A 360-degree circulating fan with intelligent temperature control system

By introducing a temperature control and shielding mechanism into the 360-degree circulating fan, the problem of unadjustable air supply temperature is solved, achieving intelligent temperature control and electrical protection, and extending the fan's service life.

CN120140255BActive Publication Date: 2025-12-05GUANGDONG UNIQUE ELECTRICAL
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Patent Information

Application Number
CN202510479346.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-04-16
Publication Date
2025-12-05
Estimated Expiration
2045-04-16

AI Technical Summary

Technical Problem

The existing 360-degree circulating fan cannot adjust the air supply temperature according to the needs of different people and environments, which makes it inconvenient to use.

Method used

A 360-degree circulating fan with an intelligent temperature control system was designed. By setting a temperature control mechanism and a shielding mechanism inside the fan, the air supply temperature can be adjusted and protected. Copper tubes and fins are used to regulate the airflow temperature, and manual state switching is achieved through control components and rod components.

Benefits of technology

It enables the adjustment of the air supply temperature according to different needs, extends the service life of the fan, and protects the internal electrical components of the fan during natural air supply, avoiding the need for additional electrical control equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a 360-degree circulating fan with an intelligent temperature control system and belongs to the technical field of circulating table fans. Mainly comprising a chassis, the inside of the chassis is hollowly arranged and forms a cavity; a top cover is covered on the chassis, a first air window is formed on the top cover; a blowing mechanism is installed on the top cover; a circulating mechanism and a temperature control mechanism are installed in the cavity, the temperature control mechanism comprises a shell installed on the top cover, one end of the shell is provided with an open end, and the opposite side of the open end is provided with an air outlet corresponding to the first air window; a plurality of groups of fins are arranged in the shell in an array, gaps for airflow passing through are formed between the fins; a copper pipe is arranged on the fins, and the copper pipe is provided with a liquid inlet and a liquid outlet. The 360-degree circulating fan with the intelligent temperature control system can adjust the temperature of the airflow introduced into the circulating fan, and then the airflow is blown out through the circulating fan, so that the temperature of the airflow sent by the circulating fan is adjusted.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of circulating table fans, and particularly relates to a 360-degree circulating fan with an intelligent temperature control system. BACKGROUND

[0002] The 360-degree air supply fan refers to a fan type capable of supplying air in all directions and at multiple angles. The 60-degree air supply fan is a fan type gradually popularized in the market in recent years, and is loved by consumers due to its unique air supply mode and wide air supply range. The 60-degree air supply fan breaks the limitation of the traditional fan in single-direction air supply, and realizes the air supply effect in all directions and without dead angles through special design.

[0003] A table electric fan capable of three-dimensional head swinging is disclosed in Chinese Patent No. CN201382006Y, which comprises a base, a supporting shell and fan bodies rotatably installed on both sides of the supporting shell. The fan body comprises a motor, a fan blade and a mesh cover. The supporting shell is rotatably installed on the base, and a crank rocker mechanism for swinging the supporting shell left and right is arranged between the base and the supporting shell. Another crank rocker mechanism for swinging the fan body up and down is arranged between the supporting shell and the fan body. The table electric fan capable of three-dimensional head swinging can swing air supply left and right and up and down, and achieves the effect of comfortable air supply.

[0004] In the implementation of the above patent, the effect of swinging air supply is achieved, but 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 the background section is only used to understand the background of the present application, and therefore, it can contain information which does not constitute prior art. SUMMARY

[0006] Based on the above problems existing in the prior art, the present application aims to provide a 360-degree circulating fan with an intelligent temperature control system, which can change the air supply temperature according to the needs of different people and environment.

[0007] The technical scheme adopted by the present application to solve its technical problems is: a 360-degree circulating fan with an intelligent temperature control system, comprising a chassis, which is hollow inside and forms a cavity; a top cover, which is covered on the chassis, and a first air window is formed on the top cover; a blowing mechanism, which is installed on the top cover; a circulating mechanism, which is installed inside the cavity, for driving the blowing mechanism to rotate; a temperature control mechanism, which is installed inside the cavity, comprising: a shell, which is installed on the top cover, one end of the shell is open and forms an open end, and an air outlet is arranged opposite the open end, the air outlet corresponds to the first air window; at least two groups of fins, which are arranged inside the shell, and the fins have gaps for airflow; a copper pipe, which is arranged on the fins, and has a liquid inlet and a liquid outlet for introducing and discharging cooling liquid.

