Forming device for manufacturing display cabinet and production method

By designing a molding device for display cabinet manufacturing including support plates, lifting devices and fixing components, the problems of unstable placement and offset of the plates during processing are solved, and stable fixation and efficient riveting of the plates are achieved.

CN120347155AInactive Publication Date: 2025-07-22GUANGZHOU GREEN FURNITURE CO LTD
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Patent Information

Application Number
CN202510661983.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-21
Publication Date
2025-07-22
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

During the processing process of the existing molding device for display cabinet manufacturing, the plates are inconvenient to place, unstable fixation, and easy to deviate, resulting in damage and deviation during riveting.

Method used

A forming device including a support plate, a lifting device, a fixing assembly, a placing shell, a limiting plate and a processing assembly is designed. The motor and electric push rod are controlled by the controller to realize automatic limiting and riveting of the plate to ensure that the plate does not deviate during the processing process.

Benefits of technology

The stable placement and fixation of the plate is achieved, avoiding offset and damage during riveting, improving processing efficiency and reducing energy consumption.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of display cabinets, and discloses a forming device for display cabinet manufacturing and a production method.The forming device comprises a supporting plate, a lifting device is fixedly assembled on the top of the supporting plate, a fixing assembly is arranged on the top of the lifting device, and a containing shell is fixedly assembled on the top of the supporting plate; a placing plate is fixedly assembled on the outer wall of the placing shell, and a plate is placed on the inner wall of the placing shell. A controller sends out a signal, power output shafts at the two ends of a motor after receiving the signal rotate, the power output shaft at one end of the motor drives a first winding rod to rotate, and the first winding rod can apply pressure to a third mounting block during rotation; and after a third mounting block is pressed, a first placing frame and a first connecting rod can be driven to rotate on the inner wall of a second mounting block, a first spring drives a connecting block and a limiting shell to clamp the plate, and therefore the situation that the plate deviates when the equipment is used for riveting the plate is avoided.
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Description

Technical Field

[0001] The present invention relates to the technical field of display cabinets, and particularly to a forming device and a production method for manufacturing display cabinets. Background Art

[0002] A display cabinet is a display stand with a protective function provided for commodity display. The frame of the display cabinet is mostly made of stainless steel, and glass is provided at the opening of the display cabinet to facilitate customers to observe the exhibits such as cosmetics inside through the glass.

[0003] When the existing equipment is in use, although it can process the display cabinet, the traditional forming device for manufacturing the display cabinet is not convenient for placing the plate during the operation process, resulting in the need for staff to manually support the plate during processing. Also, it is not convenient to fix the plate during processing, resulting in deviation during the riveting process of the plate, causing damage to the plate. At the same time, it is not convenient to limit the plate during placement, resulting in deviation when the plate falls, and it is not convenient to rivet and process the plate, resulting in collision during the riveting of the plate. Therefore, a forming device and a production method for manufacturing display cabinets are introduced. Summary of the Invention

[0004] The present invention provides a forming device and a production method for manufacturing display cabinets, which have the advantages of being convenient for placing and fixing the plate, and being convenient for riveting and limiting the plate, and solve the problems raised in the above background art.

[0005] The present invention provides the following technical solutions: A forming device for manufacturing display cabinets includes a support plate. A lifting device is fixedly assembled on the top of the support plate. A fixing component is provided at the top of the lifting device. A placement shell is fixedly assembled on the top of the support plate. A placement plate is fixedly assembled on the outer wall of the placement shell. A plate is placed inside the inner wall of the placement shell. A limiting plate is fixedly assembled on the inner wall of the placement shell. A pressing component is provided on the outer wall of the placement shell. A limiting component and a processing component are provided on the outer wall of the placement plate. A sliding groove is opened on the outer wall of the placement plate. A controller is fixedly assembled on the outer wall of the support plate. An electric push rod is fixedly assembled on the top of the placement plate.

[0006] As a preferred technical solution of the present invention: The fixing component includes a limiting shell, an inner wall of the limiting shell is provided with a placing groove, an inner wall of the placing groove is fixedly assembled with a first fixing block, an inner wall of the first fixing block is fixedly assembled with a fixing rod, an outer wall of the fixing rod is slidably connected with a moving block, an outer wall of the moving block is fixedly assembled with a first spring, a far end of the fixing rod away from the first fixing block is fixedly assembled with a second fixing block, an inner wall of the moving block is rotatably connected with a cylinder, an outer wall of the cylinder is fixedly assembled with one end of a support rod, the other end of the support rod is rotatably connected with a connecting block, and an outer wall of the connecting block is fixedly assembled with a limiting block.

[0007] As a preferred technical solution of the present invention: The limiting component includes a moving rod, an outer wall of the moving rod is fixedly assembled with a placing block, an inner wall of the placing block is rotatably connected with a first rotating column, an outer wall of the first rotating column is fixedly assembled with a first pressing rod, and an inner wall of the first pressing rod is fixedly assembled with a second rotating column.

[0008] As a preferred technical solution of the present invention: The processing component includes a fixing plate, an outer wall of the fixing plate is fixedly assembled with a first rack, an outer wall of the first rack is respectively provided with a rotating rod, a gear and a second rack, an outer wall of the second rack is fixedly assembled with a connecting plate, a bottom of the connecting plate is fixedly assembled with a supporting block, an inner wall of the supporting block is fixedly assembled with a second pressing rod, an outer wall of the connecting plate is fixedly assembled with a sliding block, an outer wall of the second pressing rod is fixedly assembled with a second spring, a limiting rod is arranged on an outer wall of the second spring, an outer wall of the limiting rod is fixedly assembled with a rotating plate, an outer wall of the rotating plate is fixedly assembled with an automatic riveting machine, and a far end of the rotating plate close to the second spring is fixedly assembled with a pressed rod.

