Multifunctional bathroom cabinet

By setting up a dewatering chamber and a sterilization chamber in the multi-functional bathroom cabinet, the system first removes water and then dries and sterilizes, solving the problems of long drying time, high power consumption, and bacterial growth in existing bathroom cabinets, and achieving rapid drying, sterilization, and energy-saving effects.

CN115349765BActive Publication Date: 2026-04-14季茂驰
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
季茂驰
Filing Date
2022-07-21
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

Existing multi-functional bathroom cabinets take a long time and consume a lot of electricity when drying damp towels, and damp towels are prone to bacterial growth, affecting household electricity consumption and health.

Method used

Design a multifunctional bathroom cabinet that includes a dewatering chamber, a sterilization chamber, and a conveying mechanism. The dewatering mechanism first removes water from the towels, and then the conveying mechanism sends them to the sterilization chamber for drying and sterilization. The sterilization is carried out using ultraviolet lamps and warm air sources, reducing the risk of towels dripping water and growing bacteria.

Benefits of technology

It achieves rapid drying and sterilization, reduces household electricity consumption, improves the safety and health of towels, and expands the functional application range of bathroom cabinets.

✦ Generated by Eureka AI based on patent content.

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    Figure CN115349765B_ABST
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Abstract

The application belongs to the technical field of bathroom cabinets, and particularly relates to a multifunctional bathroom cabinet, which comprises a first roller, a second roller, and a motor. The first roller is rotatably installed in a water removal cavity. The second roller is rotatably installed in the water removal cavity. The first roller and the second roller are located on the same horizontal plane. A space near a back plate of the bathroom cabinet in the water removal cavity is separated into a separation cavity by a partition. The motor is arranged in the separation cavity. The motor has two rotating shafts which are connected with the first roller and the second roller respectively. The application has the advantages of simple structure and can solve the problem that a drying and sterilizing towel rack on the market needs a long time to dry towels by air blowing after the towels are soaked, which easily leads to excessive household power consumption and is not conducive to reducing household expenses.
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Description

Technical Field

[0001] This invention belongs to the field of bathroom cabinet technology, specifically a multifunctional bathroom cabinet. Background Technology

[0002] Due to their age, elderly people and children often lack the strength to thoroughly wring out towels after use. This often results in towels that are very damp, sometimes even dripping water, after being hung on towel racks. Furthermore, towels are typically stored in the bathroom, a humid environment conducive to bacterial growth. If a towel remains damp after use, even with dripping water, it is highly susceptible to bacterial growth and unpleasant odors, affecting its usability. Additionally, bacteria on the towel can easily transfer to the user's skin during use, impacting their health, especially the elderly and children whose immune systems are weaker than those of younger adults.

[0003] To improve the health of family members and enhance the safety and comfort of home life, towel drying racks have been developed on the market. After use, towels are hung on the rack, and hot air is blown onto the damp towels by a blower to quickly dry them, preventing bacterial growth and reducing odors. However, in actual use, because the towels on the drying rack are not completely wrung out, a significant amount of moisture remains. During the drying process, water droplets may still drip from the bottom of the towels, affecting the safety of using the towel drying rack. Furthermore, the excessive moisture on the towels increases the drying time. Compared to wrung-out towels, towel drying takes longer and consumes more electricity, potentially leading to excessive household electricity consumption and increased household expenses. Furthermore, in households with young children, towels are frequently used for childcare, and undried towels take longer to dry, potentially resulting in towels not being dry when needed, hindering proper childcare. Additionally, after using a towel dryer, towels remain hanging on the rack, exposed to the bathroom environment, increasing the risk of bacteria from the bathroom spreading onto the towels.

