A dispensing box assembly and a clothes treating apparatus
By designing a rotatable sterilization device and a water tank structure, the problems of poor sterilization effect and debris in clothing processing devices were solved, achieving efficient sterilization and disinfection and improved safety.
Patent Information
- Application Number
- CN202210065890.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-01-20
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2042-01-20
AI Technical Summary
In existing garment processing devices, ozone sterilization is ineffective and the slow-release effect of sterilizing substances is poor, and it is easy to generate debris, which affects the sterilization effect and safety of the device.
Design a dispensing box assembly that includes a rotatable sterilization device. The sterilization device is rotated by water flow impact, which improves the dissolution and slow release efficiency of the sterilizing substance, and prevents debris from scattering through a water tank and siphon channel.
It improves the efficiency of the slow-release bactericidal substance in the sterilization device, ensures effective sterilization and disinfection inside the garment treatment device, and avoids damage to the device by bactericidal substance debris.
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Figure CN116516643B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application belongs to the technical field of mechanical equipment, and particularly relates to a dispensing box assembly and a clothes processing device. BACKGROUND
[0002] The clothes processing device refers to a general term of a type of household appliances capable of performing a washing program, such as a washing machine, a washer-dryer, and the like.
[0003] Ordinary clothes processing devices use tap water to dissolve washing powder, detergent, and the like to wash clothes. Since the tap water and the clothes being washed contain some organic pollutants such as viruses, bacteria, molds, and microorganisms, the washing powder, detergent, and the like are difficult to kill these viruses, bacteria, molds, and microorganisms.
[0004] Therefore, the viruses, bacteria, molds, and microorganisms accumulate in the clothes processing device and reproduce, so that the clothes processing device has a large amount of organic pollutants inside, which affects the washing effect of the clothes and even harms the health of the user.
[0005] Therefore, some clothes processing devices currently increase an ozone generator to achieve an ozone sterilization function. However, since the concentration and density of ozone gas are small, the ozone entering the water quickly escapes from the water, has a short contact time with the water, and a small amount of ozone can be dissolved in the water. The sterilization of the clothes is achieved by using ozone water, and the ozone concentration in the water is low, so the sterilization effect is poor and cannot achieve the desired effect.
[0006] In addition, some clothes processing devices are provided with a sterilization device containing sterilization substances, which can release sterilization substances into the clothes processing device to sterilize the clothes processing device. For example, the sterilization substances are glass, ceramic, and the like that release silver ions.
[0007] However, the release effect of the sterilization substances is relatively poor, and the released sterilization substances are relatively small. In addition, during transportation, installation, and sales, the sterilization substances are prone to vibration and collision to generate sterilization substance debris and particles. The generated sterilization substance debris and particles are easy to damage the parts of the clothes processing device.
[0008] Therefore, the present application is proposed. SUMMARY
[0009] The present application aims to provide a dispensing box assembly to improve the release efficiency of the sterilization device. Another object of the present application is to provide a clothes processing device to achieve a good sterilization and disinfection function.
[0010] To solve the above technical problems, the basic idea of the technical solution of the present application is:
[0011] A dispensing box assembly comprises:
[0012] The dispensing box has a dispensing cavity for dispensing a laundry treatment agent,
[0013] The sterilization device is used for releasing a sterilization substance,
[0014] The sterilization device is rotatably arranged in the dispensing cavity.
[0015] Further, an installation shaft is arranged in the dispensing cavity, the sterilization device is rotatably arranged on the installation shaft and can rotate around the installation shaft as the rotation axis.
[0016] Further, the two ends of the installation shaft are clamped on the inner cavity walls arranged opposite to each other, the sterilization device is arranged on the installation shaft, and the central axis of the sterilization device coincides with the central axis of the installation shaft.
[0017] Further, the sterilization device is in a columnar structure, a vane structure or a spherical structure.
[0018] Further, the dispensing box assembly further comprises a water inlet mechanism for feeding water into the dispensing cavity and a water outlet mechanism for discharging water in the dispensing cavity, and the sterilization device is rotatably arranged on the water path between the water inlet mechanism and the water outlet mechanism.
[0019] Further, the top of the dispensing box is open, the water inlet mechanism can feed water into one end of the open top of the dispensing box, and the sterilization device is arranged close to the one end of the open top of the dispensing box.