[0009] As a preferred technical solution of the present invention: The pressing component includes a first mounting block, an inner wall of the first mounting block is rotatably connected with a first winding rod, an outer wall of the first winding rod is fixedly assembled with a first elastic rope, an outer wall of the first mounting block is fixedly assembled with a motor, a power output shaft of the motor is fixedly assembled with a first rotating block, an inner wall of the first rotating block is rotatably connected with a tension belt, a limiting device is arranged on an inner wall of the tension belt, a second mounting block is arranged on an outer wall of the tension belt, an inner wall of the second mounting block is rotatably connected with a first connecting rod, an outer wall of the first connecting rod is fixedly assembled with a first placing rack, a third mounting block is fixedly assembled at a bottom of the first placing rack, a fourth mounting block is arranged on the outer wall of the tension belt, an inner wall of the fourth mounting block is rotatably connected with a second winding rod, an outer wall of the second winding rod is fixedly assembled with a second elastic rope and an extension rod, a far end of the extension rod away from the fourth mounting block is fixedly assembled with a second rotating block, and a fifth mounting block is arranged on an outer wall of the second rotating block, and an inner wall of the fifth mounting block is rotatably connected with a second placing rack.

[0010] As a preferred technical solution of the present invention: The first spring is fixedly assembled with the outer wall of the second fixed block, the limiting shell is slidably connected to the top of the lifting device, and the limiting block is slidably connected to the inner wall of the placement groove.

[0011] As a preferred technical solution of the present invention: The moving rod is fixedly assembled with the pushing end of the electric push rod, the second rotating column is rotatably connected to the top of the placement plate, and the moving rod is slidably connected to the top of the placement plate.

[0012] As a preferred technical solution of the present invention: The fixed plate is fixedly assembled with the moving rod, the rotating rod is rotatably connected to the outer wall of the placement plate, the sliding block is slidably connected to the inner wall of the sliding groove, the limiting rod is rotatably connected to the bottom of the placement plate, and the gear is respectively meshed and driven with the first rack and the second rack.

[0013] As a preferred technical solution of the present invention: The first mounting block, the second mounting block, the limiting device, the fourth mounting block, and the fifth mounting block are all fixedly assembled with the outer wall of the placement shell, the tension belt is rotatably connected to the inner wall of the second rotating block, the second elastic rope is fixedly assembled with the outer wall of the second placement rack, the first elastic rope is fixedly assembled with the inner wall of the third mounting block, the limiting device is located inside the tension belt, and the first winding rod is fixedly assembled with the power output shaft of the motor.

[0014] A production method of a forming device for manufacturing a display cabinet includes the following steps:

[0015] S1: Before processing the plate, the staff needs to place it inside the placement shell. Subsequently, the pressing component will limit the plate. During the processing, the controller sends a signal to prompt the motor to start rotating the power output shafts at both ends after receiving the signal. One of the power output shafts drives the first winding rod to rotate. When the first winding rod rotates, it applies pressure to the third mounting block, causing the third mounting block to push the first placement rack and the first connecting rod to rotate inside the second mounting block. This action makes the first placement rack open the notch of the placement shell, allowing the plate to fall from the inner wall of the placement shell. At the same time, the other power output shaft of the motor drives the first rotating block to rotate, thereby driving the tension belt to rotate. The rotation of the tension belt further causes the second rotating block, the extension rod, and the second winding rod to rotate in sequence. Finally, the rotation of the second winding rod drives the second placement rack to rotate inside the fifth mounting block, while reducing the energy consumption of the equipment;

[0016] S2: Before processing the sheet, the controller sends a signal to prompt the lifting device to drive the fixing component to move upward after receiving the signal. When the first placement rack and the second placement rack rotate, they exert pressure on the limit shell. After being pressed, the limit shell drives the first fixing block and the limit shell to move outward. During the movement of the limit shell, it pushes the first fixing block and the fixing rod to move, causing the limit block to exert pressure on the connecting block. After being pressed, the connecting block drives the support rod and the cylinder to rotate inside the inner wall of the moving block. When the cylinder rotates, it exerts pressure on the moving block and pushes the fixing rod to move on the outer wall of the first spring, while exerting pressure on the first spring. When the first placement rack and the second placement rack exert pressure on the limit shell, the sheet inside the placement shell is released from the limit, and the sheet falls off the inner wall of the placement shell to the inner wall of the fixing component. When the sheet is placed on the inner wall of the fixing component, the lifting device drives the fixing component to descend. After the first placement rack and the second placement rack cancel the pressure on the limit shell, the elastic potential energy of the first spring is released, driving the connecting block and the limit shell to clamp the sheet, thus preventing the equipment from shifting when riveting the sheet;

[0017] S3: When the sheet is placed on the inner wall of the fixing component, the controller sends a signal to the electric push rod. After receiving the signal, the driving end of the electric push rod drives the moving rod to move on the top of the placement plate. When the moving rod moves, it drives the placement block to move. When the placement block moves, it drives the first rotating column and the first pressing rod to rotate. When the first pressing rod rotates, it exerts pressure on the sheet. The first pressing rod and the limiting plate jointly clamp the sheet to prevent the sheet from deviating when placed on the inner wall of the placement shell, ensuring that the sheet can smoothly enter the inner wall of the fixing component during the falling process;

[0018] S4: When riveting the sheet, the electric push rod drives the moving rod to retract. When the moving rod retracts, it drives the fixed plate to move. When the fixed plate moves, it drives the first rack to move. The first rack meshes with the second rack for transmission. When the first rack moves, it drives the gear and the rotating rod to rotate on the outer wall of the placement plate. When the gear rotates, it drives the second rack and the sliding block to move inside the inner wall of the sliding groove. When the second rack moves, it drives the connecting plate, the support block, and the connecting plate to exert pressure on the rotating plate. After being pressed, the rotating plate drives the limiting rod to rotate at the bottom of the placement plate. The rotation of the limiting rod drives the automatic riveting machine to rotate, and the automatic riveting machine rivets the side and outer wall of the sheet.

