Clothes processing device and combined clothes processing equipment
By optimizing the spatial layout of the garment processing device and controlling the position and size ratio of the cylinder within the box, the problem of cylinder movement interference in miniaturized devices was solved, achieving effective operation of the cylinder and a reasonable layout of functional modules to meet multifunctional needs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-10
- Publication Date
- 2026-04-14
AI Technical Summary
The small internal space of miniaturized clothing handling devices makes it easy for the cylinder to interfere with movement when it is working inside the box, and it is also not conducive to setting up other functional components.
By optimizing the spatial layout of the garment handling device and controlling the position and size ratio of the drum inside the box, sufficient space is ensured in the width and height directions of the drum to avoid movement interference and to leave space for other functional modules.
The device achieves efficient operation of the drum in a miniaturized clothing processing unit, avoids motion interference, and rationally arranges functional components within a limited space to meet multifunctional needs.
Smart Images

Figure CN224119296U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of clothing processing technology, and in particular to a clothing processing device and a combined clothing processing equipment. Background Technology
[0002] Clothing handling equipment can generally be categorized by type into washing machines, dryers, or dry cleaning combos. Structurally, it can be divided into top-loading washing machines and front-loading washing machines.
[0003] With the continuous improvement of people's living standards, laundry detergents have become indispensable household appliances. In home use, users have different needs for washing different types of clothing. For example, when washing large items such as duvet covers and outerwear, a large-capacity washing machine (e.g., 6kg-12kg capacity) is required. However, when washing items such as underwear, baby clothes, or socks, or washing a small amount of clothing, using a large-capacity laundry detergent may result in unnecessary water waste. Therefore, miniaturized laundry detergents have emerged on the market. These miniaturized detergents have a smaller capacity and can typically wash clothes weighing between 1kg and 5kg.
[0004] However, this miniaturized clothing processing device has a small overall size, and the space inside it is relatively small, which affects the normal operation of the drum inside the box. Utility Model Content
[0005] This application discloses a garment processing device for optimizing the spatial layout within the garment processing device, so that the cylinder in the miniaturized garment processing device can work effectively inside the box.
[0006] To achieve the above objectives, in a first aspect, this application discloses a garment processing device, comprising: a first box; two first cylinders; the first box having: a lower surface; an upper surface, the upper surface and the lower surface being disposed opposite each other along the height direction of the first box; a front outer surface, the front outer surface being connected to the upper surface and the lower surface, the front outer surface having two openings, the two openings being spaced apart along the width direction of the first box; a rear outer surface, the rear outer surface and the front outer surface being disposed opposite each other along the depth direction of the first box, the rear outer surface being connected to the upper surface and the lower surface; and, the two first cylinders being disposed within the first box, and the first cylinders being spaced apart along the width direction of the first box, each of the two first cylinders having a loading port, the loading port communicating with the corresponding opening; wherein, the diameter of the first cylinder is R, and the dimension of the first box along its own width direction is W, satisfying: 0.4 < R / W < 0.45.
[0007] Since the dimensions of the first housing in the width direction are usually fixed, the internal space of this miniaturized garment handling device is relatively limited. This application satisfies the following ratio: diameter of the first tubular body relative to the width dimension of the first housing: 0.4 < R / W < 0.45. Correspondingly, when two first tubular bodies are arranged inside the first housing in the width direction, their proportion can be: 0.8 < 2R / W < 0.90. It is evident that, on the one hand, the two first tubular bodies can occupy a large proportion of the space in the width direction of the first housing, allowing for more space to accommodate garments within the first tubular body in this miniaturized twin-tub garment handling device, ensuring the effective volume of the first tubular body. On the other hand, the first housing still has 10%-20% remaining space in its width direction. When two first tubular bodies are installed inside the first housing, since the first tubular bodies will vibrate during operation, this application also leaves space to facilitate controlling the distance between the two first tubular bodies in the width direction or the distance between the first tubular bodies and the inner surface of the first housing in the width direction, thereby preventing motion interference with the first tubular bodies during operation and facilitating the effective operation of the first tubular bodies within the first housing.
[0008] Considering that the width dimension of the first compartment is usually fixed, if R / W is less than 0.4, it means that the diameter of the first tubular body is relatively small, which may affect the effective volume of the first tubular body for storing clothes. On the other hand, if R / W is greater than 0.45, it means that the diameter of the first tubular body is relatively large, occupying more space in the width dimension of the first compartment. With the width dimension of the first compartment fixed, an excessively large first tubular body may result in insufficient safety distance between the first tubular body and the first compartment, which may lead to the first tubular body colliding with or hitting the first compartment when handling clothes.
[0009] Secondly, this application also discloses a garment processing device, comprising: a first box; two first cylinders; the first box having: a lower surface; an upper surface, the upper surface and the lower surface being disposed opposite each other along the height direction of the first box, the distance between the upper surface and the lower surface along the height direction of the first box being H1; a front outer surface, the front outer surface being connected to the upper surface and the lower surface, the front outer surface having two openings, the two openings being spaced apart along the width direction of the first box; and a rear outer surface, the rear outer surface and the front outer surface being disposed along the depth direction of the first box. The first cylinders are arranged opposite to each other, with the rear outer surface connected to the upper surface and the lower surface; and two first cylinders are disposed in the first box, and the first cylinders are spaced apart along the width direction of the first box, each of the two first cylinders having a dispensing port, the dispensing port communicating with the corresponding opening; wherein, the diameter of the first cylinder is R, and along the height direction of the first box, the distance between the axis of the first cylinder and the lower surface of the first box is H2, satisfying the following relationships: 0.489 < H2 / H1 < 0.538, and 0.972 < R / H2 < 1.069.
[0010] In the garment handling apparatus disclosed in this application, the distance between the lower and upper surfaces of the first housing is the height of the first housing. Looking at the height of the first housing, within the first housing, the ratio of the distance between the axis of the first cylindrical body and the lower surface of the first housing to the height of the first housing is within 0.489-0.538. This indicates that the first cylindrical body is located slightly above or below the center of the first housing, or that the axis of the first cylindrical body occupies approximately half the height of the first housing. Furthermore, since the ratio of the diameter of the first cylindrical body to the distance between its axis and the lower surface of the first housing is approximately the same, the diameter of the first cylindrical body also occupies half the height of the first housing. In other words, in the height direction of the first housing, the first cylindrical body is not only located in the center of the first housing but also occupies half the space. That is, above and below the first cylindrical body, there is still one-fifth to one-quarter of the space remaining in the first housing. Thus, a considerable amount of space is left above and below the first cylindrical body along the height direction, facilitating the installation of other functional components. It is evident that the garment handling device of this application allows for a more spacious design in the height direction of the first housing while maintaining a compact size. This helps prevent motion interference between the first cylinder and the upper and lower surfaces of the first housing in the height direction. Furthermore, the ample space in the height direction of the first housing facilitates the arrangement and layout of functional components within this direction.
[0011] Therefore, it is understandable that when the ratio of H2 / H1 is small, i.e., H2 / H1 < 0.489, the first cylinder is positioned lower in the height direction of the first housing, which may result in less space below the first cylinder within the first housing. Since shock absorbers and other structures are installed below the first cylinder, less space below it may affect the installation and setup of these structures. Conversely, when the ratio of H2 / H1 is large, i.e., H2 / H1 > 0.538, the first cylinder is positioned higher in the height direction of the first housing, which may result in less space above it within the first housing. Since interactive display modules, drying modules, etc., are installed above the first cylinder, less space below it may affect the installation and setup of shock absorbers and other structures.
[0012] When R / H2 is small, i.e., R / H2 < 0.972, it means that the diameter of the first tube is relatively small compared to the height of the first box. While this can free up space above or below the first tube, the smaller diameter of the first tube may affect its capacity, making it less suitable for storing clothes. When R / H2 is large, i.e., R / H2 > 1.069, it means that the diameter of the first tube is relatively large compared to the height of the first box. This results in the first tube potentially occupying more space within the first box, leaving less space above or below it, which is not conducive to installing functional components within the first box.
[0013] In some possible implementations, such as the garment handling apparatus disclosed in the first or second aspect, the distance H2 between the axis of the first cylinder and the lower surface of the first housing satisfies: 230mm < H2 < 253mm; and,
[0014] The distance H1 between the upper surface and the lower surface along the height direction of the first box body satisfies: 455mm < H1 < 485mm.
[0015] When the axis of the first cylinder is at a height of approximately 230mm-253mm within the first housing, and when the height of the first housing is 455mm-485mm, the first cylinder is located slightly above or slightly below the center of the first housing to facilitate the installation of larger functional components or to make the installation of functional components easier.
[0016] On the one hand, when H2 is large (H2 > 253 mm), the first cylinder is located at the upper part of the first chamber, which may result in less space above the first cylinder within the first chamber. Since the interactive display module, drying module, etc., are installed above the first cylinder, less space below the first cylinder may affect the installation and setup of structures such as shock absorbers. On the other hand, when H2 is small (H2 < 230 mm), the first cylinder is positioned lower in the height direction of the first chamber, which may also result in less space below the first cylinder within the first chamber. Since the shock absorbers, etc., are installed below the first cylinder, less space below the first cylinder may affect their installation and setup.
[0017] On the other hand, when H1 is large, i.e., H1 > 485 mm, it indicates that the height of the first box is too large. For example, when the first box is placed on a platform or other flat surface, it may occupy a lot of indoor space. When H1 is small, i.e., H1 < 455 mm, it indicates that the height of the first box is too small, and there is less space inside the first box in the height direction, which is not conducive to setting up structures above or below the first cylinder.
[0018] In some possible implementations, such as the garment handling apparatus disclosed in the first or second aspect, the R satisfies: 240mm < R < 250mm.
