Laundry treating apparatus
Patent Information
- Application Number
- CN202521921729.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-05
- Publication Date
- 2026-10-09
- Estimated Expiration
- 2035-09-05
AI Technical Summary
[0002]在现有衣物处理设备技术领域中,料盒总成的连接方式和位置设置往往会与设备的内部器件产生干扰或干涉,影响设备的正常运行和维护,导致设备的稳定性和可靠性降低
通过设置第一连接组件避让内部器件,料盒总成在安装和使用过程中不会与设备内部的其他器件产生物理上的干扰或干涉,为料盒总成与内部器件提供了足够的空间,保证了各内部部件的独立、稳定地运行。
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Figure CN224833231U_ABST
Abstract
Description
Technical Field
[0001] This disclosure relates to the field of clothing processing equipment technology, and more specifically, to a clothing processing device. Background Technology
[0002] In the field of existing garment processing equipment technology, the connection method and location of the material box assembly often interfere with or disrupt the internal components of the equipment, affecting its normal operation and maintenance, and leading to reduced stability and reliability. Therefore, a new structural design for garment processing equipment is urgently needed to solve the above problems. Utility Model Content
[0003] To overcome the problems existing in the related technologies, this disclosure provides a garment processing device.
[0004] According to an embodiment of this disclosure, a garment processing device is provided, including an outer frame, a first cylinder, a second cylinder, a material box assembly, a first connecting component, and internal components. The first cylinder and the second cylinder are both disposed inside the outer frame. The inner diameter of the first cylinder is smaller than the inner diameter of the second cylinder, and the first cylinder is disposed above the second cylinder. The material box assembly is connected to the outer frame via the first connecting component and is located between the first cylinder and the second cylinder, with the first connecting component avoiding the internal components.
[0005] In some possible implementations, the outer frame includes a front vertical beam, a rear vertical beam, and a side crossbeam connecting the front and rear vertical beams, and the side of the hopper assembly is detachably connected to the side crossbeam via the first connecting assembly.
[0006] The outer frame adopts a structural design with front vertical beams, rear vertical beams, and side crossbeams. The side crossbeams connect the front and rear vertical beams, forming a stable frame structure. The material box assembly is connected to the side crossbeams through the side, which can effectively transfer the weight of the material box assembly and the force generated during operation to the entire outer frame structure, ensuring the stability of the material box assembly during operation and reducing damage to the material box assembly and equipment caused by vibration, shaking and other factors.
[0007] In some possible implementations, the first connecting component includes a plurality of connectors, the hopper assembly is detachably connected to the outer frame via a plurality of spaced-apart connectors, and the internal components are connected between two adjacent connectors.
[0008] The material box body is detachably connected to the outer frame through multiple spaced connectors. The multiple spaced connectors can share the weight of the material box assembly, thereby improving the stability of fixing the material box assembly.
[0009] In some possible implementations, one end of each connector is connected to the hopper assembly, and multiple slots are formed on the side beam, with the other end of each connector engaging in the corresponding slot.
[0010] The connector can be attached to the slots in the side crossbeam via a snap-fit mechanism. During assembly, the operator simply aligns the clip with the slot and snaps it in to connect the material box assembly to the side crossbeam. This eliminates the need for complex tools and tedious operations, significantly reducing installation time and improving efficiency. Furthermore, when maintenance, replacement, or cleaning of the material box assembly is required, simply removing the clip from the slot allows for easy removal of the material box assembly from the side crossbeam.
[0011] In some possible implementations, the first connecting assembly further includes a plurality of fasteners, a plurality of first fastening holes are formed on the front vertical beam, and a plurality of second fastening holes are formed on the hopper assembly, each of the fasteners passing through and locking into its corresponding first fastening hole and second fastening hole.
[0012] The fasteners provide a reliable mechanical connection, reducing the risk of the material box assembly accidentally detaching from the outer frame and ensuring the normal operation and safety of the equipment.
