A wind adjustable ironing board

By using an adjustable-wind ironing board design, combined with a rocker arm assembly and multiple suction devices, the problems of low wind power adjustment efficiency and low water vapor recovery efficiency of existing ironing boards are solved, thereby improving ironing efficiency and water vapor recovery efficiency and adapting to different ironing needs.

CN116516658BActive Publication Date: 2026-07-21江苏威士智能装备有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
江苏威士智能装备有限公司
Filing Date
2023-04-13
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

Existing ironing tables have low efficiency in adjusting airflow during ironing, making it impossible to adjust in real time according to ironing needs. Furthermore, their steam recovery efficiency is low, which is particularly difficult to handle when ironing large areas.

Method used

An adjustable ironing board was designed. Through the combination of a rocker arm assembly and multiple suction devices, the wind power and suction function can be adjusted in real time. The board includes a rocker arm assembly, an ironing assembly, a suction assembly one, and a suction assembly two. It uses a motor and a spiral fan to generate negative pressure, combined with a rotatable arc plate and a sealing box, to achieve the switching and adjustment of multiple suction modes.

Benefits of technology

It enables flexible adjustment of wind power and suction, improves ironing efficiency and water vapor recovery efficiency, can adapt to different ironing needs, ensures that the fabric fits snugly on the breathable plate, and expands the absorption range of water vapor.

✦ Generated by Eureka AI based on patent content.

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    Figure CN116516658B_ABST
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Abstract

The application discloses a wind-adjustable ironing table, which comprises a rocker assembly and an ironing assembly. The rocker assembly comprises a large arm and a connecting part. One end of the large arm is fixed with a butt joint pipe. The butt joint pipe is connected with an arc-shaped plate away from one end of the large arm. The large arm is internally hollow. One end of the large arm away from the connecting part is provided with an opening. The inside of the large arm is in communication with the inside of the butt joint pipe. The inside of the connecting part is hollow. The butt joint pipe is inserted into the inside of the connecting part. The ironing assembly comprises a containing part and a blocking part. The connecting part is fixed to the side surface of the containing part. Ventilation holes one are formed in the bottom wall of the containing part. The blocking part comprises a fixing table, a supporting part and a blocking box. The fixing table is fixed to the inner side wall of the containing part. The wind can be adjusted in real time. According to the requirement, a plurality of air suction devices can be opened on the ironing table. The ironing table has a plurality of air suction functions and can process different production requirements.
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Description

Technical Field

[0001] This invention relates to the field of ironing table technology, specifically to an ironing table with adjustable airflow. Background Technology

[0002] An ironing board is a device used to iron fabric flat. The fabric is placed on it and ironed flat, and the steam generated during the ironing process is also absorbed by the ironing board.

[0003] Most existing ironing tables control the airflow by changing the output power of the airflow drive device to meet different ironing needs. This method requires constant adjustment of the airflow drive device's output power, resulting in limited efficiency improvement. It also cannot make real-time adjustments based on different ironing requirements, thus the overall ironing efficiency of the ironing table is low.

[0004] In addition, existing ironing tables generally only have one set of suction devices. When the area of ​​the fabric being ironed is large, the range of water vapor generated also increases. A single set of suction devices is insufficient to maintain the recovery of water vapor, resulting in low water vapor recovery efficiency for such ironing tables. Summary of the Invention

[0005] Based on the aforementioned problems in the existing technology, the purpose of this invention is to provide an ironing table with adjustable airflow, which can adjust the airflow in real time and also activate multiple suction devices on the ironing table as needed, so that the ironing table has multiple suction functions and can handle different production needs.

