Carrying equipment for copper foil production and using method thereof
By designing a copper foil handling equipment with gears, screws and bidirectional screw systems, the problems of copper foil rolls falling off during transportation and low equipment adaptability are solved, and the stable limit and safe transportation of copper foil rolls are achieved.
Patent Information
- Application Number
- CN202510638116.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-19
- Publication Date
- 2025-06-17
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Existing copper foil handling equipment cannot limit the copper foil roll, resulting in the copper foil roll being easily shedded during transportation and the equipment adaptability is reduced.
A copper foil production and handling equipment was designed, using motor A to drive the gear and screw system to achieve lifting and limiting of the support rod and copper foil roll, and through motor B to drive the bidirectional screw and side rod system to achieve limiting the bottom and surface of the copper foil roll.
Effectively prevent the copper foil roll from falling off due to inertia during transportation, improve the stability and adaptability of transportation equipment, and ensure the safe transportation of copper foil rolls.
Smart Images

Figure CN120156945A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of copper foil handling equipment, and particularly to a handling equipment for copper foil production and its usage method. Background Art
[0002] During the copper foil production process, the handling equipment plays a crucial role in the production line. Since copper foil materials are usually thin, prone to deformation, and have a certain weight, professional equipment is required to ensure their safe and precise handling.
[0003] For example, the "Automated Handling Equipment for Copper Foil Paper" with the publication number CN205526624U includes: a lifting device, a conveying device, and a grasping mechanism; the conveying device mainly includes: a cross beam and a fixed platform, and the fixed platform is slidably connected to the cross beam; the lifting device includes: a servo motor, a cam mechanism, and a lifting shaft. The servo motor is fixed to the fixed platform, the main shaft of the servo motor is connected to the cam mechanism, the cam mechanism is connected to the lifting shaft, and a fixed frame is connected to the bottom of the lifting shaft. A pair of grasping mechanisms are respectively arranged at both ends of the fixed frame; the grasping mechanism includes: a movable frame, a grasping device, and a hook claw. The grasping device is fixedly connected to the movable frame, the hook claw is arranged at the lower end of the grasping device, and the hook claw adopts two groups of mutually symmetrical L-shaped structures. By the above method, the failure rate of the equipment can be reduced and the product quality can be improved.
[0004] However, in the prior art, although this kind of handling equipment for copper foil production has achieved the effects of reducing the failure rate of the equipment and improving the product quality, it is lacking in the handling of copper foil rolls. Since this kind of copper foil handling equipment can only handle copper foil paper and cannot handle copper foil rolls, and copper foil is usually transported in the form of rolls after production, and copper foil paper is formed by cutting the copper foil roll, which leads to the situation that other transportation tools need to be used for its transportation. Generally, the equipment for transporting copper foil rolls usually does not have the function of limiting and adjusting the copper foil roll, which will cause the copper foil roll to fall off due to the inertia of movement when the transportation equipment transports the copper foil roll. The falling off of the copper foil roll will not only damage the copper foil roll, but also cause the situation that the staff is injured by being hit or crushed. Moreover, the lack of adjustment function will also reduce the adaptability of the transportation equipment. Summary of the Invention
[0005] The purpose of the present invention is to provide a handling equipment for copper foil production and its usage method to solve the problem that the handling equipment for copper foil production in the above background art does not have the function of limiting and adjusting the copper foil roll, resulting in the copper foil roll falling off or its adaptability being reduced.
[0006] To achieve the above object, the present invention provides the following technical solution: A handling device for copper foil production, including a base, on the top surface of the base is fixedly installed a back plate, on the top surface of the back plate is fixedly installed a motor A, the output end of the motor A is installed with a gear A, inside the back plate is rotatably connected a gear B, on the bottom surface of the gear B is fixedly installed a lead screw A, on the inner surface of the back plate is provided with a limiting groove A, inside the back plate is slidably connected a moving block A, inside the moving block A is rotatably connected a roller, on the surface of the moving block A are respectively fixedly installed a support rod A and a support rod B, inside the support rod A is fixedly installed an electric push rod, the output end of the electric push rod is installed with a clamping block A, on the surface of the support rod A is provided with a through limiting groove B, inside the support rod A is rotatably connected a screw rod, on the surface of the support rod A is slidably connected a clamping block B, on the surface of the base is provided with a through limiting groove C, inside the base is fixedly installed a motor B, the output end of the motor B is installed with a bidirectional lead screw B, inside the limiting groove C is slidably connected a moving block B, on the surface of the moving block B is fixedly installed a side rod, on the surface of the side rod is inserted a clamping block C, on the surface of the clamping block C is rotatably connected a rotating block.
