Stamping automatic transmission device for motor production
By designing automatic transmission devices and limit components, the cumbersome problem of manual handling in traditional motor stamping processes is solved, and the automatic transmission and limit of motor raw materials is realized, and the production efficiency and safety are improved.
Patent Information
- Application Number
- CN202422491748.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-15
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2034-10-15
AI Technical Summary
In traditional motor stamping processes, manual handling and transfer of motor production raw materials is required, and the operation is cumbersome.
An automatic transmission device including a transmission frame, a transmission machine, a transmission roller and a transmission belt is designed, combining a limiting assembly and a visual detector to realize the automatic handling and limiting of motor raw materials.
It reduces the cumbersomeness of motor stamping, avoids the fall of motor raw materials, and improves production efficiency and safety.
Smart Images

Figure CN223197914U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of motor production, in particular to an automatic stamping transmission device for motor production. Background Art
[0002] A motor, also known as an electric motor, is an electromagnetic device that converts or transmits electrical energy based on the law of electromagnetic induction. Its primary function is to generate driving torque, serving as a power source for electrical appliances and various machines. A motor can convert electrical energy into mechanical energy, or one form of electrical energy into another, thereby driving and controlling the motion of various mechanical devices. In daily life, motors are widely used in home appliances, industrial production, transportation, and intelligent robotics, providing the necessary power and motion control for these devices and systems. The role of stamping in motor production is primarily reflected in improving production efficiency, ensuring product quality, optimizing material utilization, and adapting to large-scale production needs.
[0003] However, the traditional motor stamping process has the following disadvantages:
[0004] During the stamping process of motor production raw materials using the traditional motor stamping process, motor processing personnel are required to manually carry and transfer the motor raw materials, which is a very cumbersome operation. Utility Model Content
[0005] The purpose of the present utility model is to provide an automatic stamping and transmission device for motor production, so as to solve the problem that in the traditional motor stamping process proposed in the above background technology, motor processing personnel are required to manually carry and transfer motor raw materials during the stamping process of motor production raw materials, which is a very cumbersome operation.
[0006] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a stamping automatic transmission device for motor production, comprising a transmission frame, a first conveyor is fixedly installed on the top of the transmission frame, one side of the inner wall of the first conveyor is rotatably connected to a first active transmission roller, the other side of the inner wall of the first conveyor is rotatably connected to a first driven transmission roller, a first transmission belt is transmission-connected between the first active transmission roller and the first driven transmission roller, one end of both sides of the first conveyor is rotatably connected to a connecting seat, a feeding assembly is installed between the two connecting seats, transmission assemblies are fixedly installed on both sides of the top of the first conveyor, and limited transmission assemblies are installed on the tops of the two transmission assemblies The positioning assembly comprises an assembly plate and a length plate, the top of the assembly plate is fixedly connected to the bottom end of the length plate, the top of the length plate is provided with a second conveyor, the limiting assembly comprises two limiting blocks and a height plate, the two sides of the bottom end of the height plate are respectively fixedly connected to the top ends of the two limiting blocks, one side of the height plate is provided with a limiting frame, the other side of the height plate is provided with a limiting plate, movable blocks are fixedly installed on both sides of the bottom end of the height plate, the first servo motor is started after being energized, the first servo motor drives the first active transmission roller to rotate, the first active transmission roller drives the first driven transmission roller to rotate through the first transmission belt, and the first transmission belt is driven to transmit the motor stamping raw material.
[0007] Preferably, one side of the inner wall of the second conveyor is rotatably connected to a second active conveying roller, the other side of the inner wall of the second conveyor is rotatably connected to a second driven conveying roller, a second conveying belt is transmission-connected between the second active conveying roller and the second driven conveying roller, a first servo motor that drives the first active conveying roller to rotate is fixedly installed on the surface of the first conveyor, and a second servo motor that drives the second active conveying roller to rotate is fixedly installed on the surface of the second conveyor, the second servo motor is started after being energized, the second servo motor drives the second active conveying roller to rotate, the second active conveying roller drives the second driven conveying roller to rotate through the second conveying belt, and the second conveying belt transmits the motor product.
[0008] Preferably, a lifting cylinder is fixedly installed on the top of the length plate, and a sliding block is fixedly installed on the movable end of the lifting cylinder. The sliding block is slidingly connected to the second conveyor, and one end on both sides of the second conveyor is respectively connected to two connecting seats. One end of the assembly plate is fixedly connected to the conveyor frame, and the lifting cylinder performs telescopic movement. The lifting cylinder pushes the sliding block from the bottom, and the sliding block pushes the second conveyor from the bottom, thereby adjusting the angle between the second conveyor and the connecting seat, and adjusting the loading angle.
