Multi-angle rotary kiln carcass temperature scanning device
By setting an annular transparent plate and a motor-driven extrusion roller structure in front of the rotary kiln scanner, combined with nozzle cleaning and absorbent cotton strips, the problem of residual moisture after scanner cleaning is solved, and dust and moisture are automatically removed, ensuring the continuity and efficiency of temperature detection.
Patent Information
- Application Number
- CN202423044787.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-11
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2034-12-11
AI Technical Summary
The existing rotary kiln scanner has residual moisture on the detection head after cleaning, which affects the temperature detection effect and leads to low detection efficiency.
A multi-angle rotary kiln body temperature scanning device was designed. It adopts an annular transparent plate protective structure, and removes dust by rotating the squeezing roller driven by a motor. Combined with nozzle cleaning and water-absorbing cotton strips to absorb water droplets, the device achieves automatic removal of dust and moisture.
It effectively prevents dust and moisture from directly adhering to the scanning head, ensuring the continuity and efficiency of temperature detection, saving cleaning time, and realizing automatic cleaning and recycling of dust and moisture.
Smart Images

Figure CN223691501U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to rotary kiln body detection technical field, concretely to a kind of multi-angle rotary kiln body temperature scanning device. BACKGROUND
[0002] Chinese patent publication number CN217504312U discloses a multi-angle rotary kiln body temperature scanning device, which comprises a rack, a groove is formed in the side wall of the rack, and a vertical rod is arranged at the bottom of the groove. The outer side of the vertical rod is sleeved with a sleeve, the sleeve is slidably connected to the top of the rack, and a ring sleeve is arranged on the lower surface of the sleeve. The top of the sleeve is provided with an infrared detection device, and the surface of the infrared detection device is provided with a detection head. The multi-angle rotary kiln body temperature scanning device is provided with a vertical rod and a sleeve. The vertical rod is driven to rotate by a first motor, which in turn drives the sleeve on its outer side to rotate. The angle of the infrared detection device can be adjusted. The ring sleeve on the outer side of the sleeve can be engaged with the driving gear during the rotation of the sleeve to drive the sleeve to slide upwards. The height position of the infrared detection device can be adjusted to adapt to rotary kilns of different lengths and heights.
[0003] In the above-mentioned prior art, the cleaning nozzle can clean the dust attached to the detection head of the rotary kiln scanner. However, after cleaning, there is still a lot of water on the detection head, which affects the temperature detection effect of the rotary kiln scanner on the rotary kiln body. It is necessary to wait for the water to dry before use, which is time-consuming. Therefore, a multi-angle rotary kiln body temperature scanning device is needed to meet people's needs. SUMMARY
[0004] The utility model aims to provide a multi-angle rotary kiln body temperature scanning device to solve the problems raised in the background art.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a multi-angle rotary kiln body temperature scanning device, comprising a rotary kiln scanner, a scanning head cover is arranged on one side of the rotary kiln scanner, and a multi-angle adjusting seat is installed below the rotary kiln scanner. An annular frame is installed on the rotary kiln scanner and the scanning head cover. A protection structure is installed inside the annular frame. An adjusting structure is rotatably installed inside the annular frame. A U-shaped tube is installed on the inner wall of the annular frame. The U-shaped tube is connected with a cleaning structure. A filtering structure is installed on the cleaning structure, and the filtering structure is at least partially located inside the annular frame.
[0006] Preferably, the protection structure comprises an annular transparent plate, which is rotatably installed inside the annular frame and the scanning head cover.
[0007] As a further preferred, the adjusting structure comprises two rotating shafts, both of which are rotatably installed inside the annular frame, both of which are fixedly sleeved with extrusion rollers, both of which are in contact with the two sides of the annular transparent plate, and both of which are rotatably installed with gears, both of which are in meshing engagement, and the upper end of the annular frame is rotatably installed with a motor, and the output end of the motor is rotatably installed on one of the rotating shafts.