[0007] Preferably, the bottom surface of the base is fixedly installed with universal wheels, on the surface of the back plate is fixedly installed a push handle, on the surfaces of the gear A and the gear B is sleeved a toothed chain, and the shape of the base is U-shaped.
[0008] Preferably, between the gear A and the back plate is rotatably connected, both the gear A and the gear B are meshed with the toothed chain, between the moving block A and the lead screw A is connected by a thread, and between the roller and the limiting groove A is rolling connected.
[0009] Preferably, the materials on the surfaces of the clamping block A, the clamping block B and the clamping block C are all natural rubber, between the clamping block B and the screw rod is connected by a thread, between the clamping block B and the limiting groove B is slidably connected, and on the surfaces of both the support rod A and the support rod B are provided with the clamping block A and the clamping block B.
[0010] Preferably, between the bidirectional lead screw B and the base is rotatably connected, between the moving block B and the bidirectional lead screw B is connected by a thread, between the clamping block C and the side rod is slidably connected, and between the rotating block and the side rod is connected by a thread.
[0011] Preferably, on the surface of the base is provided with a storage groove, on the inner surface of the storage groove is provided with a fixing hole, inserted into the base is an insertion bar, inside the base is rotatably connected a rotating rod, on the surface of the rotating rod is sleeved a torsion spring, at one end of the rotating rod is fixedly installed a side frame, on the surface of the side frame is provided with a through positioning hole, at one end of the side frame is slidably connected a limiting rod A, at the bottom end of the limiting rod A is fixedly installed a bottom plate, and on the top surface of the bottom plate is rotatably connected a lead screw C.
[0012] Preferably, the insert bar is slidably connected to the positioning hole, the insert bar is threadedly connected to the fixing hole, one end of the torsion spring is connected to the side surface of the side frame, and the other end is connected to the inner surface of the base. The screw rod C is threadedly connected to the side frame, and the side frame is slidably connected to the storage groove.
[0013] Preferably, a limiting groove D is formed on the top surface of the base, a moving block C is slidably connected inside the limiting groove D, a limiting rod B is fixedly installed inside the base, a plug rod is threadedly connected to the top surface of the moving block C, a warning rod is fixedly installed on the top surface of the plug rod, and a spring is sleeved on the surface of the limiting rod B.
[0014] Preferably, one end of the spring is connected to the surface of the moving block C, and the other end is connected to the inner surface of the base. The moving block C is slidably connected to the limiting rod B.
[0015] A using method of a handling device for copper foil production includes the following steps: S1. Drive the gear A to rotate through the motor A. When the gear A rotates, it will drive the gear B to rotate through the tooth chain. The gear B will drive the screw rod A to rotate. When the screw rod A rotates, it will drive the moving block A to slide inside the back plate, thereby driving the support rods A and B to lift. After the heights of the support rods A and B are lower than the copper foil roll, the base can be moved through the push handle and the universal wheels. After the support rods A and B are inserted into the copper foil roll, the motor A can be driven to rotate the screw rod A in the reverse direction, so that the support rods A and B lift the copper foil roll. At this time, the electric push rod is turned on. The electric push rod will drive the clamping block A to move, and the clamping block A will push the copper foil roll to move on the surfaces of the support rods A and B. After the copper foil roll moves to the middle section of the support rods A and B, the screw can be rotated. When the screw rotates, it will drive the clamping block B to move, so as to limit the copper foil roll between the support rods A and B through the clamping blocks A and B; S2. Drive the bidirectional screw rod B to rotate through the motor B. When the bidirectional screw rod B rotates, it will drive the moving block B to slide inside the limiting groove C, and the moving block B will drive the side rod to move. After the side plate fits against the bottom of the copper foil roll, the clamping block C can be inserted on the surface of the side rod. At this time, rotate the rotating block. When the rotating block rotates, it will be affected by the thread and drive the clamping block C to slide on the surface of the side rod. After the clamping block C fits against the surface of the copper foil roll, the limiting of the copper foil roll is completed; S3. By rotating the insert bar, after the insert bar rotates out of the fixing hole, the insert bar can be withdrawn from the positioning hole. After the insert bar is withdrawn from the positioning hole, at this time, the side frame will rotate under the torsional force of the torsion spring. When the side frame rotates, it will drive the bottom plate to rotate. After the bottom plate is horizontal with the ground surface, then rotate the screw rod C. As the screw rod C rotates, the bottom plate will drive the limit rod A to slide inside the side frame. After the bottom plate fits with the ground, the side support for the base can be completed. S4. By inserting the insertion rod into the moving block C, and then rotating the warning rod at this time, the warning rod will drive the insertion rod to rotate. After the insertion rod is threadedly connected to the moving block C, the installation of the warning rod can be completed. When moving the base, when the warning rod touches an obstacle, the warning rod will drive the moving block C to slide inside the limit groove D and also slide on the surface of the limit rod B. After the warning rod moves away from the obstacle, the moving block C will be driven by the elastic force of the spring to slide in the opposite direction on the surfaces of the limit groove D and the limit rod B, thereby driving the warning rod to reset.
