Incinerator capable of secondarily utilizing waste gas heat energy
By designing the material conveying assembly, incinerator assembly, and baffle assembly to work in synergy, the problem of the inability to reuse the heat of waste gas in the incinerator was solved, material mixing and preheating were achieved, and incineration efficiency and heat utilization were improved.
Patent Information
- Application Number
- CN202511196524.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-26
- Publication Date
- 2025-10-31
AI Technical Summary
Existing incinerator technology cannot effectively achieve the secondary utilization of heat in waste gas.
An incinerator comprising a feeding assembly, an incinerator assembly, and a baffle assembly was designed. The feeding motor drives the screw shaft to transport materials and combustion aids into the incinerator. A bevel gear transmission system drives the mixing screw to mix the materials. Combined with the bevel gears in the exhaust assembly and the drive turntable, the exhaust gas emission speed is adjusted to achieve secondary utilization of the heat from the exhaust gas.
It achieves effective mixing and preheating of materials and combustion aids in the incinerator, improves the efficiency of secondary utilization of waste gas heat, regulates the waste gas emission rate, and ensures complete combustion of materials.
Smart Images

Figure CN120868451A_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of incinerator technology, and particularly relates to an incinerator that can reuse the heat energy of waste gas. Background Technology
[0002] Patent application CN202510844365.0 discloses an environmentally friendly treatment device for waste incineration slag, including an angle adjustment frame and a processing system. The processing system is installed in the angle adjustment frame, and the angle adjustment components are used to change the lateral tilt angle of the processing system. The processing system includes a feeding roller, with support components installed on the outer rings of both ends of the feeding roller to support its rotation. It also includes a charcoal separation component fitted around the outside of the feeding roller. The two sets of support components are fixedly installed at both ends of the charcoal separation component, and the feeding roller rotates in a sealed manner relative to the charcoal separation component. However, the disadvantage of this technical solution is that it cannot achieve the secondary utilization of heat in the waste gas. Summary of the Invention
[0003] The purpose of this invention is to provide an incinerator that can reuse the heat energy of waste gas, so as to solve the technical problem that it is impossible to reuse the heat in waste gas.
[0004] To achieve the above objectives, the specific technical solution of the incinerator capable of reusing waste gas heat energy according to the present invention is as follows:
[0005] An incinerator capable of reusing waste gas heat energy includes a material conveying assembly, an incinerator assembly, and a baffle assembly. The material conveying assembly is connected to the incinerator assembly, and the incinerator assembly is connected to the baffle assembly.
[0006] Furthermore, the material conveying assembly includes a material conveying sleeve, a material collecting ring, a material conveying motor, an exhaust pipe, a material conveying screw, a secondary utilization grid plate, a screw shaft, and a connecting sleeve. The material collecting ring is fixedly installed on the material conveying sleeve, the material conveying motor is installed on the material conveying sleeve, the screw shaft is installed on the output shaft of the material conveying motor, the screw shaft is rotatably installed on the material conveying sleeve, the material conveying screw is fixedly installed on the screw shaft, and the connecting sleeve is fixedly installed on the material conveying sleeve.
[0007] Furthermore, the incinerator assembly includes an incinerator cabinet, a connecting base, a stirring group, an exhaust group, and a discharge group. The connecting base is fixedly installed on the incinerator cabinet, and a conveying sleeve is fixedly installed on the connecting base. The stirring group for mixing materials and combustion aids is installed on the incinerator cabinet, the exhaust group for removing waste gas is installed on the incinerator cabinet, and the discharge group for controlling the discharge speed is installed on the incinerator cabinet.
[0008] The stirring assembly includes a stirring sleeve, a sleeve end cap, an actuator motor, a bevel gear, a bevel gear, a stirring shaft, and a stirring spiral. The stirring sleeve is fixedly installed on the incinerator cabinet, the sleeve end cap is fixedly installed on the stirring sleeve, the actuator motor is installed on the sleeve end cap, the output shaft of the actuator motor is installed with a bevel gear, the bevel gear and the bevel gear mesh and drive each other, the bevel gear is fixedly installed at one end of the stirring shaft, and the stirring spiral is fixedly installed at the other end of the stirring shaft. Multiple stirring spirals are provided, and the stirring sleeve is fixedly connected to the connecting sleeve.
