CN216721474U - All-round support and use its AI safety in production supervision device - Google Patents
All-round support and use its AI safety in production supervision device Download PDFInfo
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- CN216721474U CN216721474U CN202123269903.4U CN202123269903U CN216721474U CN 216721474 U CN216721474 U CN 216721474U CN 202123269903 U CN202123269903 U CN 202123269903U CN 216721474 U CN216721474 U CN 216721474U
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Abstract
All-round support and use its AI safety production supervisory equipment, including all-round support, all-round support includes the guide rail, the guide rail is provided with two and removes the seat, remove the seat and can remove on the guide rail, and two remove and be provided with a supporting bench between the seat, two removal seats are connected respectively through the linking arm in the both sides of supporting bench, the mode that the supporting bench was connected to the linking arm is for rotating the connection, the mode that the seat was removed in the linking arm connection is for rotating the connection, and under the normality, the interval that the supporting bench apart from two removal seats is the same, and sets up on a parallel with ground, the lower surface of supporting bench is provided with machine for punching the card and camera, just the camera is fixed on turning to the platform, can rotate, turn to the platform and connect the motor that turns to the setting of supporting bench upper surface for the drive the camera rotates. Can accomplish all-round control and provide the removal function, can also shoot personnel through the height of adjusting the camera to the machine for punching the card that sets up can verify personnel's identity.
Description
Technical Field
The utility model relates to the field of artificial intelligence, in particular to an omnibearing support and an AI safety production supervision device applying the same.
Background
Safety in production supervision can improve safety in production's demand to a certain extent, reduce the accident rate of mill, current safety in production supervision generally has special messenger's patrol, and in time supervise through setting up the control in the workspace, but this kind of method ageing is very poor, when discovering there is the phenomenon of violating the safety in production demand, still need special messenger's arrival suitable position according to the control, the process is longer, and very inconvenient, the effect of patrolling is also not fully satisfactory, but along with artificial intelligence's development, can be applied to safety in production supervision and set up corresponding auxiliary structure and help the supervisor to accomplish personnel, conventional camera support all is fixed position setting, can only provide the monitoring effect, can't accomplish other operations, the limitation is great.
Disclosure of Invention
In order to solve the problem that the camera support for safety production supervision is fixed in position and large in limitation, the utility model provides the omnibearing support and the AI safety production supervision device using the omnibearing support, which can realize omnibearing monitoring and provide a moving function and are convenient to meet the requirement of safety production supervision.
The technical scheme of the utility model is as follows:
all-round support, including the guide rail, the guide rail is provided with two and removes the seat, it can remove the seat on the guide rail, and two remove and be provided with the brace table between the seat, two removal seats are connected respectively through the linking arm in the both sides of brace table, the linking arm is connected the mode of brace table and is connected for rotating, the mode that the linking arm is connected and is removed the seat is connected for rotating, and under the normality, the brace table is the same apart from the interval of two removal seats, and is on a parallel with ground setting, the lower surface of brace table is provided with machine for punching the card and camera, just the camera is fixed on turning to the platform, can rotate, turn to the motor that the brace table connection brace table upper surface set up, the drive the camera rotates.
Preferably, the moving seat moves on the guide rail in a manner that the guide rail is provided with two guide rods, a rack is arranged on the inner side of any one of the guide rods, the moving seat is sleeved on the guide rail, a driving gear is arranged at the position of the guide rail, the driving gear is meshed with the rack and can move on the rack, the driving gear is connected with an output shaft of a servo motor, and the moving seat can be driven to move on the guide rail through the driving of the servo motor.
As preferred, the bogie includes the casing, set up the carousel in the casing, carousel fixedly connected with worm wheel, and can synchronous rotation, the carousel deviates from the worm wheel surface and is provided with the spliced pole of eccentric arrangement, the casing is provided with the arc wall in spliced pole position, the carousel is when rotating, and the spliced pole can remove in the arc wall, the spliced pole external fixation is provided with the connecting seat, the connecting seat can use the centre of a circle of carousel as the dot, rotates along with the spliced pole.
