A hazardous waste smelting furnace structure that is convenient for automatic loading
By designing a flip-layered heating component and screening system, the problem of low heating efficiency caused by waste accumulation was solved, uniform heating and efficient screening of waste were achieved, and the overall efficiency and dust removal effect of the smelting furnace were improved.
Patent Information
- Application Number
- CN202210757954.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-06-30
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2042-06-30
AI Technical Summary
Existing smelting furnaces are prone to waste accumulation when processing large quantities of waste, affecting heating efficiency and overall smelting efficiency.
A structure including a flip-layered heating component, a material dividing plate, a push rod, a support, an arc-shaped push plate and a connecting round rod is designed. Through layered screening and flip-lifting operations, waste accumulation is prevented, and primary screening and dust removal are performed through a rotating rod, a telescopic spring, a filter frame, a clamping block and a dust suction system to ensure uniform heating and efficient transportation of the waste.
It achieves uniform heating and efficient screening of waste, improves smelting efficiency, prevents blockage and dust pollution, and improves the overall smelting effect.
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Figure CN115342636B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of smelting, and in particular to a hazardous waste smelting furnace structure that is convenient for automatic loading. Background Art
[0002] Smelting is a refining technology that involves extracting metals from ores through methods such as roasting, smelting, electrolysis, and the use of chemicals. This involves reducing impurities or increasing certain components in the metal to create the desired metal. In industrial production, waste materials include smelting slag from metal smelting, lead-zinc tailings from mineral processing, and chemical waste from pharmaceutical companies. Industrial solid waste poses significant environmental pollution risks, making its harmless treatment essential. Therefore, a hazardous waste smelting furnace structure that facilitates automatic loading is required.
[0003] The existing smelting of industrial waste is generally carried out by using a smelting furnace to render it harmless. However, when the waste is transported to the smelting furnace, due to the large-scale transportation, it is easy for the waste to accumulate during the smelting and heating process, resulting in slow heating and affecting the overall smelting efficiency of the waste. Summary of the Invention
[0004] The present invention proposes a hazardous waste smelting furnace structure that is convenient for automatic loading, comprising a fixed base and a blanking plate, one end of the fixed base is fixedly connected to a support rod, one end of the support rod is provided with a mounting circular opening, an inclined roller rod is placed inside the mounting circular opening, one end of the inclined roller rod is fixedly connected to a support base, the other end of the support base is fixedly connected to a hollow heating frame, heating rods are equidistantly installed inside the hollow heating frame, and one end of the support base is fixedly connected to the smelting furnace, the bottom end of the smelting furnace is fixedly connected to a fixed pile, and the outside of the fixed pile is fixedly connected to a No. 1 screening plate, a No. 2 screening plate and a No. 3 screening plate in sequence, one end of the fixed base is fixedly connected to a No. 1 motor, a No. 1 motor and a No. 2 motor. The output end of the motor is fixedly connected to a rotating deflection rod, one end of the rotating deflection rod is connected to the bottom end of the inclined rolling rod, one end of the blanking plate is provided with a No. 1 mounting hole, the interior of the No. 1 mounting hole is connected with a spinning shaft through a bearing, one end of the spinning shaft is fixedly connected to a dividing plate, one end of the blanking plate is provided with a through hole, one end of the blanking plate is fixedly connected to a No. 1 mounting seat, one end of the No. 1 mounting seat is fixedly connected to a No. 2 motor, the output end of the No. 2 motor is fixedly connected to a propulsion rod, the other end of the propulsion rod is fixedly connected to a pillar, one end of the pillar is fixedly connected to an arc-shaped push plate, the output end of the No. 2 motor passes through the through hole, and one end of the dividing plate is fixedly connected to a connecting round rod at equal distances.
[0005] Preferably, one end of the fixed base is fixedly connected to a support, and both ends of the support are provided with No. 2 mounting holes, and rotating push-pull rods are placed inside the two No. 2 mounting holes. The outside of the rotating push-pull rods is fixedly connected to a clamping block, and one end of the clamping block is fixedly connected to a round tube.
