Air-cooled slag drying machine with vibration rapid cooling structure

By introducing a quick-cooling structure of vibrating materials into the air-cooled slag dryer, and using a servo motor to drive the transmission steel belt vibration and cooling air injection, the cooling uneven cooling caused by slag accumulation is solved, and uniform cooling and rapid cooling of slag is achieved.

CN223271286UActive Publication Date: 2025-08-26江苏靖隆合金钢机械制造有限公司
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Patent Information

Application Number
CN202422665491.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-01
Publication Date
2025-08-26
Estimated Expiration
2034-11-01

AI Technical Summary

Technical Problem

In existing air-cooled slag dryers, the accumulation of slag on the transmission system leads to uneven cooling speed, affecting the cooling effect.

Method used

An air-cooled slag dryer with a vibrating fast cooling structure is designed, including vibrating components, flip components and air-cooled components. The vibration of steel belts, flip and cooling air injection are driven by a servo motor to achieve flattening, flip and uniform cooling of the slag.

Benefits of technology

It improves the uniformity and speed of slag cooling, solves the problem of stacking on the transmission system, and ensures uniform cooling of slag during the transmission process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of slag dryers, which comprises a slag dryer body, a transmission steel belt and a driving motor, the transmission steel belt is rotatably connected in the slag dryer body, the driving motor is fixedly connected to the side wall of the slag dryer body, and the transmission end of the driving motor is rotatably connected with the transmission steel belt through a transmission roller. A material vibrating assembly is arranged at the top of the slag drying machine body, a material turning assembly is arranged at the top, close to the material vibrating assembly, of the slag drying machine body, and a material flattening assembly is arranged at the top, away from the material turning assembly, of the slag drying machine body. The function that the slag is vibrated to be flattened during conveying is achieved, the problem that the slag is cooled unevenly due to the fact that the slag is accumulated on the top of the conveying steel belt is solved, the slag cooling speed is increased, and the cooling uniformity during slag conveying is improved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of slag dryers, in particular to an air-cooled slag dryer with a vibrating material fast cooling structure. Background Art

[0002] Air-cooled dry slag machine, also known as dry slag discharger, is a device for cooling and conveying boiler bottom slag. It mainly uses air to cool and discharge high-temperature slag.

[0003] The air-cooled slag dryer uses a conveyor and crushing equipment to cool and transport the high-temperature slag by introducing cooling air. The cold air exchanges heat with the high-temperature ash, raising the air temperature and sending it back to the boiler furnace, while cooling the slag to a low level. The air-cooled slag dryer is mainly composed of a shell, a slag conveying system, a slag cleaning system and an air-cooling control system.

[0004] In the existing air-cooled dryer technology, slag is discharged from the bottom of the boiler onto the slag conveying system, which causes slag to accumulate on the conveying system, resulting in uneven slag cooling speed and affecting the slag cooling effect.

[0005] To this end, the utility model provides an air-cooled slag dryer with a vibrating material fast cooling structure. Utility Model Content

[0006] In order to make up for the deficiencies of the prior art, at least one technical problem raised in the background technology is solved.

[0007] The technical solution adopted by the utility model to solve its technical problems is: the air-cooled slag dryer with a vibrating material fast cooling structure described in the utility model comprises a slag dryer body, a transmission steel belt and a driving motor, the transmission steel belt is rotatably connected inside the slag dryer body, the driving motor is fixedly connected to the side wall of the slag dryer body, the driving motor transmission end is rotatably connected to the transmission steel belt through a transmission roller, a vibrating material component is provided on the top of the slag dryer body, a turning material component is provided near the top of the vibrating material component of the slag dryer body, and the slag dryer body is away from the top of the turning material component A flat material component is provided, and an air cooling component is provided on the inner wall of the dry slag machine body. A feed port is provided on the top of the dry slag machine body near the air cooling component, and a discharge port is provided on the side wall of the dry slag machine body away from the feed port. This step forms a slag conveying structure through the arrangement of the dry slag machine body, the transmission steel belt, the drive motor and the vibration component, which realizes the function of vibrating the slag to flatten the slag during transportation, solves the problem of uneven cooling of the slag caused by the accumulation of slag on the top of the transmission steel belt, improves the cooling speed of the slag, and increases the uniformity of cooling during slag transportation.

