Incinerator capable of automatically discharging slag

Through the pneumatic automatic slag unloading assembly and bevel gear transmission system, the problem that the incinerator cannot automatically unload slag, realize automatic slag removal and air flow regulation, and improve incineration efficiency and safety.

CN120488267APending Publication Date: 2025-08-15YANGZHOU YONGFENG INDAL EQUIP INSTALLATION

Patent Information

Application Number
CN202510821691.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-19
Publication Date
2025-08-15

AI Technical Summary

Technical Problem

The existing incinerator cannot realize automatic slag unloading.

Method used

An incinerator including an air pressure automatic slag discharge assembly and a mid-end carrier plate assembly is designed. The air pressure is increased by evaporation of water in the air pressure box, and the slide plate is driven to open the discharge port to realize automatic slag discharge, and the air flow and exhaust are regulated through the bevel gear transmission system.

Benefits of technology

The automatic removal of incinerator slag is realized, the incineration efficiency and safety is improved, and the safe use of the air pressure box is ensured.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the technical field of incinerators, and particularly relates to an incinerator capable of automatically discharging furnace slag to solve the technical problem that automatic furnace slag discharging cannot be achieved. Comprising an incineration box body, a lower end mounting frame, an upper end cover, a mounting sleeve, an exhaust pipe, a feeding pipe, a middle end bearing plate assembly, a closing door, a material collecting box body, a middle end rotating sleeve, a rotating rod, a first bevel gear, fan blades, a second bevel gear, a connecting rotating rod, a handle, a third bevel gear, a fourth bevel gear and a first execution motor. An upper end cover is fixedly installed at the upper end of the incineration box body, under the action of internal pressure, a second piston plate in a cavity B drives a connecting rod to move downwards, the connecting rod drives a first driving rack to drive a matched gear to rotate, the matched gear drives a second driving rack, and the second driving rack drives a sliding plate to move downwards under the action of resistance of a reset spring. The discharging opening is opened, residues generated after materials are incinerated are discharged through the discharging opening, and automatic slag discharging is achieved.
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Description

Technical Field

[0001] The invention belongs to the technical field of incinerators, and in particular relates to an incinerator capable of automatically unloading slag. Background Art

[0002] Patent application number CN202510584200.4 discloses a waste-to-energy incineration slag sorting and processing equipment, including a sorting frame, a feeding hopper is installed on the sorting frame, a multi-functional crushing chamber is installed in the middle of the sorting frame away from the feeding hopper, an atomization discharge chamber is provided below the multi-functional crushing chamber, and a sorting chamber is provided on the side of the atomization discharge chamber away from the multi-functional crushing chamber, and also includes a uniform material distribution mechanism, a layered crushing mechanism and a sorting mechanism; this solution is achieved by setting up an impact crushing layer and a roller crushing layer stacked up and down, but the disadvantage of this technical solution is that there is no way to achieve automatic unloading of slag. Summary of the Invention

[0003] The object of the present invention is to provide an incinerator capable of automatically unloading slag, so as to solve the technical problem that there is no way to achieve automatic unloading of slag.

[0004] To achieve the above-mentioned purpose, the specific technical solution of the incinerator capable of automatically unloading slag of the present invention is as follows:

[0005] An incinerator capable of automatically unloading slag comprises an incineration box, a lower end mounting frame, an upper end cover, a mounting sleeve, an exhaust pipe, a feeding pipe, a middle end bearing plate assembly, a closing door, a collecting box, a middle end rotating sleeve, a rotating rod, a bevel gear 1, a fan blade, a bevel gear 2, a connecting rotating rod, a handle, a bevel gear 3, a bevel gear 4, and an executing motor 1. The lower end of the incineration box is fixedly mounted with a lower end mounting frame, the upper end of the incineration box is fixedly mounted with an upper end cover, the upper end cover is fixedly mounted with a mounting sleeve, a middle end rotating sleeve is rotatably mounted in the mounting sleeve, the middle end rotating sleeve is fixedly mounted with bevel gear 3, bevel gear 3 and bevel gear 4 are meshed for transmission, bevel gear 4 is mounted on the output shaft of the executing motor 1, the executing motor 1 is mounted on the mounting sleeve, and the middle end rotating sleeve is rotatably mounted. A connecting rotating rod is rotatably installed, one end of the connecting rotating rod is fixedly installed with bevel gear 2, the other end of the connecting rotating rod is fixedly installed with a handle, bevel gear 2 is meshed with bevel gear 1 for transmission, bevel gear 1 is fixedly installed at one end of the rotating rod, and a fan blade is fixedly installed at the other end of the rotating rod, the rotating rod is rotatably installed on the middle-end rotating sleeve, bevel gear 3 is installed on the middle-end rotating sleeve, bevel gear 3 is meshed with bevel gear 4 for transmission, bevel gear 4 is installed on the output shaft of the executive motor 1, and the executive motor 1 is installed on the mounting sleeve, a middle-end bearing plate assembly for carrying the combustion material is installed on the incineration box body, an air pressure automatic slag unloading assembly is installed in the incineration box body, a feeding pipe is fixedly installed on the incineration box body, a closing door is hingedly installed on the incineration box body, and an ignition device is installed on the closing door.

