Clothing processing equipment
The device addresses uneven pressure application in clothing treatment devices by using a sliding and rotatable door mechanism with pressure plates, ensuring uniform pressurization and easy garment handling for effective wrinkle removal.
Patent Information
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2025-12-25
- Publication Date
- 2026-03-25
AI Technical Summary
Conventional clothing treatment devices struggle with uneven pressure application, leading to unintentional wrinkles and creases, incomplete pressurization of clothing areas, and difficulty in securing garments during the wrinkle removal process.
The device incorporates a sliding and rotatable door mechanism with a first and second pressure plate system, allowing for uniform pressure application and easy garment placement, using steam and heated air to remove wrinkles.
The solution effectively reduces unintentional wrinkles, ensures uniform pressurization, and facilitates easier garment handling, improving the formation of intended creases and wrinkles.
Smart Images

Figure 2026053623000001_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a clothing treatment device, and more particularly to a device for removing wrinkles from clothing.
Background Art
[0002] Clothing treatment devices are devices developed to wash and dry clothing in homes and dry cleaners to remove wrinkles on the clothing. Those classified as clothing treatment devices include washing machines for washing clothing, dryers for drying clothing, washing / drying machines having both a washing function and a drying function, clothing management machines for refreshing clothing, and steamers for removing wrinkles from clothing. For example, there are washing machines for washing clothes, dryers for drying clothes, washing / drying machines with both washing and drying functions, clothing management machines for refreshing clothes, and steamers for removing wrinkles from clothes. Clothing management machines are devices for maintaining clothing comfortably and cleanly. Clothing management machines brush off fine dust on clothing, deodorize odors, dry clothing, impart fragrance to clothing, prevent the generation of static electricity, remove wrinkles on clothing using dehumidified air or steam, and sterilize and disinfect clothing. According to Korean Registered Patent Publication No. 10-2099179, a clothing treatment device can supply hot air or compress clothing at a supply unit located at the lower part of a cabinet with clothing placed in an accommodation space within the cabinet, thereby removing odors and wrinkles simultaneously.
[0003] A steamer is a device that supplies steam to clothing to remove wrinkles on the clothing. Unlike a general iron, a steamer is a device that applies heat to clothing by convection to remove wrinkles without directly applying heat to the clothing (for example, in a manner of contacting a hard object to the clothing). On the other hand, a clothing management machine is a device for maintaining clothing comfortably and cleanly. A clothing management machine brushes off fine dust on clothing, deodorizes odors, dries clothing, imparts fragrance to clothing, prevents the generation of static electricity, removes wrinkles on clothing using dehumidified air or steam, and sterilizes and disinfects clothing.
[0004] A clothing management machine is a device for maintaining clothing comfortably and cleanly. A clothing management machine brushes off fine dust on clothing, deodorizes odors, dries clothing, imparts fragrance to clothing, prevents the generation of static electricity, removes wrinkles on clothing using dehumidified air or steam, and sterilizes and disinfects clothing. A clothing management machine brushes off fine dust on clothing, deodorizes odors, dries clothing, imparts fragrance to clothing, prevents the generation of static electricity, removes wrinkles on clothing using dehumidified air or steam, and sterilizes and disinfects clothing. And sterilizes and disinfects clothing.
[0005] According to Korean Registered Patent Publication No. 10-2099179, a clothing treatment device can supply hot air or compress clothing at a supply unit located at the lower part of a cabinet with clothing placed in an accommodation space within the cabinet, thereby removing odors and wrinkles simultaneously.
[0006] Furthermore, in the garment processing device, the garments are spread out inside the cabinet by their own weight and then exposed to hot air or Steam is supplied to dry and deodorize the area, removing wrinkles. It is also provided on the inside of the door. By applying pressure to the surface of the garment with a presser, wrinkles in the garment are removed. Effectively removes blemishes and creates creases in clothing, completing the washing and drying process. Furthermore, ironing can be omitted.
[0007] In particular, steam is used to remove unwanted wrinkles and folds from clothing. To the specified crease or pleat (from the garment design stage) The method of applying pressure or using a pants press to create the wrinkles shown in the diagram. It is installed on the inside of the door.
[0008] However, the pressure is applied to the clothing by rotation on one side. Therefore, the pressure on the clothing is The pressure is applied sequentially from one side of the garment to the other, starting from the side. Relatively more pressure is applied to the part closer to the pressure point, and to the part further away from the pressure point. This has the problem that relatively little pressure is applied, making it impossible to compress the clothing evenly. be.
[0009] Furthermore, in the process of clothing being compressed by pressure, the clothing is pushed by the pressure There is a problem in that the fixed form may break or its position may change.
[0010] Furthermore, since the clothing cannot be secured after being placed, the position of the clothing may change during pressurization. It cannot prevent this. Also, conventional garment processing devices cause many wrinkles in the garment, or unintended results. There is a problem where wrinkles form in the opposite direction.
[0011] Also, there is a problem that the height at which clothes are placed on the inner surface of the door is high. Moreover, not only does it occupy almost all of the inner surface of the door, but there is also a problem that only a part of the entire length of the clothes is pressurized. 。 。
Summary of the Invention
Problems to be Solved by the Invention
[0012] This disclosure aims to solve the problem of reducing the frequency of unintentional wrinkles and creases occurring when clothes are pressurized from one side. 。
[0013] Also, this disclosure aims to solve the problem of uniformly pressurizing clothes to remove creases and unintentional wrinkles in the clothes and improve the formation of predetermined intentional wrinkles. 。
[0014] Also, this disclosure aims to solve the problem of pressurizing the entire area of the clothes.
[0015] Also, this disclosure aims to solve the problem of making it easier to place the clothes to be pressurized. 。
Means for Solving the Problems
[0016] In order to reduce the phenomenon of pants being pushed in the conventional left - right opening and closing type pants management machine, a sliding motion is embodied in the door (or the second pressure plate) of the pants management machine. That is, the door of the pants management machine can be rotated or slid and lifted upward. At this time, the space between the first pressure plate (or sub - plate) and the base plate (or rear plate) is separated. <6000089>Conversely, by rotating or sliding the door downward, the pants placed on the first pressure plate can be simultaneously pressurized over the entire area, which has the effect of improving the phenomenon of pants being pushed. 。 。 。
[0017] The door includes a locking device for pressing the trousers, and the unlocking of the locking device is actuated by a handle provided on the door. When using the trousers management machine, openings are provided in the door and the first pressure plate to facilitate the steam moisture in the trousers, and hinges for opening and closing the door in the vertical direction are included (provided: constituted: constructed: set: included). The first pressure plate or the sub-plate is a structure for providing the trousers, and it has a hinge structure that can move up and down and rotate left and right. When the door of the trousers management machine is moved up and down and the door is lifted, the sub-plate is automatically slid upward. Then, since it has a hinge structure that can rotate to one of the left and right sides, after rotating and opening the sub-plate as shown in FIG. 4(c), the trousers can be provided. A more detailed sliding hinge structure is shown in FIGS. 6 and 7. In addition, the sub-plate is provided with fixing clips for fixing the upper and lower ends of the trousers on both sides. The process of providing the trousers is as follows. Pull the handle provided at the lower end of the door side to release the lock, lift it upward and fix it, then the sub-plate for placing the trousers is exposed. In order to provide the trousers, after rotating the sub-plate in one direction, fix the lower end of the trousers to the fixing clip (or the first clip) provided on the back surface of the sub-plate. The fixing clip can be variably installed according to the length of the trousers. After fixing the lower end of the trousers, fix the trousers to the fixing clip (or the second clip) at the upper end of the trousers provided on the front surface of the sub-plate.
[0018]
[0019]
[0020] After installing the trousers, rotate the subplate back to its original position to open the door of the trouser management machine. Close it so that pressure is applied to the pants.
[0021] To solve the above problem, a cabinet with an input opening on one side; inside the cabinet A first chamber located at the bottom of the first chamber, which accommodates clothing through an opening; The second chamber forms a space separated from the first chamber; the interior of the second chamber A steam unit provided in which steam is generated and supplied to the first chamber; cabinet A door that rotatably connects to the set and opens and closes the input opening; on one side of the door, the first chamber Door interior facing the direction; base plate attached to the door interior; arranged in parallel in the height direction of the door A first axis; a second axis positioned perpendicular to the height direction of the door; and the first axis connecting to the inner surface of the door or the door. The second is rotatably connected to the base plate and positioned opposite the base plate, and pressurizes the trousers when they are placed on it. 1. Pressure plate; and 2. Rotatably connected to the inner surface of the door or the base plate via an axis to the first pressure plate. The present invention provides a garment processing apparatus including a second pressure plate provided opposite to it.
[0022] The first pressure plate is located at the bottom of one side facing the base plate, and is located at the bottom of the hem or top edge of the trousers. Includes a first clip to secure one side.
[0023] The first pressure plate is located at the lower part of the other side facing the second pressure plate, and is located at the bottom of the hem or top edge of the trousers. Includes a second clip to secure the other end.
[0024] The second clip consists of an angled clip and is connected to the first pressure plate. A predetermined gap is formed between the parts, and a portion of one side of the trousers is inserted into the predetermined gap to secure the trousers. ru.
[0025] Furthermore, the length of the second pressure plate is shorter than the length of the first pressure plate, and the second pressure plate rotates around the first pressure plate. When the coupling occurs, the second clip is exposed to the outside of the first pressure plate.
[0026] The first pressure plate has a first surface which is the surface facing the base plate; and the other surface which is the surface facing the second pressure plate. It includes a second surface; and a curved mounting end that connects the first and second surfaces and on which the trousers are placed; The curvature of the curved surface connected to the first surface at the mounting end is different from the curvature of the curved surface connected to the second surface.
[0027] The mounting end is connected to the first surface and a curved surface, and has a shape that protrudes toward the second pressure plate.
[0028] The first side is recessed along the length of the door to prevent interference with the seams on the trousers. The first groove; and the second surface also have a door to prevent interference with the seams provided on the trousers. Includes a second groove that is recessed in the longitudinal direction.
[0029] The base plate is attached to the inner surface of the door, separated by a predetermined distance.
