A metal smelting furnace
By introducing drive turntables, vibration components, automatic door opening and closing components and waste heat recovery devices into the metal smelting furnace, the problems of the existing smelting furnace being exhausted, unsafe to feed and unrecycled waste heat in waste gas are solved, and a more efficient, safe and environmentally friendly smelting process is achieved.
Patent Information
- Application Number
- CN202411551299.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-01
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2044-11-01
AI Technical Summary
The existing metal smelting furnaces are laborious when unloading, and the filling requires manual operation of the furnace cover, which poses safety hazards and the waste gas waste heat cannot be effectively recovered, resulting in waste of resources and environmental impact.
A metal smelting furnace is designed, which uses the cooperation of the driving turntable and driven wheel support for fixed support and rotation, and vibration components and automatic door opening and closing components are provided on both sides of the furnace body to recover the waste heat of the flue gas by using the waste heat recovery device.
Through the setting of the vibration assembly, the slag removal process is simplified, the automatic door opening and closing assembly improves operational safety and convenience, and the waste heat recovery device effectively utilizes resources and reduces environmental impact.
Smart Images

Figure CN119197101B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of smelting furnaces, and particularly to a metal smelting furnace. Background Art
[0002] A metal smelting furnace is a device designed to refine ores or waste materials into metals. For different types of metals, such as iron, copper, aluminum, etc., different types of smelting furnaces are usually selected. Common types of smelting furnaces include blast furnaces, electric arc furnaces, ladle furnaces, aluminum electrolytic cells, and molten salt smelting furnaces. Depending on the metal type and specific process requirements, other types of furnaces or specific smelting equipment may also be required. When selecting a smelting furnace, factors such as raw material characteristics, energy consumption, and environmental impact need to be comprehensively considered to ensure the selection of the most suitable smelting equipment.
[0003] Currently, the metal smelting furnaces on the market still have the following deficiencies:
[0004] 1. When the existing metal smelting furnace discharges materials, some slag adheres to the bottom of the inner cavity of the metallurgical furnace and attaches to it, and a tool pry bar is needed to knock it, which is quite laborious.
[0005] 2. For the existing metal smelting furnace, each time of feeding requires manual removal of the furnace cover, which is rather troublesome and poses safety problems.
[0006] 3. The waste gas generated by the existing metal smelting furnace is generally directly discharged. However, due to the relatively high temperature of the waste gas waste heat, direct discharge causes waste of resources. Moreover, when the waste gas is discharged into the atmosphere, due to the high temperature of the waste gas, it will cause the outdoor air temperature to rise. Summary of the Invention
[0007] The main purpose of the present invention is to overcome the deficiencies in the prior art and provide a metal smelting furnace.
[0008] The technical solution adopted by the present invention to achieve its technical purpose is: a metal smelting furnace, including a furnace body, one end of the furnace body is fixedly provided with a driving turntable, a fixing frame is arranged below the driving turntable, and the driving turntable is rotatably arranged inside the fixing frame;
[0009] The other end of the furnace body is provided with a waste heat recovery device, and a driven wheel support is fixedly arranged below it. The driven wheel inside the driven wheel support is in transmission connection with the outer wall of the furnace body; through the cooperation of the driving turntable and the driven wheel support, the furnace body is fixedly supported, and the furnace body can rotate under the drive of the driving turntable; furthermore, through the setting of the waste heat recovery device, the waste heat of the flue gas of the furnace body can be effectively recovered.
[0010] Vibration components are arranged on the front and rear sides of the furnace body, and the front and rear outer walls of the furnace body are vibrated and knocked by the vibration components; through the arrangement of the vibration components, the furnace body can be vibrated and knocked, which is beneficial to removing slag, furnace ash, etc. on the inner wall of the furnace body;
[0011] A charging and discharging port is opened at the top of the furnace body, and an automatic switch door component is also arranged at the top. The furnace door of the furnace body is automatically opened and closed by the automatic switch door component, and the discharging port is blocked or opened; through the arrangement of the automatic switch door component, the discharging port can be blocked or opened, which is convenient for taking and placing materials.
