Clothes treatment agent box and clothes treatment device
The clothing treatment box addresses the inability of conventional devices to disinfect and sterilize by incorporating a disinfecting device with a sustained-release mechanism and controlled water flow, ensuring effective disinfection and prolonged device life.
Patent Information
- Application Number
- JP2024526474
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2021-11-15
- Filing Date
- 2022-10-21
- Publication Date
- 2025-08-28
- Estimated Expiration
- 2042-10-21
AI Technical Summary
Conventional laundry treatment devices are unable to disinfect and sterilize the interior as wash water flows from the treatment agent box to the washing drum, leading to bacterial and mold growth, posing health risks.
A clothing treatment box with a first chamber containing a disinfecting and sterilizing device, a sustained-release exchange hole, and a constant-volume water supply system to ensure chemicals dissolve slowly in wash water, providing disinfection and sterilization for both clothes and the device.
The solution effectively disinfects and sterilizes the laundry treatment device, extending the service life of the disinfecting and sterilizing device by reducing chemical contact and dissolution, thereby ensuring hygiene and device longevity.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present invention belongs to the technical field of clothing treatment, and specifically provides a clothing treatment agent box and a clothing treatment device. [Background technology]
[0002] With the rapid development of society and the acceleration of people's life rhythm, people have higher requirements for life comfort, and therefore the demand for laundry washing is constantly increasing.
[0003] In conventional laundry treatment devices, a laundry treatment agent box is typically installed to dissolve the laundry treatment agent in wash water supplied from an external water source to the inside of the washing drum, and the detergent dissolved in the wash water is then transported to the washing drum. However, with prolonged use of the laundry treatment device, bacteria, mold, and other microorganisms tend to grow inside the laundry treatment device, posing a threat to human health due to the bacteria, mold, and microorganisms on the clothes. Therefore, in order to achieve a disinfecting effect on the laundry treatment device, it is necessary to manually add disinfectant reagents to the laundry treatment agent box.
[0004] Due to limitations in principle and structure, conventional clothing treatment boxes have the problem that they are unable to disinfect and sterilize the inside of the clothing treatment device as the wash water flows from the clothing treatment box to the clothing treatment device.
[0005] Accordingly, there is a need in the art for a new type of laundry treatment agent box and laundry treatment device to solve the above problems. Summary of the Invention [Means for solving the problem]
[0006] In order to solve the above-mentioned problems in the prior art, i.e., to solve the problem present in conventional clothing treatment boxes that the inside of the clothing treatment device cannot be disinfected and sterilized as the wash water flows from the clothing treatment box to the clothing treatment device, the present invention provides a clothing treatment box comprising a clothing treatment box body, a first chamber installed inside the clothing treatment box body, a disinfecting and sterilizing device fixedly installed inside the first chamber, a first water flow channel further installed inside the first chamber, the disinfecting and sterilizing device including a housing, and a sustained-release exchange hole further installed in the housing that allows the water flow to contact the chemicals in the disinfecting and sterilizing device.
[0007] In a preferred technical solution of the above-mentioned clothing treatment box, the disinfecting and sterilizing device is installed above the first water flow channel, a siphon pipe and a water barrier are installed inside the first chamber, the water barrier divides the first chamber into a second chamber and a third chamber, the second chamber is connected to the third chamber via the siphon pipe, the second chamber is on the side closer to the handle of the clothing treatment box, and the third chamber is on the side farther from the handle of the clothing treatment box, and the disinfecting and sterilizing device is installed in the third chamber.
[0008] In a preferred technical solution of the above-mentioned clothing treatment agent box, a fourth chamber separated from the first chamber is installed inside the clothing treatment agent box body, the inside of the fourth chamber is used to place detergent, and the inside of the second chamber is used to place fabric softener.
[0009] In a preferred technical solution for the above-mentioned clothing treatment agent box, a chemical storage chamber is further installed inside the upper wall of the housing, the opening of the chemical storage chamber faces the first water flow channel, and a limiting protrusion is further installed in the chemical storage chamber, which is configured to allow the chemicals in the chemical storage chamber to be released sequentially.
