Daily glass recycling and smelting device
Through the design of rolling, crushing, heating and mixing components of the daily glass recycling smelting device, the problem of uneven smelting caused by inconsistent glass materials is solved, and the smelting efficiency of glass waste is improved.
Patent Information
- Application Number
- CN202422701802.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-06
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2034-11-06
AI Technical Summary
The existing glass recycling and smelting devices have uneven smelting decomposition due to inconsistent glass materials, and the smelting effect is poor, which affects the smelting efficiency.
A daily glass recycling and smelting device is designed, including rolling components, crushing components, heating components and mixing components. The transmission components drive the crushing components to rotate, crush and heat smelting the glass waste, and mix and stir through the stirring components to improve the smelting efficiency.
Through the synergistic action of rolling, crushing, heating and stirring components, uniform smelting of glass waste is achieved and smelting efficiency is improved.
Smart Images

Figure CN223280751U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of glass melting devices, in particular to a daily glass recycling and melting device. Background Art
[0002] Glass is an amorphous inorganic non-metallic material. It is generally made of a variety of inorganic minerals as the main raw materials, with a small amount of auxiliary raw materials added. Daily glass is often used in daily life, so it requires large-scale production. Defective products are prone to occur during the production process, and defective products require the use of crushing and recycling equipment.
[0003] In actual use, when the recycling and melting device melts and decomposes the glass waste, due to the inconsistent specifications of the glass material, the glass waste is melted and decomposed unevenly, and a good melting effect cannot be achieved. This needs to be improved urgently, and it is inconvenient to achieve the problem of improving the melting efficiency of the glass waste.
[0004] Therefore, in order to solve the above-mentioned problem of inconvenience in realizing the interference limiting pipeline, a daily glass recycling and melting device can be designed. By starting the crushing component, the crushing component can be driven to rotate through the transmission component, and the glass waste can be crushed and crushed by the crushing component. Subsequently, the glass waste can be crushed and crushed for the second time through the crushing component, and the crushed glass waste falls into the inside of the melting bin. By starting the heating component, the glass fragments inside the melting bin can be heated and melted. At the same time, by starting the stirring component, the glass waste can be mixed and stirred, thereby improving the melting efficiency of the glass waste. Utility Model Content
[0005] In order to overcome the problem that when the glass melting device is used, the recycling melting device melts and decomposes the glass waste, due to the inconsistent specifications of the glass material, the glass waste is not melted and decomposed uniformly, and a good melting effect cannot be achieved. This problem needs to be improved urgently, and it is inconvenient to improve the efficiency of improving the melting of glass waste.
[0006] The technical solution of the utility model is: a daily glass recycling and melting device, including a melting bin, a crushing bin, a feeding port, a discharging port, a rolling assembly, a crushing assembly, a transmission assembly, a heating assembly and a stirring assembly; a crushing bin is provided above the melting bin, a feeding port is provided above the crushing bin, a discharge port is provided on the bottom wall of the melting bin, a crushing assembly is provided inside the crushing bin, a crushing assembly is provided above the crushing assembly, a transmission assembly is provided at one end of the crushing assembly, a heating assembly is provided inside the melting bin, and a stirring assembly is provided inside the melting bin.
[0007] Preferably, when the glass melting device is in use, first, the glass waste is fed into the crushing bin through the feeding port, and then, the crushing component is started to drive the crushing component to rotate through the transmission component, and the glass waste can be crushed and crushed by the crushing component. Subsequently, the glass waste can be crushed and crushed for the second time by the crushing component, and the crushed glass waste falls into the melting bin, and the heating component is started to heat and melt the glass fragments inside the melting bin. At the same time, the stirring component is started to mix and stir the glass waste, thereby improving the melting efficiency of the glass waste.
[0008] Preferably, the rolling assembly includes a rolling motor, a rolling shaft, a rolling wheel and an arc groove filter plate; a rolling motor is provided on one side of the crushing bin, a rolling shaft is provided at the output end of the rolling motor, a rolling wheel is provided on the side wall of the rolling shaft, an arc groove filter plate is provided on the inside of the crushing bin, and the arc groove filter plate is provided below the rolling wheel.