[0008] As a further preferred, the cleaning structure comprises two shunt pipes, both ends of the U-shaped pipe are penetrated through the annular frame and installed on the shunt pipes, both of which are installed with a plurality of nozzles, a plurality of nozzles are uniformly distributed on both sides of the annular transparent plate, the lower end of the U-shaped pipe is installed with a conveying bellow, one end of the conveying bellow is installed with a water pump, the lower end of the water pump is installed with a water tank, the water pumping end of the water pump is installed with a water pumping pipe, the water pumping pipe is installed inside the water tank, four rubber sealing blocks are installed inside the annular frame, and two rubber sealing blocks on the same side are in contact with both sides of the annular transparent plate.
[0009] As a further preferred, the inner wall of the annular frame is installed with two water-absorbing cotton strips, both of which are in contact with both sides of the annular transparent plate.
[0010] As a further preferred, the lower end of the annular frame is installed with two return bellow pipes, both of which are in communication with the annular frame, and one end of each of the return bellow pipes is installed above the water tank.
[0011] As a further preferred, the filtering structure comprises a return hole and a mounting groove, both of which are formed in the upper end of the water tank, both of which are in communication with the return bellow pipe, the mounting groove is movably installed with the filter plate, the filter plate is located in the return hole, and one side of the filter plate is installed with a handle.
[0012] Compared with the prior art, the utility model has the advantages that:
[0013] (1) The utility model discloses a rotary kiln scanner scanning head's front is provided with annular transparent plate can block the dust impurity in the air, avoid its direct adhesion in scanning head place influence rotary kiln scanner to the temperature detection of rotary kiln body, if annular transparent plate surface adhesion dust is too much, can through the opening motor to make annular transparent plate rotate, adjust the one side of not adhesion dust to scanning head front, through the opening water pump can wash the one side of adhesion dust, when washing, will not cause the detection of scanning head to interfere, ensure that the rotary kiln scanner is caused to run, save the time of cleaning.
[0014] (2) the process of continuous rotation will contact with the water absorption cotton, the water absorption cotton can absorb the water on the ring-shaped transparent plate, and the cleaned water can be returned to the water tank through the return corrugated pipe, and the filter plate is used for filtering the water in the process, so that the water can be recycled. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 A three-dimensional structure schematic view of a multi-angle rotary kiln body temperature scanning device is provided for the utility model.
[0016] Figure 2 A ring-shaped frame cross-sectional structure schematic view of a multi-angle rotary kiln body temperature scanning device is provided for the utility model.
[0017] Figure 3 A water tank structure schematic view of a multi-angle rotary kiln body temperature scanning device is provided for the utility model.
[0018] Figure 4 A filter plate cross-sectional structure schematic view of a multi-angle rotary kiln body temperature scanning device is provided for the utility model.
[0019] In the figure: 100, rotary kiln scanner; 101, scanning head cover; 102, multi-angle adjusting seat; 200, ring-shaped frame; 201, ring-shaped transparent plate; 202, rotating shaft; 203, extrusion roller; 204, gear; 205, motor; 300, U-shaped pipe; 301, shunt pipe; 302, nozzle; 303, conveying corrugated pipe; 304, water pump; 305, water tank; 306, water suction pipe; 307, rubber sealing block; 308, water absorption cotton; 309, return corrugated pipe; 400, return hole; 401, mounting groove; 402, filter plate; 403, handle. DETAILED DESCRIPTION
[0020] 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.
[0021] Please refer to Figures 1-4The utility model provides a technical scheme: a multi -angle rotary kiln body temperature scanning device, including rotary kiln scanner 100, one side of rotary kiln scanner 100 is equipped with scanning head cover 101, and the lower portion of rotary kiln scanner 100 is installed with multi -angle adjusting seat 102, and the same annular frame 200 is installed on rotary kiln scanner 100 and scanning head cover 101, the inside installation of annular frame 200 has the protection structure, and the protection structure is used for blocking dust and impurity in air, and the inside rotation of annular frame 200 is installed with adjusting structure, and the adjusting structure can drive the protection structure to move adjustment, makes its one side of adhering dust away from the front of rotary kiln scanner 100 scanning head, and the lower end of annular frame 200 is installed with U type pipe 300, and U type pipe 300 is connected with washing structure, and the washing structure is used for washing dust and impurity on the protection structure, and the filter structure is installed on the washing structure, and the filter structure can filter the washing water, wherein, washing structure is at least partially installed in the inside of annular frame 200, and specifically referring to Figure 2 As shown.