[0006] The technical solution adopted by this invention to solve its technical problem is as follows: an ironing table with adjustable wind power, comprising a rocker arm assembly and an ironing assembly. The rocker arm assembly includes a main arm and a connecting part. One end of the main arm is fixed with a connecting tube. The end of the connecting tube away from the main arm is connected to an arc-shaped plate. The main arm is hollow inside. An opening is provided at the end of the main arm away from the connecting part. The interior of the main arm communicates with the interior of the connecting tube. The connecting part is hollow inside, and the connecting tube is inserted into the interior of the connecting part. The ironing assembly includes a receiving part and a sealing part. The connecting part is fixed to the side of the receiving part. A ventilation hole is provided on the bottom wall of the receiving part. The sealing part includes a fixing platform, a support part, and a sealing box. The fixing platform is fixed to the inner side wall of the receiving part. The interior of the fixing platform is hollow and communicates with the interior of the connecting part. The support part includes a pair of supports. The support rod and push plate are provided. The support rod passes through the side wall of the fixed platform. The end of the support rod away from the fixed platform is fixedly connected to the push plate. The end of the support rod away from the push plate is provided with a connecting rod. Both support rods are fixed to the connecting rod. The sealing box is provided on the bottom wall of the receiving part and seals the ventilation hole. The sealing box includes a box body, a first rotating shaft, two extension pieces, a baffle, a second rotating shaft, and an extension part. The first rotating shaft passes through the two side walls of the box body. The extension piece is provided at the end of the first rotating shaft. The baffle is fixed to the side of the second rotating shaft. The second rotating shaft passes through the two side walls of the box body. The baffle seals the opening of the box body. One end of the second rotating shaft is provided with an extension part. One end of the extension part is rotatably connected to one end of the extension piece. The end of the extension piece away from the extension part is rotatably connected to one end of the push plate.

[0007] Furthermore, the support includes two sleeves and two elastic elements. The sleeves are fitted onto the support rod and one end abuts against the inner wall of the fixed platform. The elastic elements are fitted onto the support rod and one end is connected to the sleeves.

[0008] Furthermore, the baffle, the second rotating shaft, and the first extension are each provided in multiple sets. The sealing box includes a series bar. The multiple sets of the second rotating shafts are arranged parallel to each other and pass through the two side walls of the box body. The series bar is rotatably connected to the multiple sets of the first extension.

[0009] Furthermore, the rocker arm assembly includes a forearm, one end of which is rotatably connected to one end of the upper arm. The forearm is hollow inside and has multiple small holes.

[0010] Furthermore, the ironing assembly includes a grid plate and a breathable plate, the grid plate being fixed inside the receiving part and the breathable plate being fixed to the opening end of the receiving part.

[0011] An ironing table with adjustable airflow includes a machine base, a ventilation duct, a first suction component, and a second suction component. A partition is fixed inside the machine base, and both the first and second suction components are fixed to the partition. A perforated groove is formed on the side wall of the machine base. One end of the ventilation duct is fixed to the side wall of the machine base, and the interior of the ventilation duct communicates with the interiors of the first and second suction components through the perforated groove. The ironing components are fixed to the machine base.

[0012] Furthermore, the suction assembly includes a duct, a spiral fan, a motor, and a blade. The spiral fan is fixed to the partition and has an air duct opening. The duct is fixed to the spiral fan and its interior is connected to the spiral fan interior through the air duct opening. The blade is located inside the spiral fan. The input end of the motor is fixed to the partition, and its output end is connected to the blade. The spiral fan has an air outlet on one side and is fixed to the machine base. The air outlet communicates with the ventilation duct interior through a perforated groove. The duct is connected to the ventilation hole on the bottom wall of the receiving part.

[0013] Furthermore, the second suction assembly includes a second air duct, a second spiral fan, a second motor, and a second blade. A second ventilation hole is provided on the bottom wall of the receiving portion. The second spiral fan is fixed to the partition plate and has a second air duct opening. The second air duct is fixed to the second spiral fan, and the interior of the second air duct communicates with the interior of the second spiral fan through the second air duct opening. The second blade is located inside the second spiral fan. The input end of the second motor is fixed to the partition plate, and the output end of the second motor is connected to the second blade. A second air outlet is provided on one side of the second spiral fan, and the second air outlet communicates with the interior of the ventilation duct through a perforated groove. The second air duct is connected to the second ventilation hole on the bottom wall of the receiving portion.

[0014] Furthermore, the second suction assembly includes a switching assembly, which includes a circular plate and a rotating rod. The two ends of the rotating rod penetrate the side wall of the second air duct, and the circular plate is fixed to the side of the rotating rod.

[0015] Furthermore, the switching assembly includes a fixing part, a strip slide rail, a turntable, a mounting plate, and a motor. The fixing part is fixed to the outer wall of the second air duct. One end of the strip slide rail is fixedly connected to the rotating rod. The mounting plate is fixedly connected to the fixing part. The mounting plate has a central through hole and multiple edge through holes, with the multiple edge through holes arranged circumferentially along the central through hole. The motor has multiple bosses, which are distributed corresponding to the edge through holes. The motor is connected to the mounting plate by inserting the bosses into the edge through holes. The center of the turntable is fixedly connected to the output end of the motor. A circular slider is provided on the end face of the turntable away from the mounting plate. The circular slider is located at a non-central position on the end face of the mounting plate and is embedded inside the strip slide rail.