[0010] In a preferred technical solution of the above-mentioned clothing treatment box, the agent is further wrapped in a packaging layer, which is one of filter paper, nonwoven fabric, and filter screen.
[0011] In a preferred technical solution of the above-mentioned clothing treatment box, an upper cover is further installed on the third chamber, a siphon cap is installed on the upper cover for use in combination with the siphon tube, and a spray hole is further installed on the upper cover.
[0012] In a preferred technical solution of the above-mentioned clothing treatment agent box, a second water flow channel is further installed in the first chamber, and the second water flow channel and the first water flow channel are installed one above the other, a constant-volume water supply device is further installed in the first water flow channel, and the constant-volume water supply device is configured to send water in the first water flow channel to the second water flow channel at a set flow rate, and the disinfection and sterilization device is installed below the first water flow channel and above the second water flow channel.
[0013] In a preferred technical solution of the above-mentioned clothing treatment agent box, the fixed water supply device includes a water pillar, the upper end surface of which is installed open and fixedly connected to the first water flow channel, and the lower end surface of which is configured to be controlled to open and close in a timed manner by a sensor.
[0014] In a preferred technical solution of the above-mentioned clothing treatment agent box, the fixed quantity water supply device includes a flow meter and a water pump, the flow meter is configured to detect the total amount of water flow in the first water flow channel, and the water pump is configured to suck water in the first water flow channel into the second water flow channel at a set rate.
[0015] The present invention further provides a clothes treating device, including a clothes treating agent box according to any one of the above technical solutions.
[0016] As can be understood by those skilled in the art, in the technical solution of the present invention, the clothing treatment agent box includes a clothing treatment agent box body, a first chamber is installed inside the clothing treatment agent box body, a disinfection and sterilization device is fixedly installed inside the first chamber, a first water flow channel is further installed inside the first chamber, the disinfection and sterilization device includes a housing, and the housing is further installed with a sustained-release exchange hole that allows the water flow to contact the agent in the disinfection and sterilization device. [Effects of the Invention]
[0017] According to the above-mentioned installation method, the new type of clothing treatment agent box of the present invention has a first chamber installed inside the clothing treatment agent box body, and a disinfecting and sterilizing device fixedly installed inside the first chamber, so that the chemicals can dissolve in the wash water and flow into the clothing treatment device together with the wash water, thereby achieving the disinfecting and sterilizing function for the clothes and the clothing treatment device. Furthermore, the clothing treatment agent box of the present invention further has a slow-release exchange hole installed in the disinfecting and sterilizing device housing, which allows the water flow to contact the chemicals in the disinfecting and sterilizing device, so that the chemicals can slowly dissolve in the wash water, thereby extending the service life of the disinfecting and sterilizing device. [Brief explanation of the drawings]
[0018] The clothing treatment agent box and clothing treatment device of the present invention will be described below with reference to the drawings. [Figure 1] 1 is a schematic diagram of the overall structure of a clothing treatment agent box. [Figure 2] 1 is a structural schematic diagram of the first chamber of the clothing treatment agent box. [Figure 3] 1 is a structural schematic diagram of the installation method inside the clothing treatment agent box of the disinfection and sterilization device. [Figure 4] This is a schematic diagram of the structure of the third chamber where the columnar water bucket and sensor are installed. [Figure 5] FIG. 1 is a structural schematic diagram of the third chamber where the water pump and flow meter are installed. DETAILED DESCRIPTION OF THE INVENTION
[0019] Preferred embodiments of the present invention will now be described with reference to the drawings. Those skilled in the art should understand that these embodiments are intended only to illustrate the technical principles of the present invention and are not intended to limit the scope of protection of the present invention. Those skilled in the art can make adjustments as needed to accommodate specific applications. For example, the present specification describes the structure and installation position of a constant-volume water supply device as an example in which the constant-volume water supply device includes a water pillar, the upper end of which is open and fixedly connected to a first water flow channel, and the lower end of which is configured to be controlled to open and close in a timed manner by a sensor. However, the present invention obviously employs various other structures and installation positions of constant-volume water supply devices, as long as the structure and installation position of the constant-volume water supply device satisfies the requirement for constant-volume water supply to the second water flow channel. For example, the constant-volume water supply device may include a flow meter and a water pump, the flow meter being configured to detect the total amount of water flowing through the first water flow channel, and the water pump being configured to suck water from the first water flow channel into the second water flow channel at a set rate.
