Control system of post-ironing machine
Through real-time monitoring and compensation control, the problem of steam supply fluctuations in multi-functional clothing ironing equipment is solved, and the stable steam supply and efficient ironing effect is achieved, which improves the operating stability and resource utilization of the equipment.
Patent Information
- Application Number
- CN202211495088.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-11-26
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2042-11-26
AI Technical Summary
When the existing multi-functional clothing ironing equipment is started at intervals between the portrait blowing device and the two-in-one ironing device, there is a fluctuation in the steam supply, which affects the ironing effect.
The temperature monitoring module and the air pressure monitoring module are used to monitor the temperature and air pressure in the working area in real time. The linkage control module outputs maneuver compensation instructions, delays the steam supply through the steam supply unit and uses the variable frequency compensation module to stabilize the steam supply, and optimizes steam distribution in combination with the steam path switching unit.
The stable steam supply between portrait blowing device and all-in-one ironing device is achieved, which improves the ironing effect and efficiency, reduces the size of the equipment and improves the utilization rate of steam resources.
Smart Images

Figure CN115897196B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to washing, care and finishing equipment, and more particularly to a control system of a finishing and ironing all-in-one machine. Background Art
[0002] Neatly-knitted clothes can leave a good impression on the wearer when attending some public occasions. People often send suits, coats, jackets and other clothes to laundries for cleaning and drying. After cleaning and drying, the clothes often need to be cared for by ironing equipment such as irons to eliminate wrinkles on the surface of the clothes caused by washing and rubbing, so that the clothes can remain neat after washing and drying.
[0003] The most common ironing method on the market is to use an iron. The ironing principle is: iron the reverse side first, then the front side, then iron the parts first, then the entire garment. The order for ironing tops is: seams > welts > plackets > pockets > back > front > shoulder and sleeves > collar; for pants, the order is: waist > trouser seams > trouser legs > trouser body; and for shirts, the order is: seams > sleeves > collars > back > pleats > plackets > front shoulders.
[0004] A Chinese patent application, publication number CN111501308B, discloses a multifunctional clothing ironing device. Its key technical features include a portrait blowing and ironing device, a two-in-one ironing device, and an air duct system for the two-in-one ironing device. The portrait blowing and ironing device is used to blow and iron tops. The two-in-one ironing device includes a lifting upper pressing seat mechanism and a pressing seat mounting platform. A movable middle pressing seat mechanism is movably mounted on the pressing seat mounting platform. The movable middle pressing seat mechanism cooperates with the lifting upper pressing seat mechanism and the lifting lower pressing seat mechanism to achieve the functions of collar ironing and clothing pressing. The air duct system of the two-in-one ironing device is used to supply air for ironing. This solution integrates the three functions of blowing, collar ironing, and pressing, essentially covering all clothing ironing needs. This allows a single operator to iron multiple types of clothing, resulting in high clothing ironing efficiency and a small overall footprint. Furthermore, the collar ironing and pressing devices utilize a mobile back-and-forth operating structure design, fully utilizing the operating time difference between functional areas and improving ironing efficiency.
[0005] The above technical solution integrates the three ironing methods and structures of blow ironing, cuff ironing and pressing, and through the setting of multiple functional areas, it can improve the working efficiency by utilizing the working time difference. However, in order to save costs and floor space, the ironing equipment integrating the three ironing methods makes the two-in-one ironing device and the portrait blow ironing device share a set of two-in-one ironing device air duct system. Therefore, when the ironing equipment was put into use, it was found that when the portrait blow ironing device and the two-in-one ironing device were started and operated at intervals, there was a fluctuation in the steam supply and instability, which affected the ironing effect of the clothes.
[0006] Therefore, a new solution needs to be proposed to solve this problem. Summary of the Invention
[0007] In view of the shortcomings of the prior art, the present invention aims to provide a control system for a post-ironing machine.