[0016] Compared with the prior art, the beneficial effects achieved by the present invention are:

[0017] 1. Connect the motor to the power supply. Its output end drives the blade to rotate. The spiral fan generates negative pressure inside. Through the air duct, ventilation hole, box, fixed platform, and connecting part, suction is generated inside the upper arm. The upper arm and lower arm are connected. Therefore, suction is generated in the small hole on the lower arm. At this time, the fabric to be ironed can be placed on the breathable plate. The water vapor generated by ironing will be absorbed by the small hole on the lower arm. The absorbed water vapor is finally discharged outside the ironing table through the air outlet of the spiral fan, the hollow groove on the machine platform, and the ventilation channel.

[0018] 2. By keeping the upper arm stationary and only rotating the forearm, the forearm can be rotated to different positions above the breathable plate. This method of changing the position of the forearm allows for efficient recovery of water vapor generated by the fabric being ironed at different positions on the breathable plate. In addition, rotating the upper arm can further expand the range of motion of the forearm and improve the efficiency of water vapor recovery.

[0019] 3. When the main arm rotates, the connecting pipe rotates accordingly, and the arc plate also rotates accordingly. When the arc plate rotates, it will squeeze the connecting rod, and the support rod will slide forward in the fixed platform. At this time, the elastic element is compressed, the push plate is pushed, which will drive the extension piece to rotate around the first pivot. The extension piece drives the extension part to rotate around the second pivot. At this time, the baffle flips, the box is opened, and the air duct can be connected to the inner cavity through the ventilation hole and the opened box. If the motor is connected to the power, its output end drives the blade to rotate, and the spiral fan generates negative pressure inside. This negative pressure will cause the small holes on the forearm and the ventilation plate to generate suction. Both suction forces can recover the water vapor generated by ironing the fabric, and the suction generated on the ventilation plate can make the fabric fit more smoothly on the ventilation plate. When the main arm is rotated, the pressure on the elastic element disappears, and it will push the connecting rod, support rod and push plate to reset.

[0020] 4. After the curved plate rotates, it will be located at the connection between the connecting part and the receiving part, which will reduce the ventilation opening diameter between the connecting part and the fixed platform. At this time, the wind force in the channel through which the wind passes will be significantly reduced, while the wind force in the channel through which the wind force is generated at the small hole on the forearm will be significantly increased. The large area of ​​the breathable plate can achieve a wide range of water vapor absorption effect and ensure that the fabric fits more closely to the surface of the breathable plate.

[0021] 5. If simply connecting motor one is insufficient to generate enough suction to recover the water vapor produced during ironing, motor two can be connected. Its output will drive blade two to rotate, generating negative pressure in the spiral fan two. At this time, if motor three is connected and its output is controlled to rotate at a certain angle, it will drive the circular slider on the turntable to rotate at a certain angle. The circular slider rotates with the turntable at a certain angle and slides a certain distance in the strip rail, causing the strip rail to rotate accordingly. The strip rail drives the circular plate to rotate through the rotating rod, causing the air duct two to open. At this time, the spiral fan two will connect with the inside of the receiving part through the air duct two and ventilation hole two. The negative pressure generated inside the spiral fan two will increase the suction at the breathable plate. The resulting suction can enhance the water vapor recovery effect and also ensure that the fabric fits better on the breathable plate.

[0022] 6. By controlling the rotation angle of the upper arm, the pressing depth of the arc plate on the connecting rod can be controlled, thereby changing the sliding distance of the support rod. Ultimately, the rotation angle of the baffle is controlled, thereby changing the suction effect generated at the ventilation plate to adapt to different ironing needs. By controlling the rotation angle of the output end of motor three, the rotation angle of the circular plate can also be controlled, thereby controlling the opening size of the air blower two, thereby changing the suction effect generated at the ventilation plate to adapt to different ironing needs. Attached Figure Description

[0023] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0024] In the picture:

[0025] Figure 1 This is a three-dimensional schematic diagram of the ironing table in this invention;