[0009] Multiple stirring spirals are arranged in a circumferential array along the central axis of the stirring shaft;
[0010] The exhaust assembly includes a bevel gear three, a drive turntable, a piston slide rod, a reciprocating slide rod, an exhaust sleeve, an exhaust connecting pipe, a reciprocating piston, a drive slider, a manual screw, a trapezoidal slide rail, a rotation limit ring, a vertical limit frame, and rollers. The drive turntable is rotatably mounted on the sleeve end cap. A bevel gear three is fixedly mounted on the drive turntable, meshing with a bevel gear two. A trapezoidal slide rail is fixedly mounted on the drive turntable, and a drive slider is slidably mounted on the trapezoidal slide rail. A manual screw is rotatably mounted on the drive turntable and is limited in rotation by the rotation limit ring. The manual screw interacts with the drive slider. The screw connection has a roller mounted on the drive slider, which slides in a sliding engagement with the reciprocating slide rod. The reciprocating slide rod slides in a sliding engagement with the vertical limit frame, which is fixedly mounted on the sleeve end cover. A piston slide rod is fixedly mounted on the reciprocating slide rod, and a reciprocating piston is fixedly mounted on the piston slide rod. The reciprocating piston slides inside the exhaust sleeve, which is fixedly mounted on the sleeve end cover. A one-way valve A is provided between the exhaust sleeve and the sleeve end cover to draw out the exhaust gas from the incinerator cabinet in one direction. The exhaust connecting pipe is fixedly connected to the exhaust sleeve and the exhaust pipe.
[0011] The one-way valve A is model SV10-10;
[0012] The discharge assembly includes a middle end cover, a discharge opening, a limiting track, an opening and closing plate, a hinged connecting rod, a rotating limiting sleeve, a rotating disk, a first matching bevel gear, a second matching bevel gear, a rotating shaft with matching bevel gears, and a manual wheel. The middle end cover is fixedly installed inside the exhaust sleeve. The stirring shaft is rotatably connected to the middle end cover. The middle end cover has a discharge opening. The limiting track is fixedly installed on the middle end cover. The opening and closing plate is slidably installed inside the limiting track. The opening and closing plate is hinged to one end of the hinged connecting rod. The other end of the hinged connecting rod is hinged to the rotating disk. The rotating disk is rotatably limited by the rotating limiting sleeve and installed on the middle end cover. The first matching bevel gear is fixedly installed on the rotating disk. The first matching bevel gear meshes with the second matching bevel gear for transmission. The second matching bevel gear is fixedly installed at one end of the rotating shaft with matching bevel gears. The other end of the rotating shaft with matching bevel gears is fixedly installed with a manual wheel. The rotating shaft with matching bevel gears rotates in conjunction with the incinerator cabinet.
[0013] The ignition device is model BWFK-20.
[0014] Furthermore, the partition assembly includes a partition bracket, an upper door, a lower door, a grate, and an ash collection opening. The partition bracket is fixedly installed inside the incinerator cabinet, and the grate is fixedly installed on the partition bracket. The grate divides the incinerator cabinet into an upper combustion chamber for incineration and a lower collection chamber for collecting ash. The grate has multiple ash collection openings, and the upper door and lower door are hinged to the partition bracket.
[0015] Furthermore, multiple ash collection openings are arranged in a linear array along the grate.
[0016] The advantages of this invention are:
[0017] 1. Place the material to be incinerated in the collecting ring and start the conveying motor. The conveying motor drives the conveying screw to rotate through the screw shaft. The conveying screw acts on the material and combustion additives, and enters the incinerator assembly for incineration through the connecting sleeve.