[0008] The above technical objectives of the present invention are achieved through the following technical solutions: a control system for a post-ironing machine, comprising a portrait blowing and ironing device, an all-in-one ironing device, and an ironing control system, wherein the ironing control system comprises:
[0009] A control panel module is connected to the portrait blowing and ironing device and the all-in-one ironing device, and is used to start, stop, and set the portrait blowing and ironing device or the all-in-one ironing device;
[0010] The temperature monitoring module is installed in the working area of the portrait ironing device and the all-in-one ironing device to obtain the working temperature of each working area and output temperature data corresponding to the actual temperature;
[0011] The air pressure monitoring module is installed in the working area of the portrait blow-ironing device and the all-in-one ironing device to obtain the ironing air pressure of each working area and output the air pressure data corresponding to the actual air pressure;
[0012] a linkage control module connected to the temperature monitoring module and the wind pressure monitoring module, configured to obtain wind pressure data and temperature data at specific intervals, and output a maneuvering compensation instruction in response to abnormal temperature data or abnormal wind pressure data;
[0013] The variable frequency compensation module is connected to the compensation fan and the compensation evaporator, and is in communication with the linkage control module. It responds to the motorized compensation instruction to start and stop the compensation fan or the compensation evaporator.
[0014] The present invention is further configured as follows: a steam supply unit is provided between the portrait blowing and ironing device and the all-in-one ironing device;
[0015] The steam supply unit is connected to the control panel module and responds to manual operation of the control panel module to independently start or stop the steam supply to the portrait blowing and ironing device or the all-in-one ironing device;
[0016] The steam supply unit is connected to the linkage control module. In response to the interval start-up of the portrait blowing and ironing device or the all-in-one ironing device, it delays the steam supply to the portrait blowing and ironing device or the all-in-one ironing device started later, and outputs a motor compensation instruction to the frequency conversion compensation module.
[0017] The steam supply unit is connected to the frequency conversion compensation module, and drives the compensation fan or compensation evaporator when the steam supply of the portrait ironing device or the all-in-one ironing device is delayed.
[0018] The present invention is further configured as follows: the steam supply unit comprises:
[0019] The ventilation box has a plurality of steam supply channels formed therein, which are connected to the portrait blowing and ironing device or the all-in-one ironing device respectively, and is provided with a compensation flow channel connected to the steam supply channels;
[0020] The steam circuit switching unit is arranged in the ventilation box and is used to control the mutual conduction or closure of several steam supply channels and compensation flow channels.
[0021] The present invention is further configured as follows: the all-in-one ironing device comprises:
[0022] The collar curling assembly is composed of an upper collar pressing seat and a lower collar pressing seat. The upper collar pressing seat and the lower collar pressing seat are both provided with matching collar curling arc surfaces on opposite sides. The lower collar pressing seat is connected to the steam supply unit through a first air supply pipe.
[0023] The ironing platform assembly includes an ironing platform located directly below the collar lower pressing seat. The ironing platform is connected to the collar lower pressing seat via a lifting lower pressing seat. When the collar lower pressing seat is vertically displaced and pressed downward, the entire collar is ironed.
[0024] A trouser leg steaming and pressing component, comprising a hollow support plate for the trouser leg legs, wherein the hollow support plate is connected to the steam supply unit via a second air supply pipe;
[0025] The steam supply unit is connected to the first air supply pipe and the second air supply pipe through a three-way pipe. The first air supply pipe is connected to a three-way solenoid valve for supplying steam for ironing the ironing platform assembly and the collar and cuff ironing assembly. The second air supply pipe is connected to a regulating valve.
[0026] The present invention is further configured as follows: a steam supply port and an air outlet port 1 are provided on the ventilation box; a partition plate is provided inside the ventilation box; the partition plate divides the ventilation box into a steam zone, a buffer zone 1 and a steam outlet zone 1 which are arranged in sequence from the steam supply port to the air outlet port 1; the steam zone, the buffer zone 1 and the steam outlet zone 1 are connected in sequence through a first air hole and a second air hole respectively provided on the partition plate; and the steam path switching unit controls the opening and closing of the first air hole and the second air hole.