[0026] Figure 2 This is an exploded schematic diagram of the ironing table in this invention;

[0027] Figure 3 yes Figure 1 A three-dimensional schematic diagram of the machine shown;

[0028] Figure 4 yes Figure 1 A three-dimensional schematic diagram of the rocker arm assembly shown;

[0029] Figure 5 yes Figure 1 An exploded view of the rocker arm assembly shown;

[0030] Figure 6 yes Figure 1 A three-dimensional schematic diagram of the ironing components shown;

[0031] Figure 7 yes Figure 1 An exploded view of the ironing assembly shown;

[0032] Figure 8 yes Figure 6 A three-dimensional schematic diagram of the accommodating part;

[0033] Figure 9 yes Figure 7 A three-dimensional schematic diagram of the sealing part in the middle;

[0034] Figure 10 yes Figure 7 A schematic diagram of the explosion of the sealing section;

[0035] Figure 11 yes Figure 9 A three-dimensional schematic diagram of the support component;

[0036] Figure 12 yes Figure 9 An explosion diagram of the sealing box in the middle;

[0037] Figure 13 yes Figure 2 A three-dimensional schematic diagram of the suction component 1 in the middle;

[0038] Figure 14 yes Figure 2 An exploded schematic diagram of the suction component 1 in the middle;

[0039] Figure 15 yes Figure 2 A three-dimensional schematic diagram of the suction component two in the middle;

[0040] Figure 16 yes Figure 2 An explosion diagram of the suction component 2 in the middle;

[0041] Figure 17 yes Figure 16 A three-dimensional schematic diagram of some of the structures in the diagram;

[0042] Figure 18 yes Figure 17 An exploded view of the structure in the diagram;

[0043] In the picture:

[0044] 1. Machine tool;

[0045] 11. Partition;

[0046] 110. Hollowed-out groove;

[0047] 2. Ventilation duct;

[0048] 3. Rocker arm assembly;

[0049] 31. Forearm; 32. Upper arm; 33. Connecting part;

[0050] 310. Small hole;

[0051] 321. Takeover;

[0052] 3211. Curved plate;

[0053] 4. Ironing components;

[0054] 41. Ventilation panel; 42. Reception section;

[0055] 4201, Ventilation Hole 1; 4202, Ventilation Hole 2;

[0056] 43. Sealing section;

[0057] 431. Fixing platform; 432. Support unit; 433. Sealing box;

[0058] 4321. Connecting rod; 4322. Support rod; 4323. Elastic element; 4324. Sleeve; 4325. Push plate;

[0059] 4331. Box body; 4332. Rotating shaft one; 4333. Extension piece; 4334. Baffle; 4335. Rotating shaft two; 4336. Extension part one; 4337. Connecting bar;

[0060] 44. Grating;

[0061] 5. Suction component one;

[0062] 51. Air duct, 1; 52. Spiral fan, 1; 53. Motor, 1; 54. Blade, 1;

[0063] 520. One air duct inlet; 521. One air outlet;

[0064] 6. Suction Component Two;

[0065] 61. Second air duct; 62. Second spiral fan; 63. Second motor; 64. Second blade; 65. Switching assembly;

[0066] 620. Two air duct openings; 621. Two air outlets;

[0067] 651. Fixing part; 652. Circular plate; 653. Rotating rod; 654. Strip slide rail; 655. Turntable; 656. Mounting plate; 657. Motor 3;

[0068] 6551, Circular slider;

[0069] 6561. Center perforation; 6562. Edge perforation;

[0070] 6571. Protrusion. Detailed Implementation

[0071] The present invention will now be described in detail with reference to the accompanying drawings. These drawings are simplified schematic diagrams, illustrating only the basic structure of the invention, and therefore only show the components relevant to the invention.

[0072] Please see Figures 1-18 The present invention provides a technical solution: an ironing table with adjustable wind power, comprising a table 1, a ventilation duct 2, a rocker arm assembly 3, an ironing assembly 4, a first suction assembly 5, and a second suction assembly 6.

[0073] The machine base 1 has a partition 11 fixed inside, and a hollow groove 110 is opened on the side wall of the machine base 1.

[0074] One end of the ventilation duct 2 is fixed to the side wall of the machine base 1.

[0075] The rocker arm assembly 3 includes a forearm 31, a main arm 32, and a connecting part 33.

