Rolling device for plate-shaped parts of electromechanical equipment

By adopting the design of rotating rollers and control plate components in the plate-shaped component rolling device of electromechanical equipment, synchronous adjustment of roller distance and automatic moving raw materials are achieved, solving the safety hazards caused by inaccurate roller distance adjustment and manpower control in the prior art, and improving rolling efficiency and safety.

CN119588759BActive Publication Date: 2025-09-02YUHONGYAN TECH (SUZHOU) CO LTD
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Patent Information

Application Number
CN202411755434.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-03
Publication Date
2025-09-02
Estimated Expiration
2044-12-03

AI Technical Summary

Technical Problem

The existing mechanical and electrical equipment plate-like components rolling devices are prone to inclination of driven rollers when adjusting the roller distance, affecting the rolling efficiency and yield rate, and manpower is required to control the movement of raw materials, which poses safety hazards.

Method used

The rotating roller and control plate components are adopted to synchronize the roller distance through the transmission belt, and the raw materials are automatically moved by rotating force. The counterweight blocks are added to the control plate components to increase the pressure force. Combined with the elastic positioning plate and the guide structure, it ensures safe and efficient rolling.

Benefits of technology

The roller distance is synchronously adjusted, which reduces the probability of driven roller tilt, improves rolling efficiency and safety, avoids safety hazards caused by human control, and the device is conveniently moved and fixed.

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Abstract

The present invention provides a rolling device for plate-shaped components of electromechanical equipment, which relates to the field of rolling and comprises: a device body; a freely rotatable rotating roller installed inside the device body; a positioning member having a circular ring structure having a diameter larger than that of the rotating roller; a rotating assembly installed at the top of the device body via a mounting assembly; and the two rotating assemblies are connected to a transmission belt via a tooth groove. A motor simultaneously drives the two rotating assemblies to rotate via a transmission belt, and the rotating assembly controls the synchronous rotational displacement of two force-bearing rod assemblies through threaded holes, thereby controlling the synchronous displacement of both ends of a driven roller, thereby achieving synchronous adjustment of the roller gap, and avoiding deviation in the roller gap at both ends of the driven roller when the roller gap is manually adjusted, thereby affecting the finished product of the plate-shaped component. This solves the problem of common electromechanical equipment plate-shaped component rolling devices, in which, when adjusting the roller gap, it is usually necessary to adjust the rotation of bolts at both ends separately, but the two bolts are adjusted asynchronously, which easily causes the rollers to tilt slightly.
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Description

Technical Field

[0001] The present invention relates to the technical field of rolling, in particular to a rolling device for plate-shaped components of electromechanical equipment. Background Art

[0002] When electromechanical equipment is produced, some plate-like components will be installed on its outside and inside to form the electromechanical equipment. Some plate-like components need to be rolled into shape using a rolling device during processing so that they can be installed in the appropriate position for use. The rolling device refers to the mechanical equipment used to realize the metal rolling process, mainly including the rolling mill and other related equipment. The rolling mill is the main device for realizing the metal rolling process, usually composed of rollers, frames, roller gap adjustment devices, transmission devices, lubrication systems, control systems and roller removal devices. The rolling device plays an important role in industrial production. The key is to ensure product quality and production efficiency by controlling various parameters in the rolling process, such as roll temperature and roll gap, etc. The common electromechanical equipment plate component rolling device on the market usually needs to adjust the rotation of the bolts at both ends separately when adjusting the roll gap. However, the two bolts are not adjusted synchronously, which can easily cause the rolls to tilt slightly, affecting the rolling efficiency and yield rate. In addition, during the rolling process, human control is required to move the raw materials for rolling. The raw materials are prone to warping under the action of stress, which can easily injure workers accidentally. In addition, the rolling device is large in size and more difficult to move. Summary of the Invention

[0003] The disclosed embodiment relates to a rolling device for plate-shaped components of electromechanical equipment, which can control the raw materials to be inserted between the control plate component and the guide roller component when controlling the rolling of the raw materials, and use the rotational force to pull the raw materials to move and roll. After the workers control the raw materials to be initially placed, they can break away from the contact with the raw materials, so that when the raw materials are deformed or warped under the action of stress, it will not affect the workers. When deformed, the control plate component can be pushed to move, and the control plate component will squeeze the positioning plate to eliminate the deformation force and impact force with the help of elasticity. A counterweight block can also be added above the control plate component to increase the pressing force and improve the control effect on the raw materials.