[0008] Preferably, the vibration material assembly includes a fixed frame, a servo motor, a turntable, a rocker, a connecting rod, a first fixed plate and a knocking rod, the fixed frame is fixedly connected to the top of the dry slag machine body, the servo motor is fixedly connected to the top of the fixed frame, the turntable is fixedly connected to the transmission end of the servo motor, the rocker is rotatably connected to the side wall of the turntable away from the servo motor, the connecting rod is hinged at the end of the rocker, the connecting rod is slidably connected in the middle of the dry slag machine body, the top of the first fixed plate is fixedly connected to the end of the connecting rod away from the rocker, the first fixed plate is arranged inside the dry slag machine body, the knocking rod is fixedly connected to the bottom of the first fixed plate away from the connecting rod, and the knocking rods are arranged in multiple groups at the bottom of the first fixed plate and are evenly distributed at the bottom of the first fixed plate. In this step, a vibration material structure is formed by the arrangement of the servo motor, turntable, rocker, connecting rod, first fixed plate and knocking rod, which realizes the function of knocking the transmission steel belt to vibrate, solves the problem of uneven cooling caused by accumulation of slag on the top of the transmission steel belt, improves the uniformity of slag during transportation on the top of the transmission steel belt, improves the uniformity of slag cooling, and improves the cooling speed of slag.

[0009] Preferably, the turning assembly includes a second fixed plate, a guide rod, a turning block and a first adjusting screw, the guide rod being slidably connected to the top of the dry slag machine body, the guide rod being arranged in multiple groups on the top of the dry slag machine body, the second fixed plate being fixedly connected to the top of multiple groups of guide rods, the first adjusting screw being threadedly connected to the middle of the second fixed plate, a pair of the first adjusting screw being arranged in the middle of the second fixed plate, and being symmetrically arranged, the bottom end of the first adjusting screw being rotatably connected to the top of the dry slag machine body, and the turning block being fixedly connected to the bottom end of the guide rod. This step constitutes a turning structure through the arrangement of the second fixed plate, the guide rod, the turning block and the first adjusting screw, thereby realizing the function of turning over the slag on the surface of the transmission steel belt, solving the problem of slag accumulation on the top of the transmission steel belt, increasing the contact area between the slag and the air, accelerating the cooling speed of the slag, and reducing the uneven cooling caused by slag accumulation.

[0010] Preferably, the flat material assembly includes a flat material plate, a third fixed plate and a second adjusting screw, the flat material plate slides on the top of the dry slag machine body, the bottom of the third fixed plate is fixedly connected to the top of the flat material plate, the second adjusting screw is threadedly connected to the middle of the third fixed plate, a pair of the second adjusting screws are arranged in the middle of the third fixed plate, and are symmetrically arranged, and the bottom end of the second adjusting screw is rotatably connected to the top of the dry slag machine body. This step forms a flat material structure through the arrangement of the flat material plate, the third fixed plate and the second adjusting screw, realizes the function of flattening the slag, solves the problem that the slag is accumulated too high, resulting in slow cooling speed inside the slag, improves the uniformity of slag cooling, and makes the slag evenly transported on the top of the transmission steel belt.

[0011] Preferably, the air cooling component includes an air intake pipe, a fourth fixed plate and an air nozzle, the air intake pipe is fixedly connected to the inner side wall of the dry slag machine body away from the flat material plate, the air intake pipe is arranged in a pair on the inner side wall of the dry slag machine body, and is symmetrically arranged, the fourth fixed plate is fixedly connected to the side walls of the air intake pipe away from each other, the fourth fixed plate passes through the side wall of the dry slag machine body, the air nozzle is fixedly connected to the side wall of the air intake pipe away from the fourth fixed plate, the air nozzle is arranged in multiple groups on the side wall of the air intake pipe, an air duct is provided inside the air intake pipe, and the fourth fixed plate is communicated with the air nozzle through the air duct. In this step, an air cooling structure is formed through the arrangement of the air intake pipe, the fourth fixed plate and the air nozzle, which realizes the function of cooling the slag, solves the problem of slow cooling speed of the slag, and increases the cooling speed of the slag, thereby achieving the function of rapid cooling.

