Visual monitoring equipment for combustion high temperature of kiln
By combining the welded base with the positioning structure, locking structure and reinforcement structure, the problem of the rotary kiln temperature monitor's fixing method being susceptible to environmental corrosion is solved, realizing quick disassembly and assembly and stable connection, and improving the convenience and stability of disassembly and maintenance.
Patent Information
- Application Number
- CN202423201592.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-25
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-12-25
AI Technical Summary
The existing method of fixing rotary kiln temperature monitoring instruments is easily corroded by environmental factors, resulting in dust and impurities adhering to the connection points, making disassembly and maintenance difficult.
The rotary kiln temperature monitor is assembled and disassembled using a combination of a welded base, positioning structure, locking structure, and reinforcement structure, and is achieved through T-shaped slots, linkage slides, and magnetic blocks, thus avoiding the connection points being exposed to the outside.
It enables quick disassembly and stable fixation of the rotary kiln temperature monitor, prevents dust from adhering to the connection points, and improves the convenience and stability of disassembly operations.
Smart Images

Figure CN223525904U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to kiln temperature monitoring equipment technical field, concretely is kiln combustion high temperature visual monitoring equipment. BACKGROUND
[0002] The rotary kiln temperature monitor is the important technical equipment in the industrial furnace, and is the comprehensive monitoring equipment integrating the high temperature thermal imaging technology, image processing technology and automation control system, which realizes the real-time monitoring and visualization display of the combustion temperature field in the furnace by using the high temperature thermal imager to carry out real-time imaging on the inside of the kiln, extracting the temperature distribution information in the furnace through the image processing technology and realizing the temperature monitoring, alarm and record functions through the automation control system.
[0003] In the prior art, the rotary kiln temperature monitor usually needs to be installed on a high platform for use, and the fixing mode usually adopts bolts and nuts, but the connection of the bolts and nuts is always exposed outside, which is easy to be eroded by environmental factors such as sunshine and rain, so that dust and impurities are attached to the surface or rust occurs, and the rotary kiln temperature monitor is difficult to be removed when it needs to be disassembled and repaired, so the kiln combustion high temperature visual monitoring equipment is needed to meet the needs of people. UTILITY MODEL CONTENTS
[0004] The utility model aims at providing kiln combustion high temperature visual monitoring equipment to solve the problems in the above background technology.
[0005] In order to achieve the above purpose, the utility model provides the following technical scheme: kiln combustion high temperature visual monitoring equipment, including rotary kiln temperature monitor and welding base, the bottom side of the rotary kiln temperature monitor is movably installed with the connecting seat, the top side of the welding base is installed with the positioning seat, the positioning structure is installed between the positioning seat and the connecting seat, the linkage sliding seat is movably installed on the positioning structure, the locking structure is installed on the linkage sliding seat, the reinforcing plug-in board is installed on the positioning structure, and the reinforcing structure is installed on the reinforcing plug-in board.
[0006] Preferably, the positioning structure comprises a T-shaped clamping groove and a positioning groove, the T-shaped clamping groove and the positioning groove are both arranged in the interior of the positioning seat, the T-shaped seat is detachably installed in the T-shaped clamping groove, the movable clamping seat is detachably installed in the positioning groove, the same supporting plate is movably installed on the T-shaped seat and the movable clamping seat, and the supporting plate is rotatably installed at the lower end of the connecting seat.
[0007] Preferably, the locking structure comprises a connecting rod rotatably mounted on one side of a linkage sliding base, the linkage sliding base being slidably mounted in the interior of a movable clamping seat, one end of the connecting rod being rotatably mounted with a sliding rod, one end of the sliding rod being mounted with an inclined surface plug, one side of the inclined surface plug being mounted with one end of a limiting spring, the other end of the limiting spring being mounted on the inner wall of the movable clamping seat, the limiting spring being slidably sleeved on the sliding rod, and the inner wall of the positioning groove being provided with a socket, the inclined surface plug being movably mounted in the socket.
[0008] Preferably, one side of the linkage sliding base is mounted with a magnetic block one, one side of the movable clamping seat is mounted with a placing frame, and the placing frame is detachably mounted with a magnetic block two, the magnetic block two being located on one side of the magnetic block one.
