Electromechanical practical training conveying and sorting module

By designing a compact electromechanical training module, using photoelectric sensors and fiber optic sensors in conjunction with motors and telescopic electromagnets, the screening and sorting functions of workpieces are realized, solving the problem of complex module structure and improving teaching effects.

CN223450492UActive Publication Date: 2025-10-17ZHONGSHUANGYUAN (HANGZHOU) TECH CO LTD
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Patent Information

Application Number
CN202422954626.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-30
Publication Date
2025-10-17
Estimated Expiration
2034-11-30

AI Technical Summary

Technical Problem

The existing electromechanical training modules have complex structures and the various actuators are not compact, making it difficult to clearly demonstrate the operating principles and motion states of the workpiece, which affects the teaching effect.

Method used

By adopting the coordinated cooperation of photoelectric sensors, fiber optic sensors, motors, telescopic electromagnets, lifting baffles, tilting plates and placement plates, a compact electromechanical training conveying and sorting module is designed, and the screening and sorting functions of workpieces are realized through the cooperation of conveyor belts and sensors.

Benefits of technology

The structure is simple but the functions are complete. It can clearly display the screening and sorting process of workpieces, which is convenient for teachers to teach and students to learn, and improves the training effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an electromechanical practical training conveying and sorting module which comprises an installation platform, a left side installation frame and a right side installation frame are arranged on the installation platform, and a middle support is arranged between the side installation frames in a connected mode. The conveying belt is driven by a belt wheel assembly to continuously run, a blocking assembly is installed on the side installation frame, a sensor assembly is installed on the middle support, an opening cavity is formed in one side of the middle support, and a storage assembly is arranged on one side of the opening cavity. According to the practical training module, a photoelectric sensor, an optical fiber sensor, a motor, a telescopic electromagnet, a lifting baffle plate, an inclined plate and a placement plate are cooperated and matched, and a compact arrangement is adopted, so that the screening and sorting functions of workpieces can be clearly and completely displayed, and teaching of teachers and live-action learning of students are very convenient.
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Description

Technical Field

[0001] The utility model relates to the technical field of electromechanical training equipment, in particular to an electromechanical training conveying and sorting module. Background Art

[0002] During electromechanical training, instruction in workpiece conveying and sorting is often involved. This requires the use of sensors and conveyor belts to achieve workpiece sorting and conveying. Existing training modules are complex, and the various actuators are not tightly connected. This makes it difficult for personnel to clearly understand the specific operating principles and motion states of the conveying and sorting modules during real-life learning. This has led to extensive research into this topic. Utility Model Content

[0003] The technical problem to be solved by the present invention is to provide an electromechanical training conveying and sorting module, which can solve the above-mentioned problems in the existing technology.

[0004] The present invention is realized through the following technical solutions: an electromechanical training conveying and sorting module of the present invention comprises an installation platform, a left and a right side installation frame is provided on the installation platform, an intermediate bracket is connected between the side installation frames, and is characterized in that a continuously running conveyor belt is provided on the upper and lower sides of the intermediate bracket, and the conveyor belt is driven to run continuously by a pulley assembly, a blocking assembly is installed on the side installation frame, a sensor assembly is installed on the intermediate bracket, an open cavity is provided on one side of the intermediate bracket, and a storage assembly is provided on one side of the open cavity.

[0005] According to a further technical solution, the pulley assembly includes a rotating drum rotatably arranged in the side mounting frame, the outer surface of the rotating drum is provided with a groove, the conveyor belt is inserted into the groove and is dynamically connected to the rotating drum.

[0006] According to a further technical solution, a motor is provided on one side of one of the side mounting frames, and the motor is dynamically connected to the rotating drum.

[0007] According to a further technical solution, the blocking assembly includes a mounting frame, which is mounted on the top of the side mounting frame, and two blocking blocks are provided at the bottom of the mounting frame.

[0008] According to a further technical solution, the blocks are provided with inclined surfaces on opposite sides thereof for positioning the workpieces against each other.

[0009] According to a further technical solution, the sensor assembly includes a photoelectric sensor and a fiber optic sensor arranged on the top of the intermediate bracket, and the photoelectric sensor and the fiber optic sensor are arranged relative to each other.

[0010] Further technical solutions, the storage assembly includes a slope bracket, the top of the slope bracket is provided with a side plate, one side of the side plate is provided with an inclined plate, the bottom end of the inclined plate is provided with a placing plate, and a plurality of flanges are arranged on the upper side of the placing plate.

[0011] Further technical solutions, the slope bracket is provided with a bottom plate on one side, and the bottom plate is fixedly installed with the installation platform.

[0012] Further technical solutions, further comprising a limiting assembly arranged on the intermediate support and capable of limiting the workpiece, the limiting assembly comprising a telescopic electromagnet, the telescopic end of the telescopic electromagnet is provided with a lifting baffle, and the telescopic electromagnet is installed on one side of the side mounting bracket.

[0013] Further technical solutions, further comprising a horizontal plate, one side of the horizontal plate is provided with a side support, the side support is fixed with the side mounting bracket, and the telescopic electromagnet is installed in the side support.