[0020] In describing the present invention, terms indicating directions or positional relationships, such as "upper," "lower," "inner," and "outer," are based on the directions or positional relationships shown in the drawings, and are merely for ease of description. They do not indicate or imply that the devices or elements must have a particular orientation or be configured or operated in a particular orientation, and therefore should not be understood as limitations of the present invention. Furthermore, terms such as "first," "second," "third," and "fourth" are used for descriptive purposes only and should not be understood as indicating or implying relative importance.
[0021] It should be further explained that in the description of the present invention, the term "connection" should be understood in a broad sense unless otherwise clearly specified or limited, and may be, for example, a fixed connection, a detachable connection, an integral connection, a direct connection, or an indirect connection via an intermediate medium. Those skilled in the art can understand the specific meaning of the above term in the present invention according to the specific situation.
[0022] Conventional clothing treatment devices typically include a clothing treatment agent box, which dissolves the clothing treatment agent in wash water supplied from an external water source to the inside of the washing tube and transports the dissolved detergent to the washing tube. However, with prolonged use of the clothing treatment device, bacteria, mold, and other microorganisms tend to grow inside the clothing treatment device, posing a threat to human health. Therefore, to achieve a disinfecting effect on the clothing treatment device, a disinfectant must be manually added to the clothing treatment agent box. Due to limitations imposed by the principle and structure, conventional clothing treatment agent boxes have the problem of being unable to disinfect and sterilize the inside of the clothing treatment device as the wash water flows from the clothing treatment agent box to the clothing treatment device.
[0023] Therefore, the present invention provides a new type of clothing treatment agent box, in which a first chamber is installed inside the clothing treatment agent box body and a disinfecting and sterilizing device is fixedly installed inside the first chamber, so that the chemicals can dissolve in the wash water and flow into the clothing treatment device together with the wash water, thereby achieving the disinfection and sterilization function for the clothes and the clothing treatment device. Furthermore, the clothing treatment agent box of the present invention further provides a slow-release exchange hole in the disinfecting and sterilizing device housing to allow the water flow to contact the chemicals in the disinfecting and sterilizing device, so that the chemicals can slowly dissolve in the wash water, thereby extending the service life of the disinfecting and sterilizing device.
[0024] 1-2, the clothing treatment box of the present invention will be described.
[0025] As shown in Figures 1 and 2, in order to solve the problem present in conventional clothing treatment boxes that disinfection and sterilization cannot be achieved inside the clothing treatment device during the process of washing water flowing from the clothing treatment box to the clothing treatment device, the clothing treatment box of the present invention includes a clothing treatment box main body 1, a first chamber 11 is installed inside the clothing treatment box main body 1, a disinfection and sterilization device 111 is fixedly installed inside the first chamber 11, a first water flow channel 112 is further installed inside the first chamber 11, the disinfection and sterilization device 111 includes a housing 1111, and the housing 1111 is further installed with a sustained-release exchange hole 11111 that allows the water flow to contact the agent 1112 in the disinfection and sterilization device 111.
[0026] According to the above-mentioned installation configuration, the clothing treatment agent box of the present invention has a first chamber 11 installed inside the clothing treatment agent box body 1, and a disinfecting and sterilizing device 111 fixedly installed inside the first chamber 11, so that the chemicals 1112 can dissolve in the wash water and flow into the inflow clothing treatment device together with the wash water, thereby achieving the disinfecting and sterilizing function for the clothing and the clothing treatment device. Furthermore, the clothing treatment agent box of the present invention further has a slow-release exchange hole 11111 installed in the housing 1111 of the disinfecting and sterilizing device 111 to allow the water flow to contact the chemicals 1112 in the disinfecting and sterilizing device 111, so that the chemicals 1112 can slowly dissolve in the wash water, thereby extending the service life of the disinfecting and sterilizing device 111.