[0004] In existing family bathrooms, vanity units are usually installed to store toiletries. However, with rising living standards, technological advancements, and the generally small size of family bathrooms, people tend to prefer multi-functional vanity units that combine multiple functions in one compact unit, rather than installing towel racks in the already limited space. This aims to minimize the feeling of spatial obstruction and enhance comfort within the bathroom. Existing multi-functional bathroom cabinets have drying and sterilization functions, allowing towels, toothbrushes, and clothes to be placed inside for drying and sterilization. However, these functions do not adequately consider that towels used by the elderly or children may still retain a significant amount of moisture. During the drying process, this moisture may drip from the towels, affecting the cabinet's normal operation. Furthermore, excessive moisture in the towels can also impact the drying process, prolonging drying time and increasing energy consumption, thus increasing household expenses. Therefore, it is necessary to design a multi-functional bathroom cabinet with market potential that "wrung out" towels before drying, saves energy, shortens drying time, and allows for direct storage of towels after drying. Summary of the Invention

[0005] To address the shortcomings of existing technologies and solve the problem that commercially available towel drying racks require a long time to dry soaked towels with a blower, which can lead to excessive household electricity consumption and hinder the reduction of household expenses, this invention proposes a multifunctional bathroom cabinet.

[0006] The technical solution adopted by the present invention to solve its technical problem is: a multifunctional bathroom cabinet as described in the present invention, comprising a cabinet body;

[0007] A sterilization chamber is located on the lower side of one side of the cabinet, and a sterilization device is installed inside the sterilization chamber;

[0008] The bathroom cabinet also includes:

[0009] A through slot, located above the cabinet;

[0010] A dewatering chamber is provided above the sterilization chamber and is connected to the through groove;

[0011] A water removal mechanism is provided inside the water removal chamber, and the water removal mechanism is used to remove water from the towel placed inside the water removal chamber through the through groove;

[0012] A conveying mechanism connects the dewatering chamber and the sterilization chamber, and the conveying mechanism is used to convey the dewatered towel into the sterilization chamber.

[0013] Preferably, the water removal mechanism includes:

[0014] A first roller is rotatably installed inside the dewatering chamber, and the length direction of the first roller is the same as the width direction of the cabinet.

[0015] The second roller is rotatably installed inside the dewatering chamber. The length direction of the second roller is the same as the width direction of the cabinet. The first roller and the second roller are located on the same horizontal plane.

[0016] The space near the back panel of the bathroom cabinet in the dewatering chamber is divided into a partition cavity by a partition. The motor is set inside the partition cavity. There are two motors, and the rotating shafts of the two motors are respectively connected to the first roller and the second roller.

[0017] A filter plate is movably connected to the inside of the dewatering chamber. The filter plate is located below the first roller. An electric push rod is vertically arranged below the partition chamber. A sliding groove is vertically opened on the partition between the dewatering chamber and the partition chamber. The filter plate extends into the partition chamber through the sliding groove at one end near the partition chamber and is connected to the extended end of the electric push rod.

[0018] Preferably, the conveying mechanism includes:

[0019] A conveyor plate is disposed on the inner wall of the dewatering chamber in the width direction of the cabinet, and the conveyor plate is located on the side of the second roller;

[0020] A baffle with a concave cross-section is vertically mounted on the inner wall of the cabinet. One end of the baffle is connected to the conveyor plate, and the other end extends into the sterilization chamber. The baffle and the inner wall of the cabinet form a conveying channel.

[0021] Preferably, the dewatering mechanism further includes a guide unit disposed on the top wall inside the dewatering chamber, and the guide unit is used to guide the towel that has been dewatered by the dewatering mechanism.

[0022] Preferably, the guiding unit includes:

[0023] A straight plate is vertically disposed on the top wall of the dewatering chamber, and the straight plate is located at the opening of the through groove;

[0024] An inclined plate is inclinedly disposed at the slot opening on the opposite side of the straight plate, and the upper end of the inclined plate is hinged to the top wall of the dewatering chamber.

[0025] A limiting plate is disposed on the top wall of the dewatering chamber on the side of the inclined plate away from the straight plate;

[0026] A spring is disposed between the inclined plate and the limiting plate.

[0027] Preferably, the dewatering mechanism further includes a hooking unit disposed on the first roller and the second roller, and the hooking unit is used to hook the towel inside the dewatering chamber.

[0028] Preferably, the hooking unit includes:

[0029] The hooks are disposed on the circumferential surface near both ends of the first roller;

[0030] A groove is formed on the second roller, and the hook extends into the groove.

[0031] Preferably, the hook is made of an elastic material.

