Plate grooving equipment

By designing a continuous conveying and flipping plate grooving equipment, the problem of low efficiency caused by manual flipping and repeated conveying was solved, and efficient plate grooving and grinding were achieved.

CN120839894BActive Publication Date: 2025-12-02JIANGSU DRUNEY SMART HOME CO LTD
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Patent Information

Application Number
CN202511369390.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-09-24
Publication Date
2025-12-02
Estimated Expiration
2045-09-24

AI Technical Summary

Technical Problem

Existing board grooving equipment requires manual flipping and repeated conveying, resulting in low efficiency and high labor intensity.

Method used

Design a board grooving device, comprising a grooving and grinding component and a flipping component arranged vertically, to realize continuous conveying, flipping and grinding of the board, and control the flipping and conveying of the board by an electric telescopic rod and an elastic telescopic rod.

Benefits of technology

It enables continuous grooving and grinding of boards, reducing the labor intensity of workers and improving the efficiency of grooving and grinding.

✦ Generated by Eureka AI based on patent content.

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Abstract

This application discloses a sheet metal grooving device, including a fixed base, an upper feeding component, a lower feeding component, two grooving and grinding assemblies, a tilting frame, a pressing and tilting assembly, a first directional component, and a second directional component. The two grooving and grinding assemblies include an upper grooving and grinding assembly and a lower grooving and grinding assembly. The upper feeding component is disposed on one side of the upper grooving and grinding assembly; the lower feeding component is disposed on the tilting frame, which is disposed on the fixed base and is provided with a positioning plate; the pressing and tilting assembly is disposed inside the tilting frame; the first directional component and the second directional component are respectively disposed on the pressing drive component in the pressing and tilting assembly, and one end of the first directional component and the second directional component are detachably connected to the side plate of the corresponding tilting frame. Therefore, sheet metal can be continuously conveyed for grooving and grinding, reducing the labor intensity of relevant personnel and improving the efficiency of sheet metal grooving and grinding.
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Description

Technical Field

[0001] This application relates to the technical field of sheet metal processing, and more particularly to a sheet metal grooving device. Background Technology

[0002] In the field of panel processing, grooving the sides of panels is an important preliminary process. Its core purpose is to provide the foundation for subsequent panel splicing and assembly, accessory installation, and functional expansion. For example, in furniture manufacturing and decoration, by creating grooves of specific sizes and shapes on the sides of panels, mortise and tenon joints can be achieved between panels for interlocking and fixing, ensuring that the assembled structure has sufficient stability and load-bearing capacity.

[0003] The original board grooving equipment required the board to be placed at the loading point and manually transported to the grooving equipment, where grooving was performed on both sides along the length of the board. After grooving, the staff would rotate the board from the length direction to the width direction and transport it to both sides along the width direction for grooving. After grooving, the grooves in the board would be polished sequentially using grinding equipment to complete the grooving process on the sides of the board.

[0004] However, the above-mentioned board processing method requires relevant staff to manually flip and repeatedly transport the boards for grooving and sanding. In addition, the boards need to be transported separately to the sanding equipment for sanding, and the manual flipping and transporting method for grooving needs to be repeated during sanding. This is time-consuming and labor-intensive, which will affect the efficiency of grooving and sanding the boards. Summary of the Invention

[0005] This application aims to at least partially address one of the technical problems in the related art.

[0006] Therefore, the purpose of this application is to provide a board grooving device that can continuously convey boards for grooving and grinding, thereby reducing the labor intensity of relevant personnel and improving the efficiency of board grooving and grinding.