[0076] One end of the forearm 31 is rotatably connected to one end of the upper arm 32. The interior of the forearm 31 is hollow, and multiple small holes 310 are provided on the forearm 31.

[0077] One end of the boom 32 is fixed with a connecting pipe 321, and the end of the connecting pipe 321 away from the boom 32 is connected with an arc plate 3211. The inside of the boom 32 is hollow.

[0078] The boom 32 is rotatably connected to the connecting part 33. The end of the boom 32 away from the connecting part 33 has an opening, and the interior of the boom 32 is connected to the interior of the connecting pipe 321.

[0079] The connecting tube 321 is inserted into the connecting part 33, and the interior of the connecting part 33 is hollow.

[0080] The ironing assembly 4 includes a breathable plate 41, a receiving part 42, a sealing part 43, and a grid plate 44.

[0081] The vent plate 41 is fixed to the open end of the receiving part 42.

[0082] Ventilation hole 4201 is provided on the bottom wall of the receiving part 42, ventilation hole 4202 is provided on the bottom wall of the receiving part 42, and the connecting part 33 is fixed to the side of the receiving part 42.

[0083] The sealing part 43 includes a fixing platform 431, a support part 432, and a sealing box 433.

[0084] The fixing platform 431 is fixed to the inner wall of the receiving part 42. The interior of the fixing platform 431 is hollow and communicates with the interior of the connecting part 33.

[0085] The support 432 includes a pair of struts 4322, two elastic elements 4323, two sleeves 4324 and a push plate 4325.

[0086] The strut 4322 passes through the side wall of the fixed platform 431. The end of the strut 4322 away from the fixed platform 431 is fixedly connected to the push plate 4325. The end of the strut 4322 away from the push plate 4325 is provided with a connecting rod 4321. Both struts 4322 are fixed to the connecting rod 4321. The sleeve 4324 is fitted on the strut 4322 and one end abuts against the inner wall of the fixed platform 431. The elastic element 4323 is fitted on the strut 4322 and one end is connected to the sleeve 4324.

[0087] The sealing box 433 is located on the bottom wall of the receiving part 42 and seals the ventilation hole 4201.

[0088] The sealing box 433 includes a box body 4331, a first rotating shaft 4332, two extension pieces 4333, a baffle 4334, a second rotating shaft 4335, and an extension section 4336.

[0089] A pivot 4332 passes through both side walls of the box 4331. An extension piece 4333 is located at the end of the pivot 4332. A baffle 4334 is fixed to the side of a pivot 4335. The pivot 4335 passes through both side walls of the box 4331. The baffle 4334 seals the opening of the box 4331. One end of the pivot 4335 has an extension 4336. One end of the extension 4336 is connected to one end of the extension piece 4333. The extension piece 4333 is rotatably connected to the end of the extension part 4336 away from the extension part 4336. The baffle 4334, the second rotating shaft 4335, and the extension part 4336 are all provided in multiple sets. The sealing box 433 includes a connecting bar 4337. The multiple sets of the second rotating shaft 4335 are arranged parallel to each other and pass through the two side walls of the box body 4331. The connecting bar 4337 and the multiple sets of extension parts 4336 are rotatably connected.

[0090] The grid plate 44 is fixed inside the receiving part 42.

[0091] Both suction assembly 5 and suction assembly 6 are fixed on partition 11.

[0092] The interior of the ventilation duct 2 is connected to the interior of the first suction component 5 and the second suction component 6 through the hollow groove 110, and the ironing component 4 is fixed on the machine base 1.

[0093] The suction assembly 5 includes a duct 51, a spiral fan 52, a motor 53, and a blade 54.

[0094] A spiral fan 52 is fixed on a partition plate 11. A duct opening 520 is provided on the spiral fan 52. A duct 51 is fixed on the spiral fan 52. The interior of the duct 51 is connected to the interior of the spiral fan 52 through the duct opening 520. A blade 54 is located inside the spiral fan 52. The input end of the motor 53 is fixed to the partition plate 11. The output end of the motor 53 is connected to the blade 54. An air outlet 521 is provided on one side of the spiral fan 52. The air outlet 521 is fixed to the machine base 1. The air outlet 521 is connected to the interior of the ventilation duct 2 through a hollow groove 110. The duct 51 is connected to the ventilation hole 4201 on the bottom wall of the receiving part 42.