[0027] It should be noted that in this embodiment, a first cross member 118 and a second cross member 119 are fixedly installed in the first chamber 11, and the disinfection and sterilization device 111 is attached to the first cross member 118 and the second cross member 119, respectively.
[0028] 1-5, the clothing treatment box of the present invention will now be described in detail.
[0029] As shown in Figures 1 and 2, in one possible embodiment, the disinfecting and sterilizing device 111 is installed above the first water flow channel 112, a siphon pipe 113 and a water barrier 114 are installed inside the first chamber 11, the water barrier 114 divides the first chamber 11 into a second chamber 115 and a third chamber 116, the second chamber 115 is connected to the third chamber 116 via the siphon pipe 113, the second chamber 115 is on the side closer to the handle 12 of the laundry treatment box, and the third chamber 116 is on the side farther from the handle 12 of the laundry treatment box, and the disinfecting and sterilizing device 111 is installed in the third chamber 116.
[0030] In this embodiment, a water barrier 114 is installed in the first chamber 11 to divide the first chamber 11 into a second chamber 115 and a third chamber 116, and a disinfecting and sterilizing device 111 is installed in the third chamber 116, effectively separating the disinfecting and sterilizing device 111 from the detergent input area. The second chamber 115 and the third chamber 116 are connected via a siphon tube 113, and some of the detergent water flows over the water barrier 114 into the third chamber 116 and through the disinfecting and sterilizing device 111, allowing the detergent water and the chemical agent 1112 to come into contact with each other via the slow-release exchange holes 11111 installed in the disinfecting and sterilizing device 111. The chemical agent 1112 can slowly dissolve in the detergent water and flow into the laundry treatment device together with the detergent water, thereby achieving the disinfection and sterilization effect on the clothes and the laundry treatment device.
[0031] As shown in Figures 1 and 2, in order to further optimize the sustained release effect of the chemical 1112, in this embodiment, a fourth chamber 13 separated from the first chamber 11 is installed inside the clothing treatment agent box body 1, and the inside of the fourth chamber 13 is used to place the detergent, and the inside of the second chamber 115 is used to place the fabric softener.
[0032] According to the above installation method, the clothing treatment agent box of this embodiment can store detergent and fabric softener separately, and ensure that only the water flow containing dissolved fabric softener flows through the disinfection and sterilization device 111 in the later stage of washing, thereby avoiding the water flow containing dissolved detergent flowing through the disinfection and sterilization device 111 in the earlier stage of washing, reducing the contact between the water flow and the chemicals 1112, thereby reducing the dissolution of the chemicals 1112, thereby achieving disinfection and sterilization of the clothing and clothing treatment device, and prolonging the service life of the disinfection and sterilization device 111.
[0033] As shown in Figure 3, in one possible embodiment, a drug storage chamber 11112 is further installed on the inside of the upper wall of the housing 1111, the opening of the drug storage chamber 11112 faces the first water flow channel 112, and a limiting protrusion 111121 is further installed on the drug storage chamber 11112, and the limiting protrusion 111121 is configured to allow the drug 1112 in the drug storage chamber 11112 to be released sequentially.
[0034] In this embodiment, a drug storage chamber 11112 is installed inside the upper wall of the housing 1111, and a limiting protrusion 111121 is installed on the drug storage chamber 11112, which makes it possible to sequentially release the drugs 1112 in the drug storage chamber 11112 and meets the need for slow release of the drugs 1112.
[0035] As shown in FIG. 3, in order to further meet the need for slow release of the drug 1112, in this embodiment, the drug 1112 is further wrapped in a packaging layer 1113, which is one of filter paper, nonwoven fabric, and filter screen.
[0036] In this manner, the packaging layer 1113 placed on the outside of the drug 1112 effectively encases the drug 1112, reducing contact between the drug 1112 and the water flow, and further achieving the sustained release effect of the drug 1112.