[0019] When the diameter R of the first cylinder satisfies the condition 240mm < R < 250mm, there is still about 100mm-120mm of space above or below the first box body, which is convenient for setting up larger functional components or for installing functional components.
[0020] In other words, when R is large (R > 250mm), the diameter of the first drum is large, which may occupy more space in the height direction of the first chamber, making it unsuitable for setting up structures such as circuit boards or pipes above or below the first drum. When R is small (R < 240mm), the capacity of the first drum is reduced, making it unsuitable for storing clothes for washing.
[0021] In some possible implementations, such as the garment handling apparatus disclosed in the first or second aspect, the axis of the first cylinder is inclined relative to the lower surface of the first box, and along the depth direction of the first box, the distance from the end of the axis of the first cylinder pointing to the rear outer surface to the lower surface of the first box is less than the distance from the end of the axis pointing to the front outer surface to the lower surface of the first box.
[0022] When the end of the first cylinder pointing towards the front outer surface is higher than the end pointing towards the rear outer surface, that is, the inlet of the first cylinder faces upward and the first cylinder remains tilted. When the first cylinder is tilted, when clothes are put into the first cylinder, they can be inserted into the bottom of the clothing handling chamber of the first cylinder according to the shape of the first cylinder, making it convenient for users to put clothes into the first cylinder. On the other hand, the size of the first cylinder and the first housing is relatively small, and the water capacity of the first cylinder is relatively small. In order to avoid water splashing out due to the first cylinder not being able to effectively hold water, tilting the first cylinder helps to reduce water splashing out of the first cylinder.
[0023] In some possible implementations, the axis of the first cylinder and the depth direction of the first box body form an angle α, wherein 2° < α < 6°.
[0024] For the garment handling device, in its working state, in order to prevent water in the first cylinder from overflowing from the inlet, from the perspective of height, the end of the first cylinder near the inlet is higher than the bottom of the first cylinder. That is, when the axis of the first cylinder is kept tilted in the first direction, the first cylinder can better hold the water to prevent water from overflowing from the inlet.
[0025] Furthermore, considering that the tilt angle of the first cylinder may affect its placement within the first tank, if the tilt angle is too small, it may be insufficient to hold the water inside. If the tilt angle is too large, the first cylinder may occupy too much space in the vertical direction within the first tank, hindering the installation of other functional components. In other words, maintaining the tilt angle of the first cylinder's axis between 2° and 6° reduces the probability of water overflowing from the first cylinder while preventing it from occupying excessive space within the first tank.
[0026] Regarding the first tubing, on the one hand, when the first tubing is tilted, the tilt angle should not be too small, i.e., α < 2°. Firstly, if the tilt angle of the first tubing is insufficient, it may be difficult to hold the water, causing water to overflow from the first tubing. Secondly, if the tilt angle of the first tubing is insufficient and the capacity of the first tubing is small, it will not be conducive to holding the clothes inside the first tubing. Therefore, avoiding an excessively small tilt angle of the first tubing is beneficial to improving the overflow situation and preventing clothes from leaking out of the first tubing.
[0027] On the other hand, when the first cylinder is tilted, the tilt angle should not be too large, i.e., α > 6°. Firstly, if the tilt angle of the first cylinder is too large, from a height perspective, the space above the end of the first cylinder near the loading port and the space below the bottom end will be limited, which is not conducive to the rational arrangement of other functional components within the first cylinder's interior space. Secondly, as the tilt angle of the first cylinder increases, its relative depth increases, making it inconvenient for users to reach inside and retrieve clothing. Therefore, avoiding an excessively large tilt angle of the first cylinder is beneficial for improving the space utilization within the first cylinder and making it easier for users to retrieve clothing from it.
[0028] In some possible implementations, such as the garment handling apparatus disclosed in the first or second aspect, the garment handling apparatus further includes:
[0029] An interactive display module is disposed inside the first housing, and the interactive display module is located above the first cylinder along the height direction and is disposed near the front outer surface.
[0030] In some garment processing devices, an interactive display module can be included. This module allows users to interact with the device by controlling the washing mode via buttons and displays the current washing mode on a screen. In the interactive display module, the buttons and screen for interaction and display are typically located on the front outer surface of the first housing for easy user operation. Due to the inclined design of the first tubing, there is limited space above it. The circuit board and wiring of the interactive display module are relatively small and can be placed inside the first housing, above the first tubing, thus making efficient use of the space within the first housing. For ease of electrical connection, the buttons and screen can also be positioned correspondingly above the front outer surface.
[0031] In some possible implementations, such as the garment handling apparatus disclosed in the first or second aspect, the garment handling apparatus further includes:
[0032] A drying module is disposed inside the first chamber, and the drying module is located above the first cylinder along the height direction and is disposed near the rear outer surface.
[0033] A drying module can also be installed in the clothing handling device, allowing the device to dry the clothes in the first drum after washing them. Since the drying module of the clothing handling device is larger than the interactive display module, when the first drum is tilted, there is more space above the outer rear surface of the first drum, making it easier to install a larger module like the drying module.
[0034] It is evident that the clothing processing device disclosed in this application, based on miniaturization, achieves multifunctionality by rationally arranging functional modules.
[0035] In some possible implementations, such as the garment handling apparatus disclosed in the first or second aspect, the distance D between the axis of one first cylinder and the axis of the other first cylinder along the width direction of the first housing satisfies the relationship: 0.45 < D / W < 0.52.
[0036] When two first cylinders are arranged within a first housing, they are spaced apart in the width direction. Considering that the two first cylinders may vibrate along the width direction during operation, this application controls the ratio of the width distance between the two first cylinders to the width dimension of the first housing. Firstly, it avoids the problem of motion interference between the two first cylinders during operation if the distance between them is too small compared to the width dimension of the first housing. Secondly, it avoids the problem of excessive space occupation in the width direction within the first housing if the distance between the two first cylinders is too large compared to the width dimension of the first housing.
[0037] On the one hand, since the dimensions of the first housing in the width direction are usually based on international standards or other standards, meaning the dimensions of the first housing in the width direction are usually fixed, if D / W < 0.45, it indicates that the distance between the two first cylinders is too close, which may cause motion interference between the two first cylinders in the width direction. On the other hand, if D / W > 0.52, it indicates that the distance between the two first cylinders is too far, which may result in a smaller distance between the inner surface of the first cylinder and the first housing, causing motion interference between the first housing and the first cylinder.
[0038] In some possible implementations, D satisfies: 275mm < D < 307mm.
[0039] When two first cylinders are arranged inside a first housing, they are spaced apart in the width direction. Considering that the two first cylinders may vibrate along the width direction during operation, this application controls the spacing between the two first cylinders in the width direction. Firstly, it avoids the problem of motion interference between the two first cylinders due to an excessively small spacing. Secondly, it avoids the problem of excessively large spacing between the two first cylinders, which would occupy too much space in the width direction within the first housing and affect the overall volume of the first housing.
[0040] In other words, when the distance D is less than 275mm, the two first cylinders may be too close, potentially causing interference between them when they move in the width direction, affecting the safe operation of the garment handling device. When the distance D is greater than 307mm, the distance between the two first cylinders is too wide, which may result in a smaller distance between the inner surface of the first cylinder and the inner surface of the first housing, causing the first housing to interfere with the movement of the first cylinder.
[0041] In some possible implementations, such as the garment handling apparatus disclosed in the first or second aspect, the first housing has:
[0042] The first inner surface is connected to the front outer surface and the rear outer surface along the depth direction of the first box, and is connected to the upper surface and the lower surface along the height direction of the first box.
[0043] The second inner surface is disposed opposite to the first inner surface in the width direction of the first box body. The second inner surface is connected to the front outer surface and the rear outer surface along the depth direction of the first box body, and is connected to the upper surface and the lower surface along the height direction of the first box body.
[0044] One of the first cylinders is disposed near the first inner surface, and the other first cylinder is disposed near the second inner surface;
[0045] Along the width direction of the first box body, the distance from one of the first cylinders to the first inner surface is d1, and the distance from the other first cylinder to the first inner surface is d2. These distances satisfy the following relationship with the dimension W of the first box body along its own width direction: 0.025 < d1 / W < 0.034, and 0.025 < d2 / W < 0.034.
[0046] Considering the vibration of the first cylinder during operation, it may collide with the side of the first housing in the width direction. Therefore, the inner surfaces of the first cylinder and the first housing are spaced apart to prevent interference between the movement of the first cylinder and the inner surface of the first housing. Furthermore, controlling the distance between the first cylinder and the inner surface of the first housing in the width direction may affect the internal storage space of the first housing. Therefore, by controlling the ratio of the distance between the first cylinder and the first housing in the width direction to the width dimension of the first housing between 0.025 and 0.034, it is possible to prevent interference between the inner surfaces of the first cylinder and the first housing while avoiding an increase in the width dimension of the first housing, thus preventing an increase in the overall size of the first housing.
[0047] If the distance between the first cylinder and the inner surface of the first housing is small (d1 / W < 0.025 and d2 / W < 0.025), the first cylinder may collide with the first and second inner surfaces of the first housing, affecting its safe operation. If the distance between the first cylinder and the first and second inner surfaces is large (d1 / W > 0.034 and d2 / W > 0.034), the width dimension of the first housing may increase, which is not conducive to the miniaturization design of the first housing.
[0048] In some possible implementations, such as the garment handling apparatus disclosed in the first or second aspect, d1 and d2 satisfy: 15mm < d1 < 20mm, and 15mm < d2 < 20mm.