[0008] Further, the blowing mechanism comprises a rear cover installed on the top cover, the rear cover is hemispherical, and a front cover is installed on the hemispherical section of the rear cover, a containing space is formed between the front cover and the rear cover, and a fan blade is arranged inside the containing space, the fan blade is adapted to rotate under the action of a rotating device; the rotating device comprises a rotating motor installed on the rear cover and a fan shaft installed on the output end of the rotating motor, and the fan shaft is connected with 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 bearing-mounted on the top cover; the circulating mechanism comprises a bracket fixedly installed on the bottom of the top cover, a motor is fixedly installed on the bracket, a first gear is fixedly installed on the output end of the motor, a second gear is fixedly installed on the bottom of the connecting shaft, and the second gear is engaged with the first gear.

[0010] Further, the shaft center 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 top cover, the shielding mechanism comprises a hood fixedly installed on the first air window, the hood protrudes from the surface of the top cover and is provided with a protruding end, the protruding end is made of flexible material and has a certain elasticity; a sliding rail is arranged on the top cover, a sliding block is slidingly arranged on the sliding rail, a shielding plate is fixedly installed on the sliding block, a second air window is arranged on one side of the shielding plate, a ventilation plate is arranged on the second air window, and the side of the shielding plate located on the side of the second air window is a closed end.

[0013] Further, the upper cover is provided with a control assembly, the bottom of the shielding plate is provided with a rod assembly, the rod assembly is suitable for cooperating with the control assembly to control the position of the shielding plate.

[0014] Further, the control assembly comprises a control plate fixedly installed on the upper cover, the control plate is provided with a first sliding groove parallel to the sliding rail; the rod assembly comprises a seat body fixedly installed on the bottom of the shielding plate, the seat body is hingedly provided with a rod body, one end of the rod body away from the seat body is fixedly installed with a ball, the ball has a certain elasticity.

[0015] Further, the control plate is provided with an inclined second sliding groove, the starting end of the second sliding groove is communicated with the end of the first sliding groove, the groove bottom position of the second sliding groove is lower than that of the first sliding groove; the end of the second sliding groove is communicated with a third sliding groove, the third sliding groove is a back sliding groove, the groove bottom position of the third sliding groove is lower than that of the second sliding groove, the communication part of the second sliding groove and the third sliding groove forms a first vertex, the first vertex is located in the third sliding groove; the end of the third sliding groove is communicated with a fourth sliding groove, the fourth sliding groove is a forward sliding groove, the groove bottom position of the fourth sliding groove is lower than that of the third sliding groove, the communication part of the third sliding groove and the fourth sliding groove forms a second vertex, the second vertex is located in the fourth sliding groove;

[0016] The spring is fixedly installed between the upper cover and the shielding plate.

[0017] Further, the end of the fourth sliding groove is communicated with a fifth sliding groove, the end of the fifth sliding groove is communicated with the first sliding groove, the fifth sliding groove is divided into a first section communicated with the fourth sliding groove and a second section communicated with the first sliding groove, the groove bottom position of the first section is lower than that of the fourth sliding groove, the third vertex is arranged at the connection part of the fourth sliding groove and the first section, the third vertex is located in the first section; the groove bottom position of the second section is higher than that of the first sliding groove and forms a step; the first section and the second section have a transition slope.

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

[0019] 1. The temperature of the air flow introduced into the circulating fan can be adjusted through the temperature control mechanism, and then blown out through the circulating fan, so as to adjust the temperature of the air flow sent by the circulating fan, and the air flow introduced from the inside of the circulating fan can cool the electrical components inside to a certain extent, thereby prolonging the service life of the circulating fan.

[0020] 2. By setting up a shielding mechanism, the circulating fan can switch between temperature control and natural airflow, and at the same time, the internal parts of the circulating fan can be protected when natural airflow is used.