[0006] Preferably, a No. 3 mounting hole is opened at one end of the support, and a rotating rod is connected to the inside of the No. 3 mounting hole through a bearing, one end of the rotating rod is fixedly connected to the mounting rod, and the other end of the mounting rod is fixedly connected to a deflection round block, the deflection round block is located in the round tube, one end of the rotating rod is fixedly connected to a rotating wheel, and the outside of the rotating wheel is slidably connected to a No. 2 rotating belt.
[0007] Preferably, both ends of the fixed base are fixedly connected to mounting plates, and one end of the two mounting plates is fixedly connected to telescopic springs at equal distances, one end of each telescopic spring is fixedly connected to the same filter frame, one end of the filter frame is fixedly connected to a connecting seat, and one end of the connecting seat is connected to one end of the rotating push-pull rod.
[0008] Preferably, both ends of the fixed base are fixedly connected to fixed plates, and one end of the two fixed plates is fixedly connected to a hollow connecting plate.
[0009] Preferably, suction holes are opened at equal distances at one end of the two hollow connecting plates, and a metal telescopic tube is fixedly connected to the inside of each suction hole, and an arc-shaped dust suction plate is fixedly connected to one end of each metal telescopic tube, and dust suction holes are opened at equal distances at one end of each arc-shaped dust suction plate.
[0010] Preferably, one end of the two fixed plates is fixedly connected to a dust suction pump, and the dust suction end of the dust suction pump is connected to the inside of the hollow connecting plate through a dust suction pipe. One end of the two fixed plates is fixedly connected to a dust collecting box, and the dust discharge end of the dust suction pump is connected to the inside of the dust collecting box through a pipe.
[0011] Preferably, one end of the fixed base is fixedly connected to a support plate at equal distances, and one end of each support plate is provided with a No. 3 mounting hole, the interiors of the two opposite No. 3 mounting holes are connected to a rotating shaft through a bearing, the outsides of the two rotating shafts are fixedly connected to the same conveyor belt, and abutment plates are arranged at equal distances on the outside of the conveyor belt, and baffles are fixedly connected to both ends of the conveyor belt.
[0012] Preferably, the outside of the two rotating shafts are fixedly connected to pulleys, and the outside of the two pulleys are slidably connected to the same No. 1 rotating belt, one end of one of the support plates is fixedly connected to the No. 2 mounting seat, one end of the No. 2 mounting seat is fixedly connected to the No. 3 motor, and the output end of the No. 3 motor is connected to one end of one of the rotating shafts.
[0013] Preferably, one end of the fixed base is fixedly connected to a support pile at an equal distance, a cover plate is provided at one end of the smelting furnace, a discharge port is opened at one end of the smelting furnace, a discharge head is fixedly connected to the inside of the discharge port, and both ends of the discharge plate are fixedly connected to a fixing rod, and the other end of the fixing rod is connected to one end of the support plate.
[0014] The beneficial effects of the present invention are:
[0015] 1. By providing a flip layered heating component, a material distribution plate, a push rod, a support, an arc-shaped push plate and a connecting round rod, the flip layered heating component can be used to screen the waste in the smelting furnace from large to small first, and then the waste is flipped and lifted in layers, so that it is repeatedly dispersed and dropped in the smelting furnace, thereby improving the contact between the waste and the hot air in the smelting furnace and making it have a better heating effect. The push rod is used to drive the arc-shaped push plate on the support to drive the connecting round rod so that the material distribution plate can intermittently discharge the waste on the discharge plate, thereby preventing too much material from being discharged at one time, causing blockage at the inlet of the smelting furnace, which is not conducive to the sequential screening of the waste in the smelting furnace, thereby speeding up the overall smelting efficiency.
[0016] 2. By providing a rotating rod, a No. 2 rotating belt, a telescopic spring, a filter frame, a rotating push-pull rod, a clamping block, a round tube and a deflection round block, the No. 2 rotating belt is used to drive the deflection round block on the rotating rod to rotate in the round tube, so that the rotating push-pull rod on the clamping block rotates back and forth on the support, causing the filter frame to vibrate, thereby preventing the filter frame from being blocked by waste when filtering waste, thereby affecting its filtering effect. The filter frame is used to perform initial screening of the waste, so that the smelting efficiency is improved when the waste enters the smelting furnace.
[0017] 3. By providing a dust suction pump, an arc-shaped dust suction plate, a dust collection box, a hollow connecting plate and a metal telescopic tube, during the waste transportation and unloading process, the dust suction holes on the arc-shaped dust suction plates on the hollow connecting plate are used to absorb the dust generated by the transportation and unloading, and then uniformly discharged into the dust collection box for treatment. The dust suction holes on the arc-shaped dust suction plates are opened in an arc shape, so that dust in all directions can be absorbed, thereby improving the dust removal effect. At the same time, the metal telescopic tube can be used to adjust the dust suction direction of the arc-shaped dust suction plate.
[0018] 4. By setting up a back plate, a baffle, a conveyor belt, a No. 1 rotating belt and a No. 3 motor, the filtered waste falls onto the conveyor belt. At this time, the No. 3 motor drives one of the rotating shafts to make the No. 1 rotating belt drive the other rotating shaft to rotate, so that the conveyor belt automatically loads the waste. During the transportation of the waste, the back plate blocks the waste to prevent it from slipping on the conveyor belt and reducing its loading efficiency. At the same time, the baffle limits the waste to prevent it from falling off. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1This is a schematic diagram of the overall structure of a hazardous waste smelting furnace structure that is convenient for automatic loading, as proposed by the present invention;
[0020] Figure 2 This is a side view schematic diagram of a hazardous waste smelting furnace structure that is convenient for automatic loading, as proposed by the present invention;
[0021] Figure 3 This is a schematic diagram of the structure of the flip layered heating component of a hazardous waste smelting furnace structure that facilitates automatic loading, as proposed by the present invention;
[0022] Figure 4 for Figure 3 Schematic diagram of some components of the structure;
[0023] Figure 5 This is a schematic diagram of the structure of the material distribution component of a hazardous waste smelting furnace structure that is convenient for automatic loading, as proposed by the present invention;
[0024] Figure 6 This is a schematic diagram of the structure of a shaking filter component of a hazardous waste smelting furnace structure that is convenient for automatic loading, as proposed by the present invention;
[0025] Figure 7 for Figure 6 Schematic diagram of some component structures.
[0026] In the figure: 1. Fixed base; 2. Support rod; 3. Inclined rolling rod; 4. No. 1 motor; 5. Rotating deflection rod; 6. Support seat; 7. Hollow heating frame; 8. Heating rod; 9. Smelting furnace; 10. Discharge head; 11. Fixed pile; 12. No. 1 screening plate; 13. No. 2 screening plate; 14. No. 3 screening plate; 15. Fixed rod; 16. Unloading plate; 17. No. 2 motor; 18. No. 1 mounting seat; 19. Push rod; 20. Support column; 21. Arc push plate; 22. Spin axis; 23. Distributor plate; 24. Connecting round rod; 25. Support; 26. Filter frame; 27. Cover plate; 28 , rotating push-pull rod; 29, telescopic spring; 30, connecting seat; 31, rotating rod; 32, rotating wheel; 33, clamping block; 34, round tube; 35, deflection round block; 36, mounting rod; 37, fixing plate; 38, hollow connecting plate; 39, metal telescopic tube; 40, arc-shaped dust suction plate; 41, dust collecting box; 42, dust suction pump; 43, dust suction pipe; 44, mounting plate; 45, support plate; 46, rotating shaft; 47, No. 1 rotating belt; 48, baffle; 49, No. 2 rotating belt; 50, No. 2 mounting seat; 51, No. 3 motor; 52, transport belt; 53, back plate; 54, support pile. DETAILED DESCRIPTION
[0027] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0028] Reference Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 and Figure 5 A hazardous waste smelting furnace structure that is convenient for automatic loading includes a fixed base 1 and a blanking plate 16. One end of the fixed base 1 is fixedly connected to a support rod 2. One end of the support rod 2 is provided with a mounting circular opening. An inclined roller rod 3 is placed inside the mounting circular opening. One end of the inclined roller rod 3 is fixedly connected to a support base 6. The other end of the support base 6 is fixedly connected to a hollow heating frame 7. Heating rods 8 are installed at equal distances inside the hollow heating frame 7. One end of the support base 6 is fixedly connected to a smelting furnace 9. A fixed pile 11 is fixedly connected to the bottom end of the smelting furnace 9. The fixed pile 11 is fixedly connected to the bottom end of the smelting furnace 9. The outside is fixedly