Glass breakage device with broken glass collection device
By setting a broken glass collection hopper with a width greater than the breaking roller track below the glass breaking device, and using a swing plate and gear system to control the direction of glass strip sliding, the problem of glass shards rebounding onto the glass plate surface is solved, thus improving the quality of finished glass.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- HEILONG JIANG JIAXING GLASS SHAREHOLDING CO LTD
- Filing Date
- 2023-11-04
- Publication Date
- 2026-05-26
AI Technical Summary
In existing glass edging devices, when the edged glass collides with the broken glass collection hopper during the edging process, some glass shards bounce back onto the glass plate surface, affecting the quality of the finished glass.
Design a broken glass collection device to match a glass breaking device. By setting a broken glass collection hopper with a width greater than the breaking roller track below the breaking roller track, and using a swing plate and gear system to control the sliding direction of the glass strips so that they directly enter the collection hopper and avoid rebound.
It effectively reduces the rebound of glass shards onto the glass plate surface, improves the quality of finished glass, and is simple and convenient to use.
Smart Images

Figure CN117550793B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of glass processing equipment, and specifically to a broken glass collection device supporting a glass edge-breaking device. Background Art
[0002] In the float glass production process, in the subsequent cold treatment stage, edge-breaking treatment needs to be carried out on the glass, the defective glass on both sides is broken off, and the broken glass such as the cut-off corner materials is collected for remelting and reforming. The existing glass edge-breaking devices generally include an edge-breaking roller path, an edge-breaking device, and a broken glass collection hopper. The edge-breaking device is arranged above the edge-breaking roller path and can move up and down to complete the edge-breaking operation; the edge-breaking roller path is used to convey the glass belt to be edge-broken and, in cooperation with the edge-breaking device, break off the redundant edges of the glass belt; the broken glass collection hopper is arranged below the edge-breaking roller path and is used to collect the edge glass broken out.
[0003] Currently, the Chinese patent with the application number CN202121858138.7 on the market discloses a splash-proof broken glass collection device supporting a glass edge-breaking device, including an edge-breaking roller path, an edge-breaking device, and a broken glass collection hopper. The edge-breaking device is arranged above the edge-breaking roller path and can move up and down to complete the edge-breaking operation. The broken glass collection hopper is arranged below the edge-breaking roller path, and brushes are arranged on the inner side of the top of the broken glass collection hopper and the outer side below the edge-breaking roller path.
[0004] The above-mentioned prior art solves the problem that in actual production, during the impact of the broken edge glass with the broken glass collection hopper, some glass slag will rebound onto the upper surface of the glass plate on the edge-breaking roller path, affecting the quality of the finished glass. Therefore, the applicant has developed another new technical solution in the actual production process to solve the above technical problems. Summary of the Invention
[0005] The purpose of the present invention is to provide a broken glass collection device supporting a glass edge-breaking device, which has the advantage of reducing the rebound of glass slag generated during the edge-breaking process onto the glass plate surface and affecting the quality of the finished glass.
[0006] To solve the above technical problems, the present invention adopts the following technical solutions:
[0007] The present invention provides a broken glass collection device for a glass edge-breaking device, including an edge-breaking roller path and an edge-breaking device. The edge-breaking device is arranged above the edge-breaking roller path and moves up and down to complete the edge-breaking operation. Below the edge-breaking roller path, a broken glass collection hopper corresponding to the edge-breaking device is arranged along the length direction of the edge-breaking roller path. The width of the hopper mouth of the broken glass collection hopper is greater than the width of the edge-breaking roller path. The broken glass collection hopper is erected on the ground through a first bracket. On both sides of the top end of the broken glass collection hopper, fixing plates are arranged along the length direction of the broken glass collection hopper. On one side of the two fixing plates close to each other, U-shaped mounting plates are arranged. A rotating shaft is rotatably connected between the opposite sides of the mounting plate. On both rotating shafts, swing plates are horizontally arranged. At one end of the two swing plates away from the rotating shaft, semi-circular plates contacting the side wall of the edge-breaking roller path are arranged. At this time, the two swing plates are respectively located on both sides of the edge-breaking roller path. One end of the two rotating shafts passes through the mounting plate and gears located on one side of the broken glass collection hopper are arranged. On the broken glass collection hopper, a driving member for driving the two gears to rotate in opposite directions is arranged.
