Garment ironing and flattening device

By introducing a combination of moving components and pressure sensors into the clothing ironing and flattening device, automated ironing and air-drying are achieved, solving the problems of high labor intensity and high cost of large equipment in manual ironing, and improving production efficiency and quality stability.

CN223458573UActive Publication Date: 2025-10-21SHISHI JUNCHI TRADE CO LTD
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Patent Information

Application Number
CN202423031738.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-10
Publication Date
2025-10-21
Estimated Expiration
2034-12-10

AI Technical Summary

Technical Problem

In existing clothing production, the ironing and flattening process relies on manual operation, resulting in high labor intensity and unstable quality. In addition, large ironing equipment is expensive and it is difficult to achieve stable contact pressure and fabric adaptation.

Method used

A clothing ironing and flattening device is designed. It uses a mobile component to drive the combined movement of the ironing and air-drying components. Combined with dynamic detection by a pressure sensor, it ensures that the ironing pressure is stable and adaptable to the requirements of different fabrics. Automatic operation is achieved through an electronic control system.

Benefits of technology

It realizes automatic ironing and air drying, reduces labor intensity, ensures the stability of ironing quality and cost-effectiveness, and improves clothing production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of garment production equipment, in particular to a garment ironing and flattening device which comprises a moving assembly, an ironing assembly, an air drying assembly, a workbench assembly and a garment fixing plate. The ironing assembly is connected to the transverse moving linear module through the vertical moving linear module, and the transverse moving linear module is connected to the longitudinal moving linear module. The air drying assembly is connected to the transverse moving linear module, and the clothes fixing plate is fixedly connected to a supporting plate, provided with a pressure sensor, of the workbench assembly. The ironing assembly is driven by the moving assembly to move longitudinally, transversely and vertically for ironing, and the air-drying assembly can be driven to air-dry longitudinally and transversely. The pressure sensor of the workbench assembly is used for detecting the contact pressure during ironing, so that the contact pressure of each batch of products during ironing is kept stable and is matched with the pressure when clothes made of different fabrics are ironed, and therefore, the efficiency can be improved, the cost can be reduced, and the finishing quality can be ensured for a clothes factory.
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Description

TECHNICAL FIELD

[0001] The utility model relates to clothing production equipment field, concretely relates to a clothing ironing and flattening device. BACKGROUND

[0002] Clothing production generally has a post-finishing process after sewing, and the post-finishing process includes cleaning thread ends, ironing and flattening, drying, etc. At present, some factories rely on manual ironing for ironing and flattening. Manual ironing is labor-intensive and low in efficiency. Moreover, different operators have different forces, and the contact pressure during ironing is difficult to control, making it difficult to control the quality of ironing and flattening. In addition, the contact pressure during ironing of different fabrics is also different, and it is difficult for manual control of different forces to grasp. Some factories also use large ironing equipment for automatic ironing, but the investment in ironing equipment is large, and after steam ironing, drying needs to be performed through airing or other equipment, thus increasing the post-finishing cost of clothing. If there is a clothing ironing and flattening device that can automatically iron and dry through a simple moving mechanism to drive the ironing component and the drying component to move, and can keep the ironing pressure stable for the same batch and automatically control the contact pressure during ironing according to different fabrics, the problems of labor-intensive, unstable quality, and high cost caused by the post-finishing process performed by manual or large ironing equipment can be avoided. In view of this, the present case is generated. SUMMARY

