A boiler coal gas desulfurization tank convenient to install
The design of the rotation adjustment mechanism, tilt adjustment mechanism, and fixing mechanism solves the problem that the desulfurization tank cannot be easily fixed in a specified direction, height, and angle, thus realizing convenient installation and disassembly of the desulfurization tank and reducing the burden on the staff.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- HUAINAN SHUNHUA MASCH MFG CO LTD
- Filing Date
- 2022-10-29
- Publication Date
- 2026-06-16
AI Technical Summary
Existing fixing devices cannot easily and quickly fix boiler gas desulfurization tanks in the specified direction, height, and angle, increasing the workload of staff.
The desulfurization tank body is installed and disassembled by using a rotary adjustment mechanism, a tilt adjustment mechanism, and a fixing mechanism in conjunction with a vertical support plate and a base. This includes the design of components such as clamping plates, screw locking parts, follower parts, positioning plates, and driving parts.
It enables convenient installation and disassembly of the desulfurization tank body, reducing the workload of staff and improving the flexibility and reliability of installation.
Smart Images

Figure CN115628444B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of boiler technology, and in particular relates to a boiler gas desulfurization tank that is easy to install. Background Technology
[0002] A boiler is an energy conversion device. The energy input to a boiler includes the chemical energy of fuel and electrical energy. The boiler outputs steam, high-temperature water, or organic heat carriers with a certain amount of thermal energy.
[0003] Currently, it is widely used for heating water. The boiler can be fueled by coal gas. When processing boiler coal gas, a desulfurization tank is required to desulfurize it.
[0004] When desulfurization tanks are installed outdoors, they need to be secured. Existing securing devices are only conventional and simple, and cannot be easily and quickly fixed in a specified direction, height, and angle. In other words, they are not suitable for specific working scenarios, increasing the workload of staff.
[0005] Therefore, in view of the above situation, there is an urgent need to develop a boiler gas desulfurization tank that is easy to install in order to overcome the shortcomings in current practical applications. Summary of the Invention
[0006] The purpose of this invention is to provide a boiler gas desulfurization tank that is easy to install, in order to solve the problem that existing fixing devices cannot easily and quickly fix the desulfurization tank in a specified direction, height and angle.
[0007] This invention is implemented as follows: a boiler gas desulfurization tank that is easy to install includes a desulfurization tank body and a base. The base is located below the desulfurization tank body and a rotation adjustment mechanism is installed on the base. Two vertical support plates are installed on the rotation adjustment mechanism. The rotation adjustment mechanism is used to support the vertical support plates and control the two vertical support plates to rotate simultaneously in the circumferential direction. An tilt adjustment mechanism is installed opposite to each other on the two vertical support plates, and a fixing mechanism is provided at the end of the two tilt adjustment mechanisms that are close to each other. The tilt adjustment mechanism is used to support the fixing mechanism and control the tilt angle of the fixing mechanism. The fixing mechanism is used to clamp and fix the desulfurization tank body.
[0008] In a further technical solution, the fixing mechanism includes clamping plates and screw locking components. Two clamping plates are arranged opposite each other, and a screw locking component is provided on each side between the two clamping plates. The screw locking components are used to lock and fix the two clamping plates to the desulfurization tank body.
[0009] A further technical solution is provided, wherein the clamping plate has a C-shaped structure; the inner side of the clamping plate is provided with an elastic layer; both ends of the clamping plate are integrally formed with end plates; the screw locking component includes a swivel ring and a threaded rod, the swivel ring and the threaded rod are fixedly connected, the threaded rod passes through the end plates of the two clamping plates in sequence, and the threaded rod and the end plates are threadedly connected; when the threaded rod is rotated, the two end plates on the threaded rod move closer or further away simultaneously.
[0010] A further technical solution includes a follower, a positioning plate, and a telescopic positioning assembly. Followers are mounted opposite each other on the upper parts of the two vertical support plates. The followers and the vertical support plates are connected by damping rotation. The ends of the two followers that are close to each other are fixedly connected to the clamping plate. A positioning plate is also fixedly mounted on the end of one of the followers. The positioning plate has several positioning grooves distributed circumferentially. A telescopic positioning assembly is also mounted on the vertical support plate for connecting with the positioning grooves of the positioning plate and braking the positioning plate.