[0008] By adopting the above technical solution, the initial positions of the two swing plates are horizontal. During production, the glass plate is conveyed to the lower part of the edge-breaking device by the edge-breaking roller path. The part of the glass plate to be cut extends outside the edge-breaking roller path. At this time, the part of the glass plate to be cut is on the two swing plates, and there is a gap between the swing plates and the part of the glass plate to be cut. After the glass plate reaches the lower part of the edge-breaking device, the edge-breaking device moves down to break the edge of the glass. The cut glass strips are on the two swing plates. Then, the driving member drives the two rotating shafts to rotate in opposite directions through the two gears respectively, so that the two rotating shafts drive the two swing plates to rotate 90 degrees downward along the rotation axis of the rotating shaft respectively. At this time, the cut glass strips on the swing plates will slide from the swing plates into the broken glass collection hopper. When the cut glass strips fall off the swing plates, the driving member drives the two rotating shafts to rotate in opposite directions through the two gears respectively, so that the two rotating shafts drive the two swing plates to rotate upward along the rotation axis of the rotating shaft to the initial position. At this time, the dropped cut glass strip collides with the broken glass collection hopper. The broken glass rebounding upward will be blocked by the swing plates and will not rebound onto the already cut glass plate, reducing the situation that the glass slag generated during the edge-breaking process rebounds onto the glass plate surface and affecting the quality of the finished glass. It is simple and convenient to use.
[0009] Preferably, baffles are arranged on one side of the top ends of the two swing plates away from the edge-breaking roller path.
[0010] Preferably, the driving component includes a movable plate that is horizontally slidably connected to one side of the outer wall of the broken glass collection hopper. The movable plate is located below two gears, and the top of the movable plate is provided with an inverted L-shaped transmission plate. The top of the movable plate is provided with a first rack located on one side of the transmission plate and meshing with one of the gears. The transmission plate is horizontally provided with a second rack that meshes with the other gear. The second rack is located above the gears. The broken glass collection hopper is provided with a cylinder for pushing the movable plate to move horizontally.
[0011] Preferably, the driving component includes two movable boxes horizontally slidably connected to one side of the outer wall of the broken glass collection hopper. The tops of the two movable boxes are located above the broken glass collection hopper. One end of each of the two rotating shafts is equipped with a gear, which passes through the box wall of the two movable boxes and is located inside the two movable boxes respectively. At this time, the two gears are located inside the two movable boxes respectively. Each of the two fixed plates includes a first support plate and a second support plate. The first support plate is disposed on the broken glass collection hopper, and the side of the first support plate near the edge-breaking roller conveyor is provided with an embedding groove. The second support plate is horizontally slidably connected to the embedding groove, and the second support plate is... One end of the support plate extends outside the embedding groove. The mounting plate extends to the side of the second support plate that extends outside the embedding groove. The bottom ends of the two movable boxes are horizontally slidably connected to slide tables. The top of each slide table is provided with a third rack that meshes with a gear. Push rods are horizontally provided on the sides of the two slide tables that are close to each other. The ends of the two push rods away from the racks pass through the movable boxes and are provided with baffles located outside the movable boxes. Compression springs are provided between the two baffles and the movable boxes. The broken glass collection hopper is provided with a first pusher for simultaneously pushing the two baffles to move horizontally in a direction that moves away from or close to each other.
[0012] Preferably, the first pusher includes a first placement plate disposed on one side of the outer wall of the broken glass collection hopper, and a motor is provided at the top of the first placement plate. One end of the rotating shaft of the motor is vertically provided with a drive arm, and both ends of the drive arm away from the motor are rotatably connected to transmission arms. The ends of the two transmission arms away from the drive arm are respectively hinged to the sides of the two baffles away from the push rod.
[0013] Preferably, the openings of the two movable boxes face upwards, and the top of each of the two movable boxes can be detachably connected to a cover plate for closing the opening of the movable box.
[0014] Preferably, the bottom end of the broken glass collection hopper is provided with a discharge port, and the broken glass collection hopper is provided with a clearing device for clearing the glass inside the broken glass collection hopper.
[0015] Preferably, the unblocking component includes two movable frames that are horizontally slidably connected between opposite sides inside the broken glass collection hopper, and the two movable frames are distributed vertically and staggered left and right. Both movable frames move along the length direction of the broken glass collection hopper. The top of the upper movable frame is vertically provided with several first breaking rods, and the bottom of the lower movable frame is vertically provided with several second breaking rods. The broken glass collection hopper is provided with a second pushing component for simultaneously pushing the two movable frames to slide back and forth inside the broken glass collection hopper.
[0016] Preferably, the second pushing member includes a second placement plate disposed on one side of the outer wall of the broken glass collection hopper, and two sliding rods are horizontally slidably connected to one side of the second placement plate. The two sliding rods are distributed vertically, and the ends of the two sliding rods near the broken glass collection hopper extend through the broken glass collection hopper and are respectively fixedly connected to one side of the two movable frames. A column is horizontally disposed on one side of the second placement plate between the two sliding rods. A transmission rod is rotatably connected to the column. Two sliding grooves are opened along the length direction of the transmission rod on the side away from the second placement plate, and the two sliding grooves are respectively located on the upper and lower sides of the column. A sliding column is horizontally disposed on the side of the two sliding rods away from the second placement plate, and the two sliding columns are respectively located in the two sliding grooves. A motor is disposed on one side of the second placement plate, and one end of the rotating shaft of the motor passes through the second placement plate and is provided with a first swing rod. A second swing rod is rotatably connected to the end of the first swing rod away from the motor. The end of the second swing rod away from the first swing rod is rotatably connected to one of the sliding columns.