[0021] 3. By incorporating control components and lever components, the state of the circulating fan can be easily switched manually, avoiding the need for additional electrical control equipment and thus extending the service life of the circulating fan.

[0022] In addition to the purposes, features, and advantages described above, this application has other purposes, features, and advantages. A further detailed description of this application will be provided below with reference to the figures. Attached Figure Description

[0023] The accompanying drawings, which form part of this application, are used to provide a further understanding of this application. The illustrative embodiments of this application and their descriptions are used to explain this application and do not constitute an undue limitation of this application.

[0024] In the attached diagram:

[0025] Figure 1 This is a schematic diagram of a 360-degree circulating fan with an intelligent temperature control system according to this application. Figure 1 ;

[0026] Figure 2 for Figure 1 Exploded view of the overall structure;

[0027] Figure 3 for Figure 2 A partial structural diagram at point A in the middle;

[0028] Figure 4 for Figure 2 Schematic diagram of the partial structure at point B;

[0029] Figure 5 for Figure 2 Schematic diagram of the medium temperature control mechanism;

[0030] Figure 6 This is a schematic diagram of a 360-degree circulating fan with an intelligent temperature control system according to this application. Figure 2 ;

[0031] Figure 7 for Figure 6 Exploded view of the overall structure;

[0032] Figure 8 for Figure 7 A schematic diagram of the partial structure at point C;

[0033] Figure 9 for Figure 8 A schematic diagram of the partial structure at point D;

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

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

[0036] In the drawings, various reference signs refer to:

[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 screen; 23, connecting shaft;

[0039] 3, circulating mechanism; 31, support; 32, motor; 33, first gear; 34, second gear;

[0040] 4, temperature control mechanism; 41, shell; 42, air outlet; 43, copper pipe; 44, fin; 45, liquid inlet; 46, liquid outlet;

[0041] 5, shielding mechanism; 51, air cap; 52, shielding plate; 522, second air window; 53, ventilation plate; 54, slide rail; 55, sliding block; 56, spring;

[0042] 6, rod assembly; 61, seat body; 62, rod body; 63, ball body;

[0043] 7, control assembly; 71, control board; 72, first slide; 73, second slide; 74, third slide; 75, fourth slide; 76, fifth slide; 77, first apex; 78, second apex; 79, third apex. DETAILED DESCRIPTION

[0044] It should be noted that the embodiments in the present application and the features in the embodiments can be combined with each other without conflict. The technical solutions in the embodiments of the present application will be described in detail below 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 present application, the technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, not all. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor should be within the scope of protection of the present application.

[0046] Embodiment one:

[0047] The embodiment mainly illustrates the basic structure and working principle of the 360-degree circulating fan with intelligent temperature control system, in particular:

[0048] As shown in Figures 1-3 , the application provides a 360-degree circulating fan with intelligent temperature control system, which comprises a chassis 1 serving as a supporting main body of the circulating fan and generally placed on a desktop or countertop to support the whole circulating fan;

[0049] Meanwhile, the inside of the chassis 1 is hollow and forms a cavity (not marked in the figure) for placing electrical elements and their accessories for driving the circulating fan to work, and the chassis 1 is covered with an upper cover 12, so that the cavity forms a relatively closed space under the covering of the upper cover 12 to protect the electrical elements inside the cavity;

[0050] Continuing to refer to Figures 1-3 , a blowing mechanism 2 is arranged on the upper cover 12, which comprises a rear cover 21 mounted on the upper 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 embodiment of the present embodiment, the rear cover 21 is selected to be spherical, ellipsoidal, or spherical or ellipsoidal with a part cut off. Most preferably, in order to achieve the best spinning effect, the rear cover 21 is selected to be hemispherical or hemi-ellipsoidal. As for the cutting surface, it can be set to be a plane, arc surface or irregular surface according to the use result or for the purpose of pursuing aesthetic effect;

[0051] In the present embodiment, the rear cover 21 is hemispherical, and a front cover 22 is mounted on the cutting surface of the hemispherical rear cover 21. The front cover 22 and the rear cover 21 form a containing space, and the inside of the containing space is provided with a fan blade (not marked in the figure);

[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 (refer to Figure 6 ) is arranged on the front cover 22 to guide the airflow;