[0013] In some possible implementations, the hopper assembly includes a base and a top cover, the top cover being disposed on the base and enclosing it to form a liquid storage chamber, and the first connecting component being connected to the base and / or the top cover.
[0014] The first connecting component can be connected to the base, the top cover, or both simultaneously. This flexible connection method can be adjusted according to the actual usage environment and needs.
[0015] In some possible implementations, the first connecting component and the base are integrally formed.
[0016] The unibody molding process eliminates the connection interface between the first connecting component and the base, avoiding structural failures caused by loosening or breakage of the connection points. When subjected to external forces, stress can be more evenly distributed throughout the structure, making the material box assembly more robust and durable during use, and reducing the risk of damage caused by vibration, impact, and other factors.
[0017] In some possible implementations, the material box assembly includes a top cover that covers the upper cover, and a water dispensing channel is formed between the top cover and the upper cover.
[0018] By connecting pipes and pumping systems (such as dosing pumps), liquid is pumped out from the storage tank formed by the top and bottom covers, and transported to the first and / or second cylinders through the dosing water path to meet different operating scenarios.
[0019] In some possible implementations, the cartridge assembly further includes a dispensing port structure that extends at least partially through the liquid storage chamber and is movably connected to the top cover.
[0020] The dispensing port structure is movably connected to the top cover, allowing users to flexibly adjust the position and angle of the dispensing port according to actual needs during use, making dispensing operations more convenient. Furthermore, the movable connection between the dispensing port structure and the top cover also allows for a tight seal when not in use, forming a good seal and preventing liquid leakage from the storage tank.
[0021] In some possible implementations, the outer frame includes a front vertical beam, a rear vertical beam, and a side crossbeam connecting the front and rear vertical beams. An avoidance notch is formed on the front vertical beam, and the end of the delivery port structure facing away from the top cover is movably inserted into the avoidance notch.
[0022] The clearance gap provides specific space for the delivery port structure to move, avoiding interference between the delivery port structure and other parts of the outer frame. Furthermore, users can flexibly adjust the position and angle of the delivery port within the range allowed by the clearance gap according to actual needs, so as to facilitate the user's delivery operation.
[0023] In some possible implementations, the garment handling device further includes a third cylinder with an inner diameter smaller than that of the second cylinder and located above the second cylinder.
[0024] Multiple drums can each have washing and drying functions, allowing users to choose the appropriate washing program for different types of clothing, thereby improving the overall washing effect.
[0025] In some possible implementations, there are two material box assemblies, one of which is located between the first cylinder and the second cylinder, and the other of which is located between the third cylinder and the second cylinder.
[0026] The two material box assemblies are located between different cylinders, which allows for more efficient use of the space inside the outer frame.
[0027] In some possible implementations, the two assemblies are arranged symmetrically about the center of the outer frame.
[0028] The symmetrical design ensures that the weight of the material box assembly is evenly distributed on the outer frame, avoiding stress imbalance caused by uneven weight distribution, thus improving the stability of the garment processing equipment during operation, especially under vibration or movement.
[0029] In some possible implementations, the internal device is a damping support for the first cylinder.
[0030] By avoiding the first connecting component from the damping bracket, the function of the damping bracket is not affected by the installation and connection of the material box assembly, and it can work independently and stably, ensuring the smooth operation of the first cylinder and improving the reliability of the equipment.
[0031] In some possible implementations, the internal device is the suspension spring of the second cylinder.
[0032] The first connecting component does not interfere with the suspension spring, ensuring that the spring can freely extend and retract during operation, unaffected by external factors. This maintains the elastic properties of the suspension spring, enabling it to continuously and effectively buffer the vibration and impact forces of the second cylinder, thereby improving the operational stability and reliability of the equipment.
[0033] The technical solutions provided by the embodiments of this disclosure may include the following beneficial effects: By setting the first connecting component to avoid internal components, the material box assembly will not physically interfere with or interfere with other internal components during installation and use, providing sufficient space for the material box assembly and internal components, and ensuring the independent and stable operation of each internal component.