[0006] Furthermore, an exhaust pipe for exhausting gas is installed on the mounting sleeve.

[0007] Furthermore, the pneumatic automatic slag unloading assembly includes a water pressure connecting pipe, a connecting rod, a driving rack 1, a lower end connecting frame, a matching gear, a driving rack 2, a middle-end mounting sleeve, a sleeve opening, a return spring, a slide plate, a collecting sleeve, a discharge port, a pneumatic box, a middle-end slide plate, a connecting belt, a piston plate 1, and a piston plate 2. The pneumatic box is fixedly installed in the incineration box, and the middle-end mounting sleeve is fixedly installed in the pneumatic box. The lower end of the middle-end mounting sleeve is provided with a sleeve opening, and there are multiple sleeve openings. The middle-end slide plate is slidably installed on the outer wall of the middle-end mounting sleeve. The middle-end slide plate slidably cooperates with the pneumatic box. The middle-end slide plate is fixedly installed at one end of the connecting belt, and the other end of the connecting belt is fixedly installed with the piston plate 1. The piston plate 1 is slidably installed on the water pressure box. The cam is fixed on the driving rack and the lower end connecting frame is fixed on the gear train, and the gear train is fixed on the gear train, and the gear train is fixed on the gear train.

[0008] Furthermore, the pressure relief assembly includes a middle-end mounting ring, a closing column, a movable plug, a plug push spring, and an exhaust hole. The middle-end mounting ring is fixedly installed in the middle-end mounting sleeve, and a closing column is fixedly installed on the middle-end mounting ring, and there are multiple closing columns. A movable plug is slidably installed on the middle-end mounting ring, and the closing column and the movable plug are slidably matched. A through hole A adapted to the closing column is opened on the movable plug, a plug push spring is provided between the movable plug and the middle-end mounting sleeve, and an exhaust hole for discharging pressure is opened on the middle-end mounting sleeve.

[0009] Furthermore, a plurality of the closed columns are arranged in a circumferential array along the central axis of the middle end mounting ring.

[0010] Furthermore, the plurality of sleeve openings are arranged in a circumferential array along the central axis of the middle end mounting sleeve.

[0011] Furthermore, the cross-sectional area of the chamber A on the water pressure connecting pipe where the first piston plate slides is larger than that of the chamber B on the water pressure connecting pipe where the second piston plate slides.

[0012] The transmission mechanism that this sliding member is connected with this sliding member is that the sliding member is in rotation on the rotation of the gear train, and the transmission mechanism that this member is in rotation on the gear train is that the transmission mechanism is in rotation on the gear train.

[0013] The advantages of the present invention are:

[0014] 1. The material and the combustion-supporting agent are fed into the incineration box through the feeding pipe, the material falls onto the middle-end bearing plate assembly, and the material is ignited by the ignition device installed on the closed door to realize the incineration of the material. At the same time, the execution motor 1 is started, and the middle-end rotating sleeve is driven to rotate through the bevel gear 3 and the bevel gear 4. The middle-end rotating sleeve drives the fan blades through the rotating rod. The fan blades make the air in the incineration box flow, so that the gas and smoke generated by the incineration of the material in the incineration box are discharged into the purification device through the exhaust pipe, and are discharged into the atmosphere after being purified by the purification device; at the same time, the handle is manually turned, and the handle is rotated by connecting the rotating rod and the bevel gear 2. The bevel gear 2 drives the rotating rod to rotate through the bevel gear 1, and the rotating rod drives the fan blades to rotate, so that the fan blades effectively drive the air flow speed to change, thereby realizing the adjustment of the exhaust speed of the gas and smoke generated by the incineration of the material;