[0003] To overcome the deficiencies in the prior art, the utility model discloses a clothing ironing and flattening device, including moving assembly, ironing assembly, drying assembly, workstation assembly and clothing fixing plate, moving assembly is equipped with longitudinal moving linear module, horizontal moving linear module and vertical moving linear module, longitudinal moving linear module is fixedly connected on workstation assembly, horizontal moving linear module is horizontally arranged above longitudinal moving linear module, ironing assembly is connected on horizontal moving linear module through vertical moving linear module, drying assembly is connected on horizontal moving linear module, clothing fixing plate is fixedly connected on the support plate of workstation assembly equipped with pressure sensor, moving assembly is fixedly connected on the table plate of workstation assembly, ironing assembly and drying assembly are all arranged above clothing fixing plate. The utility model discloses a clothing ironing and flattening device, which drives the ironing assembly to move longitudinally, transversely and vertically by using the moving assembly, and also drives the drying assembly to move longitudinally and transversely, so that the ironing assembly and the drying assembly can iron and dry the clothing on the clothing fixing plate respectively. The pressure sensor of the workstation assembly can dynamically detect the contact pressure of the ironing assembly during ironing, so that the contact pressure during ironing of each batch of products is kept stable, and the pressure during ironing of different fabric clothing is adapted, thereby avoiding the problems of labor-intensive, unstable quality and high post-finishing cost caused by manual ironing and large equipment ironing. The utility model can increase efficiency and reduce cost for clothing factories and ensure the quality of post-finishing.

[0004] To achieve the above-mentioned purpose, the utility model adopts the following technical solutions:

[0005] The garment ironing and flattening device comprises a garment fixing plate, a moving assembly, an ironing assembly, an air-drying assembly and a workbench assembly, the moving assembly is provided with a plurality of linear modules, the linear modules are arranged in longitudinal, horizontal and vertical directions respectively, the moving assembly is arranged above the workbench assembly, the linear modules arranged in longitudinal direction are fixed on the workbench assembly, the linear modules arranged in horizontal direction are arranged above and connected with the linear modules arranged in longitudinal direction, the linear modules arranged in longitudinal direction can drive the linear modules arranged in horizontal direction to move longitudinally, the linear modules arranged in vertical direction of the moving assembly are connected on the front side or the rear side of the linear modules arranged in horizontal direction, the linear modules arranged in horizontal direction can drive the linear modules arranged in vertical direction to move horizontally, the ironing assembly is connected on the linear modules arranged in vertical direction of the moving assembly and can be driven by the linear modules arranged in vertical direction to move up and down, the air-drying assembly is arranged on the left side or the right side of the ironing assembly, the air-drying assembly is connected on the linear modules arranged in horizontal direction of the moving assembly and can be driven by the linear modules arranged in horizontal direction to move horizontally, the workbench assembly is provided with a support plate provided with a pressure detecting member, the garment fixing plate is fixed on the support plate, the ironing assembly and the air-drying assembly are respectively provided with an ironing member and an air-drying member, the ironing assembly and the air-drying assembly are arranged above the garment fixing plate, and the ironing assembly and the air-drying assembly can respectively iron and air-dry the garment on the garment fixing plate.

[0006] The workbench assembly comprises a rack, a support plate and a pressure sensor, the top of the rack is provided with a square table plate, the middle of the table plate is provided with a square sink recessed downward, the support plate is a square plate, the cross-sectional dimension of the support plate is smaller than that of the square sink of the table plate, the support plate is arranged above the square sink of the table plate, the pressure sensor is a plurality of pieces, the plurality of pieces of pressure sensor are arranged between the back of the support plate and the bottom surface of the square sink of the table plate, and the sensor is connected with the support plate and the table plate.

[0007] The moving assembly comprises a longitudinal moving linear module, a linear guide rail, a door-shaped support and a crossbeam, the linear guide rail and the longitudinal moving linear module are respectively longitudinally fixed on the left and right sides of the table plate of the rack, the linear guide rail and the longitudinal moving linear module are arranged in parallel, the door-shaped support is a П-shaped frame formed by a horizontal plate and two support legs arranged below the two ends of the horizontal plate, the door-shaped support is two pieces, the two support legs of one of the two pieces of door-shaped support are locked on the two sliders of the linear guide rail, the two support legs of the other of the two pieces of door-shaped support are locked on the two sliders of the longitudinal moving linear module, the upper surfaces of the horizontal plates of the two pieces of door-shaped support are flush, and the crossbeam is a square strip body, which is arranged horizontally and fixed on the horizontal plates of the two pieces of door-shaped support.

