Tracking type jet tuyere structure
By designing a tracking jet nozzle structure and using a servo motor to drive the jet nozzle body to perform multi-degree-of-freedom motion, the problem of inconvenient adjustment of the fan outlet angle is solved, realizing automatic adjustment and intelligent air supply control of the nozzle, meeting the air demand of the venue, and providing a comfortable temperature and humidity environment.
Patent Information
- Application Number
- CN202520050562.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-09
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2035-01-09
AI Technical Summary
The existing fan outlet structure cannot easily adjust the air angle, resulting in the inability to meet the air demand of the venue in a timely manner, and the inability to achieve intelligent adjustment of air supply and intelligent temperature control of the venue.
Design a tracking jet nozzle structure, including a jet nozzle cover, a jet nozzle body and a drive component. The jet nozzle body is driven by a servo motor to perform multi-degree-of-freedom motion in the inner cavity, realizing automatic adjustment of the air outlet. Combined with software and hardware, intelligent control of air delivery is achieved.
It enables convenient and efficient adjustment of the air outlet angle, which can meet the air demand of the venue in a timely manner, and achieve uniform temperature and humidity and human comfort adjustment through intelligent control.
Smart Images

Figure CN223677936U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to fan technical field especially relates to a tracking type jet air port structure. BACKGROUND
[0002] At present, the existing fan air outlet structure used in public places is usually fixedly arranged, blows hot air or cold air to the fixed direction through the air outlet, and the blowing angle of the air outlet needs to be manually rotated and screwed to realize the angle adjustment of the air outlet, which makes the angle adjustment of the air outlet not convenient and efficient, and the air demand in the place cannot be satisfied in time, and intelligent adjustment of air supply and intelligent temperature adjustment of the place cannot be realized. SUMMARY
[0003] The utility model discloses a tracking type jet air port structure which solves at least one technical problem in the background art.
[0004] To achieve the above-mentioned purpose, the utility model provides a tracking type jet air port structure, comprising:
[0005] The jet air port cover is provided with an inner cavity.
[0006] The jet air port body is movably arranged in the inner cavity of the jet air port cover.
[0007] The driving assembly is arranged on the inner wall of the inner cavity and connected with the outer wall of the jet air port body, and drives the jet air port body to move in multiple degrees of freedom inside the jet air port cover to adjust the position of the air outlet of the jet air port body.
[0008] According to one aspect of the utility model, the jet air port cover is a cylindrical barrel structure with open ends.
[0009] According to one aspect of the utility model, the jet air port body is an elliptical air duct with truncated ends.
[0010] According to one aspect of the utility model, the air port of the jet air port body is circular or rectangular.
[0011] According to one aspect of the utility model, the driving assembly comprises:
[0012] The servo motor;
[0013] The shaft coupling connects the output shaft of the servo motor.
[0014] The first gear is connected with the shaft coupling through a shaft.
[0015] The second gear is engaged with the first gear.
[0016] A main shaft, one end of which is connected with the center of the second gear;
[0017] A first worm wheel, which is installed at the other end of the main shaft;
[0018] A second worm wheel, which is engaged with the first worm wheel;
[0019] A third worm wheel, which is coaxially connected with the second worm wheel;
[0020] A worm, one end of which is engaged with the third worm wheel;
[0021] A universal joint hinge, which is arranged at the other end of the worm;
[0022] A linkage rod, one end of which is installed on the worm through the universal joint hinge;
[0023] A control hinge, which is installed on the outer wall of the jet air outlet body and connected with the other end of the linkage rod.
