An electric towel rack

By introducing a drive motor and pipeline assembly into the electric towel rack, combining the thermal clamp strip and airflow channel, the problem of uneven drying of towels is solved, and the rapid drying and efficient energy-saving effects of towels are achieved.

CN117045144BActive Publication Date: 2025-08-05NINGBO HUAHANG METAL PROD CO LTD
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Patent Information

Application Number
CN202311224095.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-09-21
Publication Date
2025-08-05
Estimated Expiration
2043-09-21

AI Technical Summary

Technical Problem

When the existing electric towel rack is drying, the parts where the towel is in direct contact with the hanging tube are first dried, while the drying time at both ends of the towel is significantly extended, making it difficult to dry quickly.

Method used

The electric towel rack installed on the wall is used to rotate the impeller by driving the motor to drive the rotary rod, and the pipe assembly is used to circulate the hot air in the hanging pipe into the cavity of the installation box, and spray it through the air outlet to the surface of the hanging pipe. Combined with the thermal clamp strip and the air flow channel, the uniform distribution and direct contact of the hot air are achieved, and the towel moisture is quickly evaporated.

Benefits of technology

It realizes rapid drying of towels, improves drying efficiency, reduces the risk of bacterial growth, removes odor, saves energy, and occupies a small space, and is suitable for homes or public places with limited space.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses an electric towel rack, which relates to the technical field of household appliances. It is installed on the wall surface and includes two installation vertical rods. The installation vertical rods and the wall surface are connected by fixing rods. There are several hanging pipes for placing towels between the two installation vertical rods. A heating element is arranged inside the hanging pipe. An installation box is arranged on the fixing rod, and there is a cavity inside the installation box. The hanging pipe is communicated with the cavity of the installation box through a pipeline assembly, and the pipeline assembly is used to circulate the hot air in the hanging pipe into the cavity. A driving motor is arranged in the cavity of the installation box, the output end of the driving motor is connected with a rotating rod, and an impeller is arranged on the rotating rod. Several air outlets communicated with the cavity are arranged on the installation box, and the air outlet end of the air outlet faces the surface of the hanging pipe. The present invention has the function of quickly drying towels.
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Description

Technical Field

[0001] The present invention relates to the technical field of household appliances, in particular to an electric towel rack. Background Art

[0002] In daily life, people often use electric towel racks to hang towels or clothes. Electric towel racks are electrically heated devices used to heat and dry bathroom towels and clothes. They are usually made of metal and have a rack for hanging towels and clothes.

[0003] The heating principle of an electric towel rack is to build a heating element inside the hanging tube, which generates heat and conducts heat to the rack, thereby heating and drying the towels and clothes hung on it. The most commonly used heating elements are electric heating wires or electric heating tubes.

[0004] However, the existing electric towel racks only rely on the heating of the hanging tubes to dry towels. The parts of the towel that are in direct contact with the hanging tubes are dried first, while the drying time at both ends of the towel is significantly increased, making it difficult to dry the towels quickly. Therefore, an electric towel rack is proposed to solve the above technical problems. Summary of the Invention

[0005] The present application provides an electric towel rack with the function of quickly drying towels.

[0006] This application provides an electric heated towel rack, which adopts the following technical solution:

[0007] A heated towel rack is mounted on a wall and comprises two mounting uprights, the mounting uprights being connected to the wall via a fixing rod, a plurality of hanging tubes for placing towels being provided between the two mounting uprights, a heating element being provided inside the hanging tubes, a mounting box being provided on the fixing rod, a cavity being provided inside the mounting box, the hanging tubes being connected to the cavity of the mounting box via a pipe assembly, the pipe assembly being used to circulate the hot air in the hanging tubes into the cavity, a driving motor being provided in the cavity of the mounting box, a rotating rod being connected to the output end of the driving motor, an impeller being provided on the rotating rod, a plurality of air outlet nozzles being provided on the mounting box which are connected to the cavity, and the air outlet ends of the air outlet nozzles facing the surface of the hanging tubes.