[0011] A further technical solution includes a telescopic positioning assembly comprising a second outer cylinder, a second inner rod, a pull ring, and a fixing block. The second outer cylinder is fixed to a vertical support plate, and the second inner rod is slidably mounted on the second outer cylinder. A first spring is also provided on the inner side of the second outer cylinder for elastic support of the second inner rod. A pull ring is installed and fixed at the end of the second inner rod away from the second outer cylinder, and a fixing block that can cooperate with the positioning groove is also provided on the side of the second inner rod near the positioning plate. When there is no external force, under the elastic force of the spring, the fixing block elastically abuts against the positioning groove of the positioning plate.
[0012] In a further technical solution, the follower includes a first outer cylinder, an elastic limiting member, and a first inner rod. The first outer cylinder is rotatably mounted on a vertical support plate. The first inner rod is slidably mounted on the first outer cylinder. The first inner rod has a prism structure. An elastic limiting member, which is a second spring, is also provided on the inner side of the first outer cylinder. One end of the elastic limiting member is fixedly connected to the inner end of the first outer cylinder, and the other end of the elastic limiting member is fixedly connected to the end of the first inner rod. The elastic limiting member is used to elastically support the first inner rod and restrict the first inner rod from detaching from the first outer cylinder.
[0013] A further technical solution is provided whereby the first outer cylinder penetrates the vertical support plate, and bearings for supporting the rotation of the first outer cylinder are provided on both sides of the vertical support plate. A damping cavity is formed on the inner side of the vertical support plate, and multiple porous damping plates are circumferentially distributed and fixed on the first outer cylinder within the damping cavity. A ball bearing capable of elastic expansion and contraction is installed on the end of the porous damping plate away from the first outer cylinder. Several protrusions are circumferentially distributed on the outer wall of the damping cavity. When the first outer cylinder rotates, the protrusions are used to dampen and limit the ball bearing. After the ball bearing retracts towards the porous damping plate, the next protrusion continues to dampen the ball bearing. The damping cavity is also filled with damping fluid, which provides damping force to the porous damping plate when it rotates.
[0014] A further technical solution includes a sliding block, a guide rod, and a driving component. Two arc-shaped grooves are formed opposite to each other on the base. A guide rod is fixedly installed in the arc-shaped grooves. A sliding block is slidably mounted on the guide rod. The side walls and bottom of the sliding block are also slidably connected to the groove. Two vertical support plates are correspondingly fixed on the two sliding blocks. The driving component is mounted on the base and is used to drive one of the sliding blocks to move along the groove and the guide rod.
[0015] A further technical solution includes a driving component comprising a first bevel gear, a second bevel gear, a support, a horizontal shaft, a rocker arm, a crank handle, gears, and a vertical shaft. A transmission groove is formed on the outer side of the slide block, and several teeth are provided within the transmission groove. A cavity is formed on the outer side of the slide groove within the base, and a vertical shaft is rotatably mounted within the cavity. A gear is fixedly mounted on the vertical shaft, and the gear and teeth mesh together. A first bevel gear is fixedly mounted on the top of the base at the end of the vertical shaft. A second bevel gear is meshed with one side of the first bevel gear. A horizontal shaft is fixedly mounted on the side of the second bevel gear away from the first bevel gear. A support is rotatably mounted on the horizontal shaft and fixed to the base. A rocker arm is fixedly mounted on the end of the horizontal shaft away from the second bevel gear, and a crank handle is rotatably mounted on the outer side of the end of the rocker arm away from the horizontal shaft.
[0016] A further technical solution involves a connecting rod fixedly installed across the two vertical support plates.
[0017] The present invention provides an easy-to-install boiler gas desulfurization tank. Through the rotation adjustment mechanism, tilt adjustment mechanism and fixing mechanism, together with the vertical support plate and base, the desulfurization tank body can be fixed in a specified direction (achieved by the rotation adjustment mechanism), height (achieved by the fixing mechanism clamping the desulfurization tank body at different positions), and angle (achieved by the tilt adjustment mechanism). This facilitates the specific installation and disassembly of the desulfurization tank body and reduces the workload of the staff. Attached Figure Description
[0018] Figure 1 A schematic diagram of a boiler gas desulfurization tank that is easy to install, provided in an embodiment of the present invention;
[0019] Figure 2 A cross-sectional view of the upper part of the vertical support plate in a boiler gas desulfurization tank that is easy to install, as provided in an embodiment of the present invention.