[0009] Preferably, the crushing assembly includes a driving shaft, a driven shaft and a crushing wheel; a driving shaft is provided inside the crushing bin, a driven shaft is provided inside the crushing bin, a crushing wheel is provided on the side wall of the driving shaft, two groups of crushing wheels are provided, and another crushing wheel is provided on the side wall of the driven shaft.
[0010] Preferably, the transmission assembly includes a rotating wheel and a transmission belt; a rotating wheel is provided at one end of the rolling shaft, a transmission belt is provided on the outside of the rotating wheel, and the rotating wheel is rotatably connected to the transmission belt.
[0011] Preferably, the transmission assembly also includes a driving wheel and a driven wheel; a driving wheel is provided at one end of the driving shaft, the driving wheel is provided inside the transmission belt, and the driving wheel is rotatably connected to the transmission belt; a driven wheel is provided at one end of the driven shaft, the driven wheel is provided inside the transmission belt, and the driven wheel is rotatably connected to the transmission belt.
[0012] Preferably, the heating assembly includes a heating conduit and an installation cavity; the interior of the smelting chamber is provided with an installation cavity, the interior of the installation cavity is provided with a heating conduit, and a plurality of groups of heating conduits are provided.
[0013] Preferably, the stirring assembly includes a stirring motor, a stirring shaft and a stirring rod; the stirring motor is provided on the bottom wall of the smelting bin, the stirring shaft is provided at the output end of the stirring motor, the stirring rod is provided on the side wall of the stirring shaft, and the stirring rod is provided in multiple groups.
[0014] Beneficial effects of the utility model:
[0015] 1. When the glass melting device is in use, first, the glass waste is fed into the crushing bin through the feeding port, then the crushing assembly is started to drive the crushing assembly to rotate through the transmission assembly, and the glass waste is crushed by the crushing assembly. Subsequently, the glass waste is crushed for the second time by the crushing assembly, and the crushed glass waste falls into the melting bin, and the heating assembly is started to heat and melt the glass fragments in the melting bin. At the same time, the stirring assembly is started to mix and stir the glass waste, thereby improving the melting efficiency of the glass waste. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 Shown is a first three-dimensional structural schematic diagram of the daily glass recycling and melting device of the present utility model;
[0017] Figure 2 Shown is a schematic diagram of the first partial three-dimensional structure of the daily glass recycling and melting device of the utility model;
[0018] Figure 3 Shown is a schematic diagram of the second partial three-dimensional structure of the daily glass recycling and melting device of the present invention;
[0019] Figure 4 Shown is a schematic diagram of the third partial three-dimensional structure of the daily glass recycling and melting device of the present utility model;
[0020] Explanation of the accompanying symbols: 1. Smelting chamber; 2. Crushing chamber; 3. Feeding port; 4. Discharging port; 101. Crushing motor; 102. Crushing shaft; 103. Crushing wheel; 104. Arc slot filter plate; 201. Driving shaft; 202. Driven shaft; 203. Crushing wheel; 301. Rotating wheel; 302. Transmission belt; 303. Driving wheel; 304. Driven wheel; 401. Heating tube; 402. Installation cavity; 501. Stirring motor; 502. Stirring shaft; 503. Stirring rod. DETAILED DESCRIPTION
[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0022] See also Figures 1-4 The utility model provides an embodiment: a daily glass recycling and melting device, including a melting bin 1, a crushing bin 2, a feeding port 3, a discharging port 4, a rolling assembly, a crushing assembly, a transmission assembly, a heating assembly and a stirring assembly; the crushing bin 2 is provided above the melting bin 1, the feeding port 3 is provided above the crushing bin 2, the discharge port 4 is provided on the bottom wall of the melting bin 1, the crushing bin 2 is provided with a rolling assembly, the crushing assembly is provided above the crushing assembly, a transmission assembly is provided at one end of the rolling assembly, the melting bin 1 is provided with a heating assembly, and the melting bin 1 is provided with a stirring assembly.