[0020] Further, the water inlet mechanism comprises a water inlet port arranged opposite to the one end of the open top of the dispensing box, and the sterilization device is arranged opposite to the water inlet port.
[0021] Further, an installation support is arranged in the dispensing cavity, a water passing groove is arranged on the installation support, the water passing groove is communicated with the dispensing cavity, and the sterilization device is rotatably arranged in the water passing groove.
[0022] Further, an opening for communicating with the dispensing cavity is formed on the water passing groove, and the sterilization device is arranged at one end of the opening.
[0023] The present application also provides a laundry treatment device having the dispensing box assembly according to any one of the above technical solutions.
[0024] After adopting the above technical solution, the present application has the following beneficial effects compared with the prior art.
[0025] When the water flow passes through the cavity, the sterilization device can rotate under the impact of the water flow, and the scouring effect of the water flow on the sterilization device is stronger during the rotation of the sterilization device, so that the amount of the sterilization substance dissolved and released by the sterilization device is larger, and the efficiency of the sterilization device for releasing the sterilization substance is improved.
[0026] The laundry treatment device of the present application can dissolve sufficient sterilization substance in the water flow in the laundry treatment device by the dispensing box assembly, and the sterilization substance has strong sterilization and disinfection functions, so that the interior of the laundry treatment device can be effectively sterilized and disinfected.
[0027] The specific embodiments of the present application will be further described in detail below with reference to the accompanying drawings. BRIEF DESCRIPTION OF DRAWINGS
[0028] The accompanying drawings, which are part of the present application, serve to further understand the present application, and the illustrative embodiments of the present application and the description thereof serve to explain the present application, but do not constitute an improper limitation on the present application. Obviously, the accompanying drawings in the following description are only some embodiments, and other drawings can be obtained by those skilled in the art without creative labor. In the drawings:
[0029] Figure 1 is a schematic view of another assembly structure inside the dispensing box assembly of the present application;
[0030] Figure 2 is a top view of the dispensing box assembly in the present application; Figure 1
[0031] Figure 3 is a sectional view of the dispensing box assembly in the present application; Figure 1
[0032] Figure 4 is a schematic view of another assembly structure inside the dispensing box assembly of the present application;
[0033] Figure 5 is a top view of the dispensing box assembly in the present application; Figure 4
[0034] is a sectional view of the water passing groove in the present application; Figure 6
[0035] is a schematic view of an assembly structure outside the dispensing box assembly of the present application. Figure 7 In the drawings:
[0036]
[0037] 1, dispensing box assembly; 11, dispensing box; 111, dispensing cavity; 112, dispensing box opening; 12, mounting bracket; 121, clamping portion; 122, shielding portion; 13, water passing groove; 131, opening; 132, water passing groove opening; 135, mounting shaft hole; 14, sterilization device; 142, identification portion; 15, siphon cap; 16, water box; 161, water box upper cover; 162, water inlet; 17, water inlet waterway; 2, mounting shaft.
[0038] It should be noted that the drawings and the written description are not intended to limit the scope of the present application in any way, but are merely to illustrate the concept of the present application to those skilled in the art by referring to specific embodiments. DETAILED DESCRIPTION
[0039] In order to make the purpose, technical scheme and advantages of the embodiments of the present application more clear, the technical scheme in the embodiments will be described clearly and completely below in conjunction with the drawings of the embodiments of the present application. The following embodiments are used to illustrate the present application, but not to limit the scope of the present application.
[0040] In the description of the present application, it should be noted that the terms "upper", "lower", "front", "rear", "left", "right", "vertical", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application.
[0041] In the description of the present application, it should be noted that unless otherwise explicitly specified and limited, the terms "mounting", "connecting", "connection" should be understood broadly, for example, it can be fixed connection, or detachable connection, or integrally connected; it can be mechanical connection, or electrical connection; it can be directly connected, or indirectly connected through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0042] As Figures 1 to 7 shown, the present application discloses a dispensing box assembly 1, comprising:
[0043] a dispensing box 11 having a dispensing cavity 111 for dispensing laundry treatment agent;
[0044] a sterilization device 14 for slow-release of sterilization substance, the sterilization device 14 being rotatably arranged in the dispensing cavity 111.
