Chain type waste resin powder incinerator
By combining the turning component and the blowing component, the problem of incomplete combustion of waste resin powder in the chain grate incinerator is solved, achieving efficient turning and ash removal, improving the combustion efficiency and ash removal capability of the device, and enhancing the dust suppression effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-02-06
- Publication Date
- 2026-04-14
AI Technical Summary
Existing chain grate incinerators are not easy to turn over when burning waste resin powder, resulting in slow combustion speed and incomplete combustion, which affects the working efficiency and combustion capacity of the equipment.
The system combines a turning component and a blowing component. Through mechanical turning and forced air blowing, the turning plate is squeezed and turned by rotational power, and the waste resin powder is ignited by a flame rod to solve the problem of incomplete combustion caused by material accumulation. At the same time, the swing component realizes ash removal and the cooling component realizes dust suppression and cooling.
It improves the combustion efficiency of waste resin powder and the turning ability of the device, enhances the ash removal and dust suppression capabilities of the device, and improves the working efficiency and combustion completeness of the device.
Smart Images

Figure CN121854873A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of incinerator technology, specifically to a chain-type waste resin powder incinerator. Background Technology
[0002] Waste resin powder refers to powdery solid waste obtained during the recycling and processing of electronic waste (such as waste circuit boards and waste copper-clad laminates) after crushing, sorting and other processes. It is mainly composed of thermosetting resin (such as epoxy resin) and usually contains glass fiber, metal residues and various additives. It is a common by-product of electronic waste resource utilization. Waste resin powder requires a professional chain incinerator for combustion treatment.
[0003] However, in the existing chain grate incinerator, it is not convenient to turn the waste resin powder in the incinerator, which can easily lead to slow combustion speed and incomplete combustion. The inconvenience of turning and turning to ensure complete combustion affects the working efficiency of the device and its ability to achieve complete combustion. Therefore, based on the shortcomings of the technology, a chain grate waste resin powder incinerator that can solve the above problems is proposed. Summary of the Invention
[0004] The purpose of this invention is to provide a chain-type waste resin powder incinerator, which solves the following technical problems:
[0005] It is inconvenient to turn over the waste resin powder in the incinerator, which can easily lead to slow combustion and incomplete combustion. The inconvenience of turning over to ensure complete combustion affects the working efficiency of the device and its ability to achieve complete combustion.
[0006] The objective of this invention can be achieved through the following technical solutions:
[0007] A chain-type waste resin powder incinerator includes a furnace body, a feed chute fixedly installed at one end of the furnace body, a chain conveyor belt rotatably installed inside the furnace body, an electric telescopic plate fixedly installed at one end of the furnace body near the feed chute, multiple flame-spraying rods fixedly installed inside the furnace body, and a tilting assembly provided on the furnace body.
[0008] The flipping assembly includes a protective cover fixedly installed on one side of the furnace body. A motor is fixedly installed on the top of the protective cover. An air inlet is provided on the side of the protective cover near the motor. An eccentric wheel is fixedly installed at the output end of the motor, which rotates through the protective cover. A balance bar is fixedly installed inside the furnace body. A moving plate is slidably installed through the balance bar. A spring is fixedly installed at the end of the moving plate away from the protective cover. A flipping plate is fixedly installed on the side of the moving plate near the chain conveyor belt. A sliding rod is fixedly installed at the end of the moving plate away from the spring. A rotating rod with fan blades is fixedly installed on the side of the eccentric wheel away from the motor. A blower pipe is installed between the protective cover and the furnace body.
[0009] As a further embodiment of the present invention: the end of the slide rod away from the moving plate slides through the furnace body and is fixedly installed with a connecting plate, and the side of the eccentric wheel slides against the side of the connecting plate away from the slide rod.
[0010] As a further embodiment of the present invention: the fan blades are fixedly installed on the rotating rod, the air blowing pipe is fixedly installed at the bottom of the protective cover, and the flame-spraying rod and the flipping plate are installed alternately on the inner wall of the furnace body.