[0012] Preferably, a thermometer is fixedly connected to the top of the slag dryer body. In this step, the temperature inside the slag dryer body is measured by the thermometer, which facilitates the grasp of the temperature inside the slag dryer body.

[0013] Preferably, a thermal insulation pad is fixedly connected to the bottom of the fixing frame, and the thermal insulation pad is arranged between the fixing frame and the dry slag machine body. In this step, the dry slag machine body and the fixing frame are isolated by the setting of the thermal insulation pad, thereby reducing the temperature transferred to the servo motor and causing excessive temperature.

[0014] The beneficial effects of the utility model are as follows:

[0015] 1. The air-cooled slag dryer with a vibrating material fast cooling structure described in the utility model, through the arrangement of the slag dryer body, the transmission steel belt, the driving motor and the vibrating material assembly, forms a slag conveying structure, which realizes the function of vibrating the slag to flatten the slag during transportation, solves the problem of uneven slag cooling caused by slag accumulation on the top of the transmission steel belt, improves the cooling speed of the slag, and increases the cooling uniformity during slag transportation.

[0016] 2. The air-cooled slag dryer with a vibrating material fast cooling structure described in the utility model, through the arrangement of a servo motor, a turntable, a rocker, a connecting rod, a first fixed plate and a knocking rod, forms a vibrating material structure, which realizes the function of knocking the transmission steel belt to generate vibration, solves the problem of uneven cooling caused by accumulation of slag on the top of the transmission steel belt, improves the uniformity of the slag when it is transported on the top of the transmission steel belt, improves the uniformity of the slag cooling, and increases the speed of slag cooling. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] The present invention will be further described below with reference to the accompanying drawings.

[0018] Figure 1 It is a three-dimensional diagram of the utility model;

[0019] Figure 2This is a schematic diagram of the structure of the cooperation between the knocking rod and the servo motor in the utility model;

[0020] Figure 3 This is a schematic diagram of the structure of the cooperation between the turning block and the second fixed plate in the utility model;

[0021] Figure 4 It is a structural diagram of the cooperation between the gas nozzle and the fourth fixing plate in the utility model.

[0022] In the figure: 1. Dry slag machine body; 11. Transmission steel belt; 12. Drive motor; 2. Fixed frame; 21. Servo motor; 22. Turntable; 23. Rocker; 24. Connecting rod; 25. First fixed plate; 26. Beating rod; 3. Second fixed plate; 31. Guide rod; 32. Turning block; 33. First adjusting screw; 4. Flat plate; 41. Third fixed plate; 42. Second adjusting screw; 5. Inlet pipe; 51. Fourth fixed plate; 52. Air nozzle; 6. Thermometer; 7. Insulation pad. DETAILED DESCRIPTION

[0023] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific implementation methods.