[0009] Preferably, the two transmission components each include a first linear rail and a second linear rail, positioning plates are fixedly installed at both ends of one side of the first linear rail, and the ends of the two positioning plates away from the first linear rail are respectively fixedly connected to the two ends of one side of the second linear rail, and a transmission screw is rotatably connected between the two positioning plates, and the bottom end of the first linear rail, the bottom end of the second linear rail and the bottom ends of the two positioning plates are all fixedly connected to the first conveyor.
[0010] Preferably, the two movable blocks are both threadedly connected to the transmission screw, and the opposite sides of the two movable blocks are slidingly connected to the middle of the first linear rail and the middle of the second linear rail respectively. The external motor drives the transmission screw to rotate, and the threads on the surface of the transmission screw match the threads on the inner wall of the movable block. The movable block is limited by the first linear rail and the second linear rail, so the movable block slides relative to the transmission screw, and the position of the limit assembly on the first conveyor is adjusted.
[0011] Preferably, limiting blocks are fixedly installed at both ends of one side of the limiting plate, and the ends of the two limiting blocks away from the limiting plate are fixedly connected to the side opposite to the height plate. A pushing cylinder is fixedly installed in the middle of one side of the limiting plate, and the movable end of the pushing cylinder is fixedly connected to the side opposite to the limiting frame. The internal rotation of the limiting frame is connected to a plurality of limiting rollers, which push the cylinder to perform telescopic movement, and the pushing cylinder pushes the limiting frame from one side, and the limiting rollers block and limit the raw materials for motor production from the side.
[0012] Preferably, a detection rack is fixedly installed at one end of the first conveyor, and a visual detector is fixedly installed at one side of the detection rack. The visual detector senses the raw materials produced by the conveyor conveying the motor in real time.
[0013] Compared with the prior art, the beneficial effects of the present invention are:
[0014] 1. The first and second conveyors are set up to carry and transfer the motor stamping materials transmitted on the transmission belt, replacing the traditional manual handling and reducing the complexity of the motor stamping process;
[0015] 2. By setting a limit assembly, the cylinder pushes the limit frame from one side to adjust the position of the limit frame relative to the first conveyor. The two limit frames limit the transmission of motor raw materials on the first conveyor from the top of the first conveyor to prevent the motor raw materials from falling from the conveyor. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a side view of the utility model;
[0017] Figure 2 It is a partial schematic diagram of the utility model;
[0018] Figure 3 It is a three-dimensional diagram of the limit assembly of the utility model;
[0019] Figure 4 It is a side view of the limit assembly of the utility model;
[0020] Figure 5 It is a top view of the transmission component of the present invention.
[0021] In the figure: 1. Conveyor frame; 2. Loading assembly; 21. Assembly plate; 22. Length plate; 23. Lifting cylinder; 24. Sliding block; 25. Second conveyor; 26. Second active conveyor roller; 27. Second conveyor belt; 28. Second driven conveyor roller; 3. First conveyor; 4. First servo motor; 5. Limiting assembly; 51. Limiting plate; 52. Limiting block; 53. Height plate; 54. Pushing cylinder; 55. Movable block; 56. Limiting frame; 57. Limiting roller; 6. Conveyor assembly; 61. First linear rail; 62. Positioning plate; 63. Conveyor screw; 64. Second linear rail; 7. Visual detector; 8. Detection frame; 9. First driven conveyor roller; 10. First conveyor belt; 11. First active conveyor roller; 12. Connecting seat. DETAILED DESCRIPTION
[0022] The technical solutions in the embodiments of the present invention will be described clearly and completely below with reference to the accompanying drawings in the embodiments of the present invention.
[0023] See also Figure 1-5The utility model provides a stamping automatic transmission device for motor production, including a transmission frame 1, a first conveyor 3 is fixedly installed on the top of the transmission frame 1, one side of the inner wall of the first conveyor 3 is rotatably connected to a first active transmission roller 11, the other side of the inner wall of the first conveyor 3 is rotatably connected to a first driven transmission roller 9, a first transmission belt 10 is transmission-connected between the first active transmission roller 11 and the first driven transmission roller 9, one end of both sides of the first conveyor 3 is rotatably connected to a connecting seat 12, a feeding assembly 2 is installed between the two connecting seats 12, transmission assemblies 6 are fixedly installed on both sides of the top of the first conveyor 3, and a limiting assembly 5 is installed on the top of the two transmission assemblies 6. The feeding assembly 2 includes an assembly plate 21 and a long The top of the length plate 22 and the assembly plate 21 are fixedly connected to the bottom of the length plate 22, and a second conveyor 25 is provided at the top of the length plate 22. The limiting assembly 5 includes two limiting blocks 52 and a height plate 53. The two sides of the bottom end of the height plate 53 are respectively fixedly connected to the tops of the two limiting blocks 52, a limiting frame 56 is provided on one side of the height plate 53, and a limiting plate 51 is provided on the other side of the height plate 53. Movable blocks 55 are fixedly installed on both sides of the bottom end of the height plate 53. The first servo motor 4 is started after being energized. The first servo motor 4 drives the first active transmission roller 11 to rotate. The first active transmission roller 11 drives the first driven transmission roller 9 to rotate through the first transmission belt 10. After the first transmission belt 10 is driven, the motor stamping raw material is transmitted.
