Industrial high-temperature and high-pressure steam cleaning equipment

By introducing indexing components and winding structures into high-temperature and high-pressure steam cleaning equipment, the problem of difficulty in cleaning the blind corners in industrial pipelines is solved, and efficient and flexible cleaning results are achieved, which are suitable for a variety of industrial scenarios.

CN120362177AInactive Publication Date: 2025-07-25宁波荣宜达电器有限公司
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Patent Information

Application Number
CN202510783004.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-12
Publication Date
2025-07-25
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

When cleaning industrial pipelines, existing high-temperature and high-pressure steam cleaning equipment is difficult to effectively deal with the internal traps in the pipeline. Cleaning personnel need to constantly change positions, which wastes manpower and is inefficient.

Method used

An industrial high-temperature and high-pressure steam cleaning equipment is designed. By setting an indexing assembly and a handheld rod in the cleaning device, the automatic rotation adjustment of the shower head is realized. Combined with the winding assembly and limiting structure, the position of the shower head is flexibly adjusted to meet the cleaning needs of different pipelines and equipment.

Benefits of technology

It realizes efficient cleaning of industrial pipelines and equipment, saves manpower, reduces position change time, improves cleaning flexibility and efficiency, and is suitable for a variety of cleaning scenarios.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the technical field of industrial cleaning, and particularly relates to industrial high-temperature and high-pressure steam cleaning equipment which comprises a cleaning device and a handheld rod, a flow pipe is fixedly installed on the outer wall of the cleaning device, a position adjusting box is fixedly installed at one end of the handheld rod, a spraying head is arranged on one side of the position adjusting box, and a transposition assembly is arranged in the position adjusting box. The transposition assembly is used for driving the spraying head to rotate and adjust; a push plate is pushed to slide on a handheld rod, the push plate can extrude a pressure-bearing spring through a push frame to push a rectangular rod to move, accordingly, the rectangular rod pushes two racks to slide in a position adjusting box, the racks can drive gears to rotate through tooth meshing, and accordingly a shaft rod drives a position rotating block to rotate in the position adjusting box; when the shaft rod rotates, the shaft rod drives the transposition block to rotate, the transposition block can drive the spraying head to rotate with the shaft rod as a fixed point through the cavity pipe, the spraying head can rotate on one side in the position adjusting box, and therefore correction operation of the spraying head and the cleaning position is achieved.
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Description

Technical Field

[0001] The present invention belongs to the technical field of industrial cleaning, and specifically relates to an industrial high-temperature and high-pressure steam cleaning device. Background Art

[0002] An industrial high-temperature and high-pressure steam cleaning device is a device that uses high-temperature steam and high-pressure water flow to clean objects, and is a professional device that can achieve efficient cleaning, disinfection, and removal of stubborn stains. Its core advantage lies in the combination of high-temperature thermal degradation and high-pressure impact force to quickly remove oil stains, carbon deposits, water scale, rust, etc. that are difficult to handle by traditional methods, and is widely used in fields such as chemical industry, electric power, food, shipbuilding, and municipal administration.

[0003] Industrial high-temperature and high-pressure steam cleaning devices are gradually becoming the core equipment for modern industrial cleaning. Especially in high-demand and high-difficulty cleaning scenarios, their advantages in terms of high efficiency, environmental protection, and safety are significant, and they will replace traditional cleaning methods in more fields in the future.

[0004] Currently, in the prior art, when using a high-temperature and high-pressure steam cleaning device to clean a pipeline, the cleaning position is usually spray-washed by a spray head corresponding to the cleaning position. Since there are certain internal buckle dead corners on the inner wall of the industrial pipeline, when cleaning it, the cleaning personnel need to constantly change positions to make the spray head correspond to the cleaning position. This method is rather troublesome during cleaning and also wastes a certain amount of manpower.

[0005] Therefore, the present invention provides an industrial high-temperature and high-pressure steam cleaning device. Summary of the Invention

[0006] In order to make up for the deficiencies of the prior art and solve at least one of the technical problems proposed in the background art.

[0007] The technical solution adopted by the present invention to solve its technical problems is as follows: An industrial high-temperature and high-pressure steam cleaning device of the present invention includes a cleaning device and a hand-held rod. A flow pipe is fixedly installed on the outer wall of the cleaning device. One end of the hand-held rod is fixedly installed with an adjustment box. A spray head is arranged on one side of the adjustment box. A rotation component is arranged inside the adjustment box, and the rotation component is used to drive the spray head to rotate and adjust. One end of the flow pipe is placed inside the spray head; By arranging a device capable of generating high-temperature and high-pressure steam inside the cleaning device, when it is necessary to clean an industrial pipeline, the device is pushed to move, and the device is moved to the pipe orifice position. The spray head at one end of the hand-held rod is aligned with the pipeline cleaning position by manually holding the hand-held rod. Subsequently, the cleaning device is driven to perform high-temperature and high-pressure steam operation, and the steam will spray out from the spray head along the flow pipe to the position of the pipeline that needs to be cleaned, thereby realizing the jet cleaning operation of the pipeline. When encountering dead corners inside the pipeline, the spray head is driven to rotate by pushing the rotation component. The spray head will rotate at one end of the hand-held rod, so that the outlet end of the spray head corresponds to the dead corner position, which can avoid the cleaning personnel constantly changing positions to make the spray head correspond to the cleaning position, saving a certain amount of manpower and time, and thus realizing the cleaning operation of various positions of the industrial pipeline or industrial device. Through the hand-held setting of the hand-held rod, the device can be more flexible when cleaning the position, and is also suitable for cleaning different pipelines and equipment.

[0008] Preferably, a wire winding box is fixedly installed on the outer wall of the wire winding box. A wire winding component is arranged inside the wire winding box. The wire winding component is used to drive the flow pipe to wind and unwind in the wire winding box. A storage plate is fixedly installed on one outer wall of the wire winding box. The storage plate is used to place the hand-held rod. When the cleaning position is relatively deep, by pulling the hand-held rod to move, the wire winding component will drive the flow pipe to unwind in the wire winding box, thereby providing a distance for the movement of the hand-held rod. When the cleaning is completed, the wire winding component drives the flow pipe to wind and unwind in the wire winding box, so as to wind the flow pipe in the wire winding box for collection, preventing the flow pipe from being too long and affecting the movement of the device. Subsequently, the hand-held rod can be placed in the storage plate for placement, playing a role in winding the flow pipe.

[0009] Preferably, the rotation component includes a rotation block. A cavity pipe is fixedly installed on the inner wall of the spray head. The top of the rotation block is fixedly connected to the outer wall of the cavity pipe. The outer wall of the cavity pipe is slidably connected to the outer wall of the adjustment box. A shaft rod is fixedly installed on the outer wall of the rotation block. Both ends of the shaft rod are rotatably connected to the inner wall of the adjustment box. One end of the flow pipe is fixedly connected to the inner wall of the cavity pipe, and the outer wall of the flow pipe can be slidably connected to the inner wall of the adjustment box. The outer wall of the flow pipe can be slidably connected to the inner wall of the hand-held rod. When it is necessary to adjust the position of the spray head to align with the dead corner cleaning position, by pushing the shaft rod to rotate. When the shaft rod rotates, the shaft rod will drive the rotation block to rotate through rotation. The rotation block will drive the cavity pipe to rotate around the shaft rod as a fixed point in the adjustment box, so that the outer wall of the cavity pipe rotates along the rotation direction of the shaft rod in the disc at one end of the adjustment box. The cavity pipe will drive the spray head to rotate together in the disc at one end of the adjustment box. By continuously pushing the shaft rod to rotate, the spray head can be driven to continuously rotate and adjust, so that the spray head is aligned with the cleaning position, playing a role in adjusting the position of the spray head.

[0010] Preferably, gears are fixedly installed at both ends of the shaft rod. Rack bars are symmetrically and slidably connected to the inner wall of the adjustment box. One end of each of the two rack bars is fixedly installed with a rectangular rod, and the outer walls of the two rectangular rods are slidably connected to the inner wall of the adjustment box. The teeth on the two rack bars are respectively meshed with the teeth on the two shaft rods. When it is necessary to drive the spray head to rotate, the two rack bars are pushed to move. When the rack bars move, due to the meshing of the teeth, the rack bars will drive the gears to rotate, so that the shaft rod drives the rotation block to rotate in the adjustment box, playing a role in providing power transmission for the rotation of the spray head.

[0011] Preferably, a ring box is fixedly installed on the outer wall of the adjustment box. A push plate is slidably connected to the outer wall of the hand-held rod. A push frame is fixedly installed on one side of the push plate, and the outer wall of the push frame is slidably connected to the inner wall of the ring box. One side of each of the two rectangular rods is fixedly connected to the outer wall of the push frame. A plurality of pressure-bearing springs are arranged between one side of the push frame and the outer wall of the adjustment box. When it is necessary to drive the spray head to rotate, the push plate is pushed to slide on the hand-held rod by hand. When the push plate moves, the push plate will push the rectangular rod to move by squeezing the pressure-bearing springs through the push frame, so that the rectangular rod pushes the two rack bars to slide in the adjustment box, providing a thrust for the rotation of the shaft rod in the adjustment box and playing a role in driving the shaft rod to rotate in the adjustment box. The setting of the pressure-bearing springs enables the device to move and reset the push plate on the hand-held rod through the elastic thrust of the pressure-bearing springs when the cleaning operation of the cleaning position is completed, making preparations for the next position adjustment of the spray head.

[0012] Preferably, a limiting shaft is fixedly installed on the inner wall of the adjustment box, and the outer wall of the flow pipe can be slidably connected to the outer wall of the limiting shaft. When the spray head rotates in the adjustment box, the position of the flow pipe is limited by the limiting shaft, which can prevent the flow pipe from being driven by the spray head to rotate in the adjustment box and causing extrusion between the flow pipe and the inner wall of the adjustment box, avoiding wear of the flow pipe due to extrusion and resulting in leakage of the steam in the flow pipe, affecting the normal cleaning operation, and playing a role in limiting the moving path of the flow pipe.

[0013] Preferably, a poly-shower component is arranged inside the shower head. The poly-shower component is used to drive the polymer block to centrally shower the gas and liquid flowing out of the convection tube. The poly-shower component includes a polymer block and a ring shaft. The number of polymer blocks is multiple. One end of the cavity tube is fixedly connected to the inner wall of the shower head. The outer wall of the top of the ring shaft is fixedly connected to the bottom end of the cavity tube. The tops of the multiple polymer blocks are hinged to the outer wall of the ring shaft. The outer walls of the multiple polymer blocks can be slidably connected to each other. A ring plate is fixedly installed on the inner wall of the shower head. The multiple polymer blocks are all placed inside the ring plate. Connecting blocks are fixedly installed on the outer walls of the multiple polymer blocks. Pull rods are fixedly installed on one side of the multiple connecting blocks. The outer walls of the multiple pull rods are respectively slidably connected to the inner walls of the shower head and the ring plate. When cleaning the stains at the cleaning position, by pushing the multiple pull rods to move, when the pull rods move, the pull rods pull the multiple polymer blocks to rotate hingedly at the bottom of the ring shaft through the connecting blocks. The aperture between the multiple polymer blocks will change, so that the multiple polymer blocks limit the steam ejected from the cavity tube and change the position of its ejection path, thereby changing the intensity of the steam when it is ejected. When the stains are relatively firm, push the multiple polymer blocks to rotate inward, the aperture between the multiple polymer blocks will relatively shrink, and the intensity of the ejected steam will also be relatively strong, which can better spray and clean the stains. When the stain intensity is low, push the multiple return springs to rotate outward, the aperture between the multiple polymer blocks will relatively increase, the ejected steam flow will be relatively divergent, and the area to be cleaned will be relatively large, which can more efficiently clean the stains and play a role in adjusting the intensity of the steam ejection.