[0011] As a further embodiment of the present invention: the end of the spring away from the moving plate is fixedly installed on the inner wall of the furnace body, the spring is nested on the outer surface of the balance bar, and the end of the flipping plate away from the moving plate is slidably attached to the chain conveyor belt.
[0012] As a further aspect of the present invention: the furnace body is provided with a swing assembly, the swing assembly including an ash receiving frame fixedly installed at the end of the furnace body away from the feed chute, a swing plate rotatably installed on the side of the ash receiving frame away from the furnace body, an oblong through hole fixedly installed at the end of the swing plate away from the rotation axis, a plurality of teeth fixedly installed at the end of the swing plate away from the oblong through hole, a fixing plate fixedly installed on the side of the swing plate close to the swing plate, an electric telescopic rod with toothed plates fixedly installed on the side of the fixing plate close to the teeth, and an ash-dispensing plate slidably installed inside the ash receiving frame.
[0013] As a further aspect of the present invention: a rectangular through hole is provided on the side of the ash receiving frame near the ash dispensing plate, a slider is slidably installed through the rectangular through hole, a guide rod is slidably installed through the slider, a sliding column is fixedly installed on the side of the guide rod away from the slider, and a limit plate is fixedly installed on the end of the sliding column away from the slider.
[0014] As a further embodiment of the present invention: the two ends of the guide rod are fixedly installed on the inner wall of the rectangular through hole, one side of the ash-dispensing plate is fixedly installed on the slider, the bottom of the ash-dispensing plate is slidably attached to the inner bottom wall of the ash-receiving frame, the toothed plate is fixedly installed on the end of the electric telescopic rod away from the fixed plate, and the toothed plate and the teeth are meshed together.
[0015] As a further aspect of the present invention: a cooling component is provided on the ash receiving frame, the cooling component includes spray plates fixedly installed on both sides of the ash receiving frame, two baffles are fixedly installed on the top of the ash receiving frame, two water bags are fixedly installed on the corresponding side of the two baffles, a squeezing plate is slidably installed between the two water bags, a fixing rod is fixedly installed on the side of the squeezing plate away from the furnace body, and a one-way water inlet pipe is connected to the side of the baffle away from the water bags.
[0016] As a further aspect of the present invention: the bottom of the ash receiving frame is provided with an installation groove, a condensation rod is fixedly installed in the installation groove, and the end of the one-way water inlet pipe away from the baffle is connected to and installed on the spray plate.
[0017] As a further embodiment of the present invention: the end of the fixing rod away from the extrusion plate is fixedly installed on the limiting plate, and the end of the water bag away from the baffle is fixedly installed on the extrusion plate.
[0018] The beneficial effects of this invention are:
[0019] The turning component is the core structure for improving the combustion efficiency of waste resin powder. By combining mechanical turning with forced air blowing, it solves the problem of incomplete combustion caused by material accumulation, facilitates turning and complete combustion, and uses the rotational power to squeeze and turn the turning plate, which helps to improve the turning ability of the device, the blowing ability of the device, the working efficiency of the device combustion, and the ability of the device to complete combustion.
[0020] The swing plate in the swing assembly drives the dust-dispensing plate, which facilitates the reciprocating swing cleaning operation, which helps to improve the dust-dispensing capacity of the device, improves the working efficiency of the swing cleaning device, and improves the working efficiency of the dust-dispensing device.
[0021] The cooling assembly utilizes the swinging force of the swing plate to cause the limiting plate to drive the squeezing plate to squeeze the water bag via the fixed rod. This allows the water in the water bag to enter the spray plate through the one-way water inlet pipe for spraying. At the same time, the atomized spraying achieves a dust suppression effect, avoiding secondary dust pollution. The combination of the condensing rod and the spray plate facilitates rapid cooling, which is beneficial to improving the cooling capacity and dust suppression capacity of the device. Attached Figure Description
[0022] The invention will now be further described with reference to the accompanying drawings.
