CN224114671U - A waste glass recycling equipment - Google Patents

A waste glass recycling equipment

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Publication number
CN224114671U
CN224114671U CN202520303746.3U CN202520303746U CN224114671U CN 224114671 U CN224114671 U CN 224114671U CN 202520303746 U CN202520303746 U CN 202520303746U CN 224114671 U CN224114671 U CN 224114671U
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CN
China
Prior art keywords
groove
temporary storage
waste glass
feed inlet
rotating rod
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Application number
CN202520303746.3U
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Chinese (zh)
Inventor
张国伟
张宏杰
沙佳峰
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Nantong Gaoqi Solid Waste Disposal Co ltd
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Nantong Gaoqi Solid Waste Disposal Co ltd
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Priority to CN202520303746.3U priority Critical patent/CN224114671U/en
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Publication of CN224114671U publication Critical patent/CN224114671U/en
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Abstract

本实用新型提供一种废玻璃回收设备,涉及玻璃加工技术领域,包括加工箱,所述加工箱的上端安装有进料口,所述加工箱的内部设有清理槽,且清理槽与进料口之间贯通连接,所述清理槽与进料口之间安装有辅助机构,所述清理槽内部上端的两侧分别活动贯穿安装有传动轴,所述传动轴位于清理槽内部的杆身外侧分别安装有粉碎辊。本实用新型中通过第一喷头与第二喷头来对原料未加工以及加工后的状态进行冲洗,初步清理出原料表面的杂质,然后在原料落入传输带的表面后,搅拌架会带动清理槽下端的水流进行转动,从而让水流进一步对原料进行冲刷,提高原料的洁净度,提高原料后期熔炼的加工质量。

This utility model provides a waste glass recycling device, relating to the field of glass processing technology. It includes a processing box with a feed inlet at its upper end. The processing box has a cleaning trough inside, which is connected to the feed inlet. An auxiliary mechanism is installed between the cleaning trough and the feed inlet. Drive shafts are movably installed through the upper sides of the cleaning trough, and crushing rollers are installed on the outer sides of the shafts inside the cleaning trough. In this utility model, a first nozzle and a second nozzle are used to wash the raw material in its unprocessed and processed states, initially removing impurities from the surface. After the raw material falls onto the conveyor belt, a stirring frame drives the water flow at the lower end of the cleaning trough to rotate, further rinsing the raw material and improving its cleanliness, thus enhancing the processing quality for subsequent melting.