[0027] The present invention is further configured as follows: a second air outlet is also provided on the ventilation box, and the partition plate divides the ventilation box into a buffer zone 2 and a steam outlet zone 2 which are connected to the steam zone in sequence from the steam supply port to the second air outlet. The steam zone, the second buffer zone and the second steam outlet zone are connected in sequence through the third air hole and the fourth air hole provided on the partition plate, respectively, and the steam path switching unit controls the opening and closing of the third air hole and the fourth air hole.
[0028] The present invention is further configured as follows: the ventilation box is also provided with a cold air supply port and a cold air buffer zone connected to the cooling air supply port, and the partition plate is provided with a fifth air hole and a sixth air hole for connecting the cold air buffer zone, buffer zone 2 and steam outlet zone 1.
[0029] The present invention is further configured as follows: a compensation buffer area and a compensation steam inlet connected to the compensation buffer area are provided in the ventilation box; the compensation buffer area and the steam area are connected through a compensation air hole opened on the partition plate; the steam circuit switching unit controls the opening and closing of the compensation air hole to realize the mutual conduction or closure of the steam supply channel and the compensation flow channel.
[0030] The present invention is further configured as follows: the steam circuit switching unit includes:
[0031] The first ventilation cylinder is radially arranged along the direction in which the first ventilation hole is opened;
[0032] The second ventilation cylinder is arranged along the radial direction of the second ventilation hole and the sixth ventilation hole;
[0033] A third ventilation cylinder is arranged along the radial direction of the third ventilation hole and the fifth ventilation hole;
[0034] a fourth ventilation cylinder, arranged along the radial direction of the fourth ventilation hole;
[0035] a fifth ventilation cylinder, arranged along the radial direction of the compensation air hole;
[0036] The first ventilation cylinder, the second ventilation cylinder, the third ventilation cylinder, the fourth ventilation cylinder and the fifth ventilation cylinder are respectively fixedly connected with air blocking disks for opening and closing the first ventilation hole, the second ventilation hole, the third ventilation hole, the fourth ventilation hole, the fifth ventilation hole, the sixth ventilation hole or the compensation ventilation hole. The distance between the two air blocking disks located on the second ventilation cylinder and the third ventilation cylinder is smaller than the distance between the second ventilation hole and the sixth ventilation hole, and the distance between the third ventilation hole and the fifth ventilation hole.
[0037] The present invention is further configured as follows: the air outlet 1 and the air outlet 2 are respectively connected to the multi-in-one ironing device and the portrait blowing device, the compensating steam inlet is connected to a compensating fan and a compensating evaporator, and the cold air supply port is externally connected to a cold air blower.
[0038] In summary, the present invention has the following beneficial effects:
[0039] This technical solution monitors the steam supply of the portrait blowing and ironing device and the all-in-one ironing device during operation through the temperature monitoring module and the wind pressure monitoring module. Furthermore, with the help of the linkage control module, when the portrait blowing and ironing device and the all-in-one ironing device are started at intervals, a motorized compensation instruction is output to drive the frequency conversion compensation module when abnormal temperature data or wind pressure data is caused, thereby achieving stable control during the operation of automated blowing and ironing.
[0040] In addition, the steam supply unit is connected to the linkage control module, so that when the portrait blowing and ironing device or the multi-in-one ironing device is started at intervals, the steam supply unit realizes a delay. On the one hand, it can reserve steam for the portrait blowing and ironing device or the multi-in-one ironing device started later, and at the same time give the frequency conversion compensation module time to start and operate, store steam energy, and then start the portrait blowing and ironing device or the multi-in-one ironing device. BRIEF DESCRIPTION OF THE DRAWINGS
[0041] Figure 1 It is a structural schematic diagram of the present invention;
[0042] Figure 2 A partial cross-sectional view of the ventilation box of the present invention;
[0043] Figure 3 It is the control interface 1 of the control panel module of the present invention;
[0044] Figure 4 This is the second control interface of the control panel module in the present invention.
