Glass production raw material crushing and impurity removing device
Through the cooperation of belt conveyor, rotary barrel and electromagnet, combined with the exhaust component and sealing design, the problem of removing iron filings and dust from glass production raw materials is solved, and an efficient and thorough impurity removal effect is achieved.
Patent Information
- Application Number
- CN202422530902.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-21
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2034-10-21
AI Technical Summary
Existing impurity removal devices for glass production raw materials have low efficiency and incomplete impurity removal, especially poor cleaning effect on dust and iron filings.
A belt conveyor is used to deliver the raw materials into the impurity removal box. The iron filings are adsorbed and removed through the cooperation of the rotating barrel and the electromagnet. At the same time, the exhaust component is used to remove dust. The design of the sealing component and the exhaust fan is combined to ensure the impurity removal effect.
It achieves efficient removal of iron filings and dust in glass production raw materials, and improves the thoroughness and efficiency of impurity removal.
Smart Images

Figure CN223351879U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of glass production, in particular to a device for crushing and removing impurities from glass production raw materials. Background Art
[0002] Glass is a silicate non-metallic material formed by fusing silicon dioxide and other chemicals (primarily soda ash, limestone, and quartz). When molten, it forms a continuous network structure. During cooling, its viscosity gradually increases, hardening, and solidifying. Due to its high hardness and excellent light transmittance, glass is now widely used in our daily lives, such as in glass doors and windows in homes, car windows, various glass crafts, and various optical instruments.
[0003] At present, the first step in the glass production process is to crush various production raw materials to facilitate the subsequent proportioning and heating and melting. After being crushed, the glass raw materials usually contain some impurities (such as dust and iron filings, etc.), so the impurities need to be cleaned. However, the existing impurity removal device has low overall impurity removal efficiency and is prone to incomplete impurity removal. For this reason, we propose a glass production raw material crushing and impurity removal device. Utility Model Content
[0004] The technical problem to be solved by the utility model is to overcome the existing defects and provide a device for crushing and removing impurities from glass production raw materials, which can remove dust and impurities in the materials and effectively solve the problems in the background technology.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a device for crushing and removing impurities from raw materials for glass production, comprising an impurity removal box and an impurity removal component;
[0006] Debris removal box: A belt conveyor is installed on the lower side of the interior, a feeding assembly is installed on the upper side of the debris removal box, an exhaust assembly is installed on the right side of the debris removal box, the feeding assembly is connected to the exhaust assembly, and two corresponding sealing assemblies are installed on the left and right sides of the interior of the debris removal box wall;
[0007] Debris removal component: includes a rotating barrel, a connecting barrel, an electromagnet, a brush slip ring, a sprocket ring, a motor and a chain. Three corresponding rotating holes are opened on the left side of the debris removal box. The rotating barrel is rotatably connected inside the rotating hole. The circumferential surface of the rotating barrel is opened with evenly distributed connecting holes. The connecting barrel is fixed inside the connecting hole. The connecting barrel is installed with an electromagnet. The circumferential surface of the rotating barrel is installed with a brush slip ring. The front end of the circumferential surface of the rotating barrel is fixed with a sprocket ring. The three sprocket rings are connected by two chains. A motor is installed on the right side of the debris removal box. The output shaft of the motor is fixed to the right end of the rotating barrel on the rear side. The input ends of the motor and the brush slip ring are electrically connected to the output end of the external control switch group. The input ends of all the electromagnets are electrically connected to the output ends of the three brush slip rings respectively. Debris is removed by setting up the debris removal component.
[0008] Furthermore, the sealing assembly includes an electric telescopic rod and a sealing plate. Two corresponding openings are provided on the left and right sides of the debris removal box. A groove is provided on the upper side of the opening. A sealing plate is slidably connected to the inside of the groove. Two corresponding electric telescopic rods are installed on the upper side of the debris removal box. The telescopic arms of the electric telescopic rods are fixed on the upper side of the sealing plate. The input end of the electric telescopic rod is electrically connected to the output end of the external control switch group. The debris removal box is sealed by setting a sealing assembly.
[0009] Furthermore, the feed assembly includes a conical frame and a discharge pipe. The conical frame is fixed on the upper side of the impurity removal box, and the discharge pipe is fixed on the upper side of the inside of the conical frame. The dust is injected into the interior of the installation box by setting the feed assembly.