[0008] By adopting the above technical solution, a motor is driven to drive a rotating rod, so that the impeller rotates inside the installation box, and the pipe assembly is used to circulate the hot air in the hanging tube into the cavity of the installation box, and spray it onto the surface of the hanging tube along the air outlet, thereby drying the towels on the hanging tube, quickly evaporating the moisture on the towels and making the towels dry quickly; compared with traditional drying methods, it is more efficient.

[0009] Preferably, a heat-conducting strip is provided on the upper surface of the hanging tube. The heat-conducting strip is detachably arranged with respect to the hanging tube. A lower arc surface matching the hanging tube is provided on the lower surface of the heat-conducting strip, and an upper arc surface is formed on the upper surface of the heat-conducting strip. The upper arc surface contacts the towel.

[0010] By adopting the above technical solution, the heat-conducting strip can provide support and fixation for the towel, preventing the towel from slipping during the drying process; this can ensure that the towel always remains in the position hanging on the rack and will not fall to the ground. Moreover, the upper arc surface of the heat-conducting strip contacts the towel, enabling hot air to more evenly cover the surface of the towel; this can ensure that the entire surface of the towel can be fully dried, avoiding the situation of partial drying and partial dampness. Additionally, the lower arc surface of the heat-conducting strip is detachably matched with the hanging tube for the installation and cleaning of the heat-conducting strip.

[0011] Preferably, the pipeline assembly includes a pipeline cavity provided in the installation box. A collecting pipe is provided in the pipeline cavity of the installation box. The installation box has a plurality of installation holes. The end of the hanging tube penetrates through the installation holes and the pipeline cavity and is connected to the collecting pipe. A plurality of first air outlets are provided on the collecting pipe. A first branch pipe is provided at the first air outlet of the collecting pipe. One end of the first branch pipe is connected to the collecting pipe, and the other end of the first branch pipe penetrates through the installation box and faces the cavity.

[0012] By adopting the above technical solution, by connecting the hanging tube and the collecting pipe to each other, the hot air in the hanging tube enters the interior of the collecting pipe and is introduced into the cavity through the first branch pipes evenly distributed on the collecting pipe. Through the first branch pipes evenly distributed on the collecting pipe, the hot air can be evenly sent into the cavity; this can ensure that the temperature distribution in the entire cavity is uniform, enabling the towel to be evenly heated during the drying process and avoiding the situation of local overheating or overcooling.

[0013] Preferably, the pipeline assembly further includes an air flow channel provided in the heat-conducting strip and a second air outlet provided on the collecting pipe. The input end of the air flow channel of the heat-conducting strip and the second air outlet of the collecting pipe are connected through a second branch pipe. A third air outlet is provided on the heat-conducting strip, and the third air outlet is connected to the air flow channel.

[0014] By adopting the above technical solution, by using the second branch pipe, the hot air in the hanging tube is introduced into the air flow channel in the heat-conducting strip and is sprayed on the surface of the towel along the third air outlet of the air flow channel. The hot air passes through the air flow channel in the heat-conducting strip and is sprayed on the surface of the towel through the third air outlet, enabling it to more directly contact the towel; this can further increase the contact area between the hot air and the towel, accelerate the drying speed, and improve the drying effect.

[0015] Preferably, the heat-conducting strip is provided with an end face parallel to the axis of the hanging tube, and the third air outlet is located on the end face.

[0016] By adopting the above technical solution, by arranging the third air outlet on the end face of the heat-conducting strip, hot air can be evenly ejected in the direction perpendicular to the axis of the hanging tube; this can ensure that the hot air can evenly cover the towel surface on the hanging tube, avoiding local overheating or overcooling, and achieving uniform drying of the towel. Moreover, the uniform ejection of hot air in the direction perpendicular to the axis of the hanging tube can make the hot air blow downward along the surface of the towel, causing the towel to receive a downward pulling force, effectively ensuring the flatness of the towel surface.