[0004] According to a first aspect of the present disclosure, a rolling device for plate-shaped components of electromechanical equipment is provided, which specifically includes: a device body; a freely rotatable rotating roller is installed inside the device body, and a positioning member is fixed to the outside of each end of the rotating roller, the diameter of the positioning member with an annular structure is larger than the diameter of the rotating roller, and a rotating component is installed at the top of the device body through an installation component, and a tooth groove is provided on the outside of the two rotating components, and the two rotating components are connected to the transmission belt through the tooth groove; a control plate component; the control plate component is at the front feeding position of the device body, the front end of the control plate component is an inclined structure, and a positioning plate is fixed to the side of the control plate component through an outer plate component, and the positioning plate is made of an elastic metal material that is inclined. After the control plate component moves downward, it contacts the two freely rotatable guide roller components; a bottom structure; the bottom structure is connected to the bottom of the device body and supports the device body, a driving motor is installed at the top of the bottom structure, and the side of the bottom structure is fixed with the mounting structure by bolts, and a rotating wheel is installed on the inner side of the mounting structure through an inner shaft, and the inner shaft is rotatably connected to the side of the bottom structure.

[0005] In at least some embodiments, a gear is fixed on the side of the rotating roller, and the gear is connected to the driving motor through a transmission connecting belt. A driven roller is slidably installed inside the device body, and the driven roller is a structure that can move up and down. A ring groove is provided at each end of the driven roller, and a positioning piece is embedded in the inside of the ring groove; a mounting assembly is provided at the top of the device body, and the interior of the mounting assembly contacts the interior of the rotating assembly through a rotating plate, and supports the rotating assembly to rotate smoothly, and the transmission belt is a flexible belt with a locking tooth inside; a force rod assembly is installed inside the rotating assembly through a threaded hole, and a shift rod is provided at the top of the force rod assembly, and the bottom end of the force rod assembly is rotatably connected to the upper side of the driven roller through a rotating shaft, and a mounting frame is welded and fixed to the top of the device body, and a motor is installed in the middle position of the mounting frame, and a driving gear is provided at the bottom of the motor. The driving gear is in the middle position of the transmission belt and controls the rotation of the transmission belt.

[0006] In at least some embodiments, an auxiliary rod is welded and fixed to the top of the control plate component, an outer plate component is fixed to the outer end of the auxiliary rod, a U-shaped positioning plate is welded and fixed to the outside of the outer plate component, and the interior of the positioning plate is an arc-shaped structure; an L-shaped block is inserted into the interior of the positioning plate, and a guide hole is opened through the interior of the block, and the outer end of the auxiliary rod is inserted into the interior of the guide hole and can move up and down freely; the bottom of the block is welded and fixed to the connecting rod, and a guide roller component is installed between the two connecting rods through a rotating shaft, the connecting rod is welded to the front end of the device body, and an inclined support rod component is welded to the bottom of the connecting rod, and the top of the connecting rod and the guide roller component is flush with the top of the rotating roller.

[0007] In at least some embodiments, both ends of the bottom structure are provided with a rotating groove, the rotating wheel is inserted into the rotating groove and rotates, and a support plate is fixed at each end of the bottom structure; both ends of the bottom structure are provided with a guide groove of a T-shaped structure, the guide groove is directly below the support plate, and a movable structure is inserted into the guide groove and can be freely pulled up and down inside the guide groove; the top of the movable structure is installed with an adjustment structure through a rotating shaft, and the adjustment structure with a thread on the outside is inserted into the support plate and can rotate freely, and a contact plate made of flexible rubber is bonded and fixed to the bottom of the movable structure.