[0053] 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, and the fan shaft is connected with the fan blade, so that the start of the rotating motor drives the fan blade to rotate and supply air. In the present embodiment, the rotating motor is arranged outside the rear cover 21 or in the containing space. Most preferably, the rotating motor and the fan shaft are both arranged in the containing space;

[0054] Further, the fan shaft passes through the center of the rear cover 21 and is arranged perpendicularly to the cutting surface, so that the fan blade is in a direction parallel to the cutting surface, thereby forming vertical air supply;

[0055] As shown in Figures 1-3As shown, a connecting seat 211 is fixedly arranged on the back cover 21, and a connecting shaft 23 is fixedly installed on the connecting seat 211, the connecting shaft 23 is bearingly installed on the upper cover 12 and is adapted to rotate under the driving so as to drive the back 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 0-90°, preferably 10°<β<80°; more preferably 30°<β<60°, and most preferably β is 45°;

[0057] It can be understood that the axial lines of the fan shaft and the connecting shaft 23 can be arranged in different planes, and can also have a 360-degree three-dimensional rotary swing effect. However, in order to make the circulating fan structure stable, or to seek structural or visual harmony, in the best embodiment, the axial 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 back cover 21;

[0058] In the embodiment, the circulating mechanism 3 drives the connecting shaft 23 to rotate, the circulating mechanism 3 includes a bracket 31 fixedly installed on the bottom of the upper cover 12, a motor 32 fixedly installed on the bracket 31, a first gear 33 fixedly installed on the output end of the motor 32, and a second gear 34 fixedly installed on the bottom of the connecting shaft 23, the second gear 34 is engaged with the first gear 33, so that when the motor 32 works, the connecting shaft 23 can be driven to rotate, and in turn the back cover 21 is driven to rotate synchronously;

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

[0060] During the rotation of the back cover 21 around the connecting shaft 23, the tangent plane of the back cover 21 rotates synchronously around the axial extension line of the connecting shaft 23 and rotates 360 degrees in space, thereby realizing the 360-degree air supply effect.

[0061] In order to adjust the air supply temperature of the circulating fan, as shown in Figure 2 and Figures 4-5 As shown, a temperature control mechanism 4 is arranged inside the cavity of the bottom plate 1, the temperature control mechanism 4 is used for adjusting the temperature of the air flow sucked by the circulating fan, so that the air blown by the circulating fan can change the temperature, specifically:

[0062] The temperature control mechanism 4 includes an outer shell 41 fixedly installed on the bottom of the upper cover 12, the outer shell 41 is completely open at one end, for the sake of convenience, the end of the outer shell 41 which is completely open is defined as the open end, and the opposite end of the open end is provided with an air outlet 42, so that the air flow can enter the inside of the outer shell 41 from the open end, and then the air flow is discharged through the air outlet 42;

[0063] Meanwhile, a through first air window 121 is provided on the upper cover 12, which is corresponding to the air outlet 42, so that the airflow from the air outlet 42 can pass through the first air window 121 and reach the back of the rear cover 21.

[0064] It is understandable that when the circulating fan starts working, the rotation of the fan blades can draw in the airflow from the back of the rear cover 21 and blow it to the front of the fan blades to achieve the effect of air delivery. Therefore, the airflow that passes through the inside of the outer casing 41 to the back of the rear cover 21 can be delivered by the fan blades.

[0065] In order to change the temperature of the airflow passing through the casing 41, thereby changing the temperature of the air delivered by the fan blades, such as... Figure 5 As shown, multiple sets of fins 44 are arranged in an array inside the outer shell 41. A copper tube 43 is vertically inserted through the fin 44. The copper tube 43 is a completely continuous pipe and is evenly arranged in an S-shape on the fin 44, so that the copper tube 43 can make a large-area contact with the fin 44.

[0066] Meanwhile, one end of the copper tube 43 is provided with an inlet 45, and the other end of the copper tube 43 is provided with an outlet 46, so that coolant can be introduced from the inlet 45 of the copper tube 43 and discharged from the outlet 46. When the coolant flows through the copper tube 43, it will exchange heat with the fins 44 in contact with it, thereby changing the temperature of the fins 44.