[0007] To achieve the above objectives, this application proposes a sheet metal grooving device, comprising a fixed base, an upper feeding component, a lower feeding component, two grooving and grinding assemblies, a flipping frame, a pressing and flipping assembly, a first directional component, and a second directional component. The two grooving and grinding assemblies include an upper grooving and grinding assembly and a lower grooving and grinding assembly, which have identical structures and are respectively fixed to the fixed base and arranged vertically. The upper feeding component is disposed on one side of the upper grooving and grinding assembly. The lower feeding component is disposed on the flipping frame, and both the upper and lower feeding components abut against the sheet metal. The flipping frame is disposed on the fixed base and located on one side of the two grooving and grinding assemblies, and a positioning plate is provided on the flipping frame. The pressing and flipping assembly is disposed inside the flipping frame. The first directional component and the second directional component are respectively disposed on the pressing drive component of the pressing and flipping assembly, and one end of each of the first and second directional components is detachably connected to the side plate of the corresponding flipping frame.

[0008] In addition, the plate grooving equipment proposed in this application may also have the following additional technical features:

[0009] In one embodiment of this application, the upper grooving and grinding assembly and the lower grooving and grinding assembly each include a conveyor table, a plurality of first limiting members, a second limiting member, two grooving devices, and two grinding devices. The conveyor table is rotatably equipped with a plurality of conveying rollers; the plurality of first limiting members are detachably connected to the conveyor table; the second limiting members are disposed on the conveyor table; the two grooving devices are symmetrically disposed on both sides of the conveyor table; the two grinding devices are symmetrically disposed on both sides of the conveyor table and are respectively located on one side of the corresponding grooving device.

[0010] In one embodiment of this application, the first limiting member includes a limiting plate and a limiting roller, wherein the limiting plate is disposed on the conveying table; and the limiting roller is rotatably disposed on the limiting plate.

[0011] In one embodiment of this application, the second limiting member includes a support frame and a plurality of pressing limiting members, wherein the support frame is disposed on a conveying table; and the plurality of pressing limiting members are respectively disposed on the support frame.

[0012] In one embodiment of this application, the press-flip assembly further includes a universal ball table, a spiral cylinder, a spiral column, and a slide table. The universal ball table is located inside the flip frame and on one side of the supplementary plate, and is mounted on the spiral cylinder. The press drive is rotatably mounted on the spiral cylinder, and one end of the press drive is fixedly mounted on the slide table. The spiral column is helically slidably connected to the spiral cylinder and is mounted on the slide table. The slide table is slidably connected to the flip frame.

[0013] In one embodiment of this application, the pressing drive includes a control plate and a third electric telescopic rod, wherein the control plate is rotatably mounted on the screw cylinder; the third electric telescopic rod is mounted on the slide table, and the extension shaft of the third electric telescopic rod is connected to the control plate.

[0014] In one embodiment of this application, the feeding component includes a first electric telescopic rod and a first push plate, wherein the first electric telescopic rod is disposed on the conveying table; and the first push plate is disposed on the extension shaft of the first electric telescopic rod.

[0015] In one embodiment of this application, the lower feeding component includes a second electric telescopic rod and a second push plate, wherein the second electric telescopic rod is disposed on the flipping frame; and the second push plate is disposed on the extension shaft of the second electric telescopic rod.

[0016] In one embodiment of this application, the first directional member and the second directional member are respectively configured as elastic telescopic rods.

[0017] The beneficial effects of this application are as follows:

[0018] The plate grooving equipment of this application realizes four-sided grooving and grinding of the plate by setting up an upper grooving and grinding component and a lower grooving and grinding component. By pressing down and flipping the flipping component, the plate is pressed down and rotated from the upper grooving and grinding component to the lower grooving and grinding component, thereby realizing continuous conveying, continuous grooving and continuous grinding of the plate, reducing the labor intensity of relevant personnel and improving the grooving efficiency of the plate.

[0019] Additional aspects and advantages of this application will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of this application. Attached Figure Description

[0020] The above and / or additional aspects and advantages of this application will become apparent and readily understood from the following description of the embodiments taken in conjunction with the accompanying drawings, wherein:

[0021] Figure 1 This is a schematic diagram of a plate grooving device according to an embodiment of this application;

[0022] Figure 2 This is a schematic diagram of the installation structure of the first limiting member according to an embodiment of this application;

[0023] Figure 3 This is a schematic diagram of the structure of a guide plate according to an embodiment of this application;

[0024] Figure 4 This is a schematic diagram of the structure of a second limiting member according to an embodiment of this application;

[0025] Figure 5 This is a schematic diagram of the structure of a press-to-flip assembly according to an embodiment of this application.