[0049] Considering the vibration of the first cylinder during operation, it may collide with the side of the first housing in the width direction. Therefore, the sides of the first cylinder and the first housing are spaced apart to prevent interference between the movement of the first cylinder and the inner surface of the first housing. Furthermore, considering that controlling the distance between the first cylinder and the wall of the first housing in the width direction might affect the internal storage space of the first housing, the distance between the first cylinder and the first housing in the width direction is controlled at 15mm-20mm. This approach prevents interference between the inner surface of the first cylinder and the inner surface of the first housing while avoiding an increase in the width dimension of the first housing, thus preventing an increase in the overall size of the first housing.
[0050] If the first cylinder moves in the width direction, and the distance between the first cylinder and the inner surface of the first housing is small (d1 < 15mm and d2 < 15mm), the first cylinder may collide with the first and second inner surfaces of the first housing, affecting the safe operation of the first cylinder. If the distance between the first cylinder and the first and second inner surfaces is large (d1 > 20mm and d2 > 20mm), the width dimension of the first housing may increase, which is not conducive to the miniaturization design of the first housing.
[0051] Thirdly, this application also discloses a combined garment processing device, comprising: a first garment processing device; and a second garment processing device, wherein the second garment processing device is the garment processing device as described in the first or second aspect, and the second garment processing device is detachably disposed on the top of the first garment processing device.
[0052] When the second garment handling device of this application is mounted on the first garment handling device, the second garment handling device can be detached from the top of the first garment handling device, or it can be mounted on the first garment handling device. The first garment handling device can be a single-tub or twin-tub drum-type washing machine, dryer, or washer-dryer combo. That is, users can choose to use a miniaturized twin-tub garment handling device with the second garment handling device, or combine it with a more functional triple-tub or multi-tub combination garment handling device to meet different usage needs.
[0053] In some possible implementations, the first garment handling device includes: a second box, the first box being disposed at the top of the second box along the height direction; a second cylinder, the second cylinder being disposed inside the second box; the height of the second box along the height direction of the first box is H3, and the distance H1 between the lower surface of the first box and the upper surface of the first box satisfies the relationship: 0.476 < H1 / H3 < 0.574.
[0054] The first chamber of this application can be placed on the second chamber, and combined with the second tubing of the second chamber to form a three-tub or multi-tub garment processing device. For example, when the second chamber contains one second tubing, the first chamber and the second chamber form a three-tub combined garment processing device; when the second chamber contains two second tubings, the first chamber and the second chamber form a multi-tub garment processing device. When the first chamber and the second chamber form a three-tub or multi-tub garment processing device, the user can use either the first chamber or the second chamber for washing according to their needs. For example, when washing a small amount of clothing or underwear, the first chamber can be used; when washing a large amount of clothing, the second chamber can be used; when washing underwear and large items such as coats and duvet covers at the same time, the underwear and large items can be separated and washed separately using the first chamber and the second chamber.
[0055] In addition, by controlling the size ratio of the first box to the second box, the size of the first box is smaller than that of the second box. When the first box is placed on the second box, the first box can avoid occupying additional space above the second box, thus preventing the increase in the overall height of the clothing processing device from causing additional space occupation.
[0056] When the first compartment is placed on top of the second compartment, if the size of the first compartment is too small relative to the size of the second compartment (H1 / H3 < 0.476), the first compartment will be positioned too low in the height direction, which may make it inconvenient for users to retrieve or place clothes into the first drum located inside the first compartment. If the size of the first compartment is too large relative to the size of the second compartment (H1 / H3 > 0.574), the first compartment will occupy a significant amount of space above the second compartment, which is not conducive to the indoor installation of the clothing handling device.
[0057] In some possible implementations, H1 satisfies: 455mm < H1 < 485mm; and H3 satisfies: 845mm < H3 < 955mm.
[0058] When the first container is placed on top of the second container, the overall height of the combined garment processing equipment can be approximately 1.3 to 1.5 meters. For users, the loading port of the first container's first drum is likely located at approximately 1.1 meters, facilitating easy loading and unloading of garments. Furthermore, the first container is relatively smaller in height than the second container, minimizing the space occupied by the first container above the second container when placed on top. Therefore, when the first and second containers are installed together to form a combined garment processing equipment, the required indoor space is minimized.
[0059] On the one hand, when H1 is large, i.e., H1 > 485mm, it indicates that the height of the first box is too large. For example, when the first box is placed on a platform or other flat surface, it may occupy a lot of indoor space. On the other hand, when H1 is small, i.e., H1 < 455mm, it indicates that the height of the first box is too small, and there is less space inside the first box in the height direction, which is not conducive to setting up structures above or below the first cylinder.
[0060] On the other hand, when the height H3 of the second chamber is less than 845mm, the second drum may be positioned too low, making it difficult to retrieve clothes from it. The position of the first chamber will also be affected by the lower height of the second chamber. When the height H3 of the second chamber is greater than 955mm, the combined garment processing equipment consisting of the second and first chambers is too tall, taking up additional indoor space.
[0061] Compared with the prior art, this application has at least the following beneficial effects:
[0062] In the garment processing apparatus disclosed in this application, on the one hand, the diameter of the first tubular body relative to the width of the first housing satisfies the following ratio: 0.4 < R / W < 0.45. When two first tubular bodies are arranged in the width direction, the ratio can be: 0.8 < 2R / W < 0.90. That is to say, the first housing has 10%-20% remaining space in the width direction, which is beneficial for controlling the distance between the two first tubular bodies in the width direction or controlling the distance between the first tubular body and the inner surface of the first housing in the width direction, preventing motion interference to the first tubular body during operation, and facilitating the effective operation of the first tubular body within the first housing. Moreover, the first tubular body can maintain a relatively large diameter, and can hold a certain amount of garments to meet the garment processing needs.
[0063] On the other hand, the distance between the lower and upper surfaces of the first housing is its height. Looking at the height of the first housing, within the first housing, the ratio of the distance between the axis of the first cylindrical body and the lower surface of the first housing to the height of the first housing is within 0.489-0.538. This indicates that the first cylindrical body is located slightly above or below the center of the first housing, or that the axis of the first cylindrical body occupies approximately half the height of the first housing. Furthermore, since the ratio of the diameter of the first cylindrical body to the distance between its axis and the lower surface of the first housing is roughly the same, the diameter of the first cylindrical body also occupies half the height of the first housing. In other words, in the height direction of the first housing, the first cylindrical body is not only located in the center of the first housing but also occupies half the space. That is, one-fifth to one-quarter of the space of the first housing is left above and below the first cylindrical body. Thus, a considerable amount of space is left above and below the first housing along its height, facilitating the installation of other functional components. In addition, the first housing has a lot of space in the height direction, which can avoid the movement interference between the first cylinder and the upper and lower surfaces of the first housing in the height direction. Attached Figure Description
[0064] To more clearly illustrate the technical solutions in the embodiments of this application, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0065] Figure 1 This is a schematic diagram of the structure of the garment processing device disclosed in an embodiment of this application;
[0066] Figure 2 This is another structural schematic diagram of the garment processing apparatus disclosed in the embodiments of this application;
[0067] Figure 3 This is an exploded schematic diagram of the clothing processing device disclosed in the embodiments of this application;
[0068] Figure 4 This is a front view schematic diagram of the clothing processing device disclosed in the embodiments of this application;
[0069] Figure 5 This is an internal schematic diagram of the garment processing device disclosed in an embodiment of this application;
[0070] Figure 6 for Figure 4 A cross-sectional view at point AA;
[0071] Figure 7 for Figure 4Another sectional view at point AA;
[0072] Figure 8 This is another internal schematic diagram of the garment processing apparatus disclosed in the embodiments of this application;
[0073] Figure 9 This is another internal schematic diagram of the garment handling apparatus disclosed in the embodiments of this application;
[0074] Figure 10 This is a schematic diagram of the structure of the combined garment processing device disclosed in the embodiments of this application.
[0075] Explanation of reference numerals in the attached figures:
[0076] 100. Clothing handling device (second clothing handling device); 1. First housing; 1a. Opening; 11. Upper surface; 12. Lower surface; 13. Front outer surface; 14. Rear outer surface; 15. First inner surface; 16. Second inner surface; 2. Door; 3. First cylinder; 31. First outer cylinder; 32. First inner cylinder; 3a. Axis; 32a. Loading port; 32b. Clothing handling chamber; 32c. Inner bottom surface; 4. Interactive display module; 5. Water supply assembly; 6. Drainage assembly; 7. Shock absorption assembly; 8. Drying module;
[0077] 200. Modular garment processing equipment; 201. First garment processing device; 9. Second housing; 9a. Second cylinder;
[0078] a) First intersection point; b) Second intersection point; c) Third intersection point. Detailed Implementation
[0079] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0080] In this application, the terms "upper," "lower," "left," "right," "front," "rear," "top," "bottom," "inner," "outer," and "middle," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. These terms are primarily for the purpose of better describing this application and its embodiments, and are not intended to limit the indicated device, element, or component to having a specific orientation, or to be constructed and operated in a specific orientation.
[0081] Furthermore, in addition to indicating location or positional relationship, some of the aforementioned terms may also have other meanings. For example, the term "above" may also be used in some cases to indicate a certain dependency or connection relationship. Those skilled in the art can understand the specific meaning of these terms in this application based on the specific circumstances.
[0082] Furthermore, the terms "installation," "setup," "equipped with," "connection," and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral structure; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium, or an internal connection between two devices, components, or parts. Those skilled in the art can understand the specific meaning of these terms in this application based on the specific circumstances.
[0083] Furthermore, the terms "first," "second," etc., are primarily used to distinguish different devices, components, or parts (which may be the same or different in specific type and construction), and are not intended to indicate or imply the relative importance or quantity of the indicated devices, components, or parts. Unless otherwise stated, "a plurality of" means two or more.
[0084] Clothing handling devices can generally be categorized by type into washing machines, dryers, or dry cleaning combos. Structurally, they can be divided into top-loading washing machines and front-loading washing machines.