[0032] Preferably, the first roller has flanges extending from the middle to both ends, and the second roller has corresponding grooves.

[0033] Preferably, the surfaces of the conveyor plate and the baffle are coated with a PTFE coating.

[0034] The beneficial effects of this invention are as follows:

[0035] 1. The multifunctional bathroom cabinet of the present invention, by setting up a straight plate, an inclined plate, a limiting plate and a spring, can achieve the following when the towel is dehydrated for the second time: the first roller and the second roller guide the upper end of the towel after the second dehydration through the inclined plate, so that the towel is continuously squeezed out and falls onto the conveying plate under the action of the inclined plate. Finally, it enters the sterilization chamber through the conveying channel formed by the baffle and the inner wall of the cabinet. This prevents the towel from moving out of the channel through the gap between the inclined plate and the straight plate during the second dehydration, thereby improving the practical effect of the device.

[0036] 2. The multifunctional bathroom cabinet of the present invention features a first roller with flanges extending from the middle to both ends, and a corresponding groove on the second roller. This design allows the towels, when subjected to secondary dehydration, to move towards the middle of the first and second rollers after being rolled between them. This prevents the hooks at the ends of the first roller from constantly grabbing the towels, thus extending the towels' lifespan. Attached Figure Description

[0037] The invention will now be further described with reference to the accompanying drawings.

[0038] Figure 1 This is the front view of the present invention;

[0039] Figure 2 This is a diagram showing the cut surface;

[0040] Figure 3 This is a schematic diagram of the present invention after being cut open from the rear view;

[0041] Figure 4 yes Figure 2 Enlarged view of a portion of point A in the middle;

[0042] Figure 5 yes Figure 2 Enlarged view of a section at point B in the middle;

[0043] In the diagram: cabinet 10, sterilization chamber 1, through groove 2, dewatering chamber 3, partition chamber 4, first roller 5, second roller 6, motor 7, filter plate 8, electric push rod 81, slide 82, conveyor plate 9, baffle 11, straight plate 12, inclined plate 13, limit plate 14, spring 15, hook claw 16, groove 17. Detailed Implementation

[0044] To make the technical means, creative features, objectives and effects of this invention easier to understand, the invention will be further described below in conjunction with specific embodiments.

[0045] like Figures 1 to 5 As shown, the multifunctional bathroom cabinet of the present invention includes a cabinet body 10;

[0046] Sterilization chamber 1 is located on the lower side of one side of the cabinet 10, and a sterilization device is installed inside the sterilization chamber 1;

[0047] The bathroom cabinet also includes:

[0048] Through groove 2, the through groove 2 being located above the cabinet 10;

[0049] A water removal chamber 3 is disposed above the sterilization chamber 1 and is connected to the through groove 2;

[0050] A water removal mechanism is provided inside the water removal chamber 3. The water removal mechanism is used to remove water from the towel placed inside the water removal chamber 3 through the through groove 2.

[0051] A conveying mechanism connects the dewatering chamber 3 and the sterilization chamber 1, and the conveying mechanism is used to convey the dewatered towel into the sterilization chamber 1;

[0052] When people use towels, it's difficult to completely wring out the water. Hanging the towels directly leaves them damp, increasing the risk of bacterial contamination and unpleasant odors. This inconvenience can even lead to facial infections, harming health. Therefore, the towel is placed into the dewatering chamber 3 through the channel 2. The dewatering mechanism within the chamber removes water, and the filtered water flows to the bottom of the chamber and out through a water pipe (not described in the prior art). After the dewatering mechanism has removed all the water from the towel, the dewatering chamber 3 and the sterilization chamber are connected... A connected conveying mechanism transports towels into sterilization chamber 1. The sterilization device inside sterilization chamber 1 consists of an ultraviolet lamp and a warm air source. The warm air source can be a blower, which further dries and sterilizes the towels that have been completely dehydrated by the dehydration mechanism. A shelf can also be installed inside sterilization chamber 1 to facilitate the placement of the completely dried towels. A humidity sensor is installed inside sterilization chamber 1. When the towels are dried to a certain extent, the blower stops, and then the towels continue to be irradiated with ultraviolet light to complete the towel drying and sterilization process. When people use the towels next time, they can directly take them out from sterilization chamber 1 for use, improving the user experience and protecting human health.