[0026] As shown in the figure: 1. Fixed base; 2. Upper grooving and grinding assembly; 20. Conveying table; 200. Conveying roller; 21. First limiting component; 210. Limiting plate; 2100. Guide plate; 211. Limiting roller; 22. Second limiting component; 220. Support frame; 221. Pressing limiting component; 23. Grooving equipment; 24. Grinding equipment; 3. Lower grooving and grinding assembly; 4. Upper feeding component; 40. First electric telescopic rod; 41. First push plate; 5. Lower feeding component; 50. Second electric telescopic rod; 51. Second push plate; 6. Flipping frame; 60. Filler plate; 7. Pressing and flipping assembly; 70. Universal ball table; 700. Limiting block; 71. Spiral cylinder; 72. Pressing drive component; 720. Control board; 721. Third electric telescopic rod; 73. Spiral column; 74. Slide table; 8. Elastic telescopic rod. Detailed Implementation

[0027] The embodiments of this application are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain this application, and should not be construed as limiting this application.

[0028] The plate grooving equipment of this application embodiment will now be described with reference to the accompanying drawings.

[0029] like Figures 1-5 As shown, the plate grooving equipment of this application embodiment includes a fixed base 1, an upper feeding component 4, a lower feeding component 5, two grooving and grinding components, a flipping frame 6, a pressing and flipping component 7, a first direction component and a second direction component.

[0030] The two grooving and grinding components include an upper grooving and grinding component 2 and a lower grooving and grinding component 3. The upper grooving and grinding component 2 and the lower grooving and grinding component 3 have the same structure and are fixed on the fixed base 1 respectively, and are arranged vertically.

[0031] In this embodiment of the application, the upper grooving and grinding component 2 is used to groove and grind the two symmetrical sides of the board (or the two sides in the length direction of the board), and the lower grooving and grinding component 3 is used to groove and grind the other two symmetrical sides of the board (or the two sides in the width direction of the board).

[0032] Specifically, the upper grooving and grinding component 2 is located above the lower grooving and grinding component 3. After the plate is processed with grooves on both sides by the upper grooving and grinding component 2, it is conveyed to the lower grooving and grinding component 3 to continue processing the grooves on the other two sides.

[0033] Specifically, a common sheet metal feeding machine can be installed at the upper grooving and grinding component 2 to achieve continuous feeding of the sheet metal. In addition, a common unloading conveyor (not shown in the figure) can be installed at the lower grooving and grinding component 3 to achieve continuous unloading of the sheet metal, thereby improving the grooving efficiency of the sheet metal.

[0034] The upper feeding component 4 is located on one side of the upper grooving and grinding component 2.

[0035] In this embodiment, the upper feeding component 4 is used to push the plate to the upper grooving and grinding component 2 for processing, and to the pressing and flipping component 7 for flipping.

[0036] The lower feeding component 5 is set on the flip frame 6, and the upper feeding component 4 and the lower feeding component 5 respectively abut against the plate.

[0037] In this embodiment, the lower feeder 5 is used to push the sheet material to the lower grooving and grinding assembly 3 for processing, and to unload the sheet material from the lower grooving and grinding assembly 3.

[0038] The flip frame 6 is set on the fixed base 1 and located on one side of the two slotted grinding components, and the flip frame 6 is provided with a replacement plate 60.

[0039] It should be noted that the flipping frame 6 described in this embodiment has a discharge port (not shown in the figure) on one side, which corresponds to one end of the lower grooving and grinding component 3, so that the plate can be conveyed to the lower grooving and grinding component 3 after it is discharged from the discharge port.

[0040] Specifically, when the sheet material is pushed to the pressing and flipping assembly 7 by the upper feeding component 4, it passes through the filling plate 60 and is pushed onto the pressing and flipping assembly 7, thereby preventing the sheet material from falling through the gap.