[0019] The present invention has the following beneficial effects:

[0020] 1. The forming device and production method for manufacturing the display cabinet. By sending a signal through the controller, the two power output shafts of the motor rotate after receiving the signal. The power output shaft at one end of the motor drives the first winding rod to rotate. When the first winding rod rotates, it presses on the third mounting block. After the third mounting block receives the pressure, it drives the first placing rack and the first connecting rod to rotate inside the inner wall of the second mounting block, so that the first placing rack opens the notch of the placing shell, allowing the plate to fall from the inner wall of the placing shell. Then, the power output shaft at the other end of the motor drives the first rotating block to rotate. When the first rotating block rotates, it drives the tension belt to rotate. When the tension belt rotates, it drives the second rotating block, the extension rod, and the second winding rod to rotate. When the second winding rod rotates, it drives the second placing rack to rotate inside the inner wall of the fifth mounting block, and reduces the energy consumption of the equipment. By sending a signal through the controller, the lifting device drives the fixing component to move upward after receiving the signal. When the first placing rack and the second placing rack rotate, they press on the limiting shell. After the limiting shell receives the pressure, it drives the first fixing block and the limiting shell to move outward. When the limiting shell moves, it drives the first fixing block and the fixing rod to move, so that the limiting block presses on the connecting block. After the connecting block receives the pressure, it drives the support rod and the cylinder to rotate inside the moving block. When the cylinder rotates, it presses on the moving block. The moving block moves on the outer wall of the fixing rod and presses on the first spring. When the first placing rack and the second placing rack press on the limiting shell, the plate inside the placing shell is released from the limit, and the plate falls from the inner wall of the placing shell to the inner wall of the fixing component for placement. When the plate is placed on the inner wall of the fixing component, the lifting device drives the fixing component to descend. After the first placing rack and the second placing rack cancel the pressure on the limiting shell, the elastic potential energy of the first spring is released, and the first spring drives the connecting block and the limiting shell to clamp the plate, thus avoiding the situation of the plate shifting when the equipment rivets the plate.

[0021] 2. The forming device and production method for manufacturing the display cabinet. When the plate is placed on the inner wall of the fixing component, the controller sends a signal to the electric push rod. After the electric push rod receives the signal, the pushing end drives the moving rod to move on the top of the placing plate. When the moving rod moves, it drives the placing block to move. When the placing block moves, it drives the first rotating column and the first pressing rod to rotate. When the first pressing rod rotates, it presses the plate, and the first pressing rod and the limiting plate clamp and fix the plate, preventing the situation that the plate deviates when placed on the inner wall of the placing shell, resulting in the plate being unable to enter the inner wall of the fixing component during the falling process. And when riveting the plate, the electric push rod drives the moving rod to retract. When the moving rod retracts, it drives the fixing plate to move. When the fixing plate moves, it drives the first rack to move. Both the first rack and the second rack are meshed and driven by the gear. When the first rack moves, it drives the gear and the rotating rod to rotate on the outer wall of the placing plate. When the gear rotates, it drives the second rack and the sliding block to move on the inner wall of the sliding groove. When the second rack moves, it drives the connecting plate, the supporting block and the connecting plate to press the rotating plate. When the rotating plate is subjected to pressure, it drives the limiting rod to rotate at the bottom of the placing plate, and the limiting rod drives the automatic riveting machine to rotate. The automatic riveting machine rivets the side and outer wall of the plate. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 is a three-dimensional structural schematic diagram of the present invention;

[0023] Figure 2 is a structural schematic diagram of the controller of the present invention;

[0024] Figure 3 is a structural schematic diagram of the limiting block of the present invention;

[0025] Figure 4 is a structural schematic diagram of the connecting block of the present invention;

[0026] Figure 5 is a structural schematic diagram of the placing shell of the present invention;

[0027] Figure 6 is a structural schematic diagram of the first connecting rod of the present invention;

[0028] Figure 7 is a structural schematic diagram of the limiting device of the present invention;

[0029] Figure 8 is a structural schematic diagram of the plate of the present invention;

[0030] Figure 9 is a structural schematic diagram of the limiting plate of the present invention;

[0031] Figure 10 is a structural schematic diagram of the gear of the present invention;

[0032] Figure 11 For the present invention Figure 4 Schematic enlarged structure diagram at position A in the present invention;

[0033] Figure 12 For the present invention Figure 10 Schematic enlarged structure diagram at position B in the present invention.