[0017] Preferably, a cover is detachably connected to the second placement plate, and the first swing rod, the second swing rod, the column, the transmission rod, and the two sliding columns are all located inside the cover.
[0018] The beneficial effects of this invention are as follows: The initial position of the two swaying plates is horizontal. During production, the glass plate is conveyed to the area below the swaying device by the swaying roller conveyor. The part of the glass plate to be cut extends beyond the swaying roller conveyor. At this time, the part of the glass plate to be cut is located on the two swaying plates, and there is a gap between the swaying plates and the part of the glass plate to be cut. After the glass plate reaches the area below the swaying device, the swaying device moves downward to sway the glass. The cut glass strip is located on the two swaying plates. Then, through a drive component, two gears drive two rotating shafts to rotate in opposite directions, causing the two rotating shafts to drive the two swaying plates to rotate downwards by 90 degrees along the rotation axis of the shafts. At this time, the glass plate is located on the two swaying plates. The glass strips cut from the shearing plate slide down into the broken glass collection hopper. After the cut glass strips fall from the shearing plate, the drive mechanism drives two rotating shafts to rotate in opposite directions via two gears. This causes the two rotating shafts to drive the two shearing plates to rotate upwards along the axis of rotation to their initial positions. At this point, the fallen cut glass strips collide with the broken glass collection hopper. The upward-rebounding broken glass is obstructed by the shearing plates and will not bounce back onto the already cut glass plate. This reduces the occurrence of glass shards generated during the edge-breaking process bouncing back onto the glass plate surface, thus affecting the quality of the finished glass. It is simple and convenient to use. Attached Figure Description
[0019] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0020] Figure 1 This is a schematic diagram of the structure of this embodiment;
[0021] Figure 2 This is a schematic diagram illustrating the structure of the swing plate in this embodiment;
[0022] Figure 3 This is a schematic diagram illustrating the structure of the slide bar in this embodiment;
[0023] Figure 4 This is a structural schematic diagram illustrating the second placement plate in this embodiment;
[0024] Figure 5 This is a schematic diagram of the structure after the pendulum plate rotates downwards by 90 degrees along the axis of rotation.
[0025] Figure 6 This is a schematic diagram illustrating the structure of the movable box in this embodiment;
[0026] Figure 7 This is a schematic diagram illustrating the structure of the transmission arm in this embodiment;
[0027] Figure 8 It is a schematic structural diagram for embodying the semi-circular plate in this embodiment;
[0028] Figure 9 It is a schematic structural diagram after the swing plate rotates 90 degrees downward along the rotation axis of the rotating shaft when the second support plate abuts against the bottom of the embedding groove.
[0029] Explanation of reference numerals:
[0030] In the figure: 1, edge-breaking roller path; 2, edge-breaking device; 3, broken glass collection hopper; 4, column; 5, first bracket; 6, second bracket; 7, fixed plate; 8, mounting plate; 9, rotating shaft; 10, swing plate; 12, semi-circular plate; 13, gear; 14, baffle; 15, moving plate; 16, drive plate; 17, first rack; 18, second rack; 19, cylinder; 20, moving box; 21, first support plate; 22, second support plate; 23, embedding groove; 24, third rack; 25, push rod; 26, retaining disc; 27, compression spring; 28, first placement plate; 29, motor; 30, drive arm; 31, drive arm; 32, cover plate; 33, discharge port; 34, moving frame; 35, first crushing rod; 36, second crushing rod; 37, second placement plate; 38, sliding rod; 39, cylinder body; 40, drive rod; 41, chute; 42, sliding column; 43, electric motor; 44, first swing rod; 45, second swing rod; 46, housing; 47, conveyor belt. Detailed implementation manners
[0031] 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.
[0032] A broken glass collection device supporting a glass edge-breaking device, including an edge-breaking roller path 1 and an edge-breaking device 2. The edge-breaking device 2 is arranged above the edge-breaking roller path 1 and moves up and down to complete the edge-breaking operation, as Figure 1 and Figure 2Below the edge-breaking roller conveyor 1, along its length, is a broken glass collection hopper 3 corresponding to the edge-breaking device 2. The opening width of the broken glass collection hopper 3 is greater than the width of the edge-breaking roller conveyor 1. The edge-breaking roller conveyor 1 is supported on the ground by columns 4, the broken glass collection hopper 3 is supported on the ground by a first support 5, and the edge-breaking device 2 is supported on the ground by a second support 6. Fixing plates 7 are provided on both sides of the top of the broken glass collection hopper 3 along its length. U-shaped... Mounting plate 8, with rotating shafts 9 rotatably connected between opposite sides of mounting plate 8. Two swing plates 10 are horizontally mounted on each of the two swing plates 9. The ends of the two swing plates 10 away from the rotating shafts 9 are provided with semi-circular plates 12 that contact the lower side wall of the edge-breaking roller conveyor 1. At this time, the two swing plates 10 are located on both sides of the edge-breaking roller conveyor 1. One end of each of the two rotating shafts 9 passes through mounting plate 8 and is provided with gears 13 located on one side of the broken glass collection hopper 3. The broken glass collection hopper 3 is provided with a drive component for driving the two gears 13 to rotate in opposite directions.