[0095] The suction assembly 26 includes a duct 261, a spiral fan 262, a motor 263, a blade 264, and a switching assembly 65.

[0096] Spiral blower 2 62 is fixed on partition plate 11. Spiral blower 2 62 has an air duct opening 2 620. Air duct 2 61 is fixed on spiral blower 2 62. The interior of air duct 2 61 is connected to the interior of spiral blower 2 62 through air duct opening 2 620. Blade 2 64 is located inside spiral blower 2 62. The input end of motor 2 63 is fixed to partition plate 11. The output end of motor 2 63 is connected to blade 2 64. One side of spiral blower 2 62 has an air outlet 2 621. The air outlet 2 621 is connected to the interior of ventilation duct 2 through hollow groove 110. Air duct 2 61 is connected to ventilation hole 2 4202 on the bottom wall of receiving part 42.

[0097] The switching assembly 65 includes a fixed part 651, a circular plate 652, a rotating rod 653, a strip slide rail 654, a turntable 655, a mounting plate 656, and a motor 657.

[0098] The fixing part 651 is fixed to the outer wall of the second air duct 61. The two ends of the rotating rod 653 pass through the side wall of the second air duct 61. The circular plate 652 is fixed to the side of the rotating rod 653. One end of the strip slide rail 654 is fixedly connected to the rotating rod 653. The mounting plate 656 is fixedly connected to the fixing part 651. The mounting plate 656 has a central through hole 6561 and multiple edge through holes 6562. The multiple edge through holes 6562 are arranged around the circumference of the central through hole 6561. The third motor 657 has multiple bosses 65. 71. Multiple bosses 6571 are distributed corresponding to the edge through holes 6562. The motor 657 is connected to the mounting plate 656 by inserting the bosses 6571 into the edge through holes 6562. The center of the turntable 655 is fixedly connected to the output end of the motor 657. A circular slider 6551 is provided on the end face of the turntable 655 away from the mounting plate 656. The circular slider 6551 is located at a non-center position on the end face of the mounting plate 656. The circular slider 6551 is embedded in the inside of the strip rail 654.

[0099] When motor 53 is connected to power, its output drives blade 54 to rotate. Negative pressure is generated inside the spiral fan 52. This negative pressure is generated inside the upper arm 32 through the air duct 51, ventilation hole 4201, box 4331, fixed platform 431, and connecting part 33. The upper arm 32 and the lower arm 31 are connected, so suction is generated in the small hole 310 on the lower arm 31. At this time, the fabric to be ironed can be placed on the breathable plate 41. The water vapor generated by ironing will be absorbed by the small hole 310 on the lower arm 31. The absorbed water vapor is finally discharged outside the ironing table through the air outlet 521 of the spiral fan 52, the hollow groove 110 on the machine base 1, and the ventilation duct 2.

[0100] During this process, by keeping the upper arm 32 stationary and only rotating the lower arm 31, the lower arm 31 can be rotated to different positions above the breathable plate 41. By changing the position of the lower arm 31 in this way, the water vapor generated by the fabric being ironed at different positions on the breathable plate 41 can be efficiently recovered.

[0101] In addition, the range of motion of the forearm 31 can be further expanded by rotating the upper arm 32, thereby improving the water vapor recovery efficiency.

[0102] When the boom 32 rotates, the connecting pipe 321 rotates accordingly, and the arc plate 3211 also rotates accordingly. As the arc plate 3211 rotates, it presses against the connecting rod 4321, causing the support rod 4322 to slide forward in the fixed platform 431. At this time, the elastic element 4323 is compressed, and the push plate 4325 is pushed, which will cause the extension piece 4333 to rotate around the first pivot 4332. The extension piece 4333 causes the extension section 4336 to rotate around the second pivot 4335. At this time, the baffle 4334 flips, and the box... When body 4331 is opened, the air duct 51 can connect with the receiving part 42 through the ventilation hole 4201 and the opened box 4331. At this time, if motor 53 is connected to power, its output end drives the blade 54 to rotate, and the spiral fan 52 generates negative pressure. This negative pressure will cause the small hole 310 on the forearm 31 and the breathable plate 41 to generate suction. Both suction forces can recover the water vapor generated by ironing the fabric, and the suction generated on the breathable plate 41 can make the fabric fit more smoothly on the breathable plate 41.

[0103] When the boom 32 is rotated, the pressure on the elastic element 4323 disappears, which will push the connecting rod 4321, the support rod 4322 and the push plate 4325 back to their original positions.

[0104] In addition, after the arc plate 3211 rotates, it will be located at the connection between the connecting part 33 and the receiving part 42, which will reduce the ventilation diameter between the connecting part 33 and the fixed platform 431. At this time, the wind force in the channel through which the wind passes will be significantly reduced, while the wind force in the channel through which the wind force is generated at the small hole 310 on the forearm 31 will be significantly increased. The large area of ​​the breathable plate 41 enables it to achieve a wide range of water vapor absorption effect and ensures that the fabric fits more closely to the surface of the breathable plate 41.

[0105] If simply connecting motor 53 is insufficient to generate enough suction to recover the water vapor produced during ironing, motor 63 can be connected. Its output will drive blade 64 to rotate, generating negative pressure in the spiral fan 62. At this time, if motor 657 is connected and its output is controlled to rotate at a certain angle, it will drive the circular slider 6551 on the turntable 655 to rotate at a certain angle. The circular slider 6551 rotates with the turntable 655 and slides a certain distance in the strip rail 654, causing the strip rail 654 to rotate accordingly. The strip rail 654 drives the circular plate 652 to rotate through the rotating rod 653, causing the air duct 61 to open. At this time, the spiral fan 62 will be connected to the inside of the receiving part 42 through the air duct 61 and the ventilation hole 4202. The negative pressure generated inside the spiral fan 62 will increase the suction at the breathable plate 41. The resulting suction can enhance the water vapor recovery effect and ensure that the fabric fits better on the breathable plate 41.

[0106] By controlling the rotation angle of the upper arm 32, the pressing depth of the arc plate 3211 on the connecting rod 4321 can be controlled, thereby changing the sliding distance of the support rod 4322, and ultimately controlling the rotation angle of the baffle 4334, thereby changing the suction effect generated at the breathable plate 41 to adapt to different ironing needs.

[0107] By controlling the rotation angle of the output end of motor 657, the rotation angle of circular plate 652 can also be controlled, thereby controlling the opening size of air duct 61 and changing the suction effect generated at the ventilation plate 41 to adapt to different ironing needs.

[0108] Based on the above-described preferred embodiments of the present invention, and through the foregoing description, those skilled in the art can make various changes and modifications without departing from the scope of the present invention. The technical scope of this invention is not limited to the contents of the specification, but must be determined according to the scope of the claims.

Claims

1. An ironing table with adjustable airflow, characterized in that: The assembly includes a rocker arm assembly and an ironing assembly. The rocker arm assembly includes a main arm and a connecting part. One end of the main arm is fixed with a connecting tube. The end of the connecting tube away from the main arm is connected to an arc-shaped plate. The main arm is hollow inside. The end of the main arm away from the connecting part has an opening. The interior of the main arm communicates with the interior of the connecting tube. The connecting part is hollow inside, and the connecting tube is inserted into the interior of the connecting part. The ironing assembly includes a receiving part and a sealing part. The connecting part is fixed to the side of the receiving part. A ventilation hole is opened on the bottom wall of the receiving part. The sealing part includes a fixing platform, a support part, and a sealing box. The fixing platform is fixed to the inner side wall of the receiving part. The interior of the fixing platform is hollow and communicates with the interior of the connecting part. The support part includes a pair of support rods and a push plate. The support rods pass through the fixing platform. On the side wall of the platform, the end of the support rod away from the fixed platform is fixedly connected to the push plate. The end of the support rod away from the push plate is provided with a connecting rod. Both support rods are fixed to the connecting rod. The sealing box is provided on the bottom wall of the receiving part and seals the ventilation hole. The sealing box includes a box body, a first rotating shaft, two extension pieces, a baffle, a second rotating shaft, and an extension part. The first rotating shaft passes through the two side walls of the box body. The extension piece is provided at the end of the first rotating shaft. The baffle is fixed to the side of the second rotating shaft. The second rotating shaft passes through the two side walls of the box body. The baffle seals the opening of the box body. One end of the second rotating shaft is provided with an extension part. One end of the extension part is rotatably connected to one end of the extension piece. The end of the extension piece away from the extension part is rotatably connected to one end of the push plate. When the boom rotates, the connecting pipe rotates accordingly, and the arc plate also rotates accordingly. When the arc plate rotates, it will press against the connecting rod. After the arc plate rotates, it will be located at the connection between the connecting part and the receiving part. This will reduce the ventilation opening diameter between the connecting part and the fixed platform. At this time, the wind force in the channel through which the wind passes will be significantly reduced, while the wind force in the channel through which the suction force is generated at the small hole on the forearm will be significantly increased.