[0024] According to one scheme of the present application, the tracking type jet air outlet structure comprises: a jet air outlet cover, which is provided with an inner cavity; a jet air outlet body, which is movably arranged in the inner cavity of the jet air outlet cover; and a driving assembly, which is arranged on the inner wall of the inner cavity and connected with the outer wall of the jet air outlet body, and drives the jet air outlet body to move in multiple degrees of freedom inside the jet air outlet cover to adjust the position of the air outlet of the jet air outlet body. In this way, the jet air outlet body can be quickly driven by the driving assembly, the angle of the air outlet of the jet air outlet body can be automatically adjusted, the air supply in the place can be quickly met, and the air outlet of the jet air outlet body can be automatically controlled to facilitate intelligent control of air supply by cooperating with other software and hardware, for example, the temperature and humidity at each position in the place are different, in order to realize uniform temperature and humidity in the scene or bring comfortable temperature and humidity to the human body, the jet air outlet body can be driven by the driving assembly to blow cold air or hot air to each position in the scene, so that the scene can be quickly adjusted in temperature or the human body in the scene can be quickly adjusted in temperature, thereby realizing a comfortable state.
[0025] According to one scheme of the present application, the jet air outlet cover is a cylindrical barrel structure with open ends. In this way, the inner cavity has a cylindrical shape, the jet air outlet body can move in multiple degrees of freedom in the inner cavity with sufficient space, and the air outlet position of the jet air outlet body can be freely adjusted to ensure the accuracy of the air outlet position.
[0026] According to one scheme of the present application, the jet air outlet body is an elliptical air duct with truncated ends. In this way, the jet air outlet body can carry more air volume, the air speed and air pressure of the air outlet are more ideal, the air outlet can move freely in the inner cavity, precise movement can be realized, and the adjustment movement process is smooth and fast.
[0027] According to one embodiment of this utility model, the drive assembly includes: a servo motor; a coupling connecting the output shaft of the servo motor; a first gear connected to the coupling via a shaft; a second gear meshing with the first gear; a main shaft, one end of which is connected to the center of the second gear; a first worm gear mounted on the other end of the main shaft; a second worm gear meshing with the first worm gear; a third worm gear coaxially connected to the second worm gear; a worm shaft, one end of which meshes with the third worm gear; a universal joint hinge disposed on the other end of the worm shaft; a linkage rod, one end of which is mounted on the worm shaft via the universal joint hinge; and a control hinge mounted on the outer wall of the jet nozzle body and connected to the other end of the linkage rod. With this setup, an electrical signal is provided through the terminals on the servo motor. Inside the transmission housing, the servo motor transmits power through a coupling, shaft, first gear, and second gear. The first gear is fixed on the main shaft, which is mounted on the housing via bearings. The first and second worm gears rotate in coordination, driving the third worm gear to mesh with the worm. The universal joint hinge inside the transmission housing is connected to the linkage rod and the control hinge at the upper end of the housing, enabling control of the jet nozzle body in various directions, such as east-west, north-south, and pitch angles.
[0028] According to the present invention, the air outlet can be automatically adjusted according to the needs, making the air outlet angle adjustment convenient and efficient, so that the air demand in the place can be met in a timely manner, and it is also convenient to cooperate with other software and hardware to realize intelligent adjustment of air supply and intelligent temperature control of the place. Attached Figure Description
[0029] Figure 1 This schematic diagram shows a front sectional view of a tracking jet nozzle structure according to one embodiment of the present invention.
[0030] Figure 2 A schematic top view of a tracking jet nozzle structure according to one embodiment of the present invention;
[0031] Figure 3 illustrative representation Figure 1 Enlarged view of the driver component structure. Detailed Implementation
[0032] The present invention will now be discussed with reference to exemplary embodiments. It should be understood that the described embodiments are merely intended to enable those skilled in the art to better understand and thus implement the present invention, and are not intended to imply any limitation on the scope of the present invention.
[0033] As used herein, the term "comprising" and its variations are to be interpreted as open-ended terms meaning "including but not limited to". The term "based on" is to be interpreted as "at least partially based on". The terms "one embodiment" and "an embodiment" are to be interpreted as "at least one embodiment".
