Automatic double-station garment ironing equipment
By designing automatic dual-station clothing ironing equipment, and using the automated control of dual workbenches and double ironing components, the existing ironing presses have been solved, and an efficient, safe and environmentally friendly ironing process has been achieved.
Patent Information
- Application Number
- CN202510417001.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-03
- Publication Date
- 2025-05-23
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing ironing press requires operators to perform multi-line operations during the ironing process, resulting in inefficiency, prone to scalding or equipment failure, and the risk of steam leakage is high.
An automatic dual-station clothing ironing equipment is designed, adopting the design of dual table components and double ironing components. The automatic loading and unloading of clothes and the ironing process is realized through moving slide rails and conveyor belts. Combining an adjustable piston rod and finely adjusted temperature and time settings, it ensures the ironing effect, and realizes the recycling of steam and the formation of the air curtain through the elastic flow guide membrane and return holes to prevent steam leakage.
It improves the scalding efficiency, reduces the movement time and operation complexity of the operator, reduces the risk of scalding and equipment failure, and realizes the recycling of steam, improving the economic and environmental protection of the equipment.
Smart Images

Figure CN120024120A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of clothing pressing equipment, and in particular provides an automatic double-station clothing pressing equipment. Background Art
[0002] The hot press is an ironing device used for hot pressing of pre-treatment liquid, hot stamping, and hot stamping. It is widely used in digital printing industry, packaging industry, clothing manufacturing, dry cleaners and laundries. It can quickly squeeze the pre-treatment liquid through the combination of high temperature and pressure, thereby helping the ink in the textile to form a film quickly, thereby improving the color performance and color fastness of the textile, making the printing effect more vivid and lasting, and ensuring that the pattern is not easy to fall off after washing and friction. It can also be used in hot stamping and hot stamping processes. At the same time, it helps to remove wrinkles on clothes, making the clothes more flat and smooth.
[0003] However, when the existing ironing and pressing machines are performing ironing, the operators are required to perform multiple operations of placing, leveling and removing on multiple ironing and pressing operating tables, which seriously affects the ironing and pressing efficiency. After the ironing and pressing machines have been working for a period of time, clothing residues will be left on the steam pressing plates, which require the operators to scrape them off, further increasing the work steps. This makes it extremely easy for the operators to perform improper operations during the ironing and pressing operations, which can easily lead to burns or equipment failures. In addition, the existing steam ironing and pressing machines are prone to steam leakage during the ironing and pressing process, further increasing the risk of ironing and pressing. Summary of the invention
[0004] Based on this, it is necessary to provide an automatic double-station garment ironing equipment to solve at least one technical problem in the background technology.
[0005] An automatic double-station clothing ironing equipment comprises a base assembly, a moving assembly, two workbench assemblies and two ironing assemblies. The base assembly comprises two ironing bases and an intermediate frame. The bottoms of the two ironing bases are installed at both ends of the installation ground, and the two ends of the intermediate frame are respectively installed at the inner ends of the two ironing bases. A moving mounting plate is arranged on the top of the intermediate frame, and motor mounting holes are respectively recessed on both sides of the middle part of the moving mounting plate. The moving assembly comprises two moving slide rails, two conveying wheels, two moving motors, two driving wheels and two workbench mounting block groups. The middle parts of the bottom surfaces of the two moving slide rails are respectively installed on both sides of the top surface of the intermediate frame, and a conveying mounting turntable is convexly provided at one end of the inner side of each moving slide rail, and the two conveying motors are respectively installed at both sides of the top surface of the intermediate frame. The conveying and installing turntables are respectively located above the two ironing and pressing bases, the two conveying wheels are respectively rotatably installed in the two conveying and installing turntables, the two mobile motors are respectively installed on both sides of the middle part of the bottom surface of the mobile installing plate, and the output shafts of the two mobile motors are respectively passed through the motor installing holes and protruded on the mobile installing plate, the two driving wheels are respectively installed in the output shafts of the two mobile motors, and conveying belts are sleeved on the driving wheels and the conveying wheels to realize transmission connection, the two workbench installing block groups are respectively slidably installed on both sides of the middle part and both sides of one end of the two movable slide rails on both sides of the bottom, the two workbench components are respectively installed in the two workbench installing block groups, and the two ironing and pressing components are respectively installed on the top of the two ironing and pressing bases.
[0006] As a further improvement of the present invention, each workbench assembly includes a drain tray, an ironing plate scraper, a base plate mounting platform and a base plate element. The bottom of the drain tray is installed on the top of the workbench mounting block group, and a conveyor belt clamp is protrudingly provided on the middle of the bottom surface of the drain tray, and the conveyor belt clamp is clamped and installed on the conveyor belt. A plurality of scraper mounting vertical bars are protrudingly provided at the outer end of the drain tray, the bottom of the ironing plate scraper is installed on the top of the plurality of scraper mounting vertical bars, the bottom of the base plate mounting platform is installed on the inner side of the top surface of the drain tray, and the inner side of the bottom of the base plate element is clamped and installed on the top of the base plate mounting platform.
[0007] As a further improvement of the present invention, the base plate element includes a disassembly and mounting plate, a hot pressing base plate, four pushing slides and a vertical supporting slide. The inner side of the bottom surface of the disassembly and mounting plate is clamped and installed on the top of the base plate mounting platform. A reflux hole is recessed in the middle of the top surface of the disassembly and mounting plate. Four inclined slide grooves are recessed at intervals along the circumferential direction on the top surface of the disassembly and mounting plate. A mounting outer frame is protruded from the outer edge of the top surface of the disassembly and mounting plate. A base plate outer frame is protruded from the outer edge of the bottom surface of the hot pressing base plate. The bottom of the base plate outer frame is installed on the top of the mounting outer frame. The bottoms of the four pushing slides are respectively slidably installed in the four inclined slide grooves. The bottom of the vertical supporting slide is placed in the middle of the top surface of the disassembly and mounting plate, and the top surface of the vertical supporting slide is fitted with the middle of the bottom surface of the hot pressing base plate.