[0034] Furthermore, placing the material box assembly between the first and second cylinders can fully utilize the space between them, improving the utilization rate of the internal space and making the internal structure of the equipment more compact. In addition, by feeding the first and second cylinders with the material box assembly placed between them, the length of the feeding pipe can be effectively shortened, reducing the time that materials stay and are lost in the pipe, thus enabling them to reach the corresponding cylinders more quickly and improving feeding efficiency.
[0035] It should be understood that the above general description and the following detailed description are exemplary and explanatory only, and are not intended to limit this disclosure. Attached Figure Description
[0036] The accompanying drawings are provided to further illustrate the present disclosure and form part of the specification. They are used together with the following detailed description to explain the present disclosure, but do not constitute a limitation thereof. In the drawings: Figure 1This is a partial perspective view of a garment processing device provided in an exemplary embodiment of the present disclosure; wherein, the material box body is assembled on the outer frame; Figure 2 This is another perspective provided by one exemplary implementation of the present disclosure (and...) Figure 1 Partial 3D view of different garment processing equipment; Figure 3 This is a perspective view of a garment processing device provided in an exemplary embodiment of the present disclosure.
[0037] Explanation of reference numerals in the attached figures 100-Clothing processing equipment; 10-Outer frame; 11-Front vertical beam; 110-Avoidance notch; 12-Rear vertical beam; 13-Side crossbeam; 130-Card slot; 20-Materials box assembly; 21-Base; 22-Top cover; 23-Top cover; 24-Dispensing port structure; 30-First connecting assembly; 31-Connector; 40-Internal components; 41-Damping bracket; 50-Second connecting assembly; 200-First cylinder; 300-Second cylinder; 400-Third cylinder. Detailed Implementation
[0038] The specific embodiments of this disclosure will be described in detail below with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are for illustration and explanation only and are not intended to limit this disclosure.
[0039] In this disclosure, unless otherwise stated, directional terms are used only for the convenience of describing the disclosure and for simplifying the description, and are not intended to indicate or imply that the device or element referred to must have a specific orientation, or a specific orientation construction and operation, and therefore should not be construed as a limitation of the disclosure. "Inner" and "outer" refer to the inner and outer contours of the corresponding components. In addition, the terms "first," "second," etc., are used to distinguish one element from another and do not have any sequential or importance.
[0040] In the description of this disclosure, it should also be noted that, unless otherwise expressly specified and limited, the terms "set up," "connect," "link," and "install" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this disclosure according to the specific circumstances.
[0041] Research has shown that in related technologies, the connection method and location of the material box assembly often interfere with or interfere with the internal components of the equipment, thereby affecting the assembly and operation of the internal components.
[0042] In view of this, such as Figures 1 to 3As shown, according to an embodiment of this disclosure, a garment processing device 100 is provided, including an outer frame 10, a first cylindrical body 200, a second cylindrical body 300, a material box assembly 20, a first connecting component 30, and internal components 40. The first cylindrical body 200 and the second cylindrical body 300 are both disposed inside the outer frame 10. The inner diameter of the first cylindrical body 200 is smaller than the inner diameter of the second cylindrical body 300. The first cylindrical body 200 is disposed above the second cylindrical body 300. The material box assembly 20 is connected to the outer frame 10 through the first connecting component 30 and is located between the first cylindrical body 200 and the second cylindrical body 300. The first connecting component 30 avoids the internal components 40.
[0043] By setting the first connecting component 30 to avoid the internal components 40, the material box assembly 20 will not cause physical interference or interference with other internal components during installation and use, providing sufficient space for the material box assembly 20 and the internal components 40, and ensuring the independent and stable operation of each internal component.
[0044] Furthermore, by placing the material box assembly 20 between the first cylinder 200 and the second cylinder 300, the space between the first cylinder 200 and the second cylinder 300 can be fully utilized, improving the utilization rate of the internal space of the equipment and making the internal structure of the equipment more compact. In addition, by feeding the first cylinder 200 and the second cylinder 300 with the material box assembly 20 placed between the first cylinder 200 and the second cylinder 300, the length of the feeding pipe can be effectively shortened, reducing the time that the material stays and is lost in the pipe, thereby enabling it to reach the corresponding cylinder more quickly and improving the feeding efficiency.