[0018] 2. The material and combustion aid enter the mixing sleeve through the connecting sleeve. The actuator motor is started. The actuator motor drives the bevel gear 2 to rotate through the bevel gear 1. The bevel gear 2 drives the mixing screw to rotate through the mixing shaft. The mixing screw mixes the material and combustion aid. The mixed material and combustion aid fall onto the baffle assembly through the discharge group. The combustion is completed on the upper side of the baffle assembly. The ash produced by combustion falls to the lower side of the baffle assembly.
[0019] 3. While the second bevel gear rotates, it drives the drive turntable to rotate via the third bevel gear. Manually turning the manual screw drives the drive slider to slide at an appropriate position on the trapezoidal slide rail. As the drive turntable rotates, the drive slider drives the reciprocating slide rod to slide back and forth along the vertical limit frame via rollers. The reciprocating slide rod drives the piston slide rod to slide back and forth inside the exhaust sleeve. When the reciprocating piston moves upward along the exhaust sleeve, one-way valve A opens, allowing the gas from the incinerator cabinet after combustion to enter the exhaust sleeve through one-way valve A. When the reciprocating piston moves downward along the exhaust sleeve, one-way valve A closes, allowing the gas from the exhaust sleeve after combustion to enter the exhaust pipe through the exhaust connecting pipe. The exhaust gas flowing through the exhaust pipe... The heat-heating secondary utilization grid plate preheats and dries the materials and combustion aids spirally transported in the connecting sleeve, thus achieving secondary utilization of heat in the waste gas. Simultaneously, as the manual screw rotates, the drive slider slides along the trapezoidal slide rail to different positions. The rotation of the drive turntable changes the radius of the drive slider's rotation, which in turn drives the reciprocating slide rod along the vertical limit frame to change its reciprocating stroke. This changes the emission speed of the incinerated waste gas. By adjusting the emission speed of the incinerated waste gas, the heat exchange speed of the secondary utilization grid plate is adjusted, thereby regulating the preheating and drying speed of the materials and combustion aids spirally transported in the connecting sleeve.
[0020] 4. The mixture of material and accelerator, after being mixed by the stirring sleeve, falls into the incinerator cabinet through the discharge opening. The incinerator cabinet is equipped with an ignition device, which ignites the mixture of material and accelerator to complete the combustion of the material. At the same time, the manual wheel is turned manually. The manual wheel drives the bevel gear shaft and the rotating disk through the bevel gear one. The rotating disk drives the opening plate to slide along the limit track through the hinged connecting rod, controlling the opening of the discharge opening, thereby adjusting the amount of material and accelerator mixture falling and ensuring complete combustion of the mixture. Attached Figure Description
[0021] Figure 1 This is a schematic diagram of the overall structure of the present invention;
[0022] Figure 2 for Figure 1 A schematic diagram showing the location of the cutting line;
[0023] Figure 3 for Figure 2 A sectional view along section AA;
[0024] Figure 4 This is a schematic diagram of the material conveying assembly structure of the present invention;
[0025] Figure 5 for Figure 4 Diagram of the position of the cutting line Figure 1 ;
[0026] Figure 6 for Figure 5 A sectional view along section BB;
[0027] Figure 7 for Figure 4 Diagram of the position of the cutting line Figure 2 ;
[0028] Figure 8 for Figure 7 A sectional view along section CC;
[0029] Figure 9 This is a schematic diagram of the incinerator assembly structure of the present invention;
[0030] Figure 10 for Figure 9 Diagram of the position of the cutting line Figure 1 ;
[0031] Figure 11 for Figure 10 A sectional view along section DD;
[0032] Figure 12 This is a schematic diagram of the middle end cap structure of the present invention;
[0033] Figure 13 This is a schematic diagram of the drive turntable structure of the present invention. Figure 1 ;