[0037] As shown in Figures 2, 4 and 5, in order to further reduce contact between the water flow and the chemical 1112, in this embodiment, a second water flow channel 117 is further installed in the first chamber 11, the second water flow channel 117 and the first water flow channel 112 are installed one above the other, a constant volume water supply device 1121 is further installed in the first water flow channel 112, and the constant volume water supply device 1121 is configured to send water in the first water flow channel 112 to the second water flow channel 117 at a set flow rate, and the disinfection and sterilization device 111 is installed below the first water flow channel 112 and above the second water flow channel 117.
[0038] In this embodiment, a first water flow channel 112 and a second water flow channel 117 are installed vertically inside the first chamber 11, and a constant-volume water supply device 1121 is installed in the first water flow channel 112. The disinfection and sterilization device 111 is installed below the first water flow channel 112 and above the second water flow channel 117. This allows the constant-volume water supply device 1121 to send water flowing through the first water flow channel 112 to the second water flow channel 117 at a set flow rate, thereby reducing the water flow rate through the second water flow channel 117 and the water flow rate through the disinfection and sterilization device 111, thereby reducing the contact between the water flow and the drug 1112 and further reducing the amount of drug 1112 dissolved in the water flow through the disinfection and sterilization device 111, thereby improving the sustained-release effect of the drug 1112 and extending the service life of the disinfection and sterilization device 111.
[0039] As shown in Figures 2 and 4, in this embodiment, the above-mentioned constant-quantity water supply device 1121 includes a water pillar bucket 11211, the upper end surface of which is installed open and fixedly connected to the first water flow channel 112, and the lower end surface of which is configured to be controlled to open and close in a timely manner by a sensor 11212. With the above installation method, the water pillar 11211 collects the water flowing through the first water flow channel 112 into the water pillar 11211, and the sensor 11212 controls the lower end of the water pillar 11211 to open in a timed manner, allowing the water in the water pillar 11211 to flow into the second water flow channel 117. After that, the sensor 11212 controls the lower end of the water pillar 11211 to close in a timed manner, preventing the water in the water pillar 11211 from flowing into the second water flow channel 117. Thus, the sensor 11212 repeatedly controls the lower end of the water pillar 11211 to open and close in a timed manner, thereby achieving a constant water flow output to the second water flow channel 117. In this way, by setting the water flow rate through the second water flow channel 117 at a fixed quantity (i.e., setting the water flow rate through the disinfection and sterilization device 111 at a fixed quantity), the contact between the water flow and the chemical 1112 in the disinfection and sterilization device 111 is reduced, and the water flow through the first water flow channel 112 is prevented from coming into contact with the disinfection and sterilization device 111, thereby reducing the amount of chemical 1112 dissolved in the water flow and extending the service life of the disinfection and sterilization device 111.
[0040] As can be understood, in this embodiment, the structure and installation position of the constant-quantity water supply device 1121 is described using an example in which the constant-quantity water supply device 1121 includes a pillar-shaped water bucket 11211, the upper end surface of which is installed open and fixedly connected to the first water flow channel 112, and the lower end surface of the pillar-shaped water bucket 11211 is configured to be controlled to open and close at the timing by the sensor 11212. However, in this embodiment, the structure and installation position of the constant-quantity water supply device 1121 are not limited to this, and it is sufficient that the structure and installation position of the constant-quantity water supply device 1121 are capable of supplying constant water to the second water flow channel 117. For example, the constant volume water supply device 1121 includes a flow meter 11213 and a water pump 11214, where the flow meter 11213 is configured to detect the total amount of water flow in the first water flow channel 112, and the water pump 11214 is configured to suck the water in the first water flow channel 112 into the second water flow channel 117 at a set rate, as shown in Figures 2 and 5.
[0041] In this embodiment, the flow meter 11213 detects the total amount of water flowing through the first water flow channel 112, and the water pump 11214 sucks water from the first water flow channel 112 at a set rate into the second water flow channel 117, thereby outputting a constant amount of water to the second water flow channel 117. By setting the water flow rate through the second water flow channel 117 at a fixed rate (i.e., setting the water flow rate through the disinfection and sterilization device 111 at a fixed rate), the contact between the water flow and the chemical agent 1112 in the disinfection and sterilization device 111 is reduced, and the water flowing through the first water flow channel 112 is prevented from contacting the disinfection and sterilization device 111 entirely, thereby reducing the amount of chemical agent 1112 dissolved in the water flow and extending the service life of the disinfection and sterilization device 111.