[0022] Further, the protection structure includes an annular transparent plate 201, which is rotatably installed in the inside of the annular frame 200 and the scanning head cover 101. The annular transparent plate 201 can block dust and impurities in the air, preventing them from directly adhering to the scanning head of the rotary kiln scanner 100 through the scanning head cover 101.
[0023] Further, the adjusting structure includes two shafts 202, which are rotatably installed in the inside of the annular frame 200. Extrusion rollers 203 are fixedly sleeved on the two shafts 202. The two extrusion rollers 203 are in contact with the two sides of the annular transparent plate 201, respectively. Gears 204 are installed on one end of the two shafts 202. The two gears 204 are meshed with each other. A motor 205 is installed above the annular frame 200. The output end of the motor 205 is installed on a corresponding one of the two shafts 202. By turning on the motor 205, the two extrusion rollers 203 can be driven to rotate. The two extrusion rollers 203 are extruded on the inner and outer circles of the annular transparent plate 201, respectively. Therefore, the rotating extrusion rollers 203 can drive the annular transparent plate 201 to rotate in the inside of the scanning head cover 101 and the annular frame 200. The annular transparent plate 201 rotates around the rotary kiln scanner 100. The side of the annular transparent plate 201 with dust is moved into the annular frame 200, and the clean part of the annular transparent plate 201 is moved in front of the scanning head of the rotary kiln scanner 100, preventing dust and impurities from affecting the scanning effect. Referring to Figure 1 and Figure 2As shown, two rotating shafts 202 are arranged inside the annular frame 200 and located at both sides of the annular transparent plate 201, that is, the inner side and the outer side of the annular transparent plate 201, for contacting the two outer walls of the annular transparent plate 201, so that the rotating extrusion roller 203 can drive the annular transparent plate 201 to rotate. The output shaft of the motor 205 is connected with one of the rotating shafts 202 for driving the rotating shaft 202 to rotate.
[0024] Further, the cleaning structure includes two shunt pipes 301, both ends of the U-shaped pipe 300 penetrate through the annular frame 200 and are installed on the shunt pipes 301, a plurality of nozzles 302 are installed on the two shunt pipes 301, and the plurality of nozzles 302 are uniformly distributed on both sides of the annular transparent plate 201. The lower end of the U-shaped pipe 300 is installed with a conveying corrugated pipe 303, one end of the conveying corrugated pipe 303 is installed with a water pump 304, the lower end of the water pump 304 is installed with a water tank 305, the water pumping end of the water pump 304 is installed with a water pumping pipe 306, the water pumping pipe 306 is installed inside the water tank 305, four rubber sealing blocks 307 are installed inside the annular frame 200, two rubber sealing blocks 307 located on the same side are in contact with both sides of the annular transparent plate 201 respectively. Turn on the water pump 304, so that it uses the water pumping pipe 306 to pump out the water in the water tank 305, and then conveys it to the U-shaped pipe 300 and the shunt pipe 301 through the conveying corrugated pipe 303, and finally sprays it on both sides of the annular transparent plate 201 through the nozzles 302 to wash away the dust.
[0025] Further, two water-absorbing cotton bars 308 are installed on the inner wall of the annular frame 200, and the two water-absorbing cotton bars 308 are in contact with both sides of the annular transparent plate 201 respectively. The continuously rotating annular transparent plate 201 drives the cleaned part to pass between the two water-absorbing cotton bars 308, and the water droplets on the annular transparent plate 201 are absorbed by the water-absorbing cotton bars 308.
[0026] Further, two backflow corrugated pipes 309 are installed below the annular frame 200, and the two backflow corrugated pipes 309 are in communication with the annular frame 200. One end of each of the two backflow corrugated pipes 309 is installed above the water tank 305. The washed water and dust can be backflowed to the water tank 305 through the backflow corrugated pipes 309 and the backflow holes 400. In this embodiment, a gap can be provided between the lower end of the water pumping pipe 306 and the inner wall of the lower side of the water tank 305 to prevent impurities accumulated at the bottom of the water tank 305 from being pumped out by the water pumping pipe 306. In other embodiments, the backflow corrugated pipes 309 can be directly connected with an external water collecting tank to collect the used dirty water, so that a filtering mechanism is not needed.