[0034] In the figure: 1, support plate; 2, lifting device; 3, fixing component; 4, placement shell; 5, plate; 6, electric push rod; 7, limiting component; 8, processing component; 9, pressing component; 10, controller; 11, placement plate; 12, limiting plate; 13, sliding groove;

[0035] 301, limiting shell; 302, placement groove; 303, first fixing block; 304, moving block; 305, fixing rod; 306, second fixing block; 307, first spring; 308, cylinder; 309, support rod; 310, connecting block; 311, limiting block;

[0036] 701, moving rod; 702, placement block; 703, first rotating column; 704, first pressing rod; 705, second rotating column;

[0037] 801, fixing plate; 802, first rack; 803, rotating rod; 804, gear; 805, second rack; 806, connecting plate; 807, sliding block; 808, support block; 809, second pressing rod; 810, second spring; 811, limiting rod; 812, rotating plate; 813, pressed rod; 814, automatic riveting machine;

[0038] 901, first mounting block; 902, first winding rod; 903, first elastic rope; 904, second mounting block; 905, first connecting rod; 906, first placement rack; 907, third mounting block; 908, motor; 909, first rotating block; 910, tension belt; 911, limiting device; 912, fourth mounting block; 913, second winding rod; 914, second elastic rope; 915, extension rod; 916, second rotating block; 917, fifth mounting block; 918, second placement rack. Detailed implementation manners

[0039] 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.

[0040] Please refer to Figure 1 - Figure 12, A forming device for manufacturing a display cabinet, including a support plate 1. A lifting device 2 is fixedly assembled on the top of the support plate 1. A fixing component 3 is arranged on the top of the lifting device 2. A placing shell 4 is fixedly assembled on the top of the support plate 1. A placing plate 11 is fixedly assembled on the outer wall of the placing shell 4. A plate material 5 is placed on the inner wall of the placing shell 4. A limiting plate 12 is fixedly assembled on the inner wall of the placing shell 4. A pressing component 9 is arranged on the outer wall of the placing shell 4. A limiting component 7 and a processing component 8 are arranged on the outer wall of the placing plate 11. A sliding groove 13 is formed on the outer wall of the placing plate 11. A controller 10 is fixedly assembled on the outer wall of the support plate 1. An electric push rod 6 is fixedly assembled on the top of the placing plate 11;

[0041] In the above structure, the support plate 1 is used to support and place the lifting device 2 and the placing shell 4, making the equipment more stable during use. The placing plate 11 is used to limit the electric push rod 6 and the processing component 8. The controller 10 sends out signals, enabling the equipment to operate after receiving the signals. The placing shell 4 is used to place the plate material 5, thereby improving the working efficiency of the equipment.

[0042] In a preferred embodiment: The fixing component 3 includes a limiting shell 301. A placing groove 302 is formed on the inner wall of the limiting shell 301. A first fixing block 303 is fixedly assembled on the inner wall of the placing groove 302. A fixing rod 305 is fixedly assembled on the inner wall of the first fixing block 303. A moving block 304 is slidably connected to the outer wall of the fixing rod 305. A first spring 307 is fixedly assembled on the outer wall of the moving block 304. A second fixing block 306 is fixedly assembled at one end of the fixing rod 305 away from the first fixing block 303. A cylinder 308 is rotatably connected to the inner wall of the moving block 304. One end of a support rod 309 is fixedly assembled on the outer wall of the cylinder 308. The other end of the support rod 309 is rotatably connected to a connecting block 310. A limiting block 311 is fixedly assembled on the outer wall of the connecting block 310;

[0043] In the above structure, when the controller 10 sends out a signal, after the lifting device 2 receives the signal, it will drive the fixing component 3 to move upward. During this process, when the placing rack one 906 and the placing rack two 918 rotate, they will exert pressure on the limiting shell 301, causing the limiting shell 301 to drive the first fixing block 303 and the limiting shell 301 to move outward under the pressure. As the limiting shell 301 moves, the first fixing block 303 and the fixing rod 305 will also move accordingly, and then the limiting block 311 will exert pressure on the connecting block 310. After the connecting block 310 is subjected to the pressure, it will cause the support rod 309 and the cylinder 308 to rotate inside the inner wall of the moving block 304. When the cylinder 308 rotates, it will exert pressure on the moving block 304. During the movement of the moving block 304 on the outer wall of the fixing rod 305, it will exert pressure on the first spring 307. At the same time, while the placing rack one 906 and the placing rack two 918 exert pressure on the limiting shell 301, the sheet material 5 inside the placing shell 4 will be released from the limit, resulting in the sheet material 5 falling off the inner wall of the placing shell 4 to the inner wall of the fixing component 3. When the sheet material 5 is placed on the inner wall of the fixing component 3, the lifting device 2 drives the fixing component 3 to descend, and the placing rack one 906 and the placing rack two 918 cancel the pressure on the limiting shell 301. The elastic potential energy of the first spring 307 is released, and the first spring 307 drives the connecting block 310 and the limiting shell 301 to clamp the sheet material 5, thereby ensuring that the sheet material 5 will not shift during the riveting process of the equipment.

[0044] In a preferred embodiment: The limiting component 7 includes a moving rod 701. A placing block 702 is fixedly assembled on the outer wall of the moving rod 701. A first rotating column 703 is rotatably connected to the inner wall of the placing block 702. A first pressing rod 704 is fixedly assembled on the outer wall of the first rotating column 703. A second rotating column 705 is fixedly assembled on the inner wall of the first pressing rod 704.

[0045] In the above structure, when the sheet material 5 is placed on the inner wall of the fixing component 3, the controller 10 sends a signal to the electric push rod 6, prompting the electric push rod 6, after receiving the signal, to drive the moving rod 701 to displace on the top of the placing plate 11 with its pushing end. During this process, the movement of the moving rod 701 will drive the placing block 702 to move accordingly, and then the placing block 702 will drive the first rotating column 703 and the first pressing rod 704 to rotate during the movement. The first pressing rod 704 will exert pressure on the sheet material 5 during the rotation process, and cooperate with the limiting plate 12 to clamp the sheet material 5, thereby preventing the sheet material 5 from deviating when it is placed on the inner wall of the placing shell 4 and ensuring that the sheet material 5 can smoothly enter the inner wall of the fixing component 3 during the falling process.