[0045] In the figure: 1. Control panel module; 2. Ventilation box; 3. Upper collar pressure seat; 4. Lower collar pressure seat; 5. Ironing platform; 6. Hollow support plate; 7. Steam supply port; 8. Air outlet 1; 9. Partition plate; 10. Steam area; 11. Buffer zone 1; 12. Steam outlet area 1; 13. First air hole; 14. Second air hole; 15. Air outlet 2; 16. Buffer zone 2; 17. Steam outlet area 2; 18. Third air hole; 19. Fourth air hole; 20. Cold air supply port; 21. Cold air buffer zone; 22. Fifth air hole; 23. Sixth air hole; 24. Compensation buffer zone; 25. Compensation steam inlet; 26. Compensation air hole; 27. First ventilation cylinder; 28. Second ventilation cylinder; 29. Third ventilation cylinder; 30. Fourth ventilation cylinder; 31. Fifth ventilation cylinder; 32. Air blocking plate. DETAILED DESCRIPTION
[0046] The present invention is described in detail below with reference to the accompanying drawings and embodiments.
[0047] Example:
[0048] A control system for a post-ironing machine, such as Figure 1 and Figure 2As shown, it is used to control a multifunctional clothing ironing device as disclosed in the prior application publication number CN111501308B, including a portrait blowing device, an all-in-one ironing device and an ironing control system. In this embodiment, the portrait blowing device is the same as the portrait blowing device recorded in the prior application publication number CN111501308B, and no improvement has been made, so no further details will be given. The only difference in the equipment is that the all-in-one ironing device includes: a cuff clip ironing component and an ironing platform component, wherein the main body of the cuff clip ironing component consists of an upper cuff pressure seat 3 and a lower cuff pressure seat 4, and the upper cuff pressure seat 3 and the lower cuff pressure seat 4 are both provided with a The cuffs have a matching cuff ironing arc surface, and the cuff lower pressing seat 4 is connected to the steam supply unit through the first air supply pipe, and the main body of the pressing platform assembly includes an ironing platform 5 located directly below the cuff lower pressing seat 4, and the ironing platform 5 is connected to the cuff lower pressing seat 4 through a lifting pressing seat. When the cuff lower pressing seat 4 is vertically displaced and pressed down, the entire cuff is ironed. In terms of the cuff clamping assembly and the pressing platform assembly, it is the same as the two-in-one ironing device of a multifunctional clothing ironing equipment in the prior application CN111501308B, the difference is that a trouser leg steaming assembly is also provided, and the trouser leg steaming assembly includes a hollow support plate 6 for the trouser leg legs, and the hollow support plate 6 is connected to the steam supply unit through the second air supply pipe.
[0049] The key technical points of the optimization are the ironing control system, including:
[0050] like Figure 3 and Figure 4 As shown, the control panel module 1 is connected to the portrait blowing and ironing device and the all-in-one ironing device, and is used to start, stop and set the portrait blowing and ironing device or the all-in-one ironing device. In this embodiment, the control panel module 1 includes an electrical cabinet, a portrait device control panel, an all-in-one ironing device control panel, and a panel mounting bracket. The portrait device control panel and the all-in-one ironing device control panel are equipped with a touch screen and a number of physical buttons, and the physical buttons include a "stop" button, a "portrait start / stop" button, a "leader start / stop" button, a "clamp start / stop" button, and a "steam start / stop" button, so that after the device is powered on, the control screen displays the main screen as shown in FIG. Figure 1 , click the "Start / Stop" button, the device enters the start-up preparation state, and the general start / stop is activated. After the general start / stop is activated, click the "Portrait Start / Stop", "Leader Start / Stop", "Clamp Machine Start / Stop", and "Steam Start / Stop" buttons to start the portrait machine, leader clamp machine, universal clamp, and steam generator respectively (when the steam generator power supply is connected separately, it is not controlled by this button), and the touch screen will simultaneously display the workload of each work area within the specified time period, and a count reset function key corresponding to each work area is set, which is specifically displayed as follows:
[0051] --"Number of universal clamping machines" displays the total number of clamped and ironed pieces by the universal clamping machine. Click "Reset" to reset the count to zero.
[0052] --"Head Cutter Count" displays the total number of pieces clipped and ironed by the head cutter. Click "Reset" to reset the count.
[0053] --"Portrait Machine Count" displays the total number of pieces ironed by the portrait machine. Click "Reset" to reset the count.
