Low-carbon steel rolling waste residue collecting device
By designing a low-carbon steel rolled waste slag collection device, the synchronous cooling and crushing of waste slag is achieved, the problem of waste slag condensation after cooling is solved, the collection efficiency and equipment operation efficiency are improved, and energy consumption and production costs are reduced.
Patent Information
- Application Number
- CN202422606574.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-28
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2034-10-28
AI Technical Summary
During the rolling process of low-carbon steel, the cooled waste slag is easily condensed together, which increases the difficulty and energy consumption of the crushing process and extends the processing time.
A low-carbon steel rolling waste slag collection device is designed, including a feed hopper, shell assembly and a crushing cooling component. Components such as silicone resin cylinder, drive motor, cam, rotating roller and industrial air cooler are used to achieve synchronous cooling and crushing of waste slag, and a cold air transport and blowing prevents waste slag from being bonded, and a filtration system is set up to prevent waste slag from entering the internal structure.
It improves waste slag collection efficiency, reduces energy and time consumption, ensures clean and efficient operation of the device, reduces production costs, improves production efficiency and reduces environmental pollution.
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Figure CN223276930U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of waste slag collecting devices, in particular to a low-carbon steel rolling waste slag collecting device. Background Art
[0002] Mild steel is an iron-carbon alloy with a normal carbon content. It has good plasticity and toughness, relatively low strength and hardness, and is easy to weld, cut and cold-form. Mild steel rolling is a metalworking process that involves forming mild steel materials into the desired shape and size through a rolling process. In this process, the mild steel metal is heated to a certain temperature and then pressure is applied by rotating rollers to cause it to undergo plastic deformation.
[0003] When processing waste slag generated during the low-carbon steel rolling process, the existing waste slag collection device first needs to cool the waste slag to reduce its temperature and ensure the safety of subsequent processing. However, the cooled waste slag tends to condense together, which not only increases the difficulty of the subsequent crushing process, but also increases energy consumption and processing time. Therefore, a low-carbon steel rolling waste slag collection device is proposed to address the above problems. Utility Model Content
[0004] The purpose of the utility model is to provide a low carbon steel rolling waste slag collection device to solve the problem that the cooled waste slag tends to condense together, which not only increases the difficulty of the subsequent crushing process, but also increases energy consumption and processing time.
[0005] To achieve the above objectives, the present invention provides the following technical solutions:
[0006] A low-carbon steel rolling waste slag collection device comprises a feed hopper and a shell assembly, one side of the feed hopper is fixedly connected to a silicone resin cylinder, one side of the silicone resin cylinder is fixedly connected to the shell assembly, the inner side of the shell assembly is slidably connected to a crushing cooling assembly, the shell assembly comprises a casing, one side of the casing is fixedly connected to a drive motor, the end of the drive motor main shaft is fixedly connected to a cam, a collection box is provided on the inner side of the front end of the casing, a spring telescopic rod is fixedly connected to the inner side of the casing, a limited position track is provided on the inner side of the casing, and the inner side of the upper end of the casing is fixedly connected There is an upper convex plate, the inner side of the upper convex plate is provided with a built-in groove, the lower end of the built-in groove is fixedly connected to an extrusion block, the crushing and cooling assembly includes a waste slag frame, the outer side of the waste slag frame is fixedly connected to a rail, the bottom end of the waste slag frame is fixedly connected to a lower bracket, the inner side of the lower bracket is rotatably connected to a rotating roller, an air duct is provided on the inside of the waste slag frame, an evacuation column is fixedly connected to the upper end of the waste slag frame, a cold air groove is provided on the inside of the waste slag frame, the lower end of the waste slag frame is fixedly connected to an industrial air cooler, and the inner side of the air duct provided in the waste slag frame is fixedly connected to a filter block by bolts.
[0007] As a further optimization of the present invention, the inner side of the feed hopper is hollow, the inner side of the feed hopper is connected to the inner side of the silicone resin cylinder, and the left end of the feed hopper is fixedly connected to the right end of the waste residue frame.
[0008] As a further optimization of the present invention, the inner side of the casing is hollow, the main shaft of the driving motor rotates inside the casing, the cam is rotatably connected to the inner side of the casing, and the top end of the cam is in contact with the bottom end of the rotating roller wheel.
[0009] As a further optimization of the present invention, the collection box is located inside the front end of the casing, a notch is provided on the inner side of the casing close to the collection box, and the collection box is located directly below the left end of the waste slag frame.
[0010] As a further optimization of the present invention, the limiting track is opened in a rectangular shape, the limiting track is opened inside the left end and the right end of the casing, the rail is shaped like a rectangular body, the rail is slidably connected to the inside of the limiting track opened in the casing, and the number of the rails corresponds one to one to the number of the limiting tracks.