[0016] Compared with the prior art, the beneficial effects of the present invention are: 1. In the present invention, the motor A drives the gear A to rotate. When the gear A rotates, it drives the gear B to rotate through the tooth chain. The gear B drives the screw rod A to rotate. When the screw rod A rotates, it drives the moving block A to slide inside the back plate, thereby driving the support rods A and B to rise and fall. After the heights of the support rods A and B are lower than the copper foil roll, the base can be moved through the push handle and the universal wheels. After the support rods A and B are inserted into the copper foil roll, the motor A can be driven to rotate the screw rod A in the reverse direction, so that the support rods A and B lift the copper foil roll. At this time, the electric push rod is turned on. The electric push rod drives the clamping block A to move, and the clamping block A pushes the copper foil roll to move on the surfaces of the support rods A and B. After the copper foil roll moves to the middle section of the support rods A and B, the screw rod can be rotated. When the screw rod rotates, it drives the clamping block B to move, so as to limit the copper foil roll between the clamping block A and the clamping block B in the middle section of the support rods A and B, preventing the copper foil roll from shaking and falling off due to inertia during the movement. Then, the motor B drives the bidirectional screw rod B to rotate. When the bidirectional screw rod B rotates, the moving block B slides inside the limit groove C, and the moving block B drives the side rod to move. After the side plate fits the bottom of the copper foil roll, the clamping block C is inserted on the surface of the side rod. At this time, rotate the rotating block. When the rotating block rotates, it will drive the clamping block C to slide on the surface of the side rod under the influence of the thread. After the clamping block C fits on the surface of the copper foil roll, the limiting of the copper foil roll can be completed. The design of the side rod plays an effect of supporting and limiting the bottom of copper foil rolls of different sizes.
[0017] 2. In the present invention, by rotating the inserting bar, after the inserting bar rotates out from the fixing hole, the inserting bar can be withdrawn from the positioning hole. After the inserting bar is withdrawn from the positioning hole, at this time, the side frame will rotate under the torsional force of the torsion spring, and when the side frame rotates, it will drive the bottom plate to rotate. After the bottom plate is level with the ground surface, then rotate the screw rod C. As the screw rod C rotates, the bottom plate will drive the limiting rod A to slide inside the side frame. After the bottom plate fits with the ground, the side support of the base can be completed, thereby avoiding the situation that the base shakes or tilts during the process of unloading and loading the copper foil roll, thus improving the stability of the transportation equipment, and at the same time facilitating the storage of the side frame.
