Glass crystal porcelain plate slotting equipment

By placing the cutting wheel under the plate in the glass-crystal grooving equipment and combining it with clamping, flipping and dust collection components, the problem of debris adhesion is solved, automatic debris collection and convenient detection of the grooved surface facing down are achieved, thereby improving production efficiency and cleanliness.

CN120816613AInactive Publication Date: 2025-10-21SICHUAN KELTON BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202511296479.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-11
Publication Date
2025-10-21
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing glass crystal ceramic tile grooving equipment tends to have debris adhering to the surface of the tile or precision parts of the equipment during the grooving process, affecting cleanliness and normal operation of the equipment. Furthermore, it is difficult to accurately determine the edge of the groove when the grooved surface is facing upwards.

Method used

A grooving device for glass-crystal sub-ceramic panels was designed. The cutting wheel was set under the panel, and the clamping, flipping, spreading and dust collection components were combined to realize automatic collection of debris. The flipping component was used to make the grooved surface face downward for easy inspection and observation.

Benefits of technology

The slotting operation process is simplified, debris is collected centrally to avoid adhesion, the slotting quality inspection is ensured to be convenient, and the production efficiency and equipment cleanliness are improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of plate processing, and discloses glass crystal porcelain plate slotting equipment which comprises a cutting table, a fixing frame is fixedly connected to the top of the cutting table, a double-shaft motor is fixedly connected to the inner wall of the fixing frame, cutting wheels are fixedly connected to output shafts at the two ends of the double-shaft motor, and electric sliding rails are symmetrically and fixedly mounted at the top of the cutting table; electric sliding blocks are connected to the inner walls of the electric sliding rails in a sliding mode, the electric sliding rails are divided into two sections including the straight section and the bent section, a dust collecting assembly for collecting crushed materials in a centralized mode is arranged below the two electric sliding rails, the cutting wheel is arranged below the plate, grooving work is automatically conducted through movement of the plate, the grooving operation process is simplified, and the grooving efficiency is improved. And in addition, chippings generated in the grooving process can directly fall down to be away from the plates and equipment precision parts, interference is reduced, and the chippings can be collected in a tidying and centralized mode in cooperation with the dust collecting assembly, and the chippings are prevented from being attached to the surfaces of the plates or the equipment precision parts.
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Description

Technical Field

[0001] The invention belongs to the technical field of plate processing, and specifically relates to a glass crystal sub-ceramic plate grooving device. Background Art

[0002] The main function of the Bojing sub-ceramic plate grooving equipment is to accurately groove Bojing sub-ceramic plates to meet the needs of plate processing in the fields of architectural decoration, furniture manufacturing, etc. Through the coordination of mechanical structure and power system, the equipment can cut out grooves that meet the requirements on the plate surface according to preset parameters, ensuring processing accuracy and efficiency.

[0003] The existing technology also proposes some solutions: for example, a patent with publication number CN115625801A discloses a ceramic plate grooving device, including: a grooving component, which includes a mounting plate, a mounting seat fixed on the mounting plate, an electric saw installed in the mounting seat, a spring connected to the bottom of the mounting plate, a connecting plate fixed on the end of the spring away from the mounting plate, a pressing sleeve fixed on the connecting plate, and the electric saw movably penetrates the pressing sleeve; the electric saw is used to cut each side of the groove in turn, and the process of first vertically penetrating and then horizontally cutting is followed to ensure the flatness of the groove and avoid the problem of inconsistent size of the grooves on both sides of the ceramic plate; the grooving component can be adjusted to any position to meet the grooving operations at different positions of the ceramic plate, and the adjustment is convenient and flexible.

[0004] Traditional grooving equipment usually processes the plate with the grooved side facing up. The debris generated during the grooving process easily adheres to the surface of the plate or the precision components of the equipment. Therefore, in order to recycle the debris and ensure the cleanliness of the plate, an additional cleaning structure is required to handle the debris. If the debris falls on the precision components of the equipment, it will also affect the normal operation of the components.

[0005] To this end, the present invention provides a glass crystal sub-ceramic plate grooving device. Summary of the Invention

[0006] In order to make up for the deficiencies of the prior art: solve at least one technical problem raised in the background technology.