[0030] Furthermore, when the first pressure plate applies pressure to the base plate, the base plate will take on a shape corresponding to the first clip. Includes a recessed or perforated clip housing.
[0031] The width of the second pressure plate is greater than the width of the first pressure plate and the base plate.
[0032] A blower unit provided in the second chamber for drawing in air from the first chamber; A heat pump unit installed inside the chamber that dehumidifies and heats the inhaled air; A first opening that penetrates the first pressure plate in the thickness direction; and a second pressure at a position corresponding to the first opening A second opening that penetrates the plate in the thickness direction; further including through the first opening and the second opening The trousers can be dehumidified and exposed to heated air and steam.
[0033] The second pressure plate is bent on both sides toward the inner surface of the door. Including the protective side surface formed by the process, when the second pressure plate presses on the first pressure plate and the base plate. The protective side can cover both sides of the base plate and both sides of the first pressure plate.
[0034] Of the two sides of the second pressure plate, the cover surface located away from the inner surface of the door is the second pressure plate It further includes a handle for the user to take (handle) the second pressure plate for rotation.
[0035] Further including: an auxiliary shaft perpendicularly connected to the first shaft, and a connecting part rotatably connected to the auxiliary shaft; Furthermore, the first pressure plate can not only rotate around the first axis, but also around the second axis via the auxiliary axis. They can rotate side by side (and together).
[0036] A first gear connected to the connecting part and rotating together with the connecting part; located on one side of the second pressure plate, A second gear connected to the first gear and rotating together with the second pressure plate; further including the second pressure plate When rotating around the second axis, the first pressure plate is in contact with the second gear, the first gear, the connecting part, and the auxiliary shaft. It rotates more aligned with (and together with) the second axis.
[0037] A third gear is located between the first and second gears, further connecting the first and second gears. include.
[0038] The second pressure plate has a pressure surface that presses against the trousers and is located opposite the pressure surface. The teeth of the second gear, including the cover surface, and located only on a portion of the outer surface of the second gear, are such that the second pressure plate As it rotates until the cover surface is parallel to (aligned with) the inner surface of the door, the first pressure plate is... At the first position where the pressure is applied to the plate, it is aligned with the base plate at a predetermined distance from the base plate (parallel to the base plate). Move to the second position.
[0039] When the second pressure plate rotates in the first rotational direction, the first gear and the connecting part rotate in the first rotational direction. The third gear rotates in the opposite direction to the first rotation.
[0040] The base plate includes a gear through-hole that penetrates the base plate at a position corresponding to the first gear, and the first gear This prevents interference with the base plate when it rotates. [Effects of the Invention]
[0041] According to this disclosure, clothing can be subjected to pressure from one side, causing unintended wrinkles or creases. It has the effect of reducing the frequency of occurrence.
[0042] Furthermore, according to this disclosure, by applying uniform pressure to the garment, creases and unintended wrinkles in the garment can be removed. It can be removed and improve the formation of wrinkles as intended.
[0043] Furthermore, according to this disclosure, the entire area of the garment can be pressurized.
[0044] Furthermore, this disclosure makes it easier to place clothing that is to be compressed. [Brief explanation of the drawing]
[0045] [Figure 1] Figure 1(a) shows an example of a conventional garment processing device and an example of a pressure device for removing wrinkles from garments, and Figure 1(b) shows the first pressure plate rotated with the second pressure plate opened to place garments using the pressurizing section, which is a feature of this disclosure. [Figure 2] Figure 2 shows an example of a blower unit, heat pump unit, and steam unit installed in the second chamber. [Figure 3] Figures 3(a) and 3(b) schematically illustrate the problems that occur when trousers are pressurized from one side in a conventional garment processing device. [Figure 4] Figures 4(a) to 4(e) are diagrams illustrating, in order, a method of using the pressurizing section, which is one embodiment of this disclosure. [Figure 5] Figure 5(a) shows that the mounting end of the first pressure plate has an asymmetrical cross-section, and Figure 5(b) is an enlarged view of the mounting end. [Figure 6] Figure 6(a) shows the positions of the first and second rotating parts, and Figure 6(b) is an enlarged view of the first and second rotating parts. [Figure 7] Figure 7(a) is an enlarged view of the first shaft, auxiliary shaft, and connecting part. Figures 7(b) and 7(c) show the mechanism by which, when the second gear rotates, rotational force is transmitted through the first gear part, connecting part, and auxiliary shaft, causing the first pressure plate to rotate when the second pressure plate rotates. [Figure 8] Figure 8 schematically shows how the first pressure plate rotates vertically in the door direction by the connecting part and auxiliary connecting part in order to place clothing between the first pressure plate and the base plate. [Modes for carrying out the invention]
[0046] The following describes preferred embodiments of this disclosure in detail with reference to the attached drawings. The configuration and control methods of the apparatus described herein are for illustrative purposes only and are not part of this disclosure. This does not limit the scope of rights. Also, throughout the specification, the same reference number is the same as... Represents constituent elements.
[0047] The specific terms used in this specification are for illustrative purposes only and do not represent the actual implementations described herein. This does not limit the examples.
[0048] For example, expressions such as "same" and "identical" refer not only to being exactly the same, but also to tolerances. Alternatively, this may include situations where there is a difference that allows for the same functionality to be achieved.
[0049] For example, "in which direction," "along which direction," "side by side / parallel / in parallel," "vertically" This indicates relative or absolute arrangements such as "at," "as the center," "concentrically," or "on the same axis." This expression does not only refer to such arrangements, but also to tolerances or angles that achieve the same function. This also includes states where there is a relative displacement with respect to distance.
[0050] The term "wrinkle" used in this specification without express reference refers to the wrinkles that appear after a garment has been worn. , or unintended wrinkles or creases (fol d) means that the intended design and functionality from the design stage. It is not a crease or pleat, but rather something that gets on the fabric through use or washing. This refers to wrinkles that occur unintentionally during drying. Therefore, they can be removed by ironing, etc. It is something that needs to be done.
[0051] Figure 1(a) shows an example of a conventional garment processing device 2000. The garment processing device 2000 is one-sided. A cabinet 150 including an input opening 120, the input opening located inside the cabinet 150 A first chamber 100 that accommodates clothing via 120, located at the bottom of the first chamber 100 The second chamber 200 is placed there to form a space separated from the first chamber 100. It is located inside the chamber 200 and generates steam to supply to the first chamber 100. The steam unit 250 (see Figure 2) and the cabinet 150 are rotatably connected. Includes a door 400 for opening and closing the input slot 120. Considering the typical usage by users, Alternatively, the input slot 120 is located on the front of the cabinet 150.
[0052] Furthermore, the clothing processing device 2000 is located inside the second chamber 200, and the first chamber A blower unit 220 (see Figure 2) that draws in air from bar 100, and a blower unit that removes the drawn-in air. Includes a heat pump unit 230 that humidifies and heats the material before sending it to the first chamber 100. .
[0053] Cabinet 150 is made of metal, and if strength can be maintained, it can be made of plastic. It may be. The first chamber 100 is formed by plastic injection molding. Chamber 100 is connected to cabinet 150 by a frame (not shown), but this and Unlike the other, it creates a foamy foam between the cabinet 150 and the first chamber 100, similar to polyurethane. Plastic may be used for filling.
[0054] Clothing, including upper and lower garments, is placed in the first chamber 100, and inside the second chamber 200 The blower unit 220 (see Figure 2) and heat pump unit 230 (see Figure 2) are located in the section. (Light) and steam unit 250 (see Figure 2) are used to refresh and manage clothing. This is possible. That is, the blower unit 220 located inside the second chamber 200 (see Figure 2). (See Figure 2), heat pump unit 230 (see Figure 2) and steam unit 250 (see Figure 2) This process uses steam and / or heated air to sterilize and deodorize clothing, and remove wrinkles after wearing. It can perform functions such as [specific function].
[0055] The first chamber 100 is a place for placing clothing inside the first chamber 100. Includes a support section 190. The clothing support section 190 houses a hanger for hanging clothes, and the clothing support section 1 It is connected to a drive unit (not shown) that causes 90 to move back and forth. The movement of the clothing support unit 190 is By shaking the clothes, it's possible to separate foreign substances, including fine dust particles, that have adhered to them. The garment placed on the garment support section 190 is shaken while the garment is supplied from the second chamber 200. Exposing clothing to steam or moisture can remove wrinkles to some extent. It is possible.
[0056] In other words, in the clothing support section 190, the clothing is spread out by its own weight inside the first chamber 100. It is placed in a state where it is dehumidified and heated air is supplied from the second chamber 200. and / or uniformly exposed to steam.
[0057] Generally, water boils at 100°C under atmospheric pressure, and the water vapor produced at this time is called steam. On the other hand, water refers to the form in which small water droplets, less than 1 mm in size, float in the air at room temperature. For example, it is like mist. Generally, in the case of steam generated by heating and boiling water, Because it is at a higher temperature than water, it has superior sterilizing power compared to water, and at higher temperatures, water molecules are more effective. Because it moves actively, it has excellent penetration into clothing. Therefore, for refreshing clothing, water is more effective than Steam is used more often.
[0058] The first chamber 100 is the first chamber where the drive unit (not shown) of the clothing support unit 190 is located on the upper side. The upper surface 109 of the chamber, the bottom surface 101 of the first chamber forming the bottom, and the first chamber - The upper surface 109 and the bottom surface 101 of the first chamber are connected by the left and right sides 10 of the first chamber. 5, 107 and the rear surface 103 of the first chamber are formed. For example, the input port 120 is formed. If the side that has been modified is the front, the rear surface 103 of the first chamber is located in the opposite direction.
[0059] The bottom surface 101 of the first chamber is located inside the second chamber 200, where the steam unit 2 The steam generated by 50 is dehumidified and heated by the heat pump unit 230. Air supply port 1011 and steam supply port for supplying air to the first chamber 1012, and the blower unit 220 for drawing in air from the first chamber 100 The air intake port 1013 is located here.
