A copper plate forming material conveying device

By cranking the handle to rotate the rod, the rod drives the threaded rod to rotate, which in turn moves the moving plate and support plate. Combined with the cooperation of the stepper motor and rack and pinion belt, the transmission speed is precisely controlled, solving the problem of inaccurate speed control in existing devices and improving the transmission efficiency of copper plate forming materials and the stability of the equipment.

CN118419509BActive Publication Date: 2025-10-17GUIXI AOTAI COPPER IND
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Patent Information

Application Number
CN202410616913.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-05-17
Publication Date
2025-10-17
Estimated Expiration
2044-05-17

AI Technical Summary

Technical Problem

The existing copper plate forming material conveying device controls the conveying speed by controlling the rotation speed of the motor. However, the speed control is not accurate enough, which affects work efficiency.

Method used

The system uses a crank handle to rotate the rod, which in turn drives the threaded rod to rotate. Through the movement of the moving plate and support plate, combined with the stepper motor driving the rotating shaft and the rack and pinion belt, the distance between the transmission devices is precisely controlled. The roller rotation is used for receiving and transitioning, thus achieving stable transport of copper plates.

Benefits of technology

It achieves more precise transmission speed control, improves work efficiency, and ensures the stability and ease of movement of the equipment through the threaded connection of the threaded column and hole and the auxiliary sliding of the universal wheel.

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Abstract

The application relates to the technical field of copper plate transmission, and discloses a copper plate forming material transmission device, which comprises a bottom plate, a support one is fixedly connected to the middle part of the front and rear ends of the upper side of the bottom plate, a rolling shaft is rotationally connected to the adjacent side of the two support ones, slide rails are fixedly connected to the top front and rear sides of the bottom plate, and a supporting plate is slidably connected to the top left and right sides of the bottom plate through the slide rails. The handle is shaken to drive the rod body to rotate, the rod body is matched to drive the threaded rod to rotate, the threaded rod is matched to drive the moving plate to move, the distance between the two transmission devices is controlled, the rolling shaft is matched to rotate to undertake transition, the transmission speed is more accurately controlled, the working efficiency is improved, the threaded connection of the threaded column and the hole is matched to the stable support of the base one and the base two, the auxiliary sliding of the universal wheel is realized, and the whole equipment is more stable during work and more convenient during movement.
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Description

Technical Field

[0001] The invention relates to the technical field of copper plate transmission, in particular to a copper plate forming material transmission device. Background Art

[0002] Copper plate is a common metal material, usually used to make circuit boards, roof coverings, decorative materials, etc. In the copper plate forming process, commonly used copper plate materials include: Pure copper plate: Pure copper plate has excellent electrical conductivity, thermal conductivity and machinability, and is suitable for making circuit boards, wires and other products that require high conductivity. Copper-plated plate: Copper-plated plate is a layer of copper plated on the surface of other substrates, which increases corrosion resistance and aesthetic appearance. It is often used in decorative materials, furniture and other fields. Copper alloy plate: Copper alloy plate is made by alloying copper with other metal elements, such as bronze and brass. It has excellent strength, wear resistance and corrosion resistance and is suitable for making mechanical parts, handicrafts, etc. Copper oxide plate: Copper oxide plate forms an oxide layer on the surface of the copper plate, which increases the surface hardness and wear resistance. It is often used in decoration, anti-corrosion and other applications. The above are the copper plate materials commonly used in the copper plate forming process. Different types of copper plate materials can be selected according to specific application requirements and processing technology.

[0003] A common conveyor system for copper sheet forming materials is the roller conveyor. This system consists of a series of parallel rollers, on which the copper sheets are placed and transported. Roller conveyors can be configured for horizontal, inclined, or vertical conveyance, making them suitable for long-distance transport of copper sheets and automated operations on continuous production lines. Roller conveyors offer advantages such as simple structure, high transport efficiency, and stable operation, making them a commonly used conveyor system in the copper sheet forming process.

[0004] At present, the transmission process of copper plate forming materials is mostly carried out on the assembly line. The source of the assembly line is manual operation, so the speed of the transmission process is particularly important. However, the existing transmission device only controls the transmission speed by controlling the speed of motor rotation. The speed control accuracy is not accurate enough, which affects work efficiency. Summary of the Invention

[0005] In response to the shortcomings of the existing technology, the present invention provides a copper plate forming material transmission device, which solves the problem that the existing transmission device only controls the transmission speed by controlling the speed of motor rotation, and the speed control accuracy is not accurate enough, which affects work efficiency.