[0010] Furthermore, the exhaust assembly includes an installation box, a filter, a mounting plate and an exhaust fan. The installation box is fixed on the right side of the dust removal box, a strip opening is opened on the upper side of the installation box, the lower end of the discharge pipe is fixed inside the strip opening, a filter is fixed inside the installation box, the strip opening is located on the left side of the filter, a installation plate is fixed on the right side of the interior of the installation box, an exhaust fan is installed on the left side of the installation plate, the input end of the exhaust fan is electrically connected to the output end of the external control switch group, and the dust inside the dust removal box is extracted by setting the exhaust assembly.
[0011] Furthermore, a material extraction hole is provided on the rear side of the installation box, a baffle is hinged inside the material extraction hole, and a handle is fixed on the side of the baffle. By providing the handle, after the raw materials for glass production are cleaned, the baffle can be pulled by the handle to open the installation box and remove the dust stored inside.
[0012] Furthermore, an observation port is provided on the upper side of the conical frame, and a transparent plate is fixed inside the observation port. The provision of the transparent plate enables the user to observe the situation inside the installation box very conveniently.
[0013] Compared with the prior art, the beneficial effects of the present invention are as follows: the device for crushing and removing impurities from raw materials for glass production has the following advantages:
[0014] 1. The raw materials for glass production are poured into the impurity removal box by setting up a belt conveyor. During the pouring process, the motor is started to rotate the three rotating barrels. The rotation of the three rotating barrels drives all the connected barrels to rotate and stir the raw materials entering the impurity removal box. During the stirring process, all the electromagnets are started to absorb the iron filings and impurities in the raw materials. In this way, the iron filings and impurities in the raw materials can be removed.
[0015] 2. By setting up the exhaust assembly, the exhaust fan can be started when all the connecting barrels are stirring the raw materials for glass production, so that the dust generated during the stirring of the raw materials can be sucked into the interior of the installation box through the conical frame, so that the dust in the raw materials for glass production can be removed. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 This is a schematic diagram of the front structure of the utility model;
[0017] Figure 2 This is a schematic diagram of the structure of the impurity removal component of the utility model;
[0018] Figure 3 This is a front sectional view of the utility model;
[0019] Figure 4 This is a schematic diagram of the structure of the air extraction component of the utility model.
[0020] In the figure: 1 dust removal box, 2 belt conveyor, 3 dust removal assembly, 31 rotary barrel, 32 connecting barrel, 33 electromagnet, 34 brush slip ring, 35 sprocket ring, 36 motor, 37 chain, 4 sealing assembly, 41 electric telescopic rod, 42 sealing plate, 5 feeding assembly, 51 conical frame, 52 discharge pipe, 6 exhaust assembly, 61 installation box, 62 filter screen, 63 installation plate, 64 exhaust fan, 7 baffle, 8 handle, 9 transparent plate. DETAILED DESCRIPTION
[0021] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0022] See also Figure 1-4 , this embodiment provides a technical solution: a glass production raw material crushing and impurity removal device, including an impurity removal box 1 and an impurity removal component 3;
[0023] The debris removal box 1: a belt conveyor 2 is installed on the lower side of the interior, a feeding assembly 5 is installed on the upper side of the debris removal box 1, and an exhaust assembly 6 is installed on the right side of the debris removal box 1. The feeding assembly 5 is connected to the exhaust assembly 6. Two corresponding sealing assemblies 4 are installed on the left and right sides of the interior of the box wall of the debris removal box 1. The sealing assembly 4 includes an electric telescopic rod 41 and a sealing plate 42. Two corresponding openings are provided on the left and right sides of the debris removal box 1. A groove is provided on the upper side of the opening. A sealing plate 42 is slidably connected to the inside of the groove. Two corresponding electric telescopic rods 41 are installed on the upper side of the debris removal box 1. The telescopic arm of the electric telescopic rod 41 is fixed on the upper side of the sealing plate 42. The input end of the electric telescopic rod 41 is electrically connected to the output end of the external control switch group. The feeding assembly 5 includes a conical frame 51 and a discharge pipe 52. The upper side of the debris removal box 1 is fixed. A conical frame 51 is provided, a discharge pipe 52 is fixed on the upper side of the interior of the conical frame 51, an