[0009] Preferably, the interior of the movable clamping seat is provided with a guide sliding groove and a guide sliding hole, the linkage sliding base and the magnetic block one are slidably mounted in the guide sliding groove, and the sliding rod is slidably mounted in the guide sliding hole.
[0010] Preferably, the reinforcing structure comprises a reinforcing slot, the reinforcing slot being formed in the interior of the linkage sliding base, and a reinforcing plug being movably mounted in the reinforcing slot and mounted on the lower end of the supporting plate.
[0011] Preferably, the interior of the T-shaped seat is provided with a limiting groove, the sliding plate is slidably mounted in the limiting groove, one side of the sliding plate is mounted with a connecting sliding rod, one end of the connecting sliding rod penetrates through the T-shaped seat and is mounted on the bottom side of the supporting plate, one side of the sliding plate is mounted with one end of an auxiliary spring, and the other end of the auxiliary spring is mounted on the inner wall of the limiting groove.
[0012] Compared with the prior art, the utility model has the advantages that:
[0013] (1) The utility model discloses a welding base can be fixed at the installation point by welding, when installing the rotary kiln temperature monitor, only need to push the T-shaped seat into the T-shaped clamping groove, push in the meantime and pull up the rotary kiln temperature monitor to remove the limitation to the linkage sliding base, then continuously push the T-shaped seat to the bottom, make the inclined surface plug of the movable clamping seat card into the socket, can complete the position fixing of the rotary kiln temperature monitor, vice versa can use the magnetic block two to attract the magnetic block one in the movable clamping seat and drive the inclined surface plug to separate from the socket, so as to remove the rotary kiln temperature monitor, thereby realizing the quick disassembly of the rotary kiln temperature monitor, so as to remove the damaged rotary kiln temperature monitor to overhaul or replace, and the connecting place of the positioning seat and the movable clamping seat is not directly arranged outside, can avoid the dust and impurities adhering to the connecting place when placing and affect the subsequent disassembly operation.
[0014] (2) after the inclined surface plug is inserted into the socket and the movable clamping seat and rotary kiln temperature monitor position are fixed, the rotary kiln temperature monitor is slowly lowered to insert the reinforcing plug into the reinforcing slot, which can prevent the linkage sliding seat from being deviated during use, thereby improving the stability of the inclined surface plug. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 A three-dimensional structure schematic view of the kiln combustion high-temperature visual monitoring equipment is provided in the utility model.
[0016] Figure 2 A positioning seat structure schematic view of the kiln combustion high-temperature visual monitoring equipment is provided in the utility model.
[0017] Figure 3 A supporting plate structure schematic view of the kiln combustion high-temperature visual monitoring equipment is provided in the utility model.
[0018] Figure 4 A movable clamping seat cross-section structure schematic view of the kiln combustion high-temperature visual monitoring equipment is provided in the utility model.
[0019] Figure 5 A T-shaped seat cross-section structure schematic view of the kiln combustion high-temperature visual monitoring equipment is provided in the utility model.
[0020] In the figure: 100, rotary kiln temperature monitor; 101, welded base; 102, connecting seat; 200, positioning seat; 201, T-shaped clamping groove; 202, positioning groove; 203, T-shaped seat; 204, movable clamping seat; 205, supporting plate; 300, linkage sliding seat; 301, connecting rod; 302, sliding rod; 303, inclined surface plug; 304, limiting spring; 305, socket; 306, magnetic block one; 307, placing frame; 308, magnetic block two; 309, guide sliding groove; 310, guide sliding hole; 400, reinforcing plug; 401, reinforcing slot; 402, limiting groove; 403, sliding plate; 404, connecting sliding rod; 405, auxiliary spring. DETAILED DESCRIPTION
[0021] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0022] Please refer to Figures 1-5The utility model provides a kind of technical scheme: kiln combustion high temperature visual monitoring equipment, including rotary kiln temperature monitor 100 and welding base 101, the bottom side of rotary kiln temperature monitor 100 is movably installed with connecting seat 102;Welding base 101's top side is installed with positioning seat 200, positioning structure is installed between positioning seat 200 and connecting seat 102, positioning structure is movably installed with linkage sliding seat 300, locking structure is installed on linkage sliding seat 300, reinforcing plugboard 400 is installed on positioning structure, reinforcing structure is installed on reinforcing plugboard 400, welding base 101 can be welded in installation point when using, then the position of rotary kiln temperature monitor 100 is fixed using positioning structure and locking structure, positioning structure and locking structure can conveniently dismount rotary kiln temperature monitor 100, so that it is disassembled overhauls or replacement, and reinforcing structure can reinforce locking structure, prevent its installation position from producing deviation.