[0027] Further, the filtering structure comprises a backflow hole 400 and a mounting groove 401, the backflow hole 400 and the mounting groove 401 are both arranged at the upper end of the water tank 305, the backflow hole 400 and the mounting groove 401 are communicated with the backflow corrugated pipe 309, the filtering plate 402 is movably arranged in the mounting groove 401, the filtering plate 402 is located in the backflow hole 400, one side of the filtering plate 402 is provided with a handle 403, when water and dust flow back to the water tank 305, the filtering plate 402 can be used to filter the dust and impurities in the water, so as to recycle. Wherein, the backflow hole 400 penetrates the upper side wall of the water tank 305 from top to bottom, the mounting groove 401 is located in the middle of the backflow hole 400, the structure of the filtering plate 402 can be seen from Figure 4 The middle part of the filtering plate 402 is a filtering part, and the outer periphery of the filtering plate 402 is a sealing part, which is used for sealing cooperation with the inner wall of the mounting groove 401, so that water can only enter the water tank 305 after being filtered by the filtering part, avoiding water overflowing from one side of the mounting groove 401. Wherein, the handle 403 extends out of one side of the mounting groove 401, the filtering plate 402 can be pulled out or pushed in through the handle 403.
[0028] In this embodiment, the inner wall of the annular frame 200 can be connected with the outer wall of the rotary kiln scanner 100 through the connecting rod, wherein the rotary kiln scanner 100 is a prior structure, and its specific structure and principle will not be described.
[0029] In this embodiment, the multi-angle adjusting seat 102 is a prior structure, wherein the multi-angle adjusting seat 102 mainly comprises a bottom support seat and a rotating shaft arranged at the upper end of the bottom support seat, and the lower end of the rotary kiln scanner 100 is mounted on the rotating shaft. A rotating motor can be arranged on one side of the bottom support seat, which is in transmission connection with one end of the rotating shaft and can drive the rotating shaft to rotate circumferentially, so as to adjust the angle of the rotary kiln scanner 100.
[0030] In this embodiment, the motor 205, the water pump 304, the rotary kiln scanner 100 and the driving motor can all be connected with an external PLC controller, which can be controlled through the PLC controller.
[0031] The working principle is that: by setting the annular transparent plate 201 in the scanning head cover 101 and in front of the scanning head of the rotary kiln scanner 100, the dust impurities in the air can be blocked to avoid direct adhesion to the scanning head of the rotary kiln scanner 100, and by opening the motor 205, the rotating shaft 202 can be driven to rotate, and when the rotating shaft 202 rotates, the gear 204 can be driven to rotate, and by the mutual meshing between the two gears 204, the two gears 204 can be simultaneously rotated towards each other, and then the two rotating shafts 202 can drive the two extrusion rollers 203 to rotate, respectively, and the two extrusion rollers 203 are extruded on the inner and outer circles of the annular transparent plate 201, so that the rotating extrusion roller 203 can drive the annular transparent plate 201 to rotate inside the scanning head cover 101 and the annular frame 200, and the annular transparent plate 201 rotates around the rotary kiln scanner 100, moves the side of the annular transparent plate 201 with dust into the annular frame 200, and moves the clean part of the annular transparent plate 201 to the front of the scanning head of the rotary kiln scanner 100, so as to avoid the influence of dust impurities on the scanning effect, and the continuous rotation of the annular transparent plate 201 can drive the adhered dust to move between the two nozzles 302, at this time, the water pump 304 can be opened to use the water suction pipe 306 to suck the water in the water tank 305 out and transport it to the U-shaped pipe 300 and the shunt pipe 301 through the conveying corrugated pipe 303, and finally spray it on both sides of the annular transparent plate 201 through the nozzle 302 to wash away the dust, and the washed water and dust can be returned to the water tank 305 through the backflow corrugated pipe 309 and the backflow hole 400, and the dust impurities in the water can be filtered by the filter plate 402 for recycling, and the continuously rotating annular transparent plate 201 can drive the cleaned part to pass between the two water-absorbing cotton strips 308, and the water-absorbing cotton strips 308 can absorb the water droplets on the annular transparent plate 201 to complete the cleaning operation of the annular transparent plate 201, if the annular transparent plate 201 in front of the scanning head is dirty again, the annular transparent plate 201 can be rotated in this way, if the dust impurities on the filter plate 402 are too much, the filter plate 402 can be pulled out of the mounting slot 401 by the handle 403, and the dust impurities can be poured out for repeated use, and the conveying corrugated pipe 303 and the backflow corrugated pipe 309 are designed to be telescopic, so that when the angle of the rotary kiln scanner 100 is adjusted, the conveying corrugated pipe 303 and the backflow corrugated pipe 309 can be telescoped according to the angle change of the rotary kiln scanner 100.