[0053] Especially when there are elderly people or children in the family, it is difficult to wring out soaked towels after use, and air drying takes a long time, making the towels prone to bacterial growth. Therefore, using the bathroom cabinet of this application allows people to use towels with peace of mind;

[0054] Compared to towel racks on the market that directly dry and sterilize towels, this application uses a water removal mechanism inside the water removal chamber 3 to first remove water from the towels before conveying them to the sterilization chamber 1 for drying and sterilization. This reduces the need for towels to be air-dried for a long time after soaking, thus reducing household electricity consumption and energy consumption.

[0055] Meanwhile, by using a gridded transparent material to partition and divide the space within the sterilization chamber 1 (existing technology, not shown in the figure), the sterilization chamber 1 can be divided into two parts. One part is located directly below the conveying mechanism and is used to receive the dehydrated towels for drying and sterilization. The other part is used to place commonly used items such as toothbrushes and mouthwash cups. Thus, while drying the towels, the toothbrushes and mouthwash cups are simultaneously disinfected and sterilized, expanding the versatility of the multi-functional bathroom cabinet. In addition, after using the gridded transparent material to partition and divide the sterilization chamber 1, the ultraviolet lamps and blowers installed in the sterilization chamber 1 can ignore the influence of the partition during operation, and the two divided parts of the sterilization chamber 1 can be dried and sterilized simultaneously. This avoids the need to install multiple ultraviolet lamps and blowers after the sterilization chamber 1 is divided to ensure the normal use of the partitioned parts, thereby reducing the cost of the multi-functional bathroom cabinet to a certain extent.

[0056] In one embodiment of the present invention, the water removal mechanism includes:

[0057] The first roller 5 is rotatably installed inside the dewatering chamber 3, and the length direction of the first roller 5 is the same as the width direction of the cabinet 10.

[0058] The second roller 6 is rotatably installed inside the dewatering chamber 3. The length direction of the second roller 6 is the same as the width direction of the cabinet 10. The first roller 5 and the second roller 6 are located on the same horizontal plane.

[0059] The space near the back panel of the bathroom cabinet in the dewatering chamber 3 is divided into a partition chamber 4 by a partition. The motor 7 is installed inside the partition chamber 4. There are two motors 7, and the rotating shafts of the two motors 7 are respectively connected to the first roller 5 and the second roller 6.

[0060] A filter plate 8 is movably connected to the inside of the dewatering chamber 3. The filter plate 8 is located below the first roller 5. An electric push rod 81 is vertically arranged below the partition chamber 4. A sliding groove 82 is vertically opened on the partition plate between the dewatering chamber 3 and the partition chamber 4. The filter plate 8 extends into the partition chamber 4 through the sliding groove 82 at one end near the partition chamber 4 and is connected to the extended end of the electric push rod 81.

[0061] During operation, after a towel is placed into the dewatering chamber 3 through the channel 2, when a sensor inside the dewatering chamber 3 detects that the towel has fallen onto the first roller 5 and the second roller 6, the motor 7 inside the partition chamber 4 starts working. The rotating shafts of the motors 7 corresponding to the first roller 5 and the second roller 6 respectively drive the first roller 5 to rotate clockwise and the second roller 6 to rotate counterclockwise. This allows the towel falling onto the first roller 5 and the second roller 6 to be squeezed and dewatered under the action of both rollers, and then pushed towards the filter plate 8. The filtered water flows through the filter plate 8 to the bottom of the dewatering chamber 3 and then out through the water pipe. Once the towel has completely fallen onto the filter plate 8, the motor 7 stops working. At this point, the electric push rod 81, vertically positioned at the bottom of the partition chamber 4, begins operation. A vertical groove 82 is provided on the partition between the dewatering chamber 3 and the partition chamber 4. The filter plate 8, with one end near the partition chamber 4 extending into the partition chamber 4 via the groove 82, connects to the extended end of the electric push rod 81, thus enabling the extended end of the electric push rod 81 to filter the water. Plate 8 moves upward inside the dewatering chamber 3, and a sealing ring made of rubber material is set in the slide groove 82 to prevent water squeezed out of the towel by the first roller 5 and the second roller 6 from flowing into the partition chamber 4, causing the internal electric push rod 81 to become damp and damaged. When the towel comes into contact with the first roller 5 and the second roller 6, the controller controls the electric push rod 81 to stop working. Then the controller controls the motor 7 to reverse, so that the motor 7 controlling the first roller 5 drives the first roller 5 to rotate counterclockwise, and the motor 7 controlling the second roller 6 drives the second roller 6 to rotate clockwise. This performs secondary dewatering on the towel, avoiding the problem that the towel moves towards the filter plate 8 during the first dewatering process, and the water dripping from the towel is re-immersed on the towel by the first roller 5 and the second roller 6, resulting in poor dewatering effect. After the towel is dewatered for the second time, it is transported from the dewatering chamber 3 to the sterilization chamber 1 by the conveying mechanism. Then the towel can undergo a further sterilization and drying process, thereby improving the effect when people use the towel and preventing the towel from growing bacteria.