[0023] Further, positioning structure includes T type clamping groove 201 and positioning groove 202, T type clamping groove 201 and positioning groove 202 are all set in the inside of positioning seat 200, T type seat 203 is detachably installed in T type clamping groove 201, movable clamping seat 204 is detachably installed in positioning groove 202, same support plate 205 is movably installed on T type seat 203 and movable clamping seat 204, support plate 205 is rotatably installed below connecting seat 102, T type clamping groove 201 and positioning groove 202 can be used to limit the position of T type seat 203 and movable clamping seat 204 respectively, prevent its deviation when installing.
[0024] Further, locking structure includes connecting rod 301, connecting rod 301 is rotatably installed on the side wall of linkage sliding seat 300, specifically referring to Figure 4As shown, the linkage sliding seat 300 is slidingly installed inside the movable clamping seat 204, one end of the connecting rod 301 is rotatably installed with a sliding rod 302, one end of the sliding rod 302 is installed with an inclined surface plug 303, one side of the inclined surface plug 303 is installed on one end of a limiting spring 304, the other end of the limiting spring 304 is installed on the inner wall of the movable clamping seat 204, the limiting spring 304 is slidingly sleeved on the sliding rod 302, the inner wall of the positioning groove 202 is provided with a socket 305, the inclined surface plug 303 is movably installed in the socket 305, the T-shaped seat 203 is aligned with the T-shaped clamping groove 201 on the positioning seat 200 and is inserted, without being inserted to the bottom, the rotary kiln temperature monitor 100 is pulled upward to release the position limitation of the linkage sliding seat 300, then the supporting plate 205 is continuously pushed to push the T-shaped seat 203 to the bottom, the movable clamping seat 204 drives the inclined surface plug 303 to move to the positioning groove 202, in the process, the inclined surface of the inclined surface plug 303 is extruded by the positioning groove 202 and moves to the inside of the movable clamping seat 204, when the inclined surface plug 303 moves to the socket 305, the compressed limiting spring 304 pushes the inclined surface plug 303 to insert into the socket 305, thereby fixing the position of the movable clamping seat 204.
[0025] Further, one side of the linkage sliding seat 300 is installed with a magnetic block one 306, one side of the movable clamping seat 204 is installed with a placing frame 307, the placing frame 307 is detachably installed with a magnetic block two 308, the magnetic block two 308 is located on one side of the magnetic block one 306, the magnetic block two 308 is placed in the placing frame 307, so that the magnetic block two 308 drives the magnetic block one 306 under the action of the magnetic force, and the magnetic block one 306 is slidably driven.
[0026] Further, the movable clamping seat 204 is provided with a guide sliding groove 309 and a guide sliding hole 310 inside, the linkage sliding seat 300 and the magnetic block one 306 are slidingly installed in the guide sliding groove 309, the sliding rod 302 is slidingly installed in the guide sliding hole 310, the magnetic block one 306 moves in the guide sliding groove 309, and the sliding rod 302 moves in the guide sliding hole 310, thereby limiting the moving direction of the sliding rod 302 and the magnetic block one 306.
[0027] Further, the reinforcing structure comprises a reinforcing slot 401, the reinforcing slot 401 is provided in the inside of the linkage sliding seat 300, and the reinforcing plate 400 is movably installed in the reinforcing slot 401, the reinforcing plate 400 is installed at the lower end of the supporting plate 205, and the reinforcing plate 400 is inserted into the reinforcing slot 401 to further limit the position of the linkage sliding seat 300 and prevent the linkage sliding seat 300 from deviating.