[0023] Figure 1 This is a schematic diagram of the overall structure of a chain-type waste resin powder incinerator according to the present invention;
[0024] Figure 2 yes Figure 1 Enlarged structural diagram at point A;
[0025] Figure 3 This is a bottom view structural schematic diagram of a chain-type waste resin powder incinerator according to the present invention;
[0026] Figure 4 yes Figure 3 Enlarged structural diagram at point B;
[0027] Figure 5 This is a side view of a chain-type waste resin powder incinerator according to the present invention.
[0028] Figure 6 yes Figure 5 Enlarged structural diagram at point C;
[0029] Figure 7 This is a schematic diagram of the internal structure of a chain-type waste resin powder incinerator according to the present invention;
[0030] Figure 8 yes Figure 7 A magnified structural diagram at point D.
[0031] In the diagram: 1. Furnace body; 2. Feed chute; 3. Chain conveyor belt; 4. Tilting assembly; 41. Protective cover; 42. Motor; 43. Air duct; 44. Air inlet; 45. Rotating rod; 46. Eccentric wheel; 47. Connecting plate; 48. Slide rod; 49. Balance bar; 410. Moving plate; 411. Spring; 412. Tilting plate; 413. Fan blade; 5. Swing assembly; 51. Ash collection frame; 52. Electric telescopic rod; 53. Toothed plate; 54. Tooth; 55. Swing plate; 56. Waist-shaped through hole; 57. Rectangular through hole; 58. Guide rod; 59. Slider; 510. Sliding column; 511. Limiting plate; 512. Ash removal plate; 513. Fixing plate; 6. Cooling component; 61. Fixing rod; 62. Mounting groove; 63. Condensing rod; 64. Baffle; 65. Water bladder; 66. Extrusion plate; 67. One-way water inlet pipe; 68. Spray plate; 7. Electric telescopic plate; 8. Flame rod. Detailed Implementation
[0032] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. 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.
[0033] Please see Figure 1 - Figure 8As shown, the present invention is a chain-type waste resin powder incinerator, 1. including furnace body 1, which is welded and formed by high temperature resistant alloy material, and the inner wall is lined with refractory brick layer, which can withstand the high temperature incineration environment of 800-1200℃. Sealed end caps are installed at both ends of the furnace body to ensure that the flue gas does not leak out during the combustion process. A feed trough 2 is fixedly installed at one end of the furnace body 1. A chain conveyor belt 3 is rotatably installed inside the furnace body 1. The chain conveyor belt 3 adopts a combination structure of high temperature resistant chain and bearing plate. The chain is made of nickel-chromium alloy. The surface of the bearing plate has ventilation holes with a diameter of 5-8mm, which not only ensures the stability of material bearing, but also facilitates the flame penetration and air circulation of the flame rod 8 below. The top of the furnace body 1 is connected to the harmful gas purification equipment. The chain conveyor belt 3 is driven by the drive sprockets at both ends to adapt to different combustion volume requirements. An electric telescopic plate 7 is fixedly installed at one end of the furnace body 1 near the feed trough 2. The electric telescopic plate 7 plays the role of controlling and adjusting the thickness of the waste resin powder. Multiple flame rods 8 are fixedly installed inside the furnace body 1. The flame rods 8 facilitate the ignition of the waste resin powder on the chain conveyor belt 3. A turning component 4 is set on the furnace body 1.