[0008] As a further improvement of the present invention, the ironing base plate is made of elastic material, an arc-shaped placement groove is concavely provided in the middle of the ironing base plate, an elastic conical protrusion is convexly provided on the outer edge of the bottom surface of the ironing base plate, and a plurality of ironing steam holes are concavely provided in an array on the bottom surface of the ironing base plate.
[0009] As a further improvement of the present invention, the outer end of the top surface of each pushing slider is recessed with an inclined pushing surface, the inner end of the top surface of the pushing slider is recessed with a through chute, the top of the outer end of the through chute is recessed with an inclined upward pushing surface, and the bottom of the outer wall of the vertical holding cylinder is recessed with four vertical pushing chutes at intervals along the circumferential direction. The inner ends of the four pushing sliders are slidably installed in the four vertical pushing chutes. The outer side of the top surface of each vertical pushing chute is recessed with an inclined triggering and squeezing surface, and the triggering and squeezing surface is slidably attached to the inclined upward pushing surface. The middle of the outer wall of the vertical holding cylinder is recessed with four water guide grooves, and the four water guide grooves and the four vertical pushing chutes are arranged alternately.
[0010] As a further improvement of the present invention, four trapezoidal elastic diversion membranes are arranged on the top of the inner wall of the bottom plate outer frame, and the bottom ends of the four elastic diversion membranes respectively pass through the four water guide grooves and are installed on the top of the return holes.
[0011] As a further improvement of the present invention, each ironing component includes an ironing frame body, an ironing downward pressing cylinder, a lower pressing plate, four buffers, an ironing plate element and four triggering elements. The bottom of the ironing frame body is installed on the top of the ironing base. The outer side of the top surface of the ironing frame body is recessed with a cylinder installation groove, and the ironing downward pressing cylinder is installed in the cylinder installation groove. The ironing downward pressing cylinder is an adjustable cylinder, and a piston rod is arranged in the middle of the ironing downward pressing cylinder. A scale is arranged on the piston rod to adjust to the corresponding scale according to the thickness of the ironed clothes. The middle of the top surface of the lower pressing plate is installed at the bottom of the piston rod. The tops of the four buffers are respectively installed at the four corners of the bottom surface of the lower pressing plate. The top of the ironing plate element is installed at the bottom of the four buffers. The four triggering elements are respectively installed in the ironing plate element at intervals along the circumferential direction.
[0012] As a further improvement of the present invention, an ironing outflow hole is recessed in the middle of the ironing frame body, and an ironing return hole is recessed at the bottom of the ironing frame body. A manual control panel is arranged on the top of one of the ironing frame bodies, and a touch screen panel is arranged on the top of the other ironing frame body to realize the manual and automatic switching of equipment control. Both the manual control panel and the touch screen panel can adjust the temperature of the ironing plate element, the ironing time, the ironing times and the downward pressing amount of the piston rod.
[0013] As a further improvement of the present invention, the ironing plate element includes a pressing plate mounting plate and an air permeable plate. The top of the pressing plate mounting plate is installed on the bottom of the four buffers. The bottom surface of the pressing plate mounting plate is concavely provided with a pressing cavity. The inner side of the top surface of the pressing cavity is concavely provided with an inlet hole. The middle part of the inner side of the hot pressing cavity is concavely provided with an air inlet groove. Vertical mounting columns are respectively convexly provided at the four corners of the hot pressing cavity. The four corners of the top surface of the air permeable plate are respectively connected to the bottoms of the four vertical mounting columns. The middle part of the bottom surface of the air permeable plate is concavely provided with an air outlet hole. The four corners of the bottom surface of the air permeable plate are respectively concavely provided with a vertical sliding hole. Four adjusting mounting slides are convexly provided in the middle part of the top surface of the air permeable plate, and the four adjusting mounting slides are respectively arranged opposite to the four vertical sliding holes. Four L-shaped grooves are respectively concavely provided at the four corners of the bottom surface of the air permeable plate, and the four vertical sliding holes are respectively connected to the four L-shaped grooves. The outer edge of the top surface of the air permeable plate is concavely provided with an annular arc groove, and the outer edge of the bottom surface of the annular arc groove is concavely provided with a wind curtain groove.
[0014] As a further improvement of the present invention, each trigger element includes a trigger vertical sliding column, an L-shaped pressure plate, a trigger sliding bar and a breathable arc block. The middle part of the trigger vertical sliding column is slidably installed in the vertical sliding hole, the outer edge of the top surface of the trigger vertical sliding column is concavely provided with an annular inclined surface, the middle part of the top surface of the L-shaped pressure plate is installed on the bottom surface of the trigger vertical sliding column, and the top of the L-shaped pressure plate is slidably installed in the L-shaped groove, the middle part of the trigger sliding bar is slidably installed in the adjustment installation slide, the outer end of the bottom surface of the trigger sliding bar is concavely provided with an inclined linkage surface, and the inclined linkage surface slides and fits on the annular inclined surface, the middle part of the breathable arc block is installed on the inner end of the trigger sliding bar, and a plurality of return springs are arranged between the outer bottom of the breathable arc block and the inner side of the adjustment installation slide, and the breathable arc block is located above the air outlet.
[0015] The beneficial effects of the present invention are as follows: 1. The present invention adopts the design of double workbench components and double ironing components, so that the operator can load and unload materials between two workstations. Compared with traditional ironing machines, the operator's left and right movement time is reduced, and a ruler is provided on the piston rod to adjust to the corresponding scale according to the thickness of the ironed clothes, and the manual and automatic switching of the equipment control can be realized. The manual operation panel and the touch screen panel can finely adjust the temperature of the ironing plate element, the ironing time, the number of ironing times and the pressure of the piston rod to ensure the ironing effect. At the same time, the setting of the ironing plate scraper can effectively clean the clothing residues adhered to the bottom surface of the breathable plate, reducing the risk of the residues affecting the ironing effect.