[0046] In a preferred embodiment: The processing component 8 includes a fixed plate 801. An outer wall of the fixed plate 801 is fixedly assembled with a first rack 802. An outer wall of the first rack 802 is respectively provided with a rotating rod 803, a gear 804 and a second rack 805. An outer wall of the second rack 805 is fixedly assembled with a connecting plate 806. A bottom of the connecting plate 806 is fixedly assembled with a support block 808. An inner wall of the support block 808 is fixedly assembled with a second pressing rod 809. An outer wall of the connecting plate 806 is fixedly assembled with a sliding block 807. An outer wall of the second pressing rod 809 is fixedly assembled with a second spring 810. An outer wall of the second spring 810 is provided with a limiting rod 811. An outer wall of the limiting rod 811 is fixedly assembled with a rotating plate 812. An outer wall of the rotating plate 812 is fixedly assembled with an automatic riveting machine 814. One end of the rotating plate 812 close to the second spring 810 is fixedly assembled with a pressed rod 813;

[0047] In the above structure, the electric push rod 6 drives the moving rod 701 to contract, prompting the moving rod 701 to drive the fixed plate 801 to move during the contraction process. During the movement of the fixed plate 801, it further prompts the first rack 802 to move. Since both the first rack 802 and the second rack 805 are in meshing transmission with the gear 804, when the first rack 802 moves, it will drive the gear 804 and the rotating rod 803 to rotate on the outer wall of the placing plate 11. During the rotation of the gear 804, it will prompt the second rack 805 and the sliding block 807 to move on the inner wall of the sliding groove 13, so that when the second rack 805 moves, it will push the connecting plate 806, the support block 808 and apply pressure to the rotating plate 812. After the rotating plate 812 is subjected to pressure, it will drive the limiting rod 811 to rotate at the bottom of the placing plate 11, and finally the limiting rod 811 drives the automatic riveting machine 814 to rotate to realize riveting on the side surface and the outer wall of the plate 5.

[0048] In a preferred embodiment: The pressing component 9 includes a first mounting block 901. A first winding rod 902 is rotatably connected to the inner wall of the first mounting block 901. A first elastic rope 903 is fixedly assembled on the outer wall of the first winding rod 902. A motor 908 is fixedly assembled on the outer wall of the first mounting block 901. A first rotating block 909 is fixedly assembled on the power output shaft of the motor 908. A tension belt 910 is rotatably connected to the inner wall of the first rotating block 909. A limiting device 911 is arranged on the inner wall of the tension belt 910. A second mounting block 904 is arranged on the outer wall of the tension belt 910. A first connecting rod 905 is rotatably connected to the inner wall of the second mounting block 904. A first placement rack 906 is fixedly assembled on the outer wall of the first connecting rod 905. A third mounting block 907 is fixedly assembled at the bottom of the first placement rack 906. A fourth mounting block 912 is arranged on the outer wall of the tension belt 910. A second winding rod 913 is rotatably connected to the inner wall of the fourth mounting block 912. A second elastic rope 914 and an extension rod 915 are fixedly assembled on the outer wall of the second winding rod 913. A second rotating block 916 is fixedly assembled at one end of the extension rod 915 away from the fourth mounting block 912. A fifth mounting block 917 is arranged on the outer wall of the second rotating block 916. A second placement rack 918 is rotatably connected to the inner wall of the fifth mounting block 917;

[0049] In the above structure, by the controller 10 sending a signal, after the motor 908 receives the signal, the power output shafts at both ends thereof start to rotate. One of the power output shafts drives the first winding rod 902 to rotate, and during the rotation of the first winding rod 902, pressure is exerted on the third mounting block 907. Affected by this pressure, the third mounting block 907 causes the first placement rack 906 and the first connecting rod 905 to rotate on the inner wall of the second mounting block 904, resulting in the first placement rack 906 opening the slot of the second mounting block 904, enabling the sheet 5 to slide down from the inner wall of the second mounting block 904. At the same time, the other power output shaft of the motor 908 drives the first rotating block 909 to rotate, and the first rotating block 909 drives the tension belt 910 to rotate during the rotation process. The tension belt 910 further drives the second rotating block 916, the extension rod 915, and the second winding rod 913 to rotate during the rotation process, finally causing the second winding rod 913 to rotate on the inner wall of the fifth mounting block 917. This series of actions not only realizes the function but also effectively reduces the energy consumption of the equipment.

[0050] In a preferred embodiment: The first spring 307 is fixedly assembled on the outer wall of the second fixed block 306. The limiting shell 301 is slidably connected to the top of the lifting device 2. The limiting block 311 is slidably connected to the inner wall of the placement groove 302;

[0051] In the above structure, the lifting device 2 is used to place the fixing component 3, making the fixing component 3 more stable during telescoping. The second fixed block 306 and the moving block 304 are used to limit the first spring 307, so that the first spring 307 will not come off when releasing elastic potential energy. The placement groove 302 is used to limit the limiting block 311.

[0052] In a preferred embodiment: The moving rod 701 is fixedly assembled with the pushing end of the electric push rod 6, the second rotating column 705 is rotatably connected to the top of the placing plate 11, and the moving rod 701 is slidably connected to the top of the placing plate 11;

[0053] In the above structure, the limiting component 7 is limited by the electric push rod 6 and the placing plate 11, so that the limiting component 7 is more stable during operation. The pushing end of the electric push rod 6 drives the moving rod 701 to move on the top of the placing plate 11.