[0007] The technical solution adopted by the present invention to solve its technical problems is: the glass crystal sub-ceramic plate grooving equipment described in the present invention includes a cutting table, the top of the cutting table is fixedly connected to a fixing frame, the inner wall of the fixing frame is fixedly connected to a dual-axis motor, the output shafts at both ends of the dual-axis motor are fixedly connected to cutting wheels, the top of the cutting table is symmetrically fixedly installed with electric slide rails, the inner walls of the electric slide rails are slidably connected to electric sliders, the electric slide rails are divided into two sections, namely a straight section and a bending section, a clamping assembly for clamping the plate for movement is provided between the two electric slide rails, the straight sections of the two electric slide rails are provided with a flipping assembly for driving the plate to flip, the bending sections of the two electric slide rails are provided with an expansion and pushing assembly for taking out the plate, and a dust collecting assembly for collecting the debris is provided below the two electric slide rails.

[0008] Preferably, the clamping assembly includes two groups of splints, each group of splints has two and a part of them fits with the upper and lower surfaces of the plate, and there is another part between each group of splints that does not contact the plate to form a gap, and an inner groove seat is provided on one side of each splint, and each two inner groove seats are fixedly connected to each other, and a rotating rod is fixedly connected to one end of the middle part of each two inner groove seats, and the rotating rod is rotatably connected to the inner wall of the electric slider respectively.

[0009] Preferably, the flipping assembly includes two gears 1, which are respectively fixedly connected to the outer walls of the two rotating rods. A rack plate 1 is fixedly connected to one side of the straight section of the two electric slide rails. The rack plate 1 is located on one side of the cutting wheel. The teeth of the rack plate 1 can engage with the teeth of the gear 1, and the number of teeth of the rack plate 1 is half the number of teeth of the gear 1.

[0010] Preferably, the inner wall of each inner groove seat is slidably connected with an inner slider, one end of the inner slider is fixedly connected to one side of the splint, the top of the inner slider is fixedly connected to the limit rod, the limit rod is plugged into the inner wall of the inner groove seat, the top of the limit rod is frustum-shaped, a spring is provided on the outside of the limit rod, the two ends of the spring are fixedly connected to the top surface of the inner groove seat and the inner wall of the ground, and a locking component is provided on the outside of the straight section of the electric slide rail to limit the position of the inner slider.

[0011] Preferably, the expansion and push assembly includes two expansion and push plates, which are parallel to the bending section of the electric slide rail. One side of the two expansion and push plates is fixedly connected to a connecting piece, which is fixedly installed on the outer wall of the bending section of the electric slide rail. A blanking plate is provided below the expansion and push plate, which is in an inclined state and fixedly installed on the top of the cutting table.

[0012] Preferably, the positioning assembly includes an upper plate and a lower plate, the upper plate is fixedly connected to the top of the straight section of the electric slide rail, and the lower plate is fixedly connected to the bottom of the straight section of the electric slide rail. One side of the upper plate and the lower plate are respectively kept in contact with one end of the limit rod. One side of the upper plate is fixedly connected to a detection head, and the detection head is located on the side above the rack plate.

[0013] Preferably, a limit plate is fixedly connected between one side of the two electric slide rails, and a placement plate is fixedly connected to one side of the limit plate, and the top of the placement plate is used to place the next plate to be slotted.

[0014] Preferably, the outer walls of the shafts at both ends of the dual-axis motor are rotatably connected to scrapers, the inner walls of the scrapers are in contact with the outer walls of the cutting wheel, and the outer walls of the scrapers are fixedly connected to a dustproof box.

[0015] Preferably, the dust collection assembly includes two articulated seats, which are respectively fixedly connected to the bottom of the two lower plates, and the shafts of the articulated seats are fixedly connected to the debris plates. A collection box is provided at the bottom outlet of the two debris plates, and the collection box is placed on the top of the cutting table. A vibration assembly is provided at the bottom of the debris plate for driving the debris plate to swing up and down.

