Laundry treating apparatus
By introducing probiotic atomization components into the clothing treatment equipment, and using atomization vibration device to send probiotic liquid into the clothing storage cavity, the damage problem of high-temperature sterilization to the clothing is solved, and odor removal and material protection are achieved.
Patent Information
- Application Number
- CN202410121239.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-01-29
- Publication Date
- 2025-07-29
AI Technical Summary
In the prior art, high-temperature sterilization methods are prone to damage to clothes and are difficult to effectively remove odors in the washing machine.
Probiotic atomization components, including a liquid storage box and atomization vibration device, are used to atomize the probiotic liquid and send it into the clothing storage cavity. The antibacterial effect of probiotics prevents odor and keep the clothing material smooth and silky.
Effectively inhibit the generation of odor in the washing machine, protect the material of clothing, save the amount of probiotic liquid, reduce waste, and reduce maintenance costs.
Smart Images

Figure CN120384393A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of clothing treatment, and specifically provides a clothing treatment device. Background Art
[0002] When a washing machine is used for a long time, especially in a humid environment, it is very easy to have an odor problem. This is mainly because after washing, there may be residual moisture in the dead corners such as the inner wall, seal ring and drain pipe of the washing machine, and the water may contain unrinsed detergent, providing conditions for the growth of bacteria and mold, resulting in the generation of odor. To solve this problem, it is usually necessary to use a special washing machine cleaner every once in a while, and at the same time, it is necessary to keep the inside of the washing machine dry and often ventilate and dry it. Although some high-temperature sterilization washing machines can kill bacteria through high-temperature steam, this method may increase energy consumption, and has certain damage to the plastic parts and seal rings inside the washing machine, and at the same time will also cause certain damage to the clothes.
[0003] In summary, high-temperature sterilization in the prior art is likely to cause damage to clothes.
[0004] Correspondingly, there is a need in the art for a new clothing treatment device to solve the above problems. Summary of the Invention
[0005] The present invention aims to solve the above technical problems, that is, to solve the problem that high-temperature sterilization in the prior art is likely to cause damage to clothes.
[0006] The present invention provides a clothing treatment device, which includes a clothing accommodation cavity and a probiotic atomization assembly. The probiotic atomization assembly includes a liquid storage tank and an atomization vibration device.
[0007] The atomization vibration device is configured to be able to atomize the probiotic liquid in the liquid storage tank and send it into the clothing accommodation cavity.
[0008] In a preferred technical solution of the above clothing treatment device, the probiotic atomization assembly further includes a feeding device and a quantitative storage box. The liquid storage tank is connected to the feeding device, the feeding device is connected to the quantitative storage box, and the feeding device can introduce a quantitative probiotic liquid into the quantitative storage box;
[0009] The atomization vibration device is connected to the quantitative storage box and can atomize the liquid in the quantitative storage box and send it into the clothing accommodation cavity.
[0010] In the preferred technical solution of the above-mentioned laundry treatment device, the probiotic atomization assembly further includes a blower. The atomization vibration device is located below the quantitative storage box. A first mist outlet is provided above the quantitative storage box, and the first mist outlet is communicated with the laundry accommodation chamber. The blower is arranged opposite to the first mist outlet.
[0011] In the preferred technical solution of the above-mentioned laundry treatment device, the atomization vibration device includes an atomization sheet and a driving unit connected to each other.
[0012] An installation opening is provided below the quantitative storage box, and the installation opening is communicated with a first chamber in the quantitative storage box. The atomization sheet is hermetically installed at the installation opening.
[0013] In the preferred technical solution of the above-mentioned laundry treatment device, a partial area of the lower inner wall of the quantitative storage box is bent downward to form a second chamber. The first chamber and the second chamber are communicated with each other, and the installation opening is provided below the second chamber.
[0014] In the preferred technical solution of the above-mentioned laundry treatment device, the probiotic atomization assembly further includes a connecting pipe, and the connecting pipe is communicated with the laundry accommodation chamber. The atomization vibration device is arranged inside the connecting pipe.
[0015] In the preferred technical solution of the above-mentioned laundry treatment device, the probiotic atomization assembly further includes a feeding device and a connecting pipe. The liquid storage tank is connected to the feeding device. The connecting pipe communicates the feeding device and the laundry accommodation chamber. The connecting pipe is configured to accommodate a preset volume of probiotic liquid. The atomization vibration device is arranged at the end of the connecting pipe and can atomize the liquid and send it into the laundry accommodation chamber.
[0016] In the preferred technical solution of the above-mentioned laundry treatment device, the probiotic atomization assembly includes a connecting pipe and a water diversion member.
[0017] One end of the connecting pipe is communicated with the liquid storage tank, and the other end of the connecting pipe is connected to the atomization vibration device. One end of the water diversion member extends into the bottom of the liquid storage tank, and the other end of the water diversion member passes through the connecting pipe and is connected to the atomization vibration device to introduce the water in the liquid storage tank to the atomization vibration device.
[0018] In the preferred technical solution of the above-mentioned laundry treatment device, the atomization vibration device includes an atomization sheet and a mounting member. The mounting member mounts the atomization sheet to the connecting pipe. A plurality of spray holes are provided on the atomization sheet, and the spray holes release the liquid into the laundry accommodation chamber.
[0019] In the preferred technical solution of the above-mentioned clothing treatment device, the clothing treatment device further includes a heating device, an air duct, and a blower.
[0020] Both ends of the air duct are connected to the clothing accommodation cavity to form a circulating air path, and the blower and the heating device are arranged in the air duct.
[0021] In the preferred technical solution of the above-mentioned clothing treatment device, the clothing treatment device includes a cabinet body, a clothing accommodation cavity is formed inside the cabinet body, and the probiotic atomization assembly is detachably connected to the inside of the cabinet body.
[0022] In the preferred technical solution of the above-mentioned clothing treatment device, the liquid storage tank includes a housing, a liquid cavity is arranged inside the housing for accommodating probiotic liquid, an installation port is further arranged on the housing, the installation port is communicated with the liquid cavity, the atomization vibration device includes an atomization sheet, and the atomization sheet is arranged at the installation port and can atomize the probiotic liquid and send it into the cabinet body.
[0023] In the preferred technical solution of the above-mentioned clothing treatment device, a receiving groove is arranged inside the cabinet body, the housing is detachably arranged in the receiving groove, and the installation port faces the inside of the cabinet body.
[0024] In the preferred technical solution of the above-mentioned clothing treatment device, a first clamping member is arranged on the housing, a second clamping member is arranged in the receiving groove, and the housing is connected to the receiving groove through clamping of the first clamping member and the second clamping member.
[0025] In the preferred technical solution of the above-mentioned clothing treatment device, the installation port is located above one side of the housing and faces the inside of the cabinet body. A water guiding member is arranged inside the housing. One end of the water guiding member abuts against the bottom of the housing, the other end of the water guiding member abuts against the top of the housing, and the water guiding member covers the atomization sheet.
[0026] In the preferred technical solution of the above-mentioned clothing treatment device, a fixing member is further arranged inside the housing. One end of the fixing member abuts against the inner wall of the housing, and the other end of the fixing member abuts against the water guiding member to make the water guiding member contact the atomization sheet.