[0012] Preferably, the automatic switch door component includes a concave frame, a driving rotating rod, a driving gear, a limiting plate, a track groove, a traction rod, a spring, a guide wheel, a lock, a rectangular frame, a traveling wheel and a rack plate;
[0013] Two groups of the concave frame and the limiting plate are arranged in parallel and are fixedly arranged at the top of the furnace body. The limiting plate is simultaneously arranged inside one end of the concave frame, and the furnace door is slidably connected between the two groups of limiting plates;
[0014] The rectangular frame is located above the furnace door and is connected to the furnace door through a traction rod, a spring and a lock. One end of the traction rod is hinged inside the four corners of the rectangular frame, and the other end is hinged to the lock fixed on the furnace door. The spring is sleeved on the outer wall of the traction rod, and one end of it is fixedly hooked on the lock, and the other end is fixedly hooked on the rectangular frame; through the setting of the spring, on the one hand, it is used to connect the rectangular frame and the furnace door to lift the furnace door, and on the other hand, it is to make the traction rod keep an inclined state, so that when the rectangular frame drives the furnace door to move, it can easily overcome the elastic force and fall, or when the rectangular frame moves in the reverse direction, under the action of the elastic force, it is convenient to lift the furnace door again;
[0015] A track groove is opened inside the limiting plate, and two groups of the guide wheels are arranged in parallel, and the transmission shafts of them are fixedly connected to the lock;
[0016] By moving the rectangular frame to drive the furnace door to move, the guide wheels walk along the track of the track groove, so that the furnace door can displace downward against the pulling force of the spring, and the furnace door blocks the discharging port.
[0017] Preferably, traveling wheels are fixedly installed on the outer sides of the four corners of the rectangular frame, and the traveling wheels are in rolling connection with the rolling grooves opened inside the concave frame, and the traveling wheels walk along the rolling grooves inside the concave frame; through the setting of the rolling grooves and the traveling wheels, it is convenient to connect the rectangular frame to the concave frame.
[0018] Preferably, the rack plate is fixedly connected above the rectangular frame, the driving gear is kept in meshing connection with the rack plate, the driving rotating rod penetrates through the middle end of the driving gear and its two ends are fixedly connected to the top of the furnace body through mounting plates, the two ends of the driving gear are kept in rotational connection with the mounting plates, and one end thereof is driven by a driving motor arranged thereon; the driving motor drives the driving gear, so that the driving gear rotates, further enabling the driving gear to drive the rack plate to move, and then enabling the rectangular frame to move on the concave frame.
[0019] Preferably, the vibration assembly includes a T-shaped plate frame, a second motor, a concave plate, a movable rod, a connecting frame, a knocking plate, a fixed frame, a movable block and a rocker;
[0020] The T-shaped plate frame is movably arranged on the front and rear sides of the furnace body, the concave plate is fixedly arranged on the top of the T-shaped plate frame, the fixed frame is arranged inside the middle end of the concave plate, and its two sides are fixedly connected to the movable rod, and the movable rod penetrates through and is rotationally connected to the two ends inside the concave plate;
[0021] The movable block is rotationally arranged inside the fixed frame, and a rocker is fixedly connected to one side thereof, and one end of the rocker passes through the middle end of the concave plate and is simultaneously fixedly connected to the driving shaft of the second motor;
[0022] The second motor drives the rocker to rotate, the rocker drives the movable block to swing, but since the movable block is rotationally arranged inside the fixed frame, and the two ends of the fixed frame are rotationally connected to the two ends of the concave plate through the movable rod, thus under the action of the rocker, the movable block rotates back and forth left and right inside the fixed frame, and the fixed frame and the movable rod also rotate back and forth in the up and down directions.
[0023] Preferably, one end of the movable rod is fixedly connected to the knocking plate through a connecting frame, and a plurality of knocking balls are fixedly arranged on the surface of the knocking plate close to the furnace body; when the movable rod rotates back and forth in the up and down direction, the knocking plate and the knocking balls will contact the outer wall of the furnace body, thereby knocking the outer wall of the furnace body.
[0024] Preferably, the waste heat recovery device includes a heat exchange housing, U-shaped tubes, a gas collecting box, an air inlet and outlet gas collecting box, a conveying gas collecting box, an air inlet pipe and an air outlet pipe;
[0025] The gas collecting box is fixedly installed on the top of the heat exchange housing, the U-shaped tubes are fixedly installed inside the heat exchange housing, and the inside of the heat exchange housing is filled with water;
[0026] The gas collecting box includes the air inlet and outlet gas collecting boxes at its two ends and the conveying gas collecting box in the middle end, the ports of the U-shaped tubes are located inside the air inlet and outlet gas collecting boxes and the middle end conveying gas collecting box, and a plurality of U-shaped tubes are communicated at the ports through the air inlet and outlet gas collecting boxes and the middle end conveying gas collecting box;
[0027] The air inlet and outlet air collecting boxes at both ends of the air collecting box are respectively fixedly connected to the air inlet pipe and the air outlet pipe, and one end of the air inlet pipe is rotatably connected to the smoke outlet of the furnace body.