[0006] To achieve the above objectives, the present invention is implemented through the following technical solutions: a copper plate forming material transmission device, comprising a base plate, the middle part of the front and rear ends of the upper side of the base plate is fixedly connected to a bracket 1, the adjacent sides of the two brackets are rotatably connected to rollers, the top front and rear sides of the base plate are fixedly connected to slide rails, the top left and right sides of the base plate are slidably connected to the support plate through the slide rails, the four corners of the top of the support plate are fixedly connected to bracket 2, the adjacent side of the left bracket 2 is rotatably connected to the rotating shaft 1, and the adjacent side of the right bracket 2 is rotatably connected to the rotating shaft 2, the rotating shaft 1 and the rotating shaft 2 are connected adjacently by belts, the top front side of the support plate is fixedly connected to a side plate, and the rear side of the side plate is equidistantly rotatably connected to a plurality of rotating rods. The cam is connected to the drive shaft by a toothed plate, and the toothed plate is connected to the drive shaft by a toothed plate.

[0007] Preferably, the support mechanism includes base one, the bottom of the base plate is fixedly connected to base one, and holes are provided on the sides away from the bottoms of the two support plates, the internal threads of the holes are connected to threaded columns, the end of the threaded columns are threadedly connected to base two, and the bottom end of the threaded column is fixedly connected to a knob disk.

[0008] Preferably, the support mechanism further includes universal wheels, and the four corners of the bottom of the base one and the base two are fixedly connected with universal wheels.

[0009] Preferably, a controller is fixedly connected to the inner bottom of the base 1, and the controller is electrically connected to the stepping motor.

[0010] Preferably, armrests are fixedly connected to the front tops of the base one and the base two.

[0011] Preferably, the bottom of the support plate is fixedly connected to a movable plate, and the left and right sides, front and rear ends of the bottom plate are fixedly connected to cross sliding columns, and the ends of the plurality of cross sliding columns respectively pass through the corresponding movable plates.

[0012] Preferably, the rack belts are respectively engaged and connected with the corresponding embedded grooves.

[0013] Working principle: through the shaking handle drives the rod body to rotate, cooperates with the rod body drive screw rod rotation, thereby drives the moving plate to move, the moving plate drives the structure on the support plate to move left and right, the step motor drives the rotation shaft one to rotate simultaneously, under the work of the rack belt cooperation with the rotating rod and the embedded slot, makes the belt to transport, thereby controls the distance between the two transmission devices, cooperates the roller rotation and carries on the transition, thereby guarantees the normal conveying of copper plate, more accurate control transmission speed, improves the work efficiency, and through the threaded connection of the threaded column and the hole, cooperates the stable support of base one and base two, the auxiliary sliding of universal wheel, makes the whole equipment work more stably, moves more conveniently.

[0014] The application provides a copper plate forming material transmission device.

[0015] 1、 the application drives the rod body to rotate through the shaking handle, cooperates with the rod body drive screw rod rotation, thereby drives the moving plate to move, the moving plate drives the structure on the support plate to move left and right, thereby controls the distance between the two transmission devices, cooperates the roller rotation and carries on the transition, thereby guarantees the normal conveying of copper plate, more accurate control transmission speed, improves the work efficiency.

[0016] 2、 the application is through the threaded connection of the threaded column and the hole, cooperates the stable support of base one and base two, the auxiliary sliding of universal wheel, makes the whole equipment work more stably, moves more conveniently. DRAWINGS

[0017] Figure 1 It is the front view of the application;

[0018] Figure 2 It is the rear view of the application;

[0019] Figure 3 It is the top view of the application;

[0020] Figure 4 It is the perspective view of the application;

[0021] Figure 5 It is the bottom view of the application;

[0022] Figure 6 It is the perspective view of the application;

[0023] Figure 7 It is the front view of the application.

[0024] Wherein, 1, bottom plate; 2, support one; 3, roller; 4, slide rail; 5, support plate; 6, support two; 7, pivot one; 8, pivot two; 9, belt; 10, side plate; 11, rotating rod; 12, right angle plate; 13, stepper motor; 14, embedded groove; 15, rack strip; 16, mounting plate; 17, rod body; 18, threaded rod; 19, handle; 20, moving plate; 21, cross slide; 22, support mechanism; 2201, base one; 2202, hole; 2203, threaded column; 2204, base two; 2205, knob disc; 2206, universal wheel; 23, handrail; 24, controller. DETAILED DESCRIPTION

[0025] The technical solutions in the embodiments of the present application will be described clearly and completely below in conjunction with the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the present application.