[0027] In the preferred technical solution of the above-mentioned clothing treatment device, the probiotic atomization assembly further includes a mounting member, the atomization sheet is sleeved inside the mounting member, and the atomization sheet is snap-fitted and installed at the installation port through the mounting member.
[0028] In the preferred technical solution of the above-mentioned clothing treatment device, the probiotic atomization component further includes a first conductive member, which is disposed on the outer peripheral side of the mounting member and passes through the mounting member to be connected to the atomization sheet. A second conductive member is disposed in the receiving groove of the cabinet body. The housing is embedded in the receiving groove, and the first conductive member is connected to the second conductive member.
[0029] In the preferred technical solution of the above-mentioned clothing treatment device, a sealing ring is disposed between the mounting member and the atomization sheet, and the sealing ring sleevedly wraps the outer periphery of the atomization sheet.
[0030] In the case of adopting the above technical solution, the clothing treatment device includes a clothing receiving cavity and a probiotic atomization component. The probiotic atomization component includes a liquid storage tank and an atomization vibration device. The atomization vibration device is configured to atomize the probiotic liquid in the liquid storage tank and send it into the clothing receiving cavity. By atomizing the probiotic liquid and sending it into the clothing receiving cavity, the present invention can inhibit bacteria in the clothing receiving cavity, avoid generating peculiar smells, effectively remove the peculiar smells of clothes without damaging the clothing material, and make the clothes smoother and silkier.
[0031] Furthermore, the present invention can also atomize a quantitative probiotic liquid through the setting of a feeding device and a quantitative storage box. Since the probiotic liquid is expensive, atomizing the quantitative liquid can save costs and reduce the ineffective waste of probiotics.
[0032] Furthermore, the present invention can also timely send the atomized probiotic liquid into the clothing receiving cavity through the opposite setting of the blower and the mist outlet. And through the setting of the blower, the atomized probiotic liquid can be more evenly distributed in the clothing receiving cavity.
[0033] Furthermore, the second chamber in the quantitative storage box of the present invention is lower than the first chamber, and the mounting hole of the atomization sheet is disposed below the second chamber. The liquid in the first chamber can completely flow into the second chamber and be atomized in the second chamber, avoiding liquid residue.
[0034] Furthermore, the probiotic atomization component of the present invention is detachably disposed in the cabinet, which is convenient for installation and convenient for users to add liquid after the probiotics are used up.
[0035] Furthermore, the atomization sheet of the probiotic atomization component of the present invention is disposed above one side of the housing. By guiding the water in the housing to the atomization sheet step by step through a water guiding member, it can, to a certain extent, avoid waste caused by excessive liquid atomized by the atomization sheet.
[0036] Further, in the present invention, the atomizing sheet is sleeved inside the mounting member, and the first conductive member passes through the mounting member and is connected to the atomizing sheet, so that the first conductive member, the atomizing sheet and the mounting member form an integral whole. After the atomizing sheet fails, only the integral whole composed of the first conductive member, the atomizing sheet and the mounting member needs to be replaced, without replacing the driving unit of the atomizing sheet. After replacement, by connecting the new first conductive member to the second conductive member, the replaced atomizing sheet can still work, reducing the maintenance cost.
[0037] Solution 1. A laundry treatment device, characterized in that the laundry treatment device includes a laundry receiving cavity and a probiotic atomizing assembly, and the probiotic atomizing assembly includes a liquid storage tank and an atomizing vibration device.
[0038] The atomizing vibration device is configured to atomize the probiotic liquid in the liquid storage tank and send it into the laundry receiving cavity.
[0039] Solution 2. The laundry treatment device according to Solution 1, characterized in that the probiotic atomizing assembly further includes a feeding device and a quantitative storage box. The liquid storage tank is connected to the feeding device, the feeding device is connected to the quantitative storage box, and the feeding device can introduce a quantitative probiotic liquid into the quantitative storage box;
[0040] The atomizing vibration device is connected to the quantitative storage box and can atomize the liquid in the quantitative storage box and send it into the laundry receiving cavity.
[0041] Solution 3. The laundry treatment device according to Solution 2, characterized in that the probiotic atomizing assembly further includes a blower. The atomizing vibration device is located below the quantitative storage box, a first mist outlet is provided above the quantitative storage box, the first mist outlet is communicated with the laundry receiving cavity, and the blower is oppositely arranged with respect to the first mist outlet.
[0042] Solution 4. The laundry treatment device according to Solution 2, characterized in that the atomizing vibration device includes an atomizing sheet and a driving unit connected to each other.
[0043] An installation opening is provided below the quantitative storage box, and the installation opening is communicated with a first chamber in the quantitative storage box, and the atomizing sheet is hermetically installed at the installation opening.
[0044] Solution 5. The laundry treatment device according to Solution 4, characterized in that a partial area of the lower inner wall of the quantitative storage box is bent downward to form a second chamber, the first chamber is communicated with the second chamber, and the installation opening is provided below the second chamber.
[0045] Solution 6. The clothing treatment device according to Solution 2, characterized in that the probiotic atomization assembly further includes a connecting pipe, the connecting pipe is communicated with the clothing accommodation cavity, and the atomization vibration device is arranged in the connecting pipe.
[0046] Solution 7. The clothing treatment device according to Solution 1, characterized in that the probiotic atomization assembly further includes a feeding device and a connecting pipe, the liquid storage tank is connected to the feeding device, the connecting pipe communicates the feeding device and the clothing accommodation cavity, the connecting pipe is arranged to be able to accommodate a preset volume of probiotic liquid, and the atomization vibration device is arranged at the end of the connecting pipe and can atomize the liquid and send it into the clothing accommodation cavity.
[0047] Solution 8. The clothing treatment device according to Solution 1, characterized in that the probiotic atomization assembly includes a connecting pipe and a water guiding member.
[0048] One end of the connecting pipe is communicated with the liquid storage tank, the other end of the connecting pipe is connected to the atomization vibration device, one end of the water guiding member extends into the bottom of the liquid storage tank, and the other end of the water guiding member passes through the connecting pipe and is connected to the atomization vibration device to introduce the water in the liquid storage tank to the atomization vibration device.
[0049] Solution 9. The clothing treatment device according to Solution 8, characterized in that the atomization vibration device includes an atomization sheet and a mounting member, the mounting member mounts the atomization sheet to the connecting pipe, and a plurality of spray holes are arranged on the atomization sheet, and the spray holes release the liquid into the clothing accommodation cavity.
[0050] Solution 10. The clothing treatment device according to any one of Solutions 1 to 7, characterized in that the clothing treatment device further includes a heating device, an air duct and a fan.
[0051] Both ends of the air duct are communicated with the clothing accommodation cavity to form a circulating air path, and the fan and the heating device are arranged in the air duct.
[0052] Solution 11. The clothing treatment device according to Solution 1, characterized in that the clothing treatment device includes a cabinet body, a clothing accommodation cavity is formed in the cabinet body, and the probiotic atomization assembly is detachably connected to the inside of the cabinet body.