[0024] like Figures 1 to 4 As shown, the air-cooled slag dryer with a vibration material fast cooling structure of the embodiment of the present invention includes a slag dryer body 1, a transmission steel belt 11 and a drive motor 12. The transmission steel belt 11 is rotatably connected inside the slag dryer body 1, and the drive motor 12 is fixedly connected to the side wall of the slag dryer body 1. The driving end of the drive motor 12 is rotatably connected to the transmission steel belt 11 through a transmission roller. A vibration material component is provided on the top of the slag dryer body 1, a turning material component is provided on the top of the slag dryer body 1 near the vibration material component, a flat material component is provided on the top of the slag dryer body 1 away from the turning material component, an air-cooling component is provided on the inner side wall of the slag dryer body 1, a feed port is provided on the top of the slag dryer body 1 near the air-cooling component, and a discharge port is provided on the side wall of the slag dryer body 1 away from the feed port. During operation, the slag passes through the feed port It enters the interior of the slag dryer body 1 and falls on the top of the transmission steel belt 11. The driving motor 12 drives the transmission steel belt 11 to rotate to transport the slag. When the slag is transported on the top of the transmission steel belt 11, the slag is cooled by the air cooling component, and the accumulated slag is turned over by the turning component. The vibrating component drives the transmission steel belt 11 to vibrate, and the slag accumulated on the top of the transmission steel belt 11 is flattened by vibration. This step is composed of a slag conveying structure through the arrangement of the slag dryer body 1, the transmission steel belt 11, the driving motor 12 and the vibrating component, which realizes the function of vibrating the slag to flatten the slag during transportation, solves the problem of uneven cooling of the slag caused by the accumulation of slag on the top of the transmission steel belt 11, improves the cooling speed of the slag, and increases the uniformity of cooling during slag transportation.

[0025] like Figure 2 As shown, the vibration material assembly includes a fixed frame 2, a servo motor 21, a turntable 22, a rocker 23, a connecting rod 24, a first fixed plate 25 and a knocking rod 26. The fixed frame 2 is fixedly connected to the top of the dry slag machine body 1, the servo motor 21 is fixedly connected to the top of the fixed frame 2, the turntable 22 is fixedly connected to the transmission end of the servo motor 21, the rocker 23 is rotatably connected to the side wall of the turntable 22 away from the servo motor 21, the connecting rod 24 is hinged at the end of the rocker 23, the connecting rod 24 is slidably connected in the middle of the dry slag machine body 1, the top of the first fixed plate 25 is fixedly connected to the end of the connecting rod 24 away from the rocker 23, the first fixed plate 25 is arranged inside the dry slag machine body 1, the knocking rod 26 is fixedly connected to the bottom of the first fixed plate 25 away from the connecting rod 24, and multiple groups of knocking rods 26 are arranged at the bottom of the first fixed plate 25 and are evenly distributed at the bottom of the first fixed plate 25. During operation, when the slag is conveyed, the servo motor 2 is turned on. 1. The servo motor 21 drives the turntable 22 to rotate, and the turntable 22 drives the rocker 23 to swing, driving the connecting rod 24 to move up and down on the top of the dry slag machine body 1, and the connecting rod 24 drives the first fixed plate 25 and the knocking rod 26 to move on the top of the dry slag machine body 1. The knocking rod 26 knocks the surface of the transmission steel belt 11 when moving up and down inside the dry slag machine body 1, so that the transmission steel belt 11 vibrates, and the transmission steel belt 11 vibrates to flatten the slag accumulated on the top of the transmission steel belt 11. This step is formed by the arrangement of the servo motor 21, the turntable 22, the rocker 23, the connecting rod 24, the first fixed plate 25 and the knocking rod 26 to form a vibration material structure, which realizes the function of knocking the transmission steel belt 11 to vibrate, solves the problem that the slag accumulates on the top of the transmission steel belt 11 and causes uneven cooling, improves the uniformity of the slag when being transported on the top of the transmission steel belt 11, improves the uniformity of the slag cooling, and increases the speed of the slag cooling.