Description

Useless glass recovery plant
Technical Field
The utility model relates to the technical field of glass processing, in particular to waste glass recycling equipment.
Background
Waste glass belongs to recoverable objects, is an important class of household garbage classification at the present stage, and when waste glass is recovered, recovery equipment is often required to crush the waste glass, and the waste glass recovery device provided by the application number of CN201911161427.9 comprises a first crushing device, a second crushing device, a smelting device, a first conveyor belt and a second conveyor belt, wherein a first filter screen is arranged at the lower end of the first crushing device, a second feeding hole is arranged at the upper end of the second crushing device, a second filter screen is arranged at the lower end of the second crushing device, the first filter screen is connected with the second feeding hole through the first conveyor belt, and the second filter screen is connected with the smelting device through the second conveyor belt. The invention pulverizes the glass for many times, the pulverizing effect of the existing pulverizer is poor effectively, and the glass cannot be thoroughly pulverized to be effectively smelted;
however, in the above technical scheme, although the waste glass can be thoroughly crushed, the waste glass may be piled outdoors for a long time when the waste glass is recovered, so that the surface of the waste glass is doped with more soil and impurities, and the soil, impurities and the like on the surface of the waste glass are mixed with the waste glass when the waste glass is crushed, so that the quality of glass re-hearth regeneration is affected, and therefore, we propose a waste glass recovery device for solving the problems.
Disclosure of utility model
The utility model mainly aims to provide waste glass recovery equipment, which solves the problems that although waste glass can be thoroughly crushed, the waste glass can be piled outdoors for a long time when the waste glass is recovered, so that the surface of the waste glass is doped with more soil and impurities, and the soil, impurities and the like on the surface of the waste glass are mixed with the waste glass when the waste glass is crushed, and the quality of glass re-hearth regeneration is affected.
In order to achieve the above purpose, the technical scheme adopted by the utility model is as follows:
The utility model provides a useless glass recovery plant, includes the processing case, the feed inlet is installed to the upper end of processing case, the inside of processing case is equipped with the clearance groove, and link up between clearance groove and the feed inlet, install complementary unit between clearance groove and the feed inlet, the both sides of clearance groove inside upper end are movable respectively and are run through and install the transmission shaft, the crushing roller is installed respectively in the shaft outside that the transmission shaft is located clearance inslot, and overlap each other between the crushing roller, the guide frame is installed respectively to the both sides of clearance groove inside upper end, the inside that the crushing roller block is located the guide frame respectively, the gear is installed respectively to the rear end of transmission shaft, the meshing is connected between the gear, the motor is installed to the rear side of processing case, the output of motor is connected with the gear, the transmission is connected between transmission shaft and the complementary unit, the both sides of the inside upper end of feed inlet are movable mounting respectively has the baffle, the inside both ends of feed inlet are fixed lever, and the pole body of dead lever is movable respectively and run through and is installed in the inside of baffle respectively between dead lever and the baffle.
Preferably, the auxiliary mechanism comprises a first temporary storage box, the first temporary storage box is arranged at the upper end of the inside of the feed inlet, a plurality of first spray heads are installed on one side, close to the baffle, of the first temporary storage box in a penetrating mode, and a water inlet pipe is installed on the rear end of the inside of the first temporary storage box in a penetrating mode.
Preferably, the two ends in the middle of the cleaning groove are respectively provided with a second temporary storage box, one ends, close to each other, of the second temporary storage boxes are respectively and penetratingly provided with a plurality of second spray heads, and connecting pipes are respectively and penetratingly arranged between the first temporary storage boxes and the second temporary storage boxes.
Preferably, one side of the lower end of the inner part of the cleaning groove is penetrated and is provided with a discharge hole, a transmission belt is arranged between the cleaning groove and the discharge hole, the water flow retained in the cleaning groove is higher than one end of the transmission belt, which is positioned in the cleaning groove, and the water surface is lower than the discharge hole, the transmission belt is inclined, the surface of the transmission belt is penetrated and provided with a plurality of drain holes, the inside of each drain hole is provided with a filter screen, and a plurality of bumps are arranged on the surface of the transmission belt at equal intervals.
Preferably, the inside lower extreme of processing case is equipped with the recess, the inside upper end movable penetration of recess installs first bull stick, the inside lower extreme movable mounting of clearance groove has the stirring frame, the upper end and the stirring frame of first bull stick are connected, the worm wheel is installed in the inside shaft outside of first bull stick in recess, the inside one end movable penetration of recess installs the second bull stick, the worm is installed in the inside shaft outside of second bull stick in recess, meshing connection between worm and the worm wheel.
Preferably, the water outlet pipe is installed in a penetrating mode at the lower end of the cleaning groove, the chain wheels are installed at the rear end of the rod body of the second rotating rod and the rear end of the rod body of the transmission shaft respectively, and the chain is installed between the chain wheels in a sleeved mode.