[0045] This disclosure does not limit the specific position of the aforementioned material box assembly 20 connected to the outer frame 10. For example, in some possible embodiments, such as Figure 3 As shown, the outer frame 10 may include a front vertical beam 11, a rear vertical beam 12, and a side crossbeam 13 connecting the front vertical beam 11 and the rear vertical beam 12. The side of the material box assembly 20 is detachably connected to the side crossbeam 13 via a first connecting assembly 30. The outer frame 10 adopts a structural design of front vertical beam 11, rear vertical beam 12, and side crossbeam 13. The side crossbeam 13 connects between the front vertical beam 11 and the rear vertical beam 12, forming a stable frame structure. The material box assembly 20 is connected to the side crossbeam 13 via its side, which can effectively transfer the weight of the material box assembly 20 and the force generated during operation to the entire outer frame 10 structure, ensuring the stability of the material box assembly 20 during operation and reducing damage to the material box assembly 20 and the equipment caused by vibration, shaking, and other factors.
[0046] Furthermore, connecting the material box assembly 20 to the side crossbeam 13 makes it easier to assemble the material box assembly 20.
[0047] In one embodiment provided in this disclosure, such as Figures 1 to 2 As shown, the first connecting component 30 includes multiple connectors 31. The material box assembly 20 is detachably connected to the outer frame 10 through multiple spaced connectors 31. The internal components 40 are connected between two adjacent connectors 31. The material box body is detachably connected to the outer frame 10 through multiple spaced connectors 31. The multiple spaced connectors 31 can share the weight of the material box assembly 20, thereby improving the stability of fixing the material box assembly 20.
[0048] This disclosure does not limit the specific structure of the connector 31 or the connection method between it and the side beam 13. For example, in an exemplary embodiment provided in this disclosure, such as Figures 1 to 2 As shown, the aforementioned connector 31 can be formed as a locking block. One end of each connector 31 is connected to the material box assembly 20. Multiple slots 130 are formed on the side crossbeam 13, and the other end of each connector 31 is engaged in its corresponding slot 130. In other words, the connector 31 can be connected to the slots 130 of the side crossbeam 13 by a locking mechanism. During assembly, the operator only needs to align the locking block with the slot 130 and engage it to complete the connection between the material box assembly 20 and the side crossbeam 13. This eliminates the need for complex tools and tedious operations, significantly shortening installation time and improving efficiency. Furthermore, when the material box assembly 20 needs repair, replacement, or cleaning, simply removing the locking block from the slot 130 allows for easy removal of the material box assembly 20 from the side crossbeam 13.
[0049] In other embodiments provided in this disclosure, the connecting member 31 may also be formed as a fastening structure such as a screw or bolt, and fastened to the mounting holes preset on the material box assembly 20 and the side beam 13 by screwing, so as to realize the detachable connection between the material box assembly 20 and the side beam 13.
[0050] To further enhance the fastening effect with the aforementioned material box assembly 20, in one exemplary embodiment provided in this disclosure, such as... Figure 3 As shown, the first connecting assembly 30 also includes multiple fasteners. Multiple first fastening holes are formed on the front vertical beam 11, and multiple second fastening holes are formed on the material box assembly 20. Each fastener passes through and locks itself into its corresponding first or second fastening hole. The locking action of the fasteners provides a reliable mechanical connection, reducing the risk of the material box assembly 20 accidentally detaching from the outer frame 10 (e.g., during frequent equipment starts and stops or when subjected to significant external forces), thus ensuring the normal operation and safety of the equipment.