[0018] 3. In the present invention, by inserting the inserting rod into the moving block C, and then rotating the warning rod at this time, the warning rod will drive the inserting rod to rotate. After the inserting rod is threadedly connected with the moving block C, the installation of the warning rod can be completed. When moving the base, when the warning rod touches an obstacle, the warning rod will drive the moving block C to slide inside the limiting groove D, and at the same time will also slide on the surface of the limiting rod B. After the warning rod moves away from the obstacle, the moving block C will be driven by the elastic force of the spring to slide reversely on the surfaces of the limiting groove D and the limiting rod B, thereby driving the warning rod to reset. The design of the warning rod not only facilitates the disassembly, installation and replacement of the warning rod, but also has the effect of not hindering the loading and unloading of the transportation equipment. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 is the overall structural schematic diagram of a handling device for copper foil production according to the present invention; Figure 2 is the exploded structural schematic diagram of the motor A, screw rod A, moving block A and support rod A in a handling device for copper foil production according to the present invention; Figure 3 is a part of a handling device for copper foil production according to the present invention Figure 2 magnified view of part A; Figure 4 is a part of a handling device for copper foil production according to the present invention Figure 2 magnified view of part B; Figure 5 is the exploded structural schematic diagram of the moving block B and the side rod in a handling device for copper foil production according to the present invention; Figure 6 is the exploded structural schematic diagram of the side frame in a handling device for copper foil production according to the present invention; Figure 7 is a part of a handling device for copper foil production according to the present invention Figure 6 magnified view of part C; Figure 8 is the exploded structural schematic diagram of the warning rod in a handling device for copper foil production according to the present invention; Figure 9For a handling device used in the production of copper foil according to the present invention Figure 8 An enlarged view of part D in
[0020] In the figure: 100, base; 101, universal wheel; 102, back plate; 103, push handle; 104, motor A; 105, gear A; 106, gear B; 107, tooth chain; 108, lead screw A; 109, limit groove A; 110, moving block A; 111, roller; 112, support rod A; 113, electric push rod A; 114, clamping block A; 115, support rod B; 116, limit groove B; 117, screw; 118, clamping block B; 119, limit groove C; 120, motor B; 121, moving block B; 122, side rod; 123, rotating block; 124, clamping block C; 125, bidirectional lead screw B; 200, storage groove; 201, fixing hole; 202, insertion bar; 203, rotating rod; 204, torsion spring; 205, side frame; 206, positioning hole; 207, lead screw C; 208, bottom plate; 209, limit rod A; 300, limit groove D; 301, moving block C; 302, insertion rod; 303, warning rod; 304, limit rod B; 305, spring. Specific embodiments
[0021] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0022] Embodiment 1: Refer to Figures 1-5As shown: A handling device for copper foil production and its usage method, including a base 100. On the top surface of the base 100, a backboard 102 is fixedly installed. On the top surface of the backboard 102, a motor A 104 is fixedly installed. At the output end of the motor A 104, a gear A 105 is installed. Inside the backboard 102, a gear B 106 is rotatably connected. At the bottom surface of the gear B 106, a lead screw A 108 is fixedly installed. On the inner surface of the backboard 102, a limiting groove A 109 is opened. Inside the backboard 102, a moving block A 110 is slidably connected. Inside the moving block A 110, a roller 111 is rotatably connected. On the surface of the moving block A 110, a support rod A 112 and a support rod B 115 are respectively fixedly installed. Inside the support rod A 112, an electric push rod is fixedly installed. At the output end of the electric push rod, a clamping block A 114 is installed. A limiting groove B 116 is opened through the surface of the support rod A 112. Inside the support rod A 112, a screw rod 117 is rotatably connected. On the surface of the support rod A 112, a clamping block B 118 is slidably connected. Through the surface of the base 100, a limiting groove C 119 is opened. Inside the base 100, a motor B 120 is fixedly installed. At the output end of the motor B 120, a bidirectional lead screw B 125 is installed. Inside the limiting groove C 119, a moving block B 121 is slidably connected. On the surface of the moving block B 121, a side rod 122 is fixedly installed. On the surface of the side rod 122, a clamping block C 124 is inserted. On the surface of the clamping block C 124, a rotating block 123 is rotatably connected. At the bottom surface of the base 100, universal wheels 101 are fixedly installed. On the surface of the backboard 102, a push handle 103 is fixedly installed. A chain 107 is sleeved on the surfaces of the gear A 105 and the gear B 106. The shape of the base 100 is U-shaped. The gear A 105 is rotatably connected to the backboard 102. Both the gear A 105 and the gear B 106 are meshed with the chain 107. The moving block A 110 is threadedly connected to the lead screw A 108. The roller 111 is rollingly connected to the limiting groove A 109. The materials on the surfaces of the clamping block A 114, the clamping block B 118, and the clamping block C 124 are all natural rubber. The clamping block B 118 is threadedly connected to the screw rod 117. The clamping block B 118 is slidably connected to the limiting groove B 116. On the surfaces of the support rod A 112 and the support rod B 115, the clamping block A 114 and the clamping block B 118 are both provided. The bidirectional lead screw B 125 is rotatably connected to the base 100. The moving block B 121 is threadedly connected to the bidirectional lead screw B 125. The clamping block C 124 is slidably connected to the side rod 122. The rotating block 123 is threadedly connected to the side rod 122.