Compared with the prior art, the utility model has the following beneficial effects:
(1) According to the utility model, raw materials are washed in an unprocessed and processed state through the first spray head and the second spray head, impurities on the surface of the raw materials are primarily cleaned, and then after the raw materials fall into the surface of the conveying belt, the stirring frame drives water flow at the lower end of the cleaning groove to rotate, so that the water flow is used for further scouring the raw materials, the cleanliness of the raw materials is improved, and the processing quality of the raw materials in later smelting is improved.
Drawings
FIG. 1 is a schematic view showing the overall structure of a waste glass recovery apparatus of the present utility model;
FIG. 2 is a schematic elevational view of a waste glass recycling apparatus according to the present utility model;
FIG. 3 is a schematic side view of a waste glass recycling apparatus according to the present utility model;
FIG. 4 is a schematic view showing a cross-sectional structure at A-A in FIG. 2 of a waste glass recovery apparatus according to the present utility model;
FIG. 5 is a schematic view showing a sectional structure at B-B in FIG. 3 of a waste glass recovering apparatus according to the present utility model;
FIG. 6 is a schematic view showing a sectional structure at C-C in FIG. 2 of a waste glass recycling apparatus of the present utility model.
The device comprises a processing box 1, a cleaning groove 101, an auxiliary mechanism 2, a first temporary storage box 201, a first spray head 202, a 203, a water inlet pipe 204, a second temporary storage box 205, a connecting pipe 206, a second spray head 207, a conveying belt 208, a lug 209, a water draining hole 210, a discharge hole 211, a water outlet pipe 212, a stirring frame 213, a first rotating rod 214, a groove 215, a worm, a 216, a worm wheel 217, a second rotating rod 218, a chain wheel 219, a chain 3, a feeding hole 4, a baffle plate 5, a fixed rod 6, a crushing roller 7, a guide frame 8, a transmission shaft 9, a gear 10 and a motor.
Detailed Description
The technical solutions of the embodiments of the present utility model will be clearly and completely described below in conjunction with the embodiments of the present utility model, and it is apparent that the described embodiments are only some embodiments of the present utility model, not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
As shown in fig. 1 to 6, an embodiment of the present utility model proposes a waste glass recycling apparatus, including a processing box 1, a feed port 3 is installed at the upper end of the processing box 1, a cleaning tank 101 is provided in the processing box 1, and the cleaning tank 101 is in through connection with the feed port 3, an auxiliary mechanism 2 is installed between the cleaning tank 101 and the feed port 3, two sides of the upper end in the cleaning tank 101 are respectively movably installed with a transmission shaft 8, two sides of the upper end in the cleaning tank 101 are respectively installed with a crushing roller 6, the crushing rollers 6 overlap each other, two sides of the upper end in the cleaning tank 101 are respectively installed with a guiding frame 7, the crushing rollers 6 are respectively engaged in the guiding frame 7, the rear end of the transmission shaft 8 is respectively installed with a gear 9, the gear 9 is engaged with each other, a motor 10 is installed at the rear side of the processing box 1, the output end of the motor 10 is connected with the gear 9, two sides of the upper end in the interior of the feed port 3 are respectively movably installed with a baffle 4, two ends in the interior of the feed port 3 are respectively fixedly installed with a fixed rod 5, and the rod 5 is movably installed between the baffle 4 and the torsion spring 4.
As shown in fig. 4 to 6, in another embodiment of the present utility model, the auxiliary mechanism 2 comprises a first temporary storage tank 201, the first temporary storage tank 201 is installed at the upper end of the inside of the feed port 3, a plurality of first spray heads 202 are installed at one side of the first temporary storage tank 201 near the baffle 4 in a penetrating manner, a water inlet pipe 203 is installed at the rear end of the inside of the first temporary storage tank 201 in a penetrating manner, a plurality of second spray heads 206 are installed at the middle two ends of the inside of the cleaning tank 101 in a penetrating manner, a connecting pipe 205 is installed at one end of the second temporary storage tank 204 in a penetrating manner, a discharge port 210 is installed at one side of the lower end of the inside of the cleaning tank 101 in a penetrating manner, a transmission belt 207 is installed between the cleaning tank 101 and the discharge port 210, the water retained in the cleaning tank 101 is higher than one end of the transmission belt 207 in the cleaning tank 101 and the water surface is lower than the discharge port 210, the transmission belt 207 is inclined, a plurality of drain holes 209 are arranged on the surface of the transmission belt 207 in a penetrating way, a filter screen is respectively arranged in the drain holes 209, a plurality of convex blocks 208 are arranged on the surface of the transmission belt 207 at equal intervals, a groove 214 is arranged at the lower end of the inside of the processing box 1, a first rotating rod 213 is movably arranged at the upper end of the groove 214 in a penetrating way, a stirring frame 212 is movably arranged at the lower end of the inside of the cleaning groove 101, the upper end of the first rotating rod 213 is connected with the stirring frame 212, a worm wheel 216 is arranged at the outer side of a rod body of the first rotating rod 213 positioned in the groove 214 in a penetrating way, a second rotating rod 217 is movably arranged at one end of the inside of the groove 214 in a penetrating way, a worm 215 is arranged at the outer side of the rod body of the second rotating rod 217 positioned in the groove 214 in a meshing way, a water outlet pipe 211 is arranged at the lower end of the inside of the cleaning groove 101 in a penetrating way, a chain wheel 218 is respectively arranged at the rear end of the rod body of the second rotating rod 217 and the rear end of the transmission shaft 8, a chain 219 is mounted between the sprockets 218.
