A waste glass recycling box for substrate glass processing

By designing a waste glass recycling bin with a support platform and locking components, the problem of waste glass being poured out with water was solved, achieving stable collection and efficient transfer of waste glass and improving recycling efficiency.

CN119176427BActive Publication Date: 2025-10-28RAINBOW (HEFEI) LIQUID CRYSTAL GLASS CO LTD
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Patent Information

Application Number
CN202411203228.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-08-29
Publication Date
2025-10-28
Estimated Expiration
2044-08-29

AI Technical Summary

Technical Problem

Existing waste glass recycling bins suffer from problems such as waste glass being poured out along with water during the transfer process, resulting in low recycling efficiency, and are difficult to collect and transfer stably.

Method used

A waste glass recycling bin is designed, comprising a support platform, a receiving mechanism, a transfer component, and a locking component. The cover is unlocked by moving the locking component, moisture is filtered out by the inclined filter plate, and the waste glass is tilted and discharged by pushing the push component with a forklift.

Benefits of technology

It improves the recycling efficiency and stability of waste glass, ensures the separation of waste glass from moisture, and enables a convenient collection and transfer process.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention provides a waste glass recycling bin for substrate glass processing, including a support platform. A receiving mechanism is mounted on the top surface of the support platform. First side plates are fixed to both sides of the top surface of the support platform, a back plate is fixed to the rear wall of the support platform, and a discharge plate is fixed to the side of the support platform away from the back plate. A transfer assembly is connected to one side of the support platform, and a wastewater tank is connected to the bottom surface of the support platform. The receiving mechanism moves horizontally on the support platform to discharge the collected waste glass into the transfer assembly. This invention uses a locking assembly on the recycling bin that unlocks via horizontal movement to lock the cover, ensuring the stability of waste glass collection and storage. An inward-pushing assembly pushes the locking assembly to horizontally unlock the cover, simultaneously pushing the inclined filter plate, thus discharging the waste glass inside the recycling bin onto the transfer assembly for further transport and recycling. The recycling bin provides stable waste glass recycling and a convenient unlocking and opening method, improving the recycling efficiency of waste glass.
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Description

Technical Field

[0001] This invention relates to the field of substrate glass processing equipment technology, and specifically to a waste glass recycling bin for substrate glass processing. Background Technology

[0002] Substrate glass is one of the key materials for flat panel display devices such as liquid crystal displays (LCDs) and organic light-emitting diodes (OLEDs). It possesses high light transmittance, good thermal and chemical stability, and precise dimensional control, meeting the requirements of high-precision electronic displays. The manufacturing process of substrate glass is very complex, mainly including raw material preparation, melting, shaping, and annealing. During the continuous production of substrate glass, a large amount of waste glass is generated in processes such as cross-cutting, longitudinal cutting, precision cutting, and furnace cold repair. Modern manufacturing plants typically recycle and reuse this waste glass, crushing it and feeding it back into the furnace as raw material to reduce resource waste and environmental pollution. However, this requires the waste glass to be relatively pure in composition and compatible with the original production process; otherwise, it may affect the quality and performance of new products.

[0003] Currently, waste glass generated on various production lines is collected using recycling bins. These bins are made with high-strength and wear-resistant materials. To ensure the purity of the waste glass, a washing process is added during collection to remove residual water. Because the collected waste glass is heavy, forklifts are needed to move the recycling bins. When moving them to the conveyor processing position, the forklifts are used to tilt the recycling bins and dump the waste glass out. This type of recycling bin presents the following problems when transferring and recycling waste glass:

[0004] 1. Cleaning waste glass inside the recycling bin is very inconvenient. A forklift needs to be used to tilt the recycling bin to pour out the residual water, which can easily cause the waste glass to be poured out along with the water.

[0005] 2. It is difficult to control the tilt of the recycling bin with a forklift to completely empty the waste glass. The recycling bin needs to be removed manually and turned upside down to empty it completely, which greatly reduces the recycling efficiency of waste glass.

[0006] In summary, there is a need for a recycling bin that can efficiently recycle and process waste glass. Summary of the Invention

[0007] To address the shortcomings of existing technologies, this invention provides a waste glass recycling bin for substrate glass processing, which solves the problems mentioned in the background art.

[0008] To achieve the above objectives, the present invention is implemented through the following technical solutions:

[0009] A waste glass recycling bin for substrate glass processing includes a support platform, a receiving mechanism on the top surface of the support platform, first side plates fixed on both sides of the top surface of the support platform, a back plate fixed on the rear wall of the support platform, a feeding plate fixed on the side of the support platform away from the back plate, a transfer assembly connected to one side of the support platform, and a wastewater tank connected to the bottom surface of the support platform. The receiving mechanism moves horizontally on the support platform to discharge the collected waste glass into the transfer assembly.