[0017] Preferably, a flow guide block is arranged on the end face of the heat-conducting strip. The flow guide block is provided with a flat surface and an arc-shaped guiding surface, and the flat surface and the arc-shaped guiding surface are tangent to each other. The third air outlet is located on one side of the flat surface.

[0018] By adopting the above technical solution, the flat surface and the arc-shaped guiding surface on the flow guide block can guide the hot air to form a more streamlined flow inside the heat-conducting strip; this can reduce the resistance of the hot air, increase the flow velocity of the hot air inside the heat-conducting strip, and improve the flow effect of the hot air.

[0019] Preferably, the end of the arc-shaped guiding surface faces the upper arc surface of the heat-conducting strip. The air flow passes through the third air outlet and is ejected onto the upper arc surface along the flat surface and the arc-shaped guiding surface in sequence, forming a first air flow path.

[0020] By adopting the above technical solution, through the design of the first air flow path, the hot air starts to be ejected from the third air outlet and then is ejected onto the upper arc surface along the paths of the flat surface and the arc-shaped guiding surface in sequence; this can make the hot air evenly cover the entire upper arc surface and achieve uniform drying of the towel.

[0021] Preferably, a plurality of injection holes are arranged inside the flow guide block. The injection holes are located at the junction of the flat surface and the arc-shaped guiding surface. The air flow passes through the third air outlet and is guided to the injection holes along the flat surface and finally ejected along the injection holes, forming a second air flow path.

[0022] By adopting the above technical solution, through the second air flow path, the hot air ejected from the injection holes is directed downward and ejected along the towel surface, which can directly contact the towel, increasing the contact area between the hot air and the towel; it can accelerate the heat conduction process, improve the drying efficiency, and make the towel dry faster.

[0023] Preferably, a fixing member is arranged on the hanging tube. A rotating shaft is arranged on the fixing member, and a bent rod is arranged on the rotating shaft. There are two bent rods and they are respectively located on both sides of the heat-conducting strip. A pressing shaft is arranged between the two bent rods, and the pressing shaft is located in the upper region of the heat-conducting strip.

[0024] By adopting the above technical solution, the rotating bent rod can firmly clamp the towel between the pressure roller and the heat-conducting strip; this can prevent the towel from loosening or falling during the drying process, ensuring the stability and continuity of the drying effect.

[0025] Preferably, a plurality of protruding ridges are provided on the surface of the pressure roller.

[0026] By adopting the above technical solution, the protruding ridges can increase the friction between the pressure roller and the towel, thereby increasing the clamping force; this can ensure that the towel is firmly clamped on the pressure roller, preventing the towel from loosening or falling during the drying process.

[0027] In summary, the present application has the following beneficial effects:

[0028] 1. Through the driving motor, it is used to drive the rotating rod, so that the impeller rotates inside the installation box, and by using the pipeline component, the hot air in the hanging pipe is circulated into the cavity of the installation box and sprayed onto the surface of the hanging pipe along the air outlet nozzle, thereby realizing the drying of the towel on the hanging pipe, quickly evaporating the water on the towel, and making the towel dry rapidly; compared with the traditional drying method, it is more efficient; the hot air sprayed out through the air outlet nozzle can kill bacteria and microorganisms on the towel, effectively reducing the bacterial growth on the towel and reducing the risk of cross-infection; at the same time, drying can also remove the odor on the towel and keep the towel fresh; and the electric towel rack is equipped with a temperature control component, and through the temperature control component, it has a temperature control function and can adjust the temperature according to needs, avoiding energy waste. It should be noted that the fixed rod is installed on the wall surface by means of glue or expansion screws, so that the electric towel rack is installed on the wall surface, occupying relatively little space; for families or public places with limited space, using an electric towel rack can make better use of the space. BRIEF DESCRIPTION OF THE DRAWINGS

[0029] Figure 1 is the overall structural schematic diagram of the electric towel rack in this embodiment;