[0011] As a further optimization of the present invention, the top end of the spring telescopic rod is fixedly connected to the bottom end of the waste slag frame, the front view shape of the waste slag frame is a "concave" shape, the lower bracket is provided with a groove on the inner side near the rotating roller, and the left and right ends of the lower bracket are provided with axial holes, and the left and right ends of the rotating roller rotate inside the axial hole of the lower bracket.
[0012] As a further optimization of this utility model, the air outlet of the industrial air cooler is connected to the inside of the cold air trough, the cold air trough is connected to the inside of the air duct, the number of filter blocks corresponds to the number of air ducts, the evacuation column slides inside the built-in groove, and the extrusion block is staggered with the evacuation column.
[0013] Compared with the prior art, the beneficial effects of the present invention are:
[0014] In the utility model, by setting the feed hopper, shell assembly and crushing cooling assembly, the device not only improves the collection efficiency of waste slag, but also reduces the problem of waste slag sticking together during the cooling process. At the same time, through the transportation and blowing of cold air, the synchronous cooling and crushing of waste slag are achieved, avoiding additional energy consumption and time consumption. In addition, the device also prevents waste slag from entering the internal structure through the filtering system, ensuring the cleanliness and efficiency of the entire collection process. This efficient waste slag treatment method helps to reduce production costs, improve production efficiency, and reduce environmental pollution. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 This is a schematic diagram of the overall structure of the utility model;
[0016] Figure 2 This is a schematic diagram of the feed hopper structure of the utility model;
[0017] Figure 3 This is a schematic diagram of the casing structure of the utility model;
[0018] Figure 4 This is a schematic diagram of the structure of the drive motor of the utility model;
[0019] Figure 5 This is a schematic diagram of the upper convex plate structure of the utility model;
[0020] Figure 6 This is a schematic diagram of the waste slag frame structure of the utility model;
[0021] Figure 7 This is a schematic diagram of the structure of the rotating roller of the utility model;
[0022] Figure 8 For this utility model Figure 7 Schematic diagram of the structure at point A.
[0023] In the figure: 1. Feed hopper;
[0024] 2. Housing assembly; 21. Casing; 22. Drive motor; 23. Cam; 24. Collection box; 25. Spring telescopic rod; 26. Limiting track; 27. Upper convex plate; 28. Built-in groove; 29. Extrusion block;
[0025] 3. Crushing and cooling assembly; 31. Waste slag frame; 32. Rails; 33. Lower bracket; 34. Roller; 35. Air duct; 36. Evacuation column; 37. Cooling trough; 38. Industrial air cooler; 39. Filter block;
[0026] 4. Silicone resin tube. DETAILED DESCRIPTION
[0027] 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.
[0028] It should be noted that the terms used herein are only for describing specific embodiments and are not intended to limit the exemplary embodiments according to the present application. As used herein, unless the context clearly indicates otherwise, the singular form is also intended to include the plural form. In addition, it should be understood that when the terms "comprise" and / or "include" are used in this specification, they indicate the presence of features, steps, operations, devices, components and / or combinations thereof.
[0029] See also Figure 1-8 , the utility model provides a technical solution:
[0030] A low-carbon steel rolling waste slag collection device includes a feed hopper 1 and a shell assembly 2. A silicone resin cylinder 4 is fixedly connected to one side of the feed hopper 1, and a silicone resin cylinder 4 is fixedly connected to the shell assembly 2 on one side. A crushing and cooling assembly 3 is slidably connected to the inner side of the shell assembly 2. The shell assembly 2 includes a casing 21. A drive motor 22 is fixedly connected to one side of the casing 21. A cam 23 is fixedly connected to the end of the main shaft of the drive motor 22. A collection box 24 is provided on the inner side of the front end of the casing 21. A spring telescopic rod 25 is fixedly connected to the inner side of the casing 21. A limited position track 26 is provided on the inner side of the casing 21. An upper convex plate 27 is fixedly connected to the inner side of the upper end of the casing 21. A built-in groove 28 is provided on the inner side of the upper convex plate 27, and an extrusion block 29 is fixedly connected to the lower end of the built-in groove 28. The crushing and cooling assembly 3 includes a waste slag frame 31, a rail 32 is fixedly connected to the outer side of the waste slag frame 31, a lower bracket 33 is fixedly connected to the bottom end of the waste slag frame 31, and a rotating roller 34 is rotatably connected to the inner side of the lower bracket 33. An air duct 35 is provided on the inside of the waste slag frame 31, an evacuation column 36 is fixedly connected to the upper end of the waste slag frame 31, a cold air groove 37 is provided on the inside of the waste slag frame 31, and an industrial cooler 38 is fixedly connected to the lower end of the waste slag frame 31. The inside of the air duct 35 opened in the waste slag frame 31 is fixedly connected to a filter block 39 by bolts.