[0026] like Figure 1 and Figure 3As shown, the turning assembly includes a second fixed plate 3, a guide rod 31, a turning block 32 and a first adjusting screw rod 33. The guide rod 31 is slidably connected to the top of the dry slag machine body 1. Multiple groups of guide rods 31 are set on the top of the dry slag machine body 1. The second fixed plate 3 is fixedly connected to the top of the multiple groups of guide rods 31. The first adjusting screw rod 33 is threadedly connected to the middle of the second fixed plate 3. A pair of first adjusting screw rods 33 is set in the middle of the second fixed plate 3 and is symmetrically arranged. The bottom end of the first adjusting screw rod 33 is rotatably connected to the top of the dry slag machine body 1, and the turning block 32 is fixedly connected to the bottom end of the guide rod 31. During operation, screw the first adjusting screw rod 33 to make the second fixed plate 3 move downward, and the first adjusting screw rod 33 is screwed to the middle of the second fixed plate 3. The second fixed plate 3 drives the guide rod 31 and the turning block 32 to move downward, so that the turning block 32 contacts the surface of the conveying steel belt 11. When the slag is transported at the top of the conveying steel belt 11, the turning block 32 is conically set, and the turning block 32 squeezes the slag to both sides to achieve the function of turning the slag. This step is formed by the setting of the second fixed plate 3, the guide rod 31, the turning block 32 and the first adjusting screw 33 to form a turning structure, which realizes the function of turning the slag on the surface of the conveying steel belt 11, solves the problem of slag accumulation on the top of the conveying steel belt 11, increases the contact area between the slag and the air, speeds up the cooling rate of the slag, and reduces the uneven cooling caused by slag accumulation.

[0027] like Figure 3 As shown, the flat material assembly includes a flat material plate 4, a third fixed plate 41 and a second adjusting screw 42. The flat material plate 4 slides on the top of the dry slag machine body 1. The bottom of the third fixed plate 41 is fixedly connected to the top of the flat material plate 4. The second adjusting screw 42 is threadedly connected to the middle of the third fixed plate 41. A pair of second adjusting screws 42 are arranged in the middle of the third fixed plate 41 and are symmetrically arranged. The bottom end of the second adjusting screw 42 is rotatably connected to the top of the dry slag machine body 1. During operation, the second adjusting screw 42 is twisted, and the third fixed plate 41 drives the flat material plate 4 to move in the dry The middle part of the slag machine body 1 slides to adjust the gap between the flat material plate 4 and the transmission steel belt 11. When the slag moves driven by the transmission steel belt 11, the slag contacts the flat material plate 4, and the slag higher than the flat material plate 4 is flattened by the flat material plate 4. This step is formed by the setting of the flat material plate 4, the third fixed plate 41 and the second adjusting screw 42 to form a flat material structure, which realizes the function of flattening the slag, solves the problem of excessive slag accumulation, resulting in slow cooling speed inside the slag, improves the uniformity of slag cooling, and makes the slag evenly transported on the top of the transmission steel belt 11.

[0028] like Figure 4The air-cooling assembly includes an air intake pipe 5, a fourth fixing plate 51 and an air nozzle 52. The air intake pipe 5 is fixedly connected to the inner side wall of the dry slag machine body 1 away from the flat material plate 4. The air intake pipe 5 is provided with a pair of symmetrical arrangements on the inner side wall of the dry slag machine body 1. The fourth fixing plate 51 passes through the side wall of the dry slag machine body 1, and the air nozzle 52 is fixedly connected to the side wall of the air intake pipe 5 away from the fourth fixing plate 51. The air nozzle 52 is provided with multiple groups on the side wall of the air intake pipe 5. An air duct is provided inside the air intake pipe 5, and the fourth fixing plate 51 is communicated with the air nozzle 52 through the air duct. During operation, the fourth fixing plate 51 is connected to the cold air, and the cold air is ejected through the air nozzle 52 to cool the slag. This step forms an air-cooling structure through the arrangement of the air intake pipe 5, the fourth fixing plate 51 and the air nozzle 52, thereby realizing the function of cooling the slag, solving the problem of slow slag cooling speed, and improving the cooling speed of the slag, thereby achieving the function of rapid cooling.

[0029] like Figure 4 As shown, a thermometer 6 is fixedly connected to the top of the slag dryer body 1. During operation, the temperature sensing probe of the thermometer 6 measures the temperature inside the slag dryer body 1. This step measures the temperature inside the slag dryer body 1 through the thermometer 6, which makes it easier to grasp the temperature inside the slag dryer body 1.