[0016] 2. The present invention can effectively preheat and flatten the clothes to be ironed, ensure the uniform distribution of heat and pressure during subsequent ironing, thereby improving the ironing effect, avoiding insufficient ironing due to overlapping clothes and preventing the pattern on the heat transfer film from detaching and deforming after ironing, and using the workbench assembly to cooperate with the ironing assembly when pressing down to ensure uniform contact between the ironing plate elements and the clothes and to ensure the parallel fit between the ironing bottom plate and the breathable plate, thereby ensuring the effects of ironing and heat printing, and ensuring that the pre-treatment liquid is quickly pressed dry, and ensuring the smoothness of the ink film, and ensuring the printing effect. In addition, a restrictive wind curtain is formed to effectively prevent steam leakage, reduce the risk of scalding of operators, and realize the recycling of steam airflow, thereby improving the economy and environmental protection of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a three-dimensional schematic diagram of an embodiment of the present invention.
[0018] Figure 2 It is a three-dimensional schematic diagram of a base assembly and a moving assembly in one embodiment of the present invention.
[0019] Figure 3 It is a three-dimensional schematic diagram of a workbench assembly in one embodiment of the present invention.
[0020] Figure 4 Schematic diagram of the interior of a workbench assembly in one embodiment of the present invention.
[0021] Figure 5 Schematic diagram of the interior of a workbench assembly in another embodiment of the present invention.
[0022] Figure 6 for Figure 5 Enlarged view of point A in the middle.
[0023] Figure 7 Schematic diagram of the interior of a workbench assembly in yet another embodiment of the present invention.
[0024] Figure 8 FIG. 4 is a three-dimensional schematic diagram of a hot pressing assembly in one embodiment of the present invention.
[0025] Fig. 9 FIG. 4 is a three-dimensional schematic diagram of an ironing plate component and a trigger component in one embodiment of the present invention.
[0026] Fig.10 FIG. 1 is an internal schematic diagram of an ironing plate component and a trigger component in one embodiment of the present invention.
[0027] In the figure: 10. Base assembly; 11. Ironing base; 12. Intermediate frame; 13. Mobile mounting plate; 20. Mobile assembly; 21. Mobile slide rail; 22. Conveying wheel; 23. Mobile motor; 24. Driving wheel; 25. Workbench mounting block group; 211. Conveying mounting turntable; 26. Conveying belt; 30. Workbench assembly; 31. Drain tray; 32. Bottom plate mounting platform; 33. Bottom plate element; 34. Ironing plate scraper; 311. Conveying belt clamp; 31 2. Scraper installation vertical bar; 331. Disassembly installation plate; 332. Ironing bottom plate; 333. Pushing slide bar; 334. Vertical holding slide cylinder; 335. Reflux hole; 336. Inclined slide groove; 337. Installation outer frame; 338. Bottom plate outer frame; 339. Arc placement groove; 351. Ironing steam hole; 352. Inclined push surface; 353. Passing slide groove; 354. Inclined upper push surface; 355. Vertical push slide groove; 356. Trigger push surface; 3 57, water guide groove; 358, elastic guide membrane; 40, hot pressing assembly; 41, hot pressing frame; 42, hot pressing lower pressure cylinder; 43, lower pressure plate; 44, buffer; 45, hot pressing plate element; 46, trigger element; 411, cylinder mounting groove; 421, piston rod; 410, hot pressing outflow hole; 412, manual operation panel; 413, touch screen panel; 414, hot pressing return hole; 451, pressure plate mounting plate; 452, breathable plate; 453 , ironing cavity; 454, inlet hole; 455, air inlet slot; 456, vertical mounting column; 457, air outlet hole; 458, vertical sliding hole; 459, adjustment mounting slide; 450, L-shaped slot; 471, annular arc slot; 472, wind curtain slot; 461, trigger vertical sliding column; 462, L-shaped pressure plate; 463, trigger slide bar; 464, breathable arc block; 465, annular inclined surface; 466, inclined linkage surface; 467, return spring. DETAILED DESCRIPTION
[0028] In order to facilitate the understanding of the present invention, the present invention will be described more fully below with reference to the relevant drawings. The preferred embodiments of the present invention are given in the drawings. However, the present invention can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the present invention more thoroughly understood.
[0029] In the description of the present invention, it should be noted that the terms "length", "width", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside" and "outside" etc. indicating directions or positional relationships are based on the directions or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the referred device or element must have a specific direction, be constructed and operated in a specific direction, and therefore cannot be understood as a limitation on the present invention.
[0030] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as those commonly understood by those skilled in the art to which the present invention belongs. The terms used herein are only for the purpose of describing specific embodiments and are not intended to limit the present invention. The term "and / or" used herein includes any and all combinations of one or more of the related listed items.
[0031] See also Figures 1 to 10 An automatic double-station clothing ironing equipment comprises a base assembly 10, a moving assembly 20, two workbench assemblies 30 and two ironing assemblies 40. The base assembly 10 comprises two ironing bases 11 and an intermediate frame 12. The bottoms of the two ironing bases 11 are installed at both ends of the installation ground. The two ends of the intermediate frame 12 are respectively installed at the inner ends of the two ironing bases 11. A moving mounting plate 13 is arranged on the top of the intermediate frame 12. Motor mounting holes are respectively recessed on both sides of the middle of the moving mounting plate 13. The moving assembly 20 comprises two moving slide rails 21, two conveying wheels 22, two moving motors 23, two driving wheels 24 and two workbench mounting block groups 25. The middle of the bottom surface of the two moving slide rails 21 are respectively installed on both sides of the top surface of the intermediate frame 12. A conveying mounting turntable 211 is respectively convexly provided at one end of the inner side of each moving slide rail 21. The two conveying and mounting turntables 211 are respectively located above the two ironing and pressing bases 11, the two conveying wheels 22 are respectively rotatably installed in the two conveying and mounting turntables 211, the two mobile motors 23 are respectively installed on both sides of the middle part of the bottom surface of the mobile mounting plate 13, and the output shafts of the two mobile motors 23 are respectively passed through the motor mounting holes and protruded on the mobile mounting plate 13, the two driving wheels 24 are respectively installed in the output shafts of the two mobile motors 23, and the driving wheels 24 and the conveying wheels 22 are sleeved with conveyor belts 26 to realize transmission connection, the two workbench mounting block groups 25 are respectively slidably installed on both sides of the middle part and both sides of one end of the two movable slide rails 21 on the bottom sides, the two workbench assemblies 30 are respectively installed in the two workbench mounting block groups 25 on the bottom, and the two ironing and pressing assemblies 40 are respectively installed on the top of the two ironing and pressing bases 11 on the bottom.