[0015] 2. A certain amount of water is set in the air pressure box. As the temperature in the incineration box rises, the water in the air pressure box evaporates, causing the air pressure in the air pressure box to increase, causing the middle-end slide plate to slide upward, and the middle-end slide plate drives the piston plate 1 to slide in chamber A through the connecting belt. The space between chamber A and chamber B is filled with liquid. Under the action of internal pressure, the piston plate 2 in chamber B drives the connecting rod to move downward, and the connecting rod drives the driving rack 1 to drive the matching gear to rotate, and the matching gear drives the driving rack 2, so that the driving rack 2 drives the slide plate to overcome the resistance of the return spring, so that the discharge port is opened, so that the residue produced after the incineration of the material is discharged through the discharge port, realizing automatic unloading of the slag; at the same time, as the incineration of the material is completed, the temperature in the incineration box drops, so that the water in the air pressure box no longer evaporates, so that the pressure in the air pressure box is reduced, and under the action of the return spring, the slide plate blocks the discharge port again;

[0016] 3. To ensure the safe use of the air pressure box, when the air pressure in the air pressure box increases sharply due to water evaporation, the movable plug will be separated from the closing column under the action of air pressure, and the excess gas will be discharged through the through hole A and the exhaust hole, ensuring the safe use of the air pressure box;

[0017] 4. As the material on the middle-end carrying plate is burned, slag will be produced, and the size of the slag varies. Manually rotate the manual sleeve, and the manual sleeve drives the driving pulley to rotate through the pulley shaft. The driving pulley drives pulley 1 to rotate through the matching belt, and pulley 1 drives the rotating screw to rotate. The rotating screw drives the inner end slide and the middle-end carrying plate to slide relative to each other, so that the position of the slide support plate in the opening 1 of the carrying plate changes, making it easier for the slag to fall. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 The overall structure of the present invention is shown in FIG. Figure 1 ;

[0019] Figure 2 The overall structure of the present invention is shown in FIG. Figure 2 ;

[0020] Figure 3 for Figure 2 A partial enlarged view of

[0021] Figure 4 for Figure 1 Schematic diagram of the cutting line position;

[0022] Figure 5 for Figure 4 Cross-sectional view along section AA;

[0023] Figure 6 for Figure 5 A partial enlarged view of B;

[0024] Figure 7 for Figure 4 Cross-sectional view along section BB;

[0025] Figure 8 for Figure 7 A partial enlarged view of C;

[0026] Figure 9 for Figure 7 A partial enlarged view of D;

[0027] Figure 10 for Figure 4 Cross-sectional view along section DD;

[0028] Figure 11 for Figure 10 A partial enlarged view E;

[0029] Figure 12 This is a schematic structural diagram of the mid-end load-bearing plate assembly of the present invention;

[0030] Figure 13 for Figure 12 The position of the cutting line Figure 1 ;

[0031] Figure 14 for Figure 13 Cross-sectional view along section EE;

[0032] Figure 15 for Figure 12 The position of the cutting line Figure 2 ;

[0033] Figure 16 for Figure 15 Cross-sectional view along section FF;

[0034] Explanation of the markings in the figure: incineration box 1; lower end mounting frame 2; upper end cover 3; mounting sleeve 4; exhaust pipe 5; feeding pipe 6; middle end bearing plate assembly 7; middle end bearing plate 7-1; bearing plate opening 1 7-2; inner end slide 7-3; slide plate support plate 7-4; pulley 1 7-5; rotating screw 7-6; matching belt 7-7; middle end connecting bracket 7-8; tensioning pulley 7-9; driving pulley 7-10; pulley shaft 7-11; manual sleeve 7-12; water pressure connecting pipe 8; connecting rod 9; closing door 10; driving rack 11; lower end connecting frame 12; matching gear Wheel 13; driving rack 2 14; collecting box body 15; middle end rotating sleeve 16; rotating rod 17; bevel gear 1 18; fan blade 19; bevel gear 2 20; connecting rotating rod 21; handle 22; bevel gear 3 23; bevel gear 4 24; executing motor 1 25; middle end mounting sleeve 26; sleeve opening 27; middle end mounting ring 28; closing column 29; movable plug 30; plug push spring 31; exhaust hole 32; return spring 33; slide plate 34; collecting sleeve 35; discharge port 36; air pressure box body 37; middle end slide plate 38; connecting belt 39; piston plate 1 40; piston plate 2 41. DETAILED DESCRIPTION