[0042] As shown in FIG. 2, in one possible embodiment, the third chamber 116 further includes an upper cover 1161, which further includes a siphon cap 11611 for use in combination with the siphon tube 113, and which further includes a spray hole 11612.
[0043] In this embodiment, the combination of the siphon cap 11611 and the siphon tube 113 achieves a better siphon effect, and the second chamber 115 and the third chamber 116 are connected by the siphon effect, so that part of the detergent water flows into the third chamber 116 over the water barrier 114 and then flows through the disinfection and sterilization device 111, allowing the detergent water and the chemical 1112 to come into contact with each other through the slow-release exchange holes 11111 installed in the disinfection and sterilization device 111, allowing the chemical 1112 to slowly dissolve in the detergent water and flow into the clothing treatment device together with the detergent water, thereby achieving a disinfection and sterilization effect on the clothing and the clothing treatment device.
[0044] As described above, in the clothing treatment agent box of the present invention, the first chamber 11 is installed inside the clothing treatment agent box main body 1, and the disinfecting and sterilizing device 111 is fixedly installed inside the first chamber 11, so that the chemicals 1112 can dissolve in the wash water and flow into the clothing treatment device together with the wash water, thereby achieving the disinfecting and sterilizing function for the clothes and the clothing treatment device. Furthermore, the clothing treatment agent box of the present invention further includes a slow-release exchange hole 11111 in the housing 1111 of the disinfecting and sterilizing device 111 that allows the water flow to contact the chemicals 1112 in the disinfecting and sterilizing device 111, so that the chemicals 1112 can slowly dissolve in the wash water, thereby extending the service life of the disinfecting and sterilizing device 111.
[0045] Furthermore, in the present invention, a first water flow channel 112 and a second water flow channel 117 are installed one above the other inside the first chamber 11, and a constant volume water supply device 1121 is installed inside the first water flow channel 112. The disinfection and sterilization device 111 is installed below the first water flow channel 112 and above the second water flow channel 117. This allows the constant volume water supply device 1121 to send water flowing through the first water flow channel 112 to the second water flow channel 117 at a set flow rate, thereby reducing the water flow rate through the second water flow channel 117 and therefore the water flow rate through the disinfection and sterilization device 111, thereby reducing the contact between the water flow and the chemical 1112 and further reducing the amount of chemical 1112 dissolved in the water flow through the disinfection and sterilization device 111, thereby improving the sustained-release effect of the chemical 1112 and extending the service life of the disinfection and sterilization device 111.
[0046] In addition, the present invention further provides two structures of the constant-volume water supply device 1121, namely, the constant-volume water supply device 1121 includes a water pillar bucket 11211, the upper end surface of which is installed open and fixedly connected to the first water flow channel 112, and the lower end surface of the water pillar bucket 11211 is configured to be controlled to open and close in a timed manner by a sensor 11212; or the constant-volume water supply device 1121 includes a flow meter 11213 and a water pump 11214, the flow meter 11213 is configured to detect the total water flow amount of the first water flow channel 112, and the water pump 11214 is configured to suck the water in the first water flow channel 112 into the second water flow channel 117 at a set rate.
[0047] It should be noted that the above embodiments are only for illustrating the principles of the present invention, and are not intended to limit the protection scope of the present invention; those skilled in the art can adjust the above structures so that the present invention can be applied to more specific application scenarios without departing from the principles of the present invention.
[0048] The present invention further provides a clothing treatment device having the clothing treatment agent box according to any one of the embodiments.
[0049] It should be understood by those skilled in the art that, although some embodiments described herein include some features included in other embodiments but not others, a combination of features from different embodiments is within the scope of protection of the present invention and means to form different embodiments. For example, within the scope of the claims of the present invention, any one of the protected embodiments can be used in any combination.