[0060] As shown in Figure 1(a), the air supply port 1011 and the steam supply port 1012 are first It is provided in the region where the bottom surface 101 of the chamber and the rear surface 103 of the first chamber meet. The area where the bottom surface 101 of chamber 1 and the rear surface 103 of chamber 1 meet was smoothly inclined. This is the form. The air intake port 1013 is located at the bottom surface 101 of the first chamber, inlet 12 It is located close to the 0 side. Therefore, the air in the first chamber 100 is supplied to the air supply port 1011. It is discharged through and drawn in through the air intake port 1013 and circulated. Steam is also After being discharged through the air supply port 1012, it is condensed and then supplied to the air intake port 1013. It is drawn in through a sump (not shown) that stores condensed water.
[0061] Condensed water inside the first chamber 100 is more smoothly supplied to the air intake port 1013. In order to send it to the second chamber 200 via the first chamber, the bottom surface 101 of the first chamber The rear of the bar (03) tilts downward towards the input opening (120).
[0062] As shown in Figure 1(a), in the garment processing apparatus 2000, the steam unit 250 Water is supplied to a water tank 310, and condensed water collected in a sump (not shown) is discharged. A drainage tank 330 for storage is provided in front of the second chamber 200. A tank installation space (not shown) is formed in which a water supply tank 310 and a drainage tank 330 are provided. A tank module frame (not shown) is provided for the purpose of installing a tank (not shown). The second chamber 200 can be separated from the lower part of the first chamber 100. The tank installation space 351 and the second chamber 200 are located there, and the tank installation space is connected by a door 400. The second chamber 200 is located close to the side, behind the tank installation space.
[0063] The water supply tank 310 and the drainage tank 330 are located in the tank module frame (not shown) Each can be attached and detached. On the other hand, the water supply tank 310 and the drainage tank 330 are connected as a single unit. They may be provided together and simultaneously in a way that allows them to be attached and detached at the same time.
[0064] When closing the door 400, the rear surface of the door 400 or the door 400 is closed. Includes a door interior surface 401 located in the direction toward chamber 100. Door 400 is hinged The system is rotatably connected to the cabinet 150 and opens and closes the input opening 120.
[0065] When the user closes the door 400, the front of the water supply tank 310 and the front of the drainage tank 330 Opposite the inner surface of the door 401, when the user opens the door 400, the front of the water tank 310 and the discharge The front of the water tank 330 is exposed to the outside. Also, the water supply tank 310 and the drainage tank 330 Each includes a water supply tank window 313 and a drainage tank window 333 on its front. Then, the water levels in the water supply tank 310 and the drainage tank 330 are immediately checked. It is possible.
[0066] Water supply tank handles 31 are located on the front of the water supply tank 310 and the front of the drainage tank 330, respectively. 5 and a drain tank handle 335 are provided. Users can each use the water supply tank handle 315 and When you pull the drain tank handle 335, the water supply tank 310 and the drain tank 330 will The tank module rotates around the front edge of the water supply tank and the front edge of the drainage tank. It is separated from the main frame (not shown). It is also attached to the tank module frame (not shown). When attaching it, the water supply tank 3 is similarly rotated into the tank module frame (not shown). Unit 10 and drainage tank 330 are placed there.
[0067] In the conventional garment processing apparatus 2000, inside the inner surface of the door 401 or the first chamber 100 After placing the trousers (P) upside down on the clothes rack 403, the clothes fixing part 4 on which the clothes rack 403 is attached 05, and press the trousers that are fixed by the garment fixing part 405 and the garment hanger 403 Char 50 is located here.
[0068] The reason why trousers (P) are hung upside down, that is, with the bottom hem facing upwards, is because The waist portion of the pants, that is, the top edge of the pants, is the hem of the pants. In other words, because it is heavier than the leg portion of the trousers (P), the weight of the trousers (P) causes the trousers ( The purpose is to apply tensile force to P) in order to spread the trousers (P) evenly.
[0069] The pressure 50 is connected to the inner surface 401 of the door and the support plate 51 that supports the clothing, and the support plate Includes a rotating plate 52 that rotates toward 51 and presses against the trousers (P). The rotating plate 52 is supported by a support plate 5 When rotated toward 1 and joined, the trousers (P) can be pressurized. Then, door 4 Close 00 and steam and dehumidified and heated air inside the first chamber 100 Expose the garment to remove wrinkles. At this time, rotate the garment so that the steam can easily penetrate the trousers (P). A rotating plate through hole 54 is provided that penetrates the plate 52, and is provided along the length direction of the leg of the trousers (P). To prevent the seams from being pressed, on both sides of the rotating plate, trousers A recessed portion 55 is provided on the surface in contact with (P).
[0070] Referring to Figure 2, the air from the first chamber 100 is drawn into the second chamber 200. A blower unit 220 for intake and water from a water tank 310 are supplied to generate steam. Afterwards, a steam unit 250 and a blower unit supply steam to the first chamber 100. The air drawn in by the 220 is dehumidified and heated, and then discharged into the first chamber 100. It includes a heat pump unit 230, a blower unit 220, and a steam unit 2 A control unit (not shown) for controlling the 50 and the heat pump unit 230 is provided.
[0071] Therefore, in order to supply dehumidified and heated air to the first chamber 100, After generating an intake force using the blower fan 226 to blow air inside the chamber 100, the intake da It is drawn in through the 221. It is also moved to the heat pump unit 230 for heat exchange. Then, it is supplied again to the first chamber 100.
[0072] Referring to Figure 2, the blower unit 220 includes a blower fan 226 and an intake duct 221. The direction in which the input port 120 is located is forward, and the direction in which the rear surface of the first chamber is located is backward. Then, the intake duct 221 is located in front of the blower fan 226, and in front of the intake duct 221 The tank module frame (not shown) is provided on the side. Therefore, the tank module frame The frame allows for the separation of the tank installation space 351 from the second chamber 200.
[0073] The water supply tank 310 and the drainage tank 330, which are set in the tank module frame, It is located near one of the two sides of the cabinet 150. For example, the water tank 310 is located near the In the installation space (not shown), the right side of cabinet 150 is further from the left side of cabinet. It is located close by, and conversely, the drain tank 330 is on the left side of cabinet 150. It is located closer than the right side of 50.
[0074] The steam unit 250 is located in the same position as the water tank 310, in the second chamber 200. Inside, the right side of cabinet 150 is closer than the left side of cabinet 150. This involves placing the steam unit 250 behind the water tank 310, and then... This is to simplify the connecting channel through which water moves from the 310 to the steam unit 250. be.
[0075] The steam unit 250 uses a heater to turn the water located inside the steam unit 250 It can be heated, and the generated steam flows along the steam channel (not shown) to the first chamber. It communicates with a steam supply port 1012 located on the bottom surface 101.
[0076] If the water tank 310 is located to the left of the cabinet 150 rather than to the right of the cabinet 150... If it is positioned close to the surface, the steam unit's position will also be correspondingly to the right of cabinet 150. It can be positioned closer to the left side of the cabinet 150 than to the side itself.
[0077] Furthermore, the intake duct 221 is provided with an air intake port 1 on the bottom surface 101 of the first chamber. Includes an intake duct inlet 2213 that communicates with 013 and draws in air from the first chamber 100. Furthermore, the intake duct inlet 2213 forms an inclined flow path. This is due to the first chamber 100 and The condensed water that forms on the door 400 is taken to the intake duct inlet connected to the bottom surface 101 of the first chamber. After passing through 2213, the sump (Figure) is located at the bottom of the intake duct 221 along the inclined flow path. It is intended to allow for easy movement (not shown).
[0078] An intake duct 221 is located in front of the blower fan 226, and behind the blower fan 226 A steam unit 250 and a heat pump unit 230 are arranged. Knit 230 is supported by supporter 265. Supporter 265 It is provided in the base portion 210 that forms the bottom of the second chamber 200. Therefore, the supporter 265 forms a predetermined separation distance between the base portion 210 and the heat pump unit 230. A predetermined installation space is formed between the supporter 265 and the base part 210. The unit 250 is located and connects to the supporter 265 in the installation space. Figure 2 shows the control unit 27 One example is where 0 is located below the steam unit 250 in the installation space of the supporter 265. However, contrary to what is shown, the second chamber is located behind the steam unit 250. It may be placed anywhere within 200.
[0079] The heat pump unit 230 includes a first heat exchanger (or evaporator) (not shown) and a second heat exchanger. A housing 231 containing a (or condenser) (not shown) inside, which is dehumidified in the housing 231 In order to discharge the heated air into the first chamber 100, the first chamber 100 is equipped with It further includes an air outlet 2312 that communicates with the air supply port 1011. Supporter 2 Outside of 65 are a compressor (not shown) and an expansion valve (not shown) for circulating the refrigerant. Place it.
[0080] Unlike Figure 2, the blower unit circulates the air in the first chamber, and the evaporator and condenser... It can also be installed in a duct that moves the air circulated by the blower unit. The ventilation unit consists of an intake duct 221, a blower fan 226, and a connecting duct (Housing in Figure 2). It consists of a heat pump (corresponding to the air outlet in Figure 2) and an exhaust duct (corresponding to the air outlet in Figure 2), The unit consists of an evaporator and condenser located inside the connecting duct, and an external unit located outside the blower unit. It may include a compressor and an expansion unit.
[0081] Referring to Figure 1(b), the door 400 faces the first chamber 100. The inner surface 401 of the door is located in the direction of the door, and the cabinet 150 is provided on the inner surface 401 of the door. The edge is in tight contact with the door 400 and the cabinet 150. Door gasket 486 for forming a ring, and when door 400 is closed, the first channel Door interior 401 to guide the condensate generated in bar 100 to the bottom surface 101 of the first chamber Includes door liners 482, 484 provided therein. In some embodiments, door 400 is The structure allows for the simultaneous opening and closing of the first chamber 100 and the tank installation space 351. In other embodiments, multiple doors are provided on the cabinet 150, and each door is the The chamber 100 and the tank installation space 351 are opened and closed. Door liners 482 and 484 are When closing the door 400, it is positioned opposite the first chamber 100, and the upper door Includes liner 482 and lower liner part 484. Door liners 482 and 484 are The condensed water generated on the surface of the door liners 482 and 484 is transferred to the bottom surface 101 of the first chamber. The air intake port 1013 is provided to the sump (shown in the figure) located on the lower side of the intake duct. It can be discharged without doing so.