[0035] The technical solution of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the embodiments described are only some embodiments of the present invention, not all embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.

[0036] In the description of the present invention, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings and are intended solely to facilitate and simplify the description of the present invention. They are not intended to indicate or imply that the devices or components referred to must have, be constructed, or operate in a specific orientation, and therefore should not be construed as limitations on the present invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0037] Example 1

[0038] like Figure 1-11As shown, an incinerator capable of automatically unloading slag comprises an incineration box 1, a lower end mounting frame 2, an upper end cover 3, a mounting sleeve 4, an exhaust pipe 5, a feeding pipe 6, a middle end bearing plate assembly 7, a closing door 10, a collecting box 15, a middle end rotating sleeve 16, a rotating rod 17, a bevel gear 18, a fan blade 19, a bevel gear 20, a connecting rotating rod 21, a handle 22, a bevel gear 3 23, a bevel gear 4 24, and an execution motor 1 25. The lower end of the incineration box 1 is fixedly mounted with a lower end mounting frame 2, the upper end of the incineration box 1 is fixedly mounted with an upper end cover 3, the upper end cover 3 is fixedly mounted with a mounting sleeve 4, the mounting sleeve 4 is rotatably mounted with a middle end rotating sleeve 16, and the middle end rotating sleeve 16 is fixedly mounted There are bevel gear three 23, bevel gear three 23 and bevel gear four 24 meshing transmission, bevel gear four 24 is installed on the output shaft of the executive motor 1 25, the executive motor 1 25 is installed on the mounting sleeve 4, and a connecting rod 21 is rotatably installed on the middle-end rotating sleeve 16. One end of the connecting rod 21 is fixedly mounted with bevel gear two 20, and the other end of the connecting rod 21 is fixedly mounted with a handle 22. Bevel gear two 20 meshes with bevel gear one 18 for transmission, bevel gear one 18 is fixedly mounted on one end of the rotating rod 17, and the other end of the rotating rod 17 is fixedly mounted with a fan blade 19. The rotating rod 17 is rotatably mounted on the middle-end rotating sleeve 16, and bevel gear three 23 is installed on the middle-end rotating sleeve 16. Bevel gear three 23 meshes with bevel gear four 24 for transmission. The bevel gear 4 24 is installed on the output shaft of the executive motor 25, and the executive motor 25 is installed on the mounting sleeve 4. The incineration box 1 is equipped with a middle-end bearing plate assembly 7 for carrying the combustion material. The incineration box 1 is equipped with a pneumatic automatic unloading slag assembly. The incineration box 1 is fixedly equipped with a feeding pipe 6. The incineration box 1 is hingedly equipped with a closing door 10. The closing door 10 is equipped with an ignition device. With this arrangement, the material and the combustion-supporting agent are fed into the incineration box 1 through the feeding pipe 6. The material falls onto the middle-end bearing plate assembly 7 and is ignited by the ignition device installed on the closing door 10 to achieve the combustion of the material. At the same time, the executive motor 25 is started, and the bevel gear 3 23 and the cone gear 23 are connected to the bevel gear 23. Gear four 24 drives the middle-end rotating sleeve 16 to rotate, and the middle-end rotating sleeve 16 drives the fan blades 19 through the rotating rod 17. The fan blades 19 allow the air in the incineration box 1 to flow, so that the gas and smoke generated by the burning of materials in the incineration box 1 are discharged into the purification device through the exhaust pipe 5, and are discharged into the atmosphere after purification by the purification device; at the same time, the handle 22 is manually rotated, and the handle 22 is rotated by connecting the rotating rod 21 and the bevel gear 20. The bevel gear 20 drives the rotating rod 17 to rotate through the bevel gear 18, and the rotating rod 17 drives the fan blades 19 to rotate, so that the fan blades 19 effectively drive the air flow speed to change, thereby realizing the adjustment of the exhaust speed of the gas and smoke generated by the burning of materials.