[0050] Although the technical solutions of the present invention have been described above in conjunction with the preferred embodiments shown in the drawings, it is readily understood by those skilled in the art that the protection scope of the present invention is not obviously limited to these specific embodiments. Without departing from the principle of the present invention, those skilled in the art may make equivalent modifications or substitutions to the relevant technical features, and the technical solutions after these modifications or substitutions will all fall within the protection scope of the present invention. [Explanation of symbols]
[0051] 1-clothing treatment box body, 11 - 1st chamber, 111—disinfection and sterilization device, 1111—casing, 11111—sustained release exchange hole, 11112—medicine storage chamber, 111121—restriction protrusion, 1112—medicine, 1113—packaging layer, 112 - first water flow channel, 1121 - constant volume water supply device, 11211 - columnar water bucket, 11212 - sensor, 11213 - flow meter, 11214 - water pump, 113 - siphon tube, 114 - water shield, 115 - second chamber, 116 - third chamber, 1161 - upper cover, 11611 - siphon cap, 11612 - spray hole, 117 - second water flow channel, 118 - first cross member, 119 - second cross member, 12-handle, 13 - 4th chamber.
Claims
1. A clothing treatment agent box, comprising: a clothing treatment agent box body, a first chamber installed inside the clothing treatment agent box body, a disinfecting and sterilizing device fixedly installed inside the first chamber, a first water flow channel further installed inside the first chamber, the disinfecting and sterilizing device including a housing, and a sustained-release exchange hole further installed in the housing for allowing water flow to contact with an agent in the disinfecting and sterilizing device; The disinfecting and sterilizing device is installed above the first water flow channel, a siphon pipe and a water barrier are installed inside the first chamber, the water barrier divides the first chamber into a second chamber and a third chamber, the second chamber communicates with the third chamber via the siphon pipe, the second chamber is on the side closer to the handle of the clothing treatment box, and the third chamber is on the side farther from the handle of the clothing treatment box, and the disinfecting and sterilizing device is installed in the third chamber. A clothing treatment box characterized by:
2. 2. The clothing treatment agent box according to claim 1, wherein a fourth chamber separated from the first chamber is installed inside the clothing treatment agent box body, the inside of the fourth chamber being used to place detergent, and the inside of the second chamber being used to place fabric softener.
3. The clothing treatment agent box of claim 1, further comprising a chemical storage chamber further installed inside the upper wall of the housing, the opening of the chemical storage chamber facing the first water flow channel, and a limiting protrusion further installed in the chemical storage chamber, the limiting protrusion configured to allow the chemicals in the chemical storage chamber to be released sequentially.
4. 4. The clothing treatment box according to claim 3, wherein the agent is further wrapped in a packaging layer, the packaging layer being one of filter paper, nonwoven fabric, and filter screen.
5. 2. The clothing treatment box according to claim 1, further comprising an upper cover installed on the third chamber, a siphon cap installed on the upper cover for use in combination with the siphon tube, and a spray hole installed on the upper cover.
6. 2. The laundry treatment agent box according to claim 1, wherein a second water flow channel is further installed in the first chamber, the second water flow channel and the first water flow channel are installed vertically, a constant-volume water supply device is further installed in the first water flow channel, the constant-volume water supply device is configured to supply water in the first water flow channel to the second water flow channel at a set flow rate, and the disinfecting and sterilizing device is installed below the first water flow channel and above the second water flow channel.
7. The clothing treatment agent box of claim 6, characterized in that the constant-quantity water supply device includes a water pillar bucket, the upper end surface of which is installed open and fixedly connected to the first water flow channel, and the lower end surface of which is configured to be controlled to open and close in a timing manner by a sensor.
8. The clothing treatment agent box of claim 6, wherein the constant-volume water supply device includes a flow meter and a water pump, the flow meter being configured to detect the total amount of water flow in the first water flow channel, and the water pump being configured to suck water in the first water flow channel into the second water flow channel at a set rate.
9. A clothing treatment device, comprising: a clothing treatment agent box according to any one of claims 1 to 8.
Citation Information
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