[0085] With the continuous improvement of people's living standards, laundry detergents have become indispensable household appliances. In home use, users have different needs for washing different types of clothing. For example, when washing large items such as duvet covers and outerwear, a large-capacity washing machine (e.g., 6kg-12kg capacity) is required. However, when washing items such as underwear, baby clothes, or socks, or washing a small amount of clothing, using a large-capacity laundry detergent may result in unnecessary water waste. Therefore, miniaturized laundry detergents have emerged on the market. These miniaturized detergents have a smaller capacity and can typically wash clothes weighing between 1kg and 5kg.
[0086] However, this miniaturized garment handling device has a small overall size. For example, the width dimension (W) can be 590mm-610mm, and the height dimension (H1) can be 455mm-485mm. If two tubular sections are arranged in the width direction, the internal space of the garment handling device in that direction is relatively small, which may cause movement interference between the tubular sections or between the tubular section and the housing. Similarly, the limited space in the height direction may cause movement interference between the tubular sections and the upper and lower surfaces of the housing. Furthermore, insufficient space in the height direction between the tubular sections and the housing hinders the arrangement of other functional components.
[0087] In response, this application discloses a garment processing device and a combined garment processing equipment. The garment processing device can control the diameter ratio of the two cylinders relative to the width of the housing, effectively allowing for movement space between the two cylinders in the width direction. The garment processing device can also control the position of the cylinders in the height direction of the housing, allowing for movement space for the cylinders and space for other functional components in the height direction. This effectively utilizes the internal space of the miniaturized garment processing device and prevents movement interference between the cylinders and the housing, and between the cylinders themselves.
[0088] The technical solution of this application will be further described below with reference to the embodiments and accompanying drawings.
[0089] Please see also Figures 1 to 3 This application discloses a clothing processing device 100 including a first housing 1, the first housing 1 having an opening 1a along its own depth direction and having a lower surface 12 and an upper surface 11 along its height direction.
[0090] It is understandable that when the opening 1a faces the depth direction of the first housing 1, the clothing handling device 100 can be a drum washing machine or a drum-type washer-dryer combo.
[0091] Taking a drum-type washing machine as an example, the lower surface 12 of the first housing 1 can be a side that rests on the ground, countertop, or table, while the upper surface 11 is the side opposite to the lower surface 12 in the height direction. That is, the upper surface 11 and the lower surface 12 are two sides of the clothing handling device 100 along the height direction. When the first housing 1 has an opening 1a in the depth direction, the side with the opening 1a is the front outer surface 13 of the first housing 1, and the opposite side is the rear outer surface 14. Both the front outer surface 13 and the rear outer surface 14 are connected to the upper surface 11 and the lower surface 12.
[0092] It is understandable that when the bottom of the first housing 1 is provided with feet, the lower surface 12 refers to the side where the feet are provided.
[0093] The first housing 1 can be the outer shell of the clothing processing device 100, or it can be a combination of the outer shell of the clothing processing device 100 and the support frame.
[0094] Understandably, from Figure 3 Viewed from the paper, the first inner surface 15 is located to the left of the front outer surface 13, and the second inner surface 16 is located to the right of the front outer surface 13. The first inner surface 15 is connected to the front outer surface 13 and the rear outer surface 14 along the depth direction of the first housing 1, and is connected to the upper surface 11 and the lower surface 12 along the height direction of the first housing 1. The second inner surface 16 is connected to the front outer surface 13 and the rear outer surface 14 along the depth direction of the first housing 1, and is connected to the upper surface 11 and the lower surface 12 along the height direction of the first housing 1. The direction opposite to the first inner surface 15 and the second inner surface 16 is the width direction.
[0095] exist Figure 1 In the example, X indicates the depth direction of the first box 1, Y indicates the width direction of the first box 1, and Z indicates the height direction of the first box 1.
[0096] In some embodiments, the first housing 1 includes a front panel, a rear panel, a left side panel, a right side panel, and a top panel. The front panel has the aforementioned opening 1a. The front and rear panels are spaced apart and parallel to each other, as are the left and right side panels. The left side panel is located to the left of the front and rear panels, with one end connected to the front panel and the other end connected to the rear panel. The right side panel is located to the right of the front and rear panels, with one end connected to the front panel and the other end connected to the rear panel. The front, left, rear, and right side panels form a ring-shaped structure. The top panel covers the top of this ring-shaped structure. The front, rear, left, right, and top panels together form a receiving space.
[0097] In some embodiments, the first housing 1 further includes a frame (not shown), the frame including a front frame and a rear frame, the front frame being connected to the front panel and the rear frame being connected to the rear panel.
[0098] In some embodiments, the first housing 1 includes a bottom plate, which is spaced apart from and parallel to the top plate, and the bottom plate is connected to the ends of the front plate, rear plate, left side plate and right side plate away from the top plate.
[0099] It is understandable that the width direction of the first box 1 refers to the direction in which the left and right side panels are arranged alternately, the depth direction refers to the direction in which the front and rear panels are arranged alternately, and the height direction refers to the height direction of the first box 1 itself. The height direction, width direction, and depth direction are perpendicular to each other.
[0100] Understandably, in Figure 3In the example, the top plate has an upper surface 11, the front plate has a front outer surface 13, the rear plate has a rear outer surface 14, the left side plate has a first inner surface 15, and the right side plate has a second inner surface 16. When the bottom of the first box 1 is a frame, the frame has a lower surface 12; if the bottom of the first box 1 is provided with a bottom plate, the floor has a lower surface 12.
[0101] In some embodiments, the garment handling device 100 includes a door 2 connected to a first housing 1, and the door 2 is movable relative to the first housing 1 to close or open the opening 1a.
[0102] It is understandable that when the door 2 moves relative to the opening 1a, the door 2 can rotate relative to the opening 1a, or the door 2 can slide relative to the opening 1a, so that the door 2 can block or open the opening 1a.
[0103] In some embodiments, the garment handling device 100 includes a first cylinder 3 disposed within a first housing 1.
[0104] It is understandable that the first tub 3 is used to hold clothes and the clothes can be washed inside the first tub 3.
[0105] Please see Figure 3 Optionally, the first cylinder 3 includes a first outer cylinder 31 and a first inner cylinder 32. The first inner cylinder 32 is rotatably disposed inside the first outer cylinder 31, and a clothing processing cavity 32b is formed inside the first inner cylinder 32.
[0106] Please see also Figure 3 and Figure 4 In some embodiments, the garment handling device 100 further includes an interactive display module 4. The control components may include buttons, a screen, a circuit board, and wiring, etc. The buttons and screen may be located on the front outer surface 13 of the first housing 1 for user operation. The circuit board, wiring, etc., may be located inside the first housing 1.
[0107] For example, the user inputs a control signal for washing clothes by touching or clicking the button on the screen or button. After receiving the control signal, the circuit board controls the clothes handling device 100 to perform the clothes washing operation.
[0108] In some embodiments, the garment handling device 100 further includes a motor (not shown). The motor is disposed within the first housing 1 and has a power output shaft connected to the bottom of the first tubular body 3. The motor is used to drive the first tubular body 3 to rotate relative to the first housing 1.
[0109] In some embodiments, the first inner cylinder 32 has a dispensing port 32a at one end along its own axial direction, and the end opposite to the dispensing port 32a along the axial direction is the inner bottom surface 32c of the first inner cylinder 32.
[0110] It is understandable that when the opening 1a of the first cylinder 3 faces the depth direction, its own axis 3a can also extend along the depth direction.
[0111] Please see Figure 5 In some embodiments, the clothing processing device 100 further includes a water supply component 5, which is configured to allow external water to flow into the clothing processing chamber 32b of the first inner cylinder 32 to soak and wash the clothing in the clothing processing chamber 32b. The water supply component 5 may include a water inlet, a water supply pipe, a water supply valve, etc., which are not specifically limited herein.
[0112] In some embodiments, the garment handling device 100 further includes a drainage assembly 6, which is configured to drain water from the garment handling chamber 32b to the outside of the garment handling device 100. The drainage assembly 6 may include a drain outlet, a drain pipe, a drain valve, etc., which are not specifically limited herein.
[0113] In some embodiments, the garment handling device 100 further includes a shock-absorbing assembly 7 disposed between the first housing 1 and the first cylinder 3. The shock-absorbing assembly 7 includes multiple elastic elements and / or multiple dampers. The elastic elements buffer the vibrations caused by the operation of the first cylinder 3 through elastic deformation, and the dampers reduce the vibration of the garment handling device 100 by absorbing energy.
[0114] For example, the shock absorption component 7 may be disposed on the outside of the first cylinder 3 and connected to the first housing 1 to reduce the vibration generated by the first cylinder 3 during operation.
[0115] Optionally, the elastic element may be, but is not limited to, springs, sheet metal, etc., and this application does not make specific limitations.
[0116] Optionally, the number of elastic elements and dampers can be two, four, six, etc., and the embodiments of this application do not specifically limit them here.
[0117] Optionally, the first cylinder 3 has an axis 3a extending along its own axial direction.
[0118] It is understandable that the direction of the axis 3a of the first cylinder 3, i.e. the orientation of the opening 1a, is... Figure 6 In the example, the orientation of axis 3a is the depth direction of the first box 1.
[0119] Please see Figure 6 In some embodiments, the distance between the lower surface 12 and the upper surface 11 of the first housing 1 can be H1, and the distance from the axis 3a to the lower surface 12 of the first housing 1 can be H2. Figure 6In the example, the intersection of axis 3a and the rear outer surface 14 can be the first intersection point a, and H2 can be the distance from the first intersection point a to the lower surface 12 of the first housing 1. The diameter of the first cylinder 3 can be R. The relationships between H1, H2, and R can satisfy: 0.489 < H2 / H1 < 0.538, and 0.972 < R / H2 < 1.069.