[0039] Wherein, an exhaust pipe 5 for exhausting gas is installed on the installation sleeve 4.

[0040] Example 2

[0041] like Figure 5-11 As shown, the pneumatic automatic slag unloading assembly includes a water pressure connecting pipe 8, a connecting rod 9, a driving rack 11, a lower end connecting frame 12, a matching gear 13, a driving rack 2 14, a middle-end mounting sleeve 26, a sleeve opening 27, a reset spring 33, a slide 34, a collecting sleeve 35, a discharge port 36, a pneumatic box 37, a middle-end slide 38, a connecting belt 39, a piston plate 1 40, and a piston plate 2 41. The pneumatic box 37 is fixedly installed in the incineration box 1, and the middle-end mounting sleeve 26 is fixedly installed in the pneumatic box 37. The lower end of the middle-end mounting sleeve 26 is provided with a sleeve opening 27, and a plurality of sleeve openings 27 are provided. The outer wall of the middle-end mounting sleeve 26 is slidably mounted with a middle-end slide 38, and the middle-end slide 38 is connected to the middle-end slide 38. The air pressure box 37 slides together, the middle slide plate 38 is fixedly mounted on one end of the connecting belt 39, and the other end of the connecting belt 39 is fixedly mounted with a piston plate 140, which is slidably mounted in the water pressure connecting pipe 8, and a piston plate 241 is slidably mounted in the water pressure connecting pipe 8, and the piston plate 241 is fixedly mounted on the connecting rod 9, and the connecting rod 9 is fixedly mounted on the driving rack 11, and the driving rack 11 is slidably mounted on the lower end connecting frame 12, and the lower end connecting frame 12 is fixedly mounted on the aggregate sleeve 35, and a matching gear 13 is rotatably mounted on the lower end connecting frame 12, and a driving rack 2 14 is slidably mounted on the lower end connecting frame 12, and the driving rack 2 14 and the driving rack 11 are simultaneously meshed with the matching gear 13 for transmission, and the driving gear The second strip 14 is fixedly mounted on the slide 34, and the slide 34 is slidably mounted on the lower end connecting frame 12. A collection sleeve 35 is fixedly mounted on the incineration box 1, and a discharge port 36 is opened on the collection sleeve 35. A return spring 33 is provided between the slide 34 and the lower end connecting frame 12. The water pressure connecting pipe 8 is fixedly mounted on the air pressure box 37, and a pressure relief component is installed in the middle end mounting sleeve 26. With this arrangement, a certain amount of water is provided in the air pressure box 37. As the temperature in the incineration box 1 rises, the water in the air pressure box 37 evaporates, causing the air pressure in the air pressure box 37 to increase, causing the middle end slide 38 to slide upward, and the middle end slide 38 drives the piston plate 40 to slide in the chamber A through the connecting belt 39. Chamber A and chamber B is filled with liquid. Under the action of internal pressure, the piston plate 2 41 in the chamber B drives the connecting rod 9 to move downward, and the connecting rod 9 drives the driving rack 11 to drive the matching gear 13 to rotate, and the matching gear 13 drives the driving rack 2 14, so that the driving rack 2 14 drives the slide plate 34 to overcome the resistance of the reset spring 33, so that the discharge port 36 is opened, so that the residue produced after the incineration of the material is discharged through the discharge port 36, and the slag is automatically unloaded; at the same time, with the completion of the incineration of the material, the temperature in the incineration box 1 drops, so that the moisture in the air pressure box 37 no longer evaporates, so that the pressure in the air pressure box 37 is reduced, and under the action of the reset spring 33, the slide plate 34 blocks the discharge port 36 again.