[0030] like Figure 4 As shown, a thermal insulation pad 7 is fixedly connected to the bottom of the fixing frame 2, and the thermal insulation pad 7 is arranged between the fixing frame 2 and the dry slag machine body 1. During operation, the thermal insulation pad 7 is arranged between the fixing frame 2 and the dry slag machine body 1 to play a heat insulation function. In this step, the setting of the thermal insulation pad 7 isolates the dry slag machine body 1 and the fixing frame 2, thereby reducing the temperature transferred to the servo motor 21 and causing the temperature to be too high.

[0031] During operation, the slag enters the interior of the slag dryer body 1 through the feed port and falls on the top of the transmission steel belt 11. The driving motor 12 drives the transmission steel belt 11 to rotate to transport the slag. When the slag is transported on the top of the transmission steel belt 11, the slag is cooled by the air cooling component, the accumulated slag is turned over by the turning component, and the vibrating component drives the transmission steel belt 11 to vibrate, and the slag accumulated on the top of the transmission steel belt 11 is flattened by vibration. When the slag is transported, the servo motor 21 is turned on, and the servo motor 21 drives the turntable 22 to rotate. The turntable 22 drives the rocker 23 to swing, driving the connecting rod 24 to move up and down on the top of the slag dryer body 1. The connecting rod 24 drives the first fixed plate 25 and the knocking rod 26 to move on the top of the slag dryer body 1. The knocking rod 26 knocks the surface of the transmission steel belt 11 when it moves up and down inside the slag dryer body 1, causing the transmission steel belt 11 to vibrate. The transmission steel belt 11 vibrates and flattens the slag accumulated on the top of the transmission steel belt 11. The slag is then moved to the left of the second fixing plate 31 and the second fixing plate 31 drives the guide rod 31 and the turning block 32 to move downward so that the turning block 32 contacts the surface of the conveying steel belt 11. When the slag is transported on the top of the conveying steel belt 11, the turning block 32 is conically set, and the turning block 32 squeezes the slag to both sides to achieve the function of turning the slag. When the second adjusting screw rod 42 is turned, the third fixing plate 41 drives the flat plate 4 to slide in the middle of the dry slag machine body 1 to adjust the gap between the flat plate 4 and the conveying steel belt 11. When the slag moves driven by the conveying steel belt 11, the slag contacts the flat plate 4, and the slag higher than the flat plate 4 is flattened by the flat plate 4. The fourth fixing plate 51 is connected to the external cold air, and the cold air is sprayed through the air nozzle 52 to cool the slag. The temperature sensing probe of the thermometer 6 measures the temperature inside the dry slag machine body 1. The heat insulation pad 7 is arranged between the fixed frame 2 and the dry slag machine body 1 to play a heat insulation function.

[0032] The above shows and describes the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and improvements may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and improvements are intended to fall within the scope of the present invention. The scope of protection claimed in this invention is defined by the appended claims and their equivalents.

Claims

1. An air-cooled slag dryer with a vibration material rapid cooling structure, comprising a slag dryer body (1), a transmission steel belt (11) and a drive motor (12), characterized in that: The transmission steel belt (11) is rotatably connected inside the slag dryer body (1), the drive motor (12) is fixedly connected to the side wall of the slag dryer body (1), the drive end of the drive motor (12) is rotatably connected to the transmission steel belt (11) through a transmission roller, a vibration component is provided on the top of the slag dryer body (1), a turning component is provided on the top of the slag dryer body (1) close to the vibration component, a flat material component is provided on the top of the slag dryer body (1) away from the turning component, an air cooling component is provided on the inner side wall of the slag dryer body (1), a feed port is provided on the top of the slag dryer body (1) close to the air cooling component, and a discharge port is provided on the side wall of the slag dryer body (1) away from the feed port.