[0045] The sterilization device 14 in the present application is a structure formed by sterilization substance.
[0046] Alternatively, the sterilization device 14 in the present application comprises a shell structure with a cavity inside. The cavity of the shell structure is used to accommodate the sterilization substance, and a slow-release hole is formed on the shell for slow release of the sterilization substance to the outside of the shell structure.
[0047] The sterilization substance can dissolve the sterilization substance in water when it meets water. For example, the sterilization substance is silver-containing phosphate glass. The silver-containing phosphate glass can slowly dissolve in water to release silver ions, achieving the purpose of antibiosis.
[0048] Specifically, silver ions can strongly attract sulfhydryl groups (-SH) on proteases in bacterial bodies, rapidly combine with them, and make the proteases lose activity, leading to the death of bacteria. After the bacteria are killed by silver ions, the silver ions are released from the bacterial corpses and contact other colonies, and the above process is repeated.
[0049] Therefore, silver ion sterilization has persistence, and trace amounts of silver ions are harmless to the human body. In summary, using silver ions as sterilization substances not only has good sterilization effect, is harmless to the human body, and has persistence, high sterilization efficiency, and good effect.
[0050] In the present application, when water flows through the delivery cavity 111, the sterilization device 14 can rotate under the impact of the water flow. During the rotation of the sterilization device 14, the scouring effect of the water flow on the sterilization device 14 is strong, thereby increasing the amount of sterilization substance dissolved and released by the sterilization device 14, and improving the efficiency of the sterilization device 14 in slow releasing the sterilization substance.
[0051] As an embodiment of the present application, as shown in Figure 3 The sterilization device 14 is rotatably arranged on the mounting shaft 2 and can rotate around the mounting shaft 2 as the rotation axis.
[0052] In the present embodiment, when the water flow impacts the sterilization device 14, the sterilization device 14 can rotate around the mounting shaft 2 as the rotation axis, that is, the sterilization device 14 can rotate, release the sterilization substance, and has good slow-release effect and high efficiency when the water inlet assembly 1 is filled with water.
[0053] As an embodiment of the present application, the mounting shaft 2 and the inner cavity wall of the delivery cavity 111 are detachably connected. Specifically, the mounting shaft hole 135 is arranged on the inner cavity wall of the delivery cavity 111, and the end of the mounting shaft 2 is inserted into the mounting shaft hole 135 and detachably connected with the mounting shaft hole 135.
[0054] In the embodiment, the mounting shaft 2 is detachably connected with the inner cavity wall of the delivery cavity 111, facilitating the mounting, dismounting and replacement of the mounting shaft 2 and the sterilization device 14. The user can replace the sterilization device 14 according to actual needs to ensure that the delivery box assembly 1 always has strong sterilization and disinfection functions.
[0055] As another embodiment of the present embodiment, the two ends of the mounting shaft 2 are respectively clamped on the oppositely arranged inner cavity walls of the delivery cavity 111. The sterilization device 14 is arranged on the mounting shaft 2, and the central axis of the sterilization device 14 coincides with the central axis of the mounting shaft 2.
[0056] Preferably, the mounting shaft 2 is arranged horizontally.
[0057] In the embodiment, the two ends of the mounting shaft 2 are respectively clamped on the oppositely arranged inner cavity walls of the delivery cavity 111, and the mounting mode is simple, facilitating the user to dismount and replace the mounting shaft 2. The central axis of the sterilization device 14 coincides with the central axis of the mounting shaft 2, so that the sterilization device 14 can uniformly rotate around the mounting shaft 2 as the rotation axis.
[0058] As shown in Figures 1 to 5 The sterilization device 14 in the present application is in a columnar structure, an impeller structure or a spherical structure. Specifically, the sterilization device 14 is in a columnar structure, an impeller structure or a spherical structure formed by a sterilization substance. The sterilization device 14 rotates under the scouring action of water flow, continuously releases the sterilization substance during rotation, and becomes smaller in volume.
[0059] Preferably, the sterilization device 14 comprises an inner layer structure and an outer layer structure arranged concentrically. The inner layer structure is a plastic cylinder structure or a metal cylinder structure. The outer layer structure is a hollow column structure formed by a sterilization substance. The hollow column structure is sleeved outside the plastic cylinder structure or the metal cylinder structure to form the sterilization device 14 together. More preferably, the plastic cylinder structure or the metal cylinder structure and the hollow column structure are integrally pressed and formed.