[0054] --"Clamp reset indication" The clamp reset indicator light is on when the clamp is in the reset state.
[0055] --"Portrait reset indication" The portrait reset indicator light is on when the portrait camera is in the reset state.
[0056] --"Leader Reset Indicator" The leader reset indicator light is on when the leader machine is in the reset state.
[0057] The temperature monitoring module and the wind pressure monitoring module are both arranged in the working area of the portrait blowing and ironing device and the all-in-one ironing device to obtain the working temperature and ironing wind pressure of each working area to output temperature data corresponding to the actual temperature and wind pressure data corresponding to the actual wind pressure. The linkage control module is connected to the temperature monitoring module and the wind pressure monitoring module to obtain wind pressure data and temperature data at specific time intervals, and output maneuver compensation instructions in response to abnormal temperature data or abnormal wind pressure data.
[0058] In this embodiment, the temperature control monitoring module and the wind pressure monitoring module are based on temperature sensors and wind pressure sensors, and the temperature sensors and wind pressure sensors are respectively arranged in each steam outlet area of the all-in-one ironing device and the portrait device. The specific parameters of temperature and wind pressure are obtained through the embedded single-chip microcomputer system as the linkage control module, and analog-to-digital conversion is performed to convert them into corresponding digital analog quantities as wind pressure data and temperature data. At the same time, they can be compared with the temperature reference parameters and wind pressure reference parameters pre-set and input by the control panel module 1. The temperature reference parameters and wind pressure reference parameters pre-set and input by the control panel module 1 are jump-controlled through the corresponding function areas on the touch screen. The specific operations are as follows:
[0059] --Click “?” to enter the help page.
[0060] --Click "Clamping Machine Operation / Settings" to enter the clamping machine operation / settings page.
[0061] --Click "Leader Operation / Settings" to enter the Leader Operation / Settings page.
[0062] --Click "Portrait Operation / Settings" to enter the portrait operation / settings page.
[0063] --Click "I / O Monitoring" to enter the I / O monitoring page.
[0064] The variable frequency compensation module is connected to the compensation fan and the compensation evaporator, and is in communication with the linkage control module. It responds to the motorized compensation instruction to start and stop the compensation fan or the compensation evaporator. In this embodiment, the variable frequency compensation module includes a wireless communication module and a variable frequency controller connected to the compensation fan and the compensation evaporator. The wireless communication module establishes a communication connection with the linkage control module. When the linkage control module transmits the motorized compensation instruction to the wireless communication module, the motorized compensation instruction includes the difference between the set temperature and the actual temperature, and the set wind pressure and the actual wind pressure. When the portrait ironing device is first started and works continuously, and then the cuff ironing module in the multi-in-one ironing module is started at intervals, the steam consumption and wind pressure setting required for the cuff ironing work are obtained, and the steam consumption and wind pressure setting required for the cuff ironing work are used as difference data to connect the motorized compensation instruction and transmit it to the wireless communication module. Then, the obtained difference data is used to control the working frequency of the compensation fan and the compensation steam generator through the variable frequency controller, so that during operation, the subsequent start of the adjacent working area for operation will not easily affect the steaming and ironing operation of the entire equipment, thereby improving the steaming and finishing effect of clothing.
[0065] A steam supply unit is commonly provided between the portrait blowing and ironing device and the all-in-one ironing device, and the steam supply unit is connected to the control panel module 1. In response to manual operation of the control panel module 1, the steam supply to the portrait blowing and ironing device or the all-in-one ironing device is independently started or stopped. Specifically, the steam supply unit realizes separate steam supply or joint steam supply to the portrait blowing and ironing device or the all-in-one ironing device in response to the control feedback of the control panel module 1, thereby reducing the size of the entire equipment and improving the utilization rate of steam resources.