[0023] In this embodiment, the motor A104 drives the gear A105 to rotate. When the gear A105 rotates, it drives the gear B106 to rotate through the tooth chain 107. The gear B106 then drives the lead screw A108 to rotate. When the lead screw A108 rotates, it drives the moving block A110 to slide inside the backboard 102, thereby driving the support rod A112 and the support rod B115 to lift. After the heights of the support rod A112 and the support rod B115 are lower than the copper foil roll, the base 100 can be moved through the push handle 103 and the universal wheels 101. After the support rod A112 and the support rod B115 are inserted into the copper foil roll, the motor A104 can be driven to drive the lead screw A108 to rotate in the reverse direction, so that the support rod A112 and the support rod B115 lift the copper foil roll. At this time, the electric push rod is turned on, and the electric push rod drives the clamp block A114 to move, and the clamp block A114 pushes the copper foil roll to move on the surfaces of the support rod A112 and the support rod B115. After the copper foil roll moves to the middle section of the support rod A112 and the support rod B115, the screw 117 can be rotated. When the screw 117 rotates, it drives the clamp block B118 to move, so that the copper foil roll is limited to the middle section of the support rod A112 and the support rod B115 through the clamp block A114 and the clamp block B118, preventing the copper foil roll from shaking and falling off due to inertia during the movement; Then, the motor B120 drives the bidirectional lead screw B125 to rotate. When the bidirectional lead screw B125 rotates, the moving block B121 slides inside the limit groove C119, and the moving block B121 drives the side rod 122 to move. After the side plate fits the bottom of the copper foil roll, the clamp block C124 can be inserted on the surface of the side rod 122. At this time, the rotating block 123 is rotated. When the rotating block 123 rotates, it drives the clamp block C124 to slide on the surface of the side rod 122 under the influence of the thread. After the clamp block C124 fits on the surface of the copper foil roll, the limiting of the copper foil roll is completed. The design of the side rod 122 has the effect of supporting and limiting the bottom of copper foil rolls of different sizes.
[0024] Embodiment 2: Figures 6-7As shown in the figure, a storage groove 200 is formed on the surface of the base 100, a fixing hole 201 is formed on the inner surface of the storage groove 200, an insertion bar 202 is inserted into the interior of the base 100, a rotating rod 203 is rotatably connected to the interior of the base 100, a torsion spring 204 is sleeved on the surface of the rotating rod 203, a side frame 205 is fixedly installed at one end of the rotating rod 203, a positioning hole 206 is formed through the surface of the side frame 205, a limiting rod A209 is slidably connected to one end of the side frame 205, a bottom plate 208 is fixedly installed at the bottom end of the limiting rod A209, a lead screw C207 is rotatably connected to the top surface of the bottom plate 208, the insertion bar 202 is slidably connected between the positioning hole 206, the insertion bar 202 is threadedly connected to the fixing hole 201, one end of the torsion spring 204 is connected to the side surface of the side frame 205, and the other end is connected to the inner surface of the base 100. The lead screw C207 is threadedly connected to the side frame 205, and the side frame 205 is slidably connected to the storage groove 200.
[0025] In this embodiment, by rotating the insertion bar 202, after the insertion bar 202 is rotated out of the fixing hole 201, the insertion bar 202 can be pulled out of the positioning hole 206. After the insertion bar 202 is pulled out of the positioning hole 206, at this time, the side frame 205 will rotate under the action of the torsion force of the torsion spring 204, and when the side frame 205 rotates, it will drive the bottom plate 208 to rotate. After the bottom plate 208 is horizontal with the bottom surface, then rotate the lead screw C207. As the lead screw C207 rotates, the bottom plate 208 will drive the limiting rod A209 to slide inside the side frame 205. After the bottom plate 208 is in contact with the ground, the side support of the base 100 can be completed, thereby avoiding the situation that the base 100 shakes or tilts during the process of unloading and loading the copper foil roll, thereby improving the stability of the transportation equipment, and at the same time, it is also convenient to store the side frame 205.