[0062] In one embodiment of the present invention, the conveying mechanism includes:

[0063] The conveyor plate 9 is disposed on the inner wall of the dewatering chamber 3 in the width direction of the cabinet 10, and the conveyor plate 9 is located on the side of the second roller 6;

[0064] Baffle 11, the cross-section of the baffle 11 is concave, the baffle 11 is vertically arranged on the inner wall of the cabinet 10, one end of the baffle 11 is connected to the conveying plate 9, and the other end extends into the sterilization chamber 1, the baffle 11 and the inner wall of the cabinet 10 form a conveying channel;

[0065] During operation, after the towels have been dehydrated twice, they can be conveyed by the conveyor plate 9 located on the side of the second roller 6 in the width direction of the cabinet 10. The towels then enter the sterilization chamber 1 through the conveyor channel formed by the baffle 11 and the inner wall of the cabinet 10. The towels are then dried and sterilized by the blower and sterilization lamp inside the sterilization chamber 1.

[0066] The conveying channel formed between the baffle 11 and the cabinet 10 connects the sterilization chamber 1 and the dehydration chamber 3. The hot air blown out by the blower can enter the dehydration chamber 3 through the conveying channel to dry the inside of the dehydration chamber 3, reducing the problem of dampness and easy bacterial growth inside the dehydration chamber 3. At the same time, the partition between the sterilization chamber 1 and the dehydration chamber 3 can be made of glass so that when the ultraviolet lamp inside the sterilization chamber 1 is irradiated, the ultraviolet light can pass through the partition to sterilize and disinfect the inside of the dehydration chamber 3, thereby improving the use effect of this device and avoiding the problem of towels becoming infected with bacteria and producing odors during the dehydration process, thus improving the practical effect of this device.

[0067] In one embodiment of the present invention, the dewatering mechanism further includes a guide unit, which is disposed on the top wall inside the dewatering chamber 3. The guide unit is used to guide the towel that has been dewatered by the dewatering mechanism.

[0068] During operation, when the towels undergo secondary dehydration, a guide unit located on the top wall inside the dehydration chamber 3 guides the towels, which have been continuously squeezed upwards by the first roller 5 and the second roller 6, to ensure that the dehydrated towels pass through the conveyor plate 9 into the conveying channel formed by the baffle 11 and the inner wall of the cabinet 10, and finally into the sterilization chamber 1. The guide unit effectively prevents the portion of the towels above the first roller 5 and the second roller 6 from falling back onto the filter plate 8 after secondary dehydration, thereby improving the effectiveness and practicality of the device.

[0069] In one embodiment of the present invention, the guiding unit includes:

[0070] A straight plate 12 is vertically disposed on the top wall of the water removal chamber 3, and the straight plate 12 is located at the opening of the through groove 2;

[0071] Inclined plate 13 is inclinedly disposed at the opening of the through groove 2 on the opposite side of the straight plate 12, and the upper end of the inclined plate 13 is hinged to the top wall of the water removal chamber 3.