[0016] Preferably, the vibration assembly includes a pair of squeezing and pushing round blocks, the outer walls of the squeezing and pushing round blocks are respectively fitted with the bottom of the debris plate, the outer walls of the squeezing and pushing round blocks are fixedly connected to a pair of protrusions, one end of the squeezing and pushing round blocks is fixedly connected to a connecting rotating rod, one end of the connecting rotating rod is fixedly connected to gear 2, the outer walls of the connecting rotating rod are rotatably connected to a clamping seat, the clamping seats are fixedly connected to the top of the cutting table, the bottom of the electric slider is fixedly connected to rack plate 2, the teeth of rack plate 2 can engage with the teeth of gear 2, the two ends of the bottom of the debris plate are fixedly connected to a fixing rope, and the bottom of the fixing rope is fixedly connected to a counterweight block.

[0017] The beneficial effects of the present invention are as follows: 1. The glass crystal sub-ceramic plate grooving equipment described in the present invention simplifies the grooving operation process by arranging the cutting wheel under the plate and automatically performing the grooving work by moving the plate. The debris generated during the grooving process will fall directly away from the plate and the precision parts of the equipment, reducing interference. In combination with the dust collection component, the debris can be sorted and collected in a centralized manner to prevent the debris from adhering to the surface of the plate or the precision parts of the equipment.

[0018] 2. The glass crystal sub-ceramic plate grooving equipment described in the present invention detects the plate with the grooved surface facing down. Due to the reflection on the surface of the plate or the residual cutting debris, the visual system may misjudge the edge of the groove hole, and it is not convenient for the staff to perform manual inspection. However, the flipping component drives the plate to turn over through the clamping component. The flipped plate is not only convenient for detecting and inspecting the groove quality, but also when the plate is turned over and unloaded through the tilting and expanding pushing components of the clamping component, the plate slides along the inclined guide rail to unload, and the grooved surface always faces the operator or the front of the material receiving box, which is convenient for observation and sorting.

[0019] 3. In the glass crystal sub-ceramic plate grooving equipment described in the present invention, when the protrusion of the pushing round block leaves the bottom of the debris plate, the debris plate will swing downward under the action of the gravity of the counterweight block. In this way, as the pushing round block continues to rotate, the debris plate will swing up and down regularly under the joint action of the counterweight block and the protrusion of the pushing round block. The up and down swinging action can cause the debris on the surface of the debris plate to slide or roll, accelerate the speed of the debris moving to the bottom outlet, avoid excessive accumulation of debris on the debris plate, and ensure that the debris can fall smoothly and efficiently into the collection box below. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] The present invention will be further described below with reference to the accompanying drawings.

[0021] Figure 1 It is an overall stereogram of the present invention; Figure 2 This is a structural diagram of the electric slide rail in the present invention; Figure 3 It is a structural diagram of the splint in the present invention; Figure 4 This is a structural diagram of the inner slider in the present invention; Figure 5 This is a structural diagram of the expansion and push plate in the present invention; Figure 6 It is a structural diagram of the upper plate in the present invention; Figure 7 This is a schematic structural diagram of the cutting wheel in the present invention; Figure 8 This is a schematic structural diagram of the dust scraping member in the present invention; Figure 9 It is a schematic diagram of the structure of the debris plate in the present invention; Figure 10 It is a schematic diagram of the second structure of the gear in the present invention.

[0022] In the figure: 1. Cutting table; 2. Fixed frame; 3. Dual-axis motor; 4. Cutting wheel; 5. Clamp; 6. Inner groove seat; 7. Rotating rod; 8. Electric slider; 9. Electric slide rail; 10. Inner slider; 11. Spring; 12. Limit rod; 13. Gear 1; 14. Rack plate 1; 15. Upper plate; 16. Lower plate; 17. Detection head; 18. Connecting piece; 19. Push plate; 20. Placement plate; 21. Limit plate; 22. Dust scraper; 23. Dust box; 24. Articulated seat; 25. Debris plate; 26. Collecting box; 27. Pushing round block; 28. Connecting rotating rod; 29. ​​Clamping seat; 30. Gear 2; 31. Fixing rope; 32. Counterweight block; 33. Rack plate 2; 34. Blanking plate. DETAILED DESCRIPTION

[0023] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific implementation methods.