Preferably, an output shaft of the steering motor is disposed downward and connected to a worm, and the worm is engaged with the worm wheel to drive the worm wheel to rotate.
Preferably, the movable seat comprises a structure body, a servo motor is arranged on the lower surface of the structure body, an output shaft of the servo motor is vertically arranged upwards and penetrates through the structure body to be connected to the driving gear, and the first rotating seat is arranged on one side close to the supporting table.
Preferably, the lower surface of the structure body is provided with a first rotating seat, the first rotating seat is arranged on one side close to the supporting platform, the supporting platform is symmetrically provided with second rotating seats on two sides of the steering motor, and two ends of the connecting arm are respectively connected with the first rotating seat and the second rotating seat in a rotating mode through pin shafts.
An AI safety in production supervision device, includes all-round support.
Compared with the prior art, the utility model has the advantages that: according to the artificial intelligence change demand of safety in production supervision, design one kind and can accomplish all-round control and provide the all-round support of removal function to can adjust the height of camera, conveniently shoot personnel, and the person's identity can be verified to the machine for punching the card that sets up.
Drawings
The aspects and advantages of the present application will become apparent to those of ordinary skill in the art upon reading the following detailed description of the preferred embodiments. The drawings are only for purposes of illustrating the preferred embodiments and are not to be construed as limiting the utility model.
In the drawings:
FIG. 1 is a schematic bottom view of the omnidirectional bracket in example 1;
FIG. 2 is a schematic front view of the omnidirectional stent in example 1;
FIG. 3 is a schematic view showing a structure of a part of a turn table in embodiment 1;
FIG. 4 is a schematic view showing a structure related to a column connecting column of a turn table in embodiment 1;
FIG. 5 is a schematic view of a structure related to a connecting seat of the steering table in embodiment 1;
the components represented by the reference numerals in the figures are:
1. a guide rail; 11. a rack; 2. a movable seat; 21. a structural body; 22. a servo motor; 23. a drive gear; 24. a first rotating base; 3. a connecting arm; 4. a support table; 41. a card swiping machine; 42. a steering table; 421. a turntable; 422. a worm gear; 423. connecting columns; 424. a housing; 425. an arc-shaped slot; 426. a connecting seat; 43. a steering motor; 431. a worm; 44. a second rotating base; 5. a camera is provided.
Detailed Description
Exemplary embodiments of the present disclosure will be described in more detail below with reference to the accompanying drawings. It should be noted that these embodiments are provided so that this disclosure can be more completely understood and fully conveyed to those skilled in the art, and the present disclosure may be implemented in various forms without being limited to the embodiments set forth herein.
Example 1
The omnibearing support as shown in fig. 1-5 comprises a guide rail 1, wherein the guide rail 1 is provided with two movable seats 2, the movable seats 2 can move on the guide rail 1, a support table 4 is arranged between the two movable seats 2, two sides of the support table 4 are respectively connected with the two movable seats 2 through connecting arms 3, the distance between the support table 4 and the two movable seats 2 is the same in a normal state and is parallel to the ground, when the two movable seats 2 move in the same direction and at the same speed, the support table 4 can be driven to move, if the guide rail 1 is arranged on a production line, the movement monitoring of all parts of the production line can be realized through the movement of the support table 4, and the comparison of the fixed camera support is remarkably improved.
The mode that removes seat 2 and remove on guide rail 1 does, guide rail 1 sets up two guide bars, and the inboard of arbitrary guide bar is provided with rack 11, remove seat 2 and cup joint on guide rail 1, can realize removing seat 2 spacing and removal for guide rail 1, guarantee can not break away from the scope of guide rail 1 and can realize removing, be provided with drive gear 23 in guide rail 1 position, drive gear 23 with rack 11 meshes the connection, can move on rack 11, the output shaft of servo motor 22 is connected to drive gear 23, and the drive through servo motor 22 can drive remove seat 2 and remove on guide rail 1. Namely, a power source can be provided, the moving seat 2 is driven to move by the servo motor 2, and the moving distance and the moving speed are controllable.