[0034] Figure 14 This is a schematic diagram of the drive turntable structure of the present invention. Figure 2 ;
[0035] Figure 15 for Figure 9 Diagram of the position of the cutting line Figure 2 ;
[0036] Figure 16 for Figure 15 A sectional view along section EE;
[0037] Figure 17 for Figure 16 A magnified view of a portion of the image;
[0038] Figure 18 This is a schematic diagram of the partition assembly structure of the present invention;
[0039] Explanation of markings in the diagram: 1. Conveying assembly; 1-1. Conveying sleeve; 1-2. Collecting ring; 1-3. Conveying motor; 1-4. Exhaust pipe; 1-5. Conveying screw; 1-6. Secondary utilization grate; 1-7. Screw shaft; 1-8. Connecting sleeve; 2. Incinerator assembly; 2-1. Incinerator cabinet; 2-2. Connecting base; 2-3. Agitating sleeve; 2-4. Sleeve end cap; 2-5. Actuating motor one; 2-6. Conical gear one; 2-7. Conical gear two; 2-8. Drive turntable; 2-9. Piston slide rod; 2-10. Reciprocating slide rod; 2-11. Exhaust sleeve; 2-12. Exhaust connecting pipe; 2-13. Agitating shaft; 2-14. Agitating screw; 2-15. 2-16 Middle end cap; 2-17 Discharge opening; 2-18 Limiting rail; 2-19 Opening and closing plate; 2-20 Hinge connecting rod; 2-21 Rotating limiting sleeve; 2-22 Rotating disk; 2-23 Matching bevel gear one; 2-24 Matching bevel gear two; 2-25 Matching bevel gear rotating shaft; 2-26 Manual wheel; 2-27 Reciprocating piston; 2-28 Drive slider; 2-29 Manual screw; 2-30 Trapezoidal slide rail; 2-31 Rotating limiting ring; 2-32 Vertical limiting frame; 2-33 Roller; 3 Partition assembly; 3 Partition bracket; 3-1 Upper opening door; 3-2 Lower opening door; 3-3 Grate; 3-4 Ash discharge opening; 3-5. Detailed Implementation
[0040] The technical solution of the present invention will now be clearly and completely described with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0041] In the description of this invention, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing the invention and for simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the 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.
[0042] Example 1
[0043] like Figure 1-3 As shown, an incinerator capable of reusing waste gas heat energy includes a material conveying assembly 1, an incinerator assembly 2, and a baffle assembly 3. The material conveying assembly 1 is connected to the incinerator assembly 2, and the incinerator assembly 2 is connected to the baffle assembly 3.
[0044] Example 2
[0045] like Figure 4-8 As shown, the material conveying assembly 1 includes a material conveying sleeve 1-1, a material collecting ring 1-2, a material conveying motor 1-3, an exhaust pipe 1-4, a material conveying screw 1-5, a secondary utilization grid plate 1-6, a screw shaft 1-7, and a connecting sleeve 1-8. The material collecting ring 1-2 is fixedly installed on the material conveying sleeve 1-1. The material conveying motor 1-3 is also installed on the material conveying sleeve 1-1. The screw shaft 1-7 is mounted on the output shaft of the material conveying motor 1-3, and the screw shaft 1-7 is rotatably mounted on the material conveying sleeve. A conveying screw 1-5 is fixedly installed on the cylinder 1-1 and the screw shaft 1-7. A connecting sleeve 1-8 is fixedly installed on the conveying sleeve 1-1. With this configuration, the material to be incinerated is placed in the collecting ring 1-2, and the conveying motor 1-3 is started. The conveying motor 1-3 drives the conveying screw 1-5 to rotate through the screw shaft 1-7. The conveying screw 1-5 acts on the material and combustion additives through the screw shaft, and enters the incinerator assembly 2 for incineration through the connecting sleeve 1-8.
[0046] Example 3
[0047] like Figure 9-17 As shown, the incinerator assembly 2 includes an incinerator cabinet 2-1, a connecting base 2-2, a stirring group, an exhaust group, and a discharge group. The connecting base 2-2 is fixedly installed on the incinerator cabinet 2-1, and a conveying sleeve 1-1 is fixedly installed on the connecting base 2-2. The stirring group for mixing materials and combustion aids is installed on the incinerator cabinet 2-1. The exhaust group for removing waste gas is installed on the incinerator cabinet 2-1. The discharge group for controlling the discharge speed is installed on the incinerator cabinet 2-1.
