection scope of the present application.

[0046] Embodiment 1:

[0047] This embodiment mainly elaborates on the basic structure and working principle of a 360-degree circulating fan with an intelligent temperature control system. Specifically:

[0048] As Figures 1 - 3 shown, the present application provides a 360-degree circulating fan with an intelligent temperature control system, including a chassis 1. The chassis 1 serves as the supporting main body of the circulating fan and is generally placed on a desktop or tabletop to support the overall circulating fan;

[0049] At the same time, the inside of the chassis 1 is hollow and forms a cavity (not marked in the figure). This cavity is used to place the electrical components and their accessories that drive the circulating fan to work. And a top cover 12 is covered on the chassis 1. Thus, under the cover of the top cover 12, the cavity forms a relatively enclosed space to protect the electrical components inside the cavity;

[0050] Continuing to refer to Figures 1 - 3 , a blowing mechanism 2 is provided on the top cover 12. The blowing mechanism 2 includes a rear cover 21 installed on the top cover 12. The shape of the rear cover 21 can be set according to actual needs and is not limited to a specific shape. As a preferred implementation of this embodiment, the rear cover 21 is selected as a spherical shape, an ellipsoidal shape, or a spherical or ellipsoidal shape with a part cut off. Optimally, in order to present the best swinging effect, the rear cover 21 is selected as a hemispherical or semi-ellipsoidal shape. As for the cut surface, it can be set as a flat surface, an arc surface, or an irregular surface according to the use results or for the pursuit of aesthetic effects;

[0051] In this embodiment, the rear cover 21 is hemispherical. At the same time, a front cover 22 is installed on the hemispherical cut surface of the rear cover 21. A receiving space is formed between the front cover 22 and the rear cover 21. A fan blade (not marked in the figure) is arranged inside the receiving space;

[0052] It can be understood that the fan blade can rotate under the action of a rotating device to achieve the effect of air supply. More preferably, a wind net 221 is provided on the front cover 22 (refer to Figure 6 ) to guide the air flow;

[0053] The rotating device includes a rotating motor installed on the rear cover 21 and a fan shaft installed at the output end of the rotating motor. The fan shaft is connected to the fan blade. Thus, the start of the rotating motor drives the fan blade to rotate and supply air. In this embodiment, the rotating motor is arranged outside the rear cover 21 or arranged in the receiving space. Optimally, both the rotating motor and the fan shaft are arranged in the receiving space;

[0054] Furthermore, the fan shaft passes through the center of the sphere of the rear cover 21 and is perpendicular to the cut surface. At this time, the fan blade is in a direction parallel to the cut surface, so as to form vertical air supply;

[0055] As Figures 1 - 3As shown, a connecting seat 211 is fixedly arranged on the rear cover 21. A connecting shaft 23 is fixedly installed on the connecting seat 211. The connecting shaft 23 is installed on the upper cover 12 by bearings and is adapted to rotate under drive, thereby driving the rear cover 21 to rotate synchronously;

[0056] The included angle (defined as β) between the fan shaft and the connecting shaft 23 can be arbitrarily selected within 0 to 90°. Preferably, 10° < β < 80°; more preferably, 30° < β < 60°; most preferably, β is 45°;

[0057] It can be understood that the axis lines of the fan shaft and the connecting shaft 23 can be arranged in different planes, and a 360-degree three-dimensional swinging effect can also be achieved. However, in order to make the structure of the circulation fan stable or to seek structural or visual harmony, in the best embodiment, the axis lines of the fan shaft and the connecting shaft 23 are arranged in the same plane, and both pass through the center of the sphere of the rear cover 21;

[0058] In this embodiment, the driving connecting shaft 23 to rotate is a circulation mechanism 3. The circulation mechanism 3 includes a bracket 31 fixedly installed at the bottom of the upper cover 12. A motor 32 is fixedly installed on the bracket 31. A first gear 33 is fixedly installed at the output end of the motor 32. And a second gear 34 is fixedly installed at the bottom of the connecting shaft 23. The second gear 34 meshes with the first gear 33. Thus, when the motor 32 works, it can drive the connecting shaft 23 to rotate, and further drive the rear cover 21 to rotate synchronously;

[0059] It can be understood that when the rotating device and the circulation mechanism 3 are started, the first rotating device drives the fan blades to rotate on the axis perpendicular to the fan shaft. At the same time, the second rotating device drives the connecting shaft 23 to rotate and drives the rear cover 21 to start rotating;

[0060] During the process of the rear cover 21 rotating around the connecting shaft 23, the section plane of the rear cover 21 will rotate synchronously around the extension line of the axis of the connecting shaft 23 and rotate 360 degrees in space, thereby realizing a 360-degree air supply effect.