[0010] The receiving mechanism includes a recycling bin, an inclined filter plate, a hinge, a cover plate, a locking assembly, and an inward pushing assembly. Two handles are fixed to the top surface of the recycling bin. The front wall of the recycling bin has an open structure, and a cover plate is connected to the front wall of the recycling bin via a hinge. Locking assemblies are provided on the side walls of the recycling bin. Two sets of locking assemblies are mirror images of the vertical center line of the recycling bin, and an inward pushing assembly connects the two sets of locking assemblies. One side of the inward pushing assembly is fitted against the back plate, and the other side is inserted into the inside of the recycling bin. The two sets of locking assemblies slide horizontally on the recycling bin to engage and lock the cover plate, thus sealing the open structure of the recycling bin. An inclined filter plate is provided inside the recycling bin, and one side of the inward pushing assembly is fitted against the inclined filter plate. Multiple filter holes are opened on the bottom surface of the recycling bin.

[0011] Furthermore, the locking assembly includes a push rod, a first fixed plate, push blocks, a flipping component, and a locking component. One side of the push rod is connected to an inner push component, and the other side of the push rod is connected to the first fixed plate. Two push blocks are fixed on the side of the first fixed plate away from the push rod. A flipping component is slidably arranged between the two push blocks. A locking component is rotatably connected between the two push blocks. The locking component is flipped by the flipping component. Two limiting blocks are fixed on the side wall of the recycling bin to stop the flipping component from sliding between the two push blocks. A limiting plate is fixed on the side wall of the recycling bin, and the push rod is inserted into the limiting plate.

[0012] Furthermore, the flipping component includes a push plate, a slider, and a second spring. Two push plates are fixed to the side wall of the slider. The push plates have an L-shaped structure. The push plates and the limiting block are located on the same horizontal center line. The inner wall of the push plate is provided with a toothed groove. One side of the locking component is engaged with the toothed groove. One side of the slider is connected to the first fixed plate with a second spring. The inside of the push block is provided with a sliding groove. The top of the push block is slidably connected to the inside of the sliding groove.

[0013] Furthermore, the locking component includes a locking block, gears, and a rotating shaft. The rotating shaft is connected through the inside of the locking block, and a gear is sleeved on the outer wall of the rotating shaft. Two gears are mirrored about the horizontal center line of the locking block. The two ends of the rotating shaft are rotatably connected to the inside of two push blocks, and one side of the gear is meshed with the inside of the tooth groove. A locking hole is opened inside the locking block, and a hook is fixed on the outer wall of the cover plate. The hook has an L-shaped structure and two hooks are mirrored about the vertical center line of the cover plate. The locking block is flipped so that the hooks are engaged inside the locking hole.

[0014] Furthermore, the push assembly includes a connecting plate, a second fixed plate, an insert plate, and rollers. The connecting plate is connected between two push rods. The second fixed plate is fixed to the top surface of the connecting plate. The insert plate is fixed to the side wall of the second fixed plate. The insert plate is inserted into the inside of the recycling bin. The side of the insert plate away from the second fixed plate is rotatably connected to the rollers. The inclined filter plate has a two-section bending structure. The inclined filter plate includes an inclined plate and a horizontal plate. The angle between the inclined plate and the horizontal plate is an obtuse angle. The side of the horizontal plate near the cover plate is rotatably connected to the inside of the recycling bin. The insert plate is inserted into the inside of the recycling bin so that the rollers are in contact with and push the inclined plate to flip. A side support plate is fixed to the inner wall of the recycling bin. The side support plate is in contact with the bottom surface of the side of the horizontal plate of the inclined filter plate.

[0015] Furthermore, an inclined bracket is fixed to the top surface of the horizontal plate of the inclined filter plate, and a dome block is fixed to the side of the inclined bracket away from the horizontal plate. One side of the dome block is fitted against the inner wall of the cover plate.

[0016] Furthermore, the receiving mechanism also includes a receiving component, which is inclinedly disposed inside the recycling bin and disposed on the top of the horizontal plate of the inclined filter plate. The inclined direction of the receiving component is perpendicular to the inclined direction of the inclined plate.

[0017] Furthermore, the receiving assembly includes a receiving plate, protrusions, a support block, a first spring, guide rods, and a stop block. The receiving plate is inclinedly disposed inside the recycling bin. Multiple protrusions are fixed on the top surface of the receiving plate. Four guide rods are inserted into the receiving plate in a rectangular arrangement. A stop block is fixed at the top of the guide rod, and a support block is fixed at the bottom of the guide rod. The support block is fixed to the inner wall of the recycling bin. A first spring is sleeved on the outer wall of the guide rod, and the first spring is connected between the bottom surface of the receiving plate and the top surface of the support block.