[0120] In the garment handling apparatus 100 disclosed in this application, from the height direction of the first housing 1, the ratio of the distance H2 between the axis 3a of the first cylindrical body 3 and the lower surface 12 of the first housing 1 to the height H1 of the first housing 1 is within 0.489-0.538. This indicates that the first cylindrical body 3 is located slightly above or slightly below the center of the first housing 1, or that the height position of the axis 3a of the first cylindrical body 3 is approximately half the height of the first housing 1. Furthermore, since the ratio of the diameter R of the first cylindrical body 3 to the distance H2 between the first intersection point a and the lower surface 12 of the first housing 1 is approximately the same, the diameter of the first cylindrical body 3 also occupies half the height of the first housing 1. In other words, from the height direction of the first housing 1, the first cylindrical body 3 is not only located in the center of the first housing 1, but also occupies half the space of the first housing 1. That is, one-fifth to one-quarter of the space of the first box 1 is left above and below the first cylinder 3. In this way, more space is left above or below the first box 1 to facilitate the installation of other functional components.
[0121] For example, H2 / H1 can be 0.489-0.499, 0.499-0.509, 0.509-0.519, 0.519-0.529, 0.529-0.538, etc. For instance, H2 / H1 can be 0.490, 0.495, 0.499, 0.505, 0.509, 0.515, 0.519, 0.525, 0.529, 0.535, or 0.537, etc.
[0122] It is understandable that when the distance H2 between the first intersection point a and the lower surface 12 and the distance H1 between the lower surface 12 and the upper surface 11 are in a ratio, it can indicate the position of the first cylinder 3 in the first box 1 in the height direction.
[0123] When the ratio of H2 / H1 is small, i.e., H2 / H1 < 0.489, the first cylinder 3 is positioned lower in the height direction of the first housing 1. This may result in less space below the first cylinder 3 within the first housing 1. Since shock absorbers and other structures are installed below the first cylinder 3, less space below it may affect the installation and setup of these structures. Conversely, when the ratio of H2 / H1 is large, i.e., H2 / H1 > 0.538, the first cylinder 3 is positioned higher in the height direction of the first housing 1. This may result in less space above the first cylinder 3 within the first housing 1. Since interactive display module 4, drying module 8, etc., are installed above the first cylinder 3, less space below it may affect the installation and setup of shock absorbers and other structures.
[0124] For example, R / H2 can be 0.972-0.982, 0.982-0.992, 0.992-1.002, 1.002-1.012, 1.012-1.022, 1.022-1.032, 1.032-1.042, 1.042-1.052, 1.052-1.062, 1.062-1.069, etc. For example, R / H2 can be 0.973, 0.975, 0.982, 0.985, 0.992, 0.995, 1.002, 1.005, 1.012, 1.015, 1.022, 1.025, 1.032, 1.035, 1.042, 1.045, 1.052, 1.055, 1.062, or 1.068, etc.
[0125] When R / H2 is small, i.e., R / H2 < 0.972, it means that the diameter of the first cylinder 3 is relatively small compared to the height of the first box 1. Although this can make room for the space above or below the first box 1, the small diameter of the first cylinder 3 may affect its capacity, making it unsuitable for storing clothes. When R / H2 is large, i.e., R / H2 > 1.069, it means that the diameter of the first cylinder 3 is relatively large compared to the height of the first box 1. This means that the first cylinder 3 may occupy more space inside the first box 1, resulting in less space above or below it, which is unsuitable for installing functional components inside the first box 1.
[0126] In other words, when this application controls the position and size of the first tube 3 inside the first box 1, it can balance the relationship between the capacity of the first tube 3 and the space inside the first box 1, improve the situation of the first tube 3 occupying the space inside the first box 1, and at the same time enable the first tube 3 to have a reasonable space to accommodate clothes.
[0127] In some embodiments, H2 may satisfy: 230mm < H2 < 253mm.
[0128] For example, H2 can be 230mm-235mm, 235mm-240mm, 240mm-245mm, 245mm-253mm, etc. For instance, H2 can be 231mm, 233mm, 235mm, 238mm, 240mm, 243mm, 245mm, 248mm, 250mm, or 252mm, etc.
[0129] When H2 is large (H2 > 253 mm), the first cylinder 3 is located at a higher position within the first housing 1, which may result in less space above the first cylinder 3 within the first housing 1. The interactive display module 4, drying module 8, etc., are installed above the first cylinder 3. Insufficient space below the first cylinder 3 may affect the installation and setup of structures such as shock absorbers. When H2 is small (H2 < 230 mm), the first cylinder 3 is positioned lower in the height direction of the first housing 1, which may also result in less space below the first cylinder 3 within the first housing 1. Shock absorbers, etc., are installed below the first cylinder 3, and insufficient space below the first cylinder 3 may affect the installation and setup of these structures.
[0130] Optionally, H1 satisfies the following condition: 455mm < H1 < 485mm.
[0131] For example, H1 can be 455mm-460mm, 460mm-465mm, 465mm-470mm, 470mm-475mm, 475mm-480mm, 480mm-485mm, etc. For instance, H1 can be 456mm, 458mm, 460mm, 463mm, 465mm, 468mm, 470mm, 473mm, 475mm, 478mm, 480mm, 483mm, or 484mm, etc.
[0132] When H1 is large, i.e., H1 > 485 mm, it indicates that the height of the first box 1 is too large. For example, when the first box 1 is placed on a platform or other flat surface, it may occupy a lot of indoor space. When H1 is small, i.e., H1 < 455 mm, it indicates that the height of the first box 1 is too small, and the space inside the first box 1 in the height direction is less, which is not conducive to setting up structures above or below the first cylinder 3.
[0133] It is understandable that if no feet are provided on the lower surface 12, H1 can be the height dimension of the first box 1. If feet are provided on the lower surface 12, the total height dimension of the first box 1 can be H1 plus the height of the feet.
[0134] Optionally, the diameter R of the first cylinder 3 satisfies: 240mm < R < 250mm.
[0135] For example, R can be 240mm-243mm, 243mm-245mm, 245mm-247mm, 247mm-250mm, etc. For instance, R can be 241mm, 241mm, 242mm, 234mm, 245mm, 246mm, 247mm, 248mm, 249mm, or 249mm, etc.
[0136] When R is large, i.e., R > 250 mm, the diameter of the first cylinder 3 is large, which may occupy more space in the height direction of the first box 1, making it unsuitable for setting up structures such as circuit boards and pipes above or below the first cylinder 3. When R is small, i.e., R < 240 mm, the capacity of the first cylinder 3 is reduced, making it unsuitable for storing clothes for washing.
[0137] In one example, when the axis 3a of the first cylindrical body 3 is positioned at a height of 230mm-253mm within the first housing 1, the distance H1 from the lower surface 12 to the upper surface 11 of the first housing 1 (i.e., the height of the first housing 1 is 455mm-485mm), and the diameter R of the first cylindrical body 3 is 240mm-250mm, the first cylindrical body 3 is located slightly above or below the center of the first housing 1. There is approximately 100mm-120mm of space above or below the first housing 1 to facilitate the installation of larger functional components or to allow for convenient installation of functional components.
[0138] In some embodiments, the axis 3a is inclined relative to the lower surface 12 of the first housing 1, and the distance from the end of the axis 3a pointing to the rear outer surface 14 to the lower surface 12 of the first housing 1 along the depth direction of the first housing 1 is less than the distance from the end of the axis 3a pointing to the front outer surface 13 to the lower surface 12 of the first housing 1.
[0139] In other words, the axis 3a of the first cylinder 3 is tilted relative to the depth direction, and from the height direction, the delivery port 32a of the first cylinder 3 faces upward, that is, the first cylinder 3 is relatively tilted as a whole.
[0140] It is understandable that the axial direction of the first cylinder 3 is inclined relative to the depth direction, that is, the first cylinder 3 is inclined relative to the first direction. From Figure 6 In the example, viewed from the height of the first housing 1, the end of the first cylinder 3 with the inlet 32a is higher than the bottom of the first cylinder 3. When the user puts clothes into the first cylinder 3, the tilted first cylinder 3 can better hold the clothes and water, thereby improving the overflow prevention effect of the clothes handling device 100.
[0141] Optionally, the axis 3a of the first cylinder 3 has an angle α with the depth direction of the first box 1, where 2° < α < 6°.
[0142] On the one hand, when the first tube 3 is tilted, the tilt angle should not be too small. First, if the tilt angle of the first tube 3 is insufficient, it may be difficult to hold the water, causing water to overflow from the first tube 3. Second, if the tilt angle of the first tube 3 is insufficient and the capacity of the first tube 3 is small, it will not be conducive to holding the clothes inside the first tube 3. Therefore, avoiding an excessively small tilt angle of the first tube 3 is beneficial to improving the overflow situation and preventing clothes from leaking out of the first tube 3.
[0143] On the other hand, when the first cylinder 3 is set to be inclined, it is necessary to avoid an excessively large angle of inclination. First, if the angle of inclination of the first cylinder 3 is too large, Figure 6 or Figure 7 In the example, from a height perspective, the space above the end of the first cylinder 3 near the dispensing port 32a and the space below the bottom are relatively small, which is not conducive to the rational arrangement of other functional components within the first housing 1. Secondly, when the tilt angle of the first cylinder 3 increases, the relative depth of the first cylinder 3 increases, making it inconvenient for users to reach into the first cylinder 3 to retrieve clothing. Therefore, avoiding an excessively large tilt angle of the first cylinder 3 is beneficial to improving the space utilization rate within the first housing 1 and making it easier for users to retrieve clothing from the first cylinder 3.