[0061] In order to adjust the air supply temperature of the circulation fan, as Figure 2 and Figures 4 - 5 shown, a temperature control mechanism 4 is arranged inside the cavity of the chassis 1. The temperature control mechanism 4 is used to adjust the temperature of the air flow inhaled by the circulation fan so that the air blown out by the circulation fan can change the temperature. Specifically:

[0062] The temperature control mechanism 4 includes a housing 41 fixedly installed at the bottom of the upper cover 12. The housing 41 is completely open at one end. For the convenience of description, the completely open end of the housing 41 is defined as the open end. And an air outlet 42 is arranged opposite to the open end. Thus, the air flow can enter the inside of the housing 41 from the open end and then be led out through the air outlet 42;

[0063] Meanwhile, a through first air window 121 is provided on the upper cover 12, and the first air window 121 is correspondingly arranged with the air outlet 42, so that the air flow led out from the air outlet 42 can penetrate through the first air window 121 and reach the back of the rear cover 21;

[0064] It can be understood that when the circulation fan starts to work, through the rotation of the fan blades, the air flow on the back of the rear cover 21 can be sucked in and blown to the front of the fan blades to achieve the effect of air supply. Therefore, the air flow that reaches the back of the rear cover 21 through the inside of the housing 41 can be supplied with air through the fan blades;

[0065] In order to change the temperature of the air flow passing through the housing 41, so as to change the temperature of the air supply by the fan blades, as Figure 5 shown, a plurality of groups of fins 44 are arranged in an array inside the housing 41. A copper pipe 43 vertically penetrates through the fins 44. The copper pipe 43 is a completely through pipe and is uniformly arranged in an S shape on the fins 44, so that the copper pipe 43 can have a large area of contact with the fins 44;

[0066] Meanwhile, one end of the copper pipe 43 is provided with a liquid inlet 45, and the other end of the copper pipe 43 is provided with a liquid outlet 46, so that the coolant can be introduced from the liquid inlet 45 of the copper pipe 43 and led out from the liquid outlet 46. When the coolant flows through the copper pipe 43, it will perform heat exchange with the fins 44 in contact therewith, thereby changing the temperature of the fins 44;

[0067] It can be understood that there are gaps for the air flow to pass through between the multiple groups of fins 44. Thus, when the gas flows through the fins 44, it can perform heat exchange with the fins 44 whose temperature has changed, thereby changing the temperature of the air flow. Furthermore, the temperature of the air flow introduced by the fan blades is changed to achieve the purpose of intelligent temperature control. And when the air flow passes through the cavity inside the chassis 1, it can cool the electrical components inside to a certain extent, which is beneficial to extending the service life of the circulation fan.

[0068] It should be noted that the coolant is generally generated by external accessory equipment and is generally arranged at a place far from the circulation fan to prevent the influence of noise.

[0069] Embodiment 2:

[0070] During the use of the circulation fan, due to different experiences of different users, sometimes it is not necessary to adjust the temperature of the circulation fan, and only natural wind is needed. However, at this time, since the first air window 121 is always in an open state, the air flow will still pass through the cavity inside the chassis 1 and reach the rear of the rear cover 21, so that a large amount of dust and impurities will remain inside the chassis 1, which will affect the normal operation of the circulation fan;

[0071] To solve the above problems, as Figures 1 - 2 shown, a window (not marked in the figure) is provided on one side of the chassis 1, and a first filter screen 11 is installed at the position of the window. Thus, through the function of the first filter screen 11, dust and impurities can be blocked outside the chassis 1, and further, the electrical components inside the cavity can be protected;