[0082] Door gasket 486 is installed on the inner surface 401 of the door so as to surround it. The sealing between door 400 and cabinet 150 is done by door gasket 486. The door gasket 486 is individually connected to the first chamber 100 and the tank installation space. 351 can also be sealed.
[0083] Furthermore, Figure 1(b) shows a garment processing apparatus 1000, which is one embodiment of this disclosure, and conventional garments The processing device 2000 is equipped with a pressure 50 and for removing wrinkles from trousers. This shows an example of a different pressurized section 500.
[0084] That is, the garment processing device 1000 has a cabinet 150 with an input opening 120 on one side, A first chamber 1 located inside the vignette 150 and containing clothing through an opening 120 00, a space located below the first chamber 100 and separated from the first chamber 100. A second chamber 200 is formed, and inside the second chamber 200, steam is provided Steam unit 250 (see Figure 2) that generates and supplies steam to the first chamber, cabinet A door 400 that is rotatably connected to 150 and opens and closes the input opening 120, one side of the door, Door inner surface 401 located in the direction toward chamber 100, coupled to door inner surface 401 The base plate 510, the first axis 5611 (see Figure 6) arranged in parallel in the height direction of the door 400, and the door Through the second axis 5621 and the first axis 5611 (see Figure 6), which are installed vertically in the height direction of 400 It is rotatably coupled to the inner surface 401 of the door or the base plate 510 and faces the base plate 510. A first pressure plate 530 is provided for placing and applying pressure to the trousers, and a second shaft 5621 is provided for the trousers. It is rotatably coupled to the inner surface 401 or the base plate 510 and is provided facing the first pressure plate 530. It includes a second pressure plate 550 that applies pressure to the trousers.
[0085] The second pressure plate 550 is connected to the base plate 510 and / or the first pressure plate 530 and the base plate 5 10 and / or the first pressure plate 530 are pressurized, but in contrast, the base plate 510 and or to protect the trousers that are attached to the first pressure plate 530 and placed on the first pressure plate 530, Alternatively, it may only serve as a cover to protect the base plate 510 and / or the first pressure plate 530. That's fine.
[0086] In particular, the pressurized section 500 is connected to the inner surface 401 of the door, and the height of the door 400 The first shaft 5611 (see Figure 6) is arranged in parallel in the direction, and is provided perpendicular to the height direction of the door 400. The second shaft 5621 and the first shaft 5611 (see Figure 6) are connected to the inner surface of the door 401 or the base plate 5 It is rotatably connected to 10 and mounted opposite the base plate 510, and the trousers (P) are placed on it. The first pressure plate 530 and the second shaft 5621 press against the inner surface 401 of the door or the base plate 51. A second pressure plate 530 is provided opposite the first pressure plate 530 and is rotatably coupled to the 0, which pressurizes the trousers. Includes pressure plate 550.
[0087] The pressurizing section 500 is large, and the second pressurizing plate 550 can rotate vertically on the door 400, door 4 A first pressure plate 530 that can rotate in the left-right direction of 00, and a base plate 510 that connects to the inner surface of the door. The first pressure plate 530 and the second pressure plate 550 are provided in the height direction of the door. A first axis 5611 (see Figure 6) is provided along and perpendicular to the first axis 5611 (see Figure 6) It rotates around the second axis 5621 that is provided.
[0088] The second pressure plate 550 rotates along the width direction of the door 400 - around the axial direction of the second axis. When rotated, the first pressure plate 530 on which the trousers are placed and secured is exposed. The pressure plate 530 maintains a constant height by the first axis 5611 (see Figure 6). It can rotate while moving. That is, it can rotate left and right around the first axis, similar to the door 400. It can rotate.
[0089] Figure 1(b) shows the first pressure plate 530 and the first shaft 561 which is provided on the left side of the first pressure plate 530. A second axis that rotates with respect to 1, and the second pressure plate 550 is located above the second pressure plate 550. An example of rotation based on 5621 is shown, but unlike this, the first axis 5611 The first pressure plate 530 is located on its right side, and the second shaft 5621 is located on the lower side of the second pressure plate 550. It may be obtained. That is, the first pressure plate 53 is obtained by the first axis 5611 and the second axis 5621 respectively The 0 and 2 pressure plates 550 can be rotated around their respective axial directions, and their positions are Whether it is located on one side or the other is not important.
[0090] In other words, depending on whether the user is left-handed or right-handed, the first axis and The two axes can be positioned on opposite sides and configured to rotate in opposite directions. It's called reversible.
[0091] Figure 3 schematically shows the pressure 50 of a conventional garment processing device 2000. In particular, Figure 3( Figure a) shows the rotating plate 52 rotating toward the support plate 51 on which the trousers (P) are placed. 3(b) shows the rotating plate 52 rotating and connecting to the support plate 51, positioned between the rotating plate 52 and the support plate 51. The image shows a general representation of how to apply pressure to the trousers (P).
[0092] The rotating plate 52 has a rotating coupling part (not shown) provided on one of the two sides of the rotating plate 52, For example, the trousers (P) are compressed by rotating via a hinge. At this time, the trousers (P) are rotated at the joint. Pressurization is applied from one side where it is located. That is, pressurization is applied from the R2 region near the rotating joint. When the plate 52 is fully rotated and facing the support plate 51, that is, when the other side of the rotating plate 52 faces the support plate When it binds with 51, the pressure is increased up to the R1 region.
[0093] Therefore, uniform pressure is not applied to the trousers (P) while the rotating plate 52 is rotating. Relatively more pressure is applied to the part of the trousers (P) that is close to the rotating joint (R1 region). Relatively less pressure is applied to the part away from the rotating joint (R2 region), and the trousers ( There is a problem in that P) cannot be compressed uniformly.
[0094] Furthermore, in the process in which the trousers (P) are pressed by the rotating plate 52, There is a possibility that the way the clothing is secured may break or change position. Therefore, In the previous garment processing device 2000, as shown by the dotted circle in Figure 3(b), there are many wrinkles in the garment. Problems may arise, such as wrinkles appearing in an unintended direction or in a completely different direction than intended. Figure 3(b) exaggerates such cases to emphasize them.
[0095] To place the trousers (P), simply place them on the garment placement section 56 (see Figure 1(a)). It only does not fix in place, so it does not prevent the position of clothing from changing when pressurized. I can't.
[0096] Also, when placing trousers (P) on the inside of the door without folding them, according to their total length, clothing placement The height of section 56 (see Figure 1(a)) is too high and inconvenient. Also, most of the inner surface 401 of the door is This occupies a significant portion of the door's interior surface (401), which reduces its usability.
[0097] This disclosure relates to a garment including a pressurized section 500 as shown in Figure 1(b) in order to solve the above-mentioned problems. This relates to an example of a processing apparatus 1000. The pressurizing section 500 folds the trousers using the first pressurizing plate 530. Therefore, the space occupied by the pressurized part 500 or the trousers (P) on the inner surface 401 of the door is It decreases by about half.
[0098] On the other hand, the trousers (P) can be secured by clips or the like provided on the first pressure plate 530. Yes, it is possible. Also, the first pressure plate moves along the height direction of the door, as well as the rotation direction of the door 400, immediately Even when the first axis is fully rotated, the first pressure plate 530 immediately connects to the base plate 510. Rather than applying pressure to the trousers (P) together, the pressure is applied between the first pressure plate 530 and the base plate 510. The first pressure plate 530 and the base plate 510 are arranged facing each other at a fixed separation distance. This can be done. After that, the second pressure plate 550 is moved along the width direction of the door, that is, along the second axis 5621 When the first pressure plate 530 and the base plate 510 rotate around the reference point and connect with the base plate 530, the first pressure plate It can be coupled to the base plate 510. In this case, the base plate 510 and the first pressure plate 530 As the first pressure plate 530 approaches the base plate 510 while facing each other parallel to each other, the first pressure plate 530 approaches the base plate 510, so The entire region of (P) is simultaneously and uniformly pressurized. Refer to Figures 4 through 8 for details. I will explain this in more detail later.
[0099] Figure 4 shows the use of the pressurizing section 500 provided on the door 400 to eliminate wrinkles in the trousers (P). This diagram shows the method in order. The pressurized section 500 is located on the inner surface of the door 401 or the side of the first chamber 1 Although it is provided in 05, Figure 4 shows an example in which the pressurizing section 500 is provided on the inner surface 401 of the door. Yes, they are.
[0100] Referring to Figure 4(c), the pressurizing section 500 is connected to the base plate 510, which is attached to the inner surface 401 of the door. The first shaft 5611 (see Figure 6) is arranged in parallel in the height direction of A400, and in the height direction of the door 400 The door interior surface 401 is connected via the vertically mounted second shaft 5621 and first shaft 5611 (see Figure 6). Alternatively, it is rotatably connected to the base plate 510 and provided facing the base plate 510, and the trousers The first pressure plate 530, which is placed on and pressurized, and the second shaft 5621 are used to contact the inner surface 401 of the door or the door. - It is rotatably coupled to the first pressure plate 530 and is positioned opposite to the first pressure plate 510, and pressurizes the trousers. It includes a second pressure plate 550.
[0101] Considering only the pressurized portion 500, the pressurized portion 500 is located vertically on the inner surface 401 of the door. A second pressure plate 550 rotates, and a first pressure plate 53 rotates in the left-right direction on the inner surface 401 of the door. 0, and a base plate 510 that connects to the inner surface of the door. First pressure plate 530 and second pressure plate 5 50 is a first axis 5611 provided along the height direction of each door (see Figure 6). (See Figure 6), and centered on the second axis 5621 which is provided perpendicular to the first axis 5611 (see Figure 6). It rotates.
[0102] In this specification, "rotating in the vertical direction of the door 400" means "parallel in the width direction of the door 400". This means that it rotates around the installed axis, and that the door 400 rotates in the left-right direction. This means that the door 400 rotates around axes that are arranged in parallel in the height direction. The height direction of the door and the width direction of the door 400 are perpendicular to each other. Therefore, the first axis 5611 (Figure 6) (Reference) The second axis 5621 is perpendicular to each other, and the first axis 5611 and the auxiliary axis connected to the first axis The axes 5612 (see Figure 6) are also perpendicular to each other. Therefore, the second axis 5621 and the auxiliary axis 5612 (See Figure 6) They are parallel to each other.