[0042] Example 3

[0043] like Figure 5-11 As shown, the pressure relief assembly includes a middle-end mounting ring 28, a closing column 29, a movable plug 30, a plug push spring 31, and an exhaust hole 32. The middle-end mounting sleeve 26 is fixedly installed with the middle-end mounting ring 28, and the closing column 29 is fixedly installed on the middle-end mounting ring 28. There are multiple closing columns 29. The movable plug 30 is slidably mounted on the middle-end mounting ring 28. The closing column 29 and the movable plug 30 are slidably matched. The movable plug 30 is opened with a through hole adapted to the closing column 29. A, a plug push spring 31 is provided between the movable plug 30 and the middle-end mounting sleeve 26, and an exhaust hole 32 for discharging pressure is provided on the middle-end mounting sleeve 26. Such arrangement ensures the safe use of the air pressure box 37. When the air pressure in the air pressure box 37 increases sharply due to water evaporation, the movable plug 30 is separated from the closing column 29 under the action of the air pressure, and the excess gas is discharged through the through hole A and the exhaust hole 32, thereby ensuring the safe use of the air pressure box 37.

[0044] The plurality of closing columns 29 are arranged in a circumferential array along the central axis of the middle end mounting ring 28 .

[0045] The plurality of sleeve openings 27 are arranged in a circumferential array along the central axis of the middle-end mounting sleeve 26 .

[0046] Among them, the cross-sectional area of the chamber A on the water pressure connecting pipe 8 where the piston plate 1 40 slides is larger than that of the chamber B on the water pressure connecting pipe 8 where the piston plate 2 41 slides.

[0047] Example 4

[0048] like Figure 12-16As shown, the middle-end bearing plate assembly 7 includes a middle-end bearing plate 7-1, a bearing plate opening 1 7-2, an inner end slide 7-3, a slide support plate 7-4, a pulley 1 7-5, a rotating screw 7-6, a matching belt 7-7, a middle-end connecting bracket 7-8, a tensioning pulley 7-9, a driving pulley 7-10, a pulley shaft 7-11, and a manual sleeve 7-12. The middle-end bearing plate 7-1 is slidably installed on the incineration box 1, and the inner end slide 7- 3. The middle end bearing plate 7-1 is provided with a bearing plate opening 7-2. The inner end sliding plate 7-3 is fixedly provided with a sliding plate support plate 7-4. The middle end bearing plate 7-1 is rotatably provided with a pulley 7-5. The pulley 7-5 is provided with a matching belt 7-7. The rotating screw 7-6 is fixedly connected to the pulley 7-5. The middle end connecting bracket 7-8 is fixedly provided with a middle end connecting bracket 7-8. The tensioning pulley 7-9 is rotatably provided with the matching belt. 7-7 cooperates with tensioning, and a driving pulley 7-10 is installed on the cooperating belt 7-7. The driving pulley 7-10 is fixedly installed on one end of the pulley shaft 7-11, and a manual sleeve 7-12 is fixedly installed on the other end of the pulley shaft 7-11. A rotating screw 7-6 is rotatably installed on the middle-end bearing plate 7-1, and the rotating screw 7-6 is threadedly connected with the inner end slide 7-3. With this arrangement, as the material on the middle-end bearing plate 7-1 is burned, slag will be produced, and the size of the slag is different. The manual The manual sleeve 7-12 is rotated, and the manual sleeve 7-12 drives the driving pulley 7-10 to rotate through the pulley shaft 7-11. The driving pulley 7-10 drives the pulley 1 7-5 to rotate through the matching belt 7-7. The pulley 1 7-5 drives the rotating screw 7-6 to rotate. The rotating screw 7-6 drives the inner end slide 7-3 and the middle end bearing plate 7-1 to slide relative to each other, so that the position of the slide support plate 7-4 in the bearing plate opening 1 7-2 changes, making it easier for the slag to fall.

[0049] It will be understood that the present invention is described by way of some embodiments, and it will be appreciated by those skilled in the art that various changes or equivalent substitutions may be made to these features and embodiments without departing from the spirit and scope of the present invention. In addition, under the teachings of the present invention, these features and embodiments may be modified to adapt to specific circumstances and materials without departing from the spirit and scope of the present invention. Therefore, the present invention is not limited to the specific embodiments disclosed herein, and all embodiments falling within the scope of the claims of this application are intended to be protected by the present invention.