[0008] The present invention provides a rolling device for plate-shaped components of electromechanical equipment, which has the following beneficial effects:

[0009] When the roller pitch needs to be adjusted, the motor can be directly controlled to operate. The motor drives the two rotating components to rotate at the same time through the transmission belt. The rotating component controls the synchronous rotation displacement of the two force-bearing rod components through the threaded holes, and then controls the synchronous displacement of the two ends of the driven roller to achieve synchronous adjustment of the roller pitch, avoiding deviation in the roller pitch at both ends of the driven roller when the roller pitch is adjusted manually. At the same time, the positioning part is inside the annular groove of the driven roller, and the positioning fits, which reduces the chance of the driven roller tilting and affecting the finished product effect of the plate-like component.

[0010] When controlling the rolling of raw materials, the raw materials can be controlled to be inserted between the control plate component and the guide roller component, and the raw materials can be pulled to move and roll with the help of rotational force. After the workers control the raw materials to be initially placed, they can break away from the contact with the raw materials, so that when the raw materials are deformed or warped under the action of stress, it will not affect the workers. In addition, when deformed, the control plate component can be pushed to move, and the control plate component will squeeze the positioning plate to eliminate the deformation force and impact force with the help of elasticity. A counterweight block can also be added above the control plate component to increase the pressing force and improve the control effect on the raw materials.

[0011] When the device needs to be moved, the device body and the bottom structure can be directly pushed to move through the rotating wheels, so that the device body can be easily switched to the use position. After moving to the destination, the adjustment structure is controlled to rotate so that the bottom of the contact plate contacts the ground, preventing the device body from slipping and improving the fixing effect of the device body. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings of the embodiments are briefly introduced below.

[0013] The drawings described below only relate to some embodiments of the present invention, but are not intended to limit the present invention.

[0014] In the attached figure:

[0015] Figure 1Shows a schematic diagram of the three-dimensional structure of the present application;

[0016] Figure 2 Shows a bottom-up structural schematic diagram of the present application;

[0017] Figure 3 Shows a schematic diagram of the exploded three-dimensional structure of the present application;

[0018] Figure 4 Shows a schematic diagram of the exploded bottom-up structure of the present application;

[0019] Figure 5 Shows a schematic diagram of the exploded three-dimensional structure of the device body of the present application;

[0020] Figure 6 Shows a schematic diagram of the exploded three-dimensional structure of the control panel components of the present application;

[0021] Figure 7 A schematic diagram of the exploded bottom view of the control panel components of the present application is shown;

[0022] Figure 8 A schematic diagram of a partial cross-sectional exploded three-dimensional structure of the bottom structure of the present application is shown.

[0023] Reference Signs List

[0024] 1. Device body; 101. Rotating roller; 102. Positioning member; 103. Driven roller; 104. Mounting assembly; 105. Rotating assembly; 106. Force rod assembly; 107. Transmission belt; 108. Mounting frame;

[0025] 2. Control panel assembly; 201. Auxiliary rod; 202. Outer plate assembly; 203. Positioning plate; 204. Stopper; 205. Guide hole; 206. Guide roller assembly; 207. Connecting rod; 208. Support rod assembly;

[0026] 3. Bottom structure; 301. Rotating groove; 302. Support plate; 303. Guide groove; 304. Mounting structure; 305. Rotating wheel; 306. Moving structure; 307. Adjusting structure; 308. Contact plate. DETAILED DESCRIPTION

[0027] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions of the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the described embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0028] Example 1: Please refer to Figures 1 to 8 :