[0072] To further improve the protection of the electrical components inside the cavity, as Figures 6 - 8 shown, a shielding mechanism 5 is provided on the upper cover 12. The shielding mechanism 5 includes a wind cap 51 fixedly installed on the first air window 121. The wind cap 51 protrudes from the surface of the upper cover 12 and is provided with a protruding end. The protruding end is made of a flexible material and has a certain elasticity, so that the protruding end can contract under the action of an external force;

[0073] At the same time, a slide rail 54 is provided on the upper cover 12. A slider 55 is slidably arranged on the slide rail 54. A shielding plate 52 is fixedly installed on the slider 55. A second air window 522 is provided on one side of the shielding plate 52, and a ventilation plate 53 is provided on the second air window 522. It can be understood that one side of the second air window 522 on the shielding plate 52 is in a closed state. For the convenience of description, the closed end of the shielding plate 52 can be defined as the closed end. Thus, the shielding plate 52 can move along with the slider 55 on the slide rail 54 so that the position of the second air window 522 is aligned with the position of the wind cap 51, in order to export the air flow inside the cavity of the chassis 1 to the position of the rear cover 21, and the shielding plate 52 can also slide to the position where the closed end is aligned with the first air window 121, in order to close the first air window 121 to prevent the operation of the circulation fan from affecting the inside of the cavity of the chassis 1;

[0074] To control the position of the shielding plate 52, as Figures 8 - 11 shown, a control component 7 is provided on the upper cover 12, and a rod component 6 is installed at the bottom of the shielding plate 52. The rod component 6 is adapted to cooperate with the control component 7 to control the position of the shielding plate 52;

[0075] The control component 7 includes a control board 71 fixedly installed on the upper cover 12. A first slideway 72 parallel to the slide rail 54 is provided on the control board 71. At the same time, the rod component 6 includes a seat body 61 fixedly installed at the bottom of the shielding plate 52. A rod body 62 is hinged to the seat body 61. Thus, the rod body 62 is adapted to rotate horizontally around the seat body 61, and a sphere 63 is fixedly installed at the end of the rod body 62 away from the seat body 61. The sphere 63 has a certain elasticity. In the initial state, the sphere 63 is located inside the first slideway 72;

[0076] Meanwhile, an inclined second slideway 73 is arranged on the control board 71. The starting end of the second slideway 73 is communicated with the end of the first slideway 72, and the bottom position of the second slideway 73 is lower than the bottom position of the first slideway 72, so that the sphere 63 is adapted to enter the second slideway 73 from the first slideway 72, but cannot return from the second slideway 73 to the first slideway 72;

[0077] Meanwhile, a third slideway 74 is communicated with the end of the second slideway 73. The third slideway 74 is a retracting slideway, and the bottom position of the third slideway 74 is lower than the position of the second slideway 73, so that the sphere 63 is adapted to enter the third slideway 74 from the second slideway 73, but cannot return from the third slideway 74 to the second slideway 73. And a first vertex 77 is formed at the communication position of the second slideway 73 and the third slideway 74, and the first vertex 77 is located inside the third slideway 74;

[0078] And a fourth slideway 75 is communicated with the end of the third slideway 74. The fourth slideway 75 is a forward slideway, and the bottom position of the fourth slideway 75 is lower than the bottom position of the third slideway 74, so that the sphere 63 is adapted to enter the fourth slideway 75 from the third slideway 74, but cannot return from the fourth slideway 75 to the third slideway 74. And a second vertex 78 is formed at the communication position of the third slideway 74 and the fourth slideway 75, and the second vertex 78 is located in the fourth slideway 75;

[0079] It should be noted that a spring 56 is fixedly installed between the upper cover 12 and the shielding plate 52. The spring 56 makes the closed end on the shielding plate 52 cover the position of the first air window 121 in the initial state, and the spring 56 is adapted to be stretched so that the position of the ventilation plate 53 covers the position of the first air window 121;

[0080] To sum up, in the initial state, the sphere 63 is located inside the first slideway 72, and at the same time, the closed end on the shielding plate 52 covers the position of the first air window 121. At this time, the circulating fan supplies air through natural wind;

[0081] When it is necessary to adjust the air supply temperature of the circulating fan, push the shielding plate 52 so that the position of the ventilation plate 53 approaches the position of the first air window 121. During the movement of the shielding plate 52, synchronously drive the rod assembly 6 fixed thereto, and then drive the sphere 63 to enter the second slideway 73 from the first slideway 72 until the sphere 63 reaches the first vertex 77. At this time, the sphere 63 cannot move further, and then the shielding plate 52 is restricted;