Claims

1. An incinerator capable of automatically unloading slag, characterized in that: The invention comprises an incineration box body (1), a lower end mounting frame (2), an upper end cover (3), a mounting sleeve (4), an exhaust pipe (5), a feeding pipe (6), a middle end bearing plate assembly (7), a closing door (10), a collecting box body (15), a middle end rotating sleeve (16), a rotating rod (17), a bevel gear 1 (18), a fan blade (19), a bevel gear 2 (20), a connecting rotating rod (21), a handle (22), a bevel gear 3 (23), a bevel gear 4 (24), and an execution motor 1 (25). The lower end of the incineration box body (1) is fixedly mounted. The incineration box (1) is provided with a lower mounting frame (2), an upper end cover (3) is fixedly mounted on the upper end of the incineration box (1), a mounting sleeve (4) is fixedly mounted on the upper end cover (3), a middle end rotating sleeve (16) is rotatably mounted in the mounting sleeve (4), a bevel gear (23) is fixedly mounted on the middle end rotating sleeve (16), the bevel gear (23) is meshed with the bevel gear (24) for transmission, the bevel gear (24) is mounted on the output shaft of the execution motor (25), the execution motor (25) is mounted on the mounting sleeve (4), the middle end rotating sleeve (1 6) is rotatably mounted on a connecting rod (21), one end of the connecting rod (21) is fixedly mounted with a second bevel gear (20), the other end of the connecting rod (21) is fixedly mounted with a handle (22), the second bevel gear (20) is meshed with a first bevel gear (18) for transmission, the first bevel gear (18) is fixedly mounted on one end of a rotating rod (17), the other end of the rotating rod (17) is fixedly mounted with a fan blade (19), the rotating rod (17) is rotatably mounted on a middle end rotating sleeve (16), and the middle end rotating sleeve (16) is mounted with a third bevel gear (23) The bevel gear 3 (23) is meshed with the bevel gear 4 (24) for transmission. The bevel gear 4 (24) is mounted on the output shaft of the executive motor 1 (25). The executive motor 1 (25) is mounted on the mounting sleeve (4). The incineration box (1) is equipped with a middle-end bearing plate assembly (7) for carrying combustion materials. The incineration box (1) is equipped with a pneumatic automatic slag unloading assembly. The incineration box (1) is fixedly equipped with a feeding pipe (6). The incineration box (1) is hingedly equipped with a closing door (10). The closing door (10) is equipped with an ignition device.

2. The incinerator capable of automatically unloading slag according to claim 1, characterized in that: An exhaust pipe (5) for exhausting gas is installed on the installation sleeve (4).

3. The incinerator capable of automatically unloading slag according to claim 1, characterized in that: The middle-end bearing plate assembly (7) comprises a middle-end bearing plate (7-1), a bearing plate opening (7-2), an inner end slide plate (7-3), a slide plate support plate (7-4), a pulley (7-5), a rotating screw (7-6), a matching belt (7-7), a middle-end connecting bracket (7-8), a tensioning pulley (7-9), a driving pulley (7-10), a pulley shaft (7-11), and a manual sleeve (7-12). The middle-end bearing plate (7-1) is slidably mounted on the incineration box (1), the middle-end bearing plate (7-1) is slidably mounted with the inner end slide plate (7-3), the middle-end bearing plate (7-1) is provided with a bearing plate opening (7-2), the inner end slide plate (7-3) is fixedly mounted with the slide plate support plate (7-4), the middle-end bearing plate (7-1) is rotatably mounted with a pulley (7-1), and the inner end slide plate (7-3) is fixedly mounted with the slide plate support plate (7-4). (7-5), a matching belt (7-7) is installed on the pulley one (7-5), a rotating screw (7-6) is fixedly connected to the pulley one (7-5), a middle-end connecting bracket (7-8) is fixedly installed on the middle-end bearing plate (7-1), a tensioning pulley (7-9) is rotatably installed on the middle-end connecting bracket (7-8), the tensioning pulley (7-9) cooperates with the matching belt (7-7) for tensioning, a driving pulley (7-10) is installed on the matching belt (7-7), the driving pulley (7-10) is fixedly installed on one end of the pulley rotating shaft (7-11), a manual sleeve (7-12) is fixedly installed on the other end of the pulley rotating shaft (7-11), a rotating screw (7-6) is rotatably installed on the middle-end bearing plate (7-1), and the rotating screw (7-6) is threadedly connected to the inner end slide plate (7-3).

Citation Information

Patent Citations

  • Sorting treatment equipment for garbage power generation incineration slag

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