Fused white corundum feeding device
By introducing vacuum cleaner components into the white corundum loading device, the problem of dust scattering is solved, the effective collection of dust and the cleanliness of the environment are achieved, labor intensity is reduced, and workers' health and work efficiency are improved.
Patent Information
- Application Number
- CN202422604439.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-28
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2034-10-28
AI Technical Summary
During the existing white corundum loading process, the problem of dust dispersion has not been effectively solved, which affects workers' health and the cleanliness of the processing environment, increases labor intensity, and cannot meet the needs of use.
An electric melted white corundum loading device is designed, including a shell, a twisted dragon conveyor blade and a U-shaped box vacuum cleaner assembly. The vacuum cleaner assembly includes a confluence area, a vacuum cleaner filter area and a drive fan. The dust is collected through the vacuum cleaner assembly to prevent it from scattering. The vacuum cleaner filter assembly is conveniently disassembled and assembled, reducing the difficulty of operation.
Effectively collect and reduce dust dispersion, improve the air quality of workers' working environment, reduce labor intensity, ensure the cleanliness of the processing environment, improve work process, and meet the needs of use.
Smart Images

Figure CN223201220U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of white corundum processing, in particular to an electric fused white corundum feeding device. Background Art
[0002] Fused white corundum is made from industrial alumina or calcined alumina, sieved into various particle sizes, and melted at high temperatures in an electric arc furnace. It is suitable for manufacturing ceramics, resin consolidation molds, as well as for grinding, polishing, sandblasting, precision casting, etc. It is an important raw material for making refractory materials. The conveying device is a mechanized and automated conveying tool for the material handling system.
[0003] At present, the loading process of white corundum is mostly carried out by using an auger conveyor or a conveyor belt in the prior art to lift the material at a low position to a high position, thereby completing the material loading process. However, the existing conveying device lacks the problem of dust scattering and dust collection during the transportation of white corundum. In this way, workers work in such an environment for a long time, which is not conducive to their health. In addition, the cleanliness of the external processing environment will increase people's labor intensity, affect the work process, and cannot meet the use requirements. Utility Model Content
[0004] In response to the technical problems existing in the above-mentioned white corundum material feeding process, the utility model proposes an electric fused white corundum feeding device with reasonable design, simple structure, convenient processing, and the ability to collect dust generated during the white corundum transportation process to reduce the possibility of dust scattering, thereby improving the air quality in the workers' working environment and benefiting the workers' health. At the same time, it ensures the cleanliness of the processing environment, reduces labor intensity, improves the work progress, and effectively meets the use needs.
[0005] In order to achieve the above-mentioned purpose, the technical solution adopted by the present invention is an electric fused white corundum feeding device, including a feeding device body, the feeding device body includes a shell, an auger conveying blade is arranged in the shell, a support frame is arranged on the outside of the shell, a dust suction assembly is arranged on the outside of the shell, the dust suction assembly includes a box body with a U-shaped design, and the box body is divided into three areas, wherein its geometric center is established as a confluence area, and the boxes on both sides of the confluence area are established as dust suction and filtering areas, a protective filter plate is provided at the connection between the dust suction and filtering areas of the shell and the box body, a dust suction and filtering assembly is provided above the dust suction and filtering area of the box body, a dust suction pipeline is provided on the outside of the box body, the dust suction pipeline includes a main pipe installed in the same direction as the length of the box body, a branch pipe is provided on the outside of the main pipe, and is connected to the dust suction and filtering assembly, a collecting pipe is provided on the outside of the two main pipes, and is connected to the reflux area of the box body, and a driving fan is provided above the box body.
[0006] Preferably, the dust collecting and filtering assembly includes a placement rack that can be pulled out relative to the box body, a through slot is provided at the bottom of the placement rack, a dust removal filter plate is provided in the placement rack, and heat dissipation fins are provided on the outside of the box body below the dust collecting and filtering assembly.