[0008] The moving assembly further comprises a horizontal moving linear module and a vertical moving linear module, the horizontal moving linear module is fixed on the front side or the rear side of the crossbeam, and the vertical moving linear module is vertically arranged on the side of the horizontal moving linear module and is connected with a slide block or two parallel slide blocks of the horizontal moving linear module.

[0009] The longitudinal moving linear module, the horizontal moving linear module and the vertical moving linear module are all ball screw type linear modules, and the driving motors are all servo motors.

[0010] The ironing assembly comprises an ironing body, a first hanger and a heating element, the ironing body is a flat iron-shaped component, the heating element is an electric heating wire or an electric heating plate, the heating element is embedded and flatly fixed in the lower part of the ironing body, the first hanger is a Γ-shaped connecting piece, the lower end of the first hanger is fixed with the ironing body, and the end of the upper transverse wing of the first hanger is connected with a slide block of the vertical moving linear module.

[0011] The ironing assembly further comprises a steam jetting component, the steam jetting component is annularly arranged at the middle part of the ironing body, and the steam jetting component is provided with a plurality of downward jetting ports.

[0012] The steam jetting component comprises a steam pipe, a steam input port and a steam output port, the steam pipe is annularly connected at the head and the tail, the steam input port is connected to the steam pipe, the steam input port is connected with an external hot steam source and is controlled by an electric valve, and the steam output port is provided with a downward steam jet head and a connecting pipe, the steam output port is a plurality of pieces, and the plurality of steam output ports are dispersedly connected to the steam pipe.

[0013] The air drying assembly comprises a wind box cover, a second hanger and an air inlet, the wind box cover is a flat cavity body, a plurality of air outlet holes are densely arranged on the bottom wall of the cavity body, the air inlet is arranged on the top wall of the cavity body of the wind box cover, the air inlet is connected with an external hot air source and is controlled by an electric valve, and the second hanger is a Γ-shaped connecting piece, the lower end of the second hanger is fixed with the wind box cover, and the end of the upper transverse wing of the second hanger is connected with another slide block of the horizontal moving linear module.

[0014] The garment ironing and flattening device further comprises an electric control system, the moving assembly, the ironing assembly, the air drying assembly and the workbench assembly are electrically connected with the electric control system, the electric control system comprises a control mainboard and a servo controller, the electric control system can set different threshold ranges of ironing contact pressure required for ironing different fabrics, the electric control system can also set the running paths of the ironing assembly and the air drying assembly, the electric control system can receive and analyze the pressure information collected by the pressure sensor of the workbench assembly, the electric control system can control the movement of each linear module of the moving assembly, and the electric control system can control the starting and stopping of the hot steam of the ironing assembly and the hot air of the air drying assembly.

[0015] As can be seen from the above description, the advantages of the garment ironing and flattening device provided by the present invention are as follows: first, the ironing assembly and the air-drying assembly are connected to a movable assembly and placed above a workbench assembly. The movable assembly is used to drive the ironing assembly to move longitudinally, transversely, and vertically, and also to drive the air-drying assembly to move longitudinally and transversely, so that the ironing assembly and the air-drying assembly can respectively iron and air-dry garments on a garment fixing plate; second, the garment fixing plate is connected to a support plate of the workbench assembly equipped with a pressure sensor. The pressure sensor of the workbench assembly can be used to dynamically detect the contact pressure of the ironing assembly when ironing garments, so that the contact pressure of each batch of products during ironing is maintained stable and the pressure is adapted for ironing garments of different fabrics. This avoids the problems of high labor intensity and unstable quality caused by manual ironing and the high finishing costs caused by large-scale ironing equipment, thereby improving efficiency and reducing costs for garment factories and ensuring finishing quality.

[0016] The utility model has reasonable design, simple structure, low cost and is easy to promote. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 This is a general schematic diagram of a garment ironing and flattening device according to the present invention;

[0018] Figure 2 for Figure 1 AA enlarged schematic diagram in;

[0019] Figure 3 for Figure 2 A magnified schematic diagram of part B in FIG.