[0053] Solution 12. The laundry treatment device according to Solution 11, characterized in that the liquid storage tank includes a housing, a liquid chamber is provided in the housing for containing probiotic liquid, an installation port is further provided on the housing, the installation port is communicated with the liquid chamber, the atomization vibration device includes an atomization sheet, and the atomization sheet is arranged at the installation port and can atomize and send the probiotic liquid into the cabinet body.
[0054] Solution 13. The laundry treatment device according to Solution 12, characterized in that a receiving groove is provided in the cabinet body, the housing is detachably arranged in the receiving groove, and the installation port faces the inside of the cabinet body.
[0055] Solution 14. The laundry treatment device according to Solution 13, characterized in that a first clamping member is provided on the housing, a second clamping member is provided in the receiving groove, and the housing is connected to the receiving groove by clamping through the first clamping member and the second clamping member.
[0056] Solution 15. The laundry treatment device according to Solution 12, characterized in that the installation port is located above one side of the housing and faces the inside of the cabinet body, a water guiding member is provided in the housing, one end of the water guiding member abuts against the bottom of the housing, the other end of the water guiding member abuts against the top of the housing, and the water guiding member covers the atomization sheet.
[0057] Solution 16. The laundry treatment device according to Solution 15, characterized in that a fixing member is further provided in the housing, one end of the fixing member abuts against the inner wall of the housing, and the other end of the fixing member abuts against the water guiding member to make the water guiding member contact the atomization sheet.
[0058] Solution 17. The laundry treatment device according to Solution 12, characterized in that the probiotic atomization assembly further includes a mounting member, the atomization sheet is sleeved in the mounting member, and the atomization sheet is snap-fitted and installed at the installation port through the mounting member.
[0059] Solution 18. The laundry treatment device according to Solution 17, characterized in that the probiotic atomization assembly further includes a first conductive member, the first conductive member is arranged on the outer peripheral side of the mounting member and passes through the mounting member to be connected to the atomization sheet, a second conductive member is provided in the receiving groove of the cabinet body, the housing is embedded in the receiving groove, and the first conductive member is connected to the second conductive member.
[0060] Solution 19. The laundry treatment device according to Solution 17, characterized in that a sealing ring is provided between the mounting member and the atomization sheet, and the sealing ring is sleeved and wrapped around the outer periphery of the atomization sheet. Brief Description of the Drawings
[0061] The preferred embodiments of the present invention will be described below with reference to the accompanying drawings, in which:
[0062] Figure 1 is a schematic structural diagram of a laundry treatment device according to the first preferred embodiment of the present invention;
[0063] Figure 2 is Figure 1 a schematic structural diagram of the probiotic atomization assembly in;
[0064] Figure 3 is Figure 2 an enlarged structural view of part A in;
[0065] Figure 4 is a schematic structural diagram of a probiotic atomization assembly according to another preferred embodiment;
[0066] Figure 5 is Figure 4 an enlarged structural view of part B in;
[0067] Figure 6 is a schematic structural diagram of a laundry treatment device according to the second preferred embodiment;
[0068] Figure 7 is a schematic structural diagram of a laundry treatment device according to the third preferred embodiment;
[0069] Figure 8 is a schematic structural diagram of a probiotic atomization assembly;
[0070] Figure 9 is a schematic structural diagram of a laundry treatment device according to the fourth preferred embodiment;
[0071] Figure 10 is Figure 9 a schematic structural diagram of the probiotic atomization assembly in;
[0072] Figure 11 is a schematic diagram of a laundry treatment device according to the fifth preferred embodiment of the present invention;
[0073] Figure 12 is Figure 11 a schematic diagram of the accommodation groove and the probiotic atomization assembly in;
[0074] Figure 13 is a structural diagram of the probiotic atomization assembly from the first perspective;
[0075] Figure 14 is a structural diagram of the probiotic atomization assembly from the second perspective;
[0076] Figure 15 is a structural diagram of the probiotic atomization assembly from the third perspective;
[0077] Figure 16 It is the internal structure diagram of the probiotic atomization component;
[0078] Reference numerals:
[0079] 1. Clothing treatment barrel; 11. Inner barrel; 111. Clothing accommodation cavity; 12. Outer barrel; 2. Probiotic atomization component; 21. Liquid storage tank; 22. Feeding device; 23. First blower; 24. Quantitative storage box; 241. Liquid inlet; 242. First mist outlet; 243. First chamber; 244. Second chamber; 245. Installation port; 246. Second mist outlet; 2461. First valve; 247. Air inlet duct; 2471. Second valve; 25. Atomization vibration device; 251. Atomization sheet; 2511. Spray holes; 252. Mounting member; 2521. Limiting portion; 2522. First conductive member; 253. Sealing member; 26. Connecting pipe; 261. Nozzle; 262. First pipe section; 2621. Notch; 263. Second pipe section; 27. Second blower; 28. Water diversion member; 29. Housing; 291. First shell; 292. Second shell; 293. First clamping member; 294. Limiting member; 295. Liquid cavity; 296. Fixing member; 297. Sealing ring; 298. Installation port; 3. Box body; 4. Drying component; 41. Heating device; 42. Air duct; 5. Water inlet component; 51. Water inlet valve; 52. Detergent feeding module; 53. Water inlet pipe; 6. Cabinet; 61. Accommodating groove; 611. Disassembly and assembly portion; 612. Second clamping member. Detailed implementation manners
[0080] The preferred implementation manners of the present invention will be described below with reference to the accompanying drawings. Those skilled in the art should understand that these implementation manners are only used to explain the technical principle of the present invention and are not intended to limit the protection scope of the present invention. Those skilled in the art can make adjustments according to needs to adapt to specific application scenarios.
[0081] It should be noted that in the description of the present invention, the terms indicating directions or positional relationships such as "upper", "lower", "left", "right", etc. are based on the directions or positional relationships shown in the drawings. This is only for the convenience of description and does not indicate or imply that the device or element must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation to the present invention. In addition, the terms "first", "second", "third", "fourth", "fifth" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance.
[0082] In addition, it should be noted that in the description of the present invention, unless otherwise clearly defined and limited, the terms "connected", "connected to", and "communicated with" should be understood in a broad sense. For example, it may be a fixed connection or a detachable connection; it may be directly connected or indirectly connected through an intermediate medium, and it may be the communication inside two components. For those skilled in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.
[0083] First, refer to Figure 1 , as Figure 1 shown, the clothing treatment device of the present invention includes a clothing accommodation cavity 111 and a probiotic atomization assembly 2. The probiotic atomization assembly 2 includes a liquid storage tank 21 and an atomization vibration device 25. The atomization vibration device 25 is arranged to be able to atomize the probiotic liquid in the liquid storage tank 21 and send it into the clothing accommodation cavity 111. After the probiotic liquid is atomized and sent into the clothing accommodation cavity 111, it can inhibit bacteria in the clothing accommodation cavity 111, avoid generating peculiar smells, effectively remove the peculiar smells of clothes without damaging the clothing material, and make the clothes smoother and silkier.