[0007] Preferably, a movable rod is provided at the corner of the placement rack, a sliding block with a conical table design is provided at the end of the movable rod, a telescopic spring is provided on the movable rod located on one side of the sliding block, a limiting rod is provided above the box body corresponding to the movable rod, a placement slot is provided in the box body corresponding to the limiting rod, a slide plate with an inclined design is provided on one side of the limiting rod, a transition block is provided on the other side of the limiting rod, and a transition slope is provided below the transition block.
[0008] Preferably, a feed port is provided above one side of the shell, a discharge port is provided below the other side of the shell, and a drive assembly is provided at the end of the shell.
[0009] Compared with the prior art, the advantages and positive effects of the present invention are:
[0010] 1. The utility model provides an electric fused white corundum feeding device, which can perform dust collection during the material transportation process through the dust collection component, thereby preventing dust from scattering, ensuring the cleanliness of the production and processing site, and reducing people's labor intensity. At the same time, the dust collection and filtering component can be conveniently disassembled and assembled, reducing the difficulty of operation, improving the work progress, and meeting the use requirements. The device has a reasonable design, a simple structure, and is easy to process. It can complete the collection of dust generated during the transportation of white corundum to reduce the possibility of its scattering, thereby improving the air quality in the workers' working environment and benefiting the workers' health. At the same time, it ensures the cleanliness of the processing environment, reduces labor intensity, improves the work progress, and effectively meets the use requirements. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, a brief introduction will be given below to the drawings required for use in the description of the embodiments. Obviously, the drawings described below are some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative labor.
[0012] Figure 1 This is a structural diagram of a fused white corundum feeding device;
[0013] Figure 2 This is a structural schematic diagram of an electric fused white corundum feeding device from another perspective;
[0014] Figure 3This is a structural front view of a fused white corundum feeding device;
[0015] Figure 4 This is a partial structural side view of a fused white corundum feeding device;
[0016] Figure 5 This is an enlarged schematic diagram of part of the internal structure of the dust collection and filtering component;
[0017] In the above figures, 1. shell; 1a. feed port; 1b. discharge port; 1c. drive assembly; 2. auger conveyor blade; 3. support frame; 4. box; 41. confluence area; 42. dust collection and filtration area; 43. placement slot; 5. protective filter plate; 6. dust collection and filtration assembly; 61. placement rack; 611. through slot; 62. dust collection filter plate; 63. heat dissipation fin; 7. dust collection pipeline; 71. main pipe; 72. branch pipe; 73. collecting pipe; 8. driving fan; 9. movable rod; 91. sliding block; 92. telescopic spring; 10. limit rod; 101. slide plate; 102. transition block; 1021. transition slope. DETAILED DESCRIPTION
[0018] In order to more clearly understand the above-mentioned purpose, features and advantages of the present invention, the present invention is further described below in conjunction with the accompanying drawings and embodiments. It should be noted that the embodiments of the present application and the features therein can be combined with each other without conflict.
[0019] In the following description, many specific details are set forth to facilitate a full understanding of the present invention. However, the present invention may also be implemented in other ways than those described herein. Therefore, the present invention is not limited to the specific embodiments disclosed in the following specification.