[0072] Limiting plate 14, the limiting plate 14 is disposed on the top wall of the dewatering chamber 3 on the side of the inclined plate 13 away from the straight plate 12;

[0073] Spring 15, which is disposed between the inclined plate 13 and the limiting plate 14;

[0074] During operation, when the towel undergoes secondary dehydration, the first roller 5 and the second roller 6 guide the upper end of the towel after secondary dehydration through the inclined plate 13. When the towel tilts towards the first roller 5, the upper end of the straight plate 12 is vertically positioned at the opening of the through groove 2 above the first roller 5, thus limiting the towel. As the towel is continuously squeezed out, it falls onto the conveyor plate 9 under the action of the inclined plate 13. Finally, it enters the sterilization chamber 1 through the conveying channel formed by the baffle 11 and the inner wall of the cabinet 10. At the same time, because the lower end of the straight plate 12 is close to the outer surface of the first roller 5, the towel will not be wrapped around the first roller 5 when it undergoes secondary dehydration. Instead, under the action of the limiting plate 14, the towel that has been continuously squeezed upward by the first roller 5 and the second roller 6 is conveyed to the conveyor plate 9, thereby improving the practical effect of this device.

[0075] When a towel is placed into the through groove 2, the towel presses down on the inclined plate 13, causing the towel to enter the dewatering chamber 3 above the first roller 5 and the second roller 6. Then, by setting the inclined plate 13 on a limiting plate 14 away from the straight plate 12, and the limiting plate 14 and the inclined plate 13 are connected by a spring 15, and the upper end of the inclined plate 13 is hinged to the top wall of the dewatering chamber 3, the inclined plate 13 can be reset under the action of the spring 15. This prevents the towel from moving out of the through groove 2 through the gap between the inclined plate 13 and the straight plate 12 during secondary dewatering, thereby improving the practical effect of this device.

[0076] In one embodiment of the present invention, the dewatering mechanism further includes a hooking unit, which is disposed on the first roller 5 and the second roller 6, and is used to hook the towel inside the dewatering chamber 3.

[0077] During operation, after the towel is placed through the trough 2 and dehydrated once by the dewatering mechanism, it falls onto the filter plate 8. Then, by reversing the first roller 5 and the second roller 6, the hooking unit set on the first roller 5 and the second roller 6 hooks the towel on the filter plate 8, thus preventing the towel from being unable to be rolled up by the reversing first roller 5 and the second roller 6, which would prevent the towel from being dehydrated a second time.

[0078] In one embodiment of the present invention, the hooking unit includes:

[0079] Hook 16, the hook 16 is disposed on the circumferential surface near both ends of the first roller 5;

[0080] Groove 17, the groove 17 is formed on the second roller 6, and the hook 16 extends into the groove 17;

[0081] During operation, after a towel is placed through the trough 2 and undergoes initial dehydration by the dewatering mechanism, it falls onto the filter plate 8. Then, by reversing the first roller 5 and the second roller 6, the hooks 16 on the first roller 5 hook up the towel. The remaining hooks 16 on the first roller 5 rotate with the first roller 5 and are positioned inside the grooves 17 on the second roller 6 to prevent collisions between the hooks 16 and the second roller 6. After the hooks 16 hook up the towel, the towel enters the space between the first roller 5 and the second roller 6 as the first roller 5 rotates. Then, under the action of the reversing first roller 5 and the second roller 6, the towel undergoes secondary dehydration. Finally, it is conveyed by the conveying mechanism to the sterilization chamber 1 for sterilization and drying, thereby improving the practical effect of this device.

[0082] In one embodiment of the present invention, the hook 16 is made of an elastic material;

[0083] During operation, by setting the hook 16 to be made of an elastic material, such as rubber, the towel will not be restricted by the hook 16 after it is rolled between the first roller 5 and the second roller 6, thereby reducing the damage to the towel, extending the service life of the towel, and improving the practical effect of the device.

[0084] In one embodiment of the present invention, the first roller 5 is provided with flanges from the middle to both ends, and the second roller 6 is provided with corresponding grooves.