[0103] In this specification, "penetrating in the thickness direction" refers to a plate-shaped member. Members where the width and length are significantly longer than the height (or thickness) In this case, the upper and lower surfaces formed by the horizontal and vertical directions are viewed from the upper surface to the lower surface or from the lower surface to the upper surface. It means to penetrate.
[0104] Referring to Figures 4(a) and 4(b), when the door 400 is opened, of the pressurized section 500, The second pressure plate 550 is exposed to the outside. Therefore, the second pressure plate 550 is connected to the base plate 510. It can function as a cover to protect the first pressure plate 530. The second pressure plate 550 is As shown in Figure 4(c), when placing trousers (P), there is also a function to apply pressure to a part of the trousers, including the waist area. This can be done. The second pressure plate 550 has a pressure surface 555 facing the trousers and the opposite side of the pressure surface. The second pressure plate 550 includes a cover surface 558 located in the direction of the second pressure plate 550. That is, the second It further includes an opening 552. The second opening 552 penetrates the first pressure plate 530, which will be described later. Along with the first opening 532, steam penetration into the trousers (P) placed on the pressurized section 500 is further enhanced. It is possible to easily improve the moisture content of clothing.
[0105] Furthermore, the cover surface 558 allows the user to rotate the second pressure plate 550 vertically. The pressure plate 550 has a handle 551 for taking it. Preferably, the handle 551 is a cover It is located at the bottom of surface 558. The handle 551 may be a simple handle, but will be described later. It can also have a function to release the lock between the locking hook 542 and the locking hole 547. When you pull the handle 551, the catch part (not shown) located inside the lock hole 547 and The connection with the locking mechanism 542 can be released.
[0106] Furthermore, the second pressure plate 550 is a cover that protects the first pressure plate 530 and the base plate 510. To perform its function, the sides of the base plate 510 and the first pressure plate 530 can also be protected. In this case, the second pressure plate 550 is located on both sides of the second pressure plate 550, and the inner surface of the door is also located on both sides of the second pressure plate 550. It further includes a protective side surface 559 formed by being bent in the direction toward 401. Furthermore, the width of the second pressure plate 550 is greater than the width of the first pressure plate 530 and the base plate 510.
[0107] The inner surface of the door 401 has a second pressure plate 550 arranged in parallel along the width direction of the door 400, and a second axis 5 The door can be rotated vertically (A1) via 621. Of course, as shown in Figure 4(e). It can also rotate in the opposite direction, as shown by the arrow below.
[0108] When the second pressure plate 550 rotates along the width direction of the door and bends upward, that is, the cover surface When 558 faces the inner surface 401 of the door, the second pressure plate 550 protrudes from the inner surface 401 of the door. To minimize the amount that protrudes, the door interior 4 is made only to the length corresponding to the thickness of the second pressure plate 550. 01 recesses inward towards the inside of the door, forming a recessed space 402 that accommodates the second pressure plate 550. do.
[0109] Figure 4(a) shows the user opening the door 400 and exposing the pressurized section 500. (b) The second pressure plate 550 is aligned with the width direction of the door 400 for the user to place their trousers (P) on. This indicates that it rotated via the provided second axis 5621 and was housed in the recessed space 402. The pressure surface 555 has a recessed shape to prevent the seams of the trousers (P) from being pressed. Includes a stop groove 557. The stop groove 557 is formed in the longitudinal direction of the pressure surface 555, and the second pressure plate 55 When 0 is closed, the front panel and back panel of the trousers This is to prevent the seams (or stitches) created during sewing from being pressed against each other. The seam generally protrudes more than the fabric of the trousers, so when you press it, the area around the seam... This is because it creates unnecessary wrinkles and creases.
[0110] Referring to Figures 4(b) and 4(c), the first pressure plate 530 is connected to the base plate 510 and the second pressure plate It is located between 550. The first pressure plate 530 has a first surface 535 facing the second pressure plate, and a base The second surface 538 facing the plate 510 and the door 400 are provided along the height direction and the first pressurized It includes a first axis 5611 that rotates the plate 530 in the left-right direction. The first axis 5611 is on the inner surface 40 of the door 1. The first pressure plate 530 is rotatably connected to the base plate 510. Furthermore, the first pressure plate 530 can rotate in the left-right direction (A2).
[0111] On the other hand, the first pressure plate 530 is used to secure the trousers (P) placed on the first pressure plate 530. Includes first clip 531 and second clip 533. First clip 531 is on the second side 538 The second clip 533 is located at the bottom of the first surface 535. 31 secures the portion of the trousers that includes the hem. See Figure 4(d). For reference, the second clip 533 is on both sides of the opposite part of the hem of the trousers, i.e., the waist. Furthermore, it can secure both sides of the legs of the trousers, which are connected to the waist.
[0112] The first pressure plate 530 has a mounting end 539 at its upper end, which is the end on which the trousers (P) are placed, and further Includes. The mounting end 539 is curved, so that when trousers (P) are placed on it, no unnecessary wrinkles or folds will form. This can prevent eye problems from occurring.
[0113] The mounting end 539 is connected to the first surface 535 by the first curved surface 5391 (see Figure 5(b)). (See Figure 5(b)) and a second curved surface 5392 (see Figure 5(b)) that connects the first curved surface and the second surface 538. The first surface 5391 (see Figure 5(b)) and the second surface 5392 (see Figure 5(b)) are different from each other. It has curvature and an asymmetrical shape. That is, the first curved surface 5391 (see Figure 5(b)) is the first surface It is a shape that protrudes further away from the inner surface 401 of the door than 535. Therefore, the first curved surface 5 Surface 391 (see Figure 5(b)) has a larger radius of curvature than the second surface 5392 (see Figure 5(b)).
[0114] The first pressure plate 530 has a first opening 532 that penetrates in the thickness direction of the first pressure plate 530. Includes. The first opening 532 corresponds to the position of the second opening 552 provided in the second pressure plate 550. This is positioned on the first pressure plate 530. This is because when the second pressure plate 550 is closed, that is, the second The second pressure plate 550 rotates around the axis, and the pressure surface 555 of the second pressure plate 550 is subjected to the first pressure When the plate 530 and the trousers (P) are in a position opposite each other, the trousers ( This is to facilitate steam penetration into P).
[0115] Furthermore, both sides of the first pressure plate 530, namely the first surface 535 and the second surface 538, when pressurized, To prevent the joint of (P) from being pressed, along the longitudinal direction of the first pressure plate 530 It includes a first groove 536 and a second groove 537, respectively, which are in a recessed form.
[0116] Meanwhile, the first pressure plate 530 has a first clip 531 for securing the placed trousers (P). It also includes a second clip 533. The first clip 531 is provided on the second surface 538 and is U-shaped. This is the state. Unless an external force acts on the first clip 531, the clothing inserted into the clip will not be held in place. 1. A bias member (biased) that acts with force only in the direction of pressing toward the pressure plate 530. (member). For example, the first clip 531 is made of an elastic member and uses elastic force. It is a bias member.
[0117] The first clip 531 is fixed and connected to the first pressure plate 530. Clip fixing part 5311, clip support part that is bent and extended at both ends of the clip fixing part Includes 5312. When the trousers (P) are inserted into the clip support part 5312, the first pressure plate 53 An elastic force acts toward 0, allowing the trousers (P) to be secured.
[0118] The second clip 533 is located at the bottom of the first surface 535 facing the second pressure plate 550, The opposite side of the trousers, which is secured by the first clip 531, is prevented from moving. The first clip 531 secures the hem of the trousers, and the second clip 533 secures the hem of the trousers. The opposite side of the waist is secured. The second clip 533 is a square bracket (a Unlike angled brackets, these clips have an angled shape. The second clip 533 is made of an elastic material and fastens the trousers like a clamp. It can also be fixed, but preferably it is connected in both directions at the lower part of the first surface 535. It can also consist of a pair of angular clips. Therefore, the second angular clip 533 is A predetermined gap 5331 is formed between the second clip 533 and the first surface 535. Maintain a fixed predetermined gap 5331, and insert both sides of the trousers into the predetermined gap 5331. It can be inserted and used to secure the trousers.
[0119] The second clip 533, which secures the trousers using a predetermined gap 5331, is the same as the first clip 53 No physical force, such as elastic force, acts as in 1. This is because it is placed on the first pressure plate 530. This takes into account that the length of the trousers (P) worn by adults and children differs. The length of the trousers varies. At this time, the first clip 531 and the second clip are adjusted to match the length of the adult trousers. When the position of clip 533 is fixed, the child's pants cannot be secured. Therefore, once the first clip 531 is fixed, it becomes necessary to make the position of the second clip 533 variable. Yes, but making the position of the second clip 533 variable would require further components. Therefore, a disadvantage is that the thickness of the first pressure plate 530 increases, making the device more complex. To easily solve this, the second clip 533 secures the end of the trousers (P) to be placed. Rather than fixing it in place, insert both sides of the trousers (P) from both sides of the first pressure plate 530 and fix it in place. To determine.
[0120] The second pressure plate 550 is connected to the inner surface 401 of the door or the base plate 510. In Figure 4, the second pressure An example of how plate 550 is joined to base plate 510 is shown. Also, the first pressure plate 530 is It can be connected to the inner surface 401 or the base plate 510, but in Figure 4 the second pressure plate 550 is the base plate An example of binding to 510 is shown.
[0121] The first pressure plate 530 has an end (proximal end) where the first axis 5611 is located. On the distal end (distal side-edge) opposite the e-edge, the first axis Includes a locking pin 546 coupled to the distal end in the vertical direction or along the width direction of the door. The plate 510 is provided in a corresponding position for connection with the lock pin 546. Includes joint section 541.