Further, remove seat 2 and include main structure body 21, main structure body 21's lower surface sets up servo motor 22, servo motor 22's output shaft is vertical upwards to be set up, and runs through main structure body 21 connects on drive gear 23, can save space with servo motor 22 setting in main structure body 21's below, guarantees to have sufficient space to be used for installing servo motor 2, if need stronger power can also set up the reduction gear.
The connecting arm 3 is connected with the supporting platform 4 in a rotating mode, the connecting arm 3 is connected with the moving seat 2 in a rotating mode, and the main structure body 21 is provided with a first rotating seat 24 on one side close to the supporting platform 4. The support platform 4 is symmetrically provided with second rotating seats 44 at both sides of the steering motor 43. The two ends of the connecting arm 3 are respectively connected with the first rotating seat 24 and the second rotating seat 44 in a rotating manner through pin shafts. And then realize rotating, can realize like this that when two move seat 2 when carrying out reverse movement at the same speed, can drive supporting bench 4 and realize rising or descend, and then the suitable height that arrives for shoot or the card.
The lower surface of the supporting table 4 is provided with a card swiping machine 41 for identifying identities and a camera 5 for shooting, the camera 5 is fixed on a steering table 42 and can rotate, and further can have a larger monitoring range, the steering table 42 is connected with a steering motor 43 arranged on the upper surface of the supporting table 4 and used for driving the camera 5 to rotate.
Further, the steering table 42 includes a housing 424, a rotating disc 421 is arranged in the housing 424, the rotating disc 421 is fixedly connected with a worm wheel 422 and can rotate synchronously, a connecting column 423 is arranged at an eccentric position of the rotating disc 421, which is far away from the surface of the worm wheel 422, an arc-shaped groove 425 is arranged at the position of the connecting column 423 of the housing 424, when the rotating disc 421 rotates, the connecting column 423 can move in the arc-shaped groove 425, a connecting seat 426 is fixedly arranged outside the connecting column 423, the connecting seat 426 can rotate with the connecting column 423 by taking the circle center of the rotating disc 421 as a circular point, an output shaft of the steering motor 43 is arranged downwards and is connected with a worm 431, the worm 431 is meshed with the worm wheel 422 and can drive the worm wheel 422 to rotate, when the worm wheel 422 rotates, the rotating disc 421 rotating synchronously rotates, and when the rotating disc 421 rotates, the connecting column 423 arranged on the surface rotates therewith, the rotation of the connecting column 423 drives the connecting seat 426 connected with the connecting column to rotate around the center of the rotating disc 421, and one ring is buckled with the other ring, so that the rotation of the steering motor 43 is finally realized to drive the connecting seat 426 to rotate, and after the camera 5 is connected with the connecting seat 426, the control action of controlling the connecting seat 426 by the steering motor 43 can be realized, and the large-scale monitoring is completed.
The utility model provides a AI safety in production supervision device, includes all-round support can accomplish the lift and turn to camera 5 to use through AI can handle the control picture, for example under conventional conditions, the picture of camera 5 can appear the condition that the picture is turned over after rotating, and this just needs AI to carry out the picture processing, makes it for the picture that accords with people's eye and watch, and can realize the affirmation of personnel's identity through the machine for punching the card 41, conveniently monitors personnel's action.
Furthermore, the movable seat 2 of the device can adjust the height of the support table 4 in the moving process, and ensure that the support table 4 is always kept in a parallel state, and the process can be controlled through AI, so that the structure has strong expansibility and is very reliable in the application structure in the field of artificial intelligence.
The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any changes or additions or substitutions that can be easily conceived by those skilled in the art within the technical scope of the present invention are also included in the scope of the present invention. Therefore, the protection scope of the present invention shall be subject to the protection scope of the appended claims.