[0054] In a preferred embodiment: The fixing plate 801 is fixedly assembled with the moving rod 701, the rotating rod 803 is rotatably connected to the outer wall of the placing plate 11, the sliding block 807 is slidably connected to the inner wall of the sliding groove 13, the limiting rod 811 is rotatably connected to the bottom of the placing plate 11, and the gear 804 is meshed and driven with the first rack 802 and the second rack 805 respectively;

[0055] In the above structure, the processing component 8 is limited by the moving rod 701 and the placing plate 11, so that the processing component 8 will not be separated during operation. The sliding groove 13 is used to limit the sliding block 807 and the second rack 805, so that the second rack 805 and the sliding block 807 are more stable when moving. When the first rack 802 moves, it will drive the gear 804 to rotate, and when the gear 804 rotates, it will drive the second rack 805 to move.

[0056] In a preferred embodiment: The first mounting block 901, the second mounting block 904, the limiting device 911, the fourth mounting block 912, and the fifth mounting block 917 are all fixedly assembled with the outer wall of the placing shell 4. The tension belt 910 is rotatably connected to the inner wall of the second rotating block 916. The second elastic rope 914 is fixedly assembled with the outer wall of the second placing frame 918. The first elastic rope 903 is fixedly assembled with the inner wall of the third mounting block 907. The limiting device 911 is located inside the tension belt 910. The first winding rod 902 is fixedly assembled with the power output shaft of the motor 908;

[0057] In the above structure, the pressing component 9 is limited by the placing shell 4, so that the pressing component 9 is more stable when placed and will not fall off. The second elastic rope 914 drives the second placing frame 918 to rotate. The first elastic rope 903 drives the first placing frame 906 to rotate. The limiting device 911 is used to limit and support the tension belt 910 to prevent the tension belt 910 from loosening when rotating. The motor 908 drives the first winding rod 902 and the first rotating block 909 to rotate simultaneously.

[0058] A production method for a forming device used in showcase manufacturing includes the following steps:

[0059] S1: Before processing the sheet 5, the staff need to place it inside the inner wall of the placement shell 4. Subsequently, the pressing component 9 will limit the position of the sheet 5. During the processing, the controller 10 sends out a signal, causing the power output shafts at both ends of the motor 908 to start rotating after receiving the signal. One of the power output shafts drives the winding rod one 902 to rotate. When the winding rod one 902 rotates, it applies pressure to the mounting block three 907, causing the mounting block three 907 to push the placement rack one 906 and the connecting rod one 905 to rotate inside the inner wall of the mounting block two 904. This action causes the placement rack one 906 to open the notch of the placement shell 4, allowing the sheet 5 to fall from the inner wall of the placement shell 4. At the same time, the power output shaft at the other end of the motor 908 drives the rotating block one 909 to rotate, and then drives the tension belt 910 to rotate. The rotation of the tension belt 910 in turn causes the rotating block two 916, the extension rod 915, and the winding rod two 913 to rotate in sequence. Finally, the rotation of the winding rod two 913 drives the placement rack two 918 to rotate inside the inner wall of the mounting block five 917, while reducing the energy consumption of the equipment;

[0060] S2: Before processing the sheet 5, the controller 10 sends out a signal, causing the lifting device 2 to drive the fixing component 3 to move upward after receiving the signal. When the placement rack one 906 and the placement rack two 918 rotate, they apply pressure to the limiting shell 301. After being pressed, the limiting shell 301 drives the fixing block one 303 and itself to move outward. During the movement of the limiting shell 301, it pushes the fixing block one 303 and the fixing rod 305 to move, causing the limiting block 311 to apply pressure to the connecting block 310. After being pressed, the connecting block 310 drives the support rod 309 and the cylinder 308 to rotate inside the inner wall of the moving block 304. When the cylinder 308 rotates, it applies pressure to the moving block 304 and pushes the fixing rod 305 to move on the outer wall of the spring one 307, and at the same time applies pressure to the spring one 307. When the placement rack one 906 and the placement rack two 918 apply pressure to the limiting shell 301, the sheet 5 inside the placement shell 4 is released from the limit, causing the sheet 5 to fall off from the inner wall of the placement shell 4 to the inner wall of the fixing component 3. When the sheet 5 is placed on the inner wall of the fixing component 3, the lifting device 2 drives the fixing component 3 to descend. After the placement rack one 906 and the placement rack two 918 cancel the pressure on the limiting shell 301, the elastic potential energy of the spring one 307 is released, driving the connecting block 310 and the limiting shell 301 to clamp the sheet 5, thus preventing the equipment from shifting when riveting the sheet 5;

[0061] S3: When the sheet 5 is placed on the inner wall of the fixing component 3, a signal is sent to the electric push rod 6 through the controller 10. After receiving the signal, the driving end of the electric push rod 6 drives the moving rod 701 to move on the top of the placing plate 11. When the moving rod 701 moves, it drives the placing block 702 to move. When the placing block 702 moves, it drives the first rotating column 703 and the first pressing rod 704 to rotate. When the first pressing rod 704 rotates, it applies pressure to the sheet 5. The first pressing rod 704 and the limiting plate 12 jointly clamp the sheet 5 to prevent the sheet 5 from deviating when placed on the inner wall of the placing shell 4, ensuring that the sheet 5 can smoothly enter the inner wall of the fixing component 3 during the falling process;

[0062] S4: When riveting the sheet 5, the electric push rod 6 drives the moving rod 701 to retract. When the moving rod 701 retracts, it drives the fixing plate 801 to move. When the fixing plate 801 moves, it drives the first rack 802 to move. The first rack 802 is in meshing transmission with the second rack 805. When the first rack 802 moves, it drives the gear 804 and the rotating rod 803 to rotate on the outer wall of the placing plate 11. When the gear 804 rotates, it drives the second rack 805 and the sliding block 807 to move on the inner wall of the sliding groove 13. When the second rack 805 moves, it drives the connecting plate 806, the supporting block 808 and the connecting plate 806 to apply pressure to the rotating plate 812. After being pressed, the rotating plate 812 drives the limiting rod 811 to rotate at the bottom of the placing plate 11. The rotation of the limiting rod 811 drives the automatic riveting machine 814 to rotate, and the automatic riveting machine 814 rivets the side and outer wall of the sheet 5.