exhaust assembly 6 comprises an installation box 61, a filter screen 62, a mounting plate 63 and an exhaust fan 64, an installation box 61 is fixed on the right side of the impurity removal box 1, a strip opening is provided on the upper side of the installation box 61, the lower end of the discharge pipe 52 is fixed inside the strip opening, a filter screen 62 is fixed inside the installation box 61, the strip opening is located on the left side of the filter screen 62, a mounting plate 63 is fixed on the right side of the interior of the installation box 61, an exhaust fan 64 is installed on the left side of the installation plate 63, the input end of the exhaust fan 64 is electrically connected to the output end of the external control switch group, the dust inside the impurity removal box 1 is extracted by arranging the exhaust assembly 6, the dust is injected into the interior of the installation box 61 by arranging the feeding assembly 5, and the impurity removal box 1 is sealed by arranging the sealing assembly 4;
[0024] The impurity removal component 3 includes a rotary barrel 31, a connecting barrel 32, an electromagnet 33, a brush slip ring 34, a sprocket ring 35, a motor 36 and a chain 37. Three corresponding rotary holes are provided on the left side of the impurity removal box 1. The rotary barrel 31 is rotatably connected inside the rotary hole. Evenly distributed connecting holes are provided on the circumferential surface of the rotary barrel 31. The connecting barrel 32 is fixed inside the connecting hole. The electromagnet 33 is installed inside the connecting barrel 32. The brush slip ring 34 is installed on the circumferential surface of the rotary barrel 31. The front end of the circumferential surface of the rotary barrel 31 is fixed with a sprocket ring 35. The three sprocket rings 35 are connected by two chains 37. A motor 36 is installed on the right side of the impurity removal box 1. The output shaft of the motor 36 is fixed to the right end of the rotary barrel 31 on the rear side. The input ends of the motor 36 and the brush slip ring 34 are electrically connected to the output end of the external control switch group. The input ends of all the electromagnets 33 are electrically connected to the output ends of the three brush slip rings 34 respectively. Impurities are removed by setting the impurity removal component 3.
[0025] Among them, a material extraction hole is opened on the rear side of the installation box 61, and a baffle 7 is hinged inside the material extraction hole. A handle 8 is fixed on the side of the baffle 7. By setting the handle 8, after the raw materials for glass production are cleaned, the baffle 7 can be pulled by the handle 8 to open the installation box 61 and take out the dust stored inside.
[0026] An observation port is provided on the upper side of the conical frame 51 , and a transparent plate 9 is fixed inside the observation port. The transparent plate 9 allows the user to conveniently observe the situation inside the installation box 1 .
[0027] The working principle of the glass production raw material crushing and impurity removal device provided by the present invention is as follows: when in use, the glass production raw materials are placed on the top of the belt conveyor 2, and then the belt conveyor 2 is started to inject the glass production raw materials into the interior of the impurity removal box 1. During the injection process, the motor 36 is started to rotate the rear rotary barrel 31, and the rotation of the rear rotary barrel 31 drives the rear sprocket ring 35 to rotate, thereby causing the three sprocket rings 35 to rotate, and the rotation of the three sprocket rings 35 drives the three rotary barrels 31 to rotate, and the rotation of the three rotary barrels 31 drives all the connecting barrels 32 to rotate to enter the impurity removal box. The raw materials inside the box 1 are stirred, and during the stirring process, all the electromagnets 33 are started to absorb the iron filings impurities in the raw materials. In this way, the iron filings impurities in the raw materials can be removed. In the process of removing the iron filings, the two electric telescopic rods 41 can be started to make the sealing plate 42 fit downwardly with the upper side of the belt conveyor 2. After fitting, the impurity removal box 1 is sealed, and after sealing, the exhaust fan 64 is started to draw the dust generated during the stirring of the raw materials into the interior of the installation box 61 through the conical frame 51. In this way, the dust in the raw materials for glass production can be removed.
[0028] It is worth noting that the external control switch group disclosed in the above embodiment is provided with buttons corresponding to the belt conveyor 2, the motor 36, the electric telescopic rod 41 and the exhaust fan 64. The belt conveyor 2 can be a 01 type belt conveyor, the exhaust fan 64 can be an AUX-APB30-BS exhaust fan, the motor 36 can be a 1LE0003 three-phase asynchronous motor, the electric telescopic rod 41 can be a TGC-A high-thrust electric telescopic rod, and the brush slip ring 34 can be an MT rotating conductive slip ring.