[0060] The plastic cylinder structure or the metal cylinder structure is rotatably sleeved on the mounting shaft 2. The central axis of the plastic cylinder structure or the metal cylinder structure coincides with the central axis of the mounting shaft 2.
[0061] In the present application, the sterilization device 14 is formed in a simple manner, and the plastic cylinder structure or the metal cylinder structure is arranged to realize rotatable connection with the mounting shaft 2. During rotation, the sterilization substance does not directly contact the mounting shaft 2, avoiding the generation of debris due to wear of the sterilization substance.
[0062] Alternatively, the sterilization device 14 in the present application is a cylindrical shell, a vane-shaped shell or a spherical shell with a cavity inside. The cylindrical shell, the vane-shaped shell or the spherical shell is provided with a mounting shaft hole, and the center axis of the mounting shaft hole coincides with the center axis of the cylindrical shell, the vane-shaped shell or the spherical shell. The mounting shaft hole is rotatably sleeved on the mounting shaft 2, and the center axis of the mounting shaft hole coincides with the center axis of the mounting shaft 2.
[0063] The cavity inside the cylindrical shell, the vane-shaped shell or the spherical shell is used to accommodate the sterilization substance, and the shell is provided with a slow-release hole. The sterilization device 14 rotates around the mounting shaft 2 under the scouring action of the water flow, and the water flow enters the inside of the shell through the slow-release hole, dissolves the sterilization substance, and slowly releases the sterilization substance into the delivery cavity 111 through the slow-release hole.
[0064] As an embodiment of the present application, the delivery box assembly 1 further comprises a water inlet mechanism for water inlet into the delivery cavity 111 and a water outlet mechanism for water outlet from the delivery cavity. The sterilization device 14 is rotatably arranged on the water path between the water inlet mechanism and the water outlet mechanism, and the water flow on the water path can impact the sterilization device 14 to make the sterilization device rotate.
[0065] Specifically, the water inlet mechanism is communicated with the top of the delivery box 11 for water inlet into the delivery cavity 111. The water outlet mechanism is communicated with the bottom of the delivery box 11 for water outlet from the delivery cavity 111. The water inlet mechanism and the water outlet mechanism have a water path for water flow. The sterilization device 14 is arranged on the water path.
[0066] In the embodiment, by rotatably arranging the sterilization device 14 on the water path between the water inlet mechanism and the water outlet mechanism, the water flow flowing into the delivery cavity 111 from the water inlet mechanism can scour the sterilization device 14 when flowing through the water path. The sterilization device 14 rotates under the scouring action of the water flow, and the efficiency of dissolving and slowly releasing the sterilization substance by the sterilization device 14 is improved during the rotation. Subsequently, the water flow is discharged through the water outlet mechanism, and the content of the sterilization substance in the discharged water flow is high, which has good sterilization and disinfection effect.
[0067] As another embodiment of the present application, the top of the delivery box 11 is open. The water inlet mechanism can inlet water to one end of the delivery box opening 112. The sterilization device 14 is arranged close to one end of the delivery box opening 112.
[0068] In the embodiment, the water inlet mechanism inlets water to one end of the delivery box opening 112, and the impact of the water flow on one end of the delivery box opening 112 is strong. By arranging the sterilization device 14 close to one end of the delivery box opening 112, the sterilization device 14 can rotate under the impact of the strong water flow, and more sterilization substance can be dissolved and slowly released during the rotation.
[0069] As an embodiment of the present application, the water inlet mechanism comprises a water inlet 162 arranged opposite to one end of the dispensing box opening 112, and the water inlet 162 is in communication with the dispensing box opening 112. The sterilization device 14 is arranged opposite to the water inlet 162.
[0070] In the present embodiment, the water flowing out of the water inlet 162 can impact the sterilization device 14 from top to bottom, so that the sterilization device 14 rotates under the impact and the rotation speed is relatively large, which is beneficial to the rapid dissolution and slow release of the sterilization substance.