[0063] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variant thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device.

[0064] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A molding device for manufacturing a display cabinet, including a support plate (1), characterized in that: The top of the support plate (1) is fixedly equipped with a lifting device (2), the top of the lifting device (2) is provided with a fixing component (3), the top of the support plate (1) is fixedly equipped with a placement shell (4), the outer wall of the placement shell (4) is fixedly equipped with a placement plate (11), a plate (5) is placed on the inner wall of the placement shell (4), a limiting plate (12) is fixedly equipped on the inner wall of the placement shell (4), a pressing component (9) is provided on the outer wall of the placement shell (4), a limiting component (7) and a processing component (8) are provided on the outer wall of the placement plate (11), a sliding groove (13) is formed on the outer wall of the placement plate (11), a controller (10) is fixedly equipped on the outer wall of the support plate (1), and an electric push rod (6) is fixedly equipped on the top of the placement plate (11).

2. The molding device for manufacturing a display cabinet according to claim 1, characterized in that: The fixing component (3) includes a limiting shell (301), a placement groove (302) is formed on the inner wall of the limiting shell (301), a first fixing block (303) is fixedly equipped on the inner wall of the placement groove (302), a fixing rod (305) is fixedly equipped on the inner wall of the first fixing block (303), a moving block (304) is slidably connected to the outer wall of the fixing rod (305), a first spring (307) is fixedly equipped on the outer wall of the moving block (304), a second fixing block (306) is fixedly equipped at one end of the fixing rod (305) away from the first fixing block (303), a cylinder (308) is rotatably connected to the inner wall of the moving block (304), one end of a support rod (309) is fixedly equipped on the outer wall of the cylinder (308), the other end of the support rod (309) is rotatably connected to a connecting block (310), and a limiting block (311) is fixedly equipped on the outer wall of the connecting block (310).

3. The molding device for manufacturing a display cabinet according to claim 2, characterized in that: The limiting component (7) includes a moving rod (701), a placement block (702) is fixedly equipped on the outer wall of the moving rod (701), a first rotating column (703) is rotatably connected to the inner wall of the placement block (702), a first pressing rod (704) is fixedly equipped on the outer wall of the first rotating column (703), and a second rotating column (705) is fixedly equipped on the inner wall of the first pressing rod (704).

4. The molding device for manufacturing a display cabinet according to claim 3, wherein: The processing component (8) includes a fixed plate (801). A first rack (802) is fixedly assembled on the outer wall of the fixed plate (801). A rotating rod (803), a gear (804) and a second rack (805) are respectively arranged on the outer wall of the first rack (802). A connecting plate (806) is fixedly assembled on the outer wall of the second rack (805). A support block (808) is fixedly assembled at the bottom of the connecting plate (806). A second pressing rod (809) is fixedly assembled inside the support block (808). A sliding block (807) is fixedly assembled on the outer wall of the connecting plate (806). A second spring (810) is fixedly assembled on the outer wall of the second pressing rod (809). A limiting rod (811) is arranged on the outer wall of the second spring (810). A rotating plate (812) is fixedly assembled on the outer wall of the limiting rod (811). An automatic riveting machine (814) is fixedly assembled on the outer wall of the rotating plate (812). A pressing rod (813) is fixedly assembled at one end of the rotating plate (812) close to the second spring (810).

5. The molding device for manufacturing a display cabinet according to claim 4, characterized in that: The pressing component (9) includes a first mounting block (901). A first winding rod (902) is rotatably connected inside the first mounting block (901). A first elastic rope (903) is fixedly assembled on the outer wall of the first winding rod (902). A motor (908) is fixedly assembled on the outer wall of the first mounting block (901). A first rotating block (909) is fixedly assembled on the power output shaft of the motor (908). A tension belt (910) is rotatably connected inside the first rotating block (909). A limiting device (911) is arranged inside the tension belt (910). A second mounting block (904) is arranged on the outer wall of the tension belt (910). A first connecting rod (905) is rotatably connected inside the second mounting block (904). A first placement rack (906) is fixedly assembled on the outer wall of the first connecting rod (905). A third mounting block (907) is fixedly assembled at the bottom of the first placement rack (906). A fourth mounting block (912) is arranged on the outer wall of the tension belt (910). A second winding rod (913) is rotatably connected inside the fourth mounting block (912). A second elastic rope (914) and an extension rod (915) are fixedly assembled on the outer wall of the second winding rod (913). A second rotating block (916) is fixedly assembled at one end of the extension rod (915) away from the fourth mounting block (912). A fifth mounting block (917) is arranged on the outer wall of the second rotating block (916). A second placement rack (918) is rotatably connected inside the fifth mounting block (917).

6. The molding device for manufacturing a display cabinet according to claim 2, characterized in that: The first spring (307) is fixedly assembled on the outer wall of the second fixed block (306). The limiting shell (301) is slidably connected to the top of the lifting device (2). The limiting block (311) is slidably connected to the inner wall of the placement groove (302).