[0066] In this embodiment, the steam supply unit is connected to the linkage control module and the frequency conversion compensation module. In response to the interval start-up of the portrait blow-ironing device or the all-in-one ironing device, the steam supply to the portrait blow-ironing device or the all-in-one ironing device started later is delayed, and a motor compensation instruction is output to the frequency conversion compensation module during the delay period, while driving the compensation fan or the compensation evaporator. Specifically, the steam supply unit includes:
[0067] The ventilation box 2 is formed with a plurality of steam supply channels connected to the portrait blowing and ironing device or the all-in-one ironing device, and is provided with a compensation flow channel connected to the steam supply channels;
[0068] The steam circuit switching unit is arranged in the ventilation box 2 and is used to control the mutual conduction or closure of a plurality of steam supply channels and compensation flow channels.
[0069] The steam supply unit is connected to the first air supply pipe and the second air supply pipe through a three-way pipe. The first air supply pipe is connected to a three-way solenoid valve for supplying steam for ironing the ironing platform 5 assembly machine and the collar clip ironing assembly. The second air supply pipe is connected to a regulating valve.
[0070] A steam supply port 7 and an air outlet 8 are provided on the ventilation box 2. A partition plate 9 is provided inside the ventilation box 2. The partition plate 9 divides the ventilation box 2 into a steam zone 10, a buffer zone 11 and a steam outlet zone 12 which are arranged in sequence from the steam supply port 7 to the air outlet 8. The steam zone 10, the buffer zone 11 and the steam outlet zone 12 are connected in sequence through a first air hole 13 and a second air hole 14 provided on the partition plate 9. The steam path switching unit controls the opening and closing of the first air hole 13 and the second air hole 14.
[0071] The ventilation box 2 is also provided with an air outlet 15. The partition plate 9 divides the ventilation box 2 into a buffer zone 16 and a steam outlet zone 17 connected to the steam zone 10, which are arranged in sequence from the steam supply port 7 to the air outlet 15. The steam zone 10, the buffer zone 16 and the steam outlet zone 17 are connected in sequence through the third air hole 18 and the fourth air hole 19 provided on the partition plate 9. The steam circuit switching unit controls the opening and closing of the third air hole 18 and the fourth air hole 19.
[0072] The ventilation box 2 is also provided with a cold air supply port 20 and a cold air buffer zone 21 connected to the cooling air supply port. The partition plate 9 is provided with a fifth air hole 22 and a sixth air hole 23 for connecting the cold air buffer zone 21, the buffer zone 2 16 and the steam outlet zone 1 12.
[0073] A compensation buffer area 24 and a compensation steam inlet 25 connected to the compensation buffer area 24 are provided in the ventilation box 2. The compensation buffer area and the steam area 10 are connected through a compensation air hole 26 opened on the partition plate 9. The steam circuit switching unit controls the opening and closing of the compensation air hole 26 to realize the mutual conduction or closure of the steam supply channel and the compensation flow channel.
[0074] The steam circuit switching unit includes:
[0075] The first ventilation cylinder 27 is radially arranged along the direction of the first ventilation hole;
[0076] The second ventilation cylinder 28 is arranged along the radial direction of the second ventilation hole and the sixth air hole 23;
[0077] The third ventilation cylinder 29 is arranged along the radial direction of the third ventilation hole and the fifth air hole 22;
[0078] The fourth ventilation cylinder 30 is arranged along the radial direction of the fourth ventilation hole;
[0079] The fifth ventilation cylinder 31 is arranged along the radial direction of the compensation air hole 26;
[0080] The first ventilation cylinder 27, the second ventilation cylinder 28, the third ventilation cylinder 29, the fourth ventilation cylinder 30 and the fifth ventilation cylinder 31 are respectively fixedly connected with a blocking plate 32 for opening and closing the first ventilation hole, the second ventilation hole, the third ventilation hole, the fourth ventilation hole, the fifth ventilation hole 22, the sixth ventilation hole 23 or the compensation ventilation hole. The distance between the two blocking plates 32 located on the second ventilation cylinder 28 and the third ventilation cylinder 29 is smaller than the distance between the second ventilation hole and the sixth ventilation hole 23, and the distance between the third ventilation hole and the fifth ventilation hole 22.
[0081] The air outlet 1 8 and the air outlet 2 15 are connected to the multi-in-one ironing device and the portrait blowing and ironing device respectively. The compensation steam inlet 25 is connected to the compensation fan and the compensation evaporator. The cold air supply port 20 is externally connected to the cold air blower.