[0071] As another embodiment of the present application, the dispensing box assembly 1 comprises:
[0072] The mounting bracket 12 is arranged in the dispensing cavity 111;
[0073] The water passing groove 13 is arranged on the mounting bracket 12, and the water passing groove 13 is in communication with the dispensing cavity 111, and the water passing groove 13 can pass water flow;
[0074] The sterilization device 14 is rotatably arranged in the water passing groove 13.
[0075] In the present embodiment, by rotatably arranging the sterilization device 14 in the water passing groove 13, the water flowing through the water passing groove 13 can flush the sterilization device 14, and the sterilization device 14 can rotate under the flushing action of the water flow, thereby improving the efficiency of the sterilization device in dissolving and slowly releasing the sterilization substance.
[0076] In addition, by arranging the water passing groove 13 and arranging the sterilization device 14 in the water passing groove 13, the sterilization substance debris generated by the vibration and collision of the sterilization substance in the sterilization device 14 can be left in the water passing groove 13, avoiding the sterilization substance debris scattered everywhere, even splashing outside the dispensing box assembly 1, causing trouble to the user.
[0077] As an embodiment of the present application, the water inlet mechanism of the dispensing box assembly 1 is used to supply water to the water passing groove 13. The water passing groove 13 is provided with an opening 131 for communicating with the dispensing cavity 111, and the opening 131 is arranged away from the water inlet mechanism. The sterilization device 14 is arranged at one end of the opening 131 in the water passing groove 13.
[0078] In the present embodiment, the water flow flowing to the opening 131 of the water passing groove 13 can flush the sterilization device 14 and drive the sterilization device 14 to rotate, and dissolve and slowly release the sterilization substance during the rotation process, so that the water flowing out of the opening 131 of the water passing groove 13 contains sufficient sterilization substance.
[0079] In addition, in the embodiment, the opening 131 of the water passing groove 13 is arranged away from the water inlet mechanism, so that the water flowing into the water passing groove 13 from the water inlet mechanism has a long flow path. Under the action of the water flow with a long flow path, most of the debris generated by the sterilization device 14 is left in the water passing groove 13.
[0080] As another embodiment of the present application, the sterilization device 14 is arranged away from the opening 131 on the side of the water inlet mechanism. Specifically, the water passing groove 13 comprises a first end and a second end in opposite positions, the opening 131 is arranged on the side wall of the first end of the water passing groove 13, and the water inlet mechanism is in communication with the second end.
[0081] In the embodiment, the water path between the sterilization device 14 and the opening 131 of the water passing groove 13 is long, so that most of the debris generated by the sterilization device 14 is left in the water passing groove 13 during the water flow, avoiding the debris from scattering everywhere. In addition, this arrangement further increases the contact time of the sterilization device 14 with the water flow in the water passing groove 13, which is conducive to the slow release of more sterilization substances.
[0082] As another embodiment of the present application, as shown in Figures 1 to 6 the water passing groove 13 is a groove structure with an open top. The water passing groove opening 132 is arranged opposite to the drop box opening 112, and the water inlet mechanism can supply water to the water passing groove opening 132.
[0083] In the embodiment, the water inlet mechanism supplies water to the water passing groove opening 132, and the water flow enters the water passing groove 13 from the water passing groove opening 132. The sterilization device 14 is arranged opposite to the water passing groove opening 132.
[0084] In the embodiment, the water flow enters from the water passing groove opening 132 and flows downward to the sterilization device 14, driving the sterilization device 14 to rotate, dissolving and slowly releasing sterilization substances, and the dissolving and slowly releasing effect is good. Subsequently, the water flow with dissolved sterilization substances flows out from the opening 131 of the water passing groove 13, and the debris is left in the water passing groove 13 during the water flow.
[0085] As an embodiment of the present application, the water inlet mechanism can supply water to one end of the water passing groove opening 132, and the opening 131 is arranged on the groove wall of the groove structure away from the one end of the water passing groove opening 132.
[0086] In the embodiment, the opening 131 of the water passing groove 13 is arranged in a simple manner, and this arrangement greatly increases the flow path of the water flow in the water passing groove 13. Not only can the water flow fully contact the sterilization device 14, but also the debris generated by the sterilization device 14 can be left in the water passing groove 13 as much as possible, avoiding the debris from scattering everywhere and affecting the user's experience.