[0048] The stirring assembly includes a stirring sleeve 2-3, a sleeve end cap 2-4, an actuator motor 2-5, a bevel gear 2-6, a bevel gear 2-7, a stirring shaft 2-14, and a stirring spiral 2-15. The stirring sleeve 2-3 is fixedly installed on the incinerator cabinet 2-1. The sleeve end cap 2-4 is fixedly installed on the stirring sleeve 2-3. The actuator motor 2-5 is installed on the sleeve end cap 2-4. A bevel gear 2-6 is installed on the output shaft of the actuator motor 2-5. The bevel gear 2-6 meshes with the bevel gear 2-7. The bevel gear 2-7 is fixedly installed at one end of the stirring shaft 2-14. The stirring spiral 2-15 is fixedly installed at the other end of the stirring shaft 2-14. 5. Multiple stirring spirals 2-15 are provided. The stirring sleeve 2-3 is fixedly connected to the connecting sleeve 1-8. With this configuration, the material and combustion aid enter the stirring sleeve 2-3 through the connecting sleeve 1-8. The actuator motor 2-5 is started. The actuator motor 2-5 drives the bevel gear 2-7 to rotate through the bevel gear 2-6. The bevel gear 2-7 drives the stirring spiral 2-15 to rotate through the stirring shaft 2-14. The stirring spiral 2-15 is used to stir and mix the material and combustion aid. The stirred and mixed material and combustion aid fall onto the partition assembly 3 through the discharge group. The combustion is completed on the upper side of the partition assembly 3. The ash produced by combustion falls to the lower side of the partition assembly 3.
[0049] Among them, a plurality of stirring spirals 2-15 are arranged in a circumferential array along the central axis of stirring shaft 2-14;
[0050] The exhaust assembly includes a bevel gear 2-8, a drive turntable 2-9, a piston slide rod 2-10, a reciprocating slide rod 2-11, an exhaust sleeve 2-12, an exhaust connecting pipe 2-13, a reciprocating piston 2-27, a drive slider 2-28, a manual screw 2-29, a trapezoidal slide rail 2-30, a rotation limit ring 2-31, a vertical limit frame 2-32, and a roller 2-33. The drive turntable 2-9 is rotatably mounted on the sleeve end cap 2-4. A bevel gear 2-8 is fixedly mounted on the drive turntable 2-9, and the bevel gear 2-8 meshes with the bevel gear 2-7. A trapezoidal slide rail 2-30 is fixedly mounted on the drive turntable 2-9, and a drive slider 2-28 is slidably mounted on the trapezoidal slide rail 2-30. A manual screw 2-29 is rotatably mounted and is limited in rotation by a rotation limit ring 2-31. The manual screw 2-29 is threadedly connected to a drive slider 2-28. A roller 2-33 is rotatably mounted on the drive slider 2-28. The roller 2-33 slides in engagement with a reciprocating slide rod 2-11. The reciprocating slide rod 2-11 slides in engagement with a vertical limit frame 2-32. The vertical limit frame 2-32 is fixedly mounted on the sleeve end cover 2-4. A piston slide rod 2-10 is fixedly mounted on the reciprocating slide rod 2-11. A reciprocating piston 2-27 is fixedly mounted on the piston slide rod 2-10. The reciprocating piston 2-27 slides inside the exhaust sleeve 2-12. The exhaust sleeve 2-12 is fixedly mounted on the sleeve end cover 2-4. A one-way valve A is installed between the sleeve end cap 2-4 to draw out the exhaust gas from the incinerator cabinet 2-1 in one direction. The exhaust pipe 2-13 is fixedly connected to the exhaust sleeve 2-12 and the exhaust pipe 1-4. With this configuration, the rotation of the second bevel gear 2-7 drives the drive turntable 2-9 to rotate through the third bevel gear 2-8. The manual screw 2-29 is manually turned, which drives the drive slider 2-28 to slide to an appropriate position on the trapezoidal slide rail 2-30. As the drive turntable 2-9 rotates, the drive slider 2-28 drives the reciprocating slide rod 2-11 to slide back and forth along the vertical limit frame 2-32 through the roller 2-33. The reciprocating slide rod 2-11 drives the piston slide rod. 2-10 drives the reciprocating piston 2-27 to slide back and forth inside the exhaust sleeve 2-12. When