[0014] The beneficial effects of the utility model are: one, the practical training module cooperates with the photoelectric sensor, the optical fiber sensor, the motor, the telescopic electromagnet, the lifting baffle, the inclined plate and the placing plate, adopts compact setting and can clearly and completely show the screening and sorting function of the workpiece, which is very convenient for teachers teaching and student practical learning.

[0015] Two, the photoelectric sensor and the optical fiber sensor are oppositely arranged, the motor and the telescopic electromagnet can be controlled to move after the workpiece is placed, so that the screening and sorting function of the workpiece is realized, the structure is simple, but the sorting process can be completely shown, and personnel learning and installation are more convenient. DRAWINGS

[0016] In order to facilitate the description, the utility model is described in detail by the following specific embodiments and drawings.

[0017] Figure 1 It is a schematic diagram of the overall structure of the electromechanical practical training conveying and sorting module.

[0018] Figure 2 It is Figure 1 the schematic diagram of A in the middle;

[0019] Figure 3 It is Figure 1 the schematic diagram of B in the middle;

[0020] Figure 4 It is Figure 1 the schematic diagram of the rear side structure of the equipment;

[0021] Figure 5 It is Figure 4 the schematic diagram of C in the middle;

[0022] In the figure, there are inclined plate bracket 11, mounting platform 12, flange 13, placement plate 14, inclined plate 15, side plate 17, intermediate bracket 18, motor 21, block 22, photoelectric sensor 23, optical fiber sensor 24, mounting frame 25, groove 26, side mounting frame 27, rotating cylinder 28, conveyor belt 29, vertical plate 31, horizontal plate 32, slide 33, lifting baffle 34, opening cavity 35, bottom plate 36, side bracket 41, and telescopic electromagnet 42. DETAILED DESCRIPTION

[0023] like Figures 1-5 As shown, the utility model is described in detail. For the convenience of description, the directions mentioned below are defined as follows: the up, down, left, right, front and back directions mentioned below are the same as Figure 1 The up, down, left, right, front and back directions of the projection relationship itself are consistent. The utility model is an electromechanical training conveying and sorting module, including a mounting platform 12, on which left and right side mounting frames 27 are provided, and an intermediate bracket 18 is connected between the side mounting frames 27. Continuously running conveyor belts 29 are provided on the upper and lower sides of the intermediate bracket 18. The conveyor belt 29 is driven by a pulley assembly to run continuously. A blocking assembly is installed on the side mounting frame 27, and a sensor assembly is installed on the intermediate bracket 18.

[0024] Advantageously, the pulley assembly includes a rotating drum 28 rotatably disposed in a side mounting frame 27 , wherein an outer surface of the rotating drum 28 is provided with a groove 26 , and a conveyor belt 29 is inserted into the groove 26 and is power-connected to the rotating drum 28 .

[0025] Advantageously, a motor 21 is provided on one side of one of the side mounting brackets 27 , and the motor 21 is connected to the rotating drum 28 in a power connection.

[0026] Advantageously, the blocking assembly includes a mounting bracket 25 , which is mounted on the top of the side mounting bracket 27 , and two stoppers 22 are provided at the bottom of the mounting bracket 25 .

[0027] Advantageously, the blocks 22 are provided with inclined surfaces on opposite sides thereof for positioning the workpieces against each other.

[0028] Advantageously, the sensor assembly includes a photoelectric sensor 23 and a fiber optic sensor 24 disposed on the top of the intermediate bracket 18 , and the photoelectric sensor 23 and the fiber optic sensor 24 are disposed opposite to each other.

[0029] Beneficially, one side of the intermediate support 18 is provided with an open cavity 35, one side of the open cavity 35 is provided with a storage assembly, the storage assembly comprises an inclined plate support 11, the top of the inclined plate support 11 is provided with a side plate 17, one side of the side plate 17 is provided with an inclined plate 15, the bottom end of the inclined plate 15 is provided with a placing plate 14, a plurality of flanges 13 are arranged on the upper side of the placing plate 14, and the flanges 13 are used to limit the workpieces that fall on the inclined plate 15.

[0030] Beneficially, one side of the inclined plate support 11 is provided with a bottom plate 36, and the bottom plate 36 can be fixedly installed with the installation platform 12.

[0031] Beneficially, the limiting assembly for limiting the workpieces is further arranged on the intermediate support 18, the limiting assembly comprises a telescopic electromagnet 42, the telescopic end of the telescopic electromagnet 42 is provided with a lifting baffle 34, the telescopic electromagnet 42 is installed on one side of the side mounting frame 27, and the telescopic electromagnet 42 is a prior art that can drive the telescopic end to move up and down after being powered on and powered off. When the lifting baffle 34 moves downward, the workpieces on the conveying belt 29 can be blocked.

[0032] Beneficially, the horizontal plate 32 is further provided with a side support 41 on one side, the side support 41 is fixed with the side mounting frame 27, and the telescopic electromagnet 42 is installed in the side support 41.

[0033] Beneficially, two vertical plates 31 are arranged on one side of the horizontal plate 32, a sliding groove 33 is arranged between the vertical plates 31, and the lifting baffle 34 slides in the sliding groove 33.