[0018] Furthermore, an inclined guide plate is fixed on the top surface of the support platform, and a surrounding plate is fixed on both sides of the inclined guide plate. One side of the surrounding plate is fixedly connected to the side wall of the back plate. The inclined guide plate, the back plate, and the two surrounding plates surround each other to form an internal inclined water receiving trough structure. The top of the wastewater tank is connected to the inside of the water receiving trough through a water pipe. A groove is opened on the bottom surface of the recycling tank, and the two surrounding plates are respectively attached to the two inner walls of the groove.

[0019] Furthermore, the transfer assembly includes a conveyor belt, a second side plate, a fixing block, a fixing column, a support plate, a support block, a crash plate, and a hot air blower. The second side plates are fixed on both sides of the conveyor belt, and a support plate is fixed between the two second side plates. A support block is fixed on the top surface of the support plate, and the width of the support block is equal to the width of the groove. Two crash plates are fixed on the top surface of the support plate, and a hot air blower is arranged between the two crash plates. The air outlet at the bottom of the hot air blower passes through the bottom of the support plate. A fixing block is fixed on one side of the conveyor belt, and a fixing column is connected to the side wall of the fixing block. One end of the fixing column is connected to the bottom side wall of the support platform.

[0020] This invention provides a waste glass recycling bin for substrate glass processing. Compared with the prior art, it has the following advantages:

[0021] 1. By setting a locking assembly on the recycling bin to unlock the cover through translation, the stability of waste glass collection and storage is ensured. After the waste glass is collected and transferred, a forklift is inserted into the handle to transfer the recycling bin to the support platform. Then, the forklift simply pushes the receiving mechanism to translate on the support platform. The inward push assembly is stopped by the back plate. The inward push assembly pushes the locking assembly to translate and unlock the cover. At the same time, the inward push assembly pushes the inclined filter plate, which causes the waste glass inside the recycling bin to be discharged onto the transfer assembly for further transportation and recycling. The recycling bin recycles waste glass stably and the unlocking and opening method is convenient, which improves the recycling efficiency of waste glass.

[0022] 2. When the waste glass is introduced into the recycling bin, the residual moisture in the waste glass is filtered out by the inclined filter plate, and then filtered out through the filter holes onto the support platform, and finally recycled into the wastewater tank, which further improves the efficiency of waste glass recycling.

[0023] 3. When the cover is unlocked and the insert plate is inserted into the recycling bin, the roller pushes the inclined plate upward, causing the inclined filter plate to rotate around the transition point of the horizontal plate, which causes the waste glass inside the recycling bin to be discharged at an angle, thus improving the discharge efficiency of waste glass.

[0024] 4. When the inclined filter plate is pushed to flip inside the recycling bin to pour out the waste glass, the horizontal plate drives the inclined support to flip, and the dome block pushes the cover plate to flip, thereby promoting the cover plate to open further, which helps to facilitate the discharge of waste glass from inside the recycling bin. Attached Figure Description

[0025] 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.

[0026] Figure 1 A schematic diagram of a waste glass recycling bin for substrate glass processing according to the present invention is shown.

[0027] Figure 2 A schematic diagram of the receiving mechanism structure of the present invention is shown;

[0028] Figure 3 A schematic diagram of the locking cover plate state structure of the locking assembly of the present invention is shown;

[0029] Figure 4 A schematic diagram of the unlocked cover state structure of the locking assembly of the present invention is shown;

[0030] Figure 5 A schematic diagram of the internal structure of the locking assembly of the present invention is shown;

[0031] Figure 6 A cross-sectional view of the internal structure of the receiving mechanism of the present invention in the state of receiving waste glass is shown.

[0032] Figure 7 A cross-sectional view of the internal structure of the receiving mechanism of the present invention, showing the state of waste glass discharge, is shown.

[0033] Figure 8 A schematic diagram of the top surface structure of the support platform of the present invention is shown;

[0034] Figure 9 A schematic diagram of the transfer component structure of the present invention is shown;

[0035] The diagram shows: 1. Support platform; 11. Inclined guide plate; 12. Enclosure plate; 2. First side plate; 3. Back plate; 4. Wastewater tank; 5. Feeding plate; 6. Transfer assembly; 61. Conveyor belt; 62. Second side plate; 63. Fixing block; 64. Fixing column; 65. Support plate; 66. Support block; 67. Anti-collision plate; 68. Hot air blower; 7. Receiving mechanism; 71. Recycling bin; 711. Handle; 712. Limiting plate; 713. Limiting block; 714. Side support plate; 715. Filter hole; 716. Groove; 72. Receiving assembly; 721. Receiving plate; 722. Protrusion; 723. Supporting block; 724. First spring; 725. Guide... 726. Rod; 73. Stop block; 74. Inclined filter plate; 75. Inclined support; 76. Dome block; 77. Hinge; 78. Cover plate; 79. Hook; 70. Locking assembly; 71. Push rod; 72. First fixing plate; 73. Push block; 74. Slide groove; 75. Flipping component; 76.4. Push plate; 76.4.1. Tooth groove; 76.4. Sliding block; 76.4. Second spring; 76.5. Locking component; 76.5. Locking block; 76.5.1. Lock hole; 76.5. Gear; 76.5. Rotating shaft; 77. Inward pushing assembly; 78.1. Connecting plate; 79.2. Second fixing plate; 70.3. Insert plate; 71. Roller. Detailed Implementation