[0024] like Figures 1 to 10 As shown, the present invention provides a technical solution: a glass crystal sub-ceramic plate grooving equipment, including a cutting table 1, the top of the cutting table 1 is fixedly connected to a fixing frame 2, the inner wall of the fixing frame 2 is fixedly connected to a dual-axis motor 3, the output shafts at both ends of the dual-axis motor 3 are fixedly connected to a cutting wheel 4, the top of the cutting table 1 is symmetrically fixedly installed with electric slide rails 9, the inner walls of the electric slide rails 9 are slidably connected to electric sliders 8, the electric slide rails 9 are divided into two sections, namely a straight section and a bending section, a clamping component for clamping the plate for movement is provided between the two electric slide rails 9, the straight sections of the two electric slide rails 9 are provided with a flipping component for driving the plate to flip, the bending sections of the two electric slide rails 9 are provided with an expansion and pushing component for taking out the plate, and a dust collecting component for collecting the debris is provided below the two electric slide rails 9.

[0025] During operation: the glass crystal sub-ceramic plate that needs to be grooved is placed in the clamping assembly for clamping. After the plate is clamped, current is passed through the electric slide rail 9, and the electric slide rail 9 will make the electric slider 8 slide along the inner wall of the straight section of the electric slide rail 9, and the electric slider 8 can drive the plate to move through the clamping assembly. When the plate moves, its bottom will first pass through and contact the two cutting wheels 4. The two cutting wheels 4 can rotate synchronously under the drive of the dual-axis motor 3. When the plate passes through the two rotating cutting wheels 4, a straight slot hole will be cut at its bottom, thereby completing the grooving of the plate; after the grooving is completed, the electric slider 8 continues to drive the plate to move through the clamping assembly. During the movement, the plate is under the action of the flipping assembly. , it will flip 180 degrees. After the plate is flipped, the slot hole with its bottom facing directly downward will face directly upward, which is convenient for detection equipment to detect and staff to inspect. If the slot hole is defective, the electric slider 8 can be driven to bring the plate back to the initial position and re-grooved. After the plate is finally confirmed to have completed the grooving work, the electric slider 8 slides to the bending section of the two electric slide rails 9. The track steering drives the clamping assembly to tilt synchronously with the plate, and the clamping assembly gradually loses the clamping force on the plate under the action of the expansion and pushing assembly. After losing the clamping force, the plate will automatically slide out under the influence of gravity, thereby realizing the automatic unloading work of the plate after grooving, and the dust collection assembly can collect the debris generated in the grooving process of the plate; Through the above embodiment, by arranging the cutting wheel 4 under the plate and automatically performing the grooving work by moving the plate, the grooving operation process is simplified, and the debris generated during the grooving process will fall directly away from the plate and the precision parts of the equipment, reducing interference. In conjunction with the dust collection component, the debris can be sorted and collected in a concentrated manner to avoid the debris adhering to the surface of the plate or the precision parts of the equipment; the plate is inspected with the grooved surface facing down. Due to the reflection on the surface of the plate or the residual cutting debris, the visual system may misjudge the edge of the slot hole, and it is not convenient for the staff to perform manual inspection. The flipping component drives the plate to turn over through the clamping component. The flipped plate is not only convenient for detecting and inspecting the grooving quality, but also when the plate is turned over and unloaded by the tilting and expanding pushing components of the clamping component, the plate slides along the inclined guide rail to unload, and the grooved surface always faces the operator or the front of the receiving box, which is convenient for observation and sorting.

[0026] like Figures 3 and 4 As shown, the clamping assembly includes two groups of splints 5, each group of splints 5 has two and a part of them fits with the upper and lower surfaces of the plate, and there is another part between each group of splints 5 that does not contact the plate to form a gap, and an inner groove seat 6 is provided on one side of each splint 5, and each two inner groove seats 6 are fixedly connected to each other, and a rotating rod 7 is fixedly connected to one end of the middle part of each two inner groove seats 6, and the rotating rod 7 is rotatably connected to the inner wall of the electric slider 8 respectively.