[0026] Embodiment:

[0027] Please refer to the drawings attached Figure 1 - the drawings attached Figure 7The embodiment of the present application provides a copper plate forming material conveying device, which comprises a bottom plate 1, the upper side of the bottom plate 1 is fixedly connected with a support one 2 at the middle of the front and rear ends, the adjacent side of the two support ones 2 is rotatably connected with a roller shaft 3, the top of the bottom plate 1 is fixedly connected with a sliding rail 4 at the front and rear sides, the top of the bottom plate 1 is slidably connected with a support plate 5 through the sliding rail 4 at the left and right sides, the top of the support plate 5 is fixedly connected with a support two 6 at the four corners, the adjacent side of the left support two 6 is rotatably connected with a rotating shaft one 7, the adjacent side of the right support two 6 is rotatably connected with a rotating shaft two 8, the rotating shaft one 7 and the rotating shaft two 8 are connected through a belt 9 between the adjacent sides, the top of the support plate 5 is fixedly connected with a side plate 10 at the front side, the rear side of the side plate 10 is rotatably connected with a plurality of rotating rods 11 at equal intervals, the rear ends of the plurality of rotating rods 11 respectively penetrate through the corresponding belts 9, the rear ends of the outer walls of the rotating shaft one 7, the rotating shaft two 8 and the rotating rod 11 are all provided with a plurality of embedded grooves 14, the embedded grooves 14 on the rotating shaft one 7 and the rotating shaft two 8 are connected through a rack belt 15, the rear sides of the two support plates 5 are fixedly connected with right angle plates 12 at the sides away from each other, the top of the right angle plate 12 is fixedly connected with a stepping motor 13, the output ends of the two stepping motors 13 are respectively fixedly connected at the ends of the corresponding rotating shaft one 7, the left and right ends of the front side of the bottom plate 1 are fixedly connected with mounting plates 16, the middle part of the mounting plate 16 is rotatably connected with a rod body 17, one end of the rod body 17 is fixedly connected with a threaded rod 18, the other end of the rod body 17 is fixedly connected with a handle 19, the middle parts of the two threaded rods 18 are respectively threadedly connected with the ends of the corresponding moving plates 20, the bottom of the bottom plate 1 is provided with a supporting mechanism 22; the rack belt 15 is meshingly connected with the corresponding embedded groove 14; the bottom of the support plate 5 is fixedly connected with a moving plate 20, the left and right sides of the bottom plate 1 are fixedly connected with cross slides 21 at the front and rear ends, the ends of the plurality of cross slides 21 respectively penetrate through the corresponding moving plates 20;

[0028] Specifically, by shaking the handle 19 to drive the rod body 17 to rotate, the threaded rod 18 is driven to rotate by the rod body 17, thereby driving the threaded rod 18 to drive the moving plate 20 to move, the moving plate 20 drives the structure on the support plate 5 to move left and right, and at the same time, the step motor 13 drives the rotating shaft 7 to rotate. Under the cooperation of the rack belt 15, the rotating rod 11 and the embedded groove 14, the belt 9 is transported, thereby controlling the distance between the two transmission devices, cooperating with the rotation of the roller 3 to receive the transition, thereby ensuring the normal conveying of the copper plate, more accurately controlling the transmission speed, and improving the work efficiency. In the specific working process, first, the rod body 17 is driven to rotate by shaking the handle 19. This rotating process is not isolated, but closely cooperates with other parts to jointly complete the operation of the entire device. The rotation of the rod body 17 drives the rotation of the threaded rod 18, which is a key link in the operation of the entire device. The rotation of the threaded rod 18 drives the moving plate 20 to move. This process is like the nervous system of the human body, which transmits instructions to every end, ensuring that every link can accurately complete the task. The movement of the moving plate 20 drives the structure on the support plate 5 to move left and right, which is another important link in the operation of the device. At the same time, the step motor 13 drives the rotating shaft 7 to rotate. The rotation of the rotating shaft drives the movement of the rack belt 15, which is another key part of the device operation. The movement of the rack belt 15 enables the belt 9 to be smoothly transported, thereby controlling the distance between the two transmission devices. In this process, the roller 3 plays an important role in receiving the transition. It ensures the stability of the copper plate during conveying, avoiding faults caused by unstable speed or distance. All this ensures the normal conveying of the copper plate while more accurately controlling the transmission speed, greatly improving the work efficiency. In general, through the cooperative work of each part, the device realizes efficient and precise transmission control. Each link is like a gear of a machine, operating precisely and orderly to ensure the stability and efficiency of the entire device.