[0084] Refer to Figure 1 and Figure 2 , the clothing treatment device of the first preferred embodiment is a washing machine, which includes a cabinet 3 and a clothing treatment tub 1 arranged in the cabinet 3. The clothing treatment tub includes an outer tub 12 and an inner tub 11 sleeved inside the outer tub 12. The inner tub 11 is the clothing accommodation cavity 111. The probiotic atomization assembly 2 further includes a feeding device 22 and a quantitative storage box 24. The liquid storage tank 21 is connected to the feeding device 22, and the feeding device 22 is connected to the quantitative storage box 24. The feeding device 22 is a feeding pump that can introduce a quantitative probiotic liquid into the quantitative storage box 24; the atomization vibration device 25 is connected to the quantitative storage box 24 and can atomize the liquid in the quantitative storage box 24 and send it into the clothing accommodation cavity 111. The probiotic atomization assembly 2 further includes a blower. The atomization vibration device 25 is located below the quantitative storage box 24. A first mist outlet 242 is arranged above the quantitative storage box 24. The first mist outlet 242 is communicated with the clothing accommodation cavity 111. The blower is arranged opposite to the first mist outlet 242.
[0085] Specifically, a liquid inlet 241 is provided in the middle of the left side of the quantitative storage box 24. The liquid inlet 241 is connected to the dispensing device 22 through a pipeline or directly. The probiotic liquid in the liquid storage tank 21 enters the quantitative storage box 24 through the liquid inlet 241 under the drive of the dispensing device 22. A first mist outlet 242 is provided above the right side of the quantitative storage box. A first fan 23 is provided above the left side of the quantitative storage box. The first fan 23 and the first mist outlet 242 are arranged oppositely left and right. The atomizing and vibrating device 25 is arranged at the bottom of the quantitative storage box 24. When the atomizing and vibrating device 25 works, the water in the quantitative storage box 24 is decomposed into tiny water droplets through ultrasonic vibration, thereby generating a water mist. The ultrasonic vibration will propagate into the water to form eddies. These eddies will cause small fluctuations on the surface of the water and finally form tiny water droplets, which are released from the upper surface of the water. These tiny water droplets constitute the visible water mist. The first fan 23 blows the water mist to the first mist outlet 242. The first mist outlet 242 is connected to the outer barrel 12 through a connecting pipeline 26, and then the probiotic water mist is sent into the clothes receiving cavity 111. Due to the setting of the first fan 23, the probiotic water mist can be quickly sent to the clothes receiving cavity and can quickly fill the clothes receiving cavity 111. Since the probiotic liquid is expensive, atomizing a certain amount of the liquid can save costs and reduce the ineffective waste of probiotics.
[0086] Refer to Figure 3 , Further, in the clothes treatment device of the first preferred embodiment, the atomizing and vibrating device 25 includes an atomizing sheet 251 and a driving unit (not shown in the figure) connected to each other. An installation opening 245 is provided below the quantitative storage box 24. The installation opening 245 is connected to the first chamber 243 in the quantitative storage box 24. The atomizing sheet 251 is hermetically installed at the installation opening 245. Specifically, the atomizing sheet 251 is snap-fitted to the installation opening 245 through a mounting member 252. The atomizing sheet 251 is located below the installation opening 245. The mounting member 252 is fixedly connected to the outer wall of the quantitative storage box 24. The mounting member 252 is in a sleeve-like or tubular structure and can sleeved the atomizing sheet 251 inside. A sealing member 253 is sleeved between the mounting member 252 and the outer wall of the installation opening 245. The sealing member 253 is a sealing ring or sealant. The atomizing sheet 251 is located below or inside the installation opening 245 and can directly contact the probiotic liquid, and no holes are provided on the atomizing sheet 251 to prevent the leakage of the probiotic liquid or the direct atomization and spraying below the atomizing sheet 251. The driving unit includes a driving chip (not shown in the figure) and a circuit board (not shown) for driving the atomizing sheet 251.
[0087] Such as Figure 2As shown in the figure, in this preferred embodiment, a partial area of the lower inner wall of the quantitative storage box 24 bends downward to form a second chamber 244. The first chamber 243 and the second chamber 244 are connected and communicated. The installation port 245 is arranged below the second chamber 244. After the probiotic liquid is gradually atomized and the liquid decreases, the liquid in the first chamber 243 can completely flow into the second chamber 244 and be atomized in the second chamber 244 to avoid liquid residue. At the same time, the installation port 245 is arranged below the second chamber 244, and the atomization sheet 251 is installed at the installation port 245, so that there is always sufficient liquid above the atomization sheet 251 to avoid the atomization sheet 251 being exposed to the air to prevent damage or overheating.
[0088] Further, a spray head 261 is connected to the side of the connecting pipe 26 away from the first fog outlet 242. The spray head 261 can spray the atomized probiotic liquid onto the target area, covering the clothing accommodation cavity faster and reaching the clothing surface faster.
[0089] Next, refer to Figure 4 and Figure 5 In the probiotic atomization assembly of another preferred embodiment, air inlet ducts 247 and a second fog outlet 246 are arranged on two opposite sides of the second chamber 244. The second fog outlet 246 is arranged on the right side of the second chamber 244 and is connected and communicated with the second chamber 244. The second fog outlet 246 is also connected and communicated with the connecting pipe 26. A first valve 2461 is arranged in the second fog outlet 246. The air inlet duct 247 is arranged on the left side of the second chamber 244 and is connected and communicated with the second chamber 244. A second valve 2471 is arranged at the connection between the air inlet duct 247 and the second chamber 244. The other end of the air inlet duct 247 is connected to a second fan 27. When the atomization sheet starts to work, the first valve 2461 and the second valve 2471 are in the closed state. The liquid particles atomized from the upper surface of the liquid are blown by the first fan 23 to the first fog outlet 242 and finally sent into the clothing accommodation cavity 111. When the liquid interface in the quantitative storage box 24 is lower than the first valve 2461 and the second valve 2471, the first valve 2461 and the second valve 2471 are opened, and the second fan 27 is started to blow the atomized liquid particles into the second fog outlet 246, enter the connecting pipe 26 through the second fog outlet 246, and finally enter the clothing accommodation cavity 111. Based on the above structural settings, when the liquid interface in the quantitative storage box 24 is relatively low, not all of the atomized liquid particles can enter the clothing accommodation cavity 111 driven by the first fan 23. Therefore, driven by the second fan 27, all of them can enter the clothing accommodation cavity 111 to avoid residue and reduce unnecessary waste. The rest of the structure is the same as that of the probiotic atomization assembly of the first preferred embodiment and will not be elaborated here.
[0090] In another preferred embodiment, the inner wall of the lower part of the first chamber 243 slopes downward. The inner wall of the lower part of the first chamber 243 slopes downward gradually from the side far away from the second chamber 244 towards the side close to the second chamber 244, that is Figure 2 it slopes from left to right (not shown in the figure), so that the liquid in the first chamber 243 can completely flow into the second chamber 244.
[0091] Furthermore, as Figure 1 shown, the laundry treatment device further includes a water inlet assembly 5. The water inlet assembly 5 includes a water inlet valve 51, a detergent dispensing module 52 and a water inlet pipe 53. The water inlet valve can control the on-off state of the water inlet pipe 53. The detergent dispensing module 52 can dispense detergent into the water inlet pipe 53 and enter the laundry receiving cavity 111 together with the water in the water inlet pipe 53, which is convenient for users to use and improves the washing effect of the laundry.