[0023] See also Figure 2 The crushing assembly includes a crushing motor 101, a crushing shaft 102, a crushing wheel 103 and an arc groove filter plate 104; a crushing motor 101 is provided on one side of the crushing bin 2, and a crushing shaft 102 is provided at the output end of the crushing motor 101, and a crushing wheel 103 is provided on the side wall of the crushing shaft 102. An arc groove filter plate 104 is provided inside the crushing bin 2, and the arc groove filter plate 104 is provided below the crushing wheel 103; starting the crushing motor 101 can drive the crushing wheel 103 to rotate through the crushing shaft 102, and the crushing wheel 103 can crush and crush the glass waste inside the arc groove filter plate 104, and the crushed glass debris falls to the bottom through the arc groove filter plate 104; the crushing assembly includes a driving shaft 201, a driven shaft 202 and a crushing wheel 203; the crushing bin 2 is provided with a driving shaft 201, and the crushing bin 2 is provided with a crushing wheel 203. A driven shaft 202 is provided inside, and a crushing wheel 203 is provided on the side wall of the driving shaft 201. Two groups of crushing wheels 203 are provided, and the other crushing wheel 203 is provided on the side wall of the driven shaft 202; the driving shaft 201 and the driven shaft 202 can be driven to rotate synchronously through the transmission assembly, and then the two groups of crushing wheels 203 can be driven to rotate simultaneously through the driving shaft 201 and the driven shaft 202, and then the glass waste can be crushed and crushed by the two groups of crushing wheels 203; the transmission assembly includes a rotating wheel 301 and a transmission belt 302; a rotating wheel 301 is provided at one end of the rolling shaft 102, and a transmission belt 302 is provided on the outside of the rotating wheel 301, and the rotating wheel 301 is rotatably connected to the transmission belt 302; the rolling shaft 102 can drive the transmission belt 302 to rotate through the rolling wheel 103.
[0024] See also Figure 3-Figure 4302 is provided with a driving wheel 303, and the driving wheel 303 is provided in the transmission belt 302, and the driving wheel 303 is rotatably connected with the transmission belt 302. The driven shaft 202 is provided with a driven wheel 304 at one end, and the driven wheel 304 is provided in the transmission belt 302, and the driven wheel 304 is rotatably connected with the transmission belt 302. The transmission belt 302 can drive the driving shaft 201 to rotate through the driving wheel 303. At the same time, the transmission belt 302 can drive the driven shaft 202 to rotate through the driven wheel 304. Moreover, the driving shaft 201 and the driven shaft 202 can respectively drive the two sets of crushing wheels 203 to rotate, and the two sets of crushing wheels 203 can crush the glass waste. The heating component includes a heating pipe 401 and An installation cavity 402 is provided inside the smelting bin 1, and a heating tube 401 is provided inside the installation cavity 402, and a plurality of heating tubes 401 are provided; the inner wall of the smelting bin 1 can be heated by the plurality of heating tubes 401, so that the glass scrap inside the smelting bin 1 can be heated and smelted; the stirring assembly includes a stirring motor 501, a stirring shaft 502 and a stirring rod 503; the stirring motor 501 is provided on the bottom wall of the smelting bin 1, the stirring shaft 502 is provided at the output end of the stirring motor 501, and the stirring rod 503 is provided on the side wall of the stirring shaft 502, and a plurality of stirring rods 503 are provided; when the stirring motor 501 is started, the stirring shaft 502 can drive the plurality of stirring rods 503 to adjust and rotate, and the plurality of stirring rods 503 can be used to mix and stir the glass waste, thereby improving the smelting efficiency of the glass waste.
[0025] When the glass melting device is in use, first, waste glass is fed into the crushing bin 2 through the feeding port 3, then the crushing motor 101 is started to drive the crushing shaft 102 to rotate, the crushing shaft 102 can drive the transmission belt 302 to rotate via the crushing wheel 103, the transmission belt 302 can drive the driving shaft 201 to rotate via the driving wheel 303, and at the same time, the transmission belt 302 can drive the driven shaft 202 to rotate via the driven wheel 304, and the driving shaft 201 and the driven shaft 202 can respectively drive the two sets of crushing wheels 203 to rotate, and the two sets of crushing wheels 203 can crush the waste glass;
[0026] Then, the crushing wheel 103 is driven to rotate by the crushing shaft 102, so that the glass waste inside the arc groove filter plate 104 can be crushed;
[0027] The crushed glass debris falls into the interior of the smelting chamber 1 through the arc slot filter plate 104. In addition, the inner wall of the smelting chamber 1 can be heated by multiple sets of heating pipes 401, thereby heating and melting the glass debris inside the smelting chamber 1.