[0027] During operation: When the electric slider 8 slides along the inner wall of the straight section or the bent section of the electric slide rail 9, the two clamping plates 5 will be driven to move through the rotating rod 7 and the inner groove seat 6. Since part of the area of ​​each group of clamping plates 5 is tightly fitted with the upper and lower surfaces of the plate, stable friction and clamping force are provided to ensure that the plate does not move during high-speed movement or flipping, ensuring the accuracy of grooving and the stability of flipping, thereby achieving clamping of the plate, so that the plate can move with the movement of the electric slider 8.

[0028] like Figures 3 to 6 As shown, the flip assembly includes two gears 13, and the two gears 13 are respectively fixedly connected to the outer walls of the two rotating rods 7. One side of the straight section of the two electric slide rails 9 is fixedly connected with a rack plate 14. The rack plate 14 is located on one side of the cutting wheel 4. The teeth of the rack plate 14 can engage with the teeth of the gear 13, and the number of teeth of the rack plate 14 is half the number of teeth of the gear 13.

[0029] During operation: When the two sets of clamping plates 5 clamp the plate and move to complete the grooving work, when continuing to drive the plate to move, gear 13 will engage with rack plate 14, and the engagement will cause gear 13 to rotate. Gear 13 will drive the two clamping plates 5 to rotate through the two inner groove seats 6, and the two clamping plates 5 drive the plate to flip over. Since the number of teeth on rack plate 14 is half of the number of teeth on gear 13, the plate will eventually rotate 180 degrees, thereby completing the flipping process.

[0030] like Figures 4 and 5 As shown, the inner wall of each inner groove seat 6 is slidably connected with an inner slider 10, one end of the inner slider 10 is fixedly connected to one side of the splint 5, and the top of the inner slider 10 is fixedly connected to the limit rod 12, which is plugged into the inner wall of the inner groove seat 6. The top of the limit rod 12 is frustum-shaped, and a spring 11 is provided on the outside of the limit rod 12. The two ends of the spring 11 are fixedly connected to the top surface of the inner groove seat 6 and the inner wall of the ground, respectively. A locking component for limiting the position of the inner slider 10 is provided on the outside of the straight section of the electric slide rail 9.

[0031] During operation: the two clamping plates 5 are connected to the inner groove seat 6 through the sliding connection of the inner slider 10, which creates conditions for the two clamping plates 5 to move away from each other. When the electric slider 8 slides to the bending section of the electric slide rail 9, the two clamping plates 5 will drive the plate to tilt automatically. At this time, when continuing to move along the bending section, the expansion and pushing component will force the inner slider 10 to slide along the inner wall of the inner groove seat 6, thereby increasing the distance between the two clamping plates 5, and the plate automatically slides out under the inclined state and the action of gravity; and the straight section of the electric slide rail 9 is provided with a locking component, which prevents the vibration of the cutting wheel 4 during the grooving process, causing the inner slider 10 to accidentally slide in the inner wall of the inner groove seat 6, thereby causing the two clamping plates 5 to clamp the plate to become unstable due to shaking during grooving.

[0032] like Figure 3 and Figure 5 As shown, the expansion and push assembly includes two expansion and push plates 19, and the two expansion and push plates 19 are in parallel with the bending section of the electric slide rail 9. One side of the two expansion and push plates 19 is fixedly connected with a connecting member 18, and the connecting member 18 is fixedly installed on the outer wall of the bending section of the electric slide rail 9. A blanking plate 34 is provided below the expansion and push plate 19, and the blanking plate 34 is in an inclined state and fixedly installed on the top of the cutting table 1.

[0033] During operation: after the electric slider 8 enters the bending section, the track steering drives the splint 5 to tilt synchronously with the sheet, and the tilt angle is consistent with the bending section. The entire splint 5 and the sheet are in a tilted state parallel to the bending section. At this time, the electric slider 8 continues to move, and the expansion plate 19 is gradually inserted into a part of the gap formed by the two splints 5, and pushes the inner slider 10 to slide along the inner groove seat 6. The spring 11 will be compressed, and the distance between the two splints 5 will gradually increase, completely releasing the sheet. After the splint 5 is fully opened, the sheet will naturally slide and be collected along the inclined blanking plate 34 under the action of gravity. The sheet will fall to the top of the blanking plate 34 for collection, and at this time the sheet has been turned over by the flipping assembly, and its slotted surface is facing directly upwards, which is convenient for observation and arrangement.