[0030] Figure 2 is the exploded structural schematic diagram between the installation box and the driving motor in this embodiment;

[0031] Figure 3 is the internal structural schematic diagram of the pipeline component in this embodiment;

[0032] Figure 4 is the overall structural schematic diagram of the heat-conducting strip in this embodiment;

[0033] Figure 5 is in this embodiment Figure 4 The enlarged structural schematic diagram of part A;

[0034] Figure 6 It is a schematic diagram of the overall structure of the connection between the hanging pipe and the heat conduction strip in this embodiment;

[0035] Figure 7 It is a schematic diagram of the overall structure of the bent rod in a flipped state in this embodiment;

[0036] Figure 8 In this embodiment Figure 6 The enlarged structure schematic diagram at position B in;

[0037] Explanation of reference numerals: 1, installation vertical rod; 2, fixed rod; 3, hanging pipe; 4, installation box; 5, cavity; 6, pipeline assembly; 601, collecting pipe; 602, installation hole; 603, first branch pipe; 604, second air outlet; 605, second branch pipe; 606, third air outlet; 607, air flow channel; 7, driving motor; 8, rotating rod; 9, impeller; 10, air outlet nozzle; 11, heat conduction strip; 12, end face; 13, flow guiding block; 14, plane; 15, arc-shaped guiding surface; 16, shooting hole; 17, fixing piece; 18, rotating shaft; 19, bent rod; 20, pressing shaft; 21, raised rib Detailed implementation manners

[0038] The present application will be further described in detail below with reference to the accompanying drawings. It is necessary to point out here that the following specific implementation manners are only used to further illustrate the present application and cannot be understood as limiting the protection scope of the present application. Those skilled in the art can make some non-essential improvements and adjustments to the present application according to the above application content.

[0039] The present invention discloses an electric heated towel rack, as Figure 1 and Figure 2As shown in the figure, it is installed on the wall surface and includes two installation vertical rods 1. The installation vertical rods 1 and the wall surface are connected by fixing rods 2. A number of hanging pipes 3 for placing towels are provided between the two installation vertical rods 1. A heating element is arranged inside the hanging pipe 3. It should be noted that the heating element is a heating wire, but is not limited thereto. An installation box 4 is provided on the fixing rod 2. A cavity 5 is provided inside the installation box 4. The hanging pipe 3 is communicated with the cavity 5 of the installation box 4 through a pipeline component 6. The pipeline component 6 is used to circulate the hot air in the hanging pipe 3 into the cavity 5. A driving motor 7 is provided in the cavity 5 of the installation box 4. The output end of the driving motor 7 is connected to a rotating rod 8. An impeller 9 is provided on the rotating rod 8. A number of air outlets 10 communicated with the cavity 5 are provided on the installation box 4. The air outlet end of the air outlet 10 faces the surface of the hanging pipe 3. Through the driving motor 7, it is used to drive the rotating rod 8, so that the impeller 9 rotates inside the installation box 4, and by using the pipeline component 6, the hot air in the hanging pipe 3 is circulated into the cavity 5 of the installation box 4 and sprayed onto the surface of the hanging pipe 3 along the air outlets 10, so as to realize drying the towels on the hanging pipe 3, quickly evaporating the moisture on the towels and making the towels dry rapidly. Compared with the traditional drying method, it is more efficient. The hot air ejected from the air outlets 10 can kill bacteria and microorganisms on the towels, effectively reducing the bacterial growth on the towels and reducing the risk of cross-infection. At the same time, drying can also remove the odor on the towels and keep the towels fresh. And the electric towel rack is equipped with a temperature control component. Through the temperature control component, it has the temperature control function and can adjust the temperature according to needs to avoid energy waste. It should be noted that the fixing rod 2 is installed on the wall surface by means of glue or expansion screws, so that the electric towel rack is installed on the wall surface and occupies relatively little space. For families or public places with limited space, using an electric towel rack can make better use of the space.