[0034] Figure 1 schematic representation of a front view of a tracking type jet air port structure according to an embodiment of the present application; Figure 2 schematic representation of a top view of a tracking type jet air port structure according to an embodiment of the present application; Figure 3 schematic representation of a front view of a tracking type jet air port structure according to an embodiment of the present application; Figure 1 schematic representation of a front view of a tracking type jet air port structure according to an embodiment of the present application; Figure 1 and Figure 2 schematic representation of a front view of a tracking type jet air port structure according to an embodiment of the present application;
[0035] a jet air port cover 1 is provided with an inner cavity 2;
[0036] a jet air port body 3 is movably arranged in the inner cavity 2 of the jet air port cover 1;
[0037] a driving assembly 4 is arranged on the inner wall of the inner cavity 2 and connected with the outer wall of the jet air port body 3, and drives the jet air port body 3 to move in multiple degrees of freedom inside the jet air port cover 1 to adjust the position of the air outlet of the jet air port body 3. In this way, the driving assembly 4 can realize rapid driving of the jet air port body 3, and the angle of the air outlet of the jet air port body 3 can be automatically adjusted to quickly meet the air demand in the place. In addition, by automatically controlling the air outlet adjustment of the jet air port body 3, it is convenient to realize intelligent control of air supply by cooperating with other software and hardware, for example, the temperature and humidity at different positions in the place are not the same. In order to realize the uniformity of scene temperature and humidity or bring comfortable temperature and humidity to human body, cold air or hot air can be blown to different positions in the scene by controlling the driving assembly 4 to drive the jet air port body 3. In this way, the scene temperature can be quickly adjusted, or the human body in the scene can be quickly adjusted, so as to realize the comfortable state.
[0038] Further, as shown in Figure 1 in the embodiment, the jet air port cover 1 is a cylindrical barrel structure with both ends open. In this way, it has a cylindrical inner cavity 2, so that the jet air port body 3 can move in multiple degrees of freedom in the inner cavity 2 with sufficient space, so that the air outlet position of the jet air port body 3 can be freely adjusted to ensure the accuracy of the air outlet position.
[0039] Further, as shown in Figure 1 in the embodiment, the jet air port body 3 is an elliptical air duct with both ends truncated. In this way, the jet air port body 3 can carry more air volume, so that the air speed and air pressure of the air outlet are more ideal, and the air outlet can move freely in the inner cavity 2 to realize accurate movement and ensure smooth and fast adjustment movement.
[0040] Further, in the embodiment, the air outlet of the jet air port body 3 is circular or rectangular.
[0041] Further, as Figures 1-3 indicated in the present embodiment, the drive assembly 4 includes:
[0042] a servo motor 5;
[0043] a coupling 6 connecting the output shaft of the servo motor 5;
[0044] a first gear 7 connected to the coupling 6 through a shaft;
[0045] a second gear 8 meshing with the first gear 7;
[0046] a main shaft 9 having one end connected to the center of the second gear 8;
[0047] a first worm gear 10 installed on the other end of the main shaft 9;
[0048] a second worm gear 11 meshing with the first worm gear 10;
[0049] a third worm gear 12 coaxially connected to the second worm gear 11;
[0050] a worm shaft 13 having one end meshing with the third worm gear 12;
[0051] a universal joint hinge 14 provided on the other end of the worm shaft 13;
[0052] a linkage rod 15 having one end installed on the worm shaft 13 through the universal joint hinge 14;
[0053] a control hinge 16 installed on the outer wall of the jet port body 3 and connected to the other end of the linkage rod 15.
[0054] In the present embodiment, an electrical signal is provided through a terminal 17 on the servo motor 5, and the servo motor 5 drives through the coupling 6, a shaft 18, the first gear 7 and the second gear 8 in a transmission box 19, the first gear 7 is fixed on the main shaft 9, the main shaft 9 is installed on the box through a bearing, the first worm gear 10 and the second worm gear 11 rotate together to drive the third worm gear 12 and the worm shaft 13 to mesh and drive, the universal joint hinge 14 in the transmission box 19 is connected to the linkage rod 15 and the control hinge 16 on the outer upper end of the box, and the jet port body is controlled in the east-west direction, the north-south direction and the pitch angle, for example.