2. The air-cooled slag dryer with a vibration material rapid cooling structure according to claim 1 is characterized in that: The vibrating material assembly comprises a fixed frame (2), a servo motor (21), a turntable (22), a rocker (23), a connecting rod (24), a first fixed plate (25) and a knocking rod (26), wherein the fixed frame (2) is fixedly connected to the top of the dry slag machine body (1), the servo motor (21) is fixedly connected to the top of the fixed frame (2), the turntable (22) is fixedly connected to the transmission end of the servo motor (21), the rocker (23) is rotatably connected to the side wall of the turntable (22) away from the servo motor (21), and the connecting rod (24) is fixedly connected to the first fixed plate (25) and the knocking rod (26). ) is hinged at the end of the rocking arm (23), the connecting rod (24) is slidably connected in the middle of the slag dryer body (1), the top of the first fixed plate (25) is fixedly connected to the end of the connecting rod (24) away from the rocking arm (23), the first fixed plate (25) is arranged inside the slag dryer body (1), the knocking rod (26) is fixedly connected to the bottom of the first fixed plate (25) away from the connecting rod (24), and the knocking rod (26) is arranged in multiple groups at the bottom of the first fixed plate (25) and is evenly distributed at the bottom of the first fixed plate (25).

3. The air-cooled slag dryer with a vibration material rapid cooling structure according to claim 1 is characterized in that: The turning assembly comprises a second fixed plate (3), a guide rod (31), a turning block (32) and a first adjusting screw rod (33); the guide rod (31) is slidably connected to the top of the dry slag machine body (1); a plurality of guide rods (31) are provided on the top of the dry slag machine body (1); the second fixed plate (3) is fixedly connected to the top of the plurality of guide rods (31); the first adjusting screw rod (33) is threadedly connected to the middle of the second fixed plate (3); a pair of the first adjusting screw rods (33) are provided in the middle of the second fixed plate (3) and are symmetrically arranged; the bottom end of the first adjusting screw rod (33) is rotatably connected to the top of the dry slag machine body (1); and the turning block (32) is fixedly connected to the bottom end of the guide rod (31).

4. The air-cooled slag dryer with a vibration material rapid cooling structure according to claim 1 is characterized in that: The flat material assembly comprises a flat material plate (4), a third fixed plate (41) and a second adjusting screw (42); the flat material plate (4) slides on the top of the dry slag machine body (1); the bottom of the third fixed plate (41) is fixedly connected to the top of the flat material plate (4); the second adjusting screw (42) is threadedly connected to the middle of the third fixed plate (41); a pair of the second adjusting screws (42) are arranged in the middle of the third fixed plate (41) and are symmetrically arranged; the bottom end of the second adjusting screw (42) is rotatably connected to the top of the dry slag machine body (1).

5. The air-cooled slag dryer with a vibration material rapid cooling structure according to claim 4 is characterized in that: The air cooling component comprises an air intake pipe (5), a fourth fixed plate (51) and an air nozzle (52); the air intake pipe (5) is fixedly connected to the inner side wall of the dry slag machine body (1) away from the flat material plate (4); a pair of the air intake pipes (5) are arranged on the inner side wall of the dry slag machine body (1) and are symmetrically arranged; the fourth fixed plate (51) is fixedly connected to the side walls of the air intake pipe (5) away from each other; the fourth fixed plate (51) passes through the side wall of the dry slag machine body (1); the air nozzle (52) is fixedly connected to the side wall of the air intake pipe (5) away from the fourth fixed plate (51); a plurality of air nozzles (52) are arranged on the side wall of the air intake pipe (5); an air duct is provided inside the air intake pipe (5); and the fourth fixed plate (51) is communicated with the air nozzle (52) through the air duct.

6. The air-cooled slag dryer with a vibration material rapid cooling structure according to claim 1 is characterized in that: A thermometer (6) is fixedly connected to the top of the slag dryer body (1).

7. The air-cooled slag dryer with a vibration material rapid cooling structure according to claim 2, characterized in that: A heat insulation pad (7) is fixedly connected to the bottom of the fixing frame (2), and the heat insulation pad (7) is arranged between the fixing frame (2) and the slag dryer body (1).

Citation Information

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