[0144] For example, the included angle α can be 2°-2.5°, 2.5°-3°, 3°-3.5°, 3.5°-4°, 4°-4.5°, 4.5°-5°, 5°-5.5°, 5.5°-6°, etc. For instance, the included angle α can be 2.3°, 2.5°, 2.8°, 3°, 3.3°, 3.5°, 3.8°, 4°, 4.3°, 4.5°, 4.8°, 5°, 5.3°, 5.5°, or 5.8°, etc. When the included angle α is less than 2°, the tilt angle of the first cylinder 3 may be insufficient, making it difficult to hold water and causing water to overflow from the first cylinder 3. Moreover, it may also be detrimental to the first cylinder 3 in holding clothing. When the included angle is greater than 6°, from the perspective of height, the space above the end of the first cylinder 3 near the delivery port 32a and the space below the bottom end are relatively small, which is not conducive to the rational arrangement of other functional components using the space inside the first box 1. Moreover, when the tilt angle of the first cylinder 3 increases, the relative depth of the first cylinder 3 increases, making it inconvenient for users to reach into the first cylinder 3 to retrieve clothing.
[0145] In this application, the tilt angle of the first cylinder 3 is controlled within 2°-6°. On the one hand, avoiding an excessively small tilt angle of the first cylinder 3 helps to improve the overflow situation and prevent clothes from leaking out of the first cylinder 3. On the other hand, avoiding an excessively large tilt angle of the first cylinder 3 helps to improve the space utilization rate inside the first box 1 and makes it easier for users to take clothes out of the first cylinder 3.
[0146] Please see Figure 7As can be seen from the above, the interactive display module 4 can be set above the first cylinder 3 along the height direction and the interactive display module 4 is set near the front outer surface 13.
[0147] For example, the interactive display module 4 may include structures such as buttons, a screen, a circuit board, and wiring. The buttons and screen may be located on the front outer surface 13 and above the first cylindrical body 3, while the circuit board and wiring may be located inside the first housing 1 and above the first cylindrical body 3. The circuit board and wiring are connected to the buttons and screen located on the front outer surface 13.
[0148] On the one hand, considering the inclination of the first cylinder 3, the space above the first cylinder 3 near the front outer surface 13 inside the first housing 1 is limited. Therefore, smaller structures such as the interactive display module 4 are placed inside the first housing 1 near the front outer surface 13, effectively utilizing the limited space above the first cylinder 3 near the front outer surface 13. On the other hand, the interactive display module 4 is positioned above the front outer surface 13. When the clothing handling device 100 is placed on a table or desk, the interactive display module 4 can be easily reached by the user, facilitating user operation.
[0149] It is understandable that a small counterweight can be installed above the front outer surface 13 of the first cylinder 3 to counterweight the first cylinder 3. For example, if there is little space above the front outer surface 13 of the first cylinder 3, only about 10cm-15cm in height, the height of the small counterweight can be less than 10cm.
[0150] Optionally, the drying module 8 is located above the first cylinder 3 along the height direction of the first housing 1 and is positioned near the outer surface 14.
[0151] For example, a drying module 8 can be installed inside the first housing 1 to dry the clothes located inside the first drum 3. Since the drying module 8 is relatively large, it can be positioned above the first drum 3 near the rear outer surface 14 to utilize the space above the rear outer surface 14. It is understood that the first drum 3 is inclined, resulting in ample space above the rear outer surface 14. Therefore, placing a larger structure like the drying module 8 above the rear outer surface 14 of the first drum 3 facilitates efficient use of the space within the first housing 1.
[0152] Optionally, the drying module 8 may be a condenser drying module 8, a heat pump drying module 8, or a direct-vent drying module 8, and this application does not make any specific limitation.
[0153] Optionally, larger counterweights, water supply components 5, drainage components 6, etc., can also be placed above the outer surface 14 of the first cylinder 3 near the rear end, so as to make full use of the larger space above the outer surface 14 of the first cylinder 3 near the rear end.
[0154] For example, the height of the first cylinder 3 above the outer surface 14 adjacent to the rear can be 15cm-20cm, and a larger counterweight, water supply component 5, and other structures can also be provided. The height dimension can be in the range of 15cm-20cm so that these functional components can be arranged above the outer surface 14 adjacent to the rear of the first cylinder 3.
[0155] In some embodiments, the interactive display module 4 is located above the first cylinder 3 along the height direction, and the interactive display module 4 can be spaced apart from the upper surface 11 of the first cylinder 3 and the first housing 1, respectively.
[0156] For example, please see also Figure 4 and Figure 7 The interactive display module 4 may include buttons, a screen, a circuit board, and wiring. The buttons, screen, and other structures that require direct user contact may be located on the front outer surface 13, and may be positioned between the first cylindrical body 3 and the upper surface 11. For example, the screen and buttons may be positioned centrally between the first cylindrical body 3 and the upper surface 11. The circuit board and wiring may be located inside the first housing 1, between the first cylindrical body 3 and the upper surface 11, and spaced apart from both the first cylindrical body 3 and the upper surface 11. In this way, when the first cylindrical body 3 vibrates within the first housing 1, the spacing between the first cylindrical body 3 and the circuit board / wiring prevents motion interference between the interactive display module 4 and the first cylindrical body 3.
[0157] When the interactive display module 4 is positioned between the first cylindrical body 3 and the upper surface 11, from an aesthetic perspective, the interactive display module 4 can be located in a central position between the first cylindrical body 3 and the upper surface 11, resulting in a better appearance for the front outer surface 13. Furthermore, the interactive display module 4 is spaced apart from the first cylindrical body 3 inside the first housing 1 to avoid motion interference between the first cylindrical body 3 and the interactive display module 4.
[0158] Please see Figure 8 In some embodiments, the first cylinder 3 may be configured as one or more (e.g., two or more). Taking two as an example, when there are two first cylinders 3, the two first cylinders 3 are spaced apart in the width direction within the first box 1, and the delivery ports 32a of the two first cylinders 3 both face the depth direction.
[0159] It is understandable that when there are two first cylinders 3, there can also be two openings 1a on the first box 1.
[0160] The garment processing device 100 can have two first drums 3 inside its first housing 1. This allows the user to perform zoned washing of different types of clothing. For example, one first drum 3 can be used to wash large items such as outerwear and blankets, while the other first drum 3 can be used to wash smaller items such as underwear or socks. Alternatively, the two first drums 3 can increase the number of garments that can be washed at one time.
[0161] On the other hand, when the two first cylinders 3 are arranged inside the first housing 1, they are spaced apart in the width direction. Considering that the two first cylinders 3 may vibrate in the width direction during operation, this application sets a gap between the two first cylinders 3 in the width direction. First, it avoids the problem of motion interference between the two first cylinders 3 during operation due to the gap between them being too small.
[0162] Please see Figure 8 Optionally, the dimension of the first box 1 along its own width direction is W, which satisfies: 0.4 < R / W < 0.45.
[0163] For example, R / W can be 0.40-0.41, 0.41-0.42, 0.42-0.43, 0.43-0.44, 0.44-0.45, etc. For instance, R / W can be 0.405, 0.41, 0.415, 0.42, 0.425, 0.43, 0.435, 0.44, or 0.445, etc.
[0164] Since the dimensions of the first housing 1 in the width direction typically conform to international standards or other standards, meaning the dimensions of the first housing 1 in the width direction are usually fixed, the space within this miniaturized twin-tube garment processing device is relatively limited. Therefore, this application sets the ratio of the diameter of the first tube 3 to the width dimension of the first housing 1 to satisfy: 0.4 < R / W < 0.45. When two first tubes 3 are arranged in the width direction, the ratio can be: 0.8 < 2R / W < 0.90. On the one hand, the two first tubes 3 can occupy a larger proportion of the space in the width direction of the first housing 1, allowing for more space within the first tube to accommodate garments in this miniaturized twin-tube garment processing device, thus meeting certain garment processing needs. On the other hand, the first housing 1 has 10%-20% space remaining in its width direction. When two first cylinders 3 are installed in the first housing 1, sufficient space is left to control the distance between the two first cylinders 3 in the width direction or to control the distance between the first cylinder 3 and the inner surface of the first housing 1 in the width direction, so as to prevent motion interference to the first cylinder 3 during operation and facilitate the effective operation of the first cylinder 3 in the first housing 1.
[0165] Since the width dimension of the first housing 1 is usually fixed, if R / W is less than 0.4, it means that the diameter of the first tubular body 3 is relatively small, which may affect the effective volume of the first tubular body 3 for storing clothes and is not conducive to the processing of clothes. On the other hand, when R / W is greater than 0.45, it means that the diameter of the first tubular body 3 is relatively large, occupying more space in the width dimension of the first housing 1. Given that the width dimension of the first housing 1 is fixed, an excessively large first tubular body 3 may cause the first housing 3 to collide or impact with the first housing 1 in its width direction when processing clothes.
[0166] Please see Figure 8 Optionally, in the width direction of the first housing 1, the distance between the axis 3a of one first cylinder 3 and the axis 3a of the other first cylinder 3 is D and the dimension W of the first housing 1 along its own width direction, where 0.45 < D / W < 0.52. Figure 8 In the example shown, the intersection points of the axes 3a of the two first cylinders 3 and the inner bottom surfaces 32c of the two first inner cylinders 32 are the second intersection point b and the third intersection point c, respectively, and the spacing D can be the spacing between the second intersection point b and the third intersection point c in the width direction.
[0167] For example, D / W can be 0.45-0.47, 0.47-0.49, 0.49-0.52, etc. For instance, D / W can be 0.46, 0.47, 0.48, 0.49, 0.50, or 0.51, etc.