[0031] As a further implementation of this solution, the inside of the feed hopper 1 is hollow, the inside of the feed hopper 1 is connected to the inside of the silicone resin tube 4, and the left end of the feed hopper 1 is fixedly connected to the right end of the waste residue frame 31. This structural design allows the waste residue to be efficiently transported to the rear end of the waste residue frame 31 through the communication path between the feed hopper 1 and the silicone resin tube 4, thereby improving the efficiency and convenience of waste residue collection;
[0032] As a further implementation of this solution, the inside of the housing 21 is hollow, the main shaft of the drive motor 22 rotates inside the housing 21, and the cam 23 is rotatably connected to the inside of the housing 21. The top end of the cam 23 is in contact with the bottom end of the rotating roller 34. This design allows the rotation of the drive motor 22 and the cam 23 to effectively transmit power, squeeze the rotating roller 34, and achieve preliminary crushing of the waste residue, laying the foundation for the subsequent pulverization process.
[0033] As a further implementation of this solution, the collection box 24 is located inside the front end of the housing 21. A notch is provided on the inner side of the housing 21 near the collection box 24. The collection box 24 is located directly below the left end of the waste slag frame 31, facilitating the centralized collection of the processed waste slag.
[0034] As a further implementation of this solution, the limiting rails 26 are formed in a rectangular shape, and the limiting rails 26 are formed inside the left and right ends of the housing 21. The rails 32 are formed in a rectangular shape, and the rails 32 are slidably connected to the inside of the limiting rails 26 formed in the housing 21. The number of rails 32 corresponds to the number of limiting rails 26. This layout allows the collection box 24 to serve as an effective support and positioning point, ensuring the stability and accuracy of the waste slag frame 31 when crushing the waste slag.
[0035] As a further implementation of this scheme, the top of the spring telescopic rod 25 is fixedly connected to the bottom of the waste frame 31. The front view of the waste frame 31 is a "concave" shape. A groove is provided on the inner side of the lower bracket 33 near the rotating roller 34. The left and right ends of the lower bracket 33 are provided with shaft holes. The left and right ends of the rotating roller 34 rotate inside the shaft holes of the lower bracket 33, so that the rail 32 can slide smoothly in the limiting track 26. This structural design allows the waste frame 31 to move downward quickly under the action of the spring telescopic rod 25, which has a vibration effect, making it convenient to transport the waste. At the same time, the rotation of the rotating roller 34 can reduce friction and improve the crushing efficiency.
[0036] As a further implementation of this solution, the air outlet of the industrial air cooler 38 is connected to the interior of the cold air groove 37, the cold air groove 37 is connected to the interior of the air duct 35, the number of filter blocks 39 corresponds to the number of air ducts 35, the evacuation column 36 slides inside the built-in groove 28, and the extrusion block 29 is staggered with the evacuation column 36. This design ensures that the cold air can be blown directly to the waste residue being crushed, realizing cooling and crushing at the same time, improving the cooling efficiency, and preventing the waste residue from entering the internal structure, keeping the equipment clean and running efficiently.
[0037] Working process: To collect the waste slag of low carbon steel and ensure the collection efficiency, the waste slag is transported to the interior of the rear end of the waste slag frame 31 through the feed hopper 1 and the silicone resin cylinder 4, and the drive motor 22 is started to drive the cam 23 to rotate. The cam 23 squeezes the rotating roller 34, and the rotating roller 34 rotates. The rotating roller 34 is connected to the inside of the lower bracket 33. The rotating roller 34 can reduce the friction between the cam 23 and the rotating roller 34. The rotating roller 34 moves to the upper angle at the same time, and the rotating roller 34 drives the lower bracket 33 and the waste slag frame 31 to move to the upper angle. The evacuation columns 36 are arranged in multiple rows, and the spacing between each row gradually becomes smaller, which is convenient for separating the waste slag of low carbon steel and reducing the chance of removing the waste slag of low carbon steel. The waste slag frame 31 passes through the rail 3 2 is slidably connected to the inside of the limiting track 26 opened in the casing 21, which plays a role in limiting the movement of the waste slag frame 31. The low-carbon steel waste slag inside the waste slag frame 31 contacts the bottom end of the extrusion block 29. The low-carbon steel waste slag is crushed by the extrusion of the waste slag frame 31. When the waste slag frame 31 moves, the silicone resin cylinder 4 is deformed. The silicone resin cylinder 4 is made of a soft and high-temperature resistant material. The evacuation column 36 slides inside the built-in groove 28 opened in the upper convex plate 27 to prevent the waste slag from entering the inside of the built-in groove 28. When the protruding part of the rotating roller 34 is facing downward, the waste slag frame 31 moves downward quickly under the tension of the spring telescopic rod 25. During this process, the waste slag frame 31 vibrates, which facilitates the movement of the waste slag at the upper end of the waste slag frame 31. At the same time, the industrial air cooler 38 is started, and the industrial air cooler 38 delivers cold air to the inside of the air duct 35 through the cold air slot 37. The filter block 39 filters the waste residue to prevent the waste residue from entering the inside of the air duct 35. The cold air flows out of the air duct 35 and blows towards the waste residue being crushed, thereby realizing cooling and crushing at the same time. In addition, the device places the waste residue together during cooling, thereby improving the waste residue collection efficiency and reducing energy consumption.