the reciprocating piston 2-27 moves upward along the exhaust sleeve 2-12, the one-way valve A opens, allowing the gas from the combustion of the material in the incinerator cabinet 2-1 to enter the exhaust sleeve 2-12 through the one-way valve A. When the reciprocating piston 2-27 moves downward along the exhaust sleeve 2-12, the one-way valve A closes, allowing the gas from the combustion of the material in the exhaust sleeve 2-12 to enter the exhaust pipe 1-4 through the exhaust connecting pipe 2-13. The heat from the exhaust gas flowing through the exhaust pipe 1-4 heats the secondary utilization grid plate 1-6, and the secondary utilization grid plate 1-6 is used to preheat and dry the material and combustion aid transported by the spiral in the connecting sleeve 1-8.Simultaneously, as the manual screw 2-29 rotates, the drive slider 2-28 slides along the trapezoidal slide rail 2-30 to different positions. As the drive turntable 2-9 rotates, the radius of rotation of the drive slider 2-28 changes. This, in turn, drives the reciprocating slide rod 2-11 to reciprocate along the vertical limit frame 2-32 through the drive slider 2-28 and the roller 2-33, thereby changing the emission speed of the incinerated exhaust gas. By adjusting the emission speed of the incinerated exhaust gas, the heat exchange speed of the secondary utilization grid plate 1-6 can be adjusted, and the preheating and drying speed of the materials and combustion aids transported by the spiral in the connecting sleeve 1-8 can be adjusted.
[0051] Among them, the one-way valve A is model SV10-10;
[0052] The discharge assembly includes a middle end cap 2-16, a discharge opening 2-17, a limiting track 2-18, an opening and closing plate 2-19, a hinged connecting rod 2-20, a rotating limiting sleeve 2-21, a rotating disk 2-22, a first matching bevel gear 2-23, a second matching bevel gear 2-24, a matching bevel gear rotating shaft 2-25, and a manual wheel 2-26. The middle end cap 2-16 is fixedly installed inside the exhaust sleeve 2-12. The stirring rotating shaft 2-14 is rotatably connected to the middle end cap 2-16. The middle end cap 2-16 has a discharge opening. Material opening 2-17, a limiting track 2-18 is fixedly installed on the middle end cover 2-16, an opening and closing plate 2-19 is slidably installed inside the limiting track 2-18, the opening and closing plate 2-19 is hinged to one end of the hinge connecting rod 2-20, the other end of the hinge connecting rod 2-20 is hinged to the rotating disk 2-22, the rotating disk 2-22 is rotatably limited by the rotating limiting sleeve 2-21 and installed on the middle end cover 2-16, a mating bevel gear 2-23 is fixedly installed on the rotating disk 2-22, the mating bevel gear 2-23 and... The bevel gear 2-24 engages with the drive mechanism. Bevel gear 2-24 is fixedly installed at one end of bevel gear shaft 2-25, while a manual wheel 2-26 is fixedly installed at the other end of shaft 2-25. Shaft 2-25 rotates with the incinerator cabinet 2-1. With this configuration, the mixture of material and combustion aid, mixed by stirring sleeve 2-3, falls into the incinerator cabinet 2-1 through discharge opening 2-17. The incinerator cabinet 2-1 is equipped with an ignition device that ignites the material and combustion aid. The mixture of fuel and accelerant completes the combustion of the material; at the same time, the manual wheel 2-26 is manually rotated. The manual wheel 2-26 drives the bevel gear 2-23 and the rotating disk 2-22 to rotate through the cooperating bevel gear shaft 2-25 and cooperating bevel gear 2-24. The rotating disk 2-22 drives the opening and closing plate 2-19 to slide along the limit track 2-18 through the hinged connecting rod 2-20, thereby controlling the opening degree of the discharge opening 2-17, thereby adjusting the falling amount of the mixture of material and accelerant, and adjusting the mixture of material and accelerant to ensure complete combustion.
[0053] The ignition device is model BWFK-20.