[0026] Embodiment Three: According to Figures 8-9 As shown in the figure, a limiting groove D300 is formed on the top surface of the base 100, a moving block C301 is slidably connected to the interior of the limiting groove D300, a limiting rod B304 is fixedly installed inside the base 100, an insertion rod 302 is threadedly connected to the top surface of the moving block C301, a warning rod 303 is fixedly installed on the top surface of the insertion rod 302, a spring 305 is sleeved on the surface of the limiting rod B304, one end of the spring 305 is connected to the surface of the moving block C301, and the other end is connected to the inner surface of the base 100. The moving block C301 is slidably connected to the limiting rod B304.
[0027] In this embodiment, by inserting the insertion rod 302 into the moving block C301, and then rotating the warning rod 303 at this time, the warning rod 303 will drive the insertion rod 302 to rotate. After the insertion rod 302 is threadedly connected to the moving block C301, the installation of the warning rod 303 can be completed. When moving the mobile base 100, when the warning rod 303 touches an obstacle, the warning rod 303 will drive the moving block C301 to slide inside the limiting groove D300, and at the same time, it will also slide on the surface of the limiting rod B304. After the warning rod 303 moves away from the obstacle, the moving block C301 will be reversely slid on the surfaces of the limiting groove D300 and the limiting rod B304 under the elastic force of the spring 305, thereby driving the warning rod 303 to reset. The design of the warning rod 303 not only facilitates the disassembly, installation and replacement of the warning rod 303, but also does not prevent the loading and unloading of the transportation equipment.
[0028] Usage method and working principle of this device: When it is necessary to carry the copper foil roll, just turn on the motor A104. The motor A104 will drive the gear A105 to rotate. When the gear A105 rotates, it will drive the gear B106 to rotate through the tooth chain 107. The gear B106 will drive the lead screw A108 to rotate. When the lead screw A108 rotates, it will drive the moving block A110 to slide inside the back plate 102, thereby driving the support rod A112 and the support rod B115 to lift. After the heights of the support rod A112 and the support rod B115 are lower than the copper foil roll, the base 100 can be moved through the push handle 103 and the universal wheels 101. After the support rod A112 and the support rod B115 are inserted into the copper foil roll, the motor A104 can be driven to rotate the lead screw A108 in the reverse direction, so that the support rod A112 and the support rod B115 lift the copper foil roll. At this time, turn on the electric push rod. The electric push rod will drive the clamping block A114 to move, and the clamping block A114 will push the copper foil roll to move on the surfaces of the support rod A112 and the support rod B115. After the copper foil roll moves to the middle section of the support rod A112 and the support rod B115, the screw 117 can be rotated. When the screw 117 rotates, it will drive the clamping block B118 to move, thereby limiting the copper foil roll between the support rod A112 and the support rod B115 through the clamping block A114 and the clamping block B118; When it is necessary to limit and support the copper foil roll, just turn on the motor B120. The motor B120 will drive the bidirectional lead screw B125 to rotate. When the bidirectional lead screw B125 rotates, it will drive the moving block B121 to slide inside the limiting groove C119, and the moving block B121 will drive the side rod 122 to move. After the side plate fits the bottom of the copper foil roll, the clamping block C124 can be inserted on the surface of the side rod 122. At this time, rotate the rotating block 123. When the rotating block 123 rotates, it will drive the clamping block C124 to slide on the surface of the side rod 122 under the influence of the thread. After the clamping block C124 fits on the surface of the copper foil roll, the limiting of the copper foil roll can be completed; When side support for the base 100 is required, simply rotate the insert bar 202. After the insert bar 202 is rotated out of the fixing hole 201, it can be pulled out from the positioning hole 206. After the insert bar 202 is pulled out from the positioning hole 206, at this time, the side frame 205 will rotate under the torsional force of the torsion spring 204, and when the side frame 205 rotates, it will drive the bottom plate 208 to rotate. After the bottom plate 208 is level with the bottom surface, then rotate the screw rod C207. As the screw rod C207 rotates, the bottom plate 208 will drive the limit rod A209 to slide inside the side frame 205. After the bottom plate 208 is in contact with the ground, the side support for the base 100 can be completed. When the warning rod 303 needs to be installed, simply insert the insertion rod 302 into the moving block C301. At this time, rotate the warning rod 303, and the warning rod 303 will drive the insertion rod 302 to rotate. After the insertion rod 302 is threadedly connected to the moving block C301, the installation of the warning rod 303 can be completed. When moving the base 100, when the warning rod 303 touches an obstacle, the warning rod 303 will drive the moving block C301 to slide inside the limit groove D300 and also slide on the surface of the limit rod B304. After the warning rod 303 moves away from the obstacle, the moving block C301 will be driven by the elastic force of the spring 305 to slide in the opposite direction on the surfaces of the limit groove D300 and the limit rod B304, thereby driving the warning rod 303 to reset.