[0020] Figure 4 is an enlarged schematic diagram of the mobile component;

[0021] Figure 5 for Figure 4 A magnified schematic diagram of CC in FIG.

[0022] Figure 6 for Figure 5 A magnified schematic diagram of part D in FIG.

[0023] Figure 7 is an enlarged schematic diagram of the ironing component;

[0024] Figure 8 for Figure 7 The E-direction enlarged schematic diagram;

[0025] Figure 9 is an enlarged schematic diagram of the air-drying component;

[0026] Figure 10 for Figure 9 The enlarged schematic diagram of F direction in FIG.

[0027] Figure 11 is a schematic view of the workbench assembly;

[0028] Figure 12 is a schematic view of the G part in Figure 11 .

[0029] Reference signs:

[0030] 1 moving assembly; 11 longitudinal moving linear module; 12 linear guide rail; 13 door-shaped support; 14 cross beam; 15 transverse moving linear module; 16 vertical moving linear module; 2 ironing assembly; 21 ironing body; 22 first hanging bracket; 23 heating piece; 24 steam injection member; 241 steam pipe; 242 steam input port; 243 steam output port; 3 air drying assembly; 31 air box cover; 311 air outlet hole; 32 second hanging bracket; 33 air inlet; 4 workbench assembly; 41 rack; 411 table plate; 42 support plate; 43 pressure sensor; 5 garment fixing plate. DETAILED DESCRIPTION

[0031] The utility model will be further described below through specific embodiments.

[0032] As Figures 1 to 2 shown, the utility model discloses a garment ironing and flattening device includes moving assembly 1, ironing assembly 2, air drying assembly 3, workbench assembly 4 and garment fixing plate 5, moving assembly 1 is equipped with several linear modules, and several linear modules are longitudinally arranged, transversely arranged and vertically arranged respectively, and moving assembly 1 is placed above workbench assembly 4, the longitudinal setting linear module of moving assembly 1 is fixedly connected on workbench assembly 4, the transversely arranged linear module of moving assembly 1 is placed above the longitudinal setting linear module and is connected with the longitudinal setting linear module, and the longitudinal setting linear module can drive the transversely arranged linear module to move longitudinally, the vertically arranged linear module of moving assembly 1 is vertically connected on the front side or rear side of the transversely arranged linear module, and the transversely arranged linear module can drive the vertically arranged linear module to move transversely, ironing assembly 2 is connected on the vertically arranged linear module of moving assembly 1 and can be driven to move up and down by the vertically arranged linear module, air drying assembly 3 is placed on the left side or right side of ironing assembly 2, and air drying assembly 3 is connected on the transversely arranged linear module of moving assembly 1 and is driven to move transversely by the transversely arranged linear module, workbench assembly 4 is equipped with support flat plate with pressure detection member, garment fixing plate 5 is fixedly connected on the support flat plate, ironing assembly 2 and air drying assembly 3 are respectively equipped with ironing member and air drying member, and ironing assembly 2 and air drying assembly 3 are placed above garment fixing plate 5, and ironing assembly 2 and air drying assembly 3 can respectively iron and air dry the garment on garment fixing plate 5.

[0033] As Figure 1 ,Figure 2 、 Figure 11 and Figure 12 As shown, the workbench assembly 4 described in the utility model includes a table 41, a support plate 42 and a pressure sensor 43. The top of the table 41 is provided with a square table plate 411, and a downwardly recessed square groove is provided in the middle of the table plate 411. The support plate 42 is a square flat plate, and its cross-sectional dimension is smaller than the cross-sectional dimension of the square groove of the table plate 411. The support plate 42 is placed above the square groove of the table plate 411. The pressure sensor 43 is composed of several pieces, and several pieces of pressure sensors 43 are placed between the back of the support plate 42 and the bottom of the square groove of the table plate 411. The sensor 43 is connected to both the support plate 42 and the table plate 411.