[0028] At the same time, starting the stirring motor 501 can drive the multiple groups of stirring rods 503 to adjust and rotate through the stirring shaft 502, and the multiple groups of stirring rods 503 can mix and stir the glass waste, thereby improving the melting efficiency of the glass waste.
[0029] Through the above steps, when the glass melting device is in use, first, the glass waste is fed into the crushing bin 2 through the feeding port 3, and then, the crushing component is started to drive the crushing component to rotate through the transmission component, and the glass waste can be crushed and crushed by the crushing component. Subsequently, the glass waste can be crushed and crushed for the second time by the crushing component, and the crushed glass waste falls into the melting bin 1. The heating component can be started to heat and melt the glass fragments in the melting bin 1, and at the same time, the stirring component can be started to mix and stir the glass waste, thereby improving the melting efficiency of the glass waste.
[0030] The embodiments of the present invention are described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Various changes can be made within the scope of knowledge possessed by those skilled in the art without departing from the purpose of the present invention.
Claims
1. A daily glass recycling and melting device, comprising a melting chamber (1); characterized in that: The invention also includes a crushing bin (2), a feeding port (3), a discharging port (4), a rolling assembly, a crushing assembly, a transmission assembly, a heating assembly and a stirring assembly; a crushing bin (2) is provided above the smelting bin (1), a feeding port (3) is provided above the crushing bin (2), a discharging port (4) is provided on the bottom wall of the smelting bin (1), a crushing assembly is provided inside the crushing bin (2), a crushing assembly is provided above the crushing assembly, a transmission assembly is provided at one end of the crushing assembly, a heating assembly is provided inside the smelting bin (1), and a stirring assembly is provided inside the smelting bin (1).
2. The daily glass recycling and melting device according to claim 1, characterized in that: The rolling assembly comprises a rolling motor (101), a rolling shaft (102), a rolling wheel (103) and an arc slot filter plate (104); the rolling motor (101) is provided on one side of the crushing bin (2); the rolling shaft (102) is provided at the output end of the rolling motor (101); the rolling wheel (103) is provided on the side wall of the rolling shaft (102); the arc slot filter plate (104) is provided inside the crushing bin (2); and the arc slot filter plate (104) is provided below the rolling wheel (103).
3. The daily glass recycling and melting device according to claim 1, characterized in that: The crushing assembly comprises a driving shaft (201), a driven shaft (202) and a crushing wheel (203); the driving shaft (201) is arranged inside the crushing bin (2), the driven shaft (202) is arranged inside the crushing bin (2), a crushing wheel (203) is arranged on the side wall of the driving shaft (201), two groups of crushing wheels (203) are provided, and the other crushing wheel (203) is arranged on the side wall of the driven shaft (202).
4. The domestic glass recycling and melting device according to claim 2, characterized in that: The transmission assembly includes a rotating wheel (301) and a transmission belt (302); one end of the rolling shaft (102) is provided with the rotating wheel (301), the outside of the rotating wheel (301) is provided with a transmission belt (302), and the rotating wheel (301) is rotatably connected to the transmission belt (302).
5. The domestic glass recycling and melting device according to claim 3, characterized in that: The transmission assembly further comprises a driving wheel (303) and a driven wheel (304); a driving wheel (303) is provided at one end of the driving shaft (201), the driving wheel (303) is arranged inside the transmission belt (302), and the driving wheel (303) is rotationally connected to the transmission belt (302); a driven wheel (304) is provided at one end of the driven shaft (202), the driven wheel (304) is arranged inside the transmission belt (302), and the driven wheel (304) is rotationally connected to the transmission belt (302).
6. The domestic glass recycling and melting device according to claim 5, characterized in that: The heating component comprises a heating conduit (401) and an installation cavity (402); the interior of the smelting chamber (1) is provided with an installation cavity (402), the interior of the installation cavity (402) is provided with a heating conduit (401), and the heating conduit (401) is provided in multiple groups.
7. The domestic glass recycling and melting device according to claim 5, characterized in that: The stirring assembly comprises a stirring motor (501), a stirring shaft (502) and a stirring rod (503); the stirring motor (501) is arranged on the bottom wall of the smelting bin (1), the stirring shaft (502) is arranged at the output end of the stirring motor (501), the stirring rod (503) is arranged on the side wall of the stirring shaft (502), and the stirring rod (503) is provided in multiple groups.