connected with the No. 1 screening plate 12, the No. 2 screening plate 13 and the No. 3 screening plate 14 in sequence, one end of the fixed base 1 is fixedly connected to the No. 1 motor 4, the output end of the No. 1 motor 4 is fixedly connected to the rotation deflection rod 5, one end of the rotation deflection rod 5 is connected to the bottom end of the inclined rolling rod 3, one end of the blanking plate 16 is provided with a No. 1 mounting hole, the inside of the No. 1 mounting hole is connected with a spin shaft 22 through a bearing, one end of the spin shaft 22 is fixedly connected to the dividing plate 23, one end of the blanking plate 16 is provided with a through hole, and one end of the blanking plate 16 is fixedly connected to the No. 1 mounting seat 18, one end of the No. 1 mounting seat 18 is fixedly connected to the No. 2 motor 17, the output end of the No. 2 motor 17 is fixedly connected to the push rod 19, the other end of the push rod 19 is fixedly connected to the support 20, one end of the support 20 is fixedly connected to the arc-shaped push plate 21, the output end of the No. 2 motor 17 passes through the through hole, and one end of the dividing plate 23 is fixedly connected to the connecting round rod 24 at equal distances. By setting the flip layered heating component, the dividing plate 23, the push rod 19, the support 20, the arc-shaped push plate 21 and the connecting round rod 24, the flip layered heating component can be used to smelt The waste in the smelting furnace 9 is first screened from large to small, and then the waste is turned over and lifted in layers, so that it is repeatedly dispersed and dropped in the smelting furnace 9, thereby improving the contact between the waste and the hot air in the smelting furnace 9 and making it more heated. The propulsion rod 19 drives the arc-shaped push plate 21 on the support 20 to drive the connecting round rod 24 so that the dividing plate 23 can intermittently discharge the waste on the discharge plate 16 to prevent too much discharge at one time, which will cause blockage at the inlet of the smelting furnace 9, making it unfavorable for the waste to be screened in sequence in the smelting furnace 9, thereby speeding up the overall smelting efficiency.
[0029] Reference Figure 1 、 Figure 6 and Figure 7One end of the fixed base 1 is fixedly connected to a support 25, and both ends of the support 25 are provided with No. 2 mounting holes. A rotating push-pull rod 28 is placed inside the two No. 2 mounting holes. The outside of the rotating push-pull rod 28 is fixedly connected to a clamping block 33, and one end of the clamping block 33 is fixedly connected to a round tube 34.
[0030] Reference Figure 2 、 Figure 6 and Figure 7 A No. 3 mounting hole is opened at one end of the support 25, and a rotating rod 31 is connected to the inside of the No. 3 mounting hole through a bearing. One end of the rotating rod 31 is fixedly connected to the mounting rod 36, and the other end of the mounting rod 36 is fixedly connected to the deflection circle 35. The deflection circle 35 is located in the round tube 34. One end of the rotating rod 31 is fixedly connected to the rotating wheel 32, and the outside of the rotating wheel 32 is slidably connected to the No. 2 rotating belt 49.
[0031] Reference Figure 1 and Figure 6 , both ends of the fixed base 1 are fixedly connected to the mounting plates 44, and one end of the two mounting plates 44 is fixedly connected to the telescopic springs 29 at equal distances, one end of each telescopic spring 29 is fixedly connected to the same filter frame 26, one end of the filter frame 26 is fixedly connected to the connecting seat 30, one end of the connecting seat 30 is connected to one end of the rotating push-pull rod 28, by providing the rotating rod 31, the second rotating belt 49, the telescopic spring 29, the filter frame 26, the rotating push-pull rod 28, the clamping block 33, The round tube 34 and the deflection round block 35 use the No. 2 rotating belt 49 to drive the deflection round block 35 on the rotating rod 31 to rotate in the round tube 34, so that the rotating push-pull rod 28 on the clamping block 33 rotates back and forth on the support 25, causing the filter frame 26 to vibrate, preventing the filter frame 26 from being blocked by waste when filtering the waste, thereby affecting its filtering effect. The filter frame 26 is used to perform initial screening of the waste, so that the smelting efficiency is improved when the waste enters the smelting furnace 9.
[0032] Reference Figure 1 Both ends of the fixed base 1 are fixedly connected to a fixing plate 37 , and one end of the two fixing plates 37 is fixedly connected to a hollow connecting plate 38 .