[0092] Furthermore, the laundry treatment device further includes a drying assembly 4. The drying assembly 4 includes a heating device 41 and a heating device (not shown in the figure), an air duct 42 and a fan (not shown in the figure). Both ends of the air duct 42 are connected to the laundry receiving cavity 111 to form a circulating air path. The fan and the heating device 41 are arranged in the air duct 42 for drying the laundry.
[0093] Next, refer to Figure 6 As Figure 6 shown, the difference between the laundry treatment device of the second preferred embodiment and the laundry treatment device of the first preferred embodiment lies in the difference between the probiotic atomization assembly 2 and the atomization vibration device 25. The rest of the structural settings are the same. The probiotic atomization assembly 2 of the second preferred embodiment includes a liquid storage tank 21, a dispensing device 22, a quantitative storage box 24 and a connecting pipe 26 connected in sequence. The connecting pipe 26 is connected to the outer tub 12 to communicate with the laundry receiving cavity 111. The atomization vibration device 25 includes an atomization sheet 251 and a driving unit connected. The atomization sheet 251 is arranged in the connecting pipe 26 and is located near the connection of the connecting pipe 26 and the quantitative storage box 24. A plurality of spray holes (not shown in the figure) are arranged on the atomization sheet 251, which can spray the liquid in the quantitative storage box 24 into the connecting pipe 26 and then enter the laundry receiving cavity 111.
[0094] Next, refer to Figure 7 As Figure 7As shown in the figure, the difference between the laundry treatment device of the third preferred embodiment and that of the second preferred embodiment lies in that the atomizing sheet 251 is arranged in the connecting pipe 26 and is located near the connection between the connecting pipe 26 and the outer tub 12. A plurality of spray holes are provided on the atomizing sheet 251. The atomizing sheet 251 atomizes the liquid in the connecting pipe 26 and sprays it into the laundry receiving cavity 111. The quantitative storage box 24 is located below the connecting pipe 26. The connecting pipe 26 is connected to a certain area below the quantitative storage box 24, so that the liquid in the quantitative storage box 24 can enter the connecting pipe 26 by gravity. To a certain extent, the connecting pipe 26 functions as the second chamber 244 in the first preferred embodiment.
[0095] Those skilled in the art can understand that when the dosing device 22 doses a quantitative liquid into the quantitative storage box 24, the dosing amount is the capacity of the quantitative storage box 24 and the capacity of the connecting pipe 26. Alternatively, a control valve can be provided at the connection between the connecting pipe 26 and the quantitative storage box 24 to control the connection state between the connecting pipe 26 and the quantitative storage box 24, and the dosing amount is the capacity of the quantitative storage box 24. In this case, after the dosing device 22 doses a quantitative liquid, the dosing device 22 is closed, and then the control valve is opened, and the atomizing and vibrating device 25 can be started.
[0096] The atomizing sheet 251 is arranged in the connecting pipe 26. The driving unit of the atomizing sheet 251 is connected to the atomizing sheet 251 through a conductive member. The atomizing sheet 251 is arranged in the connecting pipe 26, and the driving unit is arranged outside the connecting pipe 26. The conductive member passes through the side wall of the connecting pipe 26 and is connected to the atomizing sheet 251. The conductive member can be a wire, a conductive metal column or sheet. The connection between the conductive member and the atomizing sheet 251 is sealed, and the gap at the connection between the conductive member and the connecting pipe 26 is sealed. Alternatively, the atomizing sheet 251 extends outward with two connecting end columns (not shown in the figure). The connecting end columns extend to the outside of the connecting pipe 26. The driving unit is connected to the atomizing sheet 251 through the connecting end columns. Avoidance grooves or holes for the connecting end columns are provided at the end of the connecting pipe 26. When the connecting pipe 26 is installed in place, the avoidance grooves or holes for the connecting end columns are sealed to prevent liquid leakage.
[0097] It should be noted that the present invention does not impose any restrictions on the specific structure of the probiotic atomization assembly 2. The structure of the probiotic atomization assembly 2 can also be as Figure 8As shown in the figure, the probiotic atomization assembly 2 includes a liquid storage tank 21, a dosing device 22, a connecting pipe 26, and an atomization vibration device 25. The liquid storage tank 21 is connected to the dosing device 22. The connecting pipe 26 communicates with the dosing device 22 and the clothing accommodation cavity 111. The connecting pipe 26 is configured to accommodate a preset volume of probiotic liquid. The atomization vibration device 25 is provided at the end of the connecting pipe 26 and can atomize the liquid and send it into the clothing accommodation cavity 111. The atomization sheet 251 is installed at the end of the connecting pipe 26 through a mounting member 252. The atomization sheet 251 is provided with spray holes, and the spray holes release the liquid into the clothing accommodation cavity 111.
[0098] Next, refer to Figure 9 and Figure 10 The difference between the clothing treatment device of the fourth preferred embodiment and the clothing treatment device of the first preferred embodiment lies in the difference between the probiotic atomization assembly 2 and the atomization vibration device 25. The rest of the structural settings are the same. The probiotic atomization assembly 2 of the clothing treatment device of the fourth preferred embodiment includes a liquid storage tank 21, a connecting pipe 26, and an atomization vibration device 25 provided at the end of the connecting pipe 26. One end of the connecting pipe 26 is connected to the liquid storage tank 21, and the other end of the connecting pipe 26 is connected to the atomization vibration device 25. The probiotic atomization assembly 2 further includes a water guiding member 28. One end of the water guiding member 28 extends into the bottom of the liquid storage tank 21, and the other end of the water guiding member 28 passes through the connecting pipe 26 and is connected to the atomization vibration device 25 to introduce the water in the liquid storage tank 21 to the atomization vibration device 25. The atomization vibration device 25 includes an atomization sheet 251 and a driving unit connected to each other. The mounting member 252 snaps and installs the atomization sheet 251 to the end of the connecting pipe 26. The water guiding member 28 is connected to the atomization sheet 251. The atomization sheet 251 is provided with a plurality of spray holes, and the spray holes release the liquid into the clothing accommodation cavity 111.
[0099] The water guiding member 28 is preferably made of cotton core material, and can also be sponge material, or other materials with water absorption and water conduction performance, as long as it can guide the water in the liquid storage tank 21 to the atomization sheet 251. Those skilled in the art can set it according to the actual situation.
[0100] Further, as Figure 10 shown, the connecting pipe includes a connected first pipe section 262 and second pipe section 263. The first pipe section 262 is located inside the liquid storage tank 21, and the second pipe section 263 is located outside the liquid storage tank 21 and communicates with the clothing accommodation cavity 111. A notch 2621 is provided on the left side below the first pipe section 262, so that the water guiding member 28 can come into contact with the water in the liquid storage tank 21 and conduct water guidance.
[0101] In another preferred embodiment, the connection pipe 26 may not be provided, and the liquid storage tank 21 is arranged in the clothing accommodation cavity 111. An atomizing vibration device 25 is directly arranged below the liquid storage tank 21, and the atomizing vibration device 25 directly atomizes the liquid and releases it into the clothing accommodation cavity 111.