[0040] As Figure 3 and Figure 4As shown, a heat-conducting strip 11 is provided on the upper surface of the hanging tube 3. The heat-conducting strip 11 is detachably arranged with respect to the hanging tube 3. The lower surface of the heat-conducting strip 11 has a lower arc surface matching the hanging tube 3, and the upper surface of the heat-conducting strip 11 forms an upper arc surface which contacts the towel. The heat-conducting strip 11 can provide support and fixation for the towel, preventing the towel from slipping during the drying process. This can ensure that the towel always remains in the position hanging on the rack and does not fall to the ground. Moreover, the upper arc surface of the heat-conducting strip 11 contacts the towel, enabling hot air to more evenly cover the surface of the towel. This can ensure that the entire surface of the towel is fully dried, avoiding the situation of partial drying and partial dampness. Also, the lower arc surface of the heat-conducting strip 11 is detachably matched with the hanging tube 3, which is used for the installation and cleaning of the heat-conducting strip 11, and can keep the towel in its original shape during the hanging process, preventing the towel from deforming or creasing and maintaining the beauty and neatness of the towel. In short, by providing the heat-conducting strip 11 on the hanging tube 3 and making it contact the towel, it can prevent the towel from slipping, achieve uniform drying, and keep the shape of the towel. This can improve the use experience of the electric towel rack and make the drying of the towel more effective and convenient. The pipe assembly 6 includes a pipe cavity provided in the installation box 4. A collecting pipe 601 is provided in the pipe cavity of the installation box 4. A plurality of installation holes 602 are provided on the installation box 4. The end of the hanging tube 3 penetrates through the installation hole 602 and the pipe cavity and is connected to the collecting pipe 601. A plurality of first air outlets are provided on the collecting pipe 601. A first branch pipe 603 is provided at the first air outlet of the collecting pipe 601. One end of the first branch pipe 603 is connected to the collecting pipe 601, and the other end of the first branch pipe 603 penetrates through the installation box 4 and faces into the cavity 5. By being interconnected between the hanging tube 3 and the collecting pipe 601, the hot air in the hanging tube 3 enters the interior of the collecting pipe 601 and is introduced into the cavity 5 through the uniformly distributed first branch pipes 603 of the collecting pipe 601. Through the uniformly distributed first branch pipes 603 of the collecting pipe 601, the hot air can be evenly sent into the cavity 5. This can ensure that the temperature distribution in the entire cavity 5 is uniform, enabling the towel to be heated evenly during the drying process and avoiding the situation of local overheating or overcooling.

[0041] As Figure 3 , Figure 4 and Figure 5As shown, the pipe assembly 6 further includes an air flow channel 607 provided in the heat conduction strip 11 and a second air outlet 604 provided on the manifold 601. The input end of the air flow channel 607 in the heat conduction strip 11 and the second air outlet 604 of the manifold 601 are connected through a second branch pipe 605. A third air outlet 606 is provided on the heat conduction strip 11, and the third air outlet 606 is connected to the air flow channel 607. By using the second branch pipe 605, the hot air in the hanging pipe 3 is introduced into the air flow channel 607 in the heat conduction strip 11 and sprayed on the surface of the towel along the third air outlet 606 of the air flow channel 607. The hot air passes through the air flow channel 607 in the heat conduction strip 11 and is sprayed on the surface of the towel through the third air outlet 606, which can directly contact the towel more. It can further increase the contact area between the hot air and the towel, accelerate the drying speed, and improve the drying effect. Moreover, the hot air sprayed through the third air outlet 606 can not only be evenly distributed on the surface of the towel, avoiding uneven drying, ensuring that all parts of the towel can be fully dried, keeping the whole towel dry and clean, but also accelerating the drying speed. The hot air directly contacts the towel, and the heat transfer is faster, making the moisture of the towel evaporate more quickly, thus shortening the time of the whole drying process. In addition, since the hot air is sprayed on the surface of the towel through the air flow channel 607 in the heat conduction strip 11, the hot air can be more evenly distributed on the towel, avoiding overheating or overcooling. This can improve the comfort of drying, making the towel softer and more comfortable during the drying process. In short, by using the second branch pipe 605 to introduce the hot air in the hanging pipe 3 into the air flow channel 607 in the heat conduction strip 11 and spraying it on the surface of the towel along the third air outlet 606 of the air flow channel 607, the drying effect can be improved, the towel can be evenly dried, the drying speed can be accelerated, and the comfort of drying can be improved. This can enhance the use effect of the electric towel rack and provide a better drying experience.