[0032] Each workbench assembly 30 includes a drain tray 31, an ironing plate scraper 34, a base plate mounting platform 32 and a base plate element 33. The bottom of the drain tray 31 is mounted on the top of the workbench mounting block group 25, and a conveyor belt clamp 311 is protrudingly provided in the middle of the bottom surface of the drain tray 31. The conveyor belt clamp 311 is clamped and installed on the conveyor belt 26. A plurality of scraper mounting vertical bars 312 are protruding from the outer end of the drain tray 31. The bottom of the ironing plate scraper 34 is mounted on the top of the plurality of scraper mounting vertical bars 312. The bottom of the base plate mounting platform 32 is mounted on the inner side of the top surface of the drain tray 31. The inner side of the bottom of the base plate element 33 is clamped and installed on the top of the base plate mounting platform 32.
[0033] The bottom plate element 33 includes a disassembly and mounting plate 331, a hot pressing bottom plate 332, four pushing slides 333 and a vertical supporting slide 334. The inner side of the bottom surface of the disassembly and mounting plate 331 is clamped and installed on the top of the bottom plate mounting platform 32. A return hole 335 is recessed in the middle of the top surface of the disassembly and mounting plate 331. Four inclined slide grooves 336 are recessed on the top surface of the disassembly and mounting plate 331 at intervals along the circumferential direction. A mounting outer frame 337 is convexly provided on the outer edge of the top surface of the disassembly and mounting plate 331. A bottom plate outer frame 338 is convexly provided on the outer edge of the bottom surface of the hot pressing bottom plate 332. The bottom of the bottom plate outer frame 338 is installed on the top of the mounting outer frame 337. The bottoms of the four pushing slides 333 are respectively slidably installed in the four inclined slide grooves 336. The bottom of the vertical supporting slide 334 is placed in the middle of the top surface of the disassembly and mounting plate 331, and the top surface of the vertical supporting slide 334 is attached to the middle of the bottom surface of the hot pressing bottom plate 332.
[0034] The ironing bottom plate 332 is made of elastic material, an arc-shaped placement groove 339 is recessed in the middle of the ironing bottom plate 332, an elastic conical protrusion is convexly provided on the outer edge of the bottom surface of the ironing bottom plate 332, and a plurality of ironing steam holes 351 are recessed in an array on the bottom surface of the ironing bottom plate 332.
[0035] An inclined pushing surface 352 is recessed at the outer end of the top surface of each pushing slide bar 333, a through slide groove 353 is recessed at the inner end of the top surface of the pushing slide bar 333, an inclined upper pushing surface 354 is recessed at the top of the outer end of the through slide groove 353, four vertical pushing slide grooves 355 are recessed at intervals along the circumferential direction at the bottom of the outer wall of the vertical supporting slide cylinder 334, the inner ends of the four pushing slide bars 333 are slidably installed in the four vertical pushing slide grooves 355, an inclined trigger pushing surface 356 is recessed at the outer side of the top surface of each vertical pushing slide groove 355, the trigger pushing surface 356 is slidably fitted on the inclined upper pushing surface 354, four water guide grooves 357 are recessed in the middle part of the outer wall of the vertical supporting slide cylinder 334, and the four water guide grooves 357 and the four vertical pushing slide grooves 355 are alternately arranged.
[0036] Four trapezoidal elastic flow-guiding membranes 358 are arranged on the top of the inner wall of the bottom plate outer frame 338 , and the bottom ends of the four elastic flow-guiding membranes 358 are respectively passed through four water-guiding grooves 357 and installed on the top of the reflux hole 335 .
[0037] Each ironing assembly 40 includes an ironing frame 41, an ironing pressing cylinder 42, a pressing plate 43, four buffers 44, an ironing plate element 45 and four trigger elements 46. The bottom of the ironing frame 41 is installed on the top of the ironing base 11, and a cylinder mounting groove 411 is recessed on the outer side of the top surface of the ironing frame 41. The ironing pressing cylinder 42 is installed in the cylinder mounting groove 411. The ironing pressing cylinder 42 is an adjustable cylinder, and a piston rod 421 is provided in the middle of the ironing pressing cylinder 42. A scale is provided on the piston rod 421 to adjust to the corresponding scale according to the thickness of the ironed clothes. The middle of the top surface of the pressing plate 43 is installed on the bottom of the piston rod 421, the tops of the four buffers 44 are respectively installed at the four corners of the bottom surface of the pressing plate 43, the top of the ironing plate element 45 is installed on the bottom of the four buffers 44, and the four trigger elements 46 are respectively installed in the ironing plate element 45 at intervals along the circumferential direction.
[0038] A hot pressing outflow hole 410 is recessed in the middle of the hot pressing frame 41, and a hot pressing return hole 414 is recessed in the bottom of the hot pressing frame 41. A manual operation panel 412 is disposed on the top of one of the hot pressing frames 41, and a touch screen panel 413 is disposed on the top of the other hot pressing frame 41 to realize manual and automatic switching of equipment control, and both the manual operation panel 412 and the touch screen panel 413 can adjust the temperature of the hot pressing plate element 45, the hot pressing time, the number of hot pressing times and the downward pressure of the piston rod 421.