Claims (7)
1. The omnibearing support is characterized by comprising a guide rail (1), wherein the guide rail (1) is provided with two moving seats (2), the moving seats (2) can move on the guide rail (1), a support table (4) is arranged between the two moving seats (2), two sides of the support table (4) are respectively connected with the two moving seats (2) through connecting arms (3), the connecting arms (3) are connected with the support table (4) in a rotating manner, the connecting arms (3) are connected with the moving seats (2) in a rotating manner, in a normal state, the distance between the support table (4) and the two moving seats (2) is the same, the support table is arranged in parallel to the ground, the lower surface of the support table (4) is provided with a card swiping machine (41) and a camera (5), the camera (5) is fixed on a steering table (42) and can rotate, the steering table (42) is connected with a steering motor (43) arranged on the upper surface of the support table (4), the steering motor (43) can drive the camera (5) to rotate.
2. The omnibearing support according to claim 1, wherein the movable base (2) moves on the guide rail (1) in a manner that the guide rail (1) is provided with two guide rods, a rack (11) is arranged on the inner side of any one of the guide rods, the movable base (2) is sleeved on the guide rail (1), a driving gear (23) is arranged at a position connected with the guide rail (1), the driving gear (23) is meshed with the rack (11) and can move on the rack (11), the driving gear (23) is connected with an output shaft of a servo motor (22), and the movable base (2) can be driven to move on the guide rail (1) by the driving of the servo motor (22).
3. The omnibearing support according to claim 1, wherein the steering table (42) comprises a housing (424), a rotary table (421) is arranged in the housing (424), the rotary table (421) is fixedly connected with a worm wheel (422) and can synchronously rotate, the rotary table (421) is provided with a connecting column (423) which is eccentrically arranged on one side away from the worm wheel (422), the housing (424) is provided with an arc-shaped groove (425) at the position of the connecting column (423), when the rotary table (421) rotates, the connecting column (423) can move in the arc-shaped groove (425), a connecting seat (426) is fixedly arranged outside the connecting column (423), and the connecting seat (426) can rotate along with the connecting column (423) by taking the circle center of the rotary table (421) as a circular point.
4. The omni directional support according to claim 3, wherein an output shaft of the steering motor (43) is arranged downwards and is connected with a worm (431), and the worm (431) is meshed with the worm wheel (422) and can drive the worm wheel (422) to rotate.
5. The omnibearing bracket according to claim 2, wherein the movable seat (2) comprises a main structure body (21), a servo motor (22) is arranged on the lower surface of the main structure body (21), an output shaft of the servo motor (22) is vertically arranged upwards, and the servo motor penetrates through the main structure body (21) and is connected to a driving gear (23).
6. The omni-directional bracket according to claim 5, wherein a first rotating seat (24) is provided on the lower surface of the main structure body (21), the first rotating seat (24) is provided on one side close to the supporting platform (4), the supporting platform (4) is symmetrically provided with second rotating seats (44) on both sides of the steering motor (43), and both ends of the connecting arm (3) are respectively connected with the first rotating seat (24) and the second rotating seats (44) through a pin shaft in a rotating manner.
7. AI safety production supervision device, characterized in that it comprises the all-directional support of claims 1-6.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202123269903.4U CN216721474U (en) | 2021-12-24 | 2021-12-24 | All-round support and use its AI safety in production supervision device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202123269903.4U CN216721474U (en) | 2021-12-24 | 2021-12-24 | All-round support and use its AI safety in production supervision device |
Publications (1)
Publication Number | Publication Date |
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CN216721474U true CN216721474U (en) | 2022-06-10 |
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CN202123269903.4U Active CN216721474U (en) | 2021-12-24 | 2021-12-24 | All-round support and use its AI safety in production supervision device |
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2021
- 2021-12-24 CN CN202123269903.4U patent/CN216721474U/en active Active
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