7. The molding device for manufacturing a display cabinet according to claim 3, wherein: The moving rod (701) is fixedly assembled on the pushing end of the electric push rod (6). The second rotating column (705) is rotatably connected to the top of the placement plate (11). The moving rod (701) is slidably connected to the top of the placement plate (11).

8. The molding device for manufacturing a display cabinet according to claim 4, characterized in that: The fixed plate (801) is fixedly assembled with the moving rod (701), the rotating rod (803) is rotatably connected to the outer wall of the placing plate (11), the sliding block (807) is slidably connected to the inner wall of the sliding groove (13), the limiting rod (811) is rotatably connected to the bottom of the placing plate (11), and the gear (804) is in meshing transmission with the first rack (802) and the second rack (805).

9. The forming device for manufacturing a display cabinet according to claim 5, characterized in that: The first mounting block (901), the second mounting block (904), the limiting device (911), the fourth mounting block (912), and the fifth mounting block (917) are all fixedly assembled with the outer wall of the placing shell (4). The tension belt (910) is rotatably connected to the inner wall of the rotating block two (916). The second elastic cord (914) is fixedly assembled with the outer wall of the second placing rack (918). The first elastic cord (903) is fixedly assembled with the inner wall of the third mounting block (907). The limiting device (911) is located on the inner wall of the tension belt (910). The first winding rod (902) is fixedly assembled with the power output shaft of the motor (908).

10. The production method of a forming device for manufacturing a display cabinet according to claim 5, characterized in that: It includes the following steps: S1: Before processing the sheet material (5), the staff needs to place it inside the placing shell (4). Subsequently, the pressing component (9) will limit the sheet material (5). During the processing, the controller (10) sends a signal to prompt the two power output shafts of the motor (908) to start rotating after receiving the signal. One of the power output shafts drives the first winding rod (902) to rotate. When the first winding rod (902) rotates, it applies pressure to the third mounting block (907), causing the third mounting block (907) to push the first placing rack (906) and the first connecting rod (905) to rotate inside the second mounting block (904). This action enables the first placing rack (906) to open the notch of the placing shell (4), allowing the sheet material (5) to fall from the inner wall of the placing shell (4). At the same time, the other power output shaft of the motor (908) drives the first rotating block (909) to rotate, thereby driving the tension belt (910) to rotate. The rotation of the tension belt (910) then causes the second rotating block (916), the extension rod (915), and the second winding rod (913) to rotate in sequence. Finally, the rotation of the second winding rod (913) drives the second placing rack (918) to rotate inside the fifth mounting block (917), while reducing the energy consumption of the equipment. S2: Before processing the sheet material (5), the controller (10) sends a signal, prompting the lifting device (2) to drive the fixing component (3) to move upward after receiving the signal. When the first placement rack (906) and the second placement rack (918) rotate, they exert pressure on the limit shell (301). After being pressed, the limit shell (301) drives the first fixing block (303) and the limit shell (301) to move outward. During the movement of the limit shell (301), it pushes the first fixing block (303) and the fixing rod (305) to move, causing the limit block (311) to exert pressure on the connecting block (310). After being pressed, the connecting block (310) drives the support rod (309) and the cylinder (308) to rotate within the inner wall of the moving block (304). When the cylinder (308) rotates, it exerts pressure on the moving block (304) and pushes the fixing rod (305) to move on the outer wall of the first spring (307), while also exerting pressure on the first spring (307). When the first placement rack (906) and the second placement rack (918) exert pressure on the limit shell (301), the sheet material (5) inside the placement shell (4) is released from the limit, causing the sheet material (5) to fall off the inner wall of the placement shell (4) to the inner wall of the fixing component (3). When the sheet material (5) is placed on the inner wall of the fixing component (3), the lifting device (2) drives the fixing component (3) to descend. After the first placement rack (906) and the second placement rack (918) cancel the pressure on the limit shell (301), the elastic potential energy of the first spring (307) is released, driving the connecting block (310) and the limit shell (301) to clamp the sheet material (5), thereby preventing the equipment from shifting when riveting the sheet material (5); S3: When the sheet material (5) is placed on the inner wall of the fixing component (3), the controller (10) sends a signal to the electric push rod (6). After receiving the signal, the driving end of the electric push rod (6) drives the moving rod (701) to move on the top of the placement plate (11). When the moving rod (701) moves, it drives the placement block (702) to move. When the placement block (702) moves, it drives the first rotating column (703) and the first pressing rod (704) to rotate. When the first pressing rod (704) rotates, it exerts pressure on the sheet material (5). The first pressing rod (704) and the limit plate (12) jointly clamp the sheet material (5) to prevent the sheet material (5) from deviating when placed on the inner wall of the placement shell (4), ensuring that the sheet material (5) can smoothly enter the inner wall of the fixing component (3) during the falling process; S4: When riveting the plate (5), the electric push rod (6) drives the moving rod (701) to retract. When the moving rod (701) retracts, it drives the fixed plate (801) to move. When the fixed plate (801) moves, it drives the first rack (802) to move. The first rack (802) meshes with the second rack (805) for transmission. When the first rack (802) moves, it drives the gear (804) and the rotating rod (803) to rotate on the outer wall of the placing plate (11). When the gear (804) rotates, it drives the second rack (805) and the sliding block (807) to move on the inner wall of the sliding groove (13). When the second rack (805) moves, it drives the connecting plate (806), the supporting block (808) and the connecting plate (806) to apply pressure to the rotating plate (812). After the rotating plate (812) is pressed, it drives the limiting rod (811) to rotate at the bottom of the placing plate (11). The rotation of the limiting rod (811) drives the automatic riveting machine (814) to rotate, and the automatic riveting machine (814) rivets the side and outer wall of the plate (5).