[0033] like Figure 1 and Figure 2 The initial position of the two swing plates 10 is horizontal. During production, the glass plate is conveyed to the area below the edging device 2 by the edging roller 1. The part of the glass plate to be cut extends outward from the edging roller 1. At this time, the part of the glass plate to be cut is located on the two swing plates 10, and there is a gap between the swing plates 10 and the part of the glass plate to be cut. After the glass plate reaches the area below the edging device 2, the edging device 2 moves down to edge the glass. The cut glass strip is located on the two swing plates 10. Then, through the driving component, the two gears 13 drive the two rotating shafts 9 to rotate in opposite directions, so that the two rotating shafts 9 drive the two swing plates 10 to rotate downward 90 degrees along the rotation axis of the rotating shafts 9 (e.g., Figure 5 At this time, the glass strips cut from the swing plate 10 will slide from the swing plate 10 into the broken glass collection hopper 3. After the cut glass strips fall from the swing plate 10, the drive component drives the two rotating shafts 9 to rotate in opposite directions through the two gears 13. This causes the two rotating shafts 9 to drive the two swing plates 10 to rotate upward along the rotation axis of the rotating shafts 9 to the initial position. At this time, the fallen cut glass strips collide with the broken glass collection hopper 3. The broken glass that bounces upward will be hindered by the swing plate 10 and will not bounce back onto the already cut glass plate. This reduces the occurrence of glass shards generated during the edge-breaking process bouncing back onto the glass plate surface and affecting the quality of the finished glass. It is simple and convenient to use.
[0034] like Figure 1 and Figure 2Two baffles 14 are provided at the top of the two swing plates 10 and on the side away from the edge-breaking roller 1. The purpose of this arrangement is that when the rotating shaft 9 drives the swing plates 10 to rotate along the rotation axis of the rotating shaft 9, the swing plates 10 will drive the baffles 14 to rotate along the rotation axis of the rotating shaft 9. During the process of the swing plates 10 rotating downward 90 degrees along the rotation axis of the rotating shaft 9, the baffles 14 gradually approach the edge-breaking roller 1. At this time, when there are multiple glass strips on the swing plates 10, some glass strips slide off the swing plates 10 and first collide with the broken glass collection hopper 3. When the broken glass that bounces upward splashes out from between the inclined swing plates 10 and the edge-breaking roller 1, the baffles 14 will block the broken glass that splashes out from between the inclined swing plates 10 and the edge-breaking roller 1. When the swing plates 10 rotate downward 90 degrees along the rotation axis of the rotating shaft 9, the baffles 14 on the swing plates 10 will rotate to the horizontal, and at this time the baffles 14 will contact one side of the edge-breaking roller 1 (e.g., Figure 5 It is simple and convenient to use.
[0035] like Figure 3 and Figure 4 The driving component includes a movable plate 15 that is horizontally slidably connected to one side of the outer wall of the broken glass collection hopper 3. The movable plate 15 is located below two gears 13, and the top of the movable plate 15 is provided with an inverted L-shaped transmission plate 16. The top of the movable plate 15 is provided with a first rack 17 located on one side of the transmission plate 16 and meshing with one of the gears 13. The first rack 17 is located below the gear 13. The transmission plate 16 is horizontally provided with a second rack 18 that meshes with the other gear 13. The second rack 18 is located above the gear 13. The broken glass collection hopper 3 is provided with a cylinder 19 for pushing the movable plate 15 to move horizontally.
[0036] like Figure 3 and Figure 4 When it is necessary to drive the two rotating shafts 9 to rotate in opposite directions through the two gears 13 respectively, simply open the cylinder 19. At this time, the piston rod of the cylinder 19 will push the moving plate 15 to move horizontally. The transmission plate 16, the first rack 17, and the second rack 18 will then follow the moving plate 15 to move horizontally. Since one of the gears 13 on the first rack 17 on the moving plate 15 is meshed and located below it, and the second rack 18 on the transmission plate 16 is meshed with the other gear 13 and located above it, when the piston rod of the cylinder 19 pushes the moving plate 15 to move horizontally, the first rack 17 and one of the gears 13, as well as the second gear 13 and the other gear 13, will drive the two rotating shafts 9 to rotate in opposite directions respectively. This is simple and convenient to use.