2. The ironing table with adjustable airflow according to claim 1, characterized in that: The support includes two sleeves and two elastic elements. The sleeves are fitted onto the support rod and one end abuts against the inner wall of the fixed platform. The elastic elements are fitted onto the support rod and one end is connected to the sleeves.

3. The ironing table with adjustable airflow according to claim 1, characterized in that: The baffle, the second rotating shaft, and the first extension are each provided in multiple sets. The sealing box includes a series bar. The multiple sets of the second rotating shafts are arranged parallel to each other and pass through the two side walls of the box body. The series bar is rotatably connected to the multiple sets of the first extension.

4. The ironing table with adjustable airflow according to claim 1, characterized in that: The rocker arm assembly includes a forearm, one end of which is rotatably connected to one end of the upper arm. The forearm is hollow inside and has multiple small holes.

5. The ironing table with adjustable airflow according to claim 1, characterized in that: The ironing assembly includes a grid plate and a breathable plate. The grid plate is fixed inside the receiving part, and the breathable plate is fixed to the opening end of the receiving part.

6. A wind-adjustable ironing table according to any one of claims 1-5, characterized in that: The machine includes a machine base, a ventilation duct, a first suction assembly, and a second suction assembly. A partition is fixed inside the machine base, and both the first and second suction assemblies are fixed to the partition. A perforated groove is provided on the side wall of the machine base. One end of the ventilation duct is fixed to the side wall of the machine base, and the interior of the ventilation duct is connected to the interior of the first and second suction assemblies through the perforated groove. The ironing assembly is fixed to the machine base.

7. The ironing table with adjustable airflow according to claim 6, characterized in that: The suction assembly includes a duct, a spiral fan, a motor, and a blade. The spiral fan is fixed to the partition and has an air duct opening. The duct is fixed to the spiral fan and its interior is connected to the spiral fan's interior through the air duct opening. The blade is located inside the spiral fan. The input end of the motor is fixed to the partition, and its output end is connected to the blade. The spiral fan has an air outlet on one side, which is fixed to the machine base and connected to the ventilation duct through a perforated groove. The duct is connected to the ventilation hole on the bottom wall of the receiving part.

8. The ironing table with adjustable airflow according to claim 6, characterized in that: The second suction assembly includes a second air duct, a second spiral fan, a second motor, and a second blade. A second ventilation hole is provided on the bottom wall of the receiving part. The second spiral fan is fixed to the partition plate and has a second air duct opening. The second air duct is fixed to the second spiral fan, and the interior of the second air duct communicates with the interior of the second spiral fan through the second air duct opening. The second blade is located inside the second spiral fan. The input end of the second motor is fixed to the partition plate, and the output end of the second motor is connected to the second blade. A second air outlet is provided on one side of the second spiral fan, and the second air outlet communicates with the interior of the ventilation duct through a perforated groove. The second air duct is connected to the second ventilation hole on the bottom wall of the receiving part.

9. The ironing table with adjustable airflow according to claim 8, characterized in that: The second suction assembly includes a switching assembly, which includes a circular plate and a rotating rod. The two ends of the rotating rod penetrate the side wall of the second air duct, and the circular plate is fixed to the side of the rotating rod.

10. An ironing table with adjustable airflow according to claim 9, characterized in that: The switching assembly includes a fixing part, a strip slide rail, a turntable, a mounting plate, and a motor. The fixing part is fixed to the outer wall of the second air duct. One end of the strip slide rail is fixedly connected to the rotating rod. The mounting plate is fixedly connected to the fixing part. The mounting plate has a central through hole and multiple edge through holes, with the edge through holes arranged circumferentially along the central through hole. The motor has multiple bosses, which are distributed corresponding to the edge through holes. The motor is connected to the mounting plate by inserting the bosses into the edge through holes. The center of the turntable is fixedly connected to the output end of the motor. A circular slider is provided on the end face of the turntable away from the mounting plate. The circular slider is located at a non-central position on the end face of the mounting plate and is embedded inside the strip slide rail.