[0034] like Figures 1 to 6 As shown, the moving component 1 described in the utility model includes a longitudinal linear module 11, a linear guide 12, a gate-shaped bracket 13, a crossbeam 14, a cross-movement linear module 15 and a vertical linear module 16. The linear guide 12 and the longitudinal linear module 11 are respectively longitudinally fixed to the left and right side parts of the table 411 of the table 41, and the linear guide 12 is arranged parallel to the longitudinal linear module 11. The gate-shaped bracket 13 is a П-shaped frame formed by fixing a cross plate and two legs placed under the two ends of the cross plate. The gate-shaped bracket 13 is two pieces, and the two legs of one gate-shaped bracket 13 are locked on the two sliders of the linear guide 12, and the two legs of the other gate-shaped bracket 13 are locked on the two sliders of the longitudinal linear module 11. The upper surfaces of the cross plates of the two gate-shaped brackets 13 are flush, and the crossbeam 14 is a square strip, which is horizontally placed and fixed on the cross plates of the two gate-shaped brackets 13. The transverse linear module 15 is fixed to the front or rear side of the crossbeam 14. In this embodiment, the transverse linear module 15 is fixed to the front side of the crossbeam 14. The vertical linear module 16 is vertically arranged on the side of the transverse linear module 15 and connected to a slider or two parallel sliders provided with the transverse linear module 15. The longitudinal linear module 11, transverse linear module 15, and vertical linear module 16 are all ball screw linear modules, and their drive motors are all servo motors. The linear modules are conventionally used.

[0035] like Figures 1 to 8As shown, the ironing assembly 2 of the present invention includes an ironing body 21, a first hanger 22, a heater 23, and a steam injection member 24. The ironing body 21 is an iron-shaped member, and the heater 23 is an electric heating wire or a heating plate. The heater 23 is embedded in and flatly fixed to the lower portion of the ironing body 21. The first hanger 22 is a Γ-shaped connector, with the lower end of the first hanger 22 fixed to the ironing body 21, and the ends of the upper horizontal wings of the first hanger 22 are connected to the slider of the vertical linear module 16. The steam injection member 24 is arranged in a ring shape around the middle of the ironing body 21 and is equipped with a plurality of downward-facing injection ports. The steam injection component 24 includes a steam pipe 241, a steam input port 242 and a steam output port 243. The steam pipe 241 is connected end to end into a ring shape. The steam input port 242 is connected to the steam pipe 241. The steam input port 242 is connected to an external hot steam source and is controlled by an electric valve. The steam output port 243 is provided with a downward steam nozzle and a connecting pipe. The steam output port 243 is composed of multiple pieces, and the multiple steam output ports 243 are dispersedly connected to the steam pipe 241.

[0036] like Figures 1 to 3 、 Figure 9 and Figure 10 As shown, the air-drying component 3 described in the utility model includes a bellows cover 31, a second hanger 32 and an air inlet 33. The bellows cover 31 is a flat hollow cavity, and a plurality of air outlet holes 311 are densely arranged on the bottom wall of the cavity. The air inlet 33 is arranged on the top wall of the cavity of the bellows cover 31. The air inlet 33 is connected to the external hot air source and is controlled by an electric valve. The second hanger 32 is a Γ-shaped connecting piece. The lower end of the second hanger 32 is fixed to the bellows cover 31, and the end of the upper cross wing of the second hanger 32 is connected to another slider provided with the transverse linear module 15.

[0037] This clothing ironing and flattening device is also equipped with an electronic control system. The moving component 1, ironing component 2, air-drying component 3 and workbench component 4 are all electrically connected to the electronic control system. The electronic control system includes a control mainboard and a servo controller. The electronic control system can set different threshold ranges of ironing contact pressure required for ironing different fabrics. The electronic control system can also set the running paths of the ironing component 2 and the air-drying component 3. The electronic control system can receive the pressure information collected by the pressure sensor 43 of the workbench component 4 for analysis and processing. The electronic control system can control the movement of each linear module of the moving component 1. The electronic control system can control the start and stop of the hot steam of the ironing component 2 and the start and stop of the hot air of the air-drying component 3.