[0039] The pressing plate element 45 includes a pressing plate mounting plate 451 and a breathable plate 452. The top of the pressing plate mounting plate 451 is mounted on the bottom of the four buffers 44. The bottom surface of the pressing plate mounting plate 451 is concavely provided with a pressing cavity 453. The inner side of the top surface of the pressing cavity 453 is concavely provided with an inlet hole 454. The middle part of the inner side of the pressing cavity 453 is concavely provided with an air inlet slot 455. The four corners of the pressing cavity 453 are respectively provided with vertical mounting columns 456. The four corners of the top surface of the breathable plate 452 are respectively connected to the bottom of the four vertical mounting columns 456. The middle part of the bottom surface of the breathable plate 452 is concavely provided with a Air outlet hole 457, vertical sliding holes 458 are respectively recessed at the four corners of the bottom surface of the air permeable plate 452, four adjustable mounting slides 459 are convexly provided in the middle of the top surface of the air permeable plate 452, and the four adjustable mounting slides 459 are respectively arranged opposite to the four vertical sliding holes 458, four L-shaped grooves 450 are respectively recessed at the four corners of the bottom surface of the air permeable plate 452, and the four vertical sliding holes 458 are respectively connected to the four L-shaped grooves 450, an annular arc groove 471 is recessed at the outer edge of the top surface of the air permeable plate 452, and an air curtain groove 472 is recessed at the outer edge of the bottom surface of the annular arc groove 471.
[0040] Each trigger element 46 includes a trigger vertical slide column 461, an L-shaped pressure plate 462, a trigger slide bar 463 and a ventilated arc block 464. The middle of the trigger vertical slide column 461 is slidably installed in the vertical slide hole 458. The outer edge of the top surface of the trigger vertical slide column 461 is concavely provided with an annular inclined surface 465. The middle of the top surface of the L-shaped pressure plate 462 is installed on the bottom surface of the trigger vertical slide column 461, and the top of the L-shaped pressure plate 462 is slidably installed in the L-shaped groove 450. The trigger slide bar 463 is ventilated in the air permeable arc block 464. The middle part of the trigger slide 463 is slidably installed in the adjustment installation slide 459, the outer end of the bottom surface of the trigger slide 463 is recessed with an inclined linkage surface 466, and the inclined linkage surface 466 slides on the annular inclined surface 465, the middle part of the air-permeable arc block 464 is installed on the inner end of the trigger slide 463, and a plurality of return springs 467 are arranged between the outer bottom of the air-permeable arc block 464 and the inner side of the adjustment installation slide 459, and the air-permeable arc block 464 is located above the air outlet 457.
[0041] For example, in one embodiment: the elastic conical protrusion protrudes from the outer edge of the bottom surface of the pressing bottom plate 332, so that the thickness of the pressing bottom plate 332 gradually decreases from the outer edge to the center, and the inclined push surface 352 is pressed against the bottom surface of the elastic conical protrusion.
[0042] The pressing frame 41 is provided with a steam generator and a hot air blower. The output end of the steam generator is connected to the pressing outlet hole 410, which is connected to the inlet hole 454 through a hose. The return end of the steam generator is connected to the pressing return hole 414, which is connected to the return hole 335 through a hose. The output end of the hot air blower is connected to the air inlet slot 455 through a hose. The side wall of the air permeable arc block 464 is provided with a conductive sheet. The top of the vertical support slide 334 is provided with a support disc.
[0043] For example, in one embodiment: when ironing is required, the operator needs to place the clothes to be ironed on the arc placement groove 339 of the ironing bottom plate 332 located in the middle of the middle frame 12, and then start the two moving motors 23, thereby driving the two conveyor belts 26 to move, and then transport the workbench assembly 30 with the clothes to be ironed to the bottom of the ironing plate element 45 of one of the ironing assemblies 40, and at the same time, the other workbench assembly 30 will be transported from the bottom of the other ironing assembly 40 to the middle of the middle frame 12 to place the next piece of clothes to be ironed, which reduces the operator's left and right movement time compared to the traditional ironing machine. At the same time, when the workbench assembly 30 moves left and right, due to the setting of the ironing plate scraper 34, the bottom surface of the air permeable plate 452 can be scraped off to scrape and clean the clothes residues adhering to the bottom surface of the air permeable plate 452 after long-term ironing, thereby improving the efficiency of the operator. At the same time, since a manual operation panel 412 is provided on the top of one of the ironing frames 41, and a touch screen panel 413 is provided on the top of the other ironing frame 41, manual and automatic switching of the equipment can be realized, and the manual operation panel 412 and the touch screen panel 413 can adjust the temperature of the ironing plate element 45, the ironing time, the number of ironing times and the pressure amount of the piston rod 421, thereby realizing precise adjustment of the ironing.
[0044] When the workbench assembly 30 on which the clothes to be ironed are placed is transported to the bottom of the ironing plate element 45 of one of the ironing assemblies 40, the hot air blower will start and generate preheated airflow, which will flow out from the air outlet 457 through the air inlet slot 455 and the ironing cavity 453, and then preheat and blow the clothes to be ironed below. At the same time, since it is placed on the arc-shaped placement slot 339, when the preheated airflow hits the clothes below, it will flatten and blow them to prevent the clothes to be ironed from still having wrinkles when they are placed, resulting in overlapping of clothes during subsequent ironing, resulting in uneven distribution of heat and pressure during the ironing process, causing insufficient ironing in some areas, affecting the overall effect.
[0045] At the same time, the ironing and pressing downward cylinder 42 will start, thereby driving the piston rod 421 to press down, so that the lower pressure plate 43, the four buffers 44, the ironing plate element 45 and the four trigger elements 46 will be pressed down synchronously, thereby enhancing the force of the preheated airflow blowing, until the bottom surface of the L-shaped pressure plate 462 is against the top surface of the ironing bottom plate 332, so that the four L-shaped pressure plates 462 and the four trigger vertical sliding columns 461 move up synchronously, so that the four trigger sliding bars 463 slide toward the center along the adjustment mounting slide 459 respectively, so that the four breathable arc blocks 464 follow the movement until the four breathable arc blocks 464 are against each other, and then an electrical signal is generated in the hot air blower to turn it off. At the same time, a signal will also be sent to the steam generator to start the steam generator and generate steam airflow, which will enter the air permeable plate 452 through the ironing outlet hole 410, the inlet hole 454 and the ironing cavity 453, and then the clothes to be ironed will be ironed.