[0024] A second active transmission roller 26 is rotatably connected to one side of the inner wall of the second conveyor 25, and a second driven transmission roller 28 is rotatably connected to the other side of the inner wall of the second conveyor 25. A second transmission belt 27 is transmission-connected between the second active transmission roller 26 and the second driven transmission roller 28. A first servo motor 4 that drives the first active transmission roller 11 to rotate is fixedly installed on the surface of the first conveyor 3, and a second servo motor that drives the second active transmission roller 26 to rotate is fixedly installed on the surface of the second conveyor 25. The second servo motor starts after being energized, and the second servo motor drives the second active transmission roller 26 to rotate. The second active transmission roller 26 drives the second driven transmission roller 28 to rotate through the second transmission belt 27, and the second transmission belt 27 transmits the motor products.
[0025] A lifting cylinder 23 is fixedly installed on the top of the length plate 22, and a sliding block 24 is fixedly installed on the movable end of the lifting cylinder 23. The sliding block 24 is slidingly connected to the second conveyor 25. One end on both sides of the second conveyor 25 is respectively connected to the two connecting seats 12. One end of the assembly plate 21 is fixedly connected to the conveyor frame 1. The lifting cylinder 23 performs telescopic movement. The lifting cylinder 23 pushes the sliding block 24 from the bottom. The sliding block 24 pushes the second conveyor 25 from the bottom, adjusts the angle between the second conveyor 25 and the connecting seat 12, and adjusts the loading angle.
[0026] The two transmission components 6 each include a first linear rail 61 and a second linear rail 64. Positioning plates 62 are fixedly installed at both ends of one side of the first linear rail 61. The ends of the two positioning plates 62 away from the first linear rail 61 are fixedly connected to the two ends of one side of the second linear rail 64 respectively. A transmission screw rod 63 is rotatably connected between the two positioning plates 62. The bottom end of the first linear rail 61, the bottom end of the second linear rail 64 and the bottom ends of the two positioning plates 62 are all fixedly connected to the first conveyor 3.
[0027] The two movable blocks 55 are both threadedly connected to the transmission screw rod 63. The opposite sides of the two movable blocks 55 are slidingly connected to the middle part of the first linear rail 61 and the middle part of the second linear rail 64 respectively. The external motor drives the transmission screw rod 63 to rotate. The threads on the surface of the transmission screw rod 63 match the threads on the inner wall of the movable block 55. The movable block 55 is limited by the first linear rail 61 and the second linear rail 64, so the movable block 55 slides relative to the transmission screw rod 63 to adjust the upper limit position of the limit assembly 5 on the first conveyor 3.
[0028] Limiting blocks 52 are fixedly installed at both ends of one side of the limiting plate 51, and the ends of the two limiting blocks 52 away from the limiting plate 51 are fixedly connected to the side opposite to the height plate 53. A pushing cylinder 54 is fixedly installed in the middle of one side of the limiting plate 51, and the movable end of the pushing cylinder 54 is fixedly connected to the side opposite to the limiting frame 56. The internal rotation of the limiting frame 56 is connected to a number of limiting rollers 57, which push the cylinder 54 to perform telescopic movement, and the pushing cylinder 54 pushes the limiting frame 56 from one side, and the limiting rollers 57 block and limit the motor production raw materials from the side.
[0029] A detection frame 8 is fixedly mounted on one end of the first conveyor 3 , and a visual detector 7 is fixedly mounted on one side of the detection frame 8 . The visual detector 7 senses the raw materials produced by the conveyor conveying the motor in real time.
[0030] When the embodiment of the present application is in use: the lifting cylinder 23 performs telescopic movement, the lifting cylinder 23 pushes the sliding block 24 from the bottom, the sliding block 24 pushes the second conveyor 25 from the bottom, the angle between the second conveyor 25 and the connecting seat 12 is adjusted, the feeding angle is adjusted, the second servo motor is powered on and started, the second servo motor drives the second active transmission roller 26 to rotate, the second active transmission roller 26 drives the second driven transmission roller 28 to rotate through the second transmission belt 27, the second transmission belt 27 transmits the motor product, the motor stamping product is transmitted from the second conveyor 25 to the first conveyor 3, the external motor drives the transmission screw 63 to rotate, and the thread on the surface of the transmission screw 63 The threads on the inner wall of the movable block 55 match each other, and the movable block 55 is limited by the first linear rail 61 and the second linear rail 64, so the movable block 55 slides relative to the transmission screw rod 63, and the position of the limit assembly 5 on the upper limit of the first conveyor 3 is adjusted to push the cylinder 54 to perform telescopic movement, and push the cylinder 54 to push the limit frame 56 from one side, and the limit roller 57 blocks and limits the motor production raw materials from the side. The first servo motor 4 is started after being energized, and the first servo motor 4 drives the first active transmission roller 11 to rotate. The first active transmission roller 11 drives the first driven transmission roller 9 to rotate through the first transmission belt 10, and the first transmission belt 10 transmits the motor stamping raw materials after transmission.