[0055] According to the above scheme of the present application, the following can be achieved, for example:
[0056] Wired control: for example, the industrial computer (integrated system chip) detects the indoor temperature exceeding 26 DEG C human comfortable temperature through RJS485 wiring temperature sensor, the infrared diode finds the hot source direction, the hot / light resistance determines the hot source distance, the heat radiation sensor (hot source tracking sensor) starts the hot source signal capture and transmits data information back to the industrial computer for analysis, the industrial computer and the thermal infrared image instrument carry out dynamic hot source capture tracking display, the industrial computer (integrated system chip) sends the transmission signal of analyzed hot source information to the transmission box (servo motor) of drive assembly and carries out action control, and through the real-time data output by the industrial computer analysis, the angle, amplitude and air volume of the air outlet of the air injection air outlet main body 3 are adjusted, and the hot source temperature in the region is precisely and quickly injected with cold air to reduce the temperature.
[0057] Wireless control: for example, the industrial computer (integrated system chip) detects the indoor temperature exceeding 26 DEG C human comfortable temperature through RJS485 wiring temperature sensor, the infrared diode finds the hot source direction, the hot / light resistance determines the hot source distance, the heat radiation sensor (hot source tracking sensor) starts the hot source signal capture and transmits data information back to the industrial computer for analysis, the industrial computer and the thermal infrared image instrument carry out dynamic hot source capture tracking display, the industrial computer (integrated system chip) sends the transmission signal of analyzed hot source information to the transmission box (servo motor) of drive assembly and carries out action control, and through the real-time data output by the industrial computer analysis, the angle, amplitude and air volume of the air outlet of the air injection air outlet main body 3 are adjusted, and the hot source temperature in the region is precisely and quickly injected with cold air to reduce the temperature.
[0058] According to the above scheme of the utility model, the utility model can automatically adjust the air outlet according to the demand, so that the air outlet angle adjustment is convenient and efficient, the air demand in the place can be satisfied in time, and the intelligent adjustment of air supply and the intelligent temperature adjustment of the place can be realized conveniently by cooperating with other software and hardware.
[0059] Finally, it is pointed out that the above preferred embodiments are only used to illustrate the technical scheme of the utility model and not to limit, although the utility model has been described in detail through the above preferred embodiments, but those skilled in the art should understand that various changes can be made in form and detail without departing from the range defined by the utility model claims.
Claims
1. A tracking injection port structure, characterized by, The utility model relates to a kind of spray air port, including: Spray air port cover (1) is equipped with inner cavity (2); Spray air port body (3) is movably arranged in the inner cavity (2) of the spray air port cover (1); Drive assembly (4) is arranged on the inner wall of the inner cavity (2), and the outer wall of the spray air port body (3) is connected, and the spray air port body (3) is driven to carry out multi-degree-of-freedom motion in the inside of spray air port cover (1), to adjust the position of the air outlet of the spray air port body (3).
2. The track-mounted injection port structure of claim 1, wherein, The spray air port cover (1) is the cylindrical structure of two ends opening.
3. The trackless spouting tuyere structure according to claim 1, wherein, The spray air port body (3) is the truncated elliptical air duct of two ends.
4. The track-mounted injection port structure of claim 1, wherein, The air port of the spray air port body (3) is circular or rectangular.
5. The track-mounted injection port structure according to any one of claims 1-4, wherein, The drive assembly (4) includes: Servo motor (5); Coupling (6) connects the output shaft of the servo motor (5); First gear (7) is connected with the coupling (6) by shaft; Second gear (8) is engaged with the first gear (7); Main shaft (9) is connected with the center of the second gear (8) at one end; First worm gear (10) is installed at the other end of the main shaft (9); Second worm gear (11) is engaged with the first worm gear (10); Third worm gear (12) is coaxially connected with the second worm gear (11); Worm (13) is engaged with the third worm gear (12) at one end; Universal joint hinge (14) is arranged at the other end of the worm (13); Linkage rod (15) is installed on the worm (13) by the universal joint hinge (14) at one end; Control hinge (16) is installed on the outer wall of the spray air port body (3), and the other end of the linkage rod (15) is connected.