[0102] It should be noted that the present invention does not impose any restrictions on the specific structure of the atomizing vibration device 25. The atomizing vibration device 25 can be an ultrasonic atomizer, a pressure atomizer, a resonance atomizer or a gas atomizer, and those skilled in the art can set it according to the actual situation.
[0103] In the embodiment provided with the quantitative storage box 24, a water level sensor can be arranged in the quantitative storage box 24, and the lowest water level limit is arranged in the second chamber 244, such as the lowest point of the first valve 2461. If the water level sensor senses the lowest water level, the controller of the clothing treatment device controls the first valve 2461 and the second valve 2471 to open, controls the second blower 27 to work, and after a preset time, controls the atomizing sheet 251 to stop working, because the atomizing sheet 251 can atomize the water at the lowest water level within the preset time, and timely controlling the atomizing sheet 251 to stop working can avoid the atomizing sheet 251 being exposed to the air, causing damage or overheating, and prolonging the service life.
[0104] Those skilled in the art can understand that although in this preferred embodiment, the clothing treatment device includes a clothing treatment tub 1, and a clothing accommodation cavity 111 is formed in the inner tub 11, this is not restrictive. It can also be that the clothing treatment tub 1 is not included, and a clothing accommodation cavity 111 is directly formed in the cabinet 3. The clothing treatment device can be a washing machine, a dryer, a washing and drying integrated machine, a clothing care cabinet, a clothing storage cabinet or a care shoe cabinet, etc., and those skilled in the art can set it according to the actual situation.
[0105] Next, refer to Figure 11 , as Figure 11 shown, the clothing treatment device of the fifth preferred embodiment of the present invention includes a cabinet 6 and a probiotic atomizing component 2 detachably arranged in the cabinet 6. The probiotic atomizing component 2 is arranged to be able to provide atomized liquid particles into the cabinet 6. There is a clothing accommodation cavity 111 inside the cabinet 6 for storing or hanging clothes. The probiotic atomizing component 2 sprays atomized liquid particles into the cabinet 6. Without damaging the clothes, the probiotic liquid particles can play the role of antibacterial in the cabinet 6 and on the clothes, avoid the growth of bacteria, and thus prevent the generation of odors. At the same time, the probiotic atomizing component 2 is detachably arranged in the cabinet 6, which is convenient for installation and convenient for users to add liquid after the probiotics are used up.
[0106] Next, refer to Figures 13 to 16 , as Figures 13 to 16As shown in the figure, the liquid storage tank includes a housing 29. The atomization vibration device 25 includes an atomization sheet 251. A liquid chamber 295 is provided inside the housing 29 for containing probiotic liquid. An installation port 298 is also provided on the housing 29. The installation port 298 is communicated with the liquid chamber 295. The atomization sheet 251 is arranged at the installation port 298 and can atomize the probiotic liquid and send it into the cabinet 6. Specifically, the atomization sheet 251 is connected to a driving unit (not shown in the figure). The driving unit includes a driving chip and a driving circuit board. The driving unit is used to drive the atomization sheet 251 to vibrate. A plurality of spray holes 2511 are provided on the atomization sheet 251. When the atomization sheet 251 works, the atomized probiotic liquid particles are sent into the clothing accommodation chamber 111 inside the cabinet 6 through the spray holes 2511.
[0107] Further, as Figure 16 shown, the installation port 298 is located above one side of the housing 29 and faces the inside of the cabinet 6. Taking Figure 16 the direction shown as the reference direction, the installation port 298 is located above the right side of the housing 29 and faces the right side. Taking Figure 11 the direction shown as the reference direction, the installation port 298 faces the front side. A water guiding member 28 is provided inside the housing 29. One end of the water guiding member 28 abuts against the bottom of the housing 29, and the other end of the water guiding member 28 abuts against the top of the housing 29, and the water guiding member 28 covers the atomization sheet 251. Specifically, the water guiding member 28 is a cotton core. The water guiding member 28 is located on the right side inside the liquid chamber 295. Its lower end abuts against the bottom wall of the liquid chamber 295 and extends along the right inner wall of the liquid chamber 295 to the installation port 298 to cover the atomization sheet 251, and finally extends to the top wall of the liquid chamber 295. Based on this, the water guiding member 28 can guide the liquid in the liquid chamber 295 to the atomization sheet 251 to be atomized by the atomization sheet 251. At the same time, the water guiding member 28 can continuously guide a small amount of water to the atomization sheet 251, which can, to a certain extent, avoid waste caused by excessive atomized liquid of the atomization sheet 251.
[0108] In another feasible embodiment, the installation port 298 is located below the housing 29, and the atomization sheet 251 is arranged at the installation port 298 and is located below the housing 29. In this case, the water guiding member 28 may not be provided. Regarding the specific installation positions of the installation port 298 and the atomization sheet 251, it only needs to face the inside of the cabinet 6, and those skilled in the art can set it according to the actual situation.
[0109] In another feasible embodiment, the lower inner wall of the housing 29 slopes downward gradually from left to right, and the lower end of the water diversion member 28 is connected to the lowest point of the lower inner wall of the housing 29. Based on this, all the liquid in the liquid chamber 295 can be guided to the atomizing sheet 251 for atomization, avoiding liquid residue in the liquid chamber 295. A water level sensor is provided at the highest point of the inclined inner wall below the housing 29. When the height of the liquid is lower than the highest point of the inclined inner wall below, the water level sensor transmits a signal to the controller of the laundry treatment device, and the controller controls the indicator of the laundry treatment device to give a prompt so that the user can be aware and add liquid in time. A liquid injection port (not shown in the figure) is provided above the housing 29, and a liquid discharge port (not shown in the figure) is provided below the housing 29. The liquid discharge port is located at the lowest point of the inclined inner wall below. When the probiotic liquid is almost used up, the user can discharge the remaining small amount of probiotic liquid through the liquid discharge port, and add other disinfectants, perfumes, plant essential oils, etc. to the liquid chamber 295 through the liquid injection port. The setting of the liquid discharge port can discharge the remaining liquid and avoid mixing of two different liquids. Valves (not shown in the figure) for controlling their opening and closing are provided in both the liquid injection port and the liquid discharge port.
[0110] Continue to refer to Figure 16 , a fixing member 296 is further provided in the housing 29. One end of the fixing member 296 abuts against the inner wall of the housing 29, and the other end of the fixing member 296 abuts against the water diversion member 28 so that the water diversion member 28 contacts the atomizing sheet 251. Specifically, the fixing member 296 is a spring. As Figure 6 shown, the left end of the fixing member 296 abuts against the left inner wall of the liquid chamber 295, and the right end of the fixing member 296 abuts against the water diversion member 28. When the atomizing sheet 251, the water diversion member 28, and the fixing member 296 are installed in place, the spring is in a compressed state and generates an outward expanding force. The fixing member 296 can press the water diversion member 28 against the atomizing sheet 251, so that the water diversion member 28 and the atomizing sheet 251 are in full contact, enabling the atomizing sheet 251 to atomize the water guided by the water diversion member 28.