[0041] The press-to-flip component 7 is set inside the flip frame 6.

[0042] In this embodiment, the pressing and flipping component 7 is used to control the flipping of the board material to flip the board material from the length direction to the width direction, thereby flipping the two sides of the ungrooved board material to the position to be processed.

[0043] The first directional component and the second directional component are respectively disposed on the pressing drive component 72 in the pressing and flipping assembly 7, and one end of the first directional component and the second directional component are respectively detachably connected to the side plate of the corresponding flipping frame 6.

[0044] In this embodiment, the first directional component is used to control the pressing and flipping assembly 7 to move in a specified direction to one side, and the second directional component is used to control the pressing and flipping assembly 7 to move in a specified direction to the other side, thereby ensuring the conveying effect of the sheet material.

[0045] Specifically, during the flipping process, especially for rectangular boards, the boards should be flipped in the middle of the flipping frame 6 (or a sufficient flipping gap should be left between the board and the flipping frame 6). This will result in a gap between the board and the flipping frame 6. This application solves the gap between the board and the flipping frame 6 by using a supplementary plate 60.

[0046] Specifically, during the flipping process of the rectangular plate (when the long side flips to the wide side), there will be a certain gap between the flipped plate and the lower grooving and grinding component 3. By setting the first directional component, when the pressing and flipping component 7 presses down to flip the plate, the first directional component controls the pressing and flipping component 7 to move towards the discharge port and the lower grooving and grinding component 3, thereby filling the gap between the flipped plate and the lower grooving and grinding component 3 and ensuring the conveying effect of the plate.

[0047] Specifically, during the flipping process of the rectangular plate (when the wide side flips to the long side), there may be insufficient gap between the flipped plate and the lower grooving and grinding component 3. By setting the second directional component, when the pressing and flipping component 7 presses down to flip the plate, the second directional component controls the pressing and flipping component 7 to move away from the discharge port and the lower grooving and grinding component 3, thereby increasing the gap between the flipped plate and the lower grooving and grinding component 3 and ensuring the conveying effect of the plate.

[0048] Specifically, in actual operation, relevant personnel install either the first direction component or the second direction component (choose one) according to the flipping direction of the board. The board feeding machine (not shown in the figure) places the board in sequence on one side of the upper grooving and grinding component 2. The upper feeding component 4 runs and pushes the board to grind and groove on the upper grooving and grinding component 2. After grinding and grooving, the upper feeding component 4 conveys the board to the pressing and flipping component 7.

[0049] The pressing drive 72 operates, driving the pressing and flipping assembly 7 to move downwards, thereby causing the sheet metal to rotate with the pressing and flipping assembly 7 and rotate the sheet metal to the designated processing position. During the downward pressing process, the first or second directional component drives the pressing and flipping assembly 7 to move in the designated direction, thereby ensuring a safe clearance distance between the sheet metal and the lower grooving and grinding assembly 3. The lower feeding component 5 operates, pushing the sheet metal to the lower grooving and grinding assembly 3. The lower grooving and grinding assembly 3 performs grooving and grinding on the other side of the sheet metal. After the grooving and grinding is completed, the lower feeding component 5 continues to push the sheet metal to the unloading conveyor, thereby completing the conveying of the grooving and grinding sheet metal.

[0050] In one embodiment of this application, such as Figure 1 , Figure 2 and Figure 4As shown, the upper grooving and grinding assembly 2 and the lower grooving and grinding assembly 3 respectively include a conveyor table 20, multiple first limiting members 21, second limiting members 22, two grooving devices 23 and two grinding devices 24.

[0051] The conveyor table 20 is rotatably equipped with multiple conveyor rollers 200, multiple first limiting members 21 are detachably connected to the conveyor table 20, second limiting members 22 are set on the conveyor table 20, two grooving devices 23 are symmetrically arranged on both sides of the conveyor table 20, and two grinding devices 24 are symmetrically arranged on both sides of the conveyor table 20, and are respectively located on one side of the grooving device 23.