[0037] like Figure 6 and Figure 7 and Figure 8Alternatively, the driving components include two movable boxes 20 horizontally slidably connected to one side of the outer wall of the broken glass collection hopper 3. The tops of the two movable boxes 20 are located above the broken glass collection hopper 3. Two rotating shafts 9 have one end of gear 13 passing through the box walls of the two movable boxes 20 respectively and located inside the two movable boxes 20. At this time, the two gears 13 are located inside the two movable boxes 20 respectively. Both fixed plates 7 include a first support plate 21 and a second support plate 22. The first support plate 21 is set on the broken glass collection hopper 3, and the side of the first support plate 21 near the edge-breaking roller 1 is provided with an embedding groove 23. The second support plate 22 is horizontally slidably connected in the embedding groove 23, and the second support plate 22... One end of the mounting plate 8 extends to the outside of the embedding groove 23. The mounting plate 8 extends to the side of the second support plate 22 that extends to the outside of the embedding groove 23. The bottom ends of the two movable boxes 20 are horizontally slidably connected to the slide table 48. The top of the two slide tables 48 is provided with a third rack 24 that meshes with the gear 13. The sides of the two slide tables 48 that are close to each other are horizontally provided with push rods 25. The ends of the two push rods 25 that are away from the racks pass through the movable box 20 and are provided with baffles 26 located outside the movable box 20. Compression springs 27 are provided between the two baffles 26 and the movable box 20. The broken glass collection hopper 3 is provided with a first pusher for simultaneously pushing the two baffles 26 to move horizontally in a direction away from or close to each other.
[0038] like Figure 6 and Figure 7 and Figure 8One end of the slide table 48 contacts the side of the movable box 20 near the baffle 26. This is the initial position of the slide table 48. When it is necessary to drive the two rotating shafts 9 to rotate in opposite directions through the two gears 13, it is only necessary to push the two baffles 26 horizontally in a direction away from each other through the first pusher. At this time, the two baffles 26 will drive the two movable boxes 20 to move in a direction away from each other through the compression spring 27. Since one end of the rotating shaft 9 with the gear 13 passes through the box wall of the movable box 20 and is located inside the movable box 20, and the mounting plate 8 is set on the second support plate 22, the second support plate 22 is horizontally slidably connected to the embedding groove 23 on the first support plate 21, so when the two movable boxes 20 move in a direction away from each other, the movable box 20 will drive the swing plate 10 and the mounting plate 8 to move away from the edge-trimming roller 1 through the rotating shaft 9. The second support plate 22 will gradually slide into the embedding groove 23. After the support plate 22 abuts against the bottom of the embedded groove 23, the first pusher continues to push the two baffles 26 to move horizontally away from each other. At this time, because the second support plate 22 abuts against the bottom of the embedded groove 23, the moving box 20 will stop moving. At this time, the two baffles 26 will push the two slides 48 to slide away from the compression spring 27 through the two push rods 25 respectively. The compression spring 27 is compressed. At this time, because the third racks 24 on the two slides 48 are located below the two gears 13 respectively, when the two slides 48 slide away from the baffles 26 in the moving box 20, the two third racks 24 will drive the two rotating shafts 9 to rotate in opposite directions through the gears 13 meshing with them. At this time, the swing plates 10 on the two rotating shafts 9 will rotate downward along the rotation axis of the rotating shafts 9. When the swing plates 10 rotate downward by 90 degrees, the baffle 14 is horizontal, and one side of the baffle 14 contacts the edge-breaking roller 1 (e.g. Figure 9 Through the above process, when the swing plate 10 rotates downward, the swing plate 10 first moves away from the edge-breaking roller 1 and then rotates downward. At this time, it is convenient for the glass strip on the swing plate 10 to slide off the swing plate 10, reducing the occurrence of the glass strip on the swing plate 10 colliding with the side wall of the edge-breaking roller 1 during the downward rotation of the swing plate 10, causing the glass strip to break and the broken glass shards to splash onto the already cut glass plate.
[0039] When the swing plate 10 rotates downwards by 90 degrees, the first pusher simultaneously pushes the two baffles 26 to move horizontally towards each other. Because the compression spring 27 is compressed, the moving box 20 will remain stationary. At this time, the push rod 25 drives the slide table 48 to slide towards the compression spring 27, causing the swing plate 10 to rotate upwards along the rotation axis of the rotating shaft 9 until the swing plate 10 rotates to the horizontal. The slide table 48 moves back to the initial position, and the baffle 14 becomes vertical. Then, the first pusher continues to simultaneously push the two baffles 26 to move horizontally towards each other. At this time, because the slide table 48 is in the initial position, it is in contact with the side of the moving box 20 near the baffle 26. Therefore, the slide table 48 can drive the moving box 20 to slide towards the edge-trimming roller 1. At this time, the second support plate 22 will gradually slide out of the embedded groove 23 until the semi-circular plate 12 on the swing plate 10 contacts the edge-trimming roller 1. It is simple and convenient to use.