[0122] Therefore, the first pressure plate 530 rotates via the first shaft 5611 and approaches the base plate 510. In this case, the first pressure plate 530 and the base plate 510 are connected to the lock pin 546 and the lock pin connection part 541 The connection can be made by fastening the lock pin joint 541 from the elastic member Therefore, when the lock pin 546 is housed in the lock pin coupling portion 541, the lock pin Since the diameter of 546 is smaller than the entrance to the housing of the lock pin coupling 541, a small external force is applied. By doing so, it can be inserted into the interior of the lock pin coupling portion 541 and coupled. The locking device between the pressure plate 530 and the base plate 510 may be provided in another manner. Furthermore, the base plate 510 and the first pressure plate 530 can be joined and separated, and after joining, If the bond between the steel plate 510 and the first pressure plate 530 can be maintained as is, then what method of bonding can be used? They may be combined.
[0123] The base plate 510 further includes a locking latch 542 for connecting with the second pressure plate 550. This shows an example where the locking mechanism 542 is angled, but the base Any form is acceptable as long as the connection / separation between plate 510 and the second pressure plate 550 is possible. Alternatively, the locking hook 542 is inserted into the locking hole 547 provided in the second pressure plate 550. Maintains lock between base plate 510 and second pressure plate 550. Lock hole 547 is on pressure surface 5 Located at 55, inside the lock hole 547 is a catch portion (not shown) that connects with the lock latch 542. (It is not located.)
[0124] The width of the base plate is greater than the width of the first pressure plate. Therefore, the base plate is greater than the width of the first pressure plate. Of the opposing bonding surfaces, portions that do not contact the first pressure plate exist near both sides of the base plate. Since there is one locking mechanism near each side, when the base plate and the first pressure plate are joined, the locking mechanism There is no interference from this.
[0125] Therefore, when the second pressure plate 550 is coupled to the base plate 510, inside the lock hole 547 The positioned catch portion (not shown) and the locking latch 542 are fastened together for locking. Pulling the handle 551 to release the locking mechanism 542 and catch mechanism will release the locking mechanism. 542 exits through lock hole 547. This is one of several ways, and unlike this Alternatively, the second pressure plate 550 and the base plate 510 may be bonded together.
[0126] Figure 4(d) shows the trousers (P) being placed on the first pressure plate 530, and then the first pressure plate 530 being moved again. The array configuration rotates with respect to the base plate 510, with the axis 5611 as the reference axis (configured The ration is shown. The first pressure plate 530 has a connecting member for joining with the base plate 510. Furthermore, Figure 4(e) shows the second pressure plate 550 rotated with respect to the second axis 5621. This indicates that the pressure plate 530 and the base plate 510 are connected. Therefore, the trousers (P) are the After being placed on the first pressure plate 530, the second pressure plate 550, the first pressure plate 530 and the base plate 51 It is pressurized by 0.
[0127] Referring to Figure 4(a), the second clip 533 is connected to the second pressure plate 550, and the first pressure plate 5 Even when rotated to face 30 and closed, it can still be exposed to the outside. Since the lip 533 protrudes from the first pressure plate 530, taking that into consideration, the second The height of the pressure plate 550 is shorter than the height of the first pressure plate 530. Cut.
[0128] Although not shown in Figure 4(d), as will be described later, the second pressure plate 550 is pulled by rotation. Until the pressure is applied, the part of the trousers located between the first pressure plate 530 and the base plate 510 It can be not pressurized. That is, in the state of FIG. 4(d), the first pressure plate 530 and the base plate 5 can be arranged opposite to each other while having a predetermined separation distance between 10. Different from this , the first pressure plate 530 may rotate and press a part of the trousers (P) located between the first pressure plate 530 and the base plate 510 by being combined with the base plate 510.
[0129] Referring to FIG. 4(c), the base plate 510 includes a bonding surface 511 for pressing the trousers placed on the first pressure plate , and a mounting surface 512 located in the opposite direction of the bonding surface 511 and for bonding the base plate 510 to the inner surface 401 of the door . Instead of the base plate 510, the inner surface 401 of the door can also play the role of the base plate 5 10. Preferably, the base plate 510 is separated from the inner surface 401 of the door by a predetermined distance, and the base plate 510 can be coupled to the inner surface of the door using a support member (not shown). The support member is an elastic member. This is for maintaining a certain pressing force between the base plate 510 and the first pressure plate 530 to make the trousers (P) adhere closely.
[0130] When the base plate 510 adheres closely to the first pressure plate 530 without the placed trousers (P), to prevent the base plate 510 from being damaged by the first clip 531 protruding from the first pressure plate 530 , the base plate 510 further includes a clip accommodation portion 513 that is recessed into a shape corresponding to the shape of the first clip to accommodate the first clip 531 . The clip accommodation portion 513 may be in a recessed form , or may be in a form that completely penetrates.
[0131] Considering that the first clip 531 is located below the first pressure plate 530, the clip accommodation portion 513 can also be located below the base plate 510. The clip of the first clip Since the fixing part 5311 is located below the first pressure plate, of the clip housing part 513, The base plate corresponding to the clip fixing part of the clip is larger than the base plate 510 of the other parts. Short. That is, the first length (P1) of the portion of the base plate corresponding to the clip fixing part 5311. It is shorter than the second length (P2) of the other parts of the base plate.
[0132] Although not shown in the diagram, trousers (P) are pressurized between the first pressure plate 530 and the base plate 510. In order to avoid pressing on the joint, the base plate 510 also faces the second groove 537 of the first pressure plate 530. The system may include pressure-prevention grooves (not shown) at corresponding positions.
[0133] Figure 5(a) shows that the mounting end 539 has an asymmetrical cross-section. b) is an expanded version of that.
[0134] Referring to Figure 5(a), the first clip 531 located on the second surface 538 holds the trousers (P) The hem is fixed, and the middle section of the trousers is connected by the smoothly connected curved surface of the mounting end 539. It is placed. Then the remaining part of the trousers (P) is placed on the first surface. Since this part is longer than the length of the first pressure plate, a portion of the waist of the trousers (P) is below the first pressure plate. It may also be located lower. Therefore, the second clip does not secure the end of the trousers (P). Both sides can be inserted into the predetermined gap 5331 and fixed in place.
[0135] The mounting end 539 is curved, which can cause unwanted wrinkles or creases when trousers (P) are placed on it. This can prevent that from happening.
[0136] Referring to Figure 5(b), the mounting end 539 is connected to the first curved surface 539 of the first surface 535. 1 and a second surface 5392 that connects the first surface 5391 and the second surface 538. Surface 391 and the second surface 5392 have different curvatures and are asymmetrical in shape. That is, The first curved surface 5391 has a shape that protrudes further away from the inner surface 401 of the door than the first surface 535. Therefore, if the center of the first pressure plate is shown by a dashed line, the first curve is measured with respect to the dashed line. The radius of curvature (S1) of surface 5391 is greater than the radius of curvature (S2) of the second surface 5392. Therefore, the curvature of the first surface 5391 is smaller than the curvature of the second surface 5392. The radius of curvature of 92 is similar to half the thickness of the first pressure plate 530, but the curvature of the first curved surface 5391 The radius is greater than half the thickness of the first pressure plate 530.
[0137] On the other hand, the overall length of the trousers (P) (length of the outer seam) is the length of the first surface 535, and the mounting end The length of the first side is longer than the sum of the lengths of the second side 539 and the second side 538. In this case, the waist of the trousers is It is located below clip 533. The base plate 510 and the second surface support the hem of the trousers (P). The trousers are pressurized from the hem up to the middle of the leg, and then through the mounting end 539 to the waist of the trousers. The remaining part, including the leg portion (excluding the legs of the trousers), is placed on the first surface 535. At this time, The area where wrinkles are actually removed is not the waistband of the trousers, but the legs of the trousers. The waist area differs from the legs of the trousers in the position of the seams. Therefore, it is effectively compressed. The area where the "wa" needs to be removed is the legs of the trousers, excluding the waistband.
[0138] Therefore, in order to apply pressure only to the desired portion of the placed trousers (P), the first curved surface 5 The radius of curvature of 391 is increased, and the trousers located between the second surface 538 and the base plate 510 The entire portion is pressurized to remove wrinkles, and due to the tensile force generated by the weight of the remaining part of the trousers passing through the mounting end portion 539, the trousers can be pressurized in a straight and taut state as a whole, making the intended crease in the trousers clearer and more prominent. Such wrinkles are called the so-called "tack (clearly visible pants‘ leg crease)". such wrinkles are called the so-called "tack (clearly visible pants‘ leg crease)".
[0139] Considering the radius of curvature of the first curved surface 5391, unless the second pressure plate 550 is coupled to the first pressure plate 530 after passing through the first curved surface 5391, the trousers (P) will be separated from the first pressure plate 530. Of course, depending on the form of the second pressure plate 550, the portion located between the first surface 535 and the second pressure plate 550 can also be pressurized.
[0140] FIG. 6(a) shows the location where the first rotating portion 561 and the second rotating portion 562 are located. FIG. 6(b) is an enlarged view of the first rotating portion 561 and the second rotating portion 562.
[0141] As described above, the first pressure plate 530 rotates in the left - right direction of the door 400 with respect to the first axis 5611, and the second pressure plate 550 can rotate in the up - down direction of the door 400 with respect to the second axis 5621. Also, when the second pressure plate rotates and opens, the first pressure plate 530 also rotates in the same direction, changing from the state where the first pressure plate 530 and the base plate 510 are pressing the trousers to a state where the pressure is released. To enable such rotation, the first pressure plate 530 is coupled to the inner surface 401 of the door or the base plate 5 10 and further includes a first rotating portion 561 that rotates the first pressure plate 530 around the first axis 5611 and rotates it in a direction perpendicular to the first axis 5611.
[0142] To enable such rotation, the first pressure plate 530 is coupled to the inner surface 401 of the door or the base plate 5 10 to rotate the first pressure plate 530 around the first axis 5611 and rotate it in a direction perpendicular to the first axis 5611, and further includes a first rotating portion 561.
[0143] The second pressure plate 550 is connected to the inner surface 401 of the door or the base plate 510, and the second pressure plate is connected to the second axis It further includes a second rotating part 562 that rotates about a direction perpendicular to the first axis.
[0144] The first rotating part 561 is provided with a first shaft 5611 and a first shaft 56 in the height direction of the door 400. Auxiliary shaft 5612 is connected perpendicularly to 11, and a connecting shaft is rotatably connected to auxiliary shaft 5612. Includes part 5615. Thus, the first pressure plate 530 is on the left side of the door 400 via the first shaft 5611. It is rotatable to the right and also rotatable vertically in the door 400 via the auxiliary shaft 5612. be.