[0036] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention are described clearly and completely. Obviously, the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0037] Example 1

[0038] To address the technical problems in the background art, the following waste glass recycling bin for substrate glass processing is provided:

[0039] Combination Figures 1-9 As shown, the present invention provides a waste glass recycling bin for substrate glass processing, including a support platform 1. A receiving mechanism 7 is provided on the top surface of the support platform 1. First side plates 2 are fixed on both sides of the top surface of the support platform 1. A back plate 3 is fixed on the rear wall of the support platform 1. A feeding plate 5 is fixed on the side of the support platform 1 away from the back plate 3. A transfer assembly 6 is connected to one side of the support platform 1. A wastewater tank 4 is connected to the bottom surface of the support platform 1. The receiving mechanism 7 moves horizontally on the support platform 1 to discharge the collected waste glass into the transfer assembly 6.

[0040] The receiving mechanism 7 includes a recycling bin 71, an inclined filter plate 73, a hinge 74, a cover plate 75, a locking assembly 76, and an inward pushing assembly 77. Two handles 711 are fixed on the top surface of the recycling bin 71. The front wall of the recycling bin 71 has an open structure. The front wall of the recycling bin 71 is connected to the cover plate 75 through the hinge 74. The side wall of the recycling bin 71 is provided with a locking assembly 76. Two sets of locking assemblies 76 are mirror images of the vertical center line of the recycling bin 71. An inward pushing assembly 77 is connected between the two sets of locking assemblies 76. One side of the inward pushing assembly 77 is attached to the back plate 3, and the other side of the inward pushing assembly 77 is inserted into the inside of the recycling bin 71. The two sets of locking assemblies 76 are moved horizontally on the recycling bin 71 to cooperate in locking the cover plate 75 to block the open structure of the recycling bin 71. An inclined filter plate 73 is provided inside the recycling bin 71. One side of the inward pushing assembly 77 is attached to the inclined filter plate 73. Multiple filter holes 715 are opened on the bottom surface of the recycling bin 71.

[0041] The following effects can be achieved based on the above structure:

[0042] 1. By setting a locking assembly 76 on the recycling bin 71 to unlock the cover 75 through translation, the stability of waste glass collection and storage is ensured. After collecting and transferring the waste glass, the recycling bin 71 is transferred to the support platform 1 by inserting a forklift into the handle 711. Then, the forklift only needs to push the receiving mechanism 7 to translate on the support platform 1. The inward push assembly 77 is stopped by the back plate 3. The inward push assembly 77 pushes the locking assembly 76 to translate and unlock the cover 75. At the same time, the inward push assembly 77 pushes the inclined filter plate 73, which causes the waste glass inside the recycling bin 71 to be discharged onto the transfer assembly 6 for further transportation and recycling. The recycling bin 71 recycles waste glass stably and the unlocking and opening method is convenient, which improves the recycling efficiency of waste glass.

[0043] 2. When the waste glass is introduced into the recycling bin 71, the residual moisture in the waste glass is filtered out by the inclined filter plate 73, and then filtered out through the filter hole 715 onto the support platform 1, and finally recycled into the wastewater tank 4, which further improves the efficiency of waste glass recycling.

[0044] In this embodiment, the locking assembly 76 includes a push rod 761, a first fixing plate 762, a push block 763, a flipping component 764, and a locking component 765. One side of the push rod 761 is connected to an inner push component 77, and the other side of the push rod 761 is connected to the first fixing plate 762. Two push blocks 763 are fixed on the side of the first fixing plate 762 away from the push rod 761. The flipping component 764 is slidably disposed between the two push blocks 763. The locking component 765 is rotatably connected between the two push blocks 763. The locking component 765 is pushed and flipped by the flipping component 764. Two limiting blocks 713 are fixed on the side wall of the recycling bin 71. The limiting blocks 713 are used to stop the flipping component 764 from sliding between the two push blocks 763. A limiting plate 712 is fixed on the side wall of the recycling bin 71, and the push rod 761 is inserted into the limiting plate 712.