[0051] It should be noted that, in the embodiment mentioned above where the first connecting component 30 includes multiple connectors 31, and each connector 31 is respectively snapped into its corresponding slot 130, the addition of multiple fasteners passing through and locking in the corresponding first and second fastening holes provides a dual connection and fixing method between the material box assembly 20 and the outer frame 10. The snapping of the block and the slot 130 plays a preliminary positioning and a certain degree of connection role, while the locking of the fasteners further enhances the firmness of the connection, making the connection between the material box assembly 20 and the outer frame 10 tighter and more stable, effectively preventing the material box assembly 20 from loosening or shifting due to vibration, impact and other factors during equipment operation.
[0052] Alternatively, in other embodiments provided in this disclosure, the fasteners may also be formed as snap-fit components, thereby snapping into the snap-fit holes pre-set on the front vertical beam 11 to achieve a detachable connection between the material box assembly 20 and the side crossbeam 13.
[0053] Alternatively, in another exemplary embodiment provided in this disclosure, the side of the first connecting component 30 away from the material box assembly 20 can also be connected to the outer frame 10 by non-removable methods such as welding, bonding, or riveting.
[0054] This disclosure does not limit the specific connection position between the first connecting component 30 and the material box assembly 20, for example, as Figure 1 As shown, in some possible embodiments, the cartridge assembly 20 may include a base 21 and a top cover 22. The top cover 22 covers the base 21 and encloses it to form a liquid storage compartment. The first connecting component 30 is connected to the base 21 and / or the top cover 22. The first connecting component 30 can be connected to the base 21, the top cover 22, or both simultaneously. This flexible connection method can be adjusted according to the actual usage environment and needs. For example, when the cartridge assembly 20 mainly bears the vertical force, the first connecting component 30 can be connected to the base 21 to enhance stability. If it is necessary to fix the cartridge assembly 20 as a whole to prevent it from shaking, the base 21 and the top cover 22 can be connected simultaneously.
[0055] In the embodiment described above where the first connector 31 is connected to the base 21, the first connecting assembly 30 and the base 21 are integrally formed. This integral forming process eliminates the connection interface between the first connecting assembly 30 and the base 21, avoiding structural failures caused by loosening or breakage of the connection points. When subjected to external forces, the stress can be more evenly distributed throughout the structure, making the material box assembly 20 more robust and durable during use, reducing the risk of damage caused by vibration, impact, and other factors.
[0056] Alternatively, in other embodiments provided in this disclosure, the first connecting component 30 may also be connected to the base 21 by welding, bonding or other means; or the first connecting component 30 may also be connected to the base 21 by snap-fit, fastener or other detachable means.
[0057] In some possible implementations, such as Figure 1 As shown, the material box assembly 20 may include a top cover 23, which covers the upper cover 22, and a water dispensing channel is formed between the top cover 23 and the upper cover 22. By connecting pipes, a pumping system (such as a dispensing pump), etc., liquid is pumped out from the liquid storage tank formed by the upper cover 22 and the base 21, and transported through the water dispensing channel to one or more of the first cylinder 200, the second cylinder 300, and the third cylinder 400 to meet different operating scenarios.
[0058] In some possible implementations, such as Figure 1 As shown, the material box assembly 20 may further include a dispensing port structure 24, which is at least partially inserted into the liquid storage chamber and movably connected to the upper cover 22. The movable connection between the dispensing port structure 24 and the upper cover 22 allows the user to flexibly adjust the position and angle of the dispensing port according to actual needs during use, making dispensing operations more convenient. Furthermore, the movable connection between the dispensing port structure 24 and the upper cover 22 also allows for a tight seal against the upper cover 22 when not in use, forming a good seal and preventing liquid leakage from the liquid storage chamber.
[0059] In some possible implementations, such as Figure 1 The outer frame 10 includes a front vertical beam 11, a rear vertical beam 12, and a side crossbeam 13 connecting the front vertical beam 11 and the rear vertical beam 12. A clearance notch 110 is formed on the front vertical beam 11, and the end of the dispensing port structure 24 facing away from the top cover 22 is movably inserted into the clearance notch 110. The clearance notch 110 provides specific movement space for the dispensing port structure 24, preventing interference between the dispensing port structure 24 and other parts of the outer frame 10. Furthermore, the user can flexibly adjust the position and angle of the dispensing port within the range allowed by the clearance notch 110 according to actual needs, facilitating the user's dispensing operations.