[0040] like Figure 6 and Figure 7 The first pushing component includes a first placement plate 28 disposed on one side of the outer wall of the broken glass collection hopper 3, and a motor 29 is provided at the top of the first placement plate 28. A drive arm 30 is vertically provided at one end of the rotating shaft of the motor 29, and both ends of the drive arm 30 away from the motor 29 are rotatably connected to transmission arms 31. The ends of the two transmission arms 31 away from the drive arm 30 are respectively hinged to the sides of the two baffles 26 away from the push rod 25.
[0041] like Figure 6 and Figure 7 When it is necessary to simultaneously push the two baffles 26 to move horizontally in a direction away from or close to each other, simply turn on the motor 29. At this time, the rotating shaft of the motor 29 will drive the drive arm 30 to rotate. Since both transmission arms 31 are rotatably connected to the drive arm 30, and the ends of the two transmission arms 31 away from the drive arm 30 are respectively hinged to the side of the two baffles 26 away from the push rod 25, when the rotating shaft of the motor 29 drives the drive arm 30 to rotate, through the cooperation of the drive arm 30, the two transmission arms 31 and the two baffles 26, the two baffles 26 can be simultaneously pushed to move horizontally in a direction away from or close to each other. The motor 29 can be a servo motor, and the rotation angle of the drive arm 30 is 90 degrees. When the swing plate 10 rotates downward by 90 degrees, the drive arm 30 is horizontal. When the swing plate 10 is horizontal, the drive arm 30 is vertical. It is simple and convenient to use.
[0042] like Figure 6 and Figure 7 The openings of the two movable boxes 20 face upwards, and the top of each movable box 20 is detachably connected to a cover plate 32 for sealing the opening of the movable box 20. The purpose of this setting is to reduce the occurrence of external impurities falling into the movable box 20 and affecting the engagement of the third rack 24 and the gear 13 through the cover plate 32.
[0043] like Figure 1 and Figure 2 The bottom of the broken glass collection hopper 3 is provided with a discharge port 33. The broken glass collection hopper 3 is provided with a clearing device for clearing the glass in the broken glass collection hopper 3. The purpose of this setting is to discharge the broken glass collected in the broken glass collection hopper 3 through the discharge port 33. At this time, the first support 5 is provided with a conveyor belt 47 for receiving and conveying the broken glass discharged from the discharge port 33. The conveyor belt 47 is used to transport the broken glass to the furnace for recycling. The clearing device can reduce the occurrence of glass blockage in the broken glass collection hopper 3 and the inability to be discharged from the discharge port 33. It is simple and convenient to use.
[0044] The conveyor belt 47 is an existing structure, and will not be described in detail here.
[0045] like Figure 2 and Figure 4 The unblocking component includes two movable frames 34 that are horizontally slidably connected between opposite sides inside the broken glass collection hopper 3. The two movable frames 34 are distributed vertically and staggered left and right. Both movable frames 34 move along the length of the broken glass collection hopper 3. The top of the upper movable frame 34 is vertically provided with several first crushing rods 35, and the bottom of the lower movable frame 34 is vertically provided with several second crushing rods 36. The bottom of the second crushing rods 36 extends from the discharge port 33 to the outside of the broken glass collection hopper 3. The broken glass collection hopper 3 is provided with a second pushing component for simultaneously pushing the two movable frames 34 to slide back and forth inside the broken glass collection hopper 3.
[0046] like Figure 2 and Figure 4 The second pusher simultaneously pushes the two moving frames 34 to slide back and forth in the broken glass collection hopper 3. At this time, the first crushing rod 35 on the upper moving frame 34 and the second crushing rod 36 on the lower moving frame 34 can crush the glass in the broken glass collection hopper 3. This can reduce the situation where the glass in the broken glass collection hopper 3 gets stuck in the broken glass collection hopper 3 and cannot be discharged from the discharge port 33. When the swing plate 10 rotates down 90 degrees, the second pusher can stop working. It is simple and convenient to use.