[0042] As Figure 5As shown, the heat-conducting strip 11 has an end face 12 parallel to the axis of the hanging tube 3, and the third air outlet 606 is located on the end face 12. By positioning the third air outlet 606 on the end face 12 of the heat-conducting strip 11, hot air can be evenly ejected in the direction perpendicular to the axis of the hanging tube 3. This ensures that the hot air can evenly cover the towel surface on the hanging tube 3, avoiding local overheating or overcooling and achieving uniform drying of the towel. Moreover, when the hot air is evenly ejected in the direction perpendicular to the axis of the hanging tube 3, it can blow the hot air downward along the surface of the towel, causing the towel to receive a downward pulling force, effectively ensuring the flatness of the towel surface. Since the third air outlet 606 is located on the end face 12 of the heat-conducting strip 11, the ejected hot air can more concentratedly act directly on the towel surface. This increases the contact area between the hot air and the towel, speeds up the heat transfer rate, improves the drying efficiency, and enables the towel to be dried more quickly. Additionally, the hot air can be directly ejected onto the towel surface, reducing the loss of hot air during the ejection process. This effectively reduces energy loss and improves the energy utilization efficiency of the drying system. In short, by providing an end face 12 parallel to the axis of the hanging tube 3 on the heat-conducting strip 11 and positioning the third air outlet 606 on the end face 12, uniform ejection of hot air can be achieved, improving the drying efficiency and reducing energy loss, further enhancing the usage effect of the electric towel rack and providing a better drying experience. A flow guide block 13 is provided on the end face 12 of the heat-conducting strip 11. The flow guide block 13 has a flat surface 14 and an arc-shaped guiding surface 15, and the flat surface 14 and the arc-shaped guiding surface 15 are tangentially arranged. The third air outlet 606 is located on one side of the flat surface 14. The flat surface 14 and the arc-shaped guiding surface 15 on the flow guide block 13 can guide the hot air to form a more streamlined flow inside the heat-conducting strip 11. This reduces the resistance of the hot air, increases the flow velocity of the hot air inside the heat-conducting strip 11, and improves the flow effect of the hot air. Moreover, the flow guide block 13 with the flat surface 14 and the arc-shaped guiding surface 15 tangentially arranged can cause the hot air to generate a curved and rotating flow when passing through the flow guide block 13. This increases the contact area between the hot air and the towel, enables the hot air to more fully contact the towel surface, improves the drying effect, and the hot air forms a rotating air current when passing through the flat surface 14 and the arc-shaped guiding surface 15. This makes the hot air more evenly distributed when ejected onto the towel surface, avoiding uneven drying and ensuring that all parts of the towel can be fully dried, maintaining the overall dryness and cleanliness of the towel. In short, by providing a flow guide block 13 on the end face 12 of the heat-conducting strip 11, with the flow guide block 13 having a flat surface 14 and an arc-shaped guiding surface 15, and the flat surface 14 and the arc-shaped guiding surface 15 being tangentially arranged, and the third air outlet 606 being located on one side of the flat surface 14, the flow of hot air can be strengthened, the contact area between the hot air and the towel can be increased, and the towel can be evenly dried, further enhancing the usage effect of the electric towel rack and providing a better drying experience.The end of the arc-shaped guide surface 15 faces the upper arc surface of the heat-conducting strip 11. The air flow passes through the third air outlet 606 and is ejected onto the upper arc surface along the plane 14 and the arc-shaped guide surