A steam humidifier device for avoiding high-temperature scald and its usage method
By designing the transfer, lift and positioning mechanism, the problem that the steam humidifier cannot adjust the height and angle is solved, convenient movement and stable fixation are achieved, and practicality is improved.
Patent Information
- Application Number
- CN202211676217.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-12-26
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2042-12-26
AI Technical Summary
The existing steam humidifiers cannot adjust the placement height and steam injection angle of the device, and cannot meet the needs of different heights and steam injection angles, and are of poor practicality.
A steam humidifier device including a transfer mechanism, a lifting mechanism and a positioning mechanism is designed. Through the transfer mechanism, the lifting mechanism adjusts the height, the positioning mechanism adjusts the steam injection angle, and the auxiliary mechanism is used in conjunction to achieve flexible adjustment of height and angle.
It realizes convenient movement and stable fixation of the steam humidifier, can be quickly adjusted to the appropriate height and angle, and improves the practicality and stability of the device.
Smart Images

Figure CN116005480B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of steam humidifier devices, and particularly to a steam humidifier device for avoiding high-temperature burns and its usage method. Background Art
[0002] During the production and processing of paper, it is necessary to calender and plasticize the paper through a calender. In order to avoid the bursting phenomenon during paper plasticization, a humidifying device needs to be added in front of the calender to improve the flexibility of the calendering and plasticization process.
[0003] Although the current steam humidifiers are widely used in the paper-making industry, there are still certain deficiencies in the currently used steam humidifiers: most of the existing steam humidifiers cannot adjust the placement height and steam spraying angle of the device, so they cannot meet the usage requirements at different heights and different steam spraying angles, and the practicability is poor.
[0004] In view of the above problems, the inventor proposes a steam humidifier device for avoiding high-temperature burns and its usage method to solve the above problems. Summary of the Invention
[0005] In order to solve the problem that the existing steam humidifiers cannot meet the usage requirements at different heights and different steam spraying angles; the purpose of the present invention is to provide a steam humidifier device for avoiding high-temperature burns and its usage method.
[0006] To solve the above technical problems, the present invention adopts the following technical solution: A steam humidifier device for avoiding high-temperature burns, including a transfer mechanism, an elevating mechanism is fixedly installed inside the upper end of the transfer mechanism, and a positioning mechanism for cooperating with the elevating mechanism is provided on the transfer mechanism. One side of the elevating mechanism away from the positioning mechanism is fixedly installed with a steam humidifier body, and a steam guide pipe is fixedly installed at the upper end of one side of the steam humidifier body. One end of the steam guide pipe away from the steam humidifier body is fixedly connected with a steam spraying collar, and a steam guide blade is fixedly inserted inside the steam spraying collar. An auxiliary mechanism for cooperating with the steam spraying collar is provided on the steam humidifier body.
[0007] Preferably, the transfer mechanism includes a transfer bottom plate. Self-locking universal wheels are fixedly installed at the four corners of the bottom end of the transfer bottom plate. Symmetrically arranged L-shaped support plates are integrally formed at both ends of the transfer bottom plate. Installation through grooves are formed through the L-shaped support plates. L-shaped sliding plates are slidably clamped in the installation through grooves. A positioning cross plate is fixedly installed between the adjacent ends of the L-shaped sliding plates close to the transfer bottom plate. A non-slip bottom pad is fixedly connected to the side of the positioning cross plate away from the steam humidifier body. Anti-slip protrusions are integrally formed on the side of the non-slip bottom pad away from the positioning cross plate and are distributed in an array. An installation through hole is formed through the end of the L-shaped sliding plate away from the positioning cross plate. A horizontal slide bar is slidably inserted into the installation through hole. A U-shaped positioning block is fixedly connected to the end of the horizontal slide bar away from the steam humidifier body. Symmetrically distributed positioning slots are formed at the end of the L-shaped support plate away from the transfer bottom plate. The U-shaped positioning block can be slidably inserted into the positioning slots. A first fixing ring is fixedly sleeved on the end of the horizontal slide bar close to the steam humidifier body. A first spring is fixedly installed on the side of the first fixing ring away from the steam humidifier body. The first spring is movably sleeved on the horizontal slide bar. The end of the first spring away from the first fixing ring is fixedly connected to the L-shaped sliding plate. A side connection support column is fixedly installed in the middle of the side of the U-shaped positioning block away from the steam humidifier body. A transfer push rod is fixedly connected to the end of the side connection support column away from the U-shaped positioning block. An anti-slip pattern is covered on the outer wall of the transfer push rod.
[0008] Preferably, the lifting mechanism includes a first U-shaped block. The first U-shaped block is fixedly installed at both ends of the side of the transfer bottom plate close to the steam humidifier body. The first U-shaped block has a symmetric structure. A first rotating plate is rotatably inserted into the inner side of the first U-shaped block. A vertical connecting plate is rotatably sleeved at the end of the first rotating plate away from the first U-shaped block. A second rotating plate is rotatably inserted into the end of the vertical connecting plate away from the transfer bottom plate. A second U-shaped block is rotatably sleeved at the end of the second rotating plate away from the vertical connecting plate. A horizontal lifting plate is fixedly connected to the top end of the second U-shaped block. The steam humidifier body is fixedly installed on the horizontal lifting plate. Side connection cross plates are fixedly installed on the opposite sides of the vertical connecting plate. A driving lifting block is fixedly installed between the adjacent side connection cross plates. A driving threaded hole is formed through the middle of the driving lifting block. A double-headed screw is threadedly inserted into the two driving threaded holes. Driving wheels are fixedly connected to both ends of the double-headed screw. Driving rotating rods are rotatably inserted on the driving wheels.
[0009] Preferably, the positioning mechanism includes a positioning sleeve. Installation through holes are formed through both ends of the transfer bottom plate. The positioning sleeve is fixedly inserted into the installation through holes. A positioning sliding plate is slidably inserted into the inner cavity of the positioning sleeve. A rotating sleeve ring is integrally formed at the end of the positioning sliding plate away from the transfer bottom plate. The rotating sleeve ring is rotatably sleeved on the end of the double-headed screw. A side connection fixed block is integrally formed at the end of the positioning sleeve close to the double-headed screw. A positioning bolt is threadedly inserted into the side connection fixed block. The opposite ends of the positioning bolt can be in close contact with the outer wall of the positioning sliding plate.
[0010] Preferably, the auxiliary mechanism includes a protective sleeve frame, which is fixedly connected to the steam humidifier body, and the protective sleeve frame is fixedly sleeved on the outer sides of the steam guide pipe and the steam spraying sleeve ring. Steam outlet perforations for the cooperation of the steam spraying sleeve ring and the steam guide vanes are formed in the protective sleeve frame, and the steam outlet perforations are arranged in an array. Side connection rotating rods are rotatably inserted in the protective sleeve frame symmetrically, and the opposite ends of the side connection rotating rods are fixedly connected to the steam spraying sleeve ring. Second fixing rings are fixedly sleeved on the opposite ends of the side connection rotating rods, and driving sleeves are slidably sleeved on the outer sides of the second fixing rings. Guide sliding blocks are integrally formed on the second fixing rings symmetrically, and guide sliding grooves for the cooperation of the guide sliding blocks are formed in the driving sleeves. The guide sliding grooves are symmetrically distributed, and the guide sliding blocks are slidably inserted in the guide sliding grooves. The driving sleeves are slidably sleeved on the side connection rotating rods, and positioning insertion columns are symmetrically fixedly installed on the opposite sides of the driving sleeves. Positioning insertion holes are formed in the two sides of the protective sleeve frame in an array, and the positioning insertion columns can be slidably inserted in the positioning insertion holes. Second springs are fixedly installed on the opposite sides of the second fixing rings, the second springs are movably sleeved on the outer sides of the side connection rotating rods, and the ends of the second springs far from the second fixing rings are fixedly connected to the inner walls of the driving sleeves.
[0011] A method for using a steam humidifier device to avoid high-temperature scalding includes the following steps:
[0012] Step 1, the user can hold and push any two transfer push rods on one side at the same time, so as to drive the U-shaped positioning block to move through the side connection struts, and then drive the transfer bottom plate to move through the L-shaped support plate and in cooperation with the use of the self-locking universal wheels. Further, the steam humidifier body can be driven to move through the lifting mechanism until the pushing of the transfer push rods is stopped when it is moved to a suitable position. Subsequently, the user can lock the four self-locking universal wheels respectively and then hold two adjacent transfer push rods and move them to the side away from the corresponding L-shaped support plate in turn, so as to drive the corresponding U-shaped positioning block to move, and then drive the corresponding first fixing ring to move through the transverse sliding rod, further squeezing the corresponding first spring. And when the U-shaped positioning block is separated from the corresponding positioning slot, the user can press down the corresponding transfer push rod, so as to drive the U-shaped positioning block to move downward through the side connection struts, and then drive the L-shaped sliding plate to move downward through the transverse sliding rod, further driving the positioning cross plate and the anti-slip bottom pad to move downward. When the U-shaped positioning block moves to another corresponding positioning slot, stop pressing the corresponding transfer push rod, and at this time, the anti-slip bottom pad will be in close contact with the ground. Subsequently, the user can release the corresponding two transfer push rods in turn, so that the first spring can drive the corresponding transverse sliding rod to reset through the first fixing ring, and then drive the corresponding U-shaped positioning block to reset, and further enable the U-shaped positioning block to be inserted into another corresponding positioning slot;
[0013] Step 2: The user can successively turn the two positioning bolts until the positioning bolts are loosened when they are separated from the corresponding positioning slide plates. Then, the user can arbitrarily rotate one of the driving rods, which can drive the corresponding driving wheel to rotate, and then drive the double-headed screw to rotate. While the double-headed screw is rotating, it can cooperate with the use of the driving threaded holes to drive the two driving lifting blocks to move in opposite directions, so as to drive the corresponding vertical connecting plate to move in opposite directions through the side connecting cross plate. And it can cooperate with the use of the first U-shaped block and the second U-shaped block to synchronously rotate the first rotating plate and the second rotating plate, so that the double-headed screw, the vertical connecting plate and the horizontal lifting plate can be synchronously lifted, and then drive the steam humidifier body to move up. While the double-headed screw is moving up, it will drive the positioning slide plate to move up through the rotating collar. When the steam humidifier body moves up to the appropriate height, stop rotating the corresponding driving rod. Then, the user can reverse the rotation of the two positioning bolts until the positioning bolts are again in close contact with the corresponding positioning slide plates;
[0014] Step 3: The user can hold the two driving sleeves simultaneously and move the two driving sleeves in opposite directions, which can drive the corresponding positioning pins to move and compress the corresponding second springs. And when the positioning pins are separated from the corresponding positioning holes, the user can rotate the two driving sleeves simultaneously, which can drive the corresponding side connecting rods to rotate, and then drive the steam spraying collar and the steam guiding blades to rotate. Until the steam spraying collar and the steam guiding blades are rotated to the appropriate angles, then loosen the two driving sleeves in turn. Then, the corresponding second springs will drive the corresponding positioning pins to reset through the driving sleeves, so that the positioning pins can be inserted into another corresponding positioning holes. After that, the user can turn on the steam humidifier body to perform the humidification operation.
[0015] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0016] 1. Through the setting and use of the transfer mechanism, it provides convenience for the convenient movement and stable fixation of the steam humidifier body, thus providing convenience for the use of the steam humidifier body;
[0017] 2. Under the coordinated action of the lifting mechanism and the positioning mechanism, the steam humidifier body can be conveniently and quickly moved to the appropriate height and stably fixed, so as to meet the use requirements at different heights, and then improve the placement stability and use practicability of the steam humidifier body;
[0018] 3. Through the setting and use of the auxiliary mechanism, the steam spraying collar and the steam guiding blades can be conveniently and quickly rotated to the appropriate angles and fixed, so as to meet the use requirements at different steam spraying angles, and then further improve the practicability of the device. Description of the Drawings
[0019] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0020] Figure 1 It is a schematic structural diagram of the present invention.
[0021] Figure 2 It is a schematic installation diagram of the steam humidifier body in the present invention.
[0022] Figure 3 For the present invention Figure 2 An enlarged schematic diagram of the structure at A in the present invention.
[0023] Figure 4 For the present invention Figure 2 An enlarged schematic diagram of the structure at B in the present invention.
[0024] Figure 5 For the present invention Figure 2 An enlarged schematic diagram of the structure at C in the present invention.
[0025] Figure 6 It is a schematic installation diagram of the auxiliary mechanism in the present invention.
[0026] Figure 7 For the present invention Figure 6 An enlarged schematic diagram of the structure at D in the present invention.
[0027] Figure 8 For the present invention Figure 7 An enlarged schematic diagram of the structure at E in the present invention.
[0028] In the figure: 1. Transfer mechanism; 11. Transfer bottom plate; 12. Self-locking universal wheel; 13. L-shaped support plate; 14. Installation through slot; 15. L-shaped sliding plate; 16. Positioning cross plate; 17. Installation through hole; 18. Horizontal sliding rod; 19. U-shaped positioning block; 110. Positioning slot; 111. First fixing ring; 112. First spring; 113. Side connection pillar; 114. Transfer push rod; 115. Anti-slip bottom pad; 116. Installation through hole; 2. Lifting mechanism; 21. First U-shaped block; 22. First rotating plate; 23. Vertical connecting plate; 24. Second rotating plate; 25. Second U-shaped block; 26. Horizontal lifting plate; 27. Side connection cross plate; 28. Driving lifting block; 29. Driving threaded hole; 210. Double-headed screw rod; 211. Driving rotating wheel; 212. Driving rotating rod; 3. Positioning mechanism; 31. Positioning sleeve; 32. Positioning sliding plate; 33. Rotating sleeve ring; 34. Side connection fixed block; 35. Positioning bolt; 4. Steam humidifier body; 41. Steam guide pipe; 42. Steam spraying sleeve ring; 43. Steam guide blade; 5. Auxiliary mechanism; 51. Protective sleeve frame; 52. Steam outlet through hole; 53. Side connection rotating rod; 54. Second fixing ring; 55. Driving sleeve; 56. Positioning insertion post; 57. Positioning insertion hole; 58. Second spring; 59. Guide sliding block; 510. Guide sliding groove. Detailed implementation mode
[0029] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0030] Embodiment: As Figure 1-8 shown, the present invention provides a steam humidifier device for avoiding high-temperature scalding, including a transfer mechanism 1. An upper inner side of the transfer mechanism 1 is fixedly installed with a lifting mechanism 2, and a positioning mechanism 3 cooperating with the lifting mechanism 2 is arranged on the transfer mechanism 1. A steam humidifier body 4 is fixedly installed on a side of the lifting mechanism 2 away from the positioning mechanism 3. The steam humidifier body 4 can perform humidification operations, which is prior art and will not be elaborated here. One upper side of the steam humidifier body 4 is fixedly installed with a steam guide pipe 41. One end of the steam guide pipe 41 away from the steam humidifier body 4 is fixedly connected with a steam spraying sleeve ring 42, and steam guide blades 43 are fixedly inserted inside the steam spraying sleeve ring 42. An auxiliary mechanism 5 cooperating with the steam spraying sleeve ring 42 is arranged on the steam humidifier body 4.
[0031] The transfer mechanism 1 includes a transfer bottom plate 11. Self-locking universal wheels 12 are fixedly installed at the four corners of the bottom end of the transfer bottom plate 11. Symmetrically arranged L-shaped support plates 13 are integrally formed at both ends of the transfer bottom plate 11. An installation through slot 14 is formed through the L-shaped support plate 13. An L-shaped sliding plate 15 is slidably clamped in the installation through slot 14. A positioning cross plate 16 is fixedly installed between the adjacent ends of the L-shaped sliding plates 15 close to the transfer bottom plate 11. An anti-slip bottom pad 115 is fixedly connected to the side of the positioning cross plate 16 away from the steam humidifier body 4. An array of anti-slip protrusions is integrally formed on the side of the anti-slip bottom pad 115 away from the positioning cross plate 16. The use of the anti-slip bottom pad 115 and the anti-slip protrusions can play a role in increasing friction. An installation through hole 17 is formed through the end of the L-shaped sliding plate 15 away from the positioning cross plate 16. A transverse sliding rod 18 is slidably inserted in the installation through hole 17. A U-shaped positioning block 19 is fixedly connected to the end of the transverse sliding rod 18 away from the steam humidifier body 4. Symmetrically distributed positioning slots 110 are formed at the end of the L-shaped support plate 13 away from the transfer bottom plate 11. The U-shaped positioning block 19 can be slidably inserted into the positioning slots 110. A first fixing ring 111 is fixedly sleeved on the end of the transverse sliding rod 18 close to the steam humidifier body 4. A first spring 112 is fixedly installed on the side of the first fixing ring 111 away from the steam humidifier body 4. The first spring 112 is movably sleeved on the transverse sliding rod 18. The end of the first spring 112 away from the first fixing ring 111 is fixedly connected to the L-shaped sliding plate 15. A side connection support column 113 is fixedly installed in the middle of the side of the U-shaped positioning block 19 away from the steam humidifier body 4. A transfer push rod 114 is fixedly connected to the end of the side connection support column 113 away from the U-shaped positioning block 19. An anti-slip pattern is covered on the outer wall of the transfer push rod 114. The use of the side connection support column 113 and the transfer push rod 114 facilitates the pushing of the transfer bottom plate 11, and the anti-slip pattern can play a role in increasing friction and facilitating operation.
[0032] By adopting the above technical solution, the user can hold the two transfer push rods 114 on either side simultaneously and push them, so as to drive the U-shaped positioning block 19 to move through the side connection strut 113. Furthermore, it can drive the transfer bottom plate 11 to move by means of the L-shaped support plate 13 in cooperation with the use of the self-locking universal wheels 12. Further still, it can drive the steam humidifier body 4 to move through the lifting mechanism 2 until the pushing of the transfer push rod 114 stops when it is moved to a suitable position. Subsequently, the user can lock the four self-locking universal wheels 12 respectively and hold the two adjacent transfer push rods 114 in turn to move them to the side away from the corresponding L-shaped support plate 13, so as to drive the corresponding U-shaped positioning block 19 to move. Furthermore, it can drive the corresponding first fixing ring 111 to move through the transverse slide bar 18. Further still, it can compress the corresponding first spring 112. And when the U-shaped positioning block 19 is separated from the corresponding positioning slot 110, the user can press down the corresponding transfer push rod 114, so as to drive the U-shaped positioning block 19 to move downward through the side connection strut 113. Furthermore, it can drive the L-shaped slide plate 15 to move downward through the transverse slide bar 18. Further still, it can drive the positioning cross plate 16 and the anti-slip bottom pad 115 to move downward. When the U-shaped positioning block 19 moves to another corresponding positioning slot 110, stop pressing down the corresponding transfer push rod 114. And at this time, the anti-slip bottom pad 115 will be in close contact with the ground. Subsequently, the user can release the corresponding two transfer push rods 114 in turn, so that the first spring 112 can drive the corresponding transverse slide bar 18 to reset through the first fixing ring 111. Furthermore, it can drive the corresponding U-shaped positioning block 19 to reset. Further still, it can make the U-shaped positioning block 19 insert into another corresponding positioning slot 110.
[0033] The lifting mechanism 2 includes a first U-shaped block 21 which is fixedly installed at both ends of one side of the transfer bottom plate 11 close to the steam humidifier body 4, and the first U-shaped block 21 is of a symmetrical structure. A first rotating plate 22 is rotatably inserted inside the first U-shaped block 21, and a vertical connecting plate 23 is rotatably sleeved at one end of the first rotating plate 22 away from the first U-shaped block 21. A second rotating plate 24 is rotatably inserted at one end of the vertical connecting plate 23 away from the transfer bottom plate 11, and a second U-shaped block 25 is rotatably sleeved at one end of the second rotating plate 24 away from the vertical connecting plate 23. The top end of the second U-shaped block 25 is fixedly connected with a transverse lifting plate 26, and the steam humidifier body 4 is fixedly installed on the transverse lifting plate 26. Side connecting transverse plates 27 are fixedly installed on the opposite sides of the vertical connecting plate 23, and a driving lifting block 28 is fixedly installed between adjacent side connecting transverse plates 27. A driving threaded hole 29 is formed through the middle of the driving lifting block 28, and a double-headed screw rod 210 is threadedly inserted into the two driving threaded holes 29. Both ends of the double-headed screw rod 210 are fixedly connected with driving rotating wheels 211, and driving rotating rods 212 are rotatably inserted on the driving rotating wheels 211. The cooperation of the driving rotating wheels 211 and the driving rotating rods 212 facilitates the rotation adjustment of the double-headed screw rod 210. The positioning mechanism 3 includes a positioning sleeve 31. Installation through holes 116 are formed through both ends of the transfer bottom plate 11, and the positioning sleeve 31 is fixedly inserted into the installation through holes 116. A positioning sliding plate 32 is slidably inserted into the inner cavity of the positioning sleeve 31, and a rotating collar 33 is integrally formed at one end of the positioning sliding plate 32 away from the transfer bottom plate 11. The rotating collar 33 is rotatably sleeved at the end of the double-headed screw rod 210. A side connecting fixed block 34 is integrally formed at one end of the positioning sleeve 31 close to the double-headed screw rod 210. A positioning bolt 35 is threadedly inserted into the side connecting fixed block 34, and the opposite ends of the positioning bolt 35 can be in close contact with the outer wall of the positioning sliding plate 32.
[0034] By adopting the above technical solution, the user can sequentially turn the two positioning bolts 35 until the positioning bolts 35 are separated from the corresponding positioning sliding plates 32 and then loosen the positioning bolts 35. After that, the user can arbitrarily rotate one of the driving rotating rods 212, which can drive the corresponding driving rotating wheel 211 to rotate, and then drive the double-headed screw rod 210 to rotate. While the double-headed screw rod 210 is rotating, it can cooperate with the use of the driving threaded holes 29 to drive the two driving lifting blocks 28 to move in opposite directions, so as to drive the corresponding vertical connecting plates 23 to move in opposite directions through the side connecting cross plates 27, and can cooperate with the use of the first U-shaped block 21 and the second U-shaped block 25 to synchronously rotate the first rotating plate 22 and the second rotating plate 24, so that the double-headed screw rod 210, the vertical connecting plates 23 and the horizontal lifting plates 26 can be synchronously lifted, and then drive the steam humidifier body 4 to move up. While the double-headed screw rod 210 is moving up, it will drive the positioning sliding plate 32 to move up through the rotating collar 33. When the steam humidifier body 4 moves up to an appropriate height, stop rotating the corresponding driving rotating rod 212. Then the user can reversely turn the two positioning bolts 35 until the positioning bolts 35 are closely attached to the corresponding positioning sliding plates 32 again.
[0035] The auxiliary mechanism 5 includes a protective sleeve frame 51, which is fixedly connected to the steam humidifier body 4 and fixedly sleeved outside the steam guide pipe 41 and the steam spraying collar 42. The protective sleeve frame 51 is provided with steam outlet perforations 52 that cooperate with the steam spraying collar 42 and the steam guide vanes 43, and the steam outlet perforations 52 are arranged in an array. The protective sleeve frame 51 is rotatably inserted with symmetrically distributed side connecting rotating rods 53, and the opposite ends of the side connecting rotating rods 53 are fixedly connected to the steam spraying collar 42. The opposite ends of the side connecting rotating rods 53 are fixedly sleeved with second fixing rings 54, and the outer sides of the second fixing rings 54 are slidably sleeved with driving sleeves 55. The second fixing rings 54 are integrally formed with symmetrically arranged guiding sliders 59, and the driving sleeves 55 are provided with guiding chutes 510 that cooperate with the guiding sliders 59. The guiding chutes 510 are symmetrically distributed, and the guiding sliders 59 are slidably inserted into the guiding chutes 510. Through the cooperation of the guiding sliders 59 and the guiding chutes 510, it plays a role in limiting and guiding the movement adjustment of the second fixing rings 54. The driving sleeves 55 are slidably sleeved on the side connecting rotating rods 53, and the opposite sides of the driving sleeves 55 are fixedly installed with symmetrically arranged positioning insertion posts 56. Both sides of the protective sleeve frame 51 are provided with arrays of positioning insertion holes 57, and the positioning insertion posts 56 can be slidably inserted into the positioning insertion holes 57. The opposite sides of the second fixing rings 54 are fixedly installed with second springs 58, and the second springs 58 are movably sleeved outside the side connecting rotating rods 53, and the ends of the second springs 58 far from the second fixing rings 54 are fixedly connected to the inner walls of the driving sleeves 55.
[0036] By adopting the above technical solution, the user can hold two driving sleeves 55 simultaneously and move the two driving sleeves 55 in opposite directions, so as to drive the corresponding positioning pins 56 to move and compress the corresponding second springs 58. And when the positioning pins 56 are separated from the corresponding positioning holes 57, the user can rotate the two driving sleeves 55 simultaneously, so as to drive the corresponding side connection rods 53 to rotate, and further drive the steam spray collar 42 and the steam guide vanes 43 to rotate. Until the steam spray collar 42 and the steam guide vanes 43 are rotated to the appropriate angles, the two driving sleeves 55 are released in sequence. Subsequently, the corresponding second springs 58 will drive the corresponding positioning pins 56 to reset through the driving sleeves 55, so that the positioning pins 56 can be inserted into another corresponding positioning hole 57.
[0037] A method for using a steam humidifier device to avoid high-temperature scalding includes the following steps:
[0038] Step 1, the user can hold two transfer push rods 114 on any side simultaneously and push them, so as to drive the U-shaped positioning block 19 to move through the side connection pillar 113, and further drive the transfer bottom plate 11 to move through the L-shaped support plate 13 and in cooperation with the use of the self-locking universal wheels 12. Further, the steam humidifier body 4 can be driven to move through the lifting mechanism 2 until the transfer push rods 114 are stopped being pushed when it is moved to the appropriate position. Subsequently, the user can lock the four self-locking universal wheels 12 respectively and hold two adjacent transfer push rods 114 in sequence to move to the side away from the corresponding L-shaped support plate 13, so as to drive the corresponding U-shaped positioning block 19 to move, and further drive the corresponding first fixing ring 111 to move through the transverse slide bar 18, and further compress the corresponding first spring 112. And when the U-shaped positioning block 19 is separated from the corresponding positioning slot 110, the user can press down the corresponding transfer push rod 114, so as to drive the U-shaped positioning block 19 to move downward through the side connection pillar 113, and further drive the L-shaped slide plate 15 to move downward through the transverse slide bar 18, and further drive the positioning cross plate 16 and the anti-slip bottom pad 115 to move downward. When the U-shaped positioning block 19 moves to another corresponding positioning slot 110, stop pressing down the corresponding transfer push rod 114. And at this time, the anti-slip bottom pad 115 will be in close contact with the ground. Subsequently, the user can release the corresponding two transfer push rods 114 in sequence, so that the first spring 112 can drive the corresponding transverse slide bar 18 to reset through the first fixing ring 111, and further drive the corresponding U-shaped positioning block 19 to reset, and further enable the U-shaped positioning block 19 to be inserted into another corresponding positioning slot 110.
[0039] Step 2: The user can successively turn the two positioning bolts 35 until the positioning bolts 35 are separated from the corresponding positioning slide plates 32, then loosen the positioning bolts 35. After that, the user can arbitrarily rotate one of the driving rotating rods 212, which can drive the corresponding driving rotating wheel 211 to rotate, and then drive the double-headed screw rod 210 to rotate. While the double-headed screw rod 210 is rotating, it can cooperate with the use of the driving threaded holes 29 to drive the two driving lifting blocks 28 to move in opposite directions, so as to drive the corresponding vertical connecting plates 23 to move in opposite directions through the side connecting cross plates 27, and can cooperate with the use of the first U-shaped block 21 and the second U-shaped block 25 to synchronously rotate the first rotating plate 22 and the second rotating plate 24, so that the double-headed screw rod 210, the vertical connecting plates 23 and the horizontal lifting plates 26 can be synchronously lifted, and then drive the steam humidifier body 4 to move upward. While the double-headed screw rod 210 is moving upward, it will drive the positioning slide plate 32 to move upward through the rotating collar 33. When the steam humidifier body 4 moves upward to an appropriate height, stop rotating the corresponding driving rotating rod 212. Then the user can reversely turn the two positioning bolts 35 until the positioning bolts 35 are again in close contact with the corresponding positioning slide plates 32;
[0040] Step 3: The user can hold the two driving sleeves 55 simultaneously and move the two driving sleeves 55 in opposite directions, which can drive the corresponding positioning plug posts 56 to move and compress the corresponding second springs 58. When the positioning plug posts 56 are separated from the corresponding positioning sockets 57, the user can rotate the two driving sleeves 55 simultaneously, which can drive the corresponding side connecting rotating rods 53 to rotate, and then drive the steam spraying collar 42 and the steam guiding vanes 43 to rotate. When the steam spraying collar 42 and the steam guiding vanes 43 are rotated to an appropriate angle, loosen the two driving sleeves 55 in sequence. Then the corresponding second springs 58 will drive the corresponding positioning plug posts 56 to reset through the driving sleeves 55, so that the positioning plug posts 56 can be inserted into another corresponding positioning socket 57. After that, the user can turn on the steam humidifier body 4 to perform the humidifying operation.
[0041] Obviously, those skilled in the art can make various changes and modifications to the present invention without departing from the spirit and scope of the present invention. Thus, if these modifications and variations of the present invention fall within the scope of the claims of the present invention and their equivalent technologies, the present invention is also intended to include these changes and modifications.
Claims
1. A steam humidifier device for avoiding high-temperature scalding, comprising a transfer mechanism (1), characterized in that: An elevating mechanism (2) is fixedly installed inside the upper end of the transfer mechanism (1), and a positioning mechanism (3) that cooperates with the elevating mechanism (2) is provided on the transfer mechanism (1). A steam humidifier body (4) is fixedly installed on the side of the elevating mechanism (2) away from the positioning mechanism (3). A steam guide pipe (41) is fixedly installed at the upper end of one side of the steam humidifier body (4), and a steam spraying collar (42) is fixedly connected to the end of the steam guide pipe (41) away from the steam humidifier body (4). A steam guide vane (43) is fixedly inserted inside the steam spraying collar (42). An auxiliary mechanism (5) that cooperates with the steam spraying collar (42) is provided on the steam humidifier body (4). The transfer mechanism (1) includes a transfer bottom plate (11). Self-locking universal wheels (12) are fixedly installed at the four corners of the bottom end of the transfer bottom plate (11). Symmetrically arranged L-shaped support plates (13) are integrally formed at both ends of the transfer bottom plate (11). An installation through slot (14) is formed through the L-shaped support plate (13), and an L-shaped sliding plate (15) is slidably clamped inside the installation through slot (14). A positioning cross plate (16) is fixedly installed between the adjacent ends of the L-shaped sliding plates (15) close to the transfer bottom plate (11). An installation through hole (17) is formed through the end of the L-shaped sliding plate (15) away from the positioning cross plate (16). A transverse sliding rod (18) is slidably inserted inside the installation through hole (17). The end of the transverse sliding rod (18) away from the steam humidifier body (4) is fixedly connected to a U-shaped positioning block (19). Symmetrically distributed positioning slots (110) are formed at the end of the L-shaped support plate (13) away from the transfer bottom plate (11), and the U-shaped positioning block (19) can be slidably inserted inside the positioning slots (110). A first fixing ring (111) is fixedly sleeved on the end of the transverse sliding rod (18) close to the steam humidifier body (4). A first spring (112) is fixedly installed on the side of the first fixing ring (111) away from the steam humidifier body (4). The first spring (112) is movably sleeved on the transverse sliding rod (18), and the end of the first spring (112) away from the first fixing ring (111) is fixedly connected to the L-shaped sliding plate (15).
2. The steam humidifier device for avoiding high-temperature scalding according to claim 1, characterized in that, A side connection support column (113) is fixedly installed in the middle of the side of the U-shaped positioning block (19) away from the steam humidifier body (4). A transfer push rod (114) is fixedly connected to the end of the side connection support column (113) away from the U-shaped positioning block (19). An anti-slip pattern is covered on the outer wall of the transfer push rod (114).
3. The steam humidifier device for avoiding high-temperature scalding according to claim 2, wherein, An anti-slip bottom pad (115) is fixedly connected to the side of the positioning cross plate (16) away from the steam humidifier body (4). Anti-slip protrusions are integrally formed on the side of the anti-slip bottom pad (115) away from the positioning cross plate (16) in an array distribution.
4. The steam humidifier device for avoiding high-temperature scalding according to claim 3, characterized in that, The lifting mechanism (2) includes a first U-shaped block (21), the first U-shaped block (21) is fixedly installed at both ends of the transfer bottom plate (11) close to the steam humidifier body (4), and the first U-shaped block (21) is of a symmetrical structure. A first rotating plate (22) is rotatably inserted inside the first U-shaped block (21), and a vertical connecting plate (23) is rotatably sleeved at one end of the first rotating plate (22) away from the first U-shaped block (21). A second rotating plate (24) is rotatably inserted at one end of the vertical connecting plate (23) away from the transfer bottom plate (11), and a second U-shaped block (25) is rotatably sleeved at one end of the second rotating plate (24) away from the vertical connecting plate (23). The top end of the second U-shaped block (25) is fixedly connected with a transverse lifting plate (26), and the steam humidifier body (4) is fixedly installed on the transverse lifting plate (26). Side connecting transverse plates (27) are fixedly installed on the opposite sides of the vertical connecting plate (23), and a driving lifting block (28) is fixedly installed between adjacent side connecting transverse plates (27). A driving threaded hole (29) is formed through the middle of the driving lifting block (28), and a double-headed screw rod (210) is threadedly inserted into the two driving threaded holes (29).
5. The steam humidifier device for preventing high-temperature scalding according to claim 4, characterized in that, Both ends of the double-headed screw rod (210) are fixedly connected with driving rotating wheels (211), and driving rotating rods (212) are rotatably inserted on the driving rotating wheels (211).
6. The steam humidifier device for avoiding high-temperature scalding according to claim 5, characterized in that, The positioning mechanism (3) includes a positioning sleeve (31). Installation through holes (116) are formed through both ends of the transfer bottom plate (11), and the positioning sleeve (31) is fixedly inserted into the installation through holes (116). A positioning sliding plate (32) is slidably inserted into the inner cavity of the positioning sleeve (31), and a rotating collar (33) is integrally formed at one end of the positioning sliding plate (32) away from the transfer bottom plate (11). The rotating collar (33) is rotatably sleeved at the end of the double-headed screw rod (210), and a side connecting fixed block (34) is integrally formed at one end of the positioning sleeve (31) close to the double-headed screw rod (210). A positioning bolt (35) is threadedly inserted into the side connecting fixed block (34), and the opposite ends of the positioning bolt (35) can be in close contact with the outer wall of the positioning sliding plate (32).
7. The steam humidifier device for avoiding high-temperature scalding according to claim 6, characterized in that, The auxiliary mechanism (5) includes a protective sleeve frame (51), the protective sleeve frame (51) is fixedly connected to the steam humidifier body (4), and the protective sleeve frame (51) is fixedly sleeved outside the steam guide pipe (41) and the steam spraying sleeve ring (42). An air outlet perforation (52) for the cooperation of the steam spraying sleeve ring (42) and the steam guide vane (43) is formed on the protective sleeve frame (51), and the air outlet perforations (52) are arranged in an array. Symmetrically distributed side connection rotating rods (53) are rotatably inserted on the protective sleeve frame (51), and the relative ends of the side connection rotating rods (53) are fixedly connected to the steam spraying sleeve ring (42). Second fixing rings (54) are fixedly sleeved on the opposite ends of the side connection rotating rods (53), and a driving sleeve (55) is slidably sleeved outside the second fixing rings (54). The driving sleeve (55) is slidably sleeved on the side connection rotating rods (53), and positioning insertion columns (56) symmetrically arranged are fixedly installed on the opposite sides of the driving sleeve (55). Positioning insertion holes (57) arranged in an array are formed on both sides of the protective sleeve frame (51), and the positioning insertion columns (56) can be slidably inserted into the positioning insertion holes (57). Second springs (58) are fixedly installed on the opposite sides of the second fixing rings (54). The second springs (58) are movably sleeved outside the side connection rotating rods (53), and the ends of the second springs (58) away from the second fixing rings (54) are fixedly connected to the inner walls of the driving sleeves (55).
8. The steam humidifier device for avoiding high-temperature scalding according to claim 7, characterized in that, Symmetrically arranged guiding sliders (59) are integrally formed on the second fixing rings (54), and guiding sliding grooves (510) for the cooperation of the guiding sliders (59) are formed on the driving sleeves (55). The guiding sliding grooves (510) are symmetrically distributed, and the guiding sliders (59) are slidably inserted into the guiding sliding grooves (510).
9. A method of using a steam humidifier device for avoiding high-temperature scalding as described in claim 8, characterized in that Comprising the following steps: Step 1: The user holds two transfer push rods (114) on either side simultaneously and pushes them, so as to drive the U-shaped positioning block (19) to move through the side connection strut (113). Furthermore, it can drive the transfer bottom plate (11) to move through the L-shaped support plate (13) and in cooperation with the use of the self-locking universal wheels (12). Further still, it can drive the steam humidifier body (4) to move through the lifting mechanism (2). Stop pushing the transfer push rods (114) until it is moved to a suitable position. Subsequently, the user locks the four self-locking universal wheels (12) respectively and holds two adjacent transfer push rods (114) in turn to move to the side away from the corresponding L-shaped support plate (13), so as to drive the corresponding U-shaped positioning block (19) to move. Furthermore, it can drive the corresponding first fixing ring (111) to move through the horizontal slide bar (18). Further still, it can compress the corresponding first spring (112). And when the U-shaped positioning block (19) is separated from the corresponding positioning slot (110), the user presses down the corresponding transfer push rod (114), so as to drive the U-shaped positioning block (19) to move downward through the side connection strut (113). Furthermore, it can drive the L-shaped sliding plate (15) to move downward through the horizontal slide bar (18). Further still, it can drive the positioning cross plate (16) and the anti-slip bottom pad (115) to move downward. Stop pressing down the corresponding transfer push rod (114) when the U-shaped positioning block (19) moves to another corresponding positioning slot (110). And at this time, the anti-slip bottom pad (115) will be in close contact with the ground. Subsequently, the user releases the corresponding two transfer push rods (114) in turn, so that the first spring (112) can drive the corresponding horizontal slide bar (18) to reset through the first fixing ring (111). Furthermore, it can drive the corresponding U-shaped positioning block (19) to reset. Further still, it can make the U-shaped positioning block (19) insert into another corresponding positioning slot (110). Step 2: The user sequentially turns the two positioning bolts (35) until the positioning bolts (35) are separated from the corresponding positioning sliding plates (32), and then releases the positioning bolts (35). After that, the user arbitrarily rotates one of the driving rotating rods (212), which can drive the corresponding driving rotating wheel (211) to rotate, and then can drive the double-headed screw rod (210) to rotate. At the same time when the double-headed screw rod (210) rotates, it can cooperate with the use of the driving threaded holes (29) to drive the two driving lifting blocks (28) to move in opposite directions, so as to drive the corresponding vertical connecting plate (23) to move in opposite directions through the side connecting cross plate (27). And it can cooperate with the use of the first U-shaped block (21) and the second U-shaped block (25) to make the first rotating plate (22) and the second rotating plate (24) rotate synchronously, so as to make the double-headed screw rod (210), the vertical connecting plate (23) and the horizontal lifting plate (26) move upward synchronously, and then can drive the steam humidifier body (4) to move upward. At the same time when the double-headed screw rod (210) moves upward, it will drive the positioning sliding plate (32) to move upward through the rotating collar (33). When the steam humidifier body (4) moves upward to an appropriate height, stop rotating the corresponding driving rotating rod (212). Then the user reversely turns the two positioning bolts (35) until the positioning bolts (35) are again in close contact with the corresponding positioning sliding plates (32); Step 3: The user holds the two driving sleeves (55) simultaneously and moves the two driving sleeves (55) in opposite directions, which can drive the corresponding positioning insertion posts (56) to move and compress the corresponding second springs (58). And when the positioning insertion posts (56) are separated from the corresponding positioning insertion holes (57), the user rotates the two driving sleeves (55) simultaneously, which can drive the corresponding side connecting rotating rods (53) to rotate, and then can drive the steam spraying collar (42) and the steam guiding vanes (43) to rotate. Until the steam spraying collar (42) and the steam guiding vanes (43) are rotated to an appropriate angle, release the two driving sleeves (55) in sequence. Then the corresponding second springs (58) will drive the corresponding positioning insertion posts (56) to reset through the driving sleeves (55), so that the positioning insertion posts (56) can be inserted into another corresponding positioning insertion holes (57). After that, the user turns on the steam humidifier body (4) to perform the humidification operation.
Citation Information
Patent Citations
Disinfection and humidification integrated device
CN210717866U