[0020] Figure 3 for Figure 2 A schematic diagram of the side cross-section structure;
[0021] Figure 4 for Figure 1 A magnified structural diagram of part A in the middle;
[0022] Figure 5 for Figure 1 A magnified structural diagram of part B in the middle section;
[0023] Figure 6 A top view of the boiler gas desulfurization tank for easy installation provided in an embodiment of the present invention;
[0024] Figure 7 for Figure 6 A partial sectional view of the central base;
[0025] Figure 8 for Figure 7 A magnified structural diagram of section C.
[0026] In the diagram: 1-Vertical support plate, 2-Follower component, 3-Clamping plate, 4-Desulfurization tank body, 5-Elastic layer, 6-Positioning plate, 7-Positioning groove, 8-Base, 9-Slide seat, 10-Guide rod, 11-Slide groove, 12-Rotating ring, 13-End plate, 14-Threaded rod, 15-Bearing, 16-First outer cylinder, 17-Elastic limiting component, 18-First inner rod, 19-Ball, 20-Protrusion, 21-Porous damping plate, 22-Damping fluid, 23-Damping cavity, 24-Telescopic positioning assembly, 25-Second outer cylinder, 26-Second inner rod, 27-Pull ring, 28-Fixing block, 29-First bevel gear, 30-Second bevel gear, 31-Support, 32-Horizontal shaft, 33-Rock arm, 34-Handle, 35-Transmission groove, 36-Gear, 37-Cavity, 38-Gear, 39-Vertical shaft. Detailed Implementation
[0027] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the invention.
[0028] The specific implementation of the present invention will be described in detail below with reference to specific embodiments.
[0029] like Figure 1 As shown, an easy-to-install boiler gas desulfurization tank is provided according to an embodiment of the present invention, including a desulfurization tank body 4. The specific structure of the desulfurization tank body 4 is not limited. The present invention mainly describes the installation structure of the desulfurization tank body 4, and also includes:
[0030] The base 8 is located below the desulfurization tank body 4. A rotation adjustment mechanism is installed on the base 8, and two vertical support plates 1 are installed on the rotation adjustment mechanism. The rotation adjustment mechanism is used to support the vertical support plates 1 and control the two vertical support plates 1 to rotate simultaneously in the circumferential direction. In application, the base 8 can be placed in a suitable position, and its installation and fixing method is not limited.
[0031] The tilt adjustment mechanism is installed opposite to each other on the two vertical support plates 1, and a fixing mechanism is provided at the end of the two tilt adjustment mechanisms that are close to each other; the tilt adjustment mechanism is used to support the fixing mechanism and control the tilt angle of the fixing mechanism; the fixing mechanism is used to clamp and fix the desulfurization tank body 4.
[0032] In this embodiment of the invention, by using a rotation adjustment mechanism, a tilt adjustment mechanism, and a fixing mechanism in conjunction with the vertical support plate 1 and the base 8 for proper installation, the desulfurization tank body 4 can be fixed in a specified direction (achieved by the rotation adjustment mechanism), height (achieved by the fixing mechanism clamping the desulfurization tank body 4 at different positions), and angle (achieved by the tilt adjustment mechanism). This facilitates the specific installation and disassembly of the desulfurization tank body 4 and reduces the workload of the staff.
[0033] like Figure 1 As shown in the preferred embodiment of the present invention, the fixing mechanism includes clamping plates 3 and screw locking members. Two clamping plates 3 are arranged opposite each other, and the clamping plates 3 are preferably C-shaped. A screw locking member is provided on each side between the two clamping plates 3. The screw locking members are used to lock and fix the two clamping plates 3 to the desulfurization tank body 4. In addition, the material of the clamping plates 3 is not limited, but it is preferred to have a certain degree of elasticity to improve its fixing effect on the desulfurization tank body 4.
[0034] Furthermore, the inner side of the clamping plate 3 is provided with an elastic layer 5. The elastic layer 5 is not limited. The elastic layer 5 can provide elastic support and protection for the desulfurization tank body 4, thereby improving the reliability of the fixation.