[0029] The support mechanism 22 comprises a base one 2201, the bottom of the base one 2201 is fixedly connected with the bottom plate 1, the bottom of each of the two support plates 5 is provided with a hole 2202 away from each other, the inside of the hole 2202 is threadedly connected with a threaded column 2203, the end of the threaded column 2203 is threadedly connected with a base two 2204, and the bottom end of the threaded column 2203 is fixedly connected with a knob disc 2205; the support mechanism 22 further comprises a universal wheel 2206, and the four corners of the bottom of the base one 2201 and the base two 2204 are fixedly connected with the universal wheel 2206;

[0030] Specifically, through the threaded connection of the threaded column 2203 and the hole 2202, the stable support of the base one 2201 and the base two 2204, and the auxiliary sliding of the universal wheel 2206, the entire device is more stable during operation and more convenient during movement. In various working scenarios, the stability and mobility of the device are often crucial. To achieve this goal, we have designed an innovative device structure that ensures stable and reliable operation while making it more convenient to move through precise threaded connections and stable support. Specifically, the main components of the device include the threaded column 2203, the hole 2202, the base one 2201, the base two 2204, and the universal wheel 2206. Among them, the threaded connection of the threaded column 2203 and the hole 2202 is the basis for the stability of the entire device. This connection allows the device to maintain good stability even under heavy pressure, preventing deformation due to excessive pressure. The base one 2201 and the base two 2204 serve as stable support. They are located at the bottom of the device and are fixed together through threaded connections to keep the device stable during operation. At the same time, the base two 2204 also contacts the ground, enhancing the stability of the device and ensuring normal operation in complex environments. The introduction of the universal wheel 2206 provides convenience for the movement of the device. The universal wheel 2206 is made of high-quality materials and has good wear resistance and slip resistance. During movement, it can easily roll on various surfaces, making it easier to transport the device over long distances. In addition, the design of the universal wheel 2206 also takes into account the friction with the ground, allowing it to maintain stability during movement without damaging the ground. Through the threaded connection of the threaded column 2203 and the hole 2202, combined with the stable support of the base one 2201 and the base two 2204, and the auxiliary sliding of the universal wheel 2206, this device structure not only ensures stability but also greatly improves the mobility of the device. Thus, the entire device is more stable during operation and more convenient during movement, providing strong support for various working scenarios.

[0031] The inner bottom of the base one 2201 is fixedly connected with a controller 24, and the controller 24 is electrically connected with the stepping motor 13; the front top of the base one 2201 and the base two 2204 are fixedly connected with a handrail 23;

[0032] Specifically, the controller controls the operation of the stepper motor 13, and the handrail 23 makes it easier for workers to move and operate. In modern industrial production, the degree of automation of mechanical equipment is increasingly high, thereby improving production efficiency and product quality. In this context, the application of the stepper motor 13 is particularly important. It is an electric motor that can convert electrical energy into mechanical energy, and is operated by a precise controller to achieve precise positioning and control functions. The stepper motor converts electrical pulses into angular displacement to achieve precise rotational control. Under the action of the controller, the motor moves at a predetermined speed, direction, and step number to meet the needs of various working conditions. By programming the controller, precise control of the stepper motor 13 can be achieved, allowing it to play an important role in the production process. In the process of operating the stepper motor 13, workers need to move and operate. The design of the handrail 23 makes it easier for workers to hold the equipment, thereby maintaining stability during operation. This design helps to improve work efficiency and reduce the labor intensity of workers. In addition, the handrail 23 can also be equipped with some auxiliary equipment, such as gloves, grips, etc., further expanding the application range of the stepper motor 13. In order to achieve precise control of the stepper motor 13, we need to choose the right controller. There are many types of controllers on the market, such as single-chip microcomputers, PLCs, etc. These controllers have different performance and functions, and can be selected according to actual needs. For example, if the positioning accuracy is high, a controller with high resolution can be selected; if real-time requirements are high, a controller with fast response speed can be selected. In actual operation, attention should also be paid to the driving mode of the stepper motor 13. Common driving modes include open-loop driving and closed-loop driving. Open-loop driving is simple in structure and low in cost, but has relatively low positioning accuracy; closed-loop driving has high positioning accuracy and reliability, but is more expensive. According to the actual needs of the production process, the appropriate driving mode can be selected. Through precise control of the stepper motor 13 and the design of the handrail 23, efficient and convenient operation experience can be provided for industrial production. In the selection of controllers, driving modes, etc., the actual needs of the production process should be fully considered to ensure that the equipment performs at its best.