[0067] It is understandable that there are gaps between the multiple sets of fins 44 for airflow to pass through. When the gas flows through the fins 44, it can exchange heat with the fins 44, which change the temperature, thereby changing the temperature of the airflow. This, in turn, changes the temperature of the airflow introduced by the fan blades, achieving the purpose of intelligent temperature control. Furthermore, when the airflow passes through the cavity inside the chassis 1, it can cool down the internal electrical components to a certain extent, which helps to extend the life of the circulating fan.

[0068] It should be noted that the coolant is generally generated by external auxiliary equipment and is usually located far away from the circulating fan to prevent noise interference.

[0069] Example 2:

[0070] During the use of the circulating fan, due to different user experiences, sometimes it is not necessary to adjust the temperature of the circulating fan and only natural wind is needed. However, since the first air window 121 is always open, the airflow will still pass through the cavity inside the chassis 1 to reach the back cover 21, which will cause a lot of dust and impurities to accumulate inside the chassis 1, thus affecting the normal operation of the circulating fan.

[0071] To solve the above problems, such as Figures 1-2 As shown, a window (not shown in the figure) is provided on one side of the chassis 1. A first filter 11 is installed at the position of the window. Through the function of the first filter 11, dust and impurities can be blocked outside the chassis 1, thereby protecting the electrical components inside the cavity.

[0072] To further enhance the protection of electrical components within the cavity, such as Figures 6-8 As 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 wind 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 retract under the action of external force.

[0073] Meanwhile, a slide rail 54 is provided on the upper cover 12, and a slider 55 is slidably provided on the slide rail 54. A baffle 52 is fixedly installed on the slider 55. A second air window 522 is provided on one side of the baffle 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 baffle 52 is in a closed state. For ease of explanation, the closed end of the baffle 52 can be defined as the closed end. Thus, the baffle 52 can move on the slide rail 54 with the slider 55 so that the position of the second air window 522 is aligned with the position of the hood 51, so as to guide the airflow in the cavity of the chassis 1 to the position of the rear cover 21. The baffle 52 can also slide to the position where the closed end is aligned with the first air window 121, so as to close the first air window 121 and prevent the operation of the circulating fan from affecting the cavity of the chassis 1.

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

[0075] The control assembly 7 includes a control plate 71 fixedly mounted on the upper cover 12. The control plate 71 is provided with a first slide rail 72 parallel to the slide rail 54. Meanwhile, the rod assembly 6 includes a seat 61 fixedly mounted on the bottom of the baffle plate 52. A rod 62 is hinged to the seat 61, so that the rod 62 is adapted to rotate around the seat 61 in the horizontal direction. A ball 63 is fixedly mounted on the end of the rod 62 away from the seat 61. The ball 63 has a certain elasticity. In the initial state, the ball 63 is located inside the first slide rail 72.

[0076] Meanwhile, the control plate 71 is provided with an inclined second slide 73, the starting end of the second slide 73 is communicated with the end of the first slide 72, and the groove bottom position of the second slide 73 is lower than that of the first slide 72, so that the ball 63 is adapted to enter the second slide 73 from the first slide 72, but cannot return to the first slide 72 from the second slide 73;

[0077] Meanwhile, the end of the second slide 73 is communicated with a third slide 74, the third slide 74 is a backslide, and the groove bottom position of the third slide 74 is lower than that of the second slide 73, so that the ball 63 is adapted to enter the third slide 74 from the second slide 73, but cannot return to the second slide 73 from the third slide 74, and a first apex 77 is formed at the communication between the second slide 73 and the third slide 74, the first apex 77 is located inside the third slide 74;

[0078] Meanwhile, the end of the third slide 74 is communicated with a fourth slide 75, the fourth slide 75 is an advanced slide, and the groove bottom position of the fourth slide 75 is lower than that of the third slide 74, so that the ball 63 is adapted to enter the fourth slide 75 from the third slide 74, but cannot return to the third slide 74 from the fourth slide 75, and a second apex 78 is formed at the communication between the third slide 74 and the fourth slide 75, the second apex 78 is located in the fourth slide 75;

[0079] It should be noted that the spring 56 is fixedly installed between the upper cover 12 and the shielding plate 52, which makes the closed end of 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 to make the position of the ventilation plate 53 cover the position of the first air window 121;