[0029] The present invention proposes a rolling device for plate-shaped components of electromechanical equipment, comprising: a device body 1; a freely rotatable rotating roller 101 is installed inside the device body 1, and a positioning member 102 is fixed to the outside of each end of the rotating roller 101. The diameter of the positioning member 102 with an annular structure is larger than the diameter of the rotating roller 101, and the positioning member 102 is embedded in the annular groove of the driven roller 103 to achieve auxiliary positioning and reduce the probability of the driven roller 103 tilting. A rotating component 105 is installed on the top of the device body 1 through an installation component 104, and the two rotating components 105 are provided with teeth and grooves on the outside. The two rotating components 105 are connected to a transmission belt 107 through the teeth and grooves, so that one transmission belt 107 can drive the two rotating components 105 to rotate at the same time, thereby achieving synchronous adjustment of the roller gap and improving the roller gap adjustment accuracy; a control plate component 2; the control plate component 2 is at the front end feeding position of the device body 1, and the front end of the control plate component 2 is an inclined structure, which controls The side of the plate component 2 is fixed with a positioning plate 203 through the outer plate component 202. The positioning plate 203 is made of elastic metal material that is set at an angle. After the control plate component 2 moves downward, it contacts two freely rotatable guide roller components 206. The control plate component 2 cooperates with the guide roller components 206 to control the guiding displacement of the raw material. No human control movement is required. At the same time, after the raw material is deformed, the control plate component 2 can also be restricted to avoid excessive deformation; bottom structure 3; the bottom structure 3 is connected to the bottom of the device body 1 and supports the device body 1. A driving motor is installed on the top of the bottom structure 3, and a mounting structure 304 is fixed to the side of the bottom structure 3 by bolts. A rotating wheel 305 is installed on the inner side of the mounting structure 304 through an inner shaft. The inner shaft is rotatably connected to the side of the bottom structure 3, so that the rotating wheel 305 is used on both sides and the bottom of the bottom structure 3, so that the bottom structure 3 can be pushed for convenient displacement, thereby improving the movement efficiency.

[0030] In the embodiment of the present disclosure, Figure 4 and Figure 5As shown, a gear is fixed on the side of the rotating roller 101, and the gear is connected to the driving motor through a transmission belt. A driven roller 103 is slidably installed inside the device body 1. The driven roller 103 is a structure that can move up and down, and can move up and down to adjust the roller distance. An annular groove is provided at each end of the driven roller 103 to embed a positioning member 102, thereby improving the positioning connection effect and reducing the probability of the driven roller 103 tilting. The positioning member 102 is embedded in the inside of the annular groove; a mounting assembly 104 is provided at the top of the device body 1, and the interior of the mounting assembly 104 contacts the interior of the rotating assembly 105 through a rotating plate, and supports the rotating assembly 105 to rotate smoothly, so that the rotating assembly 105 is in a standard position for rotation and use. The driving belt 107 is a flexible belt with a toothed interior, which can realize synchronous rotation; the interior of the rotating component 105 is installed with a force-bearing rod component 106 through a threaded hole, and the top of the force-bearing rod component 106 is provided with a lever, and the height of the force-bearing rod component 106 can be adjusted by the lever alone to achieve fine-tuning. The bottom end of the force-bearing rod component 106 is rotatably connected to the upper side of the driven roller 103 through a rotating shaft, and a mounting bracket 108 is welded and fixed to the top of the device body 1, and a motor is installed in the middle position of the mounting bracket 108. A driving gear is provided at the bottom of the motor, and the driving gear is in the middle position of the transmission belt 107, and controls the rotation of the transmission belt 107, and controls the transmission belt 107 to drive the two rotating components 105 to rotate together.

[0031] In the embodiment of the present disclosure, Figure 6 and Figure 7 As shown, the top of the control panel component 2 is welded and fixed with an auxiliary rod 201 for connecting to the outer panel component 202. The outer end of the auxiliary rod 201 is fixed with the outer panel component 202. The outer side of the outer panel component 202 is welded and fixed with a U-shaped positioning plate 203. The interior of the positioning plate 203 is an arc structure. An L-shaped stopper 204 is inserted into the interior of the positioning plate 203, so that the positioning plate 203 drives the control panel component 2 to move up and down. A guide hole 205 is opened inside the stopper 204, and the outer end of the auxiliary rod 201 is inserted into the outer panel component 202. The stopper 204 is welded to the connecting rod 207 and fixed thereto, and a guide roller component 206 is installed between the two connecting rods 207 through a rotating shaft to assist in supporting the displacement of the raw material. The connecting rod 207 is welded to the front end of the device body 1, and an inclined support rod component 208 is welded to the bottom of the connecting rod 207 to improve the support and load-bearing strength. The top of the connecting rod 207 and the guide roller component 206 are flush with the top of the rotating roller 101, so that the raw material can move horizontally above it.