[0033] Although embodiments of the present application have been shown and described, it is to be understood that various modifications, substitutions, replacements and changes can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A copper plate forming material transmission device, comprising a bottom plate (1), characterized in that: The middle of the front and rear ends of the upper side of the bottom plate (1) are fixedly connected to a bracket one (2), and the adjacent sides of the two brackets one (2) are rotatably connected to a roller (3). The front and rear sides of the top of the bottom plate (1) are fixedly connected to a slide rail (4), and the left and right sides of the top of the bottom plate (1) are slidably connected to a support plate (5) through the slide rail (4). The four corners of the top of the support plate (5) are fixedly connected to a bracket two (6), and the adjacent side of the left bracket two (6) is rotatably connected to a rotating shaft one (7), and the adjacent side of the right bracket two (6) is rotatably connected to a rotating shaft two (8). The rotating shaft The first (7) and the second (8) of the rotating shafts are connected to each other by a belt (9), the front side of the top of the support plate (5) is fixedly connected to a side plate (10), the rear side of the side plate (10) is equidistantly connected to a plurality of rotating rods (11), the rear ends of the plurality of rotating rods (11) respectively pass through the corresponding belts (9), the rear ends of the outer walls of the first (7), the second (8) and the rotating rods (11) are each provided with a plurality of embedded grooves (14), the embedded grooves (14) on the first (7) and the second (8) of the rotating shaft are connected by a rack belt (15), and the rear sides of the two support plates (5) are spaced apart. The bottom plate (1) is fixedly connected to one end with a right angle plate (12), the top of the right angle plate (12) is fixedly connected to a stepper motor (13), the output ends of the two stepper motors (13) are respectively fixedly connected to the ends of the corresponding rotating shafts (7), the left and right ends of the front side of the bottom plate (1) are fixedly connected to mounting plates (16), the middle part of the mounting plate (16) is rotatably connected to a rod body (17), one end of the rod body (17) is fixedly connected to a threaded rod (18), the other end of the rod body (17) is fixedly connected to a handle (19), the middle parts of the two threaded rods (18) are respectively connected to the corresponding movable shafts (7). The end of the movable plate (20) is threadedly connected, and a support mechanism (22) is provided at the bottom of the base plate (1), and the support mechanism (22) includes a base 1 (2201), and the bottom of the base plate (1) is fixedly connected to the base 1 (2201), and the bottoms of the two support plates (5) are each provided with a hole (2202) on one side away from each other, and the inner thread of the hole (2202) is connected to a threaded column (2203), and the end of the threaded column (2203) is threadedly connected to the base 2 (2204), and the bottom end of the threaded column (2203) is fixedly connected to the knob disk (2205).

2. A copper plate forming material transmission device according to claim 1, characterized in that: The support mechanism (22) further comprises universal wheels (2206), and the four corners of the bottom of the base 1 (2201) and the base 2 (2204) are all fixedly connected with universal wheels (2206).

3. The copper plate forming material transmission device according to claim 1, characterized in that: The inner bottom of the base 1 (2201) is fixedly connected to a controller (24), and the controller (24) is electrically connected to the stepping motor (13).

4. The copper plate forming material transmission device according to claim 1, characterized in that: The front tops of the base 1 (2201) and the base 2 (2204) are both fixedly connected with armrests (23).

5. The copper plate forming material transmission device according to claim 1, characterized in that: The bottom of the support plate (5) is fixedly connected to a movable plate (20), and the left and right front and rear ends of the bottom plate (1) are fixedly connected to cross sliding columns (21), and the ends of the plurality of cross sliding columns (21) respectively penetrate the corresponding movable plates (20).

6. The copper plate forming material transmission device according to claim 1, characterized in that: The rack belts (15) are respectively engaged and connected with the corresponding embedded grooves (14).

Citation Information

Patent Citations

  • Adjustable conveyor

    CN115258525A

  • Plate feeding equipment

    CN214114012U