[0014] Preferably, a telescopic rod is fixedly installed on the inner wall of the shower head. The output end of the telescopic rod is fixedly installed with a pressing block. The inner wall of the pressing block is slidably connected to the outer wall of the cavity tube. One end of each of the multiple pull rods is formed as an inclined surface. The outer wall of the pressing block can be slidably connected to the outer walls of the multiple pull rods. A control button is fixedly installed on the outer wall of the hand-held rod. When it is necessary to adjust the position of the polymer block, the telescopic rod is controlled to operate by pressing the control button. The telescopic rod will drive the pressing block to slide down. The outer wall of the pressing block will push the multiple pull rods to move, so that the pull rods drive the multiple polymer blocks to change their positions, providing power for the position change of the multiple polymer blocks and playing a role in pushing the pull rods to move.

[0015] Preferably, a plurality of anti-slip rods are symmetrically and fixedly installed on the inner wall of the spray head. The inner walls of the plurality of aggregation blocks are respectively slidably connected to the outer walls of the plurality of anti-slip rods. A plurality of return springs are symmetrically arranged between the inner walls of the plurality of aggregation blocks and the inner wall of the spray head. The plurality of return springs are respectively disposed outside the plurality of anti-slip rods. A plurality of holes are formed in the inner wall of the ring plate, and the plurality of return springs are respectively disposed inside the plurality of holes. When the pull rod is pushed and moved by the pressing block, the pull rod will pull the aggregation block to move through the connecting block. The outer wall of the aggregation block will squeeze the return spring and rotate hingedly on the ring shaft, so as to adjust the aperture between the plurality of aggregation blocks. When it is necessary to enlarge the range of steam spraying, the telescopic rod is controlled to drive the pressing block to move downward to squeeze and push the pull rod. The plurality of pull rods will pull the aggregation blocks to be hingedly opened, and the aperture between the plurality of return springs will become larger. When it is necessary to increase the spraying intensity of the steam, on the contrary, the telescopic rod drives the pressing block to move upward and reset. The pull rod will lose the extrusion thrust, and the return spring will push the aggregation block to be hingedly reset on the ring shaft through the elastic thrust, and the aperture between the plurality of aggregation blocks will become relatively smaller, playing a role in resetting and pushing the aggregation block to rotate hingedly on the ring shaft.

[0016] Preferably, a plurality of clamping plates are fixedly installed on the inner wall of the spray head. A plurality of blocking blocks are slidably connected to the inner walls of the plurality of clamping plates. A plurality of return block springs are arranged between one side of the plurality of blocking blocks and the inner walls of the plurality of clamping plates. The outer walls of the plurality of blocking blocks can be respectively slidably connected to the outer walls of the plurality of aggregation blocks. When the aggregation block rotates on the ring shaft, the outer wall of the bottom end of the ring shaft will push the blocking block to move. The blocking block will squeeze the return block spring and slide in the clamping plate. The blocking block will block between the aggregation block and the ring plate, preventing part of the steam from entering the ring plate when the steam is sprayed, affecting the structure inside the spray head, and playing a role in blocking the steam from entering.

[0017] The beneficial effects of the present invention are as follows: 1. For an industrial high-temperature and high-pressure steam cleaning device described in the present invention, by pushing the push plate to slide on the hand-held rod, the push plate will squeeze the pressure-bearing spring through the push frame to push the torque rod to move, so that the torque rod will push the two racks to slide in the position-adjusting box. Through the meshing of the teeth, the rack will drive the gear to rotate, so that the shaft rod will drive the rotating block to rotate in the position-adjusting box. When the shaft rod rotates, the shaft rod drives the rotating block to rotate. The rotating block will drive the spray head to rotate around the shaft rod through the cavity tube, and the spray head will rotate on one side inside the position-adjusting box, so as to realize the alignment operation between the spray head and the cleaning position.

[0018] 2. An industrial high-temperature and high-pressure steam cleaning device according to the present invention moves by pushing a plurality of pull rods. The pull rods pull a plurality of polymerization blocks through connecting blocks to articulate and rotate at the bottom of the ring shaft. The apertures between the plurality of polymerization blocks will change, so that the plurality of polymerization blocks limit the steam ejected from the cavity tube and change the position of its ejection path, thereby changing the intensity of the steam during ejection, playing a role in adjusting the intensity of steam ejection.

[0019] 3. An industrial high-temperature and high-pressure steam cleaning device according to the present invention, when the spray head rotates in the adjustment box, limits the position of the flow tube through the limit shaft, which can prevent the flow tube from being driven by the spray head to rotate in the adjustment box and cause extrusion between the flow tube and the inner wall of the adjustment box, avoiding wear of the flow tube due to extrusion, resulting in leakage of steam in the flow tube and affecting normal cleaning operations, playing a role in limiting the movement path of the flow tube.

[0020] 4. An industrial high-temperature and high-pressure steam cleaning device according to the present invention, when it is necessary to increase the range of steam ejection, the control telescopic rod drives the pressure block to move down to squeeze and push the pull rod. A plurality of pull rods will pull the polymerization blocks to articulate and open, and the apertures between the plurality of return springs will become larger. When it is necessary to increase the ejection intensity of the steam, the telescopic rod drives the pressure block to move up and reset. The pull rod will lose the extrusion thrust, and the return spring will push the polymerization block to articulate and reset on the ring shaft through elastic thrust, and the apertures between the plurality of polymerization blocks will become relatively smaller, playing a role in resetting and pushing the polymerization block to articulate and rotate on the ring shaft.