[0028] Further, the inside of the T-shaped seat 203 is provided with a limiting groove 402, and the limiting groove 402 is slidably provided with a sliding plate 403. One side of the sliding plate 403 is provided with a connecting sliding rod 404, one end of the connecting sliding rod 404 penetrates through the T-shaped seat 203 and is installed at the lower end of the supporting plate 205. One side of the sliding plate 403 is installed at one end of an auxiliary spring 405, and the other end of the auxiliary spring 405 is installed on the inner wall of the limiting groove 402. The rotary kiln temperature monitor 100 is pulled upward, which can drive the connecting seat 102 and the supporting plate 205 to rise, so that the supporting plate 205 pulls the connecting sliding rod 404 and the sliding plate 403 to slide in the limiting groove 402, so that the sliding plate 403 compresses the auxiliary spring 405, and at the same time, the rising supporting plate 205 drives the reinforcing plug-in plate 400 to separate from the reinforcing plug-in groove 401 on the linkage sliding seat 300.
[0029] The rotary kiln temperature monitor 100 in the embodiment is a structure in the prior art, and the rotary kiln temperature monitor 100 and the connecting seat 102 are connected through a damping shaft. The damping shaft can keep the rotary kiln temperature monitor 100 at a certain angle.
[0030] The working principle is that when installed, the welded base 101 can be welded at the installation position, the magnetic block two 308 is pulled out from the placing frame 307, the inclined surface plug-in blocks 303 on both sides are in the position state, then the T-shaped seat 203 is inserted into the T-shaped clamping groove 201 on the positioning seat 200, and the connecting seat 102 is connected with the rotary kiln temperature monitor 100 through the damping shaft. Figure Four Figure Two Figure Three , T-shaped seat 203 is inserted into the T-shaped card slot 201, do not insert to the bottom, pull up the rotary kiln temperature monitor 100, make the rotary kiln temperature monitor 100 drive the connecting seat 102 and the support plate 205 rise, make the support plate 205 pull the connecting slide rod 404 and the slide plate 403 slide in the limiting groove 402, make the slide plate 403 compress the auxiliary spring 405, at the same time, the rising support plate 205 will drive the reinforcing plug-in plate 400 from the reinforcing plug-in groove 401 on the linkage slide seat 300, at this time, the position restriction of the linkage slide seat 300 can be released, then continuously push the support plate 205 to push the T-shaped seat 203 to the bottom, make the movable clamping seat 204 slide into the positioning groove 202, the movable clamping seat 204 will drive the inclined surface plug-in block 303 to move into the positioning groove 202, in the process, the inclined surface of the inclined surface plug-in block 303 will be extruded by the positioning groove 202 and move to the inside of the movable clamping seat 204, the moving inclined surface plug-in block 303 will compress the limiting spring 304 and drive the sliding rod 302 to move, make the sliding rod 302 push one end of the connecting rod 301 to rotate and move, the other end of the connecting rod 301 will push the linkage slide seat 300 and the magnetic block one 306 to slide in the guide sliding groove 309, when the inclined surface plug-in block 303 moves to the insertion port 305, the limiting spring 304 in the compressed state will push the inclined surface plug-in block 303 to move and reset, in turn drive the inclined surface plug-in block 303 to insert into the insertion port 305, so as to fix the position of the movable clamping seat 204, at the same time, prevent the T-shaped seat 203 from falling off from the T-shaped card slot 201, complete the position fixing of the rotary kiln temperature monitor 100, and at the same time of the reset of the inclined surface plug-in block 303, the linkage slide seat 300 will move and reset, drive the reinforcing plug-in groove 401 to realign the reinforcing plug-in plate 400, at this time, the rotary kiln temperature monitor 100 can be released to make it reset, in turn drive the support plate 205 and the reinforcing plug-in plate 400 to reset, make the reinforcing plug-in plate 400 reinsert into the reinforcing plug-in groove 401, limit the position of the linkage slide seat 300, prevent the inclined surface plug-in block 303 from loosening, improve the connection stability of the rotary kiln temperature monitor 100.
[0031] When the rotary kiln temperature monitor 100 needs to be disassembled, the rotary kiln temperature monitor 100 is pulled upwards first to make the reinforcing plug-in plate 400 loose from the reinforcing plug-in slot 401, then the magnetic block two 308 is placed in the placing frame 307, the side of the magnetic block two 308 and the magnetic block one 306 that are attracted to each other faces the movable clamping seat 204, and then the magnetic block two 308 drives the magnetic block one 306 to slide in the guide sliding groove 309 under the action of the magnetic force, thereby driving the linkage sliding seat 300 to move, when the linkage sliding seat 300 moves, the sliding rod 302 is pulled to move through the connecting rod 301, the sliding rod 302 drives the inclined plug-in block 303 to loosen from the plug hole 305, thereby releasing the connection restriction of the movable clamping seat 204 and the positioning seat 200, at this time, the rotary kiln temperature monitor 100 is horizontally pushed to drive the movable clamping seat 204 and the T-shaped seat 203 to slide out of the positioning seat 200, and the rotary kiln temperature monitor 100 is quickly disassembled, in the state of the rotary kiln temperature monitor 100 being installed, the side of the magnetic block two 308 and the magnetic block one 306 that repel each other faces the movable clamping seat 204, when the rotary kiln temperature monitor 100 needs to be disassembled, the magnetic block two 308 is pulled out, the side of the magnetic block two 308 and the magnetic block one 306 that are attracted to each other faces the movable clamping seat 204, and the magnetic block two 308 can be placed in the placing frame 307 all the time, without the need of being carried additionally.
[0032] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. Kiln combustion high temperature visualization monitoring equipment, comprising a rotary kiln temperature monitor and a welded base, a connecting seat is movably installed on the bottom side of the rotary kiln temperature monitor; characterized in that: The top side of the welding base is provided with a positioning seat, a positioning structure is arranged between the positioning seat and the connecting seat, a linkage sliding seat is movably arranged on the positioning structure, a locking structure is arranged on the linkage sliding seat, a reinforcing insert plate is arranged on the positioning structure, and a reinforcing structure is arranged on the reinforcing insert plate. 2. The furnace combustion high temperature visualization monitoring apparatus of claim 1, wherein: The positioning structure comprises a T-shaped clamping groove and a positioning groove, both of which are arranged in the interior of the positioning seat, a T-shaped seat is detachably arranged in the T-shaped clamping groove, and a movable clamping seat is detachably arranged in the positioning groove; a same supporting plate is movably arranged on the T-shaped seat and the movable clamping seat, and the supporting plate is rotatably arranged at the lower end of the connecting seat.
3. The furnace combustion high temperature visualization monitoring apparatus of claim 1, wherein: The locking structure comprises a connecting rod, the connecting rod is rotatably arranged at one side of the linkage sliding seat, the linkage sliding seat is slidably arranged in the interior of the movable clamping seat, one end of the connecting rod is rotatably provided with a sliding rod, one end of the sliding rod is provided with an inclined surface insert block, one side of the inclined surface insert block is provided with one end of a limiting spring, the other end of the limiting spring is arranged on the inner wall of the movable clamping seat, the limiting spring is slidably sleeved on the sliding rod, and the inner wall of the positioning groove is provided with a socket, and the inclined surface insert block is movably arranged in the socket.
4. The furnace combustion high temperature visualization monitoring apparatus of claim 3, wherein: One side of the linkage sliding seat is provided with a magnetic block one, one side of the movable clamping seat is provided with a placing frame, the placing frame is detachably provided with a magnetic block two, and the magnetic block two is located at one side of the magnetic block one.
5. The furnace combustion high temperature visualization monitoring apparatus of claim 2, wherein: The interior of the movable clamping seat is provided with a guide sliding groove and a guide sliding hole, the linkage sliding seat and the magnetic block one are slidably arranged in the guide sliding groove, and the sliding rod is slidably arranged in the guide sliding hole.
6. The furnace combustion high temperature visualization monitoring apparatus of claim 1, wherein: The reinforcing structure comprises a reinforcing insert groove, the reinforcing insert groove is arranged in the interior of the linkage sliding seat, and the reinforcing insert plate is movably arranged in the reinforcing insert groove and arranged at the lower end of the supporting plate.
7. The furnace combustion high temperature visualization monitoring apparatus of claim 2, wherein: The interior of the T-shaped seat is provided with a limiting groove, a sliding plate is slidably arranged in the limiting groove, one side of the sliding plate is provided with a connecting sliding rod, one end of the connecting sliding rod penetrates through the T-shaped seat and is arranged at the bottom side of the supporting plate, one side of the sliding plate is provided with one end of an auxiliary spring, and the other end of the auxiliary spring is arranged on the inner wall of the limiting groove.