[0087] As an embodiment of the present application, the water passing groove opening 132 is tapered from top to bottom. The sterilization device 14 is rotatably arranged at one end of the water passing groove opening 132. The water inlet mechanism is arranged to allow water to flow from the end of the water passing groove opening 132 away from the sterilization device 14 to the sterilization device 14.
[0088] Further specifically, the bottom of the water passing groove 13 is provided with a bottom opening, and the water passing groove opening 132 is arranged opposite to the bottom opening. The circumferential wall of the water passing groove 1 comprises first and second side walls arranged opposite to each other. The opening 131 is arranged on the second side wall. The sterilization device 14 is rotatably arranged on the second side wall. The water inlet mechanism is arranged to allow water to flow from the first side wall to the second side wall, and the water flow impacts the sterilization device 14 to drive the sterilization device 14 to rotate.
[0089] Further, the circumferential wall of the water passing groove 1 comprises third and fourth side walls arranged opposite to each other, and the first, second, third and fourth side walls enclose the circumferential wall of the water passing groove 1. The two ends of the mounting shaft 2 are arranged on the third and fourth side walls respectively, and the mounting shaft 2 is arranged parallel to the first and second side walls. The first side wall is arranged to be inclined from top to bottom to the side close to the second side wall. The second side wall is spaced apart from the sterilization device 14.
[0090] This arrangement not only ensures that the sterilization device 14 can rotate under the impact of the water flow, but also enables the water flow from the second side wall to more fully impact the sterilization device 14 to drive the sterilization device 14 to rotate at a relatively high speed.
[0091] As another embodiment of the present application, the water drainage mechanism of the dropping box assembly 1 is arranged away from the opening 131 of the water passing groove 13 and on the lower part of the mounting bracket 12.
[0092] The water passing groove 13 is spaced apart from the bottom of the dropping box 11. Preferably, the bottom of the dropping box 11 is provided with a dropping box support part, and the water passing groove 13 is arranged on the dropping box support part. The gap between the bottom of the water passing groove 13 and the bottom of the dropping box 11 forms a water path for water flow.
[0093] In this embodiment, the water drainage mechanism is arranged away from the opening 131 of the water passing groove 13 and on the lower part of the mounting bracket 12. The water flowing out of the opening 131 flows to the water drainage mechanism through the water path formed between the bottom of the water passing groove 13 and the bottom of the dropping box 11. The water path between the opening 131 and the water drainage mechanism is relatively long. In this way, the debris scattered from the water passing groove 13 can be left on the water path between the opening 131 and the water drainage mechanism, avoiding the debris from being discharged from the water drainage mechanism to the outside of the dropping box assembly 1.
[0094] As an embodiment of the present application, the drainage mechanism comprises a siphon pipe and a siphon cap 15. The siphon pipe is connected to and arranged on the bottom wall of the dispensing box 11, and the siphon cap 15 is arranged on the mounting bracket 12 to surround the siphon pipe and form a siphon passage for the liquid to flow out of the dispensing cavity 111.
[0095] Specifically, one end of the siphon pipe is connected to the bottom wall of the dispensing box 11, and the other end extends to the dispensing opening 112 of the dispensing box. The siphon cap 15 is a groove structure with an open end, the open end of the siphon cap 15 is arranged on the siphon pipe from top to bottom, and there is a gap between the inner wall surface of the siphon cap 15 and the outer wall surface of the siphon pipe to form a siphon passage.
[0096] In the present embodiment, the siphon passage is formed by arranging the siphon pipe and the siphon cap 15, which not only achieves the purpose of draining the water flow, but also avoids the debris generated by the sterilization device 14 from being drained out of the siphon passage.
[0097] Preferably, the siphon cap 15 is fixed on the mounting bracket 12. Specifically, the siphon cap 15 comprises an open end and a cap bottom arranged opposite to the open end. The open end is arranged towards the siphon pipe, and the cap bottom is fixed on the mounting bracket 12.
[0098] This arrangement allows the siphon cap 15 to be integrated with the mounting bracket 12, facilitating overall installation and simplifying the installation process. The positioning and connecting relationship between the siphon cap 15 and the siphon pipe plays a good role in positioning and connecting the installation of the mounting bracket 12.
[0099] More preferably, the siphon cap 15 is integrally formed with the mounting bracket 12. This arrangement makes the installation structure of the siphon cap 15 and the mounting bracket 12 stable, and the forming method is simple and reliable.