[0021] 5. An industrial high-temperature and high-pressure steam cleaning device according to the present invention, when the polymerization block rotates on the ring shaft, the outer wall at the bottom end of the ring shaft will push the stop block to move. The stop block will squeeze the return block spring to slide in the clamping plate, and the stop block will block between the polymerization block and the ring plate, preventing part of the steam from entering the ring plate when the steam is ejected and affecting the structure inside the spray head, playing a role in blocking the entry of steam. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] The present invention will be further described below with reference to the accompanying drawings.

[0023] Figure 1 is the overall view of the present invention; Figure 2 is the main body view of the present invention; Figure 3 is the structural schematic diagram of the push frame in the present invention; Figure 4 is the structural schematic diagram of the rack in the present invention; Figure 5 is the structural schematic diagram of the limit shaft in the present invention; Figure 6It is a schematic structural diagram of the indexing block in the present invention; Figure 7 It is a schematic structural diagram of the pressing block in the present invention; Figure 8 It is a schematic structural diagram of the pull rod in the present invention; Figure 9 It is a schematic structural diagram of the ring shaft in the present invention; Figure 10 It is a schematic structural diagram of the stop block in the present invention.

[0024] In the figure: 1. Cleaning device; 101. Object storage plate; 2. Wire winding box; 201. Flow pipe; 3. Handheld rod; 301. Control button; 4. Position adjustment box; 401. Gear; 402. Rack; 403. Shaft rod; 404. Limit shaft; 5. Push plate; 501. Push frame; 502. Bearing spring; 503. Ring box; 504. Rectangular rod; 6. Spray head; 601. Indexing block; 602. Pressing block; 603. Ring plate; 604. Telescopic rod; 605. Chamber pipe; 7. Pull rod; 701. Connecting block; 8. Return spring; 9. Aggregation block; 901. Ring shaft; 10. Stop block; 11. Clamping plate; 12. Return block spring. Detailed implementation manners

[0025] In order to make the technical means, creative features, achieved purposes and functions of the present invention easy to understand, the present invention will be further described below in conjunction with specific implementation manners.

[0026] As Figures 1 to 10 shown, an industrial high-temperature and high-pressure steam cleaning device described in an embodiment of the present invention includes a cleaning device 1 and a handheld rod 3. A flow pipe 201 is fixedly installed on the outer wall of the cleaning device 1. One end of the handheld rod 3 is fixedly installed with a position adjustment box 4. A spray head 6 is arranged on one side of the position adjustment box 4. A rotation assembly is arranged inside the position adjustment box 4. The rotation assembly is used to drive the spray head 6 to rotate and adjust. One end of the flow pipe 201 is placed inside the spray head 6; Since there are certain internal buckling dead corners on the inner wall of the industrial pipeline, when cleaning it, it is necessary for the cleaning personnel to constantly change positions so that the spray head 6 corresponds to the cleaning position, which is troublesome during cleaning and also wastes a certain amount of manpower; By arranging a device capable of generating high-temperature and high-pressure steam inside the cleaning device 1, when it is necessary to clean an industrial pipeline, the device is pushed to move, and the device is moved to the pipe orifice position. The spray head 6 at one end of the hand-held rod 3 is aligned with the pipeline cleaning position by manually holding the hand-held rod 3. Subsequently, the high-temperature and high-pressure steam device inside the cleaning device 1 is driven to perform high-temperature and high-pressure steam operation. The steam will then spray out from the spray head 6 along the flow pipe 201 to the position where the pipeline needs to be cleaned, thereby realizing the jet cleaning operation of the pipeline. When encountering dead corners inside the pipeline socket, the spray head 6 is driven to rotate by pushing the indexing assembly. The spray head 6 will then rotate at one end of the hand-held rod 3, so that the outlet end of the spray head 6 corresponds to the dead corner position, which can prevent the cleaning personnel from constantly changing positions to make the spray head 6 correspond to the cleaning position, saving a certain amount of manpower and time, and thus realizing the cleaning operation of various positions of the industrial pipeline or industrial device. Through the hand-held setting of the hand-held rod 3, the device can be more flexible when cleaning the position, and is also suitable for cleaning different pipelines and devices.

[0027] As Figures 1 to 2 shown, a winding box 2 is fixedly installed on the outer wall of the winding box 2. A winding assembly is arranged inside the winding box 2. The winding assembly is used to drive the flow pipe 201 to wind and reel inside the winding box 2. A storage plate 101 is fixedly installed on one side outer wall of the winding box 2. The storage plate 101 is used to place the hand-held rod 3. When the cleaning position is relatively deep, by pulling the hand-held rod 3 to move, the winding assembly will drive the flow pipe 201 to unwind inside the winding box 2, thereby providing a distance for the movement of the hand-held rod 3. When the cleaning is completed, the winding assembly drives the flow pipe 201 to wind and reel inside the winding box 2, so as to wind the flow pipe 201 into the winding box 2 for collection, preventing the flow pipe 201 from being too long and affecting the movement of the device. Subsequently, the hand-held rod 3 can be placed into the storage plate 101 for placement, playing the role of winding the flow pipe 201. It should be noted here that the flow pipe 201 is a heat-insulating pipe and has a certain plasticity. When the winding assembly operates, the motor drives the winding disc to rotate, thereby realizing the winding and unwinding of the flow pipe 201. This is prior art, so it is only described in this solution and not elaborated.