When the raw materials need to be recycled, water flows into the first temporary storage box 201 through the water inlet pipe 203, then flows into the second temporary storage box 204 along the connecting pipe 205, so that the water flows can be sprayed outwards through the first spray head 202 and the second spray head 206 respectively, the water flows are retained at the lower end of the cleaning groove 101, the water surface is higher than one end of the conveying belt 207, which is positioned in the cleaning groove 101, but is lower than the discharge hole 210, then, when the water flows are continuously injected, a user can open the water outlet pipe 211 to discharge outwards, so that the water flows continuously in and out, then the user can start the motor 10, the motor 10 drives the gears 9 to rotate, then the two transmission shafts 8 synchronously rotate through meshing transmission among the gears 9, then the transmission shafts 8 can drive the crushing rollers 6 to relatively rotate, simultaneously, the transmission shaft 8 drives the second rotating rod 217 to rotate through the chain wheel 218 and the chain 219, then the second rotating rod 217 controls the first rotating rod 213 and the stirring frame 212 to rotate through the worm 215 and the worm wheel 216, the stirring frame 212 stirs water flow stagnating at the lower end inside the cleaning tank 101, the water flow stagnates at the lower end inside the cleaning tank is kept in a flowing state, then a user can pour raw materials at the upper end of the feed inlet 3, the raw materials push the baffle 4 to rotate by gravity by taking the fixed rod 5 as an axis and twist the torsion spring, so that the baffle 4 is opened, the raw materials fall between the crushing rollers 6 to be crushed, then the torsion spring can push the baffle 4 to reset, so that the raw materials can not splash to the outside in the crushing process, the water flow sprayed by the first spray nozzle 202 can primarily clean the raw materials after the raw materials fall into the inside the feed inlet 3, meanwhile, impurities are prevented from stagnating on the crushing rollers 6, then when the crushed raw materials drops downwards, the water flow sprayed through the second spray nozzle 206 is further washed, finally, after the raw materials fall into the water flow retained at the lower end, the water flow flowing continuously can be used for further washing, impurities on the raw materials are separated, and finally, the raw materials can be driven to be discharged and discharged outwards through the conveying belt 207, so that the quality of the raw materials in later smelting is improved, and impurities in the raw materials are avoided.
The working principle of the waste glass recovery device is as follows:
When in use, firstly, when raw materials need to be recycled, water flows into the first temporary storage box 201 through the water inlet pipe 203, then the water flows enter the second temporary storage box 204 along the connecting pipe 205, so that the water flows can be sprayed outwards through the first spray head 202 and the second spray head 206 respectively, the water flows are retained at the lower end of the cleaning groove 101, the water surface is higher than one end of the conveying belt 207, which is positioned in the cleaning groove 101, but lower than the discharge hole 210, then, when the water flows are continuously injected, a user can open the water outlet pipe 211 to discharge outwards, so as to realize continuous inflow and outflow of the water flows, then, the user can start the motor 10, the motor 10 drives the gear 9 to rotate, then, through meshed transmission between the gears 9, the two transmission shafts 8 synchronously rotate, then the transmission shafts 8 can drive the crushing roller 6 to relatively rotate, simultaneously, the transmission shaft 8 drives the second rotating rod 217 to rotate through the chain wheel 218 and the chain 219, then the second rotating rod 217 controls the first rotating rod 213 and the stirring frame 212 to rotate through the worm 215 and the worm wheel 216, the stirring frame 212 stirs water flow stagnating at the lower end inside the cleaning tank 101, the water flow stagnates at the lower end inside the cleaning tank is kept in a flowing state, then a user can pour raw materials at the upper end of the feed inlet 3, the raw materials push the baffle 4 to rotate by gravity by taking the fixed rod 5 as an axis and twist the torsion spring, so that the baffle 4 is opened, the raw materials fall between the crushing rollers 6 to be crushed, then the torsion spring can push the baffle 4 to reset, so that the raw materials can not splash to the outside in the crushing process, the water flow sprayed by the first spray nozzle 202 can primarily clean the raw materials after the raw materials fall into the inside the feed inlet 3, meanwhile, impurities are prevented from stagnating on the crushing rollers 6, then when the crushed raw materials drops downwards, the water flow sprayed through the second spray nozzle 206 is further washed, finally, after the raw materials fall into the water flow retained at the lower end, the water flow flowing continuously can be used for further washing, impurities on the raw materials are separated, and finally, the raw materials can be driven to be discharged and discharged outwards through the conveying belt 207, so that the quality of the raw materials in later smelting is improved, and impurities in the raw materials are avoided.
It should be understood that the foregoing examples of the present utility model are merely illustrative of the present utility model and not limiting of the embodiments of the present utility model, and that various other changes and modifications can be made by those skilled in the art based on the above description, and it is not intended to be exhaustive of all of the embodiments, and all obvious changes and modifications that come within the scope of the utility model are defined by the following claims.