[0045] The push rod 761 of the back plate 3 moves horizontally on the recycling bin 71, and under the stop of the limit block 713, it pushes the flipping component 764 to move horizontally on the push block 763, so that the flipping component 764 pushes the locking component 765 to flip and unlock the cover plate 75. The unlocking operation is convenient and stable.

[0046] In this embodiment, the flipping component 764 includes a push plate 7641, a slider 7642, and a second spring 7643. Two push plates 7641 are fixed to the side wall of the slider 7642. The push plates 7641 have an L-shaped structure. The push plates 7641 and the limiting block 713 are located on the same horizontal center line. The inner wall of the push plate 7641 is provided with a toothed groove 76411. One side of the locking component 765 is engaged with the toothed groove 76411. The second spring 7643 is connected between one side of the slider 7642 and the first fixing plate 762. The push block 763 is provided with a sliding groove 7631 inside. The top of the push block 763 is slidably connected to the inside of the sliding groove 7631.

[0047] The limit block 713 stops the push plate 7641, causing the push plate 7641 to drive the engaged locking component 765 to flip and unlock, and causing the slider 7642 to push the second spring 7643 to compress. Then, after the push plate 7641 separates from the limit block 713, the second spring 7643 can be used to reset the push plate 7641, so that the locking component 765 is locked and positioned, making the reciprocating unlocking operation convenient.

[0048] In this embodiment, the locking component 765 includes a locking block 7651, a gear 7652, and a rotating shaft 7653. The rotating shaft 7653 is connected through the inside of the locking block 7651. The gear 7652 is sleeved on the outer wall of the rotating shaft 7653. There are two gears 7652 mirror images of the horizontal center line of the locking block 7651. The two ends of the rotating shaft 7653 are rotatably connected to the inside of two push blocks 763 respectively. One side of the gear 7652 is meshed with the inside of the tooth groove 76411. A locking hole 76511 is opened inside the locking block 7651. A hook 751 is fixed on the outer wall of the cover plate 75. The hook 751 has an L-shaped structure. There are two hooks 751 mirror images of the vertical center line of the cover plate 75. The locking block 7651 is flipped so that the hook 751 is engaged with the inside of the locking hole 76511.

[0049] By flipping the locking block 7651 to insert the hook 751 into the lock hole 76511, and then moving the locking block 7651 to lock the hook 751 inside the locking block 7651, the stability of the locking structure is ensured.

[0050] Example 2

[0051] like Figure 2 , Figure 6 and Figure 7 As shown, based on the above embodiments, this embodiment further provides the following:

[0052] To achieve the above effect, the following structure is adopted;

[0053] The internal push assembly 77 includes a connecting plate 771, a second fixed plate 772, an insert plate 773, and a roller 774. The connecting plate 771 is connected between two push rods 761. The second fixed plate 772 is fixed to the top surface of the connecting plate 771. The insert plate 773 is fixed to the side wall of the second fixed plate 772. The insert plate 773 is inserted into the inside of the recycling bin 71. The roller 774 is rotatably connected to the side of the insert plate 773 away from the second fixed plate 772. The inclined filter plate 73 has a two-section bending structure. The inclined filter plate 73 includes an inclined plate and a horizontal plate. The angle between the inclined plate and the horizontal plate is an obtuse angle. The side of the horizontal plate near the cover plate 75 is rotatably connected to the inside of the recycling bin 71. The insert plate 773 is inserted into the inside of the recycling bin 71 so that the roller 774 is attached to and pushes the inclined plate to flip. A side support plate 714 is fixed to the inner wall of the recycling bin 71. The side support plate 714 is attached to the bottom side of the horizontal plate of the inclined filter plate 73.

[0054] When the cover plate 75 is unlocked and the insert plate 773 is inserted into the recycling bin 71, the roller 774 pushes the inclined plate upward, causing the inclined filter plate 73 to rotate around the transition point of the horizontal plate, which causes the waste glass inside the recycling bin 71 to be discharged at an angle, thus improving the discharge efficiency of waste glass.

[0055] In this embodiment, an inclined bracket 731 is fixed to the top surface of the horizontal plate of the inclined filter plate 73, and a dome block 732 is fixed to the side of the inclined bracket 731 away from the horizontal plate. One side of the dome block 732 is fitted against the inner wall of the cover plate 75.

[0056] When the inclined filter plate 73 is pushed to flip inside the recycling bin 71 to pour out the waste glass, the horizontal plate drives the inclined support 731 to flip, and the dome block 732 pushes the cover plate 75 to flip, thereby promoting the cover plate 75 to open further, which is conducive to the waste glass being discharged from inside the recycling bin 71.