[0034] like Figures 5 and 6 As shown, the positioning assembly includes an upper plate 15 and a lower plate 16. The upper plate 15 is fixedly connected to the top of the straight section of the electric slide rail 9, and the lower plate 16 is fixedly connected to the bottom of the straight section of the electric slide rail 9. One side of the upper plate 15 and the lower plate 16 are respectively kept in contact with one end of the limit rod 12. A detection head 17 is fixedly connected to one side of the upper plate 15, and the detection head 17 is located on the side above the rack plate 14.

[0035] During operation: when the two clamping plates 5 clamp the sheet and move along the straight section of the electric slide rail 9, multiple limit rods 12 are respectively restricted by the upper plate 15 and the lower plate 16, so that when the slotting work is performed, the vibration cannot cause the inner slider 10 to slide along the inner wall of the inner slot seat 6 The spring 11 is deformed, thereby ensuring the clamping force and friction force applied by the two clamping plates 5 to the sheet, and improving the stability of the sheet during the slotting process; and the detection head 17 is arranged above one side of the rack plate 14. After the sheet is turned over, it will pass through the detection head 17 when continuing to move. The detection head 17 performs a comprehensive inspection of the slot hole. If the slot hole is defective, the electric slider 8 is driven to bring the sheet back to the initial position and re-grooved until there is no objection to the slot hole and then enters the bending section for unloading.

[0036] like Figure 2 and Figure 6 As shown, a limit plate 21 is fixedly connected between one side of the two electric slide rails 9, and a placement plate 20 is fixedly connected to one side of the limit plate 21. The top of the placement plate 20 is used to place the next plate to be slotted.

[0037] During operation: the next plate to be slotted is placed at a predetermined position above the placement plate 20. After the two splints 5 complete the unloading work in the bending section, they return to the initial position and continue to move, so that the two splints 5 pass through both sides of the placement plate 20. At this time, under the limit plate 21, the standby plate will gradually be embedded in the inner walls of the two groups of splints 5, thereby realizing the automatic loading process of the plate, further improving production efficiency, and meeting the needs of large-scale and high-efficiency production.

[0038] like Figures 7 and 8 As shown, the outer walls of the shafts at both ends of the dual-axis motor 3 are rotatably connected to scrapers 22, the inner walls of the scrapers 22 fit the outer walls of the cutting wheel 4, and the outer walls of the scrapers 22 are fixedly connected to a dustproof box 23.

[0039] During operation: When the cutting wheel 4 continues to rotate, its outer wall will produce contact friction with the inner wall of the scraper 22, thereby continuously scraping off the adhered debris. At the same time, the outer wall of the scraper 22 is fixedly connected to the dustproof box 23, and the scraped debris can be effectively stored in the dustproof box 23 to prevent the debris from scattering.

[0040] like Figures 9 and 10 As shown, the dust collection assembly includes two hinged seats 24, which are respectively fixedly connected to the bottom of the two lower plates 16. The shafts of the hinged seats 24 are fixedly connected to the debris plates 25. A collection box 26 is provided at the bottom outlet of the two debris plates 25. The collection box 26 is placed on the top of the cutting table 1. A vibration assembly is provided at the bottom of the debris plate 25 for driving the debris plate 25 to swing up and down.

[0041] During operation: the debris generated by the grooving operation of the cutting wheel 4, as well as other debris generated by cutting, friction, etc. during the grooving process of the plate, will naturally fall and accumulate on the surface of the debris plate 25. As the electric slider 8 moves along the preset track, it will trigger the vibration component to start working. The power generated by the vibration component causes the debris plate 25 to swing up and down regularly around the shaft of the hinge seat 24. This swinging action can effectively cause the debris on the surface of the debris plate 25 to slide or roll, thereby accelerating the speed of the debris moving to the bottom outlet, avoiding excessive accumulation of debris on the debris plate 25, and ensuring that the debris can fall smoothly and efficiently into the collection box 26 below, realizing the centralized collection and cleaning of the debris, and ensuring the cleanliness and safety of the cutting operation environment.