[0032] In the embodiment of the present disclosure, Figure 3 and Figure 8As shown, both ends of the bottom structure 3 are provided with a rotating groove 301, and the rotating wheel 305 is inserted into the inner part of the rotating groove 301 for rotation. A support plate 302 is fixed at each end of the bottom structure 3 to support the adjustment structure 307 for smooth rotation; a T-shaped guide groove 303 is opened at each end of the bottom structure 3, and the guide groove 303 is directly below the support plate 302 to control the guided displacement of the movable structure 306. The movable structure 306 is inserted into the inside of the guide groove 303 and can be freely pulled up and down inside the guide groove 303; the top of the movable structure 306 is installed with an adjusting structure 307 through a rotating shaft, and the adjusting structure 307 with a thread on the outside is inserted into the inside of the support plate 302 for free rotation. A contact plate 308 made of flexible rubber material is bonded and fixed to the bottom of the movable structure 306. After the adjusting structure 307 rotates, it drives the movable structure 306 and the contact plate 308 to move, so that the bottom of the contact plate 308 contacts the ground, the anti-slip fixing device body 1 and the bottom structure 3.

[0033] The working principle of this embodiment is as follows: when it is necessary to roll the plate-like components of the electromechanical equipment, first directly push the device body 1 and the bottom structure 3 together to move, so that the bottom structure 3 moves together through the rotating wheel 305, so that the device body 1 is moved to the appropriate position for use, and then the adjustment structure 307 is controlled to rotate, and the adjustment structure 307 drives the moving structure 306 and the contact plate 308 to move downward, so that the bottom of the contact plate 308 is in anti-slip contact with the ground, thereby improving the fixing effect of the device body 1 and making the device body 1 firmly installed and used. When rolling, first adjust the roller distance. When adjusting, directly control the motor to operate, and the motor controls the transmission belt 107 to operate through the driving gear. The transmission belt 1 07 drives the two rotating components 105 to rotate together under force. When the rotating component 105 rotates, it drives the two force-bearing rod components 106 to move together, and drives the two ends of the driven roller 103 to displace at the same time, ensuring the accuracy of roller spacing adjustment. At the same time, when the driven roller 103 moves, the positioning part 102 fits the internal displacement of the ring groove, reducing the chance of the driven roller 103 tilting. During rolling, the raw material to be rolled is directly controlled to be inserted between the control plate component 2 and the guide roller component 206 and move. When the rotating roller 101 and the driven roller 103 squeeze the raw material, the rotational force can be used to control the automatic displacement of the raw material without the support of workers, thereby improving the safety and efficiency of rolling.

[0034] In this article, there are several points to note:

[0035] 1. The drawings of the embodiments of the present disclosure only relate to the structures related to the embodiments of the present disclosure. Other structures may refer to conventional designs.

[0036] 2. In the absence of conflict, the embodiments of the present disclosure and the features therein may be combined with each other to form new embodiments.

[0037] The above are only specific embodiments of the present disclosure, but the scope of protection of the present disclosure is not limited thereto. Any changes or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in this disclosure should be included in the scope of protection of the present disclosure. Therefore, the scope of protection of the present disclosure should be based on the scope of protection of the claims.