[0057] In this embodiment, the receiving mechanism 7 further includes a receiving component 72, which is inclinedly disposed inside the recycling bin 71 and disposed on the top of the horizontal plate of the inclined filter plate 73. The inclined direction of the receiving component 72 is perpendicular to the inclined direction of the inclined plate.

[0058] When waste glass is fed into the recycling bin 71, it first falls onto the inclined receiving component 72, then slides down the inclined surface onto the inclined filter plate 73, and finally falls onto the horizontal plate. This increases the sliding distance of the waste glass, promotes the dispersed collection of waste glass, and facilitates the separation of moisture in the waste glass, thereby improving the separation and collection efficiency and dispersion of waste glass.

[0059] In this embodiment, the receiving assembly 72 includes a receiving plate 721, protrusions 722, a support block 723, a first spring 724, guide rods 725, and a stop block 726. The receiving plate 721 is inclinedly disposed inside the recycling bin 71. Multiple protrusions 722 are fixed on the top surface of the receiving plate 721. Four guide rods 725 are inserted into the receiving plate 721 in a rectangular arrangement. A stop block 726 is fixed at the top of the guide rods 725, and a support block 723 is fixed at the bottom of the guide rods 725. The support block 723 is fixed to the inner wall of the recycling bin 71. A first spring 724 is sleeved on the outer wall of the guide rods 725. The first spring 724 is connected between the bottom surface of the receiving plate 721 and the top surface of the support block 723.

[0060] When the inclined receiving plate 721 receives waste glass, the protrusions 722 on its surface collide with the waste glass, causing it to break and making it easier to recycle. When too much waste glass falls onto the receiving plate 721, the first spring 724 is used to buffer it, thereby reducing the impact and ensuring the stability of the structure.

[0061] Example 3

[0062] like Figure 8 and Figure 9 As shown, based on the above embodiments, this embodiment further provides the following:

[0063] To achieve the above effect, the following structure is adopted;

[0064] An inclined guide plate 11 is fixed on the top surface of the support platform 1, and a surrounding plate 12 is fixed on both sides of the inclined guide plate 11. One side of the surrounding plate 12 is fixedly connected to the side wall of the back plate 3. The inclined guide plate 11, the back plate 3, and the two surrounding plates 12 surround each other to form an internal inclined water receiving trough structure. The top of the wastewater tank 4 is connected to the inside of the water receiving trough through a water pipe. A groove 716 is opened on the bottom surface of the recycling box 71, and the two surrounding plates 12 are respectively attached to the two inner walls of the groove 716.

[0065] When the recycling bin 71 is pushed to the top of the support platform 1, the wastewater filtered from the filter hole 715 is discharged into the water receiving tank and finally collected and introduced into the wastewater tank 4 for centralized cleaning.

[0066] In this embodiment, the transfer assembly 6 includes a conveyor belt 61, a second side plate 62, a fixing block 63, a fixing column 64, a support plate 65, a support block 66, a crash barrier 67, and a hot air blower 68. The second side plate 62 is fixed on both sides of the conveyor belt 61, and the support plate 65 is fixed between the two second side plates 62. The support block 66 is fixed on the top surface of the support plate 65. The width of the support block 66 is equal to the width of the groove 716. Two crash barriers 67 are fixed on the top surface of the support plate 65. The hot air blower 68 is arranged between the two crash barriers 67. The air outlet at the bottom of the hot air blower 68 passes through the bottom of the support plate 65. The fixing block 63 is fixed on one side of the conveyor belt 61. The side wall of the fixing block 63 is connected to the fixing column 64. One end of the fixing column 64 is connected to the bottom side wall of the support platform 1.

[0067] By first placing the receiving mechanism 7 on the support plate 65 and positioning the recycling box 71 with the support block 66, it is easier to guide and push the receiving mechanism 7 onto the support platform 1 in the next step, thus ensuring the stability of the horizontal material feeding operation.

[0068] Working principle and usage process of this invention:

[0069] First press Figures 1-9 The receiving mechanism 7 is placed at the location where waste glass is generated on the production line. The waste glass falls into the recycling bin 71. The waste glass first falls onto the receiving plate 721 and collides with the protrusion 722 to further pulverize the waste glass. The waste glass slides down the receiving plate 721 onto the inclined filter plate 73 and slides down the inclined surface of the inclined filter plate 73 onto the horizontal plate for centralized collection until the recycling bin 71 is filled with a large amount of waste glass. At this time, the bottom surface of the inclined filter plate 73 is in contact with the top surface of the side support plate 714. The inclined filter plate 73 presses down the roller 774, causing the insert plate 773 to extend out of the recycling bin 71. The locking block 7651 locks the hook 751, and the cover plate 75 completely seals the opening of the recycling bin 71.