[0111] It should be noted that the present invention does not impose any restrictions on the specific structure of the fixing member 296. It can be a spring or a columnar structure. The shapes of the upper and lower cross-sections of the columnar structure are the same as the shape of the atomizing sheet 251, and those skilled in the art can set it according to the actual situation.
[0112] Continue to refer to Figures 13 to 16 , as Figures 13 to 16 shown, the probiotic atomization assembly 2 further includes a mounting member 252. The atomizing sheet 251 is sleeved in the mounting member 252, and the atomizing sheet 251 is snap-fitted to the mounting port 298 through the mounting member 252. Specifically, the mounting member 252 is a circular ring structure. As Figure 6As shown, the hole in the middle has a larger left side than the right side, so that a limiting portion 2521 is formed on the right side. The mounting member 252 is threadedly connected to the outer side wall of the mounting opening 298. After the connection is in place, the mounting member 252 buckles the atomizing sheet 251 onto the mounting opening 298, and the limiting portion 2521 prevents the atomizing sheet 251 from falling off.
[0113] Furthermore, a sealing ring 297 is provided between the mounting member 252 and the atomizing sheet 251. The sealing ring 297 sleevedly wraps the outer periphery of the atomizing sheet 251. Specifically, an annular groove is provided on the inner side of the sealing ring 297, and the annular groove sleevedly includes the outer periphery of the atomizing sheet 251. The left side of the sealing ring 297 abuts against the right shell port at the mounting opening 298, and the right side of the sealing ring 297 abuts against the limiting portion 2521. The setting of the sealing ring 297 can prevent the water at the water diversion member 28 from leaking through the gap between the outer peripheral walls of the mounting member 252 and the mounting opening 298, and improves the sealing performance.
[0114] Next, refer to Figures 11 to 3 , a receiving groove 61 is provided in the cabinet body 6, and the shell 29 is detachably arranged in the receiving groove 61. Specifically, a first clamping member 293 is provided on the shell 29, and a second clamping member 612 is provided in the receiving groove 61. The shell 29 is connected to the receiving groove 61 by clamping through the first clamping member 293 and the second clamping member 612. The first clamping member 293 is a clamping groove, and the second clamping member 612 is a clamping post or block matching the clamping groove. Of course, this is not restrictive. It can also be that the first clamping member 293 is a clamping post or block, and the second clamping member 612 is a clamping groove. Those skilled in the art can set it according to the actual situation.
[0115] Based on the above structural settings, it is convenient to disassemble and assemble the probiotic atomizing assembly 2, and it is convenient to add liquid to the liquid chamber 295.
[0116] It should be noted that the present invention does not impose any restrictions on the specific installation position of the probiotic atomizing assembly 2 in the cabinet body 6 and its specific connection method with the cabinet body 6. The probiotic atomizing assembly 2 can also be arranged on the top of the cabinet body 6 or on the door body of the cabinet body (not shown in the figure). It can be embedded in the receiving groove 61 by a clamping method, or directly connected to the inner wall of the cabinet body 6, or connected to the inner wall of the cabinet body 6 by bolts or screws. Those skilled in the art can set it according to the actual situation.
[0117] Furthermore, as Figure 12As shown, on the left and right sides of the accommodation groove 61, disassembly and assembly parts 611 extend outward respectively. The disassembly and assembly parts 611 are also groove-shaped structures arranged on the inner wall of the cabinet body 6. The cross-sectional shape of the disassembly and assembly parts 611 is semi-circular. When disassembling the probiotic atomization component 2, the user can put his hand into the disassembly and assembly parts 611, which is convenient for disassembling the probiotic atomization component 2. It should be noted that the present invention does not impose any restrictions on the shape of the disassembly and assembly parts 611. Its cross-sectional shape can be semi-circular, square, or fan-shaped. Those skilled in the art can set it according to the actual situation.
[0118] Refer to Figure 12 and Figure 13 , the probiotic atomization component 2 further includes a first conductive member 2522. The first conductive member 2522 is arranged on the outer peripheral side of the mounting member 252 and passes through the mounting member 252 to be connected to the atomization sheet 251. A second conductive member (not shown in the figure) is arranged in the accommodation groove 61 of the cabinet body 6. The housing 29 is embedded in the accommodation groove 61, and the first conductive member 2522 is connected to the second conductive member. Specifically, the first conductive member 2522 is a conductive metal. One end of it is connected to the atomization sheet 251, and the other end passes through the peripheral side wall of the mounting member 252 and is exposed outside. The second conductive member is a contact structure. The contact structure is connected to the driving unit of the atomization sheet 251, and the driving unit is connected to the power supply of the laundry treatment device. When the housing 29 is embedded in the accommodation groove 61 and is snapped in place, the conductive metal and the contact structure are in contact connection to play a role in transmitting electricity. The number of both the first conductive member 2522 and the second conductive member is two. One is connected to the positive pole of the power supply, and the other is connected to the negative pole of the power supply, so that the atomization sheet 251 can work normally.
[0119] In another preferred embodiment, the first conductive member 2522 includes a connected metal sheet and a conductive wire. The metal sheet is arranged on the outer periphery of the mounting member 252 and is connected to the atomization sheet 251 through the conductive wire. The conductive wire passes through the peripheral side wall of the mounting member 252.
[0120] In the embodiment where the sealing ring 297 is provided, an avoidance structure (not shown in the figure) is provided on the sealing ring 297. The avoidance structure is an avoidance hole or an avoidance groove. The first conductive member 2522 passes through the avoidance structure and is connected to the atomization sheet 251.
[0121] Furthermore, as Figure 16As shown, the sealing ring 297 is embedded in the mounting member 252, and the atomizing sheet 251 is embedded in the sealing ring 297, so that the mounting member 252, the sealing ring 297, the atomizing sheet 251 and the first conductive member 2522 form an integral structure. The driving unit of the atomizing sheet 251 is arranged inside the outer cabinet 6 of the probiotic atomizing assembly 2. Based on the above structural arrangement, after the atomizing sheet 251 fails, the user can replace it by himself, which is convenient for the user to use. When replacing, the mounting member 252 is disassembled, and the integral structure of the mounting member 252, the sealing ring 297, the atomizing sheet 251 and the first conductive member 2522 is directly replaced, without replacing the driving unit of the atomizing sheet 251, reducing the maintenance cost and the user's expenditure cost.
[0122] Continuing to refer to FIG. 16, in order to ensure that the first conductive member 2522 and the second conductive member can still be stably connected after replacement or after the user disassembles it by himself for liquid injection and then reinstalls it, a limiting member 294 is provided on the outer side wall of the mounting port 298. The user rotates the mounting member 252 so that the mounting member 252 is threadedly connected to the outer side wall of the mounting port 298. When the left side wall of the mounting member 252 abuts against the limiting member 294 after rotation, at this time, the position of the first conductive member 2522 can be in coincidence connection with the second conductive member, avoiding the situation that the positions of the first conductive member 2522 and the second conductive member do not correspond after replacement or after the user disassembles it by himself for liquid injection and then reinstalls it, and further avoiding the atomizing sheet 251 from not working properly.