[0033] Reference Figure 1 Suction holes are opened at equal distances at one end of the two hollow connecting plates 38, and a metal telescopic tube 39 is fixedly connected to the inside of each suction hole. An arc-shaped dust suction plate 40 is fixedly connected to one end of each metal telescopic tube 39, and dust suction holes are opened at equal distances at one end of each arc-shaped dust suction plate 40.
[0034] Reference Figure 1 and Figure 2One end of the two fixed plates 37 is fixedly connected to a dust suction pump 42, and the dust suction end of the dust suction pump 42 is connected to the inside of the hollow connecting plate 38 through a dust suction pipe 43. One end of the two fixed plates 37 is fixedly connected to a dust collecting box 41, and the dust discharge end of the dust suction pump 42 is connected to the inside of the dust collecting box 41 through a pipe. By providing the dust suction pump 42, the curved dust suction plate 40, the dust collecting box 41, the hollow connecting plate 38 and the metal telescopic pipe 39, during the transportation and unloading of waste, the dust suction holes on the various curved dust suction plates 40 on the hollow connecting plate 38 are used to absorb the dust generated by the transportation and unloading, and then uniformly discharged into the dust collecting box 41 for treatment. The dust suction holes on the curved dust suction plates 40 are opened in an arc shape, so that dust can be sucked in all directions, thereby improving the dust removal effect. At the same time, the metal telescopic pipe 39 can be used to adjust the dust suction direction of the curved dust suction plates 40.
[0035] Reference Figure 1 and Figure 2 One end of the fixed base 1 is fixedly connected to a support plate 45 at an equal distance, and one end of each support plate 45 is provided with a No. 3 mounting hole. The inside of the two opposite No. 3 mounting holes is connected to a rotating shaft 46 through a bearing. The outside of the two rotating shafts 46 is fixedly connected to the same conveyor belt 52. Abutment plates 53 are arranged at equal distances on the outside of the conveyor belt 52, and baffles 48 are fixedly connected to both ends of the conveyor belt 52.
[0036] Reference Figure 1 and Figure 2 The outside of the two rotating shafts 46 are fixedly connected with pulleys, and the outside of the two pulleys are slidably connected with the same No. 1 rotating belt 47. One end of one of the support plates 45 is fixedly connected to the No. 2 mounting seat 50, and one end of the No. 2 mounting seat 50 is fixedly connected to the No. 3 motor 51. The output end of the No. 3 motor 51 is connected to one end of one of the rotating shafts 46. By providing a stop plate 53, a baffle 48, a conveyor belt 52, the No. 1 rotating belt 47 and the No. 3 motor 51, the filtered waste falls onto the conveyor belt 52. At this time, the No. 3 motor 51 drives one of the rotating shafts 46 so that the No. 1 rotating belt 47 drives the other rotating shaft 46 to rotate, so that the conveyor belt 52 automatically loads the waste. During the transportation of the waste, the stop plate 53 blocks the waste to prevent the waste from slipping on the conveyor belt 52, reducing its loading efficiency. At the same time, the baffle 48 limits the waste to prevent it from falling off.
[0037] Reference Figure 1 、 Figure 2 ,and Figure 3 One end of the fixed base 1 is fixedly connected to a support pile 54 at an equal distance, a cover plate 27 is provided at one end of the smelting furnace 9, a discharge port is opened at one end of the smelting furnace 9, a discharge head 10 is fixedly connected to the inside of the discharge port, and both ends of the discharge plate 16 are fixedly connected to a fixing rod 15, and the other end of the fixing rod 15 is connected to one end of the support plate 45.