[0032] Although the embodiments of the present application have been shown and described, it should be understood by those skilled in the art 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. A multi-angle rotary kiln body temperature scanning device, comprising a rotary kiln scanner, one side of the rotary kiln scanner is provided with a scanning head cover, and a multi-angle adjusting seat is installed below the rotary kiln scanner; characterized in that: The rotary kiln scanner and the scanning head cover are mounted on the same annular frame. A protective structure is installed inside the annular frame, and an adjustment structure is rotatably installed inside the annular frame. A U-shaped tube is installed on the inner wall of the annular frame, and the U-shaped tube is connected to the cleaning structure. A filter structure is installed on the cleaning structure, and the filter structure is at least partially located inside the annular frame.
2. A multi-angle rotary kiln shell temperature scanning device according to claim 1, characterized in that: The protective structure includes an annular transparent plate, which is rotatably mounted inside the annular frame and the scanning head cover.
3. A multi-angle rotary kiln shell temperature scanning apparatus as claimed in claim 2, characterized in that: The adjustment structure includes two rotating shafts, both of which are rotatably mounted inside the annular frame. Each of the two rotating shafts is fixedly fitted with a squeezing roller, which is in contact with both sides of the annular transparent plate. A gear is mounted on one end of each of the two rotating shafts, and the two gears mesh with each other. A motor is mounted on the upper end of the annular frame, and the output end of the motor is mounted on one of the corresponding rotating shafts.
4. A multi-angle rotary kiln shell temperature scanning apparatus as claimed in claim 2, characterized in that: The cleaning structure includes two diversion pipes. Both ends of the U-shaped pipe pass through the annular frame and are installed on the diversion pipes. Several nozzles are installed on each of the two diversion pipes, and the nozzles are evenly distributed on both sides of the annular transparent plate. A conveying corrugated pipe is installed at the lower end of the U-shaped pipe. A water pump is installed at one end of the conveying corrugated pipe. A water tank is installed at the lower end of the water pump. A suction pipe is installed at the pump's suction end and is installed inside the water tank. Four rubber sealing blocks are installed inside the annular frame. Two rubber sealing blocks located on the same side are in contact with both sides of the annular transparent plate.
5. A multi-angle rotary kiln shell temperature scanning apparatus as claimed in claim 2, characterized in that: Two absorbent cotton strips are installed on the inner wall of the ring frame, and the two absorbent cotton strips are in contact with the two sides of the ring transparent plate respectively.
6. A multi-angle rotary kiln shell temperature scanning apparatus as claimed in claim 4, characterized in that: Two return corrugated pipes are installed below the annular frame, and both return corrugated pipes are connected to the annular frame. One end of each return corrugated pipe is installed above the water tank.
7. A multi-angle rotary kiln shell temperature scanning apparatus as claimed in claim 6, characterized in that: The filter structure includes a return hole and a mounting groove. Both the return hole and the mounting groove are located at the upper end of the water tank. The return hole is connected to the mounting groove and the return corrugated pipe. A filter plate is movably installed in the mounting groove. The filter plate is located in the return hole. A handle is installed on one side of the filter plate.
Citation Information
Patent Citations
Multi-angle rotary kiln carcass temperature scanning device
CN217504312U