[0145] Furthermore, the first rotating part 561 has a fixing part 561 that fixes the first shaft 5611 to one side of the first pressure plate. The 4 further includes a shaft recess 534 on one side of the first pressure plate capable of accommodating the first shaft 5611. A bracket-shaped fixing part is provided to secure the first shaft 5611 inserted into the shaft recess 534. Since it has 5614, the first shaft 5611 is fixed within the shaft recess 534. Therefore, the first The pressure plate 530 is rotatable in the left-right direction of the door around the first axis 5611.
[0146] The auxiliary shaft 5612 extends perpendicularly to the first shaft 5611 and protrudes through the fixed portion 5614. The form is formed. The first shaft 5611 and the auxiliary shaft 5612 are formed integrally. 1 and the auxiliary shaft 5612 ultimately form a configuration where two cylindrical shafts are joined in a T-shape. The first pressure plate 530 can rotate both by the first shaft 5611 and by the auxiliary shaft 5612. It is Noh.
[0147] The first rotating part 561 has a connecting part 5615 connected to the auxiliary shaft 5612, and is coupled to the connecting part. The first gear 5613 transmits rotational force, and the first gear shaft 561 is the axis of rotation of the first gear 5613. 31, and connected to the inner surface of the door 401 or the base plate 510 to support the first gear shaft 56131. It further includes a first support portion 5618.
[0148] The first gear 5613 and the connecting part 5615 are designed to rotate together when the first gear 5613 rotates. It is connected to the first gear 5613. Therefore, when the first gear 5613 rotates, the connecting part 5615 also rotates, and the connection At this time, the first pressure plate 530 rotates in the same direction around the auxiliary shaft 5612. The pressure plate 530 rotates by a radius corresponding to the length of the connecting portion 5615. Also, the first pressure plate 5 Due to its own weight, the first pressure plate 530 always faces the base plate 510 side by side, as shown in Figure 8. It rotates while rotating. That is, the connecting part 5615 simply rotates, so the rotation of the connecting part 5615 As a result, the auxiliary shaft 5612 connected to the connecting part 5615 moves along the trajectory of the connecting part, and rotates It only appears to be rotating; in reality, the first pressure plate 530 rotates, causing the base plate 51 to rotate. This is not about the angle relative to 0 changing. From the perspective of s), the rotation vector of the base plate due to the rotation of the base plate (curl vec The tor value is 0. However, it appears to be rotating, so in this specification... This indicates that all of these will be rotated.
[0149] The second rotating part 562 moves the second pressure plate 550 along the vertical direction of the door or in a direction perpendicular to the first axis. A second shaft 5621 for rotation, and a second pressure plate 550 centered on the second shaft 5621. It includes a second gear 5623 that rotates together with it. The second gear 5623 and the second shaft 5621 are integrally formed. The second gear shaft, which is the rotation center of the second gear 5623, is a different shaft from the second shaft 5621. It is also possible that the second gear shaft is on the same axis as the second shaft for the rotation of the second pressure plate. Let's give an example of the case where this is the case.
[0150] When the second pressure plate 550 rotates, the second gear 5623 and the second shaft 5621 move relative to the second pressure plate 550. Since they are connected, they rotate together. The second pressure plate 550 is connected to the inner surface 401 of the door or the base It further includes a second support portion 5625 that is coupled to the plate 510 and supports the rotation of the second gear shaft.
[0151] Referring to Figure 7(b), the first support portion 5618 not only supports the first gear 5613, The third gear 563 is a free gear located between the first gear 5613 and the second gear 5623. Further support for 3. The third gear 5633 is located when there is a gap between the first gear and the second gear 5623. This is to prevent the diameter of the first gear 5613 or the second gear 5623 from becoming larger. Therefore, although the first gear 5613 and the second gear 5623 can be directly fitted together, This example shows an indirect connection using the third gear 5633.
[0152] Referring to Figure 6(b), the base plate 510 is positioned in a position corresponding to the first gear 5613. It further includes a gear through-hole 5191 that penetrates through 510 in the thickness direction. This is the first gear 5613 This is to prevent collision or interference with the base plate depending on the size. Base plate 51 As mentioned above, 0 is a predetermined distance away from the inner surface 401 of the door, so the first gear 56 Even if 13 protrudes in the direction of the mounting surface through the gear through hole 5191, it will not reach the inner surface of the door 401. Not enough.
[0153] Figure 7(a) shows a magnified view of the first shaft, auxiliary shaft, and connecting part. Figures 7(b) and 7(c) are When the second gear rotates, rotational force is transmitted through the first gear section, the connecting section, and the auxiliary shaft, and the second gear This diagram illustrates the mechanism by which the first pressure plate rotates when the pressure plate rotates.
[0154] Referring to Figure 7(a), the first pressure plate 530 is arranged in parallel with the first axis 561 in the height direction of the door. Rotation is performed in the left-right direction (Rot1) by point 1. The dashed line indicates the center of the cross-section of the first axis 5611. This is the result. Furthermore, the auxiliary shaft 5612, which is provided perpendicular to the first shaft 5611, allows for vertical movement. It can also be rotated to (Rot2).
[0155] Figure 7(b) shows the positioning of the second pressure plate 550 so that the pressure surface 555 faces the first pressure plate 530. Then, the second pressure plate 550 is connected to the first pressure plate 530 or the base plate 510 and placed on top. This indicates that the bonnet is being pressurized. At this time, the first pressurizing plate naturally connects to the base plate 510 and the trousers. Apply pressure. If there are no trousers placed on it, it will be in close contact with the base plate 510. This position is called the first position.
[0156] Figure 7(c) shows the user opening the second pressure plate 550, i.e., the second pressure plate 550 and the second shaft 56 Rotation via 21 shows the case where the cover surface 558 faces the inner surface 401 of the door. The first pressure plate 530 can be rotated by the rotation of the connecting part 5615. However, the first The pressure plate 530, due to its own weight, always faces the base plate 510 while maintaining a predetermined separation distance. It is there. This position is called the second position.
[0157] When the user opens the second pressure plate 550, the second pressure plate 55 which was below the second shaft 5621 The handle 551 of 0 will be positioned upwards. That is, the pressure surface 555 will be on the base plate 510. Opposite to this, with the cover surface 558 exposed to the outside, the pressure surface 555 is exposed to the outside. Then, the cover surface 558 faces the inner surface 401 of the door.
[0158] On the other hand, the handle 551 is not merely a means of rotating the second pressure plate 550. Furthermore, the connection between the second pressure plate 550, the base plate 510, and the first pressure plate 530 can be released. Yes. That is, when the user pulls the handle 551, the second pressure plate 550 and the base plate 51 A locking device (not shown) that maintains the connection between the 0 and the first pressure plate 530 is released.
[0159] When the user opens the second pressure plate 550, the first pressure plate 530 moves from the first position to the second position. Moves. When the second pressure plate 550 rotates, the second gear 5623 moves in the same first rotation as the second pressure plate 550. It rotates in the direction of rotation. When the second gear 5623 rotates, the third gear 5633 rotates in the opposite direction to the first rotation. It rotates in the second rotational direction. Also, the first gear 5613 rotates in the first rotational direction.
[0160] When the first gear 5613 rotates in the first rotational direction, the connecting part 5615 which is connected to it It rotates in the first rotational direction. At this time, the auxiliary shaft 56 rotatably connected to the connecting part 5615 12 moves along the first rotational direction by the connecting part 5615. Therefore, the auxiliary shaft 5612 The first pressure plate 530 also moves along the first rotational direction via the connected first shaft 5611. Therefore, as shown in Figure 7(c), in the second position, the base plate 510 and the first pressure plate are predetermined They stand side by side facing each other while maintaining the separation distance (L1). The separation distance is the same as the base plate 510. This is the maximum distance between the first pressure plates 530. Also, at the first position, the separation distance is the It is smaller than the distance between the gear shaft 56131 and the auxiliary shaft 5612.
[0161] Referring to Figures 7(b) and 7(c), the second gear 5623 is only a part of the outer surface of the second gear. It is equipped with gear teeth 5624. This gear teeth have a portion that fits into the third gear 5633. This is intended to limit the area to the part that can be affected. That is, the entire outer surface of the second gear 5623 is gear If teeth are present, when the second pressure plate 550 rotates in the first position, the first pressure plate 530 immediately rotates. Because it rotates, the first pressure plate 530 ultimately ends up much higher than the second position. In this case, interference occurs with the first support part 5618, etc. Therefore, the first pressure plate 530 is unnecessary. To prevent movement, that is, the first pressure plate 530 is limited to moving only between the first and second positions. To that end, the gear teeth 5624 of the second gear are located on only a portion of the outer surface of the second gear 5623. It is provided. In this case, when the second pressure plate 550 rotates, the first pressure plate 530 does not rotate immediately. The first pressure plate 530 rotates with a certain delay time. Figure 7(c) shows the second gear in the second position. This indicates that the teeth of gear A and the teeth of the third gear are engaged.
[0162] The same applies when the user rotates the second pressure plate 550 to close it. In this case, the second position Then the first pressure plate 530 starts rotating at the same time as the second pressure plate 550 rotates, and the first pressure plate 53 After 0 reaches the first position, after a certain delay, the second pressure plate 550 moves against the first pressure plate 5 30 is connected to the base plate 510. That is, the pressure surface 555 faces the first pressure plate 530. They are joined together in this way.
[0163] At this time, the pressure 50 (see Figure 1) provided in the conventional garment processing device 2000 is different from Unlike the previous configuration, the first pressure plate 530 is positioned opposite the base plate 510 and applies pressure to the trousers (P). Therefore, the trousers can be pressed evenly at once. Thus, the rotation pressurizes from one side. This minimizes the pressing phenomenon of the trousers and the resulting wrinkles that occur when they are pressed. .
[0164] Figure 8 shows the first pressure plate 530 and the base plate 510 with the trousers (P) placed between them. The plate 530 rotates in the vertical direction of the door by the connecting portion 5615 and the auxiliary connecting portion 5715. This is a general overview.