[0060] It should be noted that this disclosure does not limit the number of drums within the provided garment processing equipment 100, for example, such as Figure 3As shown, the garment processing device 100 may further include a third drum 400, the inner diameter of which is smaller than that of the second drum 300, and is located above the second drum 300. This disclosure does not limit the specific functions of the different drums. For example, the first drum 200, the second drum 300, and the third drum 400 may all have washing and drying functions, or they may only have washing or only drying functions. In the embodiment where the first drum 200, the second drum 300, and the third drum 400 all have washing functions, garments of different materials, colors, and degrees of soiling can be placed in the first drum 200, the second drum 300, and the third drum 400 respectively for washing. For example, white clothes can be placed in the first drum 200, dark clothes in the third drum 400, and heavy coats can be placed in the second drum 300 with a larger inner diameter. This can avoid color bleeding and mutual wear between different clothes, and use appropriate washing programs according to the characteristics of different clothes, thereby improving the overall washing effect.
[0061] In addition, small items of clothing, such as socks and underwear, can be washed quickly in the first tub 200 or the third tub 400, while larger items can be washed in the second tub 300 for the longer required washing time. This eliminates the need to mix all the clothes together for a uniform long wash, making more efficient use of washing time and improving washing efficiency.
[0062] In some possible implementations, such as Figure 3 As shown, there are two material box assemblies 20. One material box assembly 20 is located between the first cylinder 200 and the second cylinder 300, and the other material box assembly 20 is located between the third cylinder 400 and the second cylinder 300. The two material box assemblies 20 are located between different cylinders, which can make more efficient use of the space inside the outer frame 10.
[0063] In addition, the two material box assemblies 20 can be used to dispense different types of materials. For example, in the garment processing equipment 100, one material box assembly 20 can be used to dispense detergent, while the other material box assembly 20 can be used to dispense fabric softener, disinfectant, and other care agents, thus meeting the user's different needs for different stages of garment processing and care, and improving the effectiveness and diversity of garment processing.
[0064] Alternatively, the two material box assemblies 20 can be used to feed the same material, but they are connected to different drums respectively, and the material is transported to the corresponding drums, thereby speeding up the feeding speed and improving the washing efficiency.
[0065] In some possible implementations, the two material box assemblies 20 are arranged symmetrically about the center of the outer frame 10. The symmetrical arrangement ensures that the weight of the material box assemblies 20 is evenly distributed on the outer frame 10, avoiding stress imbalance of the outer frame 10 due to uneven weight distribution, thereby improving the stability of the garment processing equipment 100 during operation, especially under conditions of vibration or movement.
[0066] Furthermore, this disclosure does not limit the specific types of the aforementioned internal components. Since the function of the damping bracket 41 is to absorb and dissipate the vibration energy of the first cylinder 200 to reduce the impact of vibration on other components of the equipment, based on this, in an exemplary embodiment provided in this disclosure, such as... Figure 2 As shown, the internal component 40 can be the damping bracket 41 of the first cylinder 200. In this way, by avoiding the first connecting component 30 and the damping bracket 41, the function of the damping bracket 41 is not affected by the installation and connection of the material box assembly 20, and it can work independently and stably, ensuring the smooth operation of the first cylinder 200 and improving the reliability of the equipment.
[0067] In another exemplary embodiment provided in this disclosure, the internal device 40 may also be a suspension spring of the second cylinder 300. Similarly, the first connecting assembly 30 does not interfere with the suspension spring, ensuring that the suspension spring can freely extend and retract during operation, unaffected by external factors. This maintains the elastic performance of the suspension spring, enabling it to continuously and effectively buffer the vibration and impact forces of the second cylinder 300, thereby improving the operational stability and reliability of the equipment.