[0080] In summary, in the initial state, the ball 63 is located inside the first slide 72, and the closed end of the shielding plate 52 covers the position of the first air window 121, at this time, the circulating fan blows by natural wind;

[0081] When it is necessary to adjust the blowing temperature of the circulating fan, the shielding plate 52 is pushed to make the position of the ventilation plate 53 close to the position of the first air window 121, in the process of movement of the shielding plate 52, the rod assembly 6 fixedly connected therewith is synchronously driven to drive the ball 63 from the first slide 72 to the second slide 73, until the ball 63 reaches the first apex 77, at this time, the ball 63 cannot continue to move, thereby limiting the shielding plate 52;

[0082] When resistance is felt, the push on the baffle 52 is released. At this time, the baffle 52 retracts under the action of the spring 56, and the ball 63 moves along the third slide 74 to the position of the second vertex 78. Since the ball 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 circulating fan can introduce the airflow inside the chassis 1 to regulate the temperature of the airflow blown out by the circulating fan.

[0083] In order to reset the baffle 52, such as Figure 11 As shown, a fifth slide 76 is connected to the end of the fourth slide 75. The end of the fifth slide 76 is connected to the first slide 72. The fifth slide 76 is divided into a first section connected to the fourth slide 75 and a second section connected to the first slide 72. The bottom of the first section is lower than the bottom of the fourth slide 75, so that the sphere 63 is suitable to enter the first section of the fifth slide 76 from the fourth slide 75, but cannot return from the first section to the fourth slide 75. A third vertex 79 is provided at the connection between the fourth slide 75 and the first section. The third vertex 79 is located in the first section.

[0084] Meanwhile, the bottom of the second section is higher than the bottom of the first slide 72, forming a step between them, so that the sphere 63 is suitable to enter the first slide 72 from the second section of the fifth slide 76, but cannot return from the first slide 72 to the second section;

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

[0086] In summary, when it is necessary to reset the baffle plate 52, press the baffle plate 52 again and stretch the spring 56. At this time, the ball 63 moves from the position of the second vertex 78 to the position of the third vertex 79. When resistance is felt again, release the baffle plate 52. At this time, the baffle plate 52 retracts under the action of the restoring force of the spring 56, and the ball 63 enters the initial weight of the first slide 72 along the fifth slide 76, thus completely resetting the ball 63, thereby resetting the baffle plate 52.

[0087] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the protection scope of this application.

Claims

1. A 360-degree circulating fan with intelligent temperature control system, characterized by: The utility model relates to a hair dryer, including: The bottom disc (1) is hollow inside and forms a cavity; The upper cover (12) is closed on the bottom disc (1), and a first air window (121) is formed on the upper cover (12); The blowing mechanism (2) is installed on the upper cover (12); The circulating mechanism (3) is installed inside the cavity and is used for driving the blowing mechanism (2) to rotate 360 degrees; The temperature control mechanism (4) is installed inside the cavity, and the temperature control mechanism (4) includes: The shell (41) is installed on the upper cover (12), one end of the shell (41) is open and forms an open end, an air outlet (42) is arranged opposite the open end, and the air outlet (42) corresponds to the first air window (121); At least two groups of fins (44) are arranged inside the shell (41), and gaps are formed between the fins (44) for air flow; The copper pipe (43) is arranged on the fin (44), the copper pipe (43) has a liquid inlet (45) and a liquid outlet (46) for introducing and discharging cooling liquid; The upper cover (12) is provided with a shielding mechanism (5), the shielding mechanism (5) includes a cap (51) fixedly installed on the first air window (121), the cap (51) protrudes from the surface of the upper cover (12) and is provided with a protruding end, the protruding end is made of flexible material and has a certain elasticity; The upper cover (12) is provided with a sliding rail (54), a sliding block (55) is slidably arranged on the sliding rail (54), a shielding plate (52) is fixedly installed on the sliding block (55), one side of the shielding plate (52) is provided with a second air window (522), the second air window (522) is provided with a ventilation plate (53), and the other side of the shielding plate (52) is a closed end; The shielding plate (52) is adapted to slide to a position where the closed end is aligned with the first air window (121) to close the first air window (121).