[0123] The limiting member 294 of the present invention is a limiting post. Of course, this is not restrictive, and it can also be a limiting block or a limiting ring structure sleeved on the outer side wall of the mounting port 298. Those skilled in the art can set it according to the actual situation.
[0124] Next, refer to Figure 13 , as Figure 13 shown, the housing 29 includes a first housing 291 and a second housing 292. The first housing 291 and the second housing 292 are buckled to form the housing 29. Of course, this is not restrictive, and the housing 29 can also be an integrally injection-molded structure. Those skilled in the art can set it according to the actual situation.
[0125] The setting of the first housing 291 and the second housing 292 facilitates the installation of the fixing member 296 and the water guiding member 28. First, the water guiding member 28 is arranged according to Figure 6Cover the first housing 291 as shown, then connect the fixing member 296 to the second housing 292, then snap the first housing 291 and the second housing 292 together, and finally rotate and screw the mounting member 252 to the mounting port 298, then the fixing member 296 can abut the water guiding member 28 against the atomizing sheet 251; at the same time, the arrangement of the first housing 291 and the second housing 292 facilitates the replacement of the water guiding member 28. After disassembling and separating the first housing 291 and the second housing 292, the water guiding member 28 can be easily taken out.
[0126] Further, a sealing ring (not shown in the figure) is provided at the connection between the first housing 291 and the second housing 292 to improve the sealing performance at the connection between the first housing 291 and the second housing 292 and prevent liquid leakage.
[0127] Further, in order to prevent the lower end of the water guiding member 28 from moving or floating, a fixing structure is provided on the bottom wall inside the housing 29. The lower end of the water guiding member 28 is fixed by the fixing structure. The fixing structure can be a fixing hook that hooks the lower end of the water guiding member 28 to prevent it from moving or floating. The fixing structure can also include a spring or a pressing plate. The pressing plate is provided at a preset distance above the bottom wall of the housing 29. The upper end of the spring is fixedly connected to the pressing plate, and the lower end of the spring contacts the bottom wall of the housing 29. The spring is in a compressed state, and the lower end of the water guiding member 28 is pressed against the lower end of the spring. Based on the above structural arrangement, the lower end of the water guiding member 28 can be fixed, and when the water volume decreases, the lower end of the water guiding member 28 will not move or float, causing the water to be unable to be guided to the atomizing sheet 251.
[0128] The sealing installation of the atomizing sheet 251 in the first to fourth preferred embodiments can also be carried out in the manner of the fifth preferred embodiment.
[0129] When the clothing treatment device of the present invention is a washing device, after the washing and rinsing are completed, the probiotic atomizing function can be realized to achieve clothing antibacterial. Even if the user forgets to take out the clothes and there is no odor after a period of time.
[0130] When the clothing treatment device of the present invention is a drying device, during the drying process, the probiotic atomizing function can be realized. Along with the circulating air, it enters the inner cylinder 11 to achieve clothing antibacterial, inner cylinder antibacterial of the washing machine, and the probiotic acts on the clothing, making the clothing smoother, silkier, and antibacterial.
[0131] When the clothing treatment device of the present invention is an air washing device, during the air washing process of dry clothes, the probiotic atomizing function can be realized. Along with the circulating air, it enters the inner cylinder and the clothes to achieve clothing antibacterial, inner cylinder antibacterial of the washing machine, and the probiotic acts on the clothing, making the clothing smoother, silkier, effectively removing odors, and antibacterial.
[0132] The probiotic of the present invention can be any one or any combination of Bacillus licheniformis, Bacillus cereus, Bacillus coagulans or Bacillus subtilis, and those skilled in the art can set it according to the actual situation by themselves.
[0133] So far, the technical solution of the present invention has been described in conjunction with the preferred embodiments shown in the drawings. However, it is easy for those skilled in the art to understand that the protection scope of the present invention is obviously not limited to these specific embodiments. Without departing from the principle of the present invention, those skilled in the art can make equivalent changes or substitutions to the relevant technical features, and the technical solutions after these changes or substitutions will fall within the protection scope of the present invention.
Claims
1. A laundry treatment device, characterized in that, The clothing treatment device includes a clothing accommodation cavity and a probiotic atomization component. The probiotic atomization component includes a liquid storage tank and an atomization vibration device. The atomization vibration device is configured to atomize the probiotic liquid in the liquid storage tank and send it into the clothing accommodation cavity.
2. The laundry treating apparatus according to claim 1, wherein The probiotic atomization component further includes a dosing device and a quantitative storage box. The liquid storage tank is connected to the dosing device, the dosing device is connected to the quantitative storage box, and the dosing device can introduce a quantitative probiotic liquid into the quantitative storage box. The atomization vibration device is connected to the quantitative storage box and can atomize the liquid in the quantitative storage box and send it into the clothing accommodation cavity.
3. The laundry treating apparatus according to claim 2, wherein The probiotic atomization component further includes a blower. The atomization vibration device is located below the quantitative storage box. A first mist outlet is provided above the quantitative storage box. The first mist outlet is connected to the clothing accommodation cavity, and the blower is arranged opposite to the first mist outlet.
4. The laundry treating apparatus according to claim 2, wherein The atomization vibration device includes an atomization sheet and a driving unit connected to each other. An installation opening is provided below the quantitative storage box. The installation opening is connected to a first chamber in the quantitative storage box, and the atomization sheet is hermetically installed at the installation opening.
5. The laundry treating apparatus according to claim 4, wherein A partial area of the lower inner wall of the quantitative storage box is bent downward to form a second chamber. The first chamber is connected to the second chamber, and the installation opening is provided below the second chamber.
6. The laundry treating apparatus according to claim 2, wherein The probiotic atomization component further includes a connecting pipe. The connecting pipe is connected to the clothing accommodation cavity, and the atomization vibration device is arranged in the connecting pipe.
7. The laundry treating apparatus according to claim 1, wherein The probiotic atomization component further includes a dosing device and a connecting pipe. The liquid storage tank is connected to the dosing device. The connecting pipe connects the dosing device and the clothing accommodation cavity. The connecting pipe is configured to accommodate a preset volume of probiotic liquid. The atomization vibration device is arranged at the end of the connecting pipe and can atomize the liquid and send it into the clothing accommodation cavity.
8. The laundry treating apparatus according to claim 1, wherein The probiotic atomization component includes a connecting pipe and a water guiding member. One end of the connecting pipe is connected to the liquid storage tank, the other end of the connecting pipe is connected to the atomization vibration device. One end of the water guiding member extends into the bottom of the liquid storage tank, and the other end of the water guiding member passes through the connecting pipe and is connected to the atomization vibration device to introduce the water in the liquid storage tank to the atomization vibration device.
9. The laundry treatment device according to claim 8, wherein, The atomization vibration device includes an atomization sheet and a mounting member. The mounting member mounts the atomization sheet to the connecting pipe. A plurality of spray holes are provided on the atomization sheet, and the spray holes release the liquid into the clothing accommodation cavity.
10. The laundry treatment device according to any one of claims 1 to 7, characterized in that, The clothing treatment device further includes a heating device, an air duct, and a blower. Both ends of the air duct are connected to the clothing accommodation cavity to form a circulating air path. The blower and the heating device are arranged in the air duct.