[0028] Preferably, the waste heat recovery device further comprises an electrically remote-controlled telescopic rod and a box body, one end of the fixed end of the telescopic rod is fixedly connected to the inner wall of the conveying air collecting box, and the other end is fixedly mounted on the box body;
[0029] Concave shells are provided on both sides of the box body, and a transmission belt is provided inside the concave shell. The two ends of the transmission belt are connected and stretched by a rotating column. The two ends of the rotating column are rotatably connected inside the concave shell. The transmission belt is transmitted by driving the rotating column. A plurality of toggle plates are evenly provided on one side of the transmission belt. The toggle plates are driven by the transmission belt to move, so as to guide and mix the smoke, thereby keeping the smoke temperature uniform in the conveying and collecting box.
[0030] A driven gear is fixedly sleeved on the outer wall of the middle end of the rotating column, one side of the driven gear is meshedly connected with a driving gear, one side of the driving gear is fixedly connected with a transmission rod, the transmission rod is connected to the concave shell through a fixing plate, and one end of the transmission rod is transmission-connected to the driving rod, one end of the driving rod passes through the concave shell and is fixedly connected to a motor, the motor is fixedly mounted on the concave shell, and the driving rod is driven by the motor; a hose is sleeved on the outside of the motor, and both ends of the hose are fixedly connected to the concave shell and the box body respectively.
[0031] Preferably, the fixing plate is rotationally connected to the transmission rod, and the fixing plate limits the position of the transmission rod.
[0032] Preferably, one end of the motor is fixedly connected to a pry bar, the pry bar passes through the box body, and is rotatably connected to the inside of the box body via a support shaft, and the pry bar rotates with the support shaft as a fulcrum.
[0033] A through slot is provided inside the side wall of the box body so that the pry bar can pass through the box body conveniently.
[0034] A bearing is fixedly sleeved at one end of the pry bar, and connecting plates are hinged on both sides of the bearing through a rotating shaft; through the arrangement of the bearing and the connecting plate, one end of the two pry bars can be easily driven to rotate based on the support shaft as a fulcrum.
[0035] Preferably, the movable end of the telescopic rod passes through the box body and is fixedly connected to the top of the connecting plate, and the connecting plate is driven to move up and down by the telescopic rod.
[0036] Compared with the prior art, the present invention has the following beneficial effects:
[0037] In this metal smelting furnace, with the setting of the vibration assembly, the second motor drives the rocker to rotate, causing the movable block to swing. The fixed frame and the movable rod rotate up and down, and the knocking plate and the knocking ball can repeatedly knock the outer wall of the furnace body up and down, thereby knocking the slag on the furnace body off.
[0038] In this metal smelting furnace, with the setting of the automatic door opening and closing assembly, the discharge port can be automatically blocked or opened, which is convenient for taking and placing materials, and can also prevent accidents caused by manually handling the furnace cover.
[0039] In this metal smelting furnace, with the setting of the waste heat recovery device, the waste heat of the flue gas can be effectively utilized, the utilization of thermal resources can be integrated, and the flue gas with a relatively high temperature can be prevented from being discharged into the atmosphere, affecting the outdoor temperature. At the same time, since the temperature of the flue gas decreases, the unpleasant smell contained in the flue gas can be effectively reduced, the pollution of the unpleasant smell to the atmospheric environment can be improved, and it is convenient for subsequent environmental protection treatment. Description of the Drawings
[0040] Figure 1 It is the front view schematic diagram of the overall structure of the metal smelting furnace.
[0041] Figure 2 It is the top view structural schematic diagram of the automatic door opening and closing assembly.
[0042] Figure 3 It is the top view structural schematic diagram of part of the structure in the vibration assembly.
[0043] Figure 4 It is the side view structural schematic diagram of the movable block and the rocker.
[0044] Figure 5 It is the front view sectional structural schematic diagram of the waste heat recovery device
[0045] Figure 6 For Figure 5 The front view structural schematic diagram of part of the structure in
[0046] Figure 7 For Figure 6 The front view sectional structural schematic diagram of the component structure in
[0047] Figure 8 For Figure 7 The enlarged schematic diagram of the middle part structure in
[0048] Figure 9 For Figure 7 The enlarged schematic diagram of the left part structure in
[0049] Figure 10 It is the top view structural schematic diagram of the transmission belt and the transmission rod connected through the driven gear and the driving gear.
[0050] in:
[0051] 1-furnace body; 101-inlet and outlet; 2-furnace door; 3-fixed frame; 4-driving turntable; 5-driven wheel support; 6-waste heat recovery device; 601-telescopic rod; 602-box; 603-hose; 604-concave shell; 605-transmission belt; 606-switching plate; 607-rotating column; 608-driven gear; 609-driving gear; 610-transmission rod; 611-fixed plate; 612-driving rod; 613-first motor; 614-pry bar; 615-support shaft; 616-bearing; 617-connecting plate; 618-heat exchange shell; 619-U-tube; 620-gas collecting box; 621-inlet and outlet gas collecting box Air box; 622-transporting air collecting box; 623-intake pipe; 624-exhaust pipe; 7-vibration assembly; 701-T-type plate frame; 702-second motor; 703-concave plate; 704-movable rod; 705-connecting frame; 706-knocking plate; 707-fixed frame; 708-movable block; 709-rocker; 8-automatic door opening and closing assembly; 801-concave frame; 802-driving rotating rod; 803-driving gear; 804-limiting plate; 805-track groove; 806-traction rod; 807-spring; 808-guide wheel; 809-lock; 810-rectangular frame; 811-travel wheel; 812-rack plate. DETAILED DESCRIPTION
[0052] In the description of the present invention, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. indicate positions or positional relationships based on the positions or positional relationships shown in the accompanying drawings, or the positions or positional relationships in which the inventive product is usually placed when in use. They are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as limiting the present invention. In addition, the terms "first", "second", "third", etc. are only used to distinguish the description, and cannot be understood as indicating or implying relative importance.
[0053] In the description of the present invention, it is also necessary to explain that, unless otherwise clearly specified and limited, the terms "set", "install", "connect", and "connect" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be indirectly connected through an intermediate medium, or it can be the internal communication of two elements. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.
[0054] To make the objectives, technical solutions, and advantages of the present invention clearer, the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. However, it should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the scope of the present invention. In addition, in the following description, the descriptions of well-known structures and technologies are omitted to avoid unnecessarily confusing the concepts of the present invention. Embodiment 1
[0055] Please refer to Figures 1-4 , a metal smelting furnace, including a furnace body 1. One end of the furnace body 1 is fixedly provided with a driving turntable 4. Below the driving turntable 4 is provided with a fixing frame 3. The driving turntable 4 is rotatably arranged inside the fixing frame 3;
[0056] The other end of the furnace body 1 is provided with a waste heat recovery device 6, and a driven wheel support 5 is fixedly provided below it. The driven wheel inside the driven wheel support 5 is in driving connection with the outer wall of the furnace body 1; through the cooperation of the driving turntable 4 and the driven wheel support 5, the furnace body 1 is fixedly supported, and the furnace body 1 can rotate under the drive of the driving turntable 4; furthermore, through the setting of the waste heat recovery device 6, the flue gas waste heat of the furnace body 1 can be effectively recovered.
[0057] Vibration components 7 are arranged on the front and rear sides of the furnace body 1, and the front and rear outer walls of the furnace body 1 are vibrated and knocked through the vibration components 7; through the setting of the vibration components 7, the furnace body 1 can be vibrated and knocked, which is beneficial to removing slag, furnace ash, etc. on the inner wall of the furnace body 1;
[0058] A feeding and discharging port 101 is opened at the top of the furnace body 1, and an automatic switch door assembly 8 is also arranged at the top. The furnace door 2 of the furnace body 1 is automatically opened and closed through the automatic switch door assembly 8, and the feeding and discharging port 101 is blocked or opened; through the setting of the automatic switch door assembly 8, the feeding and discharging port 101 can be blocked or opened, which is convenient for taking and placing materials. Embodiment 2
[0059] Please refer to Figures 1-2 , on the basis of the above embodiment, for the metal smelting furnace, the automatic switch door assembly 8 includes a concave frame 801, a driving rotating rod 802, a driving gear 803, a limiting plate 804, a track groove 805, a traction rod 806, a spring 807, a guide wheel 808, a lock 809, a rectangular frame 810, a walking wheel 811, and a rack plate 812;
[0060] There are two sets of the concave frame 801 and the limiting plate 804 that are parallel to each other, which are fixedly arranged on the top of the furnace body 1. The limiting plate 804 is also arranged inside one end of the concave frame 801. The furnace door 2 is slidably connected between the two sets of limiting plates 804;
[0061] The rectangular frame 810 is located above the furnace door 2 and is connected to the furnace door 2 through a traction rod 806, a spring 807 and a latch 809. One end of the traction rod 806 is hinged inside the four corners of the rectangular frame 810, and the other end is hinged to the latch 809 fixed on the furnace door 2. The spring 807 is sleeved on the outer wall of the traction rod 806, with one end fixedly hooked on the latch 809 and the other end fixedly hooked on the rectangular frame 810;
[0062] Through the setting of the spring 807, on the one hand, it is used to connect the rectangular frame 810 and the furnace door 2 to lift the furnace door 2. On the other hand, it is to keep the traction rod 806 in an inclined state, so that when the rectangular frame 810 drives the furnace door 2 to move, it can easily overcome the elastic force and fall, or when the rectangular frame 810 moves in the reverse direction, under the action of the elastic force, it is easy to lift the furnace door 2 again.
[0063] Walking wheels 811 are fixedly installed on the outer sides of the four corners of the rectangular frame 810. The walking wheels 811 are in rolling connection with the rolling grooves opened inside the concave frame 801, and the walking wheels 811 walk along the rolling grooves inside the concave frame 801; Through the setting of the rolling grooves and the walking wheels 811, it is convenient to connect the rectangular frame 810 to the concave frame 801;
[0064] The rack plate 812 is fixedly connected above the rectangular frame 810. The driving gear 803 is kept in meshing connection with the rack plate 812. The driving rotating rod 802 passes through the middle end of the fixed driving gear 803, and its two ends are fixedly connected to the top of the furnace body 1 through mounting plates. The two ends of the driving gear 803 are kept in rotational connection with the mounting plates and are driven at one end by setting a driving motor; By driving the driving gear 803 with the driving motor, the driving gear 803 rotates, and then the driving gear 803 drives the rack plate 812 to move, and then the rectangular frame 810 walks on the concave frame 801;
[0065] A track groove 805 is opened inside the limit plate 804. Two sets of guide wheels 808 are arranged in parallel, and their transmission shafts are fixedly connected to the latch 809;
[0066] By moving the rectangular frame 810 to drive the furnace door 2 to move, the guide wheels 808 walk along the track of the track groove 805, so that the furnace door 2 can displace downward against the pulling force of the spring 807, and the furnace door 2 seals the discharge port 101;
[0067] The track groove 805 is set to a bent structure. When the guide wheels 808 walk along the track of the track groove 805 to the lowest position, the position of the furnace door 2 drops to seal the discharge port 101. On the contrary, the position of the furnace door 2 rises and opens. Embodiment 3
[0068] Please refer to Figure 1 and 3 Figure 4. On the basis of the above embodiments, for the metal smelting furnace, the vibration assembly 7 includes a T-shaped plate frame 701, a second motor 702, a concave plate 703, a movable rod 704, a connecting frame 705, a knocking plate 706, a fixed frame 707, a movable block 708 and a rocker 709;
[0069] The T-shaped plate frame 701 is movably arranged on the front and rear sides of the furnace body 1. The concave plate 703 is fixedly arranged on the top of the T-shaped plate frame 701. The fixed frame 707 is arranged inside the middle end of the concave plate 703, and its two sides are fixedly connected to the movable rod 704. The movable rod 704 penetrates and is rotatably connected to the two ends inside the concave plate 703;
[0070] The movable block 708 is rotatably arranged inside the fixed frame 707, and one side of it is fixedly connected to the rocker 709. One end of the rocker 709 passes through the middle end of the concave plate 703 and is fixedly connected to the driving shaft of the second motor 702 at the same time;
[0071] The second motor 702 drives the rocker 709 to rotate. The rocker 709 drives the movable block 708 to swing. However, since the movable block 708 is rotatably arranged inside the fixed frame 707, and the two ends of the fixed frame 707 are rotatably connected to the two ends of the concave plate 703 through the movable rod 704, thus under the action of the rocker 709, the movable block 708 rotates back and forth left and right inside the fixed frame 707, and the fixed frame 707 and the movable rod 704 also rotate back and forth in the up and down directions.
[0072] Furthermore, in this embodiment, one end of the movable rod 704 is fixedly connected to the knocking plate 706 through the connecting frame 705. A plurality of knocking balls are fixedly arranged on the surface of the knocking plate 706 close to the furnace body 1; when the movable rod 704 rotates back and forth in the up and down direction, the knocking plate 706 and the knocking balls will contact the outer wall of the furnace body 1, thereby knocking the outer wall of the furnace body 1.
[0073] Specifically, when in use, the second motor 702 drives the rocker 709 to rotate. The rocker 709 drives the movable block 708 to swing. The movable block 708 rotates back and forth left and right inside the fixed frame 707, and the fixed frame 707 and the movable rod 704 rotate back and forth in the up and down directions. Then, the knocking plate 706 and the knocking balls cooperate with the movable rod 704 to knock the outer wall of the furnace body 1 up and down for a while, thereby knocking the outer wall of the furnace body 1.
[0074] It should be noted that the T-shaped plate frame 701 is movably arranged on the front and rear sides of the furnace body 1, so that the distance from the front and rear walls of the furnace body 1 can be adjusted as needed. At the same time, it is also convenient to move the T-shaped plate frame 701 away from the furnace body 1 when the furnace body 1 rotates for discharging, so as to avoid conflicting with the automatic switch door assembly 8. Example 4
[0075] See also Figures 6-10 , on the basis of the above embodiment, the waste heat recovery device 6 of the metal smelting furnace includes a heat exchange shell 618, a U-shaped tube 619, a gas collecting box 620, an inlet and outlet gas collecting box 621, a conveying gas collecting box 622, an inlet pipe 623 and an outlet pipe 624;
[0076] The air collecting box 620 is fixedly installed on the top of the heat exchange shell 618, and the U-shaped tube 619 is fixedly installed inside the heat exchange shell 618, and the inside of the heat exchange shell 618 is filled with water;
[0077] The gas collecting box 620 includes an inlet and outlet gas collecting box 621 at both ends and a conveying gas collecting box 622 at the middle end. The ports of the U-shaped tube 619 are located inside the inlet and outlet gas collecting box 621 and the conveying gas collecting box 622 at the middle end. The multiple U-shaped tubes 619 are connected at the ports through the inlet and outlet gas collecting box 621 and the conveying gas collecting box 622 at the middle end.
[0078] The inlet and outlet air collecting boxes 621 at both ends of the air collecting box 620 are respectively fixedly connected to the inlet pipe 623 and the outlet pipe 624, and one end of the inlet pipe 623 is rotatably connected to the smoke outlet of the furnace body 1.
[0079] The waste heat recovery device 6 also includes an electrically remote-controlled telescopic rod 601 and a box body 602, one end of the fixed end of the telescopic rod 601 is fixedly connected to the inner wall of the conveying gas collecting box 622, and the other end is fixedly mounted on the box body 602;
[0080] A concave shell 604 is provided on both sides of the box body 602, and a transmission belt 605 is provided inside the concave shell 604. The two ends of the transmission belt 605 are connected and stretched through a rotating column 607. The two ends of the rotating column 607 are rotatably connected inside the concave shell 604. The transmission belt 605 is transmitted by driving the rotating column 607. A plurality of toggle plates 606 are evenly provided on one side of the transmission belt 605. The toggle plates 606 are driven by the transmission belt 605 to move, which can guide and mix the smoke, thereby keeping the smoke temperature uniform in the conveying and collecting box 622.
[0081] A driven gear 608 is fixedly sleeved on the outer wall of the middle end of the rotating column 607. A driving gear 609 is meshed and connected to one side of the driven gear 608. A transmission rod 610 is fixedly connected to one side of the driving gear 609. The transmission rod 610 is connected to the concave-shaped housing 604 through a fixing plate 611, and a driving rod 612 is connected to one end of the transmission rod 610. One end of the driving rod 612 passes through the concave-shaped housing 604 and is fixedly connected to a motor 613. The motor 613 is fixedly installed on the concave-shaped housing 604 to drive the driving rod 612 through the motor 613. A hose 603 is sleeved outside the motor 613, and both ends of the hose 603 are fixedly connected to the concave-shaped housing 604 and the box body 602 respectively.
[0082] Further, in this embodiment, the fixing plate 611 is rotatably connected to the transmission rod 610, and the fixing plate 611 restricts the position of the transmission rod 610.
[0083] Further, in this embodiment, a pry bar 614 is fixedly connected to one end of the motor 613. The pry bar 614 passes through the box body 602 and is rotatably connected to the inside of the box body 602 through a support shaft 615. The pry bar 614 rotates with the support shaft 615 as a fulcrum.
[0084] A through groove 618 is formed inside the side wall of the box body 602 to facilitate the pry bar 614 to pass through the box body 602.
[0085] A bearing 616 is fixedly sleeved on one end of the pry bar 614. Two connecting plates 617 are hinged to both sides of the bearing 616 through rotating shafts. Through the arrangement of the bearing 616 and the connecting plates 617, it is convenient to drive one end of the two pry bars 614 to rotate with the support shaft 615 as a fulcrum.
[0086] Furthermore, in this embodiment, the movable end of the telescopic rod 601 passes through the box body 602 and is fixedly connected to the top of the connecting plate 617, and the connecting plate 617 is driven to move up and down through the telescopic rod 601.
[0087] Specifically, when in use, when the flue gas enters the conveying gas collecting box 622 through the intake pipe 623, by simultaneously turning on the two motors 613 to drive the driving rod 612 and the transmission rod 610 to rotate, the driving gear 609 drives the driven gear 608 and the rotating column 607 to rotate, so that the transmission belt 605 is driven, and the transmission belt 605 drives the dialing plate 606 to move, which can accelerate the flow and mixing of the flue gas, so that the flue gas maintains a relatively uniform temperature in the conveying gas collecting box 622, thus solving the problem of large temperature difference of the flue gas continuously entering the conveying gas collecting box 622, and making the subsequent waste heat recovery effect better.
[0088] When the diversion and mixing range between the two sets of concave shells 604 needs to be changed, the telescopic rod 601 is started to drive the two pry bars 614 to rotate upward or downward at the same time. When the two pry bars 614 rotate upward at the same time, the range becomes larger, and when the two pry bars 614 rotate downward at the same time, the range becomes smaller.
[0089] It should be pointed out that the moving directions of the moving plates 606 are all arranged in the same direction of air intake, so as to guide the flow and accelerate the fluidity of the smoke.
[0090] The solution in this embodiment can be selectively combined with the solutions in other embodiments for use.
[0091] It should be noted that although the above embodiments have been described in this article, the scope of patent protection of the present invention is not limited thereby. Therefore, based on the innovative concept of the present invention, changes and modifications made to the embodiments described herein, or equivalent structures, equivalent processes or equivalent functional transformations made using the contents of the present specification and drawings, directly or indirectly applying the above technical solutions to other related technical fields are all included in the scope of protection of the patent of the present invention.
Claims
1. A metal smelting furnace, comprising a furnace body (1), characterized in that: A driving turntable (4) is fixedly arranged at one end of the furnace body (1), a fixing frame (3) is arranged below the driving turntable (4), and the driving turntable (4) is rotatably arranged inside the fixing frame (3); A waste heat recovery device (6) is provided at the other end of the furnace body (1), and a driven wheel support (5) is fixedly provided below the waste heat recovery device (6), wherein the driven wheel inside the driven wheel support (5) is in driving connection with the outer wall of the furnace body (1); Vibration components (7) are provided on the front and rear sides of the furnace body (1), and the front and rear outer walls of the furnace body (1) are vibrated and knocked by the vibration components (7); The top of the furnace body (1) is provided with a material inlet and outlet (101), and the top is also provided with an automatic door opening and closing assembly (8), and the furnace door (2) of the furnace body (1) is automatically opened and closed by the automatic door opening and closing assembly (8), thereby blocking or opening the material outlet (101); The waste heat recovery device (6) comprises a heat exchange shell, a U-shaped tube (619), an air collecting box (620), an air inlet and outlet air collecting box (621), a transport air collecting box (622), an air inlet pipeline (623) and an air outlet pipeline (624); The air collecting box (620) is fixedly mounted on the top of the heat exchange shell, the U-shaped tube (619) is fixedly mounted inside the heat exchange shell, and the inside of the heat exchange shell is filled with water; The gas collecting box (620) comprises inlet and outlet gas collecting boxes (621) at both ends thereof and a transport gas collecting box (622) at the middle end; ports of the U-shaped tubes (619) are located inside the inlet and outlet gas collecting boxes (621) and the transport gas collecting box (622) at the middle end; and a plurality of U-shaped tubes (619) are connected at the ports via the inlet and outlet gas collecting boxes (621) and the transport gas collecting box (622) at the middle end; The inlet and outlet air collecting boxes (621) at both ends of the air collecting box (620) are respectively fixedly connected to the air inlet pipe (623) and the air outlet pipe (624); one end of the air inlet pipe (623) is rotatably connected to the smoke outlet of the furnace body (1); The waste heat recovery device (6) further comprises an electrically remote-controlled telescopic rod (601) and a box body (602); a concave shell (604) is provided on both sides of the box body (602); a transmission belt (605) is provided inside the concave shell (604); both ends of the transmission belt (605) are connected and stretched by a rotating column (607); both ends of the rotating column (607) are rotatably connected inside the concave shell (604); and a plurality of toggle plates (606) are evenly provided on one side of the transmission belt (605); A driven gear (608) is fixedly sleeved on the outer wall of the middle end of the rotating column (607); one side of the driven gear (608) is meshedly connected to a driving gear (609); one side of the driving gear (609) is fixedly connected to a transmission rod (610); the transmission rod (610) is connected to the concave shell (604) via a fixing plate (611); one end of the transmission rod (610) is transmission-connected to a driving rod (612); one end of the driving rod (612) passes through the concave shell (604) and is fixedly connected to a motor (613); the motor (613) is fixedly mounted on the concave shell (604); and the driving rod (612) is driven by the motor (613); The fixed plate (611) and the transmission rod (610) are rotationally connected, and the fixed plate (611) limits the position of the transmission rod (610); One end of the motor (613) is fixedly connected to a pry bar (614), the pry bar (614) passes through the box body (602), and is rotatably connected to the inside of the box body (602) via a support shaft (615); A through slot is provided inside the side wall of the box body (602) to allow the pry bar (614) to pass through the box body (602); A bearing (616) is fixedly sleeved on one end of the pry bar (614), and connecting plates (617) are hingedly connected on both sides of the bearing (616) via a rotating shaft; One end of the fixed end of the telescopic rod (601) is fixedly connected to the inner wall of the conveying gas collecting box (622), and the other end is fixedly mounted on the box body (602); The movable end of the telescopic rod (601) passes through the box body (602) and is fixedly connected to the top of the connecting plate (617), and the connecting plate (617) is driven to move up and down by the telescopic rod (601).
2. A metal smelting furnace according to claim 1, characterized in that: The automatic door opening and closing assembly (8) comprises a concave frame (801), a driving rotating rod (802), a driving gear (803), a limiting plate (804), a track groove (805), a traction rod (806), a spring (807), a guide wheel (808), a lock buckle (809), a rectangular frame (810), a running wheel (811) and a rack plate (812); The concave frame (801) and the limiting plate (804) are provided in two sets parallel to each other and fixedly arranged on the top of the furnace body (1); the limiting plate (804) is also arranged on the inner side of one end of the concave frame (801); and the furnace door (2) is slidably connected between the two sets of limiting plates (804); The rectangular frame (810) is located above the furnace door (2) and is connected to the furnace door (2) via a traction rod (806), a spring (807) and a lock (809); one end of the traction rod (806) is hinged to the inside of the four corners of the rectangular frame (810), and the other end is hinged to the lock (809) fixed on the furnace door (2); the spring (807) is sleeved on the outer wall of the traction rod (806), and one end of the spring is fixedly hooked on the lock (809), and the other end is fixedly hooked on the rectangular frame (810); The limiting plate (804) is provided with a track groove (805) inside, and the guide wheel (808) is provided with two sets of mutually parallel ones, and the transmission shaft thereof is fixedly connected with the lock buckle (809); The rectangular frame (810) is moved to drive the furnace door (2) to move, and the guide wheel (808) moves along the track of the track groove (805), so that the furnace door (2) can overcome the pulling force of the spring (807) and move downward, and the furnace door (2) blocks the discharge port (101).
3. A metal smelting furnace according to claim 2, characterized in that: Traveling wheels (811) are fixedly mounted on the outside of the four corners of the rectangular frame (810), and the traveling wheels (811) are rollingly connected to rolling grooves provided on the inside of the concave frame (801), and the traveling wheels (811) travel along the rolling grooves inside the concave frame (801).
4. A metal smelting furnace according to claim 2, characterized in that: The rack plate (812) is fixedly connected to the top of the rectangular frame (810), the driving gear (803) is meshedly connected to the rack plate (812), the driving rotating rod (802) passes through the middle end of the fixed driving gear (803), and its two ends are fixedly connected to the top of the furnace body (1) through a mounting plate, the two ends of the driving gear (803) are rotationally connected to the mounting plate, and one end is driven by a driving motor.
5. A metal smelting furnace according to claim 1, characterized in that: The vibration assembly (7) comprises a T-shaped plate frame (701), a second motor (702), a concave plate (703), a movable rod (704), a connecting frame (705), a knocking plate (706), a fixed frame (707), a movable block (708) and a rocker (709); The T-shaped plate frame (701) is movably arranged at the front and rear sides of the furnace body (1); the concave plate (703) is fixedly arranged at the top of the T-shaped plate frame (701); the fixed frame (707) is arranged inside the middle end of the concave plate (703), and its two sides are fixedly connected to the movable rod (704); the movable rod (704) penetrates and rotatably connects the two ends of the concave plate (703); The movable block (708) is rotatably arranged inside the fixed frame (707), and one side of the movable block is fixedly connected to a rocker (709). One end of the rocker (709) passes through the middle end of the concave plate (703) and is fixedly connected to the drive shaft of the second motor (702).
6. A metal smelting furnace according to claim 5, characterized in that: One end of the movable rod (704) is fixedly connected to a knocking plate (706) via a connecting frame (705), and a plurality of knocking balls are fixedly provided on a side of the knocking plate (706) close to the furnace body (1).
7. A metal smelting furnace according to claim 1, characterized in that: The motor (613) is covered with a hose (603) on its exterior, and both ends of the hose (603) are fixedly connected to the concave shell (604) and the box body (602) respectively.
Citation Information
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