[0082] For example, after the portrait blowing and ironing device is working, when the multi-in-one ironing device is started, the control panel module 1 controls the operation of the compensation fan and the compensation evaporator, but the fifth ventilation cylinder 31 remains stationary and does not move. When the running steam is filled to the compensation buffer area 24, the fifth ventilation cylinder 31 is turned on, the compensation air hole 26 is opened, and the third ventilation cylinder 29 and the fourth ventilation cylinder 30 are controlled to open the third air hole 18 and the fourth air hole 19 at the same time, so that the compensation steam flows from the third air hole 18 to the fourth air hole 19, so that the steam entering the steam supply port 7 and the compensation steam are simultaneously supplied to the portrait blowing and ironing device and the multi-in-one ironing device, so that the fluctuation of the steam supply required for the front and rear equipment when starting up is small, thereby ensuring the ironing effect.
[0083] The above description is merely a preferred embodiment of the present invention. The scope of protection of the present invention is not limited to the above embodiment. All technical solutions based on the concept of the present invention are within the scope of protection of the present invention. It should be noted that for those skilled in the art, various improvements and modifications that do not depart from the principles of the present invention should also be considered within the scope of protection of the present invention.
Claims
1. A control system for a finishing and ironing machine, characterized by: It includes a portrait blowing device, an all-in-one ironing device and an ironing control system, and the ironing control system includes: A control panel module is connected to the portrait blowing and ironing device and the all-in-one ironing device, and is used to start, stop, and set the portrait blowing and ironing device or the all-in-one ironing device; The temperature monitoring module is installed in the working area of the portrait ironing device and the all-in-one ironing device to obtain the working temperature of each working area and output temperature data corresponding to the actual temperature; The air pressure monitoring module is installed in the working area of the portrait blow-ironing device and the all-in-one ironing device to obtain the ironing air pressure of each working area and output the air pressure data corresponding to the actual air pressure; a linkage control module connected to the temperature monitoring module and the wind pressure monitoring module, configured to obtain wind pressure data and temperature data at specific intervals, and output a maneuvering compensation instruction in response to abnormal temperature data or abnormal wind pressure data; A variable frequency compensation module is connected to the compensation fan and the compensation evaporator, and is in communication with the linkage control module, and responds to the motorized compensation instruction to start and stop the compensation fan or the compensation evaporator; A steam supply unit is provided between the portrait blowing and ironing device and the all-in-one ironing device; The steam supply unit is connected to the control panel module and responds to manual operation of the control panel module to independently start or stop the steam supply to the portrait blowing and ironing device or the all-in-one ironing device; The steam supply unit is connected to the linkage control module, and in response to the interval activation of the portrait blowing and ironing device or the all-in-one ironing device, delays the steam supply to the portrait blowing and ironing device or the all-in-one ironing device activated later, and outputs a motor compensation instruction to the frequency conversion compensation module; The steam supply unit is connected to the frequency conversion compensation module, and drives the compensation fan or compensation evaporator when the steam supply of the portrait ironing device or the all-in-one ironing device is delayed.
2. The control system of the finishing and ironing machine according to claim 1, characterized in that: The steam supply unit comprises: The ventilation box has a plurality of steam supply channels formed therein, which are connected to the portrait blowing and ironing device or the all-in-one ironing device respectively, and is provided with a compensation flow channel connected to the steam supply channels; The steam circuit switching unit is arranged in the ventilation box and is used to control the mutual conduction or closure of several steam supply channels and compensation flow channels.