[0038] When in use, the waste is poured into the filter frame 26, and then the No. 3 motor 51 is started. The No. 3 motor 51 drives the No. 2 rotating belt 49 to rotate, so that the No. 2 rotating belt 49 drives the deflection round block 35 on the rotating rod 31 to rotate in the round tube 34, so that the rotating push-pull rod 28 on the clamping block 33 rotates back and forth on the support 25, so that the filter frame 26 vibrates, preventing the filter frame 26 from being blocked by the waste when filtering the waste, thereby affecting its filtering effect. The filter frame 26 is used to perform the initial screening of the waste so that when the waste enters the smelting furnace 9, the smelting efficiency is improved. At the same time, the third motor 51 drives one of the rotating shafts 46 so that the first rotating belt 47 drives the other rotating shaft 46 to rotate, so that the conveyor belt 52 automatically loads the waste. During the transportation of the waste, the plate 53 blocks the waste to prevent the waste from slipping on the conveyor belt 52 and reducing its loading efficiency. At the same time, the baffle 48 limits the waste to prevent it from falling off. At the same time, during the transportation and unloading of the waste, the dust suction pump 42 is started, and the dust suction holes on the various arc-shaped dust suction plates 40 on the hollow connecting plate 38 are used to absorb the dust generated by the transportation and unloading. , and then uniformly discharged into the dust box 41 for processing. The dust collection holes on the arc dust collection plate 40 are opened in an arc shape, so that dust in all directions can be absorbed to improve the dust removal effect. At the same time, the metal telescopic tube 39 can be used to adjust the dust collection direction of the arc dust collection plate 40. Then, when the waste enters the smelting box 9, the No. 2 motor 17 is started, and the No. 2 motor 17 drives the propulsion rod 19 to drive the arc push plate 21 on the support 20 to drive the connecting round rod 24 so that the dividing plate 23 can intermittently discharge the waste on the discharge plate 16 to prevent too much material from being discharged at one time, causing the smelting furnace to 9 is blocked at the entrance, and then the waste enters the smelting furnace 9. After the loading is completed, the cover 27 is closed, the heating rod 8 is opened, and the No. 1 motor 4 is started. The No. 1 motor 4 drives the rotating deflection rod 5 to make the inclined roller 3 drive the smelting furnace 9 on the support seat 6 to flip, so that the No. 1 screening plate 12, the No. 2 screening plate 13 and the No. 3 screening plate 14 screen the waste from large to small, and then the waste is flipped and lifted in layers, so that it is repeatedly dispersed and fallen in the smelting furnace 9, thereby improving the contact between the waste and the hot air in the smelting furnace 9, making its heating effect better, and accelerating the overall smelting efficiency of the waste.
[0039] The above description is only a preferred specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with the technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solution and inventive concept of the present invention, should be covered by the scope of protection of the present invention.
Claims
1. A hazardous waste smelting furnace structure that facilitates automatic loading, comprising a fixed base (1) and a blanking plate (16), characterized in that: One end of the fixed base (1) is fixedly connected to a support rod (2), one end of the support rod (2) is provided with a mounting circular opening, an inclined roller rod (3) is placed inside the mounting circular opening, one end of the inclined roller rod (3) is fixedly connected to a support base (6), the other end of the support base (6) is fixedly connected to a hollow heating frame (7), heating rods (8) are installed at equal distances inside the hollow heating frame (7), and one end of the support base (6) is fixedly connected to a smelting furnace (9), the bottom end of the smelting furnace (9) is fixedly connected to a fixed pile (11), the outside of the fixed pile (11) is fixedly connected to a No. 1 screening plate (12), a No. 2 screening plate (13) and a No. 3 screening plate (14) in sequence, one end of the fixed base (1) is fixedly connected to a No. 1 motor (4), the output end of the No. 1 motor (4) is fixedly connected to a rotating deflection rod (5), the rotating deflection rod One end of (5) is connected to the bottom end of the inclined rolling rod (3), one end of the blanking plate (16) is provided with a No. 1 mounting hole, the interior of the No. 1 mounting hole is connected to a spin shaft (22) through a bearing, one end of the spin shaft (22) is fixedly connected to a dividing plate (23), one end of the blanking plate (16) is provided with a through hole, one end of the blanking plate (16) is fixedly connected to a No. 1 mounting seat (18), one end of the No. 1 mounting seat (18) is fixedly connected to a No. 2 motor (17), the output end of the No. 2 motor (17) is fixedly connected to a propulsion rod (19), the other end of the propulsion rod (19) is fixedly connected to a pillar (20), one end of the pillar (20) is fixedly connected to an arc-shaped pushing plate (21), the output end of the No. 2 motor (17) passes through the through hole, and one end of the dividing plate (23) is fixedly connected to a connecting round rod (24) at equal distances.