[0047] like Figure 3 and Figure 4The second pushing component includes a second placement plate 37 disposed on one side of the outer wall of the broken glass collection hopper 3. Two sliding rods 38 are horizontally slidably connected to one side of the second placement plate 37. The two sliding rods 38 are vertically distributed, and the ends of the two sliding rods 38 near the broken glass collection hopper 3 extend through the broken glass collection hopper 3 and are respectively fixedly connected to one side of the two movable frames 34. A column 39 is horizontally disposed on one side of the second placement plate 37 between the two sliding rods 38. A transmission rod 40 is rotatably connected to the column 39. Two grooves 41 are formed along the length of the transmission rod 40 on the side of the transmission rod 40 away from the second placement plate 37. The two grooves 41 are located on the upper and lower sides of the column 39, respectively. The two sliding rods 38 are rotatably connected to the column 39. A sliding column 42 is horizontally provided on one side away from the second placement plate 37, and the two sliding columns 42 are respectively located in two sliding grooves 41. A motor 43 is provided on one side of the second placement plate 37, and one end of the rotating shaft of the motor 43 passes through the second placement plate 37 and is provided with a first swing rod 44. The end of the first swing rod 44 away from the motor 43 is rotatably connected to a second swing rod 45. The end of the second swing rod 45 away from the first swing rod 44 is rotatably connected to one of the sliding columns 42. At this time, the second swing rod 45 is located on the side of the transmission rod 40 away from the second placement plate 37. A cover (not shown in the figure) is detachably connected to the second placement plate 37. The first swing rod 44, the second swing rod 45, the column 39, the transmission rod 40, and the two sliding columns 42 are all located inside the cover.
[0048] like Figure 3 and Figure 4 When it is necessary to simultaneously push the two moving frames 34 to slide back and forth within the broken glass collection hopper 3, simply turn on the motor 43. The rotating shaft of the motor 43 will then drive the first swing arm 44 to rotate. Since the second swing arm 45 is rotatably connected to the first swing arm 44, and the end of the second swing arm 45 away from the first swing arm 44 is rotatably connected to the side of one of the sliding pillars 42 opposite to the sliding rod 38, when the rotating shaft of the motor 43 drives the first swing arm 44 to rotate, the cooperation between the first swing arm 44, the second swing arm 45, and one of the sliding pillars 42 will drive one of the sliding rods 38 to slide horizontally back and forth on the second placement plate 37. At this time, because the pillar 39 is set on the two sliding pillars 37... Between the rods 38, the transmission rod 40 is rotatably connected to the column 39. The sliding pins 42 on the two sliding rods 38 are respectively located in the two sliding grooves 41 on the transmission rod 40. So when one of the sliding rods 38 slides horizontally back and forth on the second placement plate 37, through the cooperation of the sliding pins 42 on the two sliding rods 38 with the two sliding grooves 41 on the transmission rod 40 and the cooperation of the transmission rod 40 with the column 39, the other sliding rod 38 can be driven to slide horizontally back and forth on the second placement plate 37. At this time, the two sliding rods 38 will push the two moving frames 34 to slide back and forth in the broken glass collection hopper 3 respectively. At this time, the two sliding pins 42 slide in the two sliding grooves 41 respectively, and the opposite sides of the sliding pins 42 are in contact with the groove wall of the sliding groove 41.
[0049] The cover reduces the entry of external impurities into the groove 41 on the transmission rod 40, thus preventing the slide column 42 from sliding within the groove 41. At the same time, the cover improves safety during use.
[0050] Obviously, those skilled in the art can make various modifications and variations to this invention without departing from its spirit and scope. Therefore, if these modifications and variations fall within the scope of the claims of this invention and their equivalents, this invention also intends to include these modifications and variations.
Claims
1. A broken glass collection device for a glass edge-breaking device, comprising an edge-breaking roller path (1) and an edge-breaking device (2), wherein the edge-breaking device (2) is arranged above the edge-breaking roller path (1) and moves up and down to complete the edge-breaking operation, and is characterized in that, Below the edge-breaking roller conveyor (1), along the length of the edge-breaking roller conveyor (1), there is a broken glass collection hopper (3) corresponding to the edge-breaking device (2). The width of the opening of the broken glass collection hopper (3) is greater than the width of the edge-breaking roller conveyor (1). The broken glass collection hopper (3) is supported on the ground by a first bracket (5). On both sides of the top of the broken glass collection hopper (3), there are fixing plates (7) along the length of the broken glass collection hopper (3). On the side of the two fixing plates (7) that are close to each other, there are U-shaped mounting plates (8). And between the opposite sides of the mounting plates (8) Rotary connection with rotating shaft (9), both rotating shaft (9) are horizontally provided with swing plates (10), and the ends of the two swing plates (10) away from the rotating shaft (9) are provided with semi-circular plates (12) that contact the side wall of the edge-breaking roller table (1). At this time, the two swing plates (10) are located on both sides of the edge-breaking roller table (1). One end of the two rotating shafts (9) passes through the mounting plate (8) and is provided with a gear (13) located on one side of the broken glass collection hopper (3). The broken glass collection hopper (3) is provided with a driving member for driving the two gears (13) to rotate in opposite directions. The driving component includes two movable boxes (20) that are horizontally slidably connected to one side of the outer wall of the broken glass collection hopper (3). The tops of the two movable boxes (20) are located above the broken glass collection hopper (3). One end of each of the two rotating shafts (9) with a gear (13) passes through the box wall of the two movable boxes (20) and is located inside the two movable boxes (20). At this time, the two gears (13) are located inside the two movable boxes (20). Each of the two fixed plates (7) includes a first support plate (21) and a second support plate (22). The first support plate (21) is set on the broken glass collection hopper (3), and the side of the first support plate (21) near the edge-breaking roller (1) is provided with an embedding groove (23). The second support plate (22) is horizontally slidably connected in the embedding groove (23), and the second support plate (22) is horizontally slidably connected in the embedding groove (23). One end extends to the outside of the embedding groove (23). The mounting plate (8) extends to the side of the second support plate (22) outside the embedding groove (23). The bottom ends of the two movable boxes (20) are horizontally connected to the slide table (48). The top of the two slide tables (48) is provided with a third rack (24) that meshes with the gear (13). The sides of the two slide tables (48) that are close to each other are provided with push rods (25). The ends of the two push rods (25) that are away from the rack pass through the movable box (20) and are provided with baffles (26) located outside the movable box (20). Compression springs (27) are provided between the two baffles (26) and the movable box (20). The broken glass collection hopper (3) is provided with a first pusher for simultaneously pushing the two baffles (26) to move horizontally in a direction away from or close to each other. A baffle (14) is provided on the top of the two swing plates (10) and on the side away from the edge-breaking roller (1).