3. The control system of the finishing and ironing machine according to claim 2, characterized in that: The all-in-one ironing device comprises: The collar curling assembly is composed of an upper collar pressing seat and a lower collar pressing seat. The upper collar pressing seat and the lower collar pressing seat are both provided with matching collar curling arc surfaces on opposite sides. The lower collar pressing seat is connected to the steam supply unit through a first air supply pipe. The ironing platform assembly includes an ironing platform located directly below the collar lower pressing seat. The ironing platform is connected to the collar lower pressing seat via a lifting lower pressing seat. When the collar lower pressing seat is vertically displaced and pressed downward, the entire collar is ironed. A trouser leg steaming and pressing component, comprising a hollow support plate for the trouser leg legs, wherein the hollow support plate is connected to the steam supply unit via a second air supply pipe; The steam supply unit is connected to the first air supply pipe and the second air supply pipe through a three-way pipe. The first air supply pipe is connected to a three-way solenoid valve for supplying steam for ironing the ironing platform assembly and the collar and cuff ironing assembly. The second air supply pipe is connected to a regulating valve.
4. The control system of the finishing and ironing machine according to claim 2, characterized in that: A steam supply port and an air outlet port 1 are provided on the ventilation box, and a partition plate is provided inside the ventilation box. The partition plate divides the ventilation box into a steam zone, a buffer zone 1 and a steam outlet zone 1 which are arranged in sequence from the steam supply port to the air outlet port 1. The steam zone, the buffer zone 1 and the steam outlet zone 1 are connected in sequence through a first air hole and a second air hole provided on the partition plate, respectively. The steam path switching unit controls the opening and closing of the first air hole and the second air hole.
5. The control system of the finishing and ironing machine according to claim 4, characterized in that: The ventilation box is also provided with a second air outlet. The partition plate divides the ventilation box into a buffer zone 2 and a steam outlet zone 2 which are connected to the steam zone in sequence from the steam supply port to the second air outlet. The steam zone, the second buffer zone and the second steam outlet zone are connected in sequence through the third air hole and the fourth air hole provided on the partition plate, respectively. The steam path switching unit controls the opening and closing of the third air hole and the fourth air hole.
6. The control system of the finishing and ironing machine according to claim 5, characterized in that: The ventilation box is also provided with a cold air supply port and a cold air buffer zone connected to the cold air supply port, and the partition plate is provided with a fifth air hole and a sixth air hole for connecting the cold air buffer zone, the buffer zone 2 and the steam outlet zone 1.
7. The control system of the finishing and ironing machine according to claim 6, characterized in that: A compensation buffer area and a compensation steam inlet connected to the compensation buffer area are provided in the ventilation box. The compensation buffer area and the steam area are connected through the compensation air holes opened on the partition plate. The steam circuit switching unit controls the opening and closing of the compensation air holes to achieve mutual conduction or closure between the steam supply channel and the compensation flow channel.
8. The control system of the finishing and ironing machine according to claim 7, characterized in that: The steam circuit switching unit includes: The first ventilation cylinder is radially arranged along the direction in which the first ventilation hole is opened; The second ventilation cylinder is arranged along the radial direction of the second ventilation hole and the sixth ventilation hole; A third ventilation cylinder is arranged along the radial direction of the third ventilation hole and the fifth ventilation hole; a fourth ventilation cylinder, arranged along the radial direction of the fourth ventilation hole; a fifth ventilation cylinder, arranged along the radial direction of the compensation air hole; The first ventilation cylinder, the second ventilation cylinder, the third ventilation cylinder, the fourth ventilation cylinder and the fifth ventilation cylinder are respectively fixedly connected with air blocking disks for opening and closing the first ventilation hole, the second ventilation hole, the third ventilation hole, the fourth ventilation hole, the fifth ventilation hole, the sixth ventilation hole or the compensation ventilation hole. The distance between the two air blocking disks located on the second ventilation cylinder and the third ventilation cylinder is smaller than the distance between the second ventilation hole and the sixth ventilation hole, and the distance between the third ventilation hole and the fifth ventilation hole.
9. The control system of the finishing and ironing machine according to claim 8, characterized in that: The air outlet 1 and the air outlet 2 are connected to the all-in-one ironing device and the portrait blowing device respectively, the compensating steam inlet is connected to a compensating fan and a compensating evaporator, and the cold air supply port is externally connected to a cold air blower.
Citation Information
Patent Citations
A multi-functional garment ironing device
CN111501308B
Multifunctional clothes ironing equipment
CN111501308A
Airflow stability control system and method and storage medium
CN114264051A