[0029] The above description is merely an embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made by using the contents of the description and drawings of the present invention, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.
Claims
1. A device for crushing and removing impurities from raw materials for glass production, characterized by: It comprises a debris removal box (1) and a debris removal component (3); The impurity removal box (1) is provided with a belt conveyor (2) on the lower side thereof, a feeding assembly (5) is provided on the upper side thereof, an exhaust assembly (6) is provided on the right side thereof, the feeding assembly (5) and the exhaust assembly (6) are connected to each other, and two corresponding sealing assemblies (4) are provided on the left and right sides of the inner wall of the impurity removal box (1); The impurity removal component (3) comprises a rotary barrel (31), a connecting barrel (32), an electromagnet (33), a brush slip ring (34), a sprocket ring (35), a motor (36) and a chain (37). The left side of the impurity removal box (1) is provided with three corresponding rotary holes, the interior of the rotary holes is rotatably connected to the rotary barrel (31), the circumferential surface of the rotary barrel (31) is provided with evenly distributed connecting holes, the interior of the connecting holes is fixed with the connecting barrel (32), the interior of the connecting barrel (32) is provided with an electromagnet (33), the circumference of the rotary barrel (31) is provided with a plurality of connecting holes, and the connecting barrel (32) is fixed with the connecting barrel (32). The electromagnet (33) is installed inside the connecting barrel (32). A brush slip ring (34) is installed on the circumferential surface, a sprocket ring (35) is fixed to the front end of the circumferential surface of the rotating barrel (31), and the three sprocket rings (35) are connected by two chains (37). A motor (36) is installed on the right side of the debris removal box (1), and the output shaft of the motor (36) is fixed to the right end of the rotating barrel (31) on the rear side. The input ends of the motor (36) and the brush slip ring (34) are electrically connected to the output end of the external control switch group, and the input ends of all the electromagnets (33) are electrically connected to the output ends of the three brush slip rings (34).
2. The device for crushing and removing impurities from raw materials for glass production according to claim 1, characterized in that: The sealing assembly (4) comprises an electric telescopic rod (41) and a sealing plate (42); two corresponding openings are provided on the left and right sides of the debris removal box (1); a groove is provided on the upper side of the opening; a sealing plate (42) is slidably connected inside the groove; two corresponding electric telescopic rods (41) are installed on the upper side of the debris removal box (1); the telescopic arms of the electric telescopic rods (41) are fixed on the upper side of the sealing plate (42); and the input end of the electric telescopic rod (41) is electrically connected to the output end of an external control switch group.
3. The device for crushing and removing impurities from raw materials for glass production according to claim 1, characterized in that: The feed assembly (5) comprises a conical frame (51) and a discharge pipe (52); the conical frame (51) is fixed on the upper side of the impurity removal box (1); and the discharge pipe (52) is fixed on the upper side of the conical frame (51).
4. The device for crushing and removing impurities from raw materials for glass production according to claim 3, characterized in that: The exhaust assembly (6) comprises an installation box (61), a filter (62), a installation plate (63) and an exhaust fan (64). The installation box (61) is fixed on the right side of the impurity removal box (1). A strip opening is provided on the upper side of the installation box (61). The lower end of the discharge pipe (52) is fixed inside the strip opening. A filter (62) is fixed inside the installation box (61). The strip opening is located on the left side of the filter (62). A installation plate (63) is fixed on the right side of the installation box (61). An exhaust fan (64) is installed on the left side of the installation plate (63). The input end of the exhaust fan (64) is electrically connected to the output end of an external control switch group.
5. The device for crushing and removing impurities from raw materials for glass production according to claim 4, characterized in that: A material taking hole is provided on the rear side of the installation box (61), a baffle (7) is hinged inside the material taking hole, and a handle (8) is fixed on the side of the baffle (7).
6. The device for crushing and removing impurities from raw materials for glass production according to claim 3, characterized in that: An observation port is provided on the upper side of the conical frame (51), and a transparent plate (9) is fixed inside the observation port.