[0035] Furthermore, the clamping plate 3 has end plates 13 integrally formed at both ends. The screw locking component includes a swivel ring 12 and a threaded rod 14. The swivel ring 12 and the threaded rod 14 are fixedly connected. The threaded rod 14 passes through the end plates 13 of the two clamping plates 3 in sequence, and the threaded rod 14 and the end plates 13 are threadedly connected. When the threaded rod 14 is rotated, the two end plates 13 on the threaded rod 14 move closer or further away simultaneously. The two screw locking components clamp and fix the two clamping plates 3 on the desulfurization tank body 4, which is convenient for installation and operation and reliable in application.
[0036] In this embodiment of the invention, during installation, the desulfurization tank body 4 is placed in a suitable position between the two clamping plates 3, and then the threaded rod 14 is rotated by holding the rotating ring 12 to lock and fix the two clamping plates 3 onto the desulfurization tank body 4. Alternatively, a locking element can be provided to lock the threaded rod 14, thus preventing the threaded rod 14 from rotating on its own and improving reliability; the specific method is not limited. It is also preferable to provide length markings (not shown) on the desulfurization tank body 4 to facilitate indicating the fixed position between the clamping plates 3 and the desulfurization tank body 4.
[0037] like Figure 1-4 As shown in Figures 6 and 7, in a preferred embodiment of the present invention, the tilt adjustment mechanism includes a follower 2, a positioning disk 6, and a telescopic positioning assembly 24. The follower 2 is mounted opposite to the upper part of the two vertical support plates 1. The follower 2 and the vertical support plate 1 are connected by damping rotation. The ends of the two follower 2 that are close to each other are fixedly connected to the clamping plate 3. Specifically, it is preferred to be fixedly connected to the middle of the outer side of the clamping plate 3 to improve the support effect. The end of one of the follower 2 is also fixedly mounted with a positioning disk 6. The positioning disk 6 has several positioning grooves 7 distributed circumferentially. The vertical support plate 1 is also equipped with a telescopic positioning assembly 24 for connecting with the positioning grooves 7 of the positioning disk 6 and braking the positioning disk 6.
[0038] Furthermore, such as Figure 4 As shown, the telescopic positioning assembly 24 includes a second outer cylinder 25, a second inner rod 26, a pull ring 27, and a fixing block 28. The second outer cylinder 25 is fixed to the vertical support plate 1. The second inner rod 26 is slidably mounted on the second outer cylinder 25. A first spring (not shown) is also provided on the inner side of the second outer cylinder 25 for elastic support of the second inner rod 26. The pull ring 27 is installed and fixed at the end of the second inner rod 26 away from the second outer cylinder 25. A fixing block 28 that can cooperate with the positioning groove 7 is also provided on the side of the second inner rod 26 near the positioning plate 6. When there is no external force, under the elastic force of the spring, the fixing block 28 elastically abuts against the positioning groove 7 of the positioning plate 6. In addition, in order to improve the stability after the fixing block 28 and the positioning groove 7 are connected, the cross-section of the positioning groove 7 is preferably an isosceles trapezoid shape, and the fixing block 28 can be set accordingly. This makes the abutment connection between the fixing block 28 and the positioning groove 7 more reliable and avoids shaking. The specific shape is not limited.
[0039] Furthermore, such as Figure 2As shown, the follower 2 includes a first outer cylinder 16, an elastic limiting member 17, and a first inner rod 18. The first outer cylinder 16 is rotatably mounted on the vertical support plate 1. The first inner rod 18 is slidably provided on the first outer cylinder 16. The first inner rod 18 is preferably a prism structure, but in practical applications, it can be any structure other than a cylinder, meaning that the first inner rod 18 cannot rotate relative to the first outer cylinder 16. The inner side of the first outer cylinder 16 is also provided with an elastic limiting member 17, which is preferably a second spring. One end of the elastic limiting member 17 is fixedly connected to the inner end of the first outer cylinder 16, and the other end of the elastic limiting member 17 is fixedly connected to the end of the first inner rod 18. The elastic limiting member 17 is used to elastically support the first inner rod 18 and restrict the first inner rod 18 from detaching from the first outer cylinder 16, thereby improving reliability. Through the arrangement of the follower 2, it can adapt to the deformation and positional changes of the clamping plate 3 when fixing the desulfurization tank body 4, thereby improving the fixing effect of the desulfurization tank body 4. In addition, the elastic limiting member 17 can keep the desulfurization tank body 4 horizontally stable and centered, which is more reliable.