[0020] Examples, such as Figures 1 to 5As shown, a fused white corundum feeding device includes a feeding device body, the feeding device body includes a shell 1, and an auger conveying blade 2 is arranged in the shell 1. This design is an existing mature and conventional technical means, and the specific details are not repeated. When in use, it can be tilted to transport the material at a low position to a high position. This setting method is also an existing conventional means. A support frame 3 is arranged on the outside of the shell 1, which is used to ensure the stability of the equipment installation and ensure the effective implementation of the material feeding work; this embodiment aims to solve the existing feeding device There is a possibility of dust scattering during use. Specifically, a dust collection component is provided on the outside of the shell 1. The dust collection component includes a box body 4 designed in a U shape. The box body 4 is divided into three areas, among which the geometric center is set as a confluence area 41. Of course, a component with an adsorption function can also be set up in the confluence area 41 to prevent the output air from affecting the processing environment. The boxes 4 on both sides of the confluence area 41 are set as dust collection filter areas 42. A protective filter plate 5 is provided at the connection between the dust collection filter areas 42 of the shell 1 and the box body 4. A dust collection filter assembly 6 is provided above the dust collection filter area 42 of the box body 4, and a dust collection pipeline 7 is provided on the outside of the box body 4. The dust collection pipeline 7 includes a main pipe 71 installed in the same length direction as the box body 4. A branch pipe 72 is provided on the outside of the main pipe 71 and is connected to the dust collection filter assembly 6. A collecting pipe is provided on the outside of the two main pipes 71 and is connected to the reflux area of the box body 4. A driving fan 8 is provided above the box body 4. The specific description is: the function of the driving fan 8 is to provide driving power for absorbing dust in the shell 1, that is, the driving fan 8 is provided to provide driving power for absorbing dust in the shell 1. The driving fan 8 is running and allows the air in the dust collection component to circulate. When the material in the shell 1 is being transported, the dust will be discharged through the protective filter plate 5 and move towards the dust collection filter component 6, thereby completing the absorption of the dust and the like. The air continues to flow into the dust collection pipeline 7 and is transported to the confluence area 41, and then discharged outward through the driving fan 8, completing the absorption and collection of the dust generated during the material transportation process, reducing the possibility of its dispersion, especially preventing the dust from being dispersed from the discharge port 1b, and ensuring the cleanliness of the processing environment;
[0021] In the above process: through the dust collection component that is set up, it can perform dust collection during the material transportation process to prevent dust from scattering, ensure the cleanliness of the production and processing site, and reduce people's labor intensity. At the same time, the dust collection and filtering component 6 set up can be conveniently disassembled and assembled, reducing the difficulty of operation, improving the work progress, and meeting the use requirements; the device is reasonably designed, simple in structure, easy to process and can complete the collection of dust generated during the transportation of white corundum to reduce the possibility of its scattering, thereby improving the air quality in the workers' working environment, which is beneficial to the workers' health. At the same time, it ensures the cleanliness of the processing environment, reduces labor intensity, improves the work progress, and effectively meets the use requirements.
[0022] In order to ensure the effective absorption and collection of dust during the material transportation process and to ensure the cleanliness of the processing environment, the dust collection and filtering assembly 6 includes a placement rack 61 that can be pulled relative to the box body 4. A through slot 611 is provided below the placement rack 61 to ensure the circulation of air and provide a prerequisite for the completion of the dust removal work. A dust collection filter plate 62 is provided in the placement rack 61, that is, by driving the fan 8, the air in the confluence area 41 flows, that is, air flow occurs in the dust collection and filtering area 42, and the dust in the shell 1 is directed toward the dust collection area. The filter plate 62 moves, and the dust filter plate 62 can filter the flowing air and capture the dust particles it contains to ensure the cleanliness of the flowing air. The air is then converged to the confluence area 41 through the dust collection pipeline 7, and then discharged outward by driving the fan 8. This process not only completes the absorption of the dust in the material transportation process, but also collects it in a centralized manner, making it convenient for people to centrally process it. A heat dissipation fin 63 is provided on the outside of the box body 4 below the dust collection and filter assembly 6. Its function is to exchange the heat generated in the material transportation process to the outside to ensure the use requirements.