[0168] When two first cylinders 3 are arranged inside the first housing 1, they are spaced apart in the width direction. Considering that the two first cylinders 3 may vibrate in the width direction during operation, this application controls the ratio of the distance between the two first cylinders 3 in the width direction to the width dimension of the first housing 1. First, it avoids the problem of motion interference between the two first cylinders 3 during operation due to the distance between them being too small compared to the width dimension of the first housing 1. Second, it avoids the distance between the two first cylinders 3 being too large compared to the width dimension of the first housing 1, which would result in excessive occupation of the internal space of the first housing 1 in the width direction.
[0169] On the one hand, since the dimensions of the first housing 1 in the width direction are usually determined according to international standards or other standards, if D / W < 0.45, it means that the distance between the two first cylinders 3 is relatively close, which may cause motion interference between the two first cylinders 3 in the width direction. On the other hand, if D / W > 0.52, it means that the distance between the two first cylinders 3 is relatively far, which may cause the distance between the first cylinder 3 and the inner surface of the first housing 1 to be small, resulting in motion interference between the first housing 1 and the first cylinder 3.
[0170] Please see Figure 8 Optionally, in the width direction, the distance between the axes 3a of the two first cylinders 3 is D, satisfying 275mm < D < 307mm. For example... Figure 8 In the example shown, the intersection points of the axes 3a of the two first cylinders 3 and the inner bottom surfaces 32c of the two first inner cylinders 32 are the second intersection point b and the third intersection point c, respectively, and the spacing D can be the spacing between the second intersection point b and the third intersection point c in the width direction.
[0171] For example, the spacing D can be 275mm-280mm, 280mm-285mm, 285mm-290mm, 290mm-295mm, 295mm-300mm, 300mm-307mm, etc. For instance, the spacing D can be 276mm, 278mm, 280mm, 283mm, 285mm, 288mm, 290mm, 293mm, 295mm, 298mm, 300mm, 303mm, 305mm, or 306mm, etc.
[0172] It is understandable that the distance between the two first cylinders 3 can be controlled by controlling the distance between the second intersection point b and the third intersection point c.
[0173] It should be noted that, in the appendix Figure 6 and appendix Figure 8 The parts marked with "×" are the first intersection point a, the second intersection point b, and the third intersection point c.
[0174] When the distance D is less than 275mm, the two first cylinders 3 may interfere with each other when moving in the width direction due to their close proximity, affecting the safe operation of the garment handling device 100. When the distance D is greater than 307mm, the distance between the two first cylinders 3 is too wide, which increases the space required by the first box 1 to accommodate the two first cylinders 3, thereby increasing the overall volume of the first box 1 and hindering the miniaturization design of the first box 1.
[0175] Therefore, this application controls the distance between the two first cylinders 3 within the first housing 1. On the one hand, it can avoid the problem of interference caused by the distance between the two first cylinders 3 being too close. On the other hand, it can avoid the problem of the distance between the two cylinders being too large, which would increase the volume of the first housing 1, so that the first housing 1 can be miniaturized.
[0176] Optionally, along the width direction, one first cylinder 3 has a distance d1 between it and the first inner surface 15, and the other first cylinder 3 has a distance d2 between it and the second inner surface 16, which respectively satisfy the following relationship with the dimension W of the first box 1 along its own width direction:
[0177] 0.025 < d1 / W < 0.034, and 0.025 < d2 / W < 0.034.
[0178] In one example, d1 / W can be 0.025-0.027, 0.027-0.029, 0.029-0.031, 0.031-0.034, etc. For example, d1 / W can be 0.026, 0.027, 0.028, 0.029, 0.030, 0.031, 0.032, or 0.033, etc.
[0179] In another example, d2 / W can be 0.025-0.027, 0.027-0.029, 0.029-0.031, 0.031-0.034, etc. For example, d1 / W can be 0.026, 0.027, 0.028, 0.029, 0.030, 0.031, 0.032, or 0.033, etc.
[0180] Considering that the first cylinder 3 vibrates during operation, it may collide with the side of the first housing 1 in the width direction. Therefore, the inner surfaces of the first cylinder 3 and the first housing 1 are spaced apart to prevent interference between the movement of the first cylinder 3 and the inner surface of the first housing 1. Furthermore, considering that controlling the distance between the first cylinder 3 and the inner surface of the first housing 1 in the width direction might affect the internal storage space of the first housing 1, the ratio of the distance between the first cylinder 3 and the first housing 1 in the width direction to the width dimension of the first housing 1 is controlled between 0.025 and 0.034. This approach prevents interference between the first cylinder 3 and the inner surface of the first housing 1 while also avoiding an increase in the width dimension of the first housing 1, thus preventing an increase in the overall size of the first housing 1.
[0181] If the distance between the first cylinder 3 and the inner surface of the first housing 1 is small (d1 / W < 0.025 and d2 / W < 0.025), the first cylinder 3 may collide with the first inner surface 15 and the second inner surface 16 of the first housing 1, affecting the safe operation of the first cylinder 3. If the distance between the first cylinder 3 and the first inner surface 15 and the second inner surface 16 is large (d1 / W > 0.034 and d2 / W > 0.034), the size of the first housing 1 in the width direction may increase, which is not conducive to the miniaturization design of the first housing 1.
[0182] Please see Figure 9 Optionally, along the width direction, one first cylinder 3 has a distance d1 between it and the first inner surface 15, and the other first cylinder 3 has a distance d2 between it and the second inner surface 16, wherein 15mm < d1 < 20mm, and 15mm < d2 < 20mm.
[0183] For example, d1 and d2 can both be 15mm-15.5mm, 15.5mm-16mm, 16mm-16.5mm, 16.5mm-17mm, 17mm-17.5mm, 17.5mm-18mm, 18mm-18.5mm, 18.5mm-19mm, 19mm-19.5mm, 19.5mm-20mm, etc. For example, d1 and d2 can both be 15.1mm, 15.3mm, 15.5mm, 15.8mm, 16mm, 16.3mm, 16.5mm, 16.8mm, 17mm, 17.3mm, 17.5mm, 17.8mm, 18mm, 18.3mm, 18.5mm, 18.8mm, 19mm, 19.3mm, 19.5mm, 19.8mm, or 19.9mm, etc.
[0184] If the distance between the first cylinder 3 and the wall of the first housing 1 is small (d1 < 15mm and d2 < 15mm), the first cylinder 3 may collide with the first inner surface 15 and the second inner surface 16 of the first housing 1, affecting the safe operation of the first cylinder 3. If the distance between the first cylinder 3 and the first inner surface 15 and the second inner surface 16 is large (d1 > 20mm and d2 > 20mm), the size of the first housing 1 in the width direction may increase, which is not conducive to the miniaturization design of the first housing 1.
[0185] In other words, this application not only considers the vibration of the first cylinder 3 during operation, which may cause the first cylinder 3 to collide with the wall of the first housing 1 in the width direction, but also considers that controlling the distance between the first cylinder 3 and the first inner surface 15 and the second inner surface 16 of the first housing 1 in the second direction may affect the overall size of the first housing 1. Therefore, this application controls the distance between the first cylinder 3 and the first housing 1 in the width direction to 15mm-20mm to prevent interference between the movement of the first cylinder 3 and the first inner surface 15 and the second inner surface 16 of the first housing 1, while avoiding an increase in the width dimension of the first housing 1, thereby preventing an increase in the overall size of the first housing 1.
[0186] This application also discloses a combined garment processing device 200, including a first garment processing device 201 and a second garment processing device 100. The second garment processing device 100 may be the garment processing device 100 disclosed above. The second garment processing device 100 is detachably mounted on top of the first garment processing device 201.
[0187] It is understandable that the width dimensions of the first garment processing device 201 and the second garment processing device 100 can be approximately the same.
[0188] When the second garment processing device 100 of this application is mounted on the first garment processing device 201, the second garment processing device 100 can be detached from the top of the first garment processing device 201, or the second garment processing device 100 can be mounted on the first garment processing device 201. The first garment processing device 201 can also be a single-tub or twin-tub drum-type washing machine, dryer, or washer-dryer combo. That is, users can choose to use the miniaturized twin-tub garment processing device 100 of the second garment processing device 100, or combine it with a more functional three-tub or multi-tub garment processing device to meet different usage needs.
[0189] Please see Figure 10 In some embodiments, the first garment handling device 201 includes a second housing 9 and a second cylindrical body 9a. The first housing 9 is disposed on the top of the second housing 9 along the height direction, and the second cylindrical body 9a is disposed inside the second housing 9.
[0190] It is understood that when the first box 1 disclosed in this application has two first cylinders 3, it can be placed on the second box 9 and combined with the second cylinder 9a of the second box 9 to form a three-cylinder clothing processing device or a multi-cylinder clothing processing device.
[0191] For example, when the first housing 1 contains two first tubular bodies 3, the first housing 1 and the second housing 9 together form a three-tubular combined garment processing device 200. When the first housing 1 and the second housing 9 together form a three-tubular combined garment processing device 200, the user can use the first housing 1 or the second housing 9 for washing as needed. For example, when washing a small amount of clothes or underwear, the first housing 1 can be used for washing. When washing a large amount of clothes, the second housing 9 can be used for washing. When washing underwear and large items such as coats and duvet covers at the same time, the underwear and large items can be separated and washed separately using the first housing 1 and the second housing 9.
[0192] Please see Figure 10 In some embodiments, the height of the second housing 9 along the height direction of the first housing 1 is H3, and the distance H1 between the lower surface 12 and the top surface of the first housing 1 satisfies: 0.476 < H1 / H3 < 0.574.
[0193] For example, H1 / H3 can be 0.476-0.486, 0.486-0.496, 0.496-0.506, 0.506-0.516, 0.516-0.526, 0.526-0.536, 0.536-0.546, 0.546-0.556, 0.556-0.566, 566-574, etc. For example, H1 / H2 can be 0.477, 0.480, 0.486, 0.490, 0.496, 0.500, 0.506, 0.510, 0.516, 0.520, 0.526, 0.530, 0.536, 0.540, 0.546, 0.550, 0.556, 0.560, 0.566, 0.570, or 0.573, etc.