[0046] At the same time, when the L-shaped pressing plate 462 is pressed down, since the hot pressing bottom plate 332 is made of elastic material and the elastic conical protrusion is convexly arranged on the outer edge of the bottom surface of the hot pressing bottom plate 332, the thickness of the hot pressing bottom plate 332 gradually decreases from the outer edge to the center, and the inclined pushing surface 352 is pressed against the bottom surface of the elastic conical protrusion, so that the four pushing slides 333 move toward the center along the four inclined slide grooves 336 respectively, and follow the movement through the slide groove 353 and the inclined upper pushing surface 354. Since the triggering pushing surface 356 slides and fits on the inclined upper pushing surface 354, the vertical supporting slide 334 moves upward, and the hot pressing bottom plate 332 is deformed, pushing the middle part of the hot pressing bottom plate 332 to follow and move upward, so that the top surface of the hot pressing bottom plate 332 becomes parallel, ensuring the parallel fit of the hot pressing bottom plate 332 and the breathable plate 452, thereby ensuring the hot pressing effect.
[0047] And when the steam airflow flows into the ironing cavity 453, part of the steam airflow will flow into the wind curtain groove 472 through the annular arc groove 471, and flow out from the wind curtain groove 472 to form a limiting wind curtain, thereby preventing steam leakage and scalding the operator during steam ironing. At the same time, the limiting wind curtain will also make the steam airflow forming the limiting wind curtain and the steam airflow after ironing flow through the multiple ironing steam holes 351 on the ironing bottom plate 332 to flow into the space between the ironing bottom plate 332 and the disassembly and installation plate 331, and then flow into the reflux hole 335 through the guidance of four elastic guide membranes 358, and then flow back to the reflux end of the steam generator through the hose for recycling.
[0048] Installation process: The bottoms of the two ironing bases 11 are installed at both ends of the installation ground, the two ends of the middle frame 12 are respectively installed on the inner ends of the two ironing bases 11, the middle of the bottom surface of the two moving slide rails 21 are respectively installed on both sides of the top surface of the middle frame 12, and the two conveying installation turntables 211 are respectively located above the two ironing bases 11, the two conveying wheels 22 are respectively rotatably installed in the two conveying installation turntables 211, the two moving motors 23 are respectively installed on both sides of the middle of the bottom surface of the moving installation plate 13, the two driving wheels 24 are respectively installed in the output shafts of the two moving motors 23, and the two sides of the bottom of the two workbench installation block groups 25 are respectively slidably installed on the two moving slide rails 21 middle sides and one end sides, the bottoms of the two workbench components 30 are respectively installed in the two workbench mounting block groups 25, the bottoms of the two ironing components 40 are respectively installed on the tops of the two ironing bases 11, the bottom of the drain pan 31 is installed on the top of the workbench mounting block group 25, and the conveyor belt clamping block 311 is clamped and installed on the conveyor belt 26, the bottom of the ironing plate scraper 34 is installed on the top of multiple scraper mounting vertical bars 312, the bottom of the bottom plate mounting platform 32 is installed on the inner side of the top surface of the drain pan 31, the inner side of the bottom surface of the disassembly mounting plate 331 is clamped and installed on the top of the bottom plate mounting platform 32, the bottom of the bottom plate outer frame 338 is installed on the top of the mounting outer frame 337, and four push slides The bottom of 333 is slidably installed in four inclined slide grooves 336 respectively, the bottom of the vertical abutting slide cylinder 334 is placed in the middle of the top surface of the disassembly and installation plate 331, and the top surface of the vertical abutting slide cylinder 334 is attached to the middle of the bottom surface of the hot pressing bottom plate 332, and the bottom ends of the four elastic guide membranes 358 are respectively passed through the four water guide grooves 357 and installed on the top of the reflux hole 335, the bottom of the hot pressing frame 41 is installed on the top of the hot pressing base 11, the hot pressing lower pressing cylinder 42 is installed in the cylinder installation groove 411, the middle of the top surface of the lower pressing plate 43 is installed on the bottom of the piston rod 421, the tops of the four buffers 44 are respectively installed at the four corners of the bottom surface of the lower pressing plate 43, and the pressing plate installation plate 451 The top is installed on the bottom of four buffers 44, and the four corners of the top surface of the air permeable plate 452 are respectively connected to the bottom of four vertical mounting columns 456. The middle part of the trigger vertical sliding column 461 is slidably installed in the vertical sliding hole 458. The middle part of the top surface of the L-shaped pressure plate 462 is installed on the bottom surface of the trigger vertical sliding column 461, and the top of the L-shaped pressure plate 462 is slidably installed in the L-shaped groove 450. The middle part of the trigger slide bar 463 is slidably installed in the adjustment mounting slide 459, and the inclined linkage surface 466 is slidably fitted on the annular inclined surface 465. The middle part of the air permeable arc block 464 is installed on the inner end of the trigger slide bar 463, and the air permeable arc block 464 is located above the air outlet 457.
[0049] The present invention can achieve: 1. The present invention adopts the design of a double workbench assembly 30 and a double ironing assembly 40, so that the operator can load and unload materials between the two workstations, which reduces the operator's left and right movement time compared with the traditional ironing machine, and a ruler is set on the piston rod 421 to adjust to the corresponding scale according to the thickness of the ironed clothes, and can realize manual and automatic switching of equipment control, and the manual operation panel 412 and the touch screen panel 413 can finely adjust the temperature of the ironing plate element 45, the ironing time, the number of ironing times and the downward pressure of the piston rod 421 to ensure the ironing effect. At the same time, the setting of the ironing plate scraper 34 can effectively clean the clothing residues adhered to the bottom surface of the breathable plate 452, reducing the risk of the residues affecting the ironing effect.