2. A hazardous waste smelting furnace structure that facilitates automatic loading according to claim 1, characterized in that: One end of the fixed base (1) is fixedly connected to a support (25), and both ends of the support (25) are provided with second mounting holes, a rotating push-pull rod (28) is placed inside the two second mounting holes, the outside of the rotating push-pull rod (28) is fixedly connected to a clamping block (33), and one end of the clamping block (33) is fixedly connected to a round tube (34).
3. The hazardous waste smelting furnace structure that facilitates automatic loading according to claim 2 is characterized in that: A third mounting hole is provided at one end of the support (25), and a rotating rod (31) is connected to the interior of the third mounting hole via a bearing. One end of the rotating rod (31) is fixedly connected to a mounting rod (36), and the other end of the mounting rod (36) is fixedly connected to a deflection round block (35). The deflection round block (35) is located in the round tube (34). One end of the rotating rod (31) is fixedly connected to a rotating wheel (32), and the outside of the rotating wheel (32) is slidably connected to a second rotating belt (49).
4. The hazardous waste smelting furnace structure that facilitates automatic loading according to claim 2 is characterized in that: Both ends of the fixed base (1) are fixedly connected to mounting plates (44), and one end of the two mounting plates (44) is fixedly connected to telescopic springs (29) at equal distances, one end of each telescopic spring (29) is fixedly connected to the same filter frame (26), one end of the filter frame (26) is fixedly connected to a connecting seat (30), and one end of the connecting seat (30) is connected to one end of a rotating push-pull rod (28).
5. The hazardous waste smelting furnace structure that facilitates automatic loading according to claim 1 is characterized in that: Both ends of the fixed base (1) are fixedly connected to fixed plates (37), and one end of each of the two fixed plates (37) is fixedly connected to a hollow connecting plate (38).
6. The hazardous waste smelting furnace structure that facilitates automatic loading according to claim 5 is characterized in that: Suction holes are formed at equal distances at one end of the two hollow connecting plates (38), and a metal telescopic tube (39) is fixedly connected to the inside of each suction hole. An arc-shaped dust suction plate (40) is fixedly connected to one end of each metal telescopic tube (39), and dust suction holes are formed at equal distances at one end of each arc-shaped dust suction plate (40).
7. The hazardous waste smelting furnace structure that facilitates automatic loading according to claim 6 is characterized in that: One end of each of the two fixed plates (37) is fixedly connected to a dust suction pump (42), and the dust suction end of the dust suction pump (42) is connected to the inside of the hollow connecting plate (38) through a dust suction pipe (43). One end of each of the two fixed plates (37) is fixedly connected to a dust collecting box (41), and the dust discharge end of the dust suction pump (42) is connected to the inside of the dust collecting box (41) through a pipe.
8. The hazardous waste smelting furnace structure that facilitates automatic loading according to claim 1 is characterized in that: One end of the fixed base (1) is fixedly connected to a support plate (45) at an equal distance, and one end of each support plate (45) is provided with a No. 3 mounting hole, the interiors of the two opposite No. 3 mounting holes are connected to a rotating shaft (46) through a bearing, the exteriors of the two rotating shafts (46) are fixedly connected to the same conveyor belt (52), and the exteriors of the conveyor belt (52) are provided with abutment plates (53) at equal distances, and both ends of the conveyor belt (52) are fixedly connected to baffles (48).
9. The hazardous waste smelting furnace structure that facilitates automatic loading according to claim 8 is characterized in that: The exteriors of the two rotating shafts (46) are fixedly connected to pulleys, and the exteriors of the two pulleys are slidably connected to the same No. 1 rotating belt (47), one end of one of the support plates (45) is fixedly connected to a No. 2 mounting seat (50), one end of the No. 2 mounting seat (50) is fixedly connected to a No. 3 motor (51), and the output end of the No. 3 motor (51) is connected to one end of one of the rotating shafts (46).
10. The hazardous waste smelting furnace structure that facilitates automatic loading according to claim 1 is characterized in that: One end of the fixed base (1) is fixedly connected to a support pile (54) at an equal distance, one end of the smelting furnace (9) is provided with a cover plate (27), one end of the smelting furnace (9) is provided with a discharge port, the interior of the discharge port is fixedly connected to a discharge head (10), both ends of the discharge plate (16) are fixedly connected to a fixed rod (15), and the other end of the fixed rod (15) is connected to one end of the support plate (45).
Citation Information
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