[0029] Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. A handling device for copper foil production, characterized in that: The invention comprises a base (100), wherein a back plate (102) is fixedly mounted on the top surface of the base (100), a motor A (104) is fixedly mounted on the top surface of the back plate (102), a gear A (105) is mounted on the output end of the motor A (104), a gear B (106) is rotatably connected to the inside of the back plate (102), a screw rod A (108) is fixedly mounted on the bottom surface of the gear B (106), a limiting groove A (109) is provided on the inner surface of the back plate (102), a moving block A (110) is slidably connected to the inside of the back plate (102), a roller (111) is rotatably connected to the inside of the moving block A (110), a support rod A (112) and a support rod B (115) are respectively fixedly mounted on the surface of the moving block A (110), an electric push rod is fixedly mounted on the inside of the support rod A (112), and the electric push rod A clamping block A (114) is installed at the output end of the push rod, a limiting groove B (116) is provided through the surface of the support rod A (112), a screw rod (117) is rotatably connected inside the support rod A (112), a clamping block B (118) is slidably connected on the surface of the support rod A (112), a limiting groove C (119) is provided through the surface of the base (100), a motor B (120) is fixedly installed inside the base (100), a bidirectional screw rod B (125) is installed at the output end of the motor B (120), a moving block B (121) is slidably connected inside the limiting groove C (119), a side rod (122) is fixedly installed on the surface of the moving block B (121), a clamping block C (124) is inserted into the surface of the side rod (122), and a rotating block (123) is rotatably connected on the surface of the clamping block C (124).
2. The copper foil production handling equipment according to claim 1, characterized in that: A universal wheel (101) is fixedly mounted on the bottom surface of the base (100), a push handle (103) is fixedly mounted on the surface of the back plate (102), a toothed chain (107) is sleeved on the surfaces of the gear A (105) and the gear B (106), and the base (100) is U-shaped.
3. The copper foil production conveying equipment according to claim 2, characterized in that: The gear A (105) is rotationally connected to the back plate (102), the gear A (105) and the gear B (106) are meshed with the toothed chain (107), the moving block A (110) is threadedly connected to the screw rod A (108), and the roller (111) is rollingly connected to the limiting groove A (109).
4. The copper foil production conveying equipment according to claim 1, characterized in that: The surfaces of the clamp block A (114), the clamp block B (118) and the clamp block C (124) are all made of natural rubber. The clamp block B (118) is connected to the screw rod (117) by a threaded connection. The clamp block B (118) is connected to the limiting groove B (116) by a sliding connection. The surfaces of the support rod A (112) and the support rod B (115) are both provided with the clamp block A (114) and the clamp block B (118).
5. The copper foil production conveying equipment according to claim 1, characterized in that: The bidirectional screw rod B (125) is rotatably connected to the base (100), the moving block B (121) is threadedly connected to the bidirectional screw rod B (125), the clamping block C (124) is slidably connected to the side rod (122), and the rotating block (123) is threadedly connected to the side rod (122).
6. The copper foil production conveying equipment according to claim 1, characterized in that: A storage groove (200) is provided on the surface of the base (100), a fixing hole (201) is provided on the inner surface of the storage groove (200), an inserting strip (202) is inserted into the interior of the base (100), a rotating rod (203) is rotatably connected to the interior of the base (100), a torsion spring (204) is sleeved on the surface of the rotating rod (203), a side frame (205) is fixedly installed on one end of the rotating rod (203), a positioning hole (206) is penetrated through the surface of the side frame (205), one end of the side frame (205) is slidably connected to a limit rod A (209), a bottom plate (208) is fixedly installed on the bottom end of the limit rod A (209), and a screw rod C (207) is rotatably connected to the top surface of the bottom plate (208).
7. The copper foil production conveying equipment according to claim 6, characterized in that: The inserting strip (202) is slidably connected to the positioning hole (206), the inserting strip (202) is threadedly connected to the fixing hole (201), one end of the torsion spring (204) is connected to the side surface of the side frame (205), and the other end is connected to the inner surface of the base (100), the screw rod C (207) is threadedly connected to the side frame (205), and the side frame (205) is slidably connected to the storage groove (200).