[0050] 2. The present invention can effectively preheat and flatten the clothes to be ironed, ensure the uniform distribution of heat and pressure during subsequent ironing, thereby improving the ironing effect, avoiding insufficient ironing due to overlapping clothes and preventing the pattern on the heat transfer film from detaching and deforming after ironing, and using the workbench assembly 30 to cooperate with the ironing assembly 40 when pressing down to ensure uniform contact between the ironing plate element 45 and the clothes and to ensure the parallel fit between the ironing bottom plate 332 and the breathable plate 452, thereby ensuring the ironing and heat printing effects, and ensuring that the pre-treatment liquid is quickly squeezed dry, and ensuring the smoothness of the ink film, and ensuring the printing effect. In addition, a restrictive wind curtain is formed to effectively prevent steam leakage, reduce the risk of scalding of operators, and realize the recycling of steam airflow, thereby improving the economy and environmental protection of the equipment.
[0051] The above-mentioned embodiments only express several embodiments of the present invention, and the description is relatively specific and detailed, but it cannot be understood as limiting the scope of the patent of the present invention. It should be pointed out that for ordinary technicians in this field, several modifications and improvements can be made without departing from the concept of the present invention, which all belong to the protection scope of the present invention. Therefore, the protection scope of the patent of the present invention shall be based on the attached claims.
Claims
1. An automatic double-station garment pressing device, characterized in that: The invention comprises a base assembly (10), a moving assembly (20), two workbench assemblies (30) and two ironing assemblies (40), wherein the base assembly (10) comprises two ironing assemblies (11) and an intermediate frame (12), wherein the bottoms of the two ironing assemblies (11) are mounted on two ends of the mounting ground, and the two ends of the intermediate frame (12) are respectively mounted on the inner ends of the two ironing assemblies (11), and a moving mounting plate (13) is arranged on the top of the intermediate frame (12), and motor mounting holes are respectively recessed on both sides of the middle part of the moving mounting plate (13), and the moving assembly (20) comprises two moving slide rails (21), two conveying wheels (22), two moving motors (23), two driving wheels (24) and two workbench mounting block groups (25), wherein the middle parts of the bottom surfaces of the two moving slide rails (21) are respectively mounted on both sides of the top surface of the intermediate frame (12), and a conveying mounting turntable (211) is respectively protruded on one end of the inner side of each moving slide rail (21), and the two The conveying installation turntable (211) is respectively located above the two ironing bases (11), the two conveying wheels (22) are respectively rotatably installed in the two conveying installation turntables (211), the two moving motors (23) are respectively installed on both sides of the middle part of the bottom surface of the moving installation plate (13), and the output shafts of the two moving motors (23) are respectively penetrated through the motor installation holes and protruded on the moving installation plate (13), the two driving wheels (24) are respectively installed in the output shafts of the two moving motors (23), and the driving wheels (24) and the conveying wheels (22) are sleeved with conveying belts (26) to achieve transmission connection, the bottom sides of the two workbench installation block groups (25) are respectively slidably installed on both sides of the middle part and both sides of one end of the two moving slide rails (21), the bottoms of the two workbench assemblies (30) are respectively installed in the two workbench installation block groups (25), and the bottoms of the two ironing assemblies (40) are respectively installed on the tops of the two ironing bases (11).
2. The automatic double-station garment pressing equipment according to claim 1 is characterized in that: Each workbench assembly (30) comprises a drain pan (31), a hot plate scraper (34), a bottom plate mounting platform (32) and a bottom plate element (33); the bottom of the drain pan (31) is mounted on the top of the workbench mounting block group (25); a conveyor belt clamp (311) is protrudingly provided at the middle of the bottom surface of the drain pan (31); the conveyor belt clamp (311) is clamped and mounted on the conveyor belt (26); a plurality of scraper mounting vertical bars (312) are protrudingly provided at the outer end of the drain pan (31); the bottom of the hot plate scraper (34) is mounted on the top of the plurality of scraper mounting vertical bars (312); the bottom of the bottom plate mounting platform (32) is mounted on the inner side of the top surface of the drain pan (31); and the inner side of the bottom of the bottom plate element (33) is clamped and mounted on the top of the bottom plate mounting platform (32).
3. The automatic double-station garment pressing equipment according to claim 2 is characterized in that: The bottom plate element (33) comprises a disassembly and installation plate (331), a hot pressing bottom plate (332), four push slide bars (333) and a vertical holding slide cylinder (334). The inner side of the bottom surface of the disassembly and installation plate (331) is clamped and installed on the top of the bottom plate mounting platform (32). A return hole (335) is recessed in the middle of the top surface of the disassembly and installation plate (331). Four inclined slide grooves (336) are recessed at intervals along the circumferential direction on the top surface of the disassembly and installation plate (331). The outer edge of the top surface of the disassembly and installation plate (331) is A mounting frame (337) is convexly provided, a bottom plate frame (338) is convexly provided on the outer edge of the bottom surface of the ironing bottom plate (332), the bottom of the bottom plate frame (338) is mounted on the top of the mounting frame (337), the bottoms of the four pushing slide bars (333) are respectively slidably mounted in the four inclined slide grooves (336), the bottom of the vertical supporting slide cylinder (334) is placed in the middle of the top surface of the disassembly mounting plate (331), and the top surface of the vertical supporting slide cylinder (334) is in contact with the middle of the bottom surface of the ironing bottom plate (332).
4. The automatic double-station garment pressing equipment according to claim 3 is characterized in that: The ironing bottom plate (332) is made of elastic material, an arc-shaped placement groove (339) is concavely provided in the middle of the ironing bottom plate (332), an elastic conical protrusion is convexly provided on the outer edge of the bottom surface of the ironing bottom plate (332), and a plurality of ironing steam holes (351) are concavely provided in an array on the bottom surface of the ironing bottom plate (332).