[0082] After the resistance is felt, the pushing of the baffle 52 is released. At this time, the baffle 52 retracts under the action of the spring 56, and the sphere 63 moves along the third slideway 74 to the position of the second vertex 78. At this time, since the sphere 63 is blocked by the second vertex 78, the baffle 52 is stabilized at this position, and this position is the position where the ventilation plate 53 covers the first air window 121. At this time, the circulation fan can introduce the air flow inside the chassis 1 to adjust the temperature of the air flow blown out by the circulation fan;

[0083] To reset the baffle 52, as Figure 11 shown, a fifth slideway 76 is connected to the end of the fourth slideway 75. The end of the fifth slideway 76 is connected to the first slideway 72. The fifth slideway 76 is divided into a first section connected to the fourth slideway 75 and a second section connected to the first slideway 72. The bottom position of the first section is lower than the bottom position of the fourth slideway 75, so that the sphere 63 is adapted to enter the first section of the fifth slideway 76 from the fourth slideway 75 and cannot return from the first section to the fourth slideway 75. And a third vertex 79 is provided at the connection between the fourth slideway 75 and the first section. The third vertex 79 is located within the first section;

[0084] At the same time, the bottom position of the second section is higher than the bottom position of the first slideway 72, and a step is formed between the two, so that the sphere 63 is adapted to enter the first slideway 72 from the second section of the fifth slideway 76 and cannot return from the first slideway 72 to the second section;

[0085] There is a transition slope (not marked in the figure) between the first section and the second section, so that the sphere 63 can smoothly enter the second section from the first section;

[0086] In summary, when it is necessary to reset the baffle 52, press the baffle 52 again and stretch the spring 56. At this time, the sphere 63 moves from the position of the second vertex 78 to the position of the third vertex 79. When the resistance is felt again, release the baffle 52. At this time, the baffle 52 retracts under the restoring force of the spring 56, and the sphere 63 enters the first slideway 72 along the fifth slideway 76 to complete the reset of the sphere 63, and then the baffle 52 is reset.

[0087] The above description is only the preferred embodiment of the present application and is not intended to limit the present application. For those skilled in the art, various changes and modifications can be made to the present application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A 360-degree circulation fan with an intelligent temperature control system, characterized in that: include: A chassis (1), the interior of the chassis (1) is hollow and forms a cavity; An upper cover (12), the upper cover (12) covering the bottom plate (1), the upper cover (12) being provided with a first wind window (121); A hair dryer structure (2), the hair dryer structure (2) being mounted on the upper cover (12); A circulation mechanism (3), which is installed inside the cavity and is used to drive the hair blowing mechanism (2) to rotate 360 ​​degrees; A temperature control mechanism (4), which is installed inside the cavity, and comprises: A shell (41), the shell (41) being mounted on the upper cover (12), one end of the shell (41) being open and forming an open end, an air outlet (42) being arranged opposite the open end, the air outlet (42) corresponding to the first wind window (121); at least two groups of fins (44), the fin (44) array being arranged inside the housing (41), and gaps being provided between the fins (44) for airflow to pass through; A copper tube (43) is provided on the fin (44), and the copper tube (43) has a liquid inlet (45) and a liquid outlet (46) for introducing and discharging cooling liquid.

2. The 360-degree circulation fan with an intelligent temperature control system according to claim 1, characterized in that: The hair dryer mechanism (2) comprises a rear cover (21) mounted on the upper cover (12), the rear cover (21) being hemispherical, a front cover (22) being mounted on the hemispherical section of the rear cover (21), a containing space being formed between the front cover (22) and the rear cover (21), a fan blade being arranged inside the containing space, the fan blade being adapted to rotate under the action of the rotating device; The rotating device comprises a rotating motor mounted on the rear cover (21) and a fan shaft mounted on the output end of the rotating motor, wherein the fan shaft is connected to the fan blades.

3. The 360-degree circulation fan with an intelligent temperature control system according to claim 2, characterized in that: A connecting seat (211) is fixedly provided on the rear cover (21), a connecting shaft (23) is installed on the connecting seat (211), and a bearing of the connecting shaft (23) is installed on the upper cover (12); The circulation mechanism (3) comprises a bracket (31) fixedly mounted on the bottom of the upper cover (12); a motor (32) is fixedly mounted on the bracket (31); a first gear (33) is fixedly mounted on the output end of the motor (32); a second gear (34) is fixedly mounted on the bottom of the connecting shaft (23); and the second gear (34) is meshed with the first gear (33).

4. The 360-degree circulation fan with an intelligent temperature control system according to claim 3, characterized in that: The axis lines of the fan shaft and the connecting shaft (23) are arranged in the same plane, and both pass through the spherical center of the rear cover (21).

5. The 360-degree circulation fan with an intelligent temperature control system according to claim 4, characterized in that: A window is provided on one side of the chassis (1), and a first filter (11) is installed at the position of the window.

6. The 360-degree circulation fan with intelligent temperature control system according to claim 5, characterized in that: The upper cover (12) is provided with a shielding mechanism (5), the shielding mechanism (5) comprising a hood (51) fixedly mounted on the first wind window (121), the hood (51) protruding from the surface of the upper cover (12) and provided with a protruding end, the protruding end being made of a flexible material and having a certain elasticity; The upper cover (12) is provided with a slide rail (54), a slider (55) is slidably provided on the slide rail (54), a shielding plate (52) is fixedly mounted on the slider (55), a second wind window (522) is provided on one side of the shielding plate (52), a ventilation plate (53) is provided on the second wind window (522), and a side of the shielding plate (52) located at the second wind window (522) is a closed end.

7. The 360-degree circulation fan with intelligent temperature control system according to claim 6, characterized in that: The upper cover (12) is provided with a control assembly (7), and the bottom of the shielding plate (52) is installed with a rod assembly (6), and the rod assembly (6) is suitable for cooperating with the control assembly (7) to control the position of the shielding plate (52).

8. The 360-degree circulation fan with intelligent temperature control system according to claim 7, characterized in that: The control assembly (7) comprises a control panel (71) fixedly mounted on the upper cover (12), and the control panel (71) is provided with a first slideway (72) parallel to the slideway (54); The rod assembly (6) comprises a seat body (61) fixedly mounted on the bottom of the shielding plate (52), a rod body (62) being hinged on the seat body (61), a sphere (63) being fixedly mounted on one end of the rod body (62) away from the seat body (61), and the sphere (63) having a certain elasticity.

9. The 360-degree circulation fan with intelligent temperature control system according to claim 8, characterized in that: The control panel (71) is provided with an inclined second slideway (73), the starting end of the second slideway (73) is connected to the end of the first slideway (72), and the groove bottom position of the second slideway (73) is lower than the groove bottom position of the first slideway (72); The end of the second slideway (73) is connected to the third slideway (74), the third slideway (74) is a retracted slideway, the groove bottom position of the third slideway (74) is lower than the position of the second slideway (73), and the connection point between the second slideway (73) and the third slideway (74) forms a first vertex (77), and the first vertex (77) is located inside the third slideway (74); The end of the third slideway (74) is connected to a fourth slideway (75), the fourth slideway (75) is a forward slideway, the groove bottom position of the fourth slideway (75) is lower than the groove bottom position of the third slideway (74), the connection between the third slideway (74) and the fourth slideway (75) forms a second vertex (78), and the second vertex (78) is located in the fourth slideway (75); A spring (56) is fixedly installed between the upper cover (12) and the shielding plate (52).

10. The 360-degree circulation fan with intelligent temperature control system according to claim 9, characterized in that: The end of the fourth slideway (75) is connected to the fifth slideway (76), and the end of the fifth slideway (76) is connected to the first slideway (72). The fifth slideway (76) is divided into a first section connected to the fourth slideway (75) and a second section connected to the first slideway (72), wherein the groove bottom position of the first section is lower than the groove bottom position of the fourth slideway (75), and a third vertex (79) is provided at the connection between the fourth slideway (75) and the first section, and the third vertex (79) is located in the first section; The groove bottom position of the second section is higher than the groove bottom position of the first slideway (72) and forms a step; There is a transition slope between the first section and the second section.

Citation Information

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