Claims

1. A rolling device for plate-shaped parts of electromechanical equipment, characterized in that: include: The device body (1) comprises a rotating roller (101) that can rotate freely and is installed inside the device body (1), and a positioning member (102) is fixed to the outside of each end of the rotating roller (101), and the diameter of the positioning member (102) with an annular structure is larger than the diameter of the rotating roller (101). The top of the device body (1) is installed with a rotating assembly (105) through a mounting assembly (104), and the outsides of the two rotating assemblies (105) are provided with tooth grooves, and the two rotating assemblies (105) are connected to a transmission belt (107) through the tooth grooves; a control panel component (2); the control panel component (2) is located at the front feeding position of the device body (1), and the front end of the control panel component (2) is an inclined structure, and the control panel component (2) is provided with a transmission belt (107). The side of the plate component (2) is fixed with a positioning plate (203) through the outer plate component (202), and the positioning plate (203) is made of elastic metal material arranged in an inclined manner. After the control plate component (2) moves downward, it contacts two freely rotatable guide roller components (206); the bottom structure (3); the bottom structure (3) is connected to the bottom of the device body (1) and supports the device body (1), the top of the bottom structure (3) is equipped with a driving motor, the side of the bottom structure (3) is fixed with a mounting structure (304) by bolts, and the inner side of the mounting structure (304) is equipped with a rotating wheel (305) through an inner shaft, and the inner shaft is rotatably connected to the side of the bottom structure (3); the side of the rotating roller (101) A gear is fixed on the side, and the gear is connected to the driving motor through a transmission connecting belt. A driven roller (103) is slidably installed inside the device body (1). The driven roller (103) is a structure that can move up and down. A ring groove is provided at each end of the driven roller (103). The positioning member (102) is embedded in the inner part of the ring groove; a mounting assembly (104) is provided at the top of the device body (1). The interior of the mounting assembly (104) contacts the interior of the rotating assembly (105) through a rotating plate and supports the rotating assembly (105) to rotate smoothly. The transmission belt (107) is a flexible belt with a toothed interior; a force rod assembly (106) is installed inside the rotating assembly (105) through a threaded hole. The force rod assembly ( The top of the control plate component (2) is provided with a shifting rod, the bottom end of the force-bearing rod assembly (106) is rotatably connected to the upper side of the driven roller (103) through a rotating shaft, the top of the device body (1) is welded and fixed with a mounting frame (108), the middle position of the mounting frame (108) is provided with a motor, the bottom of the motor is provided with a driving gear, the driving gear is located in the middle position of the transmission belt (107), and controls the rotation of the transmission belt (107); the top of the control plate component (2) is welded and fixed with an auxiliary rod (201), the outer end of the auxiliary rod (201) is fixed with an outer plate component (202), the outside of the outer plate component (202) is welded and fixed with a positioning plate (203) with a U-shaped structure, and the inside of the positioning plate (203) is an arc-shaped structure;An L-shaped stopper (204) is inserted into the interior of the positioning plate (203), and a guide hole (205) is provided through the interior of the stopper (204). The outer end of the auxiliary rod (201) is inserted into the interior of the guide hole (205) and can move freely up and down. The bottom of the stopper (204) is welded to the connecting rod (207), and a guide roller component (206) is installed between the two connecting rods (207) via a rotating shaft. The connecting rod (207) is welded to the front end of the device body (1). The bottom of the connecting rod (207) is welded with a support rod component (208) arranged in an inclined manner. The top ends of the connecting rod (207) and the guide roller component (206) are flush with the top end of the rotating roller (101). Both ends of the bottom structure (3) are provided with a rotating groove (301). ), the rotating wheel (305) is inserted into the rotating groove (301) and rotates, and a support plate (302) is fixed at each end of the bottom structure (3); a T-shaped guide groove (303) is opened at each end of the bottom structure (3), and the guide groove (303) is located directly below the support plate (302). A movable structure (306) is inserted into the guide groove (303) and can be freely pulled up and down inside the guide groove (303); an adjustment structure (307) is installed on the top of the movable structure (306) through a rotating shaft, and the adjustment structure (307) with a thread on the outside is inserted into the support plate (302) and can rotate freely. A contact plate (308) made of flexible rubber material is bonded and fixed to the bottom of the movable structure (306). ;

Citation Information

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