[0038] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A low carbon steel rolling waste slag collection device, comprising a feed hopper (1) and a housing assembly (2), characterized in that: One side of the feed hopper (1) is fixedly connected to a silicone resin cylinder (4), one side of the silicone resin cylinder (4) is fixedly connected to a housing assembly (2), the inner side of the housing assembly (2) is slidably connected to a crushing cooling assembly (3), the housing assembly (2) comprises a casing (21), one side of the casing (21) is fixedly connected to a driving motor (22), the end of the main shaft of the driving motor (22) is fixedly connected to a cam (23), a collecting box (24) is provided on the inner side of the front end of the casing (21), a spring telescopic rod (25) is fixedly connected to the inner side of the casing (21), a limited track (26) is provided on the inner side of the casing (21), an upper convex plate (27) is fixedly connected to the inner side of the upper end of the casing (21), and a built-in The groove (28) is fixedly connected to an extrusion block (29) at the lower end of the built-in groove (28), and the crushing and cooling assembly (3) includes a waste slag frame (31), the outer side of the waste slag frame (31) is fixedly connected to a rail (32), the bottom end of the waste slag frame (31) is fixedly connected to a lower bracket (33), the inner side of the lower bracket (33) is rotatably connected to a roller wheel (34), an air duct (35) is provided on the inner side of the waste slag frame (31), an evacuation column (36) is fixedly connected to the upper end of the waste slag frame (31), a cold air groove (37) is provided on the inner side of the waste slag frame (31), the lower end of the waste slag frame (31) is fixedly connected to an industrial air cooler (38), and the inner side of the air duct (35) provided in the waste slag frame (31) is fixedly connected to a filter block (39) by bolts.
2. The low carbon steel rolling waste slag collection device according to claim 1, characterized in that: The inner side of the feed hopper (1) is hollow, the inner side of the feed hopper (1) is connected to the inner side of the silicone resin cylinder (4), and the left end of the feed hopper (1) is fixedly connected to the right end of the waste residue frame (31).
3. The low carbon steel rolling waste slag collection device according to claim 1, characterized in that: The inner side of the housing (21) is hollow, the main shaft of the driving motor (22) rotates inside the housing (21), the cam (23) is rotatably connected to the inner side of the housing (21), and the top end of the cam (23) is in contact with the bottom end of the rotating roller (34).
4. The low carbon steel rolling waste slag collection device according to claim 1, characterized in that: The collecting box (24) is located inside the front end of the housing (21), and a notch is provided on the inner side of the housing (21) close to the collecting box (24). The collecting box (24) is located directly below the left end of the waste slag frame (31).
5. The low carbon steel rolling waste slag collection device according to claim 1, characterized in that: The opening shape of the limiting track (26) is a rectangular body, and the limiting track (26) is opened inside the left end and the right end of the housing (21). The shape of the rail (32) is a rectangular body, and the rail (32) is slidably connected to the inside of the limiting track (26) opened in the housing (21). The number of the rails (32) corresponds to the number of the limiting tracks (26).
6. The low carbon steel rolling waste slag collection device according to claim 1, characterized in that: The top end of the spring telescopic rod (25) is fixedly connected to the bottom end of the waste slag frame (31). The front view of the waste slag frame (31) is in the shape of a "concave" character. A groove is provided on the inner side of the lower bracket (33) near the rotating roller (34). The left and right ends of the lower bracket (33) are both provided with shaft holes. The left and right ends of the rotating roller (34) rotate inside the shaft holes of the lower bracket (33).
7. The low carbon steel rolling waste slag collection device according to claim 1, characterized in that: The air outlet of the industrial air cooler (38) is connected to the interior of the cold air groove (37), and the cold air groove (37) is connected to the interior of the air duct (35). The number of the filter blocks (39) corresponds to the number of the air ducts (35). The evacuation column (36) slides inside the built-in groove (28), and the extrusion block (29) is staggered with the evacuation column (36).