[0034] The tilting assembly 4 includes a protective cover 41 fixedly installed on one side of the furnace body 1. The protective cover 41 is made of welded steel plate. A motor 42 is fixedly installed on the top of the protective cover 41. An air inlet 44 is opened on the side of the protective cover 41 near the motor 42, serving as the air inlet channel for the blower pipe 43. A metal filter screen is installed inside the air inlet 44 to prevent foreign objects from entering. The output end of the motor 42 rotates through the protective cover 41 and is fixedly installed with an eccentric wheel 46. A balance bar 49 is fixedly installed inside the furnace body 1. The balance bar 49 serves as a balance guide for the moving plate 410. The moving plate 410 is slidably installed through the balance bar 49. A spring is fixedly installed on the end of the moving plate 410 away from the protective cover 41. 411. A flipping plate 412 is fixedly installed on the side of the moving plate 410 near the chain conveyor belt 3. The flipping plate 412 reciprocates on the chain conveyor belt 3, which serves to flip the incompletely burned waste resin powder for complete combustion. A slide rod 48 is fixedly installed on the end of the moving plate 410 away from the spring 411. A rotating rod 45 with fan blades 413 is fixedly installed on the side of the eccentric wheel 46 away from the motor 42. A blower pipe 43 is installed between the protective cover 41 and the furnace body 1. The end of the slide rod 48 away from the moving plate 410 slides through the furnace body 1 and is fixedly installed with a connecting plate 47. The side of the eccentric wheel 46 slides against the side of the connecting plate 47 away from the slide rod 48, so that the eccentric wheel 46... The eccentric wheel 46, through the connecting plate 47, slide rod 48, and moving plate 410, acts as a compression spring 411. The fan blade 413 is fixedly installed on the rotating rod 45, and the air blowing pipe 43 is fixedly installed at the bottom of the protective cover 41. The eccentric wheel 46 drives the fan blade 413 to rotate through the rotating rod 45, which facilitates the blowing of air entering the air inlet 44 onto the air blowing pipe 43, allowing air to be introduced into the furnace body 1 through the air blowing pipe 43, which helps to fully combust the waste resin powder. The flame-spraying rod 8 and the flipping plate 412 are installed alternately on the inner wall of the furnace body 1. The end of the spring 411 away from the moving plate 410 is fixedly installed on the inner wall of the furnace body 1, and the spring 411 is nested on the outer surface of the balance rod 49. The elastic return of spring 411 facilitates the reciprocating turning operation of the turning plate 412 on the chain conveyor belt 3 via the moving plate 410. The end of the turning plate 412 away from the moving plate 410 slides and fits against the chain conveyor belt 3. The turning component 4 is the core structure for improving the combustion efficiency of waste resin powder. By combining mechanical turning with forced air blowing, it solves the problem of incomplete combustion caused by material accumulation, facilitates turning and complete combustion. The rotational power is used to squeeze and turn the turning plate 412, which helps to improve the turning ability of the device, the blowing ability of the device, the working efficiency of the device combustion, and the ability of the device to complete combustion.
[0035] Please see Figure 1 - Figure 4As shown, a swing assembly 5 is provided on the furnace body 1. The swing assembly 5 includes an ash receiving frame 51 fixedly installed at the end of the furnace body 1 away from the feed chute 2. The ash receiving frame 51 serves to receive the ash after combustion on the chain conveyor belt 3. A swing plate 55 is rotatably installed on the side of the ash receiving frame 51 away from the furnace body 1. The swing plate 55 facilitates the movement of the ash-dispensing plate 512 to dissipate and clean the ash in the ash receiving frame 51 through the sliding column 510 and the slider 59. An oblong through hole 56 is fixedly installed at the end of the swing plate 55 away from the rotation axis. The end of the swing plate 55 away from the oblong through hole 56 is fixed Multiple teeth 54 are installed, circumferentially distributed on one edge of the swing plate 55. A fixing plate 513 is fixedly installed on the side of the swing plate 55 near the swing plate 55. An electric telescopic rod 52 with teeth 53 is fixedly installed on the side of the fixing plate 513 near the teeth 54. A ash-dispensing plate 512 is slidably installed inside the ash-receiving frame 51. A rectangular through hole 57 is opened on the side of the ash-receiving frame 51 near the ash-dispensing plate 512. A slider 59 is slidably installed through the rectangular through hole 57. A guide rod 58 is slidably installed through the slider 59, and the guide rod 58 serves as a guide. The function of the stabilizing slider 59 is as follows: a sliding column 510 is fixedly installed on the side of the guide rod 58 away from the slider 59. The end of the sliding column 510 away from the slider 59 is slidably installed through the slider 59 and fixedly mounted with a limiting plate 511. The limiting plate 511 serves to limit the sliding column 510. Both ends of the guide rod 58 are fixedly installed on the inner wall of the rectangular through hole 57. One side of the ash-dispensing plate 512 is fixedly installed on the slider 59. The bottom of the ash-dispensing plate 512 slides against the inner bottom wall of the ash-receiving frame 51. The toothed plate 53 is fixedly installed on the electric telescopic rod 52 away from the fixed plate 513. At one end, the toothed plate 53 and the tooth 54 are meshed and connected. The electric telescopic rod 52 drives the toothed plate 53 to mesh and move on the tooth 54, so that the toothed plate 53 drives the swing plate 55 to swing in a fan shape through the tooth 54. The swing component 5 is installed at the discharge end of the furnace body 1. It is mainly used to drop the ash from the combustion conveyor belt 3 into the ash receiving frame 51 and clean the ash by reciprocating ash-picking action. It is convenient for reciprocating swing ash cleaning operation, which is conducive to improving the ash cleaning capacity of the device, improving the working efficiency of the swing cleaning device, and improving the working efficiency of the ash cleaning device.
[0036] Please see Figure 1 - Figure 4As shown, a cooling component 6 is installed on the ash receiving frame 51. The cooling component 6 includes spray plates 68 fixedly installed on both sides of the ash receiving frame 51. Two baffles 64 are fixedly installed on the top of the ash receiving frame 51. The baffles 64 are two rectangular steel plates. Two water bladders 65 are fixedly installed on the corresponding side of the two baffles 64. The water bladders 65 are made of high-temperature resistant rubber. There are two water bladders 65, which are fixedly installed on the opposite side of the two baffles 64. The top of the water bladders 65 is connected to the external water supply system through a water inlet pipe. A one-way valve is installed on the water inlet pipe to ensure that water can only flow into the water bladders 65 in one direction. A squeezing plate 66 is slidably installed between the two water bladders 65. The squeezing plate 66 slides along the length of the water bladders 65 under the action of the fixing rod 61, and squeezes the water bladders 65 evenly to drain water. A fixing rod 61 is fixedly installed on the side of the squeezing plate 66 away from the furnace body 1. A one-way water inlet pipe 67 is connected to the side of the baffles 64 away from the water bladders 65. An installation groove 62 is opened at the bottom of the ash receiving frame 51. A cooling component is fixedly installed in the installation groove 62. The condensing rod 63 serves to cool the ash received on the ash frame 51. The end of the one-way water inlet pipe 67 furthest from the baffle 64 is connected to and installed on the spray plate 68. The spray plate 68 not only suppresses dust by spraying water but also cools the ash. The end of the fixing rod 61 furthest from the extrusion plate 66 is fixedly installed on the limiting plate 511. The end of the water bag 65 furthest from the baffle 64 is fixedly installed on the extrusion plate 66, facilitating the use of the swing plate 55. The swinging force causes the limiting plate 511 to drive the squeezing plate 66 to squeeze the water bag 65 through the fixed rod 61. The water in the water bag 65 enters the spray plate 68 through the one-way water inlet pipe 67 for spraying. At the same time, the atomized spraying achieves the dust suppression effect and avoids secondary dust pollution. The condensing rod 63 and the spray plate 68 work together. The condensing rod 63 performs preliminary cooling of the ash, and the spray plate 68 then sprays to suppress dust and assist in cooling, which helps to improve the cooling capacity of the device and the dust suppression capacity of the device.