[0031] Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments, or make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A stamping automatic transmission device for motor production, comprising a transmission frame (1), characterized in that: A first conveyor (3) is fixedly installed on the top of the conveyor frame (1), a first active conveyor roller (11) is rotatably connected to one side of the inner wall of the first conveyor (3), a first driven conveyor roller (9) is rotatably connected to the other side of the inner wall of the first conveyor (3), a first conveyor belt (10) is connected between the first active conveyor roller (11) and the first driven conveyor roller (9), one end of each side of the first conveyor (3) is rotatably connected to a connecting seat (12), a feeding assembly (2) is installed between the two connecting seats (12), a conveyor assembly (6) is fixedly installed on both sides of the top of the first conveyor (3), and the tops of the two conveyor assemblies (6) are fixedly installed. A limiting assembly (5) is installed at both ends, the feeding assembly (2) includes an assembly plate (21) and a length plate (22), the top end of the assembly plate (21) is fixedly connected to the bottom end of the length plate (22), and the top end of the length plate (22) is provided with a second conveyor (25), the limiting assembly (5) includes two limiting blocks (52) and a height plate (53), the two sides of the bottom end of the height plate (53) are respectively fixedly connected to the top ends of the two limiting blocks (52), one side of the height plate (53) is provided with a limiting frame (56), the other side of the height plate (53) is provided with a limiting plate (51), and both sides of the bottom end of the height plate (53) are fixedly installed with movable blocks (55).
2. The automatic stamping transmission device for motor production according to claim 1, characterized in that: A second active transmission roller (26) is rotatably connected to one side of the inner wall of the second conveyor (25), a second driven transmission roller (28) is rotatably connected to the other side of the inner wall of the second conveyor (25), a second transmission belt (27) is connected between the second active transmission roller (26) and the second driven transmission roller (28), a first servo motor (4) for driving the first active transmission roller (11) to rotate is fixedly installed on the surface of the first conveyor (3), and a second servo motor for driving the second active transmission roller (26) to rotate is fixedly installed on the surface of the second conveyor (25).
3. The automatic stamping transmission device for motor production according to claim 1, characterized in that: A lifting cylinder (23) is fixedly installed on the top end of the length plate (22), and a sliding block (24) is fixedly installed on the movable end of the lifting cylinder (23). The sliding block (24) is slidably connected to the second conveyor (25). One end on both sides of the second conveyor (25) is respectively connected to two connecting seats (12), and one end of the assembly plate (21) is fixedly connected to the conveyor frame (1).
4. The automatic stamping transmission device for motor production according to claim 1, characterized in that: The two transmission components (6) each include a first linear rail (61) and a second linear rail (64), positioning plates (62) are fixedly installed at both ends of one side of the first linear rail (61), and the ends of the two positioning plates (62) away from the first linear rail (61) are fixedly connected to the two ends of one side of the second linear rail (64), respectively. A transmission screw rod (63) is rotatably connected between the two positioning plates (62), and the bottom end of the first linear rail (61), the bottom end of the second linear rail (64) and the bottom ends of the two positioning plates (62) are all fixedly connected to the first conveyor (3).
5. The automatic stamping transmission device for motor production according to claim 4, characterized in that: The two movable blocks (55) are both threadedly connected to the transmission screw rod (63), and the opposite sides of the two movable blocks (55) are respectively slidably connected to the middle of the first linear track (61) and the middle of the second linear track (64).
6. The automatic stamping transmission device for motor production according to claim 1, characterized in that: The two ends of one side of the limiting plate (51) are fixedly installed with limiting blocks (52), and the ends of the two limiting blocks (52) away from the limiting plate (51) are fixedly connected to the side facing the height plate (53). A pushing cylinder (54) is fixedly installed in the middle of one side of the limiting plate (51), and the movable end of the pushing cylinder (54) is fixedly connected to the side facing the limiting frame (56). The limiting frame (56) is internally rotatably connected with a plurality of limiting rollers (57).
7. The automatic stamping transmission device for motor production according to claim 1, characterized in that: A detection frame (8) is fixedly mounted on one end of the first conveyor (3), and a visual detector (7) is fixedly mounted on one side of the detection frame (8).