[0054] Example 4
[0055] like Figure 18 As shown, the partition assembly 3 includes a partition bracket 3-1, an upper door 3-2, a lower door 3-3, a grate 3-4, and an ash collection opening 3-5. The partition bracket 3-1 is fixedly installed inside the incinerator cabinet 2-1. The grate 3-4 is fixedly installed on the partition bracket 3-1. The grate 3-4 divides the incinerator cabinet 2-1 into an upper combustion chamber for incineration and a lower collection chamber for collecting ash. The grate 3-4 has multiple ash collection openings 3-5. The upper door 3-2 and the lower door 3-3 are hinged to the partition bracket 3-1.
[0056] The multiple ash collection openings 3-5 are arranged in a linear array along the grate 3-4.
[0057] It is understood that the present invention has been described through some embodiments, and those skilled in the art will recognize that various changes or equivalent substitutions can be made to these features and embodiments without departing from the spirit and scope of the invention. Furthermore, under the teachings of the present invention, these features and embodiments can be modified to adapt to specific situations and materials without departing from the spirit and scope of the 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 within the protection scope of the present invention.
Claims
1. An incinerator capable of reusing the thermal energy of waste gas, characterized in that, It includes a material conveying assembly (1), an incinerator assembly (2), and a baffle assembly (3). The material conveying assembly (1) is connected to the incinerator assembly (2), and the incinerator assembly (2) is connected to the baffle assembly (3).
2. The incinerator capable of reusing waste gas heat energy according to claim 1, characterized in that, The material conveying assembly (1) includes a material conveying sleeve (1-1), a material collecting ring (1-2), a material conveying motor (1-3), an exhaust pipe (1-4), a material conveying screw (1-5), a secondary utilization grid plate (1-6), a screw shaft (1-7), and a connecting sleeve (1-8). The material collecting ring (1-2) is fixedly installed on the material conveying sleeve (1-1). The material conveying motor (1-3) is installed on the material conveying sleeve (1-1). The screw shaft (1-7) is installed on the output shaft of the material conveying motor (1-3). The screw shaft (1-7) is rotatably installed on the material conveying sleeve (1-1). The material conveying screw (1-5) is fixedly installed on the screw shaft (1-7). The connecting sleeve (1-8) is fixedly installed on the material conveying sleeve (1-1). According to claim 2, an incinerator capable of reusing waste gas heat energy is characterized in that the incinerator assembly (2) includes an incinerator cabinet (2-1), a connecting base (2-2), a stirring group, an exhaust group, and a discharge group. The connecting base (2-2) is fixedly installed on the incinerator cabinet (2-1), and a conveying sleeve (1-1) is fixedly installed on the connecting base (2-2). The stirring group for mixing materials and combustion aids is installed on the incinerator cabinet (2-1), the exhaust group for removing waste gas is installed on the incinerator cabinet (2-1), and the discharge group for controlling the discharge speed is installed on the incinerator cabinet (2-1).
3. The incinerator capable of reusing waste gas heat energy according to claim 3, characterized in that, The partition assembly (3) includes a partition bracket (3-1), an upper door (3-2), a lower door (3-3), a grate (3-4), and an ash collection opening (3-5). The partition bracket (3-1) is fixedly installed inside the incinerator cabinet (2-1). The grate (3-4) is fixedly installed on the partition bracket (3-1). The grate (3-4) divides the incinerator cabinet (2-1) into an upper combustion chamber for incineration and a lower collection chamber for collecting ash. The grate (3-4) has multiple ash collection openings (3-5). The upper door (3-2) and the lower door (3-3) are hinged on the partition bracket (3-1).
4. The incinerator capable of reusing waste gas heat energy according to claim 4, characterized in that, Multiple ash collection openings (3-5) are arranged in a linear array along the grate (3-4).
Citation Information
Patent Citations
Environment-friendly treatment device for waste incineration slag
CN120362130A
Garbage incinerator
CN109357263A
Clinical medicine waste sample treatment device
CN119374111A
Incinerator capable of automatically discharging slag
CN120488267A
Waste incineration device
CN221975269U