[0165] As shown in Figure 7, when the first pressure plate 530 rotates at the connecting part, it contacts the base plate 510. They rotate while facing each other. As a result, the connecting part 5615 rotates due to the weight of the base plate 510. When doing so, the viewing angle of the base plate 510 does not change. To further guarantee this, the first addition Of the two sides of the pressure plate 530, one side to which the connecting parts are connected has an auxiliary connecting part 5 below the connecting part. Includes 715.
[0166] The connecting section 5615 is equipped with the first gear 5613 and transmits rotational force when the second pressure plate 550 rotates. Unlike the above, the auxiliary connecting part 5715 is simply the base plate 510 or the inner surface of the door 401 It is simply hinged and rotates. Therefore, the connecting part 5615 can control the first pressure plate 530. On the other hand, the auxiliary connecting part 5715 is connected to the first pressure plate 530 by the connecting part 5615. When rotating, the base plate 510 is manually controlled to always rotate facing the first pressure plate 530. Their role is to guide the target.
[0167] The connecting portion 5615 and the auxiliary connecting portion 5715 are provided on only one side of the first pressure plate 530. This is because the first pressure plate 530 also needs to rotate via the first shaft 5611.
[0168] Figure 8(a) shows the first pressure plate 530, connecting portion 5615 and auxiliary connecting portion 5715 in the first position. This is a schematic representation. The auxiliary connecting part 5715 is hinge-connected to the base plate 510 or the inner surface 401 of the door. A subordinate shaft 57131 for the first pressure plate 530 and an auxiliary shaft 5612 arranged side by side for the first pressure plate 530 It includes a dependent auxiliary shaft 5712. The roles of the dependent shaft 57131 and the dependent auxiliary shaft 5712 are as follows: Its role is similar to that of the gear shaft 56131 and the auxiliary shaft 5612.
[0169] Figure 8(b) shows the first pressure plate 530 moving to the second position and the first pressure plate 530 and the base plate 510. This indicates that the distance between them is a predetermined separation distance (L1). Subsequently, the user moves the first pressure plate After rotating 530 via the first shaft 5611, the first clip 531 is attached to the first pressure plate 530. Then, the trousers are placed and secured using the second clip 533. After that, the first clip is applied again in the reverse direction. When the pressure plate 530 is rotated, as shown in Figure 8(c), the base plate 510 and the first pressure plate 530 The trousers (P) are positioned in between. Then, as shown in Figure 8(d), the second pressure plate 550 is rotated downwards. When this is done, the first pressure plate 530 moves from the second position to the first position while applying pressure to the trousers (P). ru.
[0170] This disclosure can be implemented in various forms, and the rights granted by the embodiments described above are... The scope is not limited. Therefore, modified embodiments may constitute the components of the claims of this disclosure. If it contains elements, it is deemed to fall within the scope of the rights to disclosure. [Explanation of Symbols]
[0171] 1000: Clothing processing device 100: First chamber 101: Bottom of the first chamber 1011: Air supply port 1012: Steam supply port 1013: Air intake port 120: Input opening 190: Clothing support section 150: Cabinet 200: Second Chamber 210: Base unit 220: Blower unit 221: Intake duct 230: Heat pump unit 250: Steam unit 310: Water tank 313: Water tank window 315: Water tank handle 330: Drainage tank 333: Drainage tank window 335: Drain tank handle 400: Door 401: Inside of door 403: Clothes rack 405: Clothing fixing section 500: Pressure section 510: Base plate 511: Joint surface 512: Mounting surface 513: Clip housing 530: First pressure plate 531: First clip 5311: Clip fixing part 5312: Clip support part 532: First opening 533: Second clip 535: 1st surface 536: 1st groove 537: 2nd groove 538: 2nd side 539: Mounting end 550: Second pressure plate 551: Handle 552: Second opening 555: Pressure surface 557: Prevention groove 558: Cover surface 559: Protective side 561: First rotating part 5611: First shaft 5612: Auxiliary axis 5614: Fixed part 5615: Connecting section 5613: First gear 56131: First gear shaft 5618: First support part 562: Second rotating part 5621: Second shaft 5623: Second gear 5625: Second support part 563: Third gear section 5633: Third gear 5715: Auxiliary connecting part 57131: Dependent shaft 5712: Dependent auxiliary axis
Claims
1. A clothing processing device, A cabinet with an input slot on one side; A first chamber located inside the cabinet and containing clothing through the opening. ; Located below the first chamber and forming a space separated from the first chamber. The second chamber; It is located inside the second chamber and generates steam, which is then supplied to the first chamber. Steam unit; A door that is rotatably connected to the cabinet and opens and closes the input opening; The inner surface of the door located on one side of the door in the direction toward the first chamber; A base plate that connects to the inner surface of the door; A first shaft arranged in parallel in the height direction of the aforementioned door; A second shaft provided perpendicular to the height direction of the aforementioned door; The first shaft is rotatably connected to the inner surface of the door or the base plate and the base plate A first pressure plate provided opposite to the first, on which the trousers are placed and pressurized; and The first pressurized shaft is rotatably connected to the inner surface of the door or the base plate via the second shaft. A garment processing apparatus characterized by comprising: a second pressure plate provided opposite to a plate;
2. The first pressure plate is located at the lower part of one side facing the base plate, and the hem of the trousers The present invention is characterized by comprising a first clip for fixing one of the upper ends, as described in claim 1. A garment processing device.
3. The first pressure plate is located at the lower part of the other side facing the second pressure plate, and the hem of the trousers Alternatively, the present invention is characterized by comprising a second clip for securing the other of the upper ends, as described in claim 2. A garment processing device.
4. The aforementioned second clip is, It consists of an angular clip, and a predetermined distance between it and the first pressure plate. Forming a gap, The method involves inserting a portion of one side of the trousers into the predetermined gap to secure the trousers. A garment processing apparatus as described in claim 3, characterized by...
5. The length of the second pressure plate is shorter than the length of the first pressure plate. When the second pressure plate is rotationally coupled to the first pressure plate, Claim 3, characterized in that the second clip is exposed on the outside of the first pressure plate. The garment processing device described above.
6. The first pressure plate is, The first surface is one surface facing the base plate; The second surface, which is the other surface facing the second pressure plate; and A curved mounting end connecting the first surface and the second surface, on which the trousers are placed; The mounting end has a curvature of a curved surface connected to the first surface and a curved surface connected to the second surface. The garment processing apparatus according to claim 3, characterized in that it has a different curvature.
7. The aforementioned mounting end is, The first surface is connected to the curved surface, The garment according to claim 6, characterized in that it has a shape that protrudes toward the second pressure plate. A type of processing device.
8. The first surface is the length of the door in order to prevent interference with the seams provided in the trousers. It comprises a first groove that is depressed in that direction; The second surface is the length of the door in order to prevent interference with the seams provided in the trousers. The garment processing apparatus according to claim 7, characterized by comprising a second groove that is recessed in the direction of the second groove.
9. The base plate is attached to the inner surface of the door at a predetermined distance from the inner surface of the door. The garment processing apparatus according to claim 1, characterized in that it is combined.
10. When the first pressure plate presses the base plate, the base plate is in relation to the first clip. A claim characterized by having a clip housing portion that is recessed or penetrated to a corresponding shape. The garment processing apparatus described in 2.
11. The width of the second pressure plate is characterized by being greater than the width of the first pressure plate and the base plate. The garment processing apparatus according to claim 1.
12. A blower unit provided in the second chamber for drawing in air from the first chamber. ; A heat pump is provided in the second chamber to dehumidify and heat the inhaled air. Unit; A first opening that penetrates the first pressure plate in the thickness direction; and A second opening that penetrates the second pressure plate in the thickness direction at a position corresponding to the first opening; Furthermore, The trousers are dehumidified and heated air is released through the first and second openings. The garment processing apparatus according to claim 11, characterized by exposing the team to the garments.
13. The second pressure plate has sides facing the inner surface of the door. The present invention, as described in claim 12, is characterized by having a protective side surface formed by being bent in a certain direction. A garment processing device.
14. Of the two surfaces of the second pressure plate, the cover surface located away from the inner surface of the door is the front The second pressure plate is to be further provided with a handle for the user to take hold of the second pressure plate in order to rotate it. A garment processing apparatus according to claim 13, characterized by the above.
15. An auxiliary shaft connected perpendicularly to the first shaft; and The system further comprises a connecting portion that is rotatably connected to the auxiliary shaft; The first pressure plate not only rotates about the first axis, but also via the auxiliary axis The garment processing apparatus according to claim 1, characterized in that it rotates in parallel with the second axis.
16. A first gear connected to the connecting portion and rotating together with the connecting portion; and Located on one side of the second pressure plate, connected to the first gear, and together with the second pressure plate It further includes a rotating second gear; When the second pressure plate rotates about the second axis, The first pressure plate is connected to the second gear, the first gear, the connecting part, and the auxiliary shaft. The garment processing apparatus according to claim 15, characterized in that it rotates in parallel with the second axis.
17. Located between the first gear and the second gear, connecting the first gear and the second gear. The garment processing apparatus according to claim 16, further comprising a third gear.
18. The aforementioned second pressure plate is The first pressure plate and the pressure surface that presses the trousers; and A cover surface located in the opposite direction to the aforementioned pressure surface; The second gear teeth, located only on a portion of the outer surface of the second gear, are formed when the second pressure plate rotates. When the cover surface rotates until it is parallel to the inner surface of the door, The first pressure plate is positioned at a first position for applying pressure to the base plate, and is separated from the base plate by a predetermined distance. The characteristic feature is that it moves to a second position aligned with the base plate, separated by a certain distance, as described in claim 16. A garment processing device.
19. When the second pressure plate rotates in the first rotational direction, The first gear and the connecting portion rotate in the first rotational direction. Claim 17 is characterized in that the third gear rotates in the opposite direction to the first rotation direction. The garment processing device described.
20. The base plate is provided with gear through-holes that penetrate the base plate at positions corresponding to the first gear. picture, The claim is characterized by preventing interference with the base plate when the first gear rotates. The garment processing apparatus described in item 17.