[0052] Specifically, when grooving and grinding boards of different sizes, relevant personnel can disassemble and adjust the first limiting component 21 to limit the boards of different sizes.

[0053] It should be noted that the grooving device 23 and the grinding device 24 described in this example are common equipment in the field of sheet metal processing and are existing technologies, so they will not be described in detail here. In addition, by symmetrically arranging the two grooving devices 23 and the two grinding devices 24, it is possible to simultaneously grind and groove both sides of the sheet metal along its length or width, thereby improving the grooving and grinding efficiency of the sheet metal.

[0054] In one embodiment of this application, such as Figure 1 and Figure 2 As shown, the first limiting member 21 includes a limiting plate 210 and a limiting roller 211.

[0055] The limiting plate 210 is mounted on the conveyor table 20, and the limiting roller 211 is rotatably mounted on the limiting plate 210.

[0056] Specifically, the limiting plate 210 at the board loading point can be equipped with a guide plate 2100 according to the actual working conditions, so as to guide and correct the board and improve the grooving and grinding efficiency of the board.

[0057] In one embodiment of this application, such as Figure 2 and Figure 4 As shown, the second limiting member 22 includes a support frame 220 and a plurality of pressing limiting members 221.

[0058] The support frame 220 is mounted on the conveyor table 20, and multiple pressing and limiting components 221 are respectively mounted on the support frame 220.

[0059] It should be noted that the pressing limiting member 221 described in this embodiment is a common top limiting member for sheet metal on the market, which is existing technology and will not be described in detail here.

[0060] In one embodiment of this application, such as Figure 5As shown, the press-to-flip assembly 7 also includes a universal ball table 70, a spiral cylinder 71, a spiral column 73, and a slide table 74.

[0061] The omnidirectional ball table 70 is located inside the flip frame 6 and on one side of the supplementary plate 60. The omnidirectional ball table 70 is mounted on the spiral cylinder 71. The pressing drive component 72 is rotatably mounted on the spiral cylinder 71. One end of the pressing drive component 72 is fixedly mounted on the slide table 74. The spiral column 73 is spirally slidably connected to the spiral cylinder 71. The spiral column 73 is mounted on the slide table 74. The slide table 74 is slidably connected to the flip frame 6.

[0062] It should be noted that the structure of the universal ball table 70 described in this embodiment consists of a plate and multiple universal balls. The multiple universal balls are rotatably mounted on the plate, thereby ensuring that the plate can move in any direction on the universal ball table 70. In addition, the universal ball table 70 is provided with multiple limit blocks 700 (the limit blocks 700 will not affect the feeding of the plate by the lower feeder 5), so that the plate can be limited when it moves to the universal ball table 70.

[0063] It should be noted that a gap is left between the universal ball table 70 and the supplementary plate 60 described in this embodiment to ensure the effect when the universal ball table 70 is flipped downwards.

[0064] It should be noted that the helix angles of the threads on the spiral column 73 and the screw grooves on the spiral cylinder 71 described in this embodiment are relatively large (ball bearings can be set at the connection between the threads and the screw grooves according to the actual situation to ensure the downward rotation effect of the spiral cylinder 71 on the spiral column 73). This ensures that the spiral cylinder 71 will not self-lock when rotating on the spiral column 73, thereby ensuring the flipping effect of the plate on the universal ball table 70.

[0065] In one embodiment of this application, such as Figure 5 As shown, the pressing drive 72 includes a control board 720 and a third electric telescopic rod 721.

[0066] The control panel 720 is rotatably mounted on the screw cylinder 71, the third electric telescopic rod 721 is mounted on the slide table 74, and the extension shaft of the third electric telescopic rod 721 is connected to the control panel 720.

[0067] Specifically, the retraction of the third electric telescopic rod 721 causes the control plate 720 to move downward, thereby causing the spiral cylinder 71 to press the spiral column 73. Because the spiral cylinder 71 is threadedly connected to the spiral column 73, the spiral cylinder 71 rotates and moves downward on the spiral column 73. Because the control plate 720 is rotatably connected to the spiral cylinder 71, the control plate 720 will not rotate with the spiral cylinder 71, thus ensuring the connection and driving effect between the third electric telescopic rod 721 and the control plate 720.