Claims (4)

1. The waste glass recycling equipment comprises a processing box (1), and is characterized in that a feed inlet (3) is arranged at the upper end of the processing box (1), a cleaning groove (101) is arranged in the processing box (1), the cleaning groove (101) is in through connection with the feed inlet (3), an auxiliary mechanism (2) is arranged between the cleaning groove (101) and the feed inlet (3), a transmission shaft (8) is respectively and movably arranged at two sides of the upper end in the cleaning groove (101), a crushing roller (6) is respectively arranged at the outer side of a rod body in the cleaning groove (101), the crushing rollers (6) are mutually overlapped, guide frames (7) are respectively arranged at two sides of the upper end in the cleaning groove (101), the crushing rollers (6) are respectively clamped in the guide frames (7), gears (9) are respectively arranged at the rear ends of the transmission shaft (8), the gears (9) are in meshed connection, a motor (10) is arranged at the rear side of the processing box (1), a motor (10) is respectively arranged at the output end of the motor (10), the output end of the motor (10) is respectively connected with the gears (9) and the two sides of the auxiliary mechanism (4) are respectively arranged at the two sides of the transmission end (4), the inside both ends fixed mounting of feed inlet (3) have dead lever (5), and the pole body of dead lever (5) is respectively movable through and is installed in the inside of baffle (4), install torsional spring between dead lever (5) and baffle (4) respectively, auxiliary mechanism (2) are including first temporary storage case (201), first temporary storage case (201) are installed in the inside upper end of feed inlet (3), one side that first temporary storage case (201) is close to baffle (4) runs through and installs a plurality of first shower nozzles (202), first temporary storage case (201) inside rear end runs through and installs inlet tube (203), one side of clearance groove (101) inside lower extreme runs through and installs discharge gate (210), install conveyer belt (207) between clearance groove (101) and discharge gate (210), the rivers that detain in clearance groove (101) are higher than one end that clearance groove (101) are located, and are less than discharge gate (210), conveyer belt (207) are established to slope form, conveyer belt (208) are equipped with water surface mounting has a plurality of water surface mounting lug (209) respectively.
2. The waste glass recycling device according to claim 1, wherein the second temporary storage boxes (204) are respectively arranged at two ends of the middle inside the cleaning groove (101), a plurality of second spray heads (206) are respectively arranged at one ends of the second temporary storage boxes (204) close to each other in a penetrating way, and connecting pipes (205) are respectively arranged between the first temporary storage boxes (201) and the second temporary storage boxes (204) in a penetrating way.
3. The waste glass recycling device according to claim 1, wherein a groove (214) is formed in the lower end of the inside of the processing box (1), a first rotating rod (213) is movably arranged at the upper end of the inside of the groove (214) in a penetrating manner, a stirring frame (212) is movably arranged at the lower end of the inside of the cleaning groove (101), the upper end of the first rotating rod (213) is connected with the stirring frame (212), a worm wheel (216) is arranged at the outer side of a rod body of the first rotating rod (213) positioned in the groove (214), a second rotating rod (217) is movably arranged at the outer side of the rod body of the groove (214), and a worm (215) is arranged at the outer side of the rod body of the second rotating rod (217), and the worm (215) is in meshed connection with the worm wheel (216).
4. The waste glass recycling device according to claim 3, wherein the water outlet pipe (211) is installed at the lower end of the cleaning groove (101) in a penetrating manner, chain wheels (218) are installed at the rear end of the rod body of the second rotating rod (217) and the rear end of the rod body of the transmission shaft (8) respectively, and a chain (219) is installed between the chain wheels (218) in a sleeved manner.
CN202520303746.3U 2025-02-25 2025-02-25 A waste glass recycling equipment Active CN224114671U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202520303746.3U CN224114671U (en) 2025-02-25 2025-02-25 A waste glass recycling equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202520303746.3U CN224114671U (en) 2025-02-25 2025-02-25 A waste glass recycling equipment

Publications (1)

Publication Number Publication Date
CN224114671U true CN224114671U (en) 2026-04-14

Family

ID=99389473

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202520303746.3U Active CN224114671U (en) 2025-02-25 2025-02-25 A waste glass recycling equipment

Country Status (1)

Country Link
CN (1) CN224114671U (en)

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