[0040] Furthermore, such as Figure 2 and 3 As shown, the damped rotational connection between the follower 2 and the vertical support plate 1 can be specifically as follows: the first outer cylinder 16 is installed through the vertical support plate 1, and bearings 15 for rotating support of the first outer cylinder 16 are provided on both sides of the vertical support plate 1. The sealing connection structure is not limited and can be arranged flexibly in practice. A damping cavity 23 is opened on the inner side of the vertical support plate 1. Multiple porous damping plates 21 are circumferentially distributed and fixed in the damping cavity 23 on the first outer cylinder 16. A ball bearing 19 capable of elastic extension and retraction is installed at the end of the porous damping plate 21 away from the first outer cylinder 16. The specific installation structure of the ball bearing 19 can adopt conventional technology. Several protrusions 20 are circumferentially distributed on the outer wall of the damping cavity 23, such as... Figure 3 As shown, the cross-section of the protrusion 20 is preferably semi-circular. When the first outer cylinder 16 rotates, the protrusion 20 is used to dampen and limit the movement of the ball 19. After the ball 19 retracts into the porous damping plate 21, the next protrusion 20 continues to dampen the ball 19. This allows the first outer cylinder 16 to rotate while preventing it from rotating too quickly. The damping cavity 23 is also filled with damping fluid 22. The damping fluid 22 is not limited and can be any conventional damping fluid, such as glycerin, as long as it provides a damping effect. That is, when the porous damping plate 21 rotates, the damping fluid 22 can provide damping force to the porous damping plate 21, so that the first outer cylinder 16 rotates stably.
[0041] In this embodiment of the invention, when it is necessary to adjust the tilt angle of the clamping plate 3, simply pull the pull ring 27 to separate the fixing block 28 from the positioning groove 7, and then the clamping plate 3 can be rotated. Through the arrangement of the damping structure inside the vertical support plate 1, the ball bearing 19 and the protrusion 20 cooperate to provide continuous damping force, and the porous damping plate 21 and the damping liquid 22 cooperate to further improve the stability of damping through liquid damping, thereby ensuring that the first outer cylinder 16 can only rotate stably, ensuring the reliability of the tilt angle adjustment of the desulfurization tank body 4. After the adjustment is completed, release the pull ring 27 and elastically press the fixing block 28 back into the positioning groove 7. In addition, it is preferable to set a level (not shown) on the clamping plate 3 to facilitate the indication of the levelness of the clamping plate 3.
[0042] like Figure 1 , 5 As shown in Figure 8, in a preferred embodiment of the present invention, the rotation adjustment mechanism includes a slide block 9, a guide rod 10, and a driving component. Two arc-shaped grooves are formed opposite to each other on the base 8. A guide rod 10 is installed and fixed in the arc-shaped grooves. The slide block 9 is slidably mounted on the guide rod 10. The two side walls and the bottom of the slide block 9 are also slidably connected to the slide groove 11. Two vertical support plates 1 are correspondingly installed and fixed on the two slide blocks 9, and the two vertical support plates 1 are preferably arranged in parallel. The driving component is installed on the base 8, and the driving component is used to drive one of the slide blocks 9 to move along the slide groove 11 and the guide rod 10.
[0043] Furthermore, the driving component includes a first bevel gear 29, a second bevel gear 30, a support 31, a horizontal shaft 32, a rocker arm 33, a crank handle 34, a gear 38, and a vertical shaft 39. A transmission groove 35 is formed on the outer side of the slide block 9, and a plurality of teeth 36 are provided within the transmission groove 35. A cavity 37 is formed on the outer side of the slide groove 11 within the base 8. A vertical shaft 39 is rotatably mounted within the cavity 37, and a gear 38 is fixedly mounted on the vertical shaft 39. The gear 38 and the teeth 36 mesh with each other. The top of the base 8... A first bevel gear 29 is fixedly installed at the end of the vertical shaft 39. A second bevel gear 30 is meshed with one side of the first bevel gear 29. A horizontal shaft 32 is fixedly installed on the side of the second bevel gear 30 away from the first bevel gear 29. A support 31 is rotatably installed on the horizontal shaft 32 and fixed to the base 8. The support 31 can rotatably support the horizontal shaft 32. A rocker arm 33 is fixedly installed at the end of the horizontal shaft 32 away from the second bevel gear 30. A crank handle 34 is rotatably installed on the outer side of the end of the rocker arm 33 away from the horizontal shaft 32.
[0044] In this embodiment of the invention, the horizontal axis 32 can be rotated by operating the crank handle 34, which in turn drives the first bevel gear 29 to rotate via the second bevel gear 30. This causes the gear 38 to drive the teeth 36 for transmission, enabling the slide 9 to move along the guide rod 10 and the slide groove 11. Since the two vertical support plates 1 are connected as a whole by the tilt adjustment mechanism and the fixing mechanism, even if one vertical support plate 1 and slide 9 are rotated, the other vertical support plate 1 and slide 9 will also rotate accordingly. To improve the reliability of the rotation, a connecting rod can also be fixedly installed across the two vertical support plates 1, such as... Figure 1 As shown, this improves the reliability of the transmission. Additionally, a locking knob (not shown) can be provided on the slide 9, so that after adjustment, the slide 9 can be fixed to the guide rod 10 via the locking knob, achieving reliable locking after adjustment. It is also preferable to provide an angle scale (not shown) on the base 8 to easily indicate the rotation angle of the slide 9.
[0045] The above embodiments of the present invention provide a boiler gas desulfurization tank that is easy to install. The desulfurization tank body 4 can be fixed in a specified direction by a rotation adjustment mechanism, the desulfurization tank body 4 can be clamped at different height positions by a fixing mechanism, and the desulfurization tank body 4 can be fixed at different tilt angles by a tilt adjustment mechanism, thereby facilitating the specific installation and disassembly of the desulfurization tank body 4 and reducing the workload of the staff.
[0046] Furthermore, there are no specific limitations on the control, model, and circuit connection of each component, which can be flexibly configured in practical applications.
[0047] The circuits, electronic components, and modules involved are all existing technologies, which can be fully implemented by those skilled in the art, and need not be elaborated upon. The content protected by this invention does not involve any improvement to the software and methods.
[0048] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0049] The embodiments described above are merely illustrative of several implementations of the present invention, and while the descriptions are specific and detailed, they should not be construed as limiting the scope of the present invention. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of the present invention, and these modifications and improvements all fall within the scope of protection of the present invention. Therefore, the scope of protection of this patent should be determined by the appended claims.
Claims
1. A boiler gas desulfurization tank which is easy to install, comprising a desulfurization tank body, characterized in that, Also includes: The base is located below the desulfurization tank body. A rotation adjustment mechanism is installed on the base, and two vertical support plates are installed on the rotation adjustment mechanism. The rotation adjustment mechanism is used to support the vertical support plates and control the two vertical support plates to rotate simultaneously in the circumferential direction. A tilt adjustment mechanism is provided, with tilt adjustment mechanisms mounted opposite each other on the two vertical support plates, and a fixing mechanism provided at the end of the two tilt adjustment mechanisms that are close to each other; the tilt adjustment mechanism is used to support the fixing mechanism and control the tilt angle of the fixing mechanism; the fixing mechanism is used to clamp and fix the desulfurization tank body. The fixing mechanism includes a clamping plate and a screw locking component; Two clamping plates are provided opposite to each other, and a screw locking member is provided on each side between the two clamping plates. The screw locking member is used to lock and fix the two clamping plates to the desulfurization tank body. The tilt adjustment mechanism includes a follower, a positioning plate, and a telescopic positioning assembly; Followers are mounted opposite each other on the upper part of the two vertical support plates. The followers are connected to the vertical support plates in a damped rotatable manner. The two close ends of the followers are fixedly connected to the clamping plate. One of the follower components is also fixedly mounted with a positioning disk at its end, and the positioning disk has several positioning grooves distributed circumferentially. The vertical support plate is also equipped with a telescopic positioning component for connecting to the positioning slot of the positioning disk and braking the positioning disk. The follower includes a first outer cylinder, an elastic limiting member, and a first inner rod; The first outer cylinder is rotatably mounted on the vertical support plate, and a first inner rod is slidably provided on the first outer cylinder. The first inner rod is a prism structure. The inner side of the first outer cylinder is also provided with an elastic limiting member, which is a second spring. One end of the elastic limiting member is fixedly connected to the inner end of the first outer cylinder, and the other end of the elastic limiting member is fixedly connected to the end of the first inner rod. The elastic limiting member is used to elastically support the first inner rod and restrict the first inner rod from coming off the first outer cylinder. The first outer cylinder is installed through the vertical support plate, and bearings for supporting the rotation of the first outer cylinder are provided on both sides of the vertical support plate. The inner side of the vertical support plate is provided with a damping cavity. Multiple porous damping plates are circumferentially distributed and fixed in the first outer cylinder inside the damping cavity. A ball bearing capable of elastic expansion and contraction is installed at the end of the porous damping plate away from the first outer cylinder. Several protrusions are circumferentially distributed on the outer wall of the damping cavity. When the first outer cylinder rotates, the protrusions are used to dampen and limit the ball bearing. After the ball bearing retracts into the porous damping plate, the next protrusion continues to dampen the ball bearing. The damping cavity is also filled with damping fluid; when the porous damping plate rotates, the damping fluid can provide damping force to the porous damping plate. The rotary adjustment mechanism includes a slide, a guide rod, and a driving component; The base has two arc-shaped grooves facing each other. A guide rod is fixedly installed in the arc-shaped grooves. A slide block is slidably mounted on the guide rod. The two side walls and bottom of the slide block are also slidably connected to the slide groove. The two vertical support plates are respectively installed and fixed on the two slide blocks; The drive unit is mounted on the base and is used to drive one of the slide blocks to move along the slide groove and the guide rod.
2. The boiler flue gas desulphurization tank convenient to install as claimed in claim 1 wherein, The clamping plate has a C-shaped structure; The inner side of the clamping plate is provided with an elastic layer; The clamping plate has end plates integrally formed at both ends; The screw locking component includes a swivel and a threaded rod, which are fixedly connected. The threaded rod passes through the end plates of the two clamping plates in sequence, and the threaded rod and the end plates are threadedly connected. When the threaded rod is rotated, the two end plates on the threaded rod move closer or further away simultaneously.
3. The boiler gas desulfurization tank for easy installation according to claim 1, characterized in that, The telescopic positioning assembly includes a second outer cylinder, a second inner rod, a pull ring, and a fixing block; The second outer cylinder is fixed to the vertical support plate, and a second inner rod is slidably provided on the second outer cylinder. A first spring for elastically supporting the second inner rod is also provided on the inner side of the second outer cylinder. A pull ring is fixedly installed at the end of the second inner rod away from the second outer cylinder, and a fixing block that can be connected to the positioning groove is also provided on the side of the second inner rod near the positioning plate; When there is no external force, the fixed block elastically abuts against the positioning groove of the positioning plate under the elastic force of the spring.
4. The boiler gas desulfurization tank for easy installation according to claim 1, characterized in that, The driving component includes a first bevel gear, a second bevel gear, a support, a horizontal shaft, a rocker arm, a crank handle, a gear, and a vertical shaft. The outer side of the slide block is provided with a transmission groove, and the transmission groove is provided with several teeth. The outer side of the slide groove has a cavity inside the base. A vertical shaft is rotatably installed inside the cavity, and a gear is fixed on the vertical shaft. The gear and the teeth mesh together. A first bevel gear is fixedly installed on the top of the base at the end of the vertical shaft. A second bevel gear is meshed with one side of the first bevel gear. A horizontal shaft is fixedly installed on the side of the second bevel gear away from the first bevel gear. A support is rotatably installed on the horizontal shaft and fixed to the base. A rocker arm is fixedly mounted on the end of the horizontal shaft away from the second bevel gear, and a handle is rotatably mounted on the outer side of the end of the rocker arm away from the horizontal shaft.
5. The boiler gas desulfurization tank for easy installation according to claim 4, characterized in that, A connecting rod is fixedly installed across the two vertical support plates.