[0068] In one embodiment of this application, such as Figure 2 As shown, the upper feeding component 4 includes a first electric telescopic rod 40 and a first push plate 41.

[0069] The first electric telescopic rod 40 is mounted on the conveyor table 20, and the first push plate 41 is mounted on the extension shaft of the first electric telescopic rod 40.

[0070] It should be noted that the first electric telescopic rod 40 described in this example can be replaced with a multi-stage hydraulic telescopic rod commonly found on the market, thereby ensuring the pushing distance of the sheet metal.

[0071] In one embodiment of this application, such as Figure 5 As shown, the lower feeding component 5 includes a second electric telescopic rod 50 and a second push plate 51.

[0072] The second electric telescopic rod 50 is mounted on the flip frame 6, and the second push plate 51 is mounted on the extension shaft of the second electric telescopic rod 50.

[0073] It should be noted that the second electric telescopic rod 50 described in this example can be replaced with a multi-stage hydraulic telescopic rod commonly found on the market, thereby ensuring the pushing distance of the sheet metal.

[0074] In one embodiment of this application, such as Figure 5 As shown, the first directional component and the second directional component are respectively configured as elastic telescopic rods 8.

[0075] It is understandable that by setting the elastic telescopic rod 8, the pressing drive stroke of the pressing drive component 72 can be adjusted, thereby ensuring the driving effect of the pressing drive component 72.

[0076] Specifically, in actual operation, relevant personnel install the first or second directional component according to the flipping direction of the board (install the first directional component when the board rotates from the length direction to the width direction, and install the second directional component when the board rotates from the width direction to the length direction). The board feeding machine (not shown in the figure) places the board sequentially on the conveyor table 20 of the upper grooving and grinding assembly 2. The first electric telescopic rod 40 extends, driving the first push plate 41 to abut against the board, and pushing the board to perform grooving and grinding on the grooving device 23 and grinding device 24 on the upper grooving and grinding assembly 2. After grinding and grooving, the first electric telescopic rod 40 continues to extend, driving the first push plate 41 to transport the board to the universal ball table 70.

[0077] The pressing drive 72 operates, causing the third electric telescopic rod 721 to retract, which in turn moves the control plate 720 downward. The control plate 720 then moves the spiral cylinder 71 downward on the spiral column 73, and the spiral cylinder 71 rotates downward on the spiral column 73, thereby moving the universal ball table 70 downward and rotating the plate downward by a specified angle, thus rotating the plate to the specified processing position. During the downward pressing process, one of the elastic telescopic rods 8 of the first or second directional component abuts against the corresponding side wall of the tilting box, and moves the slide table 74 to the specified position (when the first directional component is installed, it moves the slide table 74 downward to the slotting and grinding assembly 3). When the second directional component is installed, the sliding table 74 is moved away from the lower grooving and grinding assembly 3, thereby ensuring a safe conveying gap between the plate and the lower grooving and grinding assembly 3. The second electric telescopic rod 50 extends, driving the second push plate 51 to extend, and driving the plate that has been rotated to the designated processing position to move to the conveyor table 20 in the lower grooving and grinding assembly 3. The grooving device 23 and the grinding device 24 in the lower grooving and grinding assembly 3 perform grooving and grinding on the other side of the plate. After the grooving and grinding are completed, the second electric telescopic rod 50 continues to extend, and drives the second push plate 51 to continue pushing the plate to the unloading conveyor, thereby completing the conveying of the plate for grooving and grinding.

[0078] In summary, the board grooving equipment of this application embodiment can continuously convey boards for grooving and grinding, reducing the labor intensity of relevant personnel and improving the efficiency of board grooving and grinding.

[0079] Although embodiments of this application have been shown and described above, it is understood that the above embodiments are exemplary and should not be construed as limiting this application. Those skilled in the art can make changes, modifications, substitutions and variations to the above embodiments within the scope of this application.