[0070] The worker operates a forklift to insert into the handle 711, then transfers the receiving mechanism 7 containing waste glass to the support plate 65, inserts the support block 66 into the groove 716 at the bottom of the recycling bin 71, and then the forklift pushes the receiving mechanism 7 horizontally onto the support platform 1. The recycling bin 71 is moved to the top of the two side panels 12 and the inclined guide plate 11, and then water is added into the recycling bin 71 to clean the waste glass. The cleaning waste liquid flows through the inclined filter plate 73 to the bottom of the recycling bin 71, and is filtered out through the filter hole 715 onto the support platform 1, and finally guided into the wastewater tank 4.

[0071] Continue to control the forklift to push the recycling bin 71 to move horizontally. The back plate 3 is attached to the stop push rod 761 and the second fixing plate 772, so that the push rod 761 slides inside the limiting plate 712. The horizontal movement of the push rod 761 causes the locking hole 76511 of the locking block 7651 to move horizontally and release the locking state of the hook 751. At the same time, the insert plate 773 is inserted into the recycling bin 71, and the roller 774 is attached to the inclined filter plate 73.

[0072] Then, continue pushing the recycling bin 71. The push rod 761 pushes the push plate 7641 to move and fit against the limiting block 713. Under the stop of the limiting block 713, the slider 7642 moves inside the slide groove 7631 and compresses the second spring 7643. The movement of the push plate 7641 drives the meshing gear 7652 to rotate, causing the locking block 7651 to flip. The hook 751 passes through the lock hole 76511 and separates from the locking block 7651, thus completing the complete separation of the cover plate 75.

[0073] Inside the recycling bin 71, rollers 774 push the inclined filter plate 73, keeping the rollers 774 close to the inclined surface of the filter plate 73 as they roll, causing the inclined filter plate 73 to cause the waste glass to flip and tilt. At the same time, the dome block 732 pushes open the cover plate 75, and the cover plate 75 flips around the hinge 74 to open the opening of the recycling bin 71. The waste glass inside the recycling bin 71 slides out and is guided onto the conveyor belt 61 through the feed plate 5. The hot air fan 68 is turned on to dry the conveyed waste glass, and it is then sent to the next recycling station for processing.

[0074] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply the existence of any such actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article, or device comprising a series of elements includes not only those elements, but also other elements not explicitly listed, or elements inherent to such process, method, article, or device. In the absence of further limitations, an element defined by the phrase "comprising a ..." does not exclude the presence of other identical elements in the process, method, article, or device comprising the element.

[0075] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit the same. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the various embodiments of the present invention.

Claims

1. A waste glass recycling bin for substrate glass processing, characterized in that: The system includes a support platform, a receiving mechanism on the top surface of the support platform, first side plates fixed on both sides of the top surface of the support platform, a back plate fixed on the rear wall of the support platform, a feeding plate fixed on the side of the support platform away from the back plate, a transfer assembly connected to one side of the support platform, and a wastewater tank connected to the bottom surface of the support platform. The receiving mechanism moves horizontally on the support platform to discharge the collected waste glass into the transfer assembly. The receiving mechanism includes a recycling bin, an inclined filter plate, a hinge, a cover plate, a locking assembly, and an inward pushing assembly. Two handles are fixed on the top surface of the recycling bin. The front wall of the recycling bin has an open structure. The front wall of the recycling bin is connected to the cover plate via a hinge. The side wall of the recycling bin is provided with a locking assembly. Two sets of locking assemblies are mirror images of the vertical center line of the recycling bin. An inward pushing assembly is connected between the two sets of locking assemblies. One side of the inward pushing assembly is fitted with the back plate, and the other side of the inward pushing assembly is inserted into the inside of the recycling bin. The two sets of locking assemblies are moved horizontally on the recycling bin to cooperate in locking the cover plate to seal the open structure of the recycling bin. An inclined filter plate is provided inside the recycling bin. One side of the inward pushing assembly is fitted with the inclined filter plate. Multiple filter holes are opened on the bottom surface of the recycling bin. The locking assembly includes a push rod, a first fixed plate, a push block, a flipping component, and a locking component. An inner push component is connected to one side of the push rod, and the first fixed plate is connected to the other side of the push rod. Two push blocks are fixed on the side of the first fixed plate away from the push rod. A flipping component is slidably arranged between the two push blocks. A locking component is rotatably connected between the two push blocks. The locking component is flipped by the flipping component. Two limit blocks are fixed on the side wall of the recycling bin. The limit blocks are used to stop the flipping component from sliding between the two push blocks. A limit plate is fixed on the side wall of the recycling bin, and the push rod is inserted into the limit plate. The push assembly includes a connecting plate, a second fixed plate, an insert plate, and rollers. The connecting plate is connected between two push rods. The second fixed plate is fixed to the top surface of the connecting plate. The insert plate is fixed to the side wall of the second fixed plate. The insert plate is inserted into the inside of the recycling bin. The side of the insert plate away from the second fixed plate is rotatably connected to the rollers. The inclined filter plate has a two-section bending structure. The inclined filter plate includes an inclined plate and a horizontal plate. The angle between the inclined plate and the horizontal plate is an obtuse angle. The side of the horizontal plate near the cover plate is rotatably connected to the inside of the recycling bin. The insert plate is inserted into the inside of the recycling bin so that the rollers are in contact with and push the inclined plate to flip. A side support plate is fixed to the inner wall of the recycling bin. The side support plate is in contact with the bottom surface of the side of the horizontal plate of the inclined filter plate.