8. The copper foil production conveying equipment according to claim 1, characterized in that: A limit groove D (300) is provided on the top surface of the base (100), a moving block C (301) is slidably connected inside the limit groove D (300), a limit rod B (304) is fixedly installed inside the base (100), an insertion rod (302) is threadedly connected to the top surface of the moving block C (301), a warning rod (303) is fixedly installed on the top surface of the insertion rod (302), and a spring (305) is sleeved on the surface of the limit rod B (304).
9. The copper foil production conveying equipment according to claim 8, characterized in that: One end of the spring (305) is connected to the surface of the moving block C (301), and the other end is connected to the inner surface of the base (100); the moving block C (301) is slidably connected to the limiting rod B (304).
10. A method for using a handling device for copper foil production, characterized in that: The copper foil production handling equipment according to any one of claims 1 to 9 is used, comprising the following steps: S1. The motor A (104) drives the gear A (105) to rotate. When the gear A (105) rotates, it drives the gear B (106) to rotate through the toothed chain (107). The gear B (106) drives the screw rod A (108) to rotate. When the screw rod A (108) rotates, it drives the moving block A (110) to slide inside the back plate (102), thereby driving the support rod A (112) and the support rod B (115) to rise and fall. When the height of the support rod A (112) and the support rod B (115) is lower than the copper foil roll, the base (100) can be moved through the push handle (103) and the universal wheel (101). When the support rod A (112) and the support rod B (115) are inserted into the copper foil roll, the motor can be used to move the base (100). A (104) drives the screw rod A (108) to rotate in the opposite direction, so that the support rod A (112) and the support rod B (115) lift the copper foil roll. At this time, the electric push rod is opened, and the electric push rod drives the clamping block A (114) to move, and the clamping block A (114) pushes the copper foil roll to move on the surface of the support rod A (112) and the support rod B (115). After the copper foil roll moves to the middle section of the support rod A (112) and the support rod B (115), the screw rod (117) can be rotated, and the screw rod (117) drives the clamping block B (118) to move when rotating, so that the copper foil roll is limited in the middle section of the support rod A (112) and the support rod B (115) through the clamping block A (114) and the clamping block B (118); S2, the bidirectional screw rod B (125) is driven to rotate by the motor B (120), and the bidirectional screw rod B (125) drives the moving block B (121) to slide inside the limiting groove C (119) when rotating, and the moving block B (121) drives the side rod (122) to move, and after the side plate is in contact with the bottom of the copper foil roll, the clamping block C (124) can be inserted into the surface of the side rod (122), and then the rotating block (123) is rotated. When the rotating block (123) rotates, it is affected by the thread and drives the clamping block C (124) to slide on the surface of the side rod (122), and after the clamping block C (124) is in contact with the surface of the copper foil roll, the copper foil roll can be limited; S3, by rotating the insert (202), after the insert (202) is rotated out of the fixing hole (201), the insert (202) can be pulled out of the positioning hole (206). After the insert (202) is pulled out of the positioning hole (206), the side frame (205) is rotated by the torsion force of the torsion spring (204), and the side frame (205) drives the bottom plate (208) to rotate when rotating. After the bottom plate (208) is level with the bottom surface, the screw rod C (207) is rotated. As the screw rod C (207) rotates, the bottom plate (208) drives the limit rod A (209) to slide inside the side frame (205). After the bottom plate (208) is in contact with the ground, the side support of the base (100) is completed; S4. The insertion rod (302) is inserted into the moving block C (301). The warning rod (303) is then rotated. The warning rod (303) drives the insertion rod (302) to rotate. After the insertion rod (302) and the moving block C (301) are connected by threads, the installation of the warning rod (303) is completed. When the base (100) is moved, when the warning rod (303) touches an obstacle, the warning rod (303) drives the moving block C (301) to slide inside the limit groove D (300) and also slide on the surface of the limit rod B (304). After the warning rod (303) moves away from the obstacle, the moving block C (301) is subjected to the elastic force of the spring (305) and slides in the opposite direction on the surfaces of the limit groove D (300) and the limit rod B (304), thereby driving the warning rod (303) to reset.
Citation Information
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