Claims

1. A grooving device for sheet metal, characterized in that, It includes a fixed base, an upper feeding component, a lower feeding component, two slotted grinding assemblies, a flipping frame, a pressing and flipping assembly, a first directional component, and a second directional component, wherein, The two grooving and grinding components include an upper grooving and grinding component and a lower grooving and grinding component. The upper grooving and grinding component and the lower grooving and grinding component have the same structure and are respectively fixed on the fixed base and arranged vertically. The upper feeding component is located on one side of the upper grooving and grinding assembly; The lower feeding component is disposed on the flip frame, and the upper feeding component and the lower feeding component respectively abut against the plate; The flip frame is mounted on the fixed base and located on one side of the two slotted grinding components, and a filler plate is provided on the flip frame. The press-to-flip component is disposed within the flip frame; The first directional component and the second directional component are respectively disposed on the pressing drive component in the pressing and flipping assembly, and one end of the first directional component and the second directional component are respectively detachably connected to the side plate corresponding to the flipping frame; When the pressing and flipping component presses down and flips the rectangular plate, the long side of the plate flips to the wide side. The first directional component controls the pressing and flipping component to move towards the lower grooving and grinding component, thereby filling the gap between the flipped plate and the lower grooving and grinding component. When the pressing and flipping component presses down and flips the rectangular plate, the long side of the plate flips to the wide side. The second directional component controls the pressing and flipping component to move away from the lower grooving and grinding component, thereby increasing the gap between the flipped plate and the lower grooving and grinding component. The first directional component and the second directional component are respectively configured as elastic telescopic rods; The pressing and flipping assembly also includes a universal ball table, a spiral cylinder, a spiral column, and a slide table, wherein... The omnidirectional ball table is located within the flip frame and on one side of the supplementary plate, and the omnidirectional ball table is mounted on the spiral cylinder; The pressing drive is rotatably mounted on the spiral cylinder, and one end of the pressing drive is fixedly mounted on the slide table; The spiral column is helically slidably connected to the spiral cylinder, and the spiral column is disposed on the slide table; The slide is slidably connected to the flip frame.

2. The plate grooving equipment according to claim 1, characterized in that, The upper grooving and grinding assembly and the lower grooving and grinding assembly each include a conveyor table, multiple first limiting members, second limiting members, two grooving devices, and two grinding devices, wherein... Multiple conveying rollers are rotatably mounted on the conveyor platform; The plurality of first limiting members are detachably connected to the conveyor table; The second limiting member is disposed on the conveyor table; The two grooving devices are symmetrically arranged on both sides of the conveyor table; The two grinding devices are symmetrically arranged on both sides of the conveyor table, and are respectively located on one side of the corresponding grooving device.

3. The plate grooving equipment according to claim 2, characterized in that, The first limiting component includes a limiting plate and a limiting roller, wherein, The limiting plate is disposed on the conveyor table; The limiting roller is rotatably mounted on the limiting plate.

4. The plate grooving equipment according to claim 2, characterized in that, The second limiting member includes a support frame and multiple pressing limiting members, wherein, The support frame is mounted on the conveyor platform; Multiple pressing and limiting components are respectively disposed on the support frame.

5. The plate grooving equipment according to claim 1, characterized in that, The pressing drive includes a control panel and a third electric telescopic rod, wherein... The control panel is rotatably mounted on the spiral cylinder; The third electric telescopic rod is mounted on the slide, and the extension shaft of the third electric telescopic rod is connected to the control panel.

6. The plate grooving equipment according to claim 3, characterized in that, The upper feeding component includes a first electric telescopic rod and a first push plate, wherein... The first electric telescopic rod is mounted on the conveyor platform; The first push plate is mounted on the extension shaft of the first electric telescopic rod.

7. The plate grooving equipment according to claim 1, characterized in that, The lower feeding component includes a second electric telescopic rod and a second push plate, wherein... The second electric telescopic rod is mounted on the flip frame; The second push plate is mounted on the extension shaft of the second electric telescopic rod.

Citation Information

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