[0194] Understandably, in Figure 10 In the example, H1 can be the dimension of the first box 1 in the height direction.
[0195] When the first compartment 1 is placed on top of the second compartment 9, the size of the first compartment 1 is too small relative to the size of the second compartment 9 in the height direction, i.e., H1 / H3 < 0.476. The first compartment 1 is positioned too low in the height direction, which may make it inconvenient for users to retrieve clothes from the first drum 3 located inside the first compartment 1. If the size of the first compartment 1 is too large relative to the size of the second compartment 9, i.e., H1 / H3 > 0.574, the first compartment 1 will occupy a significant amount of space above the second compartment 9, which is detrimental to the indoor installation of the combined clothing handling equipment 200. Therefore, this application controls the ratio of the size of the first compartment 1 to the size of the second compartment 9 to within 0.476-0.574. When the first compartment 1 is placed on top of the second compartment 9, it facilitates users in retrieving clothes from the first compartment 1 while also reducing the space occupied indoors.
[0196] In some embodiments, the second housing 9 has a height H3, wherein 845mm < H3 < 955mm.
[0197] For example, the height H3 of the second housing 9 can be 845mm-855mm, 855mm-865mm, 865mm-875mm, 975mm-885mm, 885mm-895mm, 895mm-905mm, 905mm-915mm, 915mm-925mm, 925mm-935mm, 935mm-945mm, 945mm-955mm, etc. For example, the height H3 of the second housing 9 can be 844mm, 850mm, 855mm, 860mm, 865mm, 870mm, 875mm, 880mm, 885mm, 890mm, 895mm, 900mm, 905mm, 910mm, 915mm, 920mm, 925mm, 930mm, 935mm, 940mm, 945mm, 950mm, or 954mm, etc.
[0198] Understandably, H1 is between 455mm and 485mm. When the first box 1 is placed on the second box 9, the combined garment processing equipment 200, consisting of the first box 1 and the second box 9, can have an overall height of approximately 1.3 meters to 1.5 meters. When the height H3 of the second box 9 is less than 845mm, the second drum 9a may be positioned too low, making it difficult to retrieve garments from it, and the position of the first box 1 will also be affected by the lower height of the second box 9. When the height H3 of the second box 9 is greater than 955mm, the combined garment processing equipment 200, consisting of the second box 9 and the first box 1, has a relatively high overall height, occupying additional indoor space.
[0199] In this application, when the height H3 of the second box 9 is controlled between 845mm and 955mm, the position of the loading port 32a of the first cylinder 3 of the first box 1 may be around 1.1m, which facilitates the loading and unloading of clothes from the first cylinder 3. Moreover, the first box 1 is relatively smaller in height than the second box 9, so that when the first box 1 is placed on the second box 9, the first box 1 occupies less space above the second box 9. When the first box 1 and the second box 9 are installed together to form a combined clothing processing device 200, the indoor space occupied is also less.
[0200] In some embodiments, the combined garment processing device 200 of this application further includes a support (not shown), which is disposed on the top of the second box 9 along the height direction of the first box 1, the first box 1 is disposed on the support, and the support is configured to be detachably connected to the first box 1.
[0201] Considering that if the first box 1 is directly mounted on the second box 9, there is a possibility that the first box 1 may fall off the second box 9, this application utilizes a bracket to mount the first box 1 onto the second box 9. For example, the bracket is mounted on the second box 9, and when the first box 1 needs to be fixed to the second box 9, the bracket can be secured to the second box 9 using clips, screws, or pins. Alternatively, when the first box 1 needs to be removed from the bracket, the clips can be removed, the screws loosened, or the pins pulled out to separate the bracket from the first box 1. When the first box 1 does not need to be removed from the second box 9, it can be fixed to the second box 9 using the bracket to prevent it from falling. Alternatively, when the modular garment processing equipment 200 needs to be moved, the first box 1 can be removed from the second box 9 for easy handling and transportation.
[0202] The above provides a detailed description of the garment processing apparatus and combined garment processing equipment disclosed in the embodiments of this application. Specific examples have been used to illustrate the principles and implementation methods of this application. The descriptions of the above embodiments are only for the purpose of helping to understand the garment processing apparatus and combined garment processing equipment of this application and their core ideas. At the same time, for those skilled in the art, there will be changes in the specific implementation methods and application scope based on the ideas of this application. Therefore, the content of this specification should not be construed as a limitation of this application.
Claims
1. A garment processing device, characterized in that, include: First box; Two first cylinders; The first housing has: Lower surface; The upper surface and the lower surface are arranged opposite each other along the height direction of the first box body; The front outer surface is connected to the upper surface and the lower surface. The front outer surface has two openings, which are spaced apart along the width direction of the first housing. A rear outer surface, wherein the rear outer surface and the front outer surface are disposed opposite to each other along the depth direction of the first housing, and the rear outer surface is connected to the upper surface and the lower surface; and, Two first cylinders are disposed inside the first box, and the first cylinders are spaced apart along the width direction of the first box. Each of the two first cylinders has a dispensing port, and the dispensing port is connected to the corresponding opening. Wherein, the diameter of the first cylinder is R, and the dimension of the first box along its own width direction is W, satisfying: 0.4 < R / W < 0.
45.
2. A garment processing device, characterized in that, include: First box; Two first cylinders; The first housing has: Lower surface; The upper surface and the lower surface are arranged opposite each other along the height direction of the first box, and the distance between the upper surface and the lower surface along the height direction of the first box is H1; The front outer surface is connected to the upper surface and the lower surface. The front outer surface has two openings, which are spaced apart along the width direction of the first housing. A rear outer surface, wherein the rear outer surface and the front outer surface are disposed opposite to each other along the depth direction of the first housing, and the rear outer surface is connected to the upper surface and the lower surface; and, Two first cylinders are disposed inside the first box, and the first cylinders are spaced apart along the width direction of the first box. Each of the two first cylinders has a dispensing port, and the dispensing port is connected to the corresponding opening. Wherein, the diameter of the first cylinder is R, and the distance between the axis of the first cylinder and the lower surface of the first box along the height direction is H2, satisfying the following relationships: 0.489 < H2 / H1 < 0.538, and 0.972 < R / H2 < 1.
069.
3. The garment processing apparatus according to claim 1 or 2, characterized in that, The distance H2 between the axis of the first cylinder and the lower surface of the first box body satisfies: 230mm < H2 < 253mm; and, The distance H1 between the upper surface and the lower surface along the height direction of the first housing satisfies: 455mm < H1 < 485mm, and / or, The condition R satisfies: 240mm < R < 250mm.
4. The garment processing apparatus according to claim 1 or 2, characterized in that, The axis of the first cylinder is inclined relative to the lower surface of the first box. Along the depth direction of the first box, the distance from the end of the axis of the first cylinder pointing to the rear outer surface to the lower surface of the first box is less than the distance from the end of the axis pointing to the front outer surface to the lower surface of the first box.
5. The garment processing apparatus according to claim 4, characterized in that, The axis of the first cylinder and the depth direction of the first box form an angle α, where 2° < α < 6°.
6. The garment processing apparatus according to claim 4, characterized in that, The garment processing device also includes: An interactive display module is disposed within the first housing, positioned above the first cylinder along the height direction and adjacent to the front outer surface; and / or, A drying module is disposed inside the first chamber, and the drying module is located above the first cylinder along the height direction and is disposed near the rear outer surface.
7. The garment processing apparatus according to claim 1 or 2, characterized in that, Along the width direction of the first box body, the distance between the axis of one of the first cylinder bodies and the axis of the other first cylinder body is D, which satisfies the relationship with the dimension W of the first box body along its own width direction: 0.45 < D / W < 0.
52.
8. The garment processing apparatus according to claim 7, characterized in that, The condition D satisfies: 275mm < D < 307mm.
9. The garment processing apparatus according to claim 1 or 2, characterized in that, The first housing has: The first inner surface is connected to the front outer surface and the rear outer surface along the depth direction of the first box body, and is connected to the upper surface and the lower surface along the height direction of the first box body. The second inner surface is disposed opposite to the first inner surface in the width direction of the first box body. The second inner surface is connected to the front outer surface and the rear outer surface along the depth direction of the first box body, and is connected to the upper surface and the lower surface along the height direction of the first box body. One of the first cylinders is disposed near the first inner surface, and the other first cylinder is disposed near the second inner surface; Along the width direction of the first box body, the distance from one of the first cylinders to the first inner surface is d1, and the distance from the other first cylinder to the first inner surface is d2. These distances, along with the dimension W of the first box body along its own width direction, satisfy the following relationship: 0.025 < d1 / W < 0.034, and 0.025 < d2 / W < 0.
034.
10. The garment processing apparatus according to claim 9, characterized in that, The terms d1 and d2 satisfy the following conditions: 15mm < d1 < 20mm and 15mm < d2 < 20mm.
11. A combined garment processing device, characterized in that, include: First garment processing device; The second garment processing device is the garment processing device as described in any one of claims 1-10, and the second garment processing device is detachably disposed on the top of the first garment processing device.
12. The combined garment processing equipment according to claim 11, characterized in that, The first garment processing device includes: The second housing is provided on top of the first housing along the height direction; The second cylinder is disposed inside the second box; The height of the second box along the height direction of the first box is H3, and the distance H1 from the lower surface to the upper surface of the first box satisfies the following relationship: 0.476 < H1 / H3 < 0.
574.
13. The combined garment processing equipment according to claim 12, characterized in that, The H1 satisfies: 455mm < H1 < 485mm; and, The H3 satisfies: 845mm < H3 < 955mm.