2. A 360-degree circular fan with intelligent temperature control system as claimed in claim 1 wherein: The blowing mechanism (2) includes a rear cover (21) installed on the upper cover (12), the rear cover (21) is semispherical, a front cover (22) is installed on the semispherical surface of the rear cover (21), a containing space is formed between the rear cover (21) and the front cover (22), a fan blade is arranged inside the containing 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 (21) and a fan shaft connected with the fan blade and installed on the output end of the rotating motor.

3. A 360-degree oscillating fan with intelligent temperature control system as claimed in claim 2 wherein: A connecting seat (211) is fixedly arranged on the rear cover (21), a connecting shaft (23) is installed on the connecting seat (211), and the connecting shaft (23) is bearingly installed on the upper cover (12). The circulating mechanism (3) comprises a support (31) fixedly installed at the bottom of the upper cover (12), a motor (32) fixedly installed on the support (31), a first gear (33) fixedly installed at the output end of the motor (32), and a second gear (34) fixedly installed at the bottom of the connecting shaft (23), wherein the second gear (34) is engaged with the first gear (33).

4. A 360-degree circular fan with intelligent temperature control system as claimed in claim 3, wherein: The shaft center line 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. A 360-degree circular fan with intelligent temperature control system as claimed in claim 4, wherein: A window is arranged on one side of the bottom disc (1), and a first filter screen (11) is installed at the position of the window.

6. A 360-degree oscillating fan with intelligent temperature control system as claimed in claim 5 wherein: A control assembly (7) is arranged on the upper cover (12), and a rod assembly (6) is installed at the bottom of the shielding plate (52), wherein the rod assembly (6) is adapted to cooperate with the control assembly (7) to control the position of the shielding plate (52).

7. A 360-degree oscillating fan with intelligent temperature control system as claimed in claim 6 wherein: The control assembly (7) comprises a control plate (71) fixedly installed on the upper cover (12), wherein a first sliding groove (72) parallel to the sliding rail (54) is arranged on the control plate (71); The rod assembly (6) comprises a seat body (61) fixedly installed at the bottom of the shielding plate (52), wherein a rod body (62) is hingedly connected to the seat body (61), a spherical body (63) is fixedly installed at the end of the rod body (62) away from the seat body (61), and the spherical body (63) has a certain elasticity.

8. A 360-degree oscillating fan with intelligent temperature control system as claimed in claim 7, wherein: An inclined second sliding groove (73) is arranged on the control plate (71), wherein the starting end of the second sliding groove (73) is communicated with the end of the first sliding groove (72), and the groove bottom position of the second sliding groove (73) is lower than that of the first sliding groove (72); The end of the second sliding groove (73) is communicated with a third sliding groove (74), the third sliding groove (74) is a backtracking sliding groove, the groove bottom position of the third sliding groove (74) is lower than that of the second sliding groove (73), the communication part of the second sliding groove (73) and the third sliding groove (74) forms a first apex (77), and the first apex (77) is located in the third sliding groove (74); The end of the third sliding groove (74) is communicated with a fourth sliding groove (75), the fourth sliding groove (75) is an advancing sliding groove, the groove bottom position of the fourth sliding groove (75) is lower than that of the third sliding groove (74), the communication part of the third sliding groove (74) and the fourth sliding groove (75) forms a second apex (78), and the second apex (78) is located in the fourth sliding groove (75); A spring (56) is fixedly installed between the upper cover (12) and the shielding plate (52).

9. A 360-degree oscillating fan with intelligent temperature control system as claimed in claim 8, wherein: The end of the fourth slide (75) is communicated with a fifth slide (76), the end of the fifth slide (76) is communicated with the first slide (72), the fifth slide (76) is divided into a first section communicated with the fourth slide (75) and a second section communicated with the first slide (72), wherein the bottom position of the first section is lower than the bottom position of the fourth slide (75), the connection between the fourth slide (75) and the first section is provided with a third vertex (79), and the third vertex (79) is located in the first section; The bottom position of the second section is higher than the bottom position of the first slide (72) and forms a step; There is a transition slope between the first section and the second section.

Citation Information

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