[0042] like Figures 9 and 10 As shown, the vibration assembly includes a pair of pushing blocks 27, the outer walls of the pushing blocks 27 are respectively fitted with the bottom of the debris plate 25, the outer walls of the pushing blocks 27 are fixedly connected to a pair of protrusions, one end of the pushing blocks 27 is fixedly connected to a connecting rod 28, one end of the connecting rod 28 is fixedly connected to a gear 2 30, the outer walls of the connecting rod 28 are rotatably connected to a clamping seat 29, the clamping seats 29 are fixedly connected to the top of the cutting table 1, the bottom of the electric slider 8 is fixedly connected to a rack plate 23, the teeth of the rack plate 233 can engage with the teeth of the gear 2 30, the two ends of the bottom of the debris plate 25 are fixedly connected to a fixing rope 31, and the bottom of the fixing rope 31 is fixedly connected to a counterweight block 32.

[0043] During operation: When the cutting wheel 4 is grooving the plate, the generated debris will fall naturally and accumulate on the surface of the debris plate 25. At the same time, the electric slider 8 starts to move along the preset track. The electric slider 8 will cause the teeth of the rack plate 233 to mesh with the teeth of the gear 2 30. After the rack plate 23 is meshed with the gear 2 30, as the electric slider 8 continues to move, the rack plate 23 will drive the gear 2 30 to rotate, thereby causing the connecting rotating rod 28 to rotate in the clamping seat 29, and finally driving the squeezing and pushing round block 27 to rotate. When the squeezing and pushing round block 27 rotates, the protrusion will periodically squeeze the bottom of the debris plate 25, so that the debris plate 25 is subjected to The squeezing and pushing force on the squeezing and pushing block 27 causes the squeezing and pushing block 25 to swing upward around the shaft of the hinge seat 24. When the protrusion of the squeezing and pushing block 27 leaves the bottom of the debris plate 25, the debris plate 25 will swing downward under the action of the gravity of the counterweight block 32. In this way, as the squeezing and pushing block 27 continues to rotate, the debris plate 25 will swing up and down regularly under the joint action of the counterweight block 32 and the protrusion of the squeezing and pushing block 27. The up and down swinging action can cause the debris on the surface of the debris plate 25 to slide or roll, speeding up the speed of the debris moving to the bottom outlet, avoiding excessive accumulation of debris on the debris plate 25, and ensuring that the debris can fall smoothly and efficiently into the collection box 26 below.

[0044] The basic principles, main features, and advantages of the present invention are shown and described above. Those skilled in the art should understand that the present invention is not limited to the foregoing embodiments. The foregoing embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and modifications may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and modifications are intended to fall within the scope of the present invention. The scope of protection claimed in the present invention is defined by the appended claims and their equivalents.

Claims

1. A glass crystal sub-ceramic plate grooving device, including a cutting table, characterized by: The top of the cutting table is fixedly connected to a fixed frame, the inner wall of the fixed frame is fixedly connected to a dual-axis motor, the output shafts at both ends of the dual-axis motor are fixedly connected to cutting wheels, the top of the cutting table is symmetrically fixed with electric slide rails, the inner walls of the electric slide rails are slidably connected to electric sliders, the electric slide rails are divided into two sections, namely a straight section and a bending section, a clamping assembly for clamping the plate for movement is provided between the two electric slide rails, the straight sections of the two electric slide rails are provided with a flipping assembly for driving the plate to flip, the bending sections of the two electric slide rails are provided with an expansion and pushing assembly for taking out the plate, and a dust collecting assembly for collecting the debris is provided under the two electric slide rails.

2. The glass crystal sub-ceramic plate grooving equipment according to claim 1, characterized in that: The clamping assembly includes two groups of plywood, each group of plywood has two and one part is in contact with the upper and lower surfaces of the plate, and there is another part between each group of plywood that does not contact the plate to form a gap. An inner groove seat is provided on one side of each plywood, and each two inner groove seats are fixedly connected to each other. A rotating rod is fixedly connected to one end of the middle part of each two inner groove seats, and the rotating rod is rotatably connected to the inner wall of the electric slider respectively.