5. The automatic double-station garment pressing equipment according to claim 4 is characterized in that: The outer end of the top surface of each push slide bar (333) is recessed with an inclined push surface (352), the inner end of the top surface of the push slide bar (333) is recessed with a through slide groove (353), the top of the outer end of the through slide groove (353) is recessed with an inclined upper push surface (354), the bottom of the outer wall of the vertical support slide cylinder (334) is recessed with four vertical push slide grooves (355) at intervals along the circumferential direction, the inner ends of the four push slide bars (333) are slidably installed in the four vertical push slide grooves (355), the outer side of the top surface of each vertical push slide groove (355) is recessed with an inclined trigger push surface (356), the trigger push surface (356) is slidably fitted on the inclined upper push surface (354), and four water guide grooves (357) are recessed in the middle of the outer wall of the vertical support slide cylinder (334), and the four water guide grooves (357) and the four vertical push slide grooves (355) are alternately arranged.
6. The automatic double-station garment pressing equipment according to claim 5, characterized in that: Four trapezoidal elastic flow-guiding membranes (358) are arranged on the top of the inner wall of the bottom plate outer frame (338), and the bottom ends of the four elastic flow-guiding membranes (358) are respectively passed through four water-guiding grooves (357) and installed on the top of the reflux hole (335).
7. The automatic double-station garment pressing equipment according to claim 6, characterized in that: Each pressing assembly (40) comprises a pressing frame (41), a pressing cylinder (42), a pressing plate (43), four buffers (44), a pressing plate element (45) and four trigger elements (46). The bottom of the pressing frame (41) is mounted on the top of the pressing base (11). The outer side of the top surface of the pressing frame (41) is concavely provided with a cylinder mounting groove (411). The pressing cylinder (42) is mounted in the cylinder mounting groove (411). The pressing cylinder (42) is an adjustable cylinder. A piston rod (421) is provided in the middle of the cylinder (42), and a scale is provided on the piston rod (421) to adjust to a corresponding scale according to the thickness of the clothes being ironed. The middle of the top surface of the lower pressing plate (43) is mounted on the bottom of the piston rod (421), the tops of four buffers (44) are respectively mounted at four corners of the bottom surface of the lower pressing plate (43), the top of the ironing plate element (45) is mounted on the bottoms of the four buffers (44), and the four trigger elements (46) are respectively mounted in the ironing plate element (45) at intervals along the circumferential direction.
8. The automatic double-station garment pressing equipment according to claim 7, characterized in that: A hot pressing outflow hole (410) is recessed in the middle of the hot pressing frame (41), and a hot pressing return hole (414) is recessed in the bottom of the hot pressing frame (41). A manual operating panel (412) is disposed on the top of one of the hot pressing frames (41), and a touch screen panel (413) is disposed on the top of the other hot pressing frame (41) to realize manual and automatic switching of equipment control, and both the manual operating panel (412) and the touch screen panel (413) can adjust the temperature of the hot pressing plate element (45), the hot pressing time, the hot pressing times, and the downward pressure of the piston rod (421).
9. The automatic double-station garment pressing equipment according to claim 8, characterized in that: The ironing plate element (45) comprises a pressing plate mounting plate (451) and an air permeable plate (452). The top of the pressing plate mounting plate (451) is mounted on the bottom of the four buffers (44). The bottom surface of the pressing plate mounting plate (451) is concavely provided with a pressing cavity (453). The inner side of the top surface of the pressing cavity (453) is concavely provided with an inlet hole (454). The middle part of the inner side of the pressing cavity (453) is concavely provided with an air inlet groove (455). The four corners of the pressing cavity (453) are respectively provided with vertical mounting columns (456). The four corners of the top surface of the air permeable plate (452) are respectively connected to the bottom of the four vertical mounting columns (456). The middle part of the bottom surface of the air permeable plate (452) is concavely provided with a There are air outlet holes (457), vertical sliding holes (458) are respectively recessed at the four corners of the bottom surface of the air permeable plate (452), four adjustable mounting slides (459) are convexly provided at the middle of the top surface of the air permeable plate (452), and the four adjustable mounting slides (459) are respectively arranged opposite to the four vertical sliding holes (458), four L-shaped grooves (450) are respectively recessed at the four corners of the bottom surface of the air permeable plate (452), and the four vertical sliding holes (458) are respectively connected to the four L-shaped grooves (450), an annular arc groove (471) is recessed at the outer edge of the top surface of the air permeable plate (452), and an air curtain groove (472) is recessed at the outer edge of the bottom surface of the annular arc groove (471).
10. The automatic double-station garment pressing equipment according to claim 9, characterized in that: Each trigger element (46) comprises a trigger vertical slide column (461), an L-shaped pressure plate (462), a trigger slide bar (463) and a ventilated arc block (464). The middle of the trigger vertical slide column (461) is slidably mounted in the vertical slide hole (458). The outer edge of the top surface of the trigger vertical slide column (461) is concavely provided with an annular inclined surface (465). The middle of the top surface of the L-shaped pressure plate (462) is mounted on the bottom surface of the trigger vertical slide column (461). The top of the L-shaped pressure plate (462) is slidably mounted in the L-shaped groove (450). The trigger slide bar (463) is slidably mounted in the vertical slide hole (458). The middle part of the trigger slide bar (463) is slidably installed in the adjustment installation slide (459), the outer end of the bottom surface of the trigger slide bar (463) is concavely provided with an inclined linkage surface (466), and the inclined linkage surface (466) is slidably fitted on the annular inclined surface (465), the middle part of the air permeable arc block (464) is installed at the inner end of the trigger slide bar (463), and a plurality of return springs (467) are arranged between the outer bottom of the air permeable arc block (464) and the inner side of the adjustment installation slide (459), and the air permeable arc block (464) is located above the air outlet (457).
Citation Information
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CN224631616U