[0100] As another embodiment of the present application, as shown in Figure 3 The dispensing box assembly 1 further comprises a water box 16 with a cavity inside, and the dispensing box 11 is arranged in the cavity of the water box 16 in a pullable manner. A pull handle is arranged on the dispensing box 11 to facilitate the user to pull the dispensing box 11.
[0101] A water inlet 162 is formed on the water box 16. Preferably, the water inlet 162 is formed on the water box cover 161. The water inlet 162 is arranged opposite to the water passage opening 132. The water inlet mechanism comprises a water inlet channel 17, one end of which is connected to the water inlet 162, and the other end is connected to a water source. The water flow flows into the water passage 13 from top to bottom through the water box cover 161.
[0102] In the embodiment, the water inlet channel 17 supplies water into the water passing groove 13 through the water inlet 162 and the water passing groove opening 132, and the water flows into the water passing groove 13 from top to bottom, fully contacts with the sterilization device 14 in the water passing groove 13, and drives the sterilization device 14 to rotate, so that the slow-release effect of the sterilization device 14 is good.
[0103] As an embodiment of the present application, as shown in Figures 1 to 6 The mounting bracket 12 is detachably connected with the dropping box 11. Specifically, the mounting bracket 12 is provided with a clamping portion 121, and the clamping portion 121 is clamped with the dropping box 11.
[0104] Specifically, the mounting bracket 12 is provided with a clamping portion 121, and the dropping box 11 is provided with a dropping box buckle, and the mounting bracket 12 is clamped on the dropping box buckle through the clamping portion 121.
[0105] Preferably, the top edge of the side wall of the water passing groove 13 extends radially outward to form the clamping portion 121. More preferably, the top edge of the side wall of the water passing groove 13 extends radially outward and is bent upward or downward to form the clamping portion 121. This arrangement realizes the detachable connection of the mounting bracket 12 and the dropping box 11.
[0106] As another embodiment of the present application, as shown in Figures 1 to 6 The water passing groove 13 includes oppositely arranged first and second side walls. The opening 131 is arranged on the second side wall. The top edge of the first side wall extends radially outward to form the mounting bracket 12. The mounting bracket 12 is located between the dropping box opening 112 and the siphon pipe, and the siphon cap 15 is arranged on the mounting bracket 12.
[0107] Further, the end of the mounting bracket 12 extends to the bottom of the dropping box 11 to form a shielding portion 122, the shielding portion 122 is arranged opposite to the first side wall, and the siphon cap 15 is arranged between the shielding portion 122 and the first side wall.
[0108] In the embodiment, the shielding portion 122 blocks the debris in the water flow from scattering around in the dropping box 11 beyond the siphon cap 15. And the shielding portion 122 also effectively avoids the splashing of water flow at the siphon passage.
[0109] As another embodiment of the present application, the dropping box 11 further includes a blocking plate. The blocking plate is arranged in the dropping box 11, one end of the blocking plate is connected with the bottom of the dropping box 11, and the other end of the blocking plate extends to the opening side of the dropping box 11. The blocking plate is located between the siphon pipe and the first side wall of the water passing groove 13, and the blocking plate has a gap between the first side wall and the siphon pipe.
[0110] In the embodiment, the water flow discharged from the opening 131 of the water trough 13 flows out of the dispensing box 11 through the flow channel between the water trough 13 and the bottom wall of the dispensing box 11, the flow channel between the blocking plate and the first side wall, the flow channel between the siphon cap 15 and the blocking plate, and the flow channel between the siphon cap 15 and the siphon pipe in sequence. The blocking plate effectively blocks the debris in the water flow from flowing into the flow channel between the siphon cap 15 and the siphon pipe, so that the debris is prevented from flowing out of the dispensing box assembly 1 with the water flow.
[0111] As another embodiment of the present application, as shown in Figure 1 、 Figure 2 、 Figure 4 and Figure 5 , an identification part 142 is arranged on the mounting bracket 12. An NFC chip can be mounted on the identification part 142, or a two-dimensional code or the like identification can be attached. According to the information related to the NFC chip or the two-dimensional code, the user can obtain the model of the mounting bracket 12, so as to facilitate the user to replace the mounting bracket 12 of the same model and the sterilization device 14 matched with the mounting bracket 12.
[0112] The present application also provides a clothes treatment device with the dispensing box assembly 1 of any of the above technical solutions.
[0113] Specifically, the clothes treatment device comprises a water inlet system which is communicated with the dispensing box assembly 1 and provides water flow into the dispensing box assembly 1, so that the clothes treatment agent and the released sterilization substance in the dispensing box assembly 1 are washed into the washing tub of the clothes treatment device, and the clothes treatment agent and the sterilization substance are facilitated to act on the clothes in the washing tub.
[0114] The clothes treatment device of the present application can make the water flow in the clothes treatment device dissolved with sufficient sterilization substance by arranging the dispensing box assembly 1 of the present application, so that the sterilization substance has strong sterilization and disinfection functions and can effectively sterilize and disinfect the inside of the clothes treatment device.
[0115] The above description is only the preferred embodiment of the present application, and does not limit the present application in any form. Although the present application has been disclosed as above with the preferred embodiment, it is not intended to limit the present application. Any person skilled in the art can make some changes or modifications to the above-mentioned technical content without departing from the technical solution of the present application, and any simple modification, equivalent change and modification of the above-mentioned embodiment based on the technical essence of the present application are still within the scope of the present application.
Claims
1. A dispensing box assembly, comprising: a dispensing box having a dispensing cavity for dispensing a laundry treatment agent, a sterilization device for releasing a sterilization substance, characterized in that the dispensing box assembly comprises a mounting bracket arranged in the dispensing cavity; a water passing groove arranged on the mounting bracket, the water passing groove being in communication with the dispensing cavity; the sterilization device being rotatably arranged in the water passing groove; a water draining mechanism for draining water in the dispensing cavity; the water draining mechanism being arranged on a lower part of the mounting bracket away from an opening of the water passing groove; the water draining mechanism comprising a siphon tube and a siphon cap, the siphon tube being in communication and arranged on a bottom wall of the dispensing box, and the siphon cap being arranged on the mounting bracket for surrounding the siphon tube to form a siphon passage for liquid flowing out of the dispensing cavity; the dispensing box further comprising a blocking plate arranged in the dispensing box, one end of the blocking plate being connected to a bottom of the dispensing box and the other end of the blocking plate extending towards an open side of the dispensing box, the blocking plate being located between the siphon tube and a first side wall of the water passing groove, and gaps being formed between the blocking plate, the first side wall and the siphon tube.
2. A dispensing box assembly according to claim 1, wherein: a mounting shaft is arranged in the dispensing cavity, and the sterilization device is rotatably arranged on the mounting shaft and rotates around the mounting shaft as a rotation axis.
3. A dispensing box assembly according to claim 2, wherein: two ends of the mounting shaft are respectively clamped on oppositely arranged inner cavity walls of the dispensing cavity, and the sterilization device is arranged on the mounting shaft, the central axis of the sterilization device coinciding with the central axis of the mounting shaft.
4. A dispensing box assembly according to claim 3, wherein: the sterilization device is in a columnar structure, a vane structure or a spherical structure.
5. A dispensing box assembly according to any one of claims 1 to 4, wherein: a water inlet mechanism for supplying water into the dispensing cavity is further included, and the sterilization device is rotatably arranged on a water path between the water inlet mechanism and the water draining mechanism.
6. A dispensing box assembly according to claim 5, wherein: the dispensing box is open at a top part thereof, the water inlet mechanism can supply water into one end of the open part of the dispensing box, and the sterilization device is arranged close to the one end of the open part of the dispensing box.
7. A dispensing box assembly according to claim 6, wherein: the water inlet mechanism comprises a water inlet port for being in communication with the open part of the dispensing box, the water inlet port being arranged opposite to the one end of the open part of the dispensing box, and the sterilization device being arranged opposite to the water inlet port.
8. A dispensing box assembly according to claim 1, wherein: an opening for being in communication with the dispensing cavity is formed on the water passing groove, and the sterilization device is arranged at one end of the opening. 9.A laundry treating apparatus, characterized by: the dispensing box assembly has any one of the features of the dispensing box assembly as claimed in any one of claims 1 to 8.
Citation Information
Patent Citations
Silver ion eluting device for washing machine
JP2010119632A
Washing machine
WO2021085162A1