[0068] The preferred embodiments of this disclosure have been described in detail above with reference to the accompanying drawings. However, this disclosure is not limited to the specific details of the above embodiments. Within the scope of the technical concept of this disclosure, various simple modifications can be made to the technical solutions of this disclosure, and these simple modifications all fall within the protection scope of this disclosure.
[0069] It should also be noted that the various specific technical features described in the above specific embodiments can be combined in any suitable manner without contradiction. In order to avoid unnecessary repetition, this disclosure will not describe the various possible combinations separately.
[0070] Furthermore, various different embodiments of this disclosure can be combined in any way, as long as they do not violate the spirit of this disclosure, they should also be regarded as the content disclosed in this disclosure.
Claims
1. A garment processing device, characterized in that, It includes an outer frame, a first cylinder, a second cylinder, a material box assembly, a first connecting assembly, and internal components. The first cylinder and the second cylinder are both disposed inside the outer frame. The inner diameter of the first cylinder is smaller than the inner diameter of the second cylinder, and the first cylinder is disposed above the second cylinder. The material box assembly is connected to the outer frame via the first connecting component and is located between the first cylinder and the second cylinder, with the first connecting component avoiding the internal components.
2. The garment processing equipment according to claim 1, characterized in that, The outer frame includes a front vertical beam, a rear vertical beam, and a side crossbeam connected between the front vertical beam and the rear vertical beam. The side of the material box assembly is detachably connected to the side crossbeam via the first connecting assembly.
3. The garment processing equipment according to claim 2, characterized in that, The first connecting component includes multiple connectors, and the material box assembly is detachably connected to the outer frame through multiple spaced connectors. The internal components are connected between two adjacent connectors.
4. The garment processing equipment according to claim 3, characterized in that, One end of each connector is connected to the material box assembly, and multiple slots are formed on the side beam. The other end of each connector is engaged in the corresponding slot.
5. The garment processing equipment according to claim 2, characterized in that, The first connecting assembly further includes a plurality of fasteners, a plurality of first fastening holes are formed on the front vertical beam, and a plurality of second fastening holes are formed on the material box assembly, with each fastener passing through and locking in its corresponding first fastening hole and second fastening hole.
6. The garment processing equipment according to any one of claims 1-5, characterized in that, The material box assembly includes a base and a top cover. The top cover is disposed on the base and encloses it to form a liquid storage chamber. The first connecting component is connected to the base and / or the top cover.
7. The garment processing equipment according to claim 6, characterized in that, The first connecting component and the base are integrally formed.
8. The garment processing equipment according to claim 6, characterized in that, The material box assembly includes a top cover, which covers the upper cover, and a water dispensing channel is formed between the top cover and the upper cover.
9. The garment processing equipment according to claim 6, characterized in that, The material box assembly also includes a dispensing port structure, which is at least partially inserted into the liquid storage chamber and movably connected to the top cover.
10. The garment processing equipment according to claim 9, characterized in that, The outer frame includes a front vertical beam, a rear vertical beam, and a side crossbeam connecting the front and rear vertical beams. An avoidance notch is formed on the front vertical beam, and the end of the delivery port structure facing away from the top cover is movably inserted into the avoidance notch.
11. The garment processing equipment according to any one of claims 1-5, characterized in that, The garment processing device further includes a third cylinder, the inner diameter of which is smaller than that of the second cylinder, and is located above the second cylinder.
12. The garment processing equipment according to claim 11, characterized in that, There are two material box assemblies, one of which is located between the first cylinder and the second cylinder, and the other of which is located between the third cylinder and the second cylinder.
13. The garment processing equipment according to claim 12, characterized in that, The two assemblies are arranged symmetrically about the center of the outer frame.
14. The garment processing equipment according to any one of claims 1-5, characterized in that, The internal component is the damping support of the first cylinder.
15. The garment processing equipment according to any one of claims 1-5, characterized in that, The internal component is the suspension spring of the second cylinder.