[0023] In order to effectively complete the locking of the dust collection filter assembly 6 and provide convenient conditions for its convenient disassembly and assembly, a movable rod 9 is provided at the corner of the placement frame 61, and a sliding block 91 with a conical table design is provided at the end of the movable rod 9. A telescopic spring 92 is provided on the movable rod 9 located on one side of the sliding block 91. A limit rod 10 is provided above the box body 4 corresponding to the movable rod 9, and a placement groove 43 is provided in the box body 4 corresponding to the limit rod 10. A slide plate 101 with an inclined design is provided on one side of the limit rod 10, and a transition block 102 is provided on the other side of the limit rod 10. A transition inclined surface 1021 is provided under the transition block 102. The specific description is: when the dust collection filter assembly 6 is installed, the placement frame 61 and the internal assembly first lift the limit rod 10, that is, its upper side corner contacts the transition block 102, and with the help of the establishment of the transition inclined surface 1021, When the limit rod 10 is lifted up, the placement rack 61 continues to be placed inward, and when the transition inclined surface 1021 is detached from the workpiece, the limit rod 10 falls on the movable rod 9 above the telescopic spring 92 by its own gravity. In this state, one side of the slide 101 is against the outer side of the placement rack 61, completing the limit of its position. At the same time, when it is at this node, the placement rack 61 reaches the fully inserted position. When the dust filter assembly 6 needs to be taken out to replace or clean the dust filter plate 62, the movable rod 9 is pressed inward, especially so that the transition inclined surface 1021 of the transition block contacts the sliding block 91, and then the sliding block 91 is moved to lift its limit rod 10 and make the limit rod 10 enter the slot of the box body, and its lower end face is located on the upper end face of the placement rack, so that the placement rack 61 can be pulled out, and it is convenient to take and place.
[0024] In order to ensure that the material can be loaded, a feed port 1a is provided on the upper side of the shell 1, and a discharge port 1b is provided on the lower side of the other side of the shell 1. A drive component 1c is provided at the end of the shell 1. The feed port 1a is convenient for people to put in materials, and the discharge port 1b is convenient for the material to be discharged under the action of the auger conveying blade 2. The drive component 1c includes a drive rod connected to the auger conveying blade 2 and a motor driving the drive rod to ensure that the auger conveying blade 2 can output the material in a spiral manner, especially ensuring the material loading process to meet the use requirements.
[0025] The above description is only a preferred embodiment of the present invention and does not limit the present invention in any other form. Any technician familiar with the profession may use the technical content disclosed above to change or modify it into an equivalent embodiment with equivalent changes for application in other fields. However, any simple modification, equivalent change and modification of the above embodiment made according to the technical essence of the present invention without departing from the content of the technical solution of the present invention shall still fall within the scope of protection of the technical solution of the present invention.
Claims
1. A fused white corundum feeding device, comprising a feeding device body, the feeding device body comprising a shell, an auger conveying blade is provided in the shell, and a support frame is provided on the outside of the shell, characterized in that: A dust collection component is provided on the outside of the shell, and the dust collection component includes a box body designed in a U shape, and three areas are separated in the box body, among which the geometric center is established as a confluence area, and the boxes on both sides of the confluence area are established as dust collection and filtration areas, and a protective filter plate is provided at the connection between the dust collection and filtration areas of the shell and the box body, and a dust collection and filtration component is provided above the dust collection and filtration area of the box body, and a dust collection pipeline is provided on the outside of the box body, and the dust collection pipeline includes a main pipe installed in the same direction as the length of the box body, and a branch pipe is provided on the outside of the main pipe and is connected to the dust collection and filtration component, and a collecting pipe is provided on the outside of the two main pipes and is connected to the reflux area of the box body, and a driving fan is provided above the box body.
2. The fused white corundum feeding device according to claim 1, characterized in that: The dust suction and filtering assembly includes a placement rack that can be pulled relative to the box body, a through slot is provided below the placement rack, a dust removal filter plate is provided inside the placement rack, and a heat dissipation fin is provided on the outside of the box body below the dust suction and filtering assembly.
3. The fused white corundum feeding device according to claim 2, characterized in that: A movable rod is provided at the corner of the placement rack, and a sliding block with a conical table design is provided at the end of the movable rod. A telescopic spring is provided on the movable rod located on one side of the sliding block. A limiting rod is provided above the box body corresponding to the movable rod, and a placement slot is provided in the box body corresponding to the limiting rod. A slide plate with an inclined design is provided on one side of the limiting rod, and a transition block is provided on the other side of the limiting rod, and a transition inclined surface is provided below the transition block.
4. The fused white corundum feeding device according to claim 3, characterized in that: A feed port is provided above one side of the shell, a discharge port is provided below the other side of the shell, and a drive assembly is provided at the end of the shell.