[0037] The working principle of this invention is as follows: When using the device, first activate the electric telescopic plate 7, adjust the distance between the electric telescopic plate 7 and the chain conveyor belt 3, then activate the flame-spraying rod 8 to burn the chain conveyor belt 3. Next, pour the waste resin powder into the feed trough 2, allowing the chain conveyor belt 3 to transport the waste resin powder from the feed trough 2 through the electric telescopic plate 7 into the furnace body 1 for combustion. Simultaneously, activate the motor 42, causing the output end of the motor 42 to drive the eccentric wheel 46 to rotate. The eccentric wheel 46 slides on the connecting plate 47, causing the connecting plate 47 to press against the sliding rod 48, which then slides within the furnace body 1. The sliding rod 48 presses the moving plate 410 against the sliding spring 411 on the balance bar 49, compressing the spring 411. Simultaneously, the moving plate 410 drives the tilting plate 412 to slide on the chain conveyor belt 3, causing the tilting plate 412 to agitate the burning waste resin powder on the chain conveyor belt 3 for more complete combustion. At the same time, the eccentric wheel 46, via the rotating rod 45, drives the fan blades 413 to blow air into the air pipe 43. Air enters the protective cover 41 through the air inlet 44 and then is blown into the furnace body 1 through the air pipe 43, aiding the combustion of the waste resin powder. The waste resin powder on the ash receiving frame 51 is fully combusted. Simultaneously, the chain conveyor belt 3 transports the combusted ash to the ash receiving frame 51. At the same time, the electric telescopic rod 52 is activated, causing the toothed plate 53 to engage with the teeth 54. The toothed plate 53, through the teeth 54, drives the swing plate 55 to swing. The swing plate 55 then drives the sliding column 510 to slide within the oblong through-hole 56. Simultaneously, the sliding column 510 drives the slider 59 to slide within the rectangular through-hole 57. The slider 59 slides on the guide rod 58, and simultaneously, the slider 59 drives the ash-dispensing plate 512 to reciprocate against the inner bottom wall of the ash receiving frame 51. 12. The dust in the ash receiving frame 51 is pushed out, and at the same time, the sliding column 510 drives the limiting plate 511 to slide on the swing plate 55. Simultaneously, the limiting plate 511 drives the extrusion plate 66 to slide on the ash receiving frame 51 through the fixing rod 61. During the sliding process, the extrusion plate 66 extrudes the water bag 65, and the water in the water bag 65 is transported to the spray plate 68 through the one-way water inlet pipe 67. The spray plate 68 atomizes and sprays the combustion ash pushed down by the ash pushing plate 512, which facilitates dust suppression and cooling. At the same time, the condensing rod 63 is activated to cool the combustion ash collected on the bottom wall of the ash receiving frame 51.
[0038] The foregoing has provided a detailed description of one embodiment of the present invention, but this description is merely a preferred embodiment and should not be construed as limiting the scope of the invention. All equivalent variations and modifications made within the scope of the claims of this invention should still fall within the patent coverage of this invention.
Claims
1. A chain-type waste resin powder incinerator, comprising a furnace body (1), characterized in that: A feeding trough (2) is fixedly installed at one end of the furnace body (1), a chain conveyor belt (3) is rotatably installed inside the furnace body (1), an electric telescopic plate (7) is fixedly installed at one end of the furnace body (1) near the feeding trough (2), multiple flame-spraying rods (8) are fixedly installed inside the furnace body (1), and a flipping assembly (4) is provided on the furnace body (1). The flipping assembly (4) includes a protective cover (41) fixedly installed on one side of the furnace body (1). A motor (42) is fixedly installed on the top of the protective cover (41). An air inlet (44) is provided on the side of the protective cover (41) near the motor (42). An eccentric wheel (46) is fixedly installed at the output end of the motor (42) through the protective cover (41). A balance bar (49) is fixedly installed inside the furnace body (1). A moving plate (410) is slidably installed on the balance bar (49). A spring (411) is fixedly installed at the end of the plate (410) away from the protective cover (41). A flipping plate (412) is fixedly installed on the side of the moving plate (410) close to the chain conveyor belt (3). A slide rod (48) is fixedly installed at the end of the moving plate (410) away from the spring (411). A rotating rod (45) with a fan blade (413) is fixedly installed on the side of the eccentric wheel (46) away from the motor (42). A blower pipe (43) is installed between the protective cover (41) and the furnace body (1).