[0038] The garment ironing and flattening device fixes the garment to be ironed and flattened on the garment fixing plate 5; according to the fabric characteristics of the garment to be ironed, especially for the characteristics of thick wool or high-grade chemical fiber, the highest pressure value and the lowest pressure value of the required ironing contact pressure threshold range can be set in advance in the electric control system, so as to meet the requirements of ironing the garment in place without affecting the elastic recovery of the garment fabric due to excessive pressure; and the running path of the ironing assembly 2 and the air drying assembly 3 is set in the electric control system. Start the electric control system, instruct the longitudinal linear module 11 and the transverse linear module 15 of the moving assembly 1 to act, first drive the ironing assembly 2 to run above the garment on the garment fixing plate 5, instruct the longitudinal linear module 11 and the transverse linear module 15 to stop acting; then instruct the vertical linear module 16 to act, drive the ironing assembly 2 to move downward to contact the garment on the garment fixing plate 5, and continue to move downward until the actual contact pressure fed back by the pressure sensor 43 to the control system is within the set ironing contact pressure threshold range, the control system instructs the vertical linear module 16 to stop acting; then according to the set running path of the ironing assembly 2, the control system instructs the longitudinal linear module 11 and the transverse linear module 15 to act, and instructs the heating element 23 of the ironing assembly 2 to start, and the ironing assembly 2 moves to iron and flatten the garment. If hot steam is needed during ironing, the valve on the steam input port 242 of the steam injection member 24 can also be opened synchronously. After ironing, the control system instructs the vertical linear module 16 to drive the ironing assembly 2 to rise and instructs the heating element 23 to stop working, and then opens the valve on the air inlet 33 of the air drying assembly 3, the control system instructs the longitudinal linear module 11 and the transverse linear module 15 to act according to the set running path of the air drying assembly 3, so that the air drying assembly 3 moves, and the air drying assembly 3 can dry the garment. Although the ironing assembly 2 also follows during the movement of the air drying assembly 3, the ironing assembly 2 has been raised and is not working. If the corners or special parts of the garment cannot be ironed and flattened by the device, manual ironing can be used to supplement the ironing.

[0039] The utility model discloses a garment ironing and flattening device, ironing component 2 and air dry component 3 are connected on mobile component 1 and are placed in the upper of workbench component 4, the clothing fixed plate 5 is connected on the support plate 42 of workbench component 4 and is equipped with pressure sensor 43, utilize mobile component 1 to drive ironing component 2 longitudinal movement, transverse movement and lift movement, can also drive air dry component 3 longitudinal movement and transverse movement, make ironing component 2 and air dry component 3 can respectively iron and air dry on the clothing of clothing fixed plate 5, utilize the pressure sensor 43 of workbench component 4 can dynamic detection ironing component 2 when ironing clothing contact pressure, make every batch product when ironing contact pressure keep stable and the pressure of ironing different fabric clothing is adapted to, thereby can avoid the labor intensity big, quality unstable and the problem of high post-finishing cost that large equipment ironing brings to artificial ironing, can be for clothing factory efficiency and ensure post-finishing quality.

[0040] The above is only one specific embodiment of the utility model, but the design concept of the utility model is not limited to this, and any non-essential change to the utility model using this concept should be regarded as an infringement of the protection scope of the utility model.

Claims

1. A garment ironing and flattening device comprising a garment fixing plate (5), characterized in that: The moving assembly (1), the ironing assembly (2), the air-drying assembly (3) and the workbench assembly (4) are further included. The moving assembly (1) is provided with several linear modules which are arranged in longitudinal direction, transverse direction and vertical direction respectively. The moving assembly (1) is arranged above the workbench assembly (4). The linear module arranged in longitudinal direction is fixed on the workbench assembly (4). The linear module arranged in transverse direction is arranged above and connected with the linear module arranged in longitudinal direction. The linear module arranged in longitudinal direction can drive the linear module arranged in transverse direction to move in longitudinal direction. The linear module arranged in vertical direction of the moving assembly (1) is arranged on the front side or the back side of the linear module arranged in transverse direction. The linear module arranged in transverse direction can drive the linear module arranged in vertical direction to move in transverse direction. The ironing assembly (2) is connected with the linear module arranged in vertical direction and can be driven by the linear module arranged in vertical direction to move up and down. The air-drying assembly (3) is arranged on the left side or the right side of the ironing assembly (2). The air-drying assembly (3) is connected with the linear module arranged in transverse direction and can be driven by the linear module arranged in transverse direction to move in transverse direction. The workbench assembly (4) is provided with a supporting plate provided with a pressure detecting component. The clothing fixing plate (5) is fixed on the supporting plate. The ironing assembly (2) and the air-drying assembly (3) are respectively provided with an ironing component and an air-drying component. The ironing assembly (2) and the air-drying assembly (3) are arranged above the clothing fixing plate (5).

2. A garment pressing and flattening device according to claim 1, wherein: The workbench assembly (4) includes a rack (41), a supporting plate (42) and a pressure sensor (43). The top of the rack (41) is provided with a square plate (411). A square sink is concave downward in the middle of the square plate (411). The supporting plate (42) is a square plate. The supporting plate (42) is arranged above the square sink of the square plate (411). The pressure sensor (43) is several pieces. The several pieces of pressure sensor (43) are arranged between the back of the supporting plate (42) and the bottom of the square sink of the square plate (411). The sensor (43) is connected with the supporting plate (42) and the square plate (411).

3. A garment pressing and flattening device according to claim 2, wherein: The moving assembly (1) includes a longitudinal moving linear module (11), a linear guide rail (12), a door-shaped support (13) and a crossbeam (14). The linear guide rail (12) and the longitudinal moving linear module (11) are respectively longitudinally fixed on the left and right sides of the square plate (411) of the rack (41). The linear guide rail (12) is arranged in parallel with the longitudinal moving linear module (11). The door-shaped support (13) is a П-shaped frame which is formed by a horizontal plate and two supporting legs arranged below the two ends of the horizontal plate. The door-shaped support (13) is two pieces. The two supporting legs of one piece of the door-shaped support (13) are locked on the two sliding blocks of the linear guide rail (12). The two supporting legs of the other piece of the door-shaped support (13) are locked on the two sliding blocks of the longitudinal moving linear module (11). The crossbeam (14) is arranged on and fixed on the horizontal plate of the two pieces of the door-shaped support (13).

4. A garment pressing and flattening device as claimed in claim 3, wherein: The moving assembly (1) further comprises a horizontal moving linear module (15) and a vertical moving linear module (16), the horizontal moving linear module (15) is fixed on the front side or the rear side of the crossbeam (14), and the vertical moving linear module (16) is vertically arranged on the side of the horizontal moving linear module (15) and is connected with the slider of the horizontal moving linear module (15).

5. A garment pressing and flattening device as claimed in claim 4, wherein: The ironing assembly (2) comprises an ironing body (21), a first hanger (22) and a heating piece (23), the ironing body (21) is a flat iron, the heating piece (23) is embedded and fixed in the ironing body (21), and the lower end of the first hanger (22) is fixed with the ironing body (21), and the upper part of the first hanger (22) is connected with the slider of the vertical moving linear module (16).

6. A garment pressing and flattening device as claimed in claim 5, wherein: The ironing assembly (2) further comprises a steam injection member (24), the steam injection member (24) is annularly arranged around the ironing body (21), and the steam injection member (24) is provided with a plurality of downward injection ports.

7. A garment pressing and flattening device according to claim 6, wherein: The air drying assembly (3) comprises a wind box cover (31), a second hanger (32) and an air inlet (33), the wind box cover (31) is a flat cavity body, a plurality of air outlet holes (311) are densely arranged on the bottom wall of the cavity body, the air inlet (33) is arranged on the top wall of the cavity body of the wind box cover (31), and the lower end of the second hanger (32) is fixed with the wind box cover (31), and the upper part of the second hanger (32) is connected with another slider of the horizontal moving linear module (15).