[0028] As Figures 4 to 6As shown in the figure, the indexing component includes an indexing block 601. A cavity tube 605 is fixedly installed on the inner wall of the spray head 6. The top of the indexing block 601 is fixedly connected to the outer wall of the cavity tube 605. The outer wall of the cavity tube 605 is slidably connected to the outer wall of the position adjustment box 4. A shaft rod 403 is fixedly installed on the outer wall of the indexing block 601. Both ends of the shaft rod 403 are rotatably connected to the inner wall of the position adjustment box 4. One end of the flow tube 201 is fixedly connected to the inner wall of the cavity tube 605 and the outer wall of the flow tube 201 is slidably connected to the inner wall of the position adjustment box 4. The outer wall of the flow tube 201 is slidably connected to the inner wall of the hand-held rod 3; When it is necessary to adjust the position of the spray head 6 to align with the dead angle cleaning position, by pushing the shaft rod 403 to rotate. When the shaft rod 403 rotates, the shaft rod 403 will drive the indexing block 601 to rotate through rotation. The indexing block 601 will drive the cavity tube 605 to rotate in the position adjustment box 4 with the shaft rod 403 as the fixed point, so that the outer wall of the cavity tube 605 rotates in the disk at one end of the position adjustment box 4 following the rotation direction of the shaft rod 403. The cavity tube 605 will drive the spray head 6 to rotate together in the disk at one end of the position adjustment box 4. By continuously pushing the shaft rod 403 to rotate, the spray head 6 can be driven to continuously rotate and adjust, so as to make the spray head 6 perform alignment operation with the cleaning position, playing the role of adjusting the position of the spray head 6.

[0029] As Figures 5 to 6 As shown in the figure, gears 401 are fixedly installed at both ends of the shaft rod 403. Rack bars 402 are symmetrically and slidably connected to the inner wall of the position adjustment box 4. One end of each of the two rack bars 402 is fixedly installed with a rectangular rod 504. The outer walls of the two rectangular rods 504 are slidably connected to the inner wall of the position adjustment box 4. The teeth on the two rack bars 402 are respectively engaged with the teeth on the two shaft rods 403; When it is necessary to push the spray head 6 to rotate, by pushing the two rack bars 402 to move. When the rack bars 402 move, through the engagement of the teeth, the rack bars 402 will drive the gears 401 to rotate, so that the shaft rod 403 drives the indexing block 601 to rotate in the position adjustment box 4, playing the role of providing power transmission for the rotation of the spray head 6.

[0030] As Figures 3 to 5 As shown in the figure, a ring box 503 is fixedly installed on the outer wall of the position adjustment box 4. A push plate 5 is slidably connected to the outer wall of the hand-held rod 3. A push frame 501 is fixedly installed on one side of the push plate 5. The outer wall of the push frame 501 is slidably connected to the inner wall of the ring box 503. One side of each of the two rectangular rods 504 is fixedly connected to the outer wall of the push frame 501. A plurality of pressure-bearing springs 502 are arranged between one side of the push frame 501 and the outer wall of the position adjustment box 4; When it is necessary to drive the spray head 6 to rotate, the push plate 5 is slid on the hand-held rod 3 by hand. When the push plate 5 moves, the push plate 5 will squeeze the pressure-bearing spring 502 through the push frame 501 to push the torque rod 504 to move, so that the torque rod 504 pushes the two racks 402 to slide in the position adjustment box 4, providing a thrust for the rotation of the shaft rod 403 in the position adjustment box 4, playing a role in driving the shaft rod 403 to rotate in the position adjustment box 4. The setting of the pressure-bearing spring 502 enables the device to move the push plate 5 back to its original position on the hand-held rod 3 through the elastic thrust of the pressure-bearing spring 502 when the cleaning operation of the cleaning position is completed, preparing for the next position adjustment of the spray head 6.

[0031] As Figure 5 shown, a limiting shaft 404 is fixedly installed on the inner wall of the position adjustment box 4, and the outer wall of the flow pipe 201 can be slidably connected to the outer wall of the limiting shaft 404; When the spray head 6 rotates in the position adjustment box 4, the position of the flow pipe 201 is limited by the limiting shaft 404, which can prevent the flow pipe 201 from being driven by the spray head 6 to rotate in the position adjustment box 4 and cause extrusion between the flow pipe 201 and the inner wall of the position adjustment box 4, avoiding wear of the flow pipe 201 due to extrusion and resulting in leakage of the steam in the flow pipe 201, affecting the normal cleaning operation, playing a role in limiting the movement path of the flow pipe 201. It should be noted here that a rubber soft sleeve should be provided on the outside of the limiting shaft 404.

[0032] As Figures 7 to 10 shown, a poly-shower component is arranged inside the spray head 6. The poly-shower component is used to drive the polymerization block 9 to centrally shower the gas and liquid flowing out of the flow pipe 201. The poly-shower component includes a polymerization block 9 and a ring shaft 901. The number of polymerization blocks 9 is multiple. One end of the cavity pipe 605 is fixedly connected to the inner wall of the spray head 6. The top outer wall of the ring shaft 901 is fixedly connected to the bottom end of the cavity pipe 605. The tops of the multiple polymerization blocks 9 are hinged to the outer wall of the ring shaft 901. The outer walls of the multiple polymerization blocks 9 can all be slidably connected to each other. A ring plate 603 is fixedly installed on the inner wall of the spray head 6. The multiple polymerization blocks 9 are all placed inside the ring plate 603. Connecting blocks 701 are fixedly installed on the outer walls of the multiple polymerization blocks 9. One sides of the multiple connecting blocks 701 are all fixedly installed with pull rods 7. The outer walls of the multiple pull rods 7 are respectively slidably connected to the inner walls of the spray head 6 and the ring plate 603; Since the stains at the inner buckle dead angle position are relatively firm compared to the stains on the inner wall, when cleaning the stains at the cleaning position, by pushing multiple pull rods 7 to move, when the pull rod 7 moves, the pull rod 7 pulls multiple aggregation blocks 9 through the connecting block 701 to articulate and rotate at the bottom of the ring shaft 901, and the aperture between the multiple aggregation blocks 9 will change, so that the multiple aggregation blocks 9 limit the steam ejected from the cavity tube 605 and change the position of its ejection path, thereby changing the intensity of the steam when it is ejected. When the stains are relatively firm, pushing the multiple aggregation blocks 9 to rotate inward, the aperture between the multiple aggregation blocks 9 will relatively shrink, and the intensity of the ejected steam will also be relatively strong, which can better spray and clean the stains. When the stain intensity is low, pushing the multiple return springs 8 to rotate outward, the aperture between the multiple aggregation blocks 9 will relatively increase, and the ejected steam flow will be relatively divergent, and the area to be cleaned will be relatively larger, which can clean the stains more efficiently, playing a role in adjusting the intensity of the steam when spraying, strengthening the spraying intensity of the steam at the cleaning position, and being more conducive to cleaning stains of different intensities.

[0033] As Figures 7 to 8 shown, a telescopic rod 604 is fixedly installed on the inner wall of the spray head 6, a pressing block 602 is fixedly installed at the output end of the telescopic rod 604, the inner wall of the pressing block 602 is slidably connected to the outer wall of the cavity tube 605, one end of each of the multiple pull rods 7 is formed as an inclined surface, and the outer wall of the pressing block 602 can be slidably connected to the outer walls of the multiple pull rods 7; a control button 301 is fixedly installed on the outer wall of the hand-held rod 3; When it is necessary to adjust the position of the aggregation block 9, the telescopic rod 604 is controlled to operate by pressing the control button 301, the telescopic rod 604 will drive the pressing block 602 to slide down, the outer wall of the pressing block 602 will push the multiple pull rods 7 to move, so that the pull rod 7 drives the multiple aggregation blocks 9 to change their positions, providing power for the position change of the multiple aggregation blocks 9 and playing a role in pushing the pull rod 7 to move.

[0034] As Figures 9 to 10 shown, a plurality of anti-slip rods are symmetrically and fixedly installed on the inner wall of the spray head 6, the inner walls of the multiple aggregation blocks 9 are respectively slidably connected to the outer walls of the multiple anti-slip rods, a plurality of return springs 8 are symmetrically arranged between the multiple aggregation blocks 9 and the inner wall of the spray head 6, the multiple return springs 8 are respectively placed outside the multiple anti-slip rods, and a plurality of holes are formed in the inner wall of the ring plate 603, and the multiple return springs 8 are respectively placed inside the multiple holes; When the pull rod 7 is pushed and moves backward by the pressing block 602, the pull rod 7 will pull the polymerization block 9 to move through the connecting block 701. The outer wall of the polymerization block 9 will then squeeze the reset spring 8 to articulate and rotate on the ring shaft 901, thereby realizing the adjustment of the aperture between multiple polymerization blocks 9. When it is necessary to enlarge the steam spraying range, the control telescopic rod 604 drives the pressing block 602 to move downward to squeeze and push the pull rod 7. Multiple pull rods 7 will then pull the polymerization blocks 9 to articulate and open, and the aperture between multiple reset springs 8 will become larger. When it is necessary to increase the steam spraying intensity, vice versa, the telescopic rod 604 drives the pressing block 602 to move upward to reset. The pull rod 7 will then lose the squeezing thrust, and the reset spring 8 will push the polymerization block 9 to articulate and reset on the ring shaft 901 through elastic thrust, and the aperture between multiple polymerization blocks 9 will become relatively smaller to play a role in resetting and pushing the polymerization block 9 to articulate and rotate on the ring shaft 901.

[0035] As Figures 9 to 10 shown, a plurality of clamping plates 11 are fixedly installed on the inner wall of the spray head 6. A plurality of stoppers 10 are slidably connected to the inner walls of the plurality of clamping plates 11. A plurality of return springs 12 are provided between one side of the plurality of stoppers 10 and the inner walls of the plurality of clamping plates 11. The outer walls of the plurality of stoppers 10 can respectively slide on the outer walls of the plurality of polymerization blocks 9; When the polymerization block 9 rotates on the ring shaft 901, the outer wall at the bottom end of the ring shaft 901 will push the stopper 10 to move. The stopper 10 will then squeeze the return spring 12 to slide within the clamping plate 11, and the stopper 10 will block between the polymerization block 9 and the ring plate 603, preventing some steam from entering the ring plate 603 when the steam is sprayed and affecting the structure inside the spray head 6, playing a role in blocking the steam from entering.

[0036] Working principle: By arranging equipment capable of generating high-temperature and high-pressure steam inside the cleaning device 1. When it is necessary to clean an industrial pipeline, the device is pushed to move, and the device is moved to the pipe orifice position. The spray head 6 at one end of the hand-held rod 3 is aligned with the pipeline cleaning position by manually holding the hand-held rod 3. Subsequently, the cleaning device 1 is driven to perform high-temperature and high-pressure steam operation. The steam will then spray out from the spray head 6 along the flow pipe 201 to the position of the pipeline that needs to be cleaned, thereby realizing the jet cleaning operation of the pipeline. When encountering a dead corner in the inner thread of the pipeline, the spray head 6 is driven to rotate by pushing the indexing assembly. The spray head 6 will then rotate at one end of the hand-held rod 3, so that the outlet end of the spray head 6 corresponds to the dead corner position, which can avoid the cleaning personnel constantly changing positions to make the spray head 6 correspond to the cleaning position, saving a certain amount of manpower and time, and thus realizing the cleaning operation of various positions of the industrial pipeline or industrial device. Through the hand-held setting of the hand-held rod 3, the device can be more flexible when cleaning the position, and is also suitable for cleaning different pipelines and equipment; When the cleaning position is relatively deep, by pulling the handheld rod 3 to move, the wire winding assembly will drive the flow tube 201 to unwind in the wire winding box 2, so as to provide distance for the movement of the handheld rod 3. When the cleaning is completed, the wire winding assembly drives the flow tube 201 to wind and roll up in the wire winding box 2, so as to wind the flow tube 201 in the wire winding box 2 for collection, preventing the flow tube 201 from being too long and affecting the movement of the device. Subsequently, the handheld rod 3 can be placed in the storage board 101 for placement, playing the role of winding up the flow tube 201; When it is necessary to adjust the position of the spray head 6 to align with the dead angle cleaning position, by pushing the shaft rod 403 to rotate. When the shaft rod 403 rotates, the shaft rod 403 will drive the indexing block 601 to rotate through rotation. The indexing block 601 will drive the cavity tube 605 to rotate around the shaft rod 403 as a fixed point in the adjustment box 4, so that the outer wall of the cavity tube 605 rotates along the rotation direction of the shaft rod 403 in the disc at one end of the adjustment box 4. The cavity tube 605 will drive the spray head 6 to rotate together in the disc at one end of the adjustment box 4. By continuously pushing the shaft rod 403 to rotate, the spray head 6 can be driven to continuously rotate and adjust, so that the spray head 6 is aligned with the cleaning position, playing the role of adjusting the position of the spray head 6; When it is necessary to drive the spray head 6 to rotate, by pushing the two racks 402 to move. When the racks 402 move, through the meshing of the teeth, the racks 402 will drive the gear 401 to rotate, so that the shaft rod 403 drives the indexing block 601 to rotate in the adjustment box 4, playing the role of providing power transmission for the rotation of the spray head 6; When it is necessary to drive the spray head 6 to rotate, by sliding the handheld push plate 5 on the handheld rod 3. When the push plate 5 moves, the push plate 5 will push the pressure-bearing spring 502 through the push frame 501 to push the torque rod 504 to move, so that the torque rod 504 pushes the two racks 402 to slide in the adjustment box 4, providing a thrust for the rotation of the shaft rod 403 in the adjustment box 4, playing the role of driving the shaft rod 403 to rotate in the adjustment box 4. The setting of the pressure-bearing spring 502 enables the device to move and reset the push plate 5 on the handheld rod 3 through the elastic thrust of the pressure-bearing spring 502 when the cleaning operation of the cleaning position is completed, making preparations for the next position adjustment of the spray head 6; When the spray head 6 rotates in the adjustment box 4, by limiting the position of the flow tube 201 through the limit shaft 404, it can prevent the flow tube 201 from being driven by the spray head 6 to rotate in the adjustment box 4 and cause extrusion between the flow tube 201 and the inner wall of the adjustment box 4, avoiding wear of the flow tube 201 due to extrusion and resulting in leakage of the steam in the flow tube 201, affecting the normal cleaning operation, playing the role of limiting the movement path of the flow tube 201; When cleaning the stains at the cleaning position, move by pushing multiple pull rods 7. When the pull rods 7 move, the pull rods 7 drive multiple aggregation blocks 9 to articulate and rotate at the bottom of the ring shaft 901 through the connecting blocks 701. The aperture between the multiple aggregation blocks 9 will change, so that the multiple aggregation blocks 9 limit the steam ejected from the cavity tube 605 and change the position of its ejection path, thereby changing the intensity of the steam when it is ejected. When the stains are relatively firm, push the multiple aggregation blocks 9 to rotate inward, and the aperture between the multiple aggregation blocks 9 will relatively shrink, and the intensity of the ejected steam will also be relatively strong, which can better perform the jet cleaning operation on the stains. When the intensity of the stains is low, push the multiple return springs 8 to rotate outward, and the aperture between the multiple aggregation blocks 9 will relatively increase, and the ejected steam flow will be relatively divergent, and the area to be cleaned will be relatively large, which can clean the stains more efficiently and play a role in adjusting the intensity of the steam jet; When it is necessary to adjust the position of the aggregation block 9, control the telescopic rod 604 to operate by pressing the control button 301. The telescopic rod 604 will drive the pressing block 602 to slide down, and the outer wall of the pressing block 602 will push multiple pull rods 7 to move, so that the pull rods 7 drive multiple aggregation blocks 9 to change their positions, providing power for the position change of the multiple aggregation blocks 9 and playing a role in pushing the pull rods 7 to move; When the pull rod 7 moves backward under the push of the pressing block 602, the pull rod 7 will drive the aggregation block 9 to move through the connecting block 701, and the outer wall of the aggregation block 9 will squeeze the return spring 8 to articulate and rotate on the ring shaft 901, so as to realize the adjustment of the aperture between the multiple aggregation blocks 9. When it is necessary to increase the range of the steam jet, control the telescopic rod 604 to drive the pressing block 602 to move down to squeeze and push the pull rod 7. The multiple pull rods 7 will drive the aggregation blocks 9 to articulate and open, and the aperture between the multiple return springs 8 will become larger. When it is necessary to increase the jet intensity of the steam, on the contrary, the telescopic rod 604 drives the pressing block 602 to move up and reset. The pull rod 7 will lose the extrusion thrust, and the return spring 8 will push the aggregation block 9 to articulate and reset on the ring shaft 901 through the elastic thrust, and the aperture between the multiple aggregation blocks 9 will relatively decrease, playing a role in resetting and pushing the aggregation block 9 to articulate and rotate on the ring shaft 901; When the aggregation block 9 rotates on the ring shaft 901, the outer wall at the bottom end of the ring shaft 901 will push the stop block 10 to move. The stop block 10 will squeeze the return block spring 12 to slide in the clamping plate 11. The stop block 10 will block between the aggregation block 9 and the ring plate 603 to prevent part of the steam from entering the ring plate 603 when the steam is ejected, which will affect the structure inside the spray head 6 and play a role in blocking the entry of steam.

[0037] The foregoing has shown and described the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments, and what is described in the above embodiments and the specification is only to illustrate the principle of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements fall within the scope of the present invention claimed. The scope of the present invention claimed is defined by the appended claims and their equivalents.

Claims

1. An industrial high-temperature and high-pressure steam cleaning device, characterized in that: It includes a cleaning device and a handheld rod. A flow pipe is fixedly installed on the outer wall of the cleaning device. One end of the handheld rod is fixedly installed with an adjustment box. A spray head is arranged on one side of the adjustment box. A rotation component is arranged inside the adjustment box, and the rotation component is used to drive the spray head to rotate and adjust. One end of the flow pipe is placed inside the spray head.

2. An industrial high-temperature and high-pressure steam cleaning device according to claim 1, characterized in that: A winding box is fixedly installed on the outer wall of the winding box. A winding component is arranged inside the winding box, and the winding component is used to drive the flow pipe to wind and roll up inside the winding box. A storage plate is fixedly installed on one outer wall of the winding box, and the storage plate is used to place the handheld rod.

3. An industrial high-temperature and high-pressure steam cleaning device according to claim 2, characterized in that: The rotation component includes a rotation block. A cavity pipe is fixedly installed on the inner wall of the spray head. The top of the rotation block is fixedly connected to the outer wall of the cavity pipe. The outer wall of the cavity pipe is slidably connected to the outer wall of the adjustment box. A shaft rod is fixedly installed on the outer wall of the rotation block. Both ends of the shaft rod are rotatably connected to the inner wall of the adjustment box. One end of the flow pipe is fixedly connected to the inner wall of the cavity pipe and the outer wall of the flow pipe is slidably connected to the inner wall of the adjustment box. The outer wall of the flow pipe can be slidably connected to the inner wall of the handheld rod.

4. An industrial high-temperature and high-pressure steam cleaning device according to claim 3, characterized in that: Gears are fixedly installed at both ends of the shaft rod. Two racks are symmetrically and slidably connected to the inner wall of the adjustment box. One end of each of the two racks is fixedly installed with a rectangular rod. The outer walls of the two rectangular rods are slidably connected to the inner wall of the adjustment box. The teeth on the two racks are respectively meshed with the teeth on the two shaft rods.

5. An industrial high-temperature and high-pressure steam cleaning device according to claim 4, characterized in that: A ring box is fixedly installed on the outer wall of the adjustment box. A push plate is slidably connected to the outer wall of the handheld rod. A push frame is fixedly installed on one side of the push plate. The outer wall of the push frame is slidably connected to the inner wall of the ring box. One side of each of the two rectangular rods is fixedly connected to the outer wall of the push frame. A plurality of pressure-bearing springs are arranged between one side of the push frame and the outer wall of the adjustment box.

6. The industrial high-temperature and high-pressure steam cleaning equipment according to claim 5, characterized in that: A limiting shaft is fixedly installed on the inner wall of the adjustment box. The outer wall of the flow pipe can be slidably connected to the outer wall of the limiting shaft.

7. An industrial high-temperature and high-pressure steam cleaning device according to claim 6, characterized in that: A concentration spraying component is arranged inside the spray head. The concentration spraying component is used to drive the polymerization block to concentrate and spray the gas and liquid flowing out of the flow pipe. The concentration spraying component includes a polymerization block and a ring shaft. The number of polymerization blocks is multiple. One end of the cavity pipe is fixedly connected to the inner wall of the spray head. The top outer wall of the ring shaft is fixedly connected to the bottom end of the cavity pipe. The tops of the multiple polymerization blocks are hinged to the outer wall of the ring shaft. The outer walls of the multiple polymerization blocks can all slide relative to each other. A ring plate is fixedly installed on the inner wall of the spray head. The multiple polymerization blocks are all placed inside the ring plate. Connection blocks are fixedly installed on the outer walls of the multiple polymerization blocks. One side of each of the multiple connection blocks is fixedly installed with a pull rod. The outer walls of the multiple pull rods are respectively slidably connected to the inner walls of the spray head and the ring plate.

8. An industrial high-temperature and high-pressure steam cleaning device according to claim 7, characterized in that: A telescopic rod is fixedly installed on the inner wall of the spray head. The output end of the telescopic rod is fixedly installed with a pressing block. The inner wall of the pressing block is slidably connected to the outer wall of the cavity pipe. One end of each of the multiple pull rods is formed as an inclined surface. The outer wall of the pressing block can be slidably connected to the outer walls of the multiple pull rods. A control button is fixedly installed on the outer wall of the handheld rod.

9. An industrial high-temperature and high-pressure steam cleaning device according to claim 8, characterized in that: A plurality of limiting slide rods are symmetrically fixedly installed on the inner wall of the spray head. The inner walls of the multiple polymerization blocks are respectively slidably connected to the outer walls of the multiple limiting slide rods. A reset spring is symmetrically arranged between each of the multiple polymerization blocks and the inner wall of the spray head. The multiple reset springs are respectively placed outside the multiple limiting slide rods. A plurality of holes are opened on the inner wall of the ring plate. The multiple reset springs are respectively placed inside the multiple holes.

10. An industrial high-temperature and high-pressure steam cleaning device according to claim 9, characterized in that: A plurality of clamping plates are fixedly installed on the inner wall of the spray head. A plurality of stoppers are slidably connected to the inner walls of the plurality of clamping plates. A plurality of return springs are arranged between one side of the plurality of stoppers and the inner walls of the plurality of clamping plates. The outer walls of the plurality of stoppers can be slidably connected to the outer walls of the plurality of polymerization blocks respectively.

Citation Information

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