3. The glass crystal sub-ceramic plate grooving equipment according to claim 2, characterized in that: The flip assembly includes two gears 1, which are respectively fixedly connected to the outer walls of the two rotating rods. A rack plate 1 is fixedly connected to one side of the straight section of the two electric slide rails. The rack plate 1 is located on one side of the cutting wheel. The teeth of the rack plate 1 can engage with the teeth of the gear 1, and the number of teeth of the rack plate 1 is half the number of teeth of the gear 1.

4. The glass crystal sub-ceramic plate grooving equipment according to claim 3, characterized in that: The inner wall of each inner groove seat is slidably connected with an inner slider, one end of the inner slider is fixedly connected to one side of the splint, the top of the inner slider is fixedly connected to the limit rod, the limit rod is plugged into the inner wall of the inner groove seat, the top of the limit rod is frustum-shaped, a spring is provided on the outside of the limit rod, the two ends of the spring are fixedly connected to the top surface of the inner groove seat and the inner wall of the ground, and a locking component is provided on the outside of the straight section of the electric slide rail to limit the position of the inner slider.

5. The glass crystal sub-ceramic plate grooving equipment according to claim 4, characterized in that: The expansion and push assembly includes two expansion and push plates, which are parallel to the bending section of the electric slide rail. One side of the two expansion and push plates is fixedly connected to a connecting piece, which is fixedly installed on the outer wall of the bending section of the electric slide rail. A blanking plate is provided below the expansion and push plate, which is in an inclined state and fixedly installed on the top of the cutting table.

6. The glass crystal sub-ceramic plate grooving equipment according to claim 5, characterized in that: The positioning assembly includes an upper plate and a lower plate. The upper plate is fixedly connected to the top of the straight section of the electric slide rail, and the lower plate is fixedly connected to the bottom of the straight section of the electric slide rail. One side of the upper plate and the lower plate are respectively kept in contact with one end of the limit rod. A detection head is fixedly connected to one side of the upper plate, and the detection head is located on the side above the rack plate.

7. The glass crystal sub-ceramic plate grooving equipment according to claim 6, characterized in that: A limit plate is fixedly connected between one side of the two electric slide rails, and a placement plate is fixedly connected to one side of the limit plate. The top of the placement plate is used to place the next plate to be slotted.

8. The glass crystal sub-ceramic plate grooving equipment according to claim 7, characterized in that: The outer walls of the shafts at both ends of the dual-axis motor are rotatably connected with scrapers, the inner walls of the scrapers are fitted with the outer walls of the cutting wheels, and the outer walls of the scrapers are fixedly connected with a dustproof box.

9. The glass crystal sub-ceramic plate grooving equipment according to claim 8, characterized in that: The dust collection assembly includes two hinged seats, which are respectively fixedly connected to the bottom of the two lower plates. The shafts of the hinged seats are fixedly connected to the debris plates. Collection boxes are provided at the bottom outlets of the two debris plates. The collection boxes are placed on the top of the cutting table. A vibration assembly is provided at the bottom of the debris plate for driving the debris plate to swing up and down.

10. The glass crystal sub-ceramic plate grooving equipment according to claim 9, characterized in that: The vibration assembly includes a pair of squeezing and pushing round blocks, the outer walls of the squeezing and pushing round blocks are respectively fitted with the bottom of the debris plate, the outer walls of the squeezing and pushing round blocks are fixedly connected to a pair of protrusions, one end of the squeezing and pushing round blocks is fixedly connected to a connecting rotating rod, one end of the connecting rotating rod is fixedly connected to gear 2, the outer walls of the connecting rotating rod are rotatably connected to a clamping seat, the clamping seats are fixedly connected to the top of the cutting table, the bottom of the electric slider is fixedly connected to rack plate 2, the teeth of rack plate 2 can mesh with the teeth of gear 2, the two ends of the bottom of the debris plate are fixedly connected to a fixing rope, and the bottom of the fixing rope is fixedly connected to a counterweight block.

Citation Information

Patent Citations

  • Ceramic plate slotting equipment

    CN115625801A