[0034] Beneficially, the lifting baffle 34 is arranged on the right side of the open cavity 35. When the conveying belt 29 drives the workpieces from left to right, if the telescopic electromagnet 42 works, the lifting baffle 34 can be driven to move downward, and the workpieces can be slid into the inclined plate 15 from the open cavity 35 after abutting against one side of the lifting baffle 34, and then placed on the upper side of the placing plate 14.

[0035] The device can dynamically and statically display the whole process of conveying and sorting the workpieces.

[0036] When the device works, the personnel places the workpieces between the photoelectric sensor 23 and the optical fiber sensor 24, and abuts against one side of the mounting frame 25. The optical fiber sensor 24 senses whether the workpieces are defective. The photoelectric sensor 23 transmits an electrical signal to the controller after the workpieces are placed, the controller is arranged on the installation platform 12, the controller is electrically connected with the motor 21 and the telescopic electromagnet 42, the motor 21 drives the rotating cylinder 28 to rotate after working, so that the conveying belt 29 continuously runs.

[0037] The conveying belt 29 can drive the workpiece to move, when the optical fiber sensor 24 identifies that the workpiece has a defect, the telescopic electromagnet 42 works to make the lifting baffle 34 move downwards, the workpiece is guided by the inclined surface on one side of the lifting baffle 34, along the open cavity 35, the mounting frame 25 and placed on the placing plate 14.

[0038] When it is identified that the workpiece has no defect, the telescopic electromagnet 42 does not work, at this time, the workpiece continues to be conveyed to the right along with the conveying belt 29.

[0039] The above is only a specific implementation manner of the present application, but the protection scope of the present application is not limited to this, any change or replacement without creative labor should be covered in the protection scope of the present application; therefore, the protection scope of the present application should be limited by the protection scope defined in the claims.

Claims

1. A transport and sorting module for electromechanical training, comprising a mounting platform (12), wherein the mounting platform (12) is provided with a left and right side mounting frame (27), and an intermediate bracket (18) is connected between the side mounting frames (27), characterized in that: The upper and lower sides of the intermediate bracket (18) are provided with continuously running conveyor belts (29), and the conveyor belts (29) are driven by a pulley assembly to run continuously. A blocking assembly is installed on the side mounting frame (27), and a sensor assembly is installed on the intermediate bracket (18). An open cavity (35) is provided on one side of the intermediate bracket (18), and a storage assembly is provided on one side of the open cavity (35).

2. The electromechanical training conveying and sorting module according to claim 1 is characterized by: The pulley assembly includes a rotating drum (28) rotatably arranged in the side mounting frame (27), the outer surface of the rotating drum (28) is provided with a groove (26), and the conveyor belt (29) is inserted into the groove (26) and is dynamically connected to the rotating drum (28).

3. The electromechanical training conveying and sorting module according to claim 2 is characterized in that: A motor (21) is provided on one side of one of the side mounting frames (27), and the motor (21) is connected to the rotating drum (28) in a power connection.

4. The electromechanical training conveying and sorting module according to claim 1, characterized in that: The blocking assembly comprises a mounting frame (25), wherein the mounting frame (25) is mounted on the top of the side mounting frame (27), and two blocking blocks (22) are provided at the bottom of the mounting frame (25).

5. The electromechanical training conveying and sorting module according to claim 4 is characterized in that: The stoppers (22) are provided with inclined surfaces on opposite sides thereof.

6. The electromechanical training conveying and sorting module according to any one of claims 1 to 5, characterized in that: The sensor assembly comprises a photoelectric sensor (23) and an optical fiber sensor (24) arranged on the top of the intermediate bracket (18), and the photoelectric sensor (23) and the optical fiber sensor (24) are arranged opposite to each other.

7. The electromechanical training conveying and sorting module according to any one of claims 1 to 5, characterized in that: The storage assembly comprises an inclined plate bracket (11), a side plate (17) is provided on the top of the inclined plate bracket (11), an inclined plate (15) is provided on one side of the side plate (17), a placement plate (14) is provided at the bottom end of the inclined plate (15), and a plurality of flanges (13) are provided on the upper side of the placement plate (14).

8. The electromechanical training conveying and sorting module according to claim 7, characterized in that: A bottom plate (36) is provided on one side of the inclined plate bracket (11), and the bottom plate (36) is fixedly mounted on the mounting platform (12).

9. The electromechanical training conveying and sorting module according to any one of claims 1 to 5, characterized in that: It also includes a limit assembly arranged on the intermediate bracket (18), the limit assembly including a telescopic electromagnet (42), a lifting baffle (34) being provided at the telescopic end of the telescopic electromagnet (42), and the telescopic electromagnet (42) being installed on one side of the side mounting frame (27).

10. The electromechanical training conveying and sorting module according to claim 9, characterized in that: It also includes a horizontal plate (32), a side bracket (41) is provided on one side of the horizontal plate (32), the side bracket (41) is fixed to the side mounting frame (27), and the telescopic electromagnet (42) is installed in the side bracket (41).