2. The broken glass collection device supporting the glass edge-breaking device according to claim 1, wherein The first pusher includes a first placement plate (28) disposed on one side of the outer wall of the broken glass collection hopper (3), and a motor (29) is provided at the top of the first placement plate (28). A drive arm (30) is vertically provided at one end of the rotating shaft of the motor (29), and both ends of the drive arm (30) away from the motor (29) are rotatably connected to transmission arms (31). The ends of the two transmission arms (31) away from the drive arm (30) are respectively hinged to the side of the two baffles (26) away from the push rod (25).
3. The broken glass collection device supporting the glass edge breaking device according to claim 2, characterized in that, The openings of the two movable boxes (20) face upwards, and the top of each of the two movable boxes (20) is detachably connected to a cover plate (32) for closing the opening of the movable box (20).
4. The broken glass collection device supporting the glass edge breaking device according to claim 1, characterized in that The bottom end of the broken glass collection hopper (3) is provided with a discharge port (33), and the broken glass collection hopper (3) is provided with a clearing device for clearing the glass in the broken glass collection hopper (3).
5. The broken glass collection device supporting the glass edge breaking device according to claim 4, characterized in that The unblocking component includes two movable frames (34) that are horizontally slidably connected between opposite sides inside the broken glass collection hopper (3). The two movable frames (34) are distributed vertically and staggered left and right. Both movable frames (34) move along the length direction of the broken glass collection hopper (3). The top of the upper movable frame (34) is vertically provided with several first breaking rods (35), and the bottom of the lower movable frame (34) is vertically provided with several second breaking rods (36). The broken glass collection hopper (3) is provided with a second pushing component for simultaneously pushing the two movable frames (34) to slide back and forth inside the broken glass collection hopper (3).
6. The broken glass collecting device supporting the glass edge breaking device according to claim 5, wherein The second pushing component includes a second placement plate (37) disposed on one side of the outer wall of the broken glass collection hopper (3), and two sliding rods (38) are horizontally slidably connected to one side of the second placement plate (37). The two sliding rods (38) are distributed vertically, and the ends of the two sliding rods (38) near the broken glass collection hopper (3) both pass through the broken glass collection hopper (3) and extend into the broken glass collection hopper (3) and are respectively fixedly connected to one side of the two moving frames (34). A column (39) is horizontally disposed on one side of the second placement plate (37) between the two sliding rods (38). A transmission rod (40) is rotatably connected to the column (39). The transmission rod (40) is located on the side away from the second placement plate (37) along the transmission rod (4). Two grooves (41) are opened along the length direction of the column (39), and the two grooves (41) are located on the upper and lower sides of the column (39) respectively. The two sliding rods (38) are horizontally provided with sliding columns (42) on the side away from the second placement plate (37), and the two sliding columns (42) are located in the two grooves (41) respectively. A motor (43) is provided on one side of the second placement plate (37), and one end of the rotating shaft of the motor (43) passes through the second placement plate (37) and is provided with a first swing rod (44). The end of the first swing rod (44) away from the motor (43) is rotatably connected to a second swing rod (45), and the end of the second swing rod (45) away from the first swing rod (44) is rotatably connected to one of the sliding columns (42).
7. The broken glass collecting device supporting the glass edge-breaking device according to claim 6, wherein The second placement plate (37) is detachably connected to a cover, and the first swing rod (44), the second swing rod (45), the column (39), the transmission rod (40), and the two sliding columns (42) are all located inside the cover.