[0085] During operation, when the towel is dewatered a second time, after the towel is rolled between the first roller 5 and the second roller 6, the first roller 5 has flanges from the middle to both ends, and the second roller 6 has corresponding grooves. This allows the towels located at both ends of the first roller 5 and the second roller 6 to move towards the middle of the first roller 5 and the second roller 6. This prevents the hooks 16 located at both ends of the first roller 5 from always hooking the towel, and prevents the towel from only gathering at one end of the first roller 5, which would result in poor dewatering effect on the towel.

[0086] In one embodiment of the present invention, the surfaces of the conveyor plate 9 and the baffle 11 are coated with a PTFE coating.

[0087] During operation, a PTFE coating is sprayed onto the surfaces of the conveyor plate 9 and the baffle 11. Because the PTFE coating has a certain self-lubricating effect, after the towel is dehydrated for the second time, the towel can smoothly enter the sterilization chamber 1 through the conveyor channel formed by the conveyor plate 9, the baffle 11 and the inner wall of the cabinet 10, thus avoiding it from staying inside the conveyor plate 9 or the conveyor channel formed by the baffle 11 and the inner wall of the cabinet 10, thereby improving the effectiveness of the device.

Claims

1. A multifunctional bathroom cabinet, comprising a cabinet body; The sterilization chamber is located on the lower side of one side of the cabinet, and a sterilization device is installed inside the sterilization chamber. Its features are: Bathroom cabinets also include: The through channel is located at the top of the cabinet. The dewatering chamber is located above the sterilization chamber and is connected to the through trough. The water removal mechanism is located inside the water removal chamber and is used to remove water from the towels placed inside the water removal chamber through the through groove. The water removal mechanism includes: A first roller is rotatably installed inside the dewatering chamber, and the length direction of the first roller is the same as the width direction of the cabinet. The second roller is rotatably installed inside the dewatering chamber. The length direction of the second roller is the same as the width direction of the cabinet. The first roller and the second roller are located on the same horizontal plane. The space near the back panel of the bathroom cabinet in the dewatering chamber is divided into a partition cavity by a partition. The motor is set inside the partition cavity. There are two motors, and the rotating shafts of the two motors are respectively connected to the first roller and the second roller. A filter plate is movably connected to the inside of the dewatering chamber. The filter plate is located below the first roller. An electric push rod is vertically arranged below the partition chamber. A sliding groove is vertically opened on the partition between the dewatering chamber and the partition chamber. The filter plate extends into the partition chamber through the sliding groove at one end near the partition chamber and is connected to the extended end of the electric push rod. The conveying mechanism connects the dewatering chamber and the sterilization chamber, and is used to transport the dewatered towels into the sterilization chamber. The conveying mechanism includes: a conveying plate, which is set on the inner wall of the dewatering chamber in the width direction of the cabinet and is located on the side of the second roller; a baffle, which has a concave cross-section and is vertically set on the inner wall of the cabinet, with one end of the baffle connected to the conveying plate and the other end extending into the sterilization chamber, forming a conveying channel with the inner wall of the cabinet. The dewatering mechanism also includes a guide unit, which is located on the top wall inside the dewatering chamber. The guide unit is used to guide the towels that have been dewatered by the dewatering mechanism. The dewatering mechanism also includes a hooking unit, which is disposed on the first roller and the second roller. The hooking unit is used to hook the towel inside the dewatering chamber. The hooking unit includes: a hook claw disposed on a circumferential surface near both ends of the first roller; and a groove formed on the second roller, into which the hook claw extends. The hooks are made of elastic material; the first roller has flanges from the middle to both ends, and the second roller has corresponding grooves.

2. A multifunctional bathroom cabinet according to claim 1, characterized in that: The guiding unit includes: A straight plate is vertically installed on the top wall of the dewatering chamber, and the straight plate is located at the opening of the through groove. An inclined plate is inclinedly set at the slot opening on the opposite side of the straight plate, and the upper end of the inclined plate is hinged to the top wall of the dewatering chamber. A limiting plate is installed on the top wall of the dewatering chamber on the side of the inclined plate away from the straight plate; A spring is positioned between the inclined plate and the limiting plate.

3. A multifunctional bathroom cabinet according to claim 1, characterized in that: The conveyor plates and baffles are coated with PTFE.

Citation Information

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