2. The chain-type waste resin powder incinerator according to claim 1, characterized in that: The end of the slide rod (48) away from the moving plate (410) slides through the furnace body (1) and is fixedly installed with a connecting plate (47). The side of the eccentric wheel (46) slides against the side of the connecting plate (47) away from the slide rod (48).
3. The chain-type waste resin powder incinerator according to claim 1, characterized in that: The fan blade (413) is fixedly installed on the rotating rod (45), the blower pipe (43) is fixedly installed at the bottom of the protective cover (41), and the flame-spraying rod (8) and the flipping plate (412) are interleaved and installed on the inner wall of the furnace body (1).
4. The chain-type waste resin powder incinerator according to claim 1, characterized in that: The end of the spring (411) away from the moving plate (410) is fixedly installed on the inner wall of the furnace body (1). The spring (411) is nested on the outer surface of the balance bar (49). The end of the flipping plate (412) away from the moving plate (410) slides against the chain conveyor belt (3).
5. A chain-type waste resin powder incinerator according to claim 1, characterized in that: The furnace body (1) is provided with a swing assembly (5). The swing assembly (5) includes a ash receiving frame (51) fixedly installed at one end of the furnace body (1) away from the feed chute (2). A swing plate (55) is rotatably installed on the side of the ash receiving frame (51) away from the furnace body (1). A waist-shaped through hole (56) is fixedly installed at one end of the swing plate (55) away from the rotation axis. A plurality of teeth (54) are fixedly installed at one end of the swing plate (55) away from the waist-shaped through hole (56). A fixing plate (513) is fixedly installed on the side of the swing plate (55) close to the swing plate (55). An electric telescopic rod (52) with a toothed plate (53) is fixedly installed on the side of the fixing plate (513) close to the teeth (54). An ash-dispensing plate (512) is slidably installed inside the ash receiving frame (51).
6. A chain-type waste resin powder incinerator according to claim 5, characterized in that: The ash receiving frame (51) has a rectangular through hole (57) on the side near the ash dispensing plate (512). A slider (59) is slidably installed through the rectangular through hole (57). A guide rod (58) is slidably installed through the slider (59). A sliding column (510) is fixedly installed on the side of the guide rod (58) away from the slider (59). The end of the sliding column (510) away from the slider (59) is slidably installed through the slider (59) and a limit plate (511) is fixedly installed thereon.
7. A chain-type waste resin powder incinerator according to claim 6, characterized in that: The two ends of the guide rod (58) are fixedly installed on the inner wall of the rectangular through hole (57). One side of the ash-dispensing plate (512) is fixedly installed on the slider (59). The bottom of the ash-dispensing plate (512) slides against the inner bottom wall of the ash-receiving frame (51). The toothed plate (53) is fixedly installed on the end of the electric telescopic rod (52) away from the fixed plate (513). The toothed plate (53) and the teeth (54) are meshed and connected.
8. A chain-type waste resin powder incinerator according to claim 7, characterized in that: A cooling component (6) is provided on the ash receiving frame (51). The cooling component (6) includes spray plates (68) fixedly installed on both sides of the ash receiving frame (51). Two baffles (64) are fixedly installed on the top of the ash receiving frame (51). Two water bags (65) are fixedly installed on the corresponding side of the two baffles (64). A squeezing plate (66) is slidably installed between the two water bags (65). A fixing rod (61) is fixedly installed on the side of the squeezing plate (66) away from the furnace body (1). A one-way water inlet pipe (67) is connected to the side of the baffle (64) away from the water bags (65).
9. A chain-type waste resin powder incinerator according to claim 8, characterized in that: The bottom of the ash receiving frame (51) is provided with an installation groove (62), and a condenser rod (63) is fixedly installed in the installation groove (62). The end of the one-way water inlet pipe (67) away from the baffle (64) is connected to the spray plate (68).
10. A chain-type waste resin powder incinerator according to claim 9, characterized in that: The end of the fixing rod (61) away from the extrusion plate (66) is fixedly installed on the limiting plate (511), and the end of the water bag (65) away from the baffle (64) is fixedly installed on the extrusion plate (66).