2. The waste glass recycling bin for substrate glass processing according to claim 1, characterized in that: The flipping component includes a push plate, a slider, and a second spring. Two push plates are fixed to the side wall of the slider. The push plates have an L-shaped structure. The push plates and the limiting block are located on the same horizontal center line. The inner wall of the push plate is provided with a toothed groove. One side of the locking component is engaged with the toothed groove. One side of the slider is connected to the first fixed plate with a second spring. The inside of the push block is provided with a sliding groove. The top of the push block is slidably connected to the inside of the sliding groove.

3. The waste glass recycling bin for substrate glass processing according to claim 1, characterized in that: The locking component includes a locking block, gears, and a rotating shaft. The rotating shaft runs through the inside of the locking block, and a gear is fitted onto the outer wall of the rotating shaft. Two gears are mirror images of the horizontal center line of the locking block. The two ends of the rotating shaft are rotatably connected to the inside of two push blocks, and one side of the gear is meshed with the inside of the tooth groove. A locking hole is opened inside the locking block, and a hook is fixed to the outer wall of the cover plate. The hook has an L-shaped structure and two hooks are mirror images of the vertical center line of the cover plate. The locking block is flipped so that the hooks are engaged inside the locking hole.

4. The waste glass recycling bin for substrate glass processing according to claim 1, characterized in that: An inclined bracket is fixed to the top surface of the horizontal plate of the inclined filter plate, and a dome block is fixed to the side of the inclined bracket away from the horizontal plate. One side of the dome block is fitted against the inner wall of the cover plate.

5. The waste glass recycling bin for substrate glass processing according to claim 1, characterized in that: The receiving mechanism also includes a receiving component, which is inclinedly disposed inside the recycling bin and disposed on the top of the horizontal plate of the inclined filter plate. The inclination direction of the receiving component is perpendicular to the inclination direction of the inclined plate.

6. The waste glass recycling bin for substrate glass processing according to claim 5, characterized in that: The receiving assembly includes a receiving plate, protrusions, a support block, a first spring, guide rods, and a stop block. The receiving plate is inclinedly arranged inside the recycling bin. Multiple protrusions are fixed on the top surface of the receiving plate. Four guide rods are inserted into the receiving plate in a rectangular arrangement. A stop block is fixed at the top of the guide rod, and a support block is fixed at the bottom of the guide rod. The support block is fixed to the inner wall of the recycling bin. A first spring is sleeved on the outer wall of the guide rod. The first spring connects the bottom surface of the receiving plate and the top surface of the support block.

7. The waste glass recycling bin for substrate glass processing according to claim 1, characterized in that: An inclined guide plate is fixed to the top surface of the support platform, and a surrounding plate is fixed to both sides of the inclined guide plate. One side of the surrounding plate is fixedly connected to the side wall of the back plate. The inclined guide plate, the back plate, and the two surrounding plates surround each other to form an internal inclined water receiving trough structure. The top of the wastewater tank is connected to the inside of the water receiving trough through a water pipe. A groove is opened on the bottom surface of the recycling tank, and the two surrounding plates are respectively attached to the two inner walls of the groove.

8. The waste glass recycling bin for substrate glass processing according to claim 1, characterized in that: The transfer assembly includes a conveyor belt, a second side plate, a fixing block, a fixing column, a support plate, a support block, a crash plate, and a hot air blower. The second side plates are fixed on both sides of the conveyor belt, and a support plate is fixed between the two second side plates. A support block is fixed on the top surface of the support plate, and the width of the support block is equal to the width of the groove. Two crash plates are fixed on the top surface of the support plate, and a hot air blower is arranged between the two crash plates. The air outlet at the bottom of the hot air blower passes through the bottom of the support plate. A fixing block is fixed on one side of the conveyor belt, and a fixing column is connected to the side wall of the fixing block. One end of the fixing column is connected to the bottom side wall of the support platform.

Citation Information

Patent Citations

  • Waste recovery device for glass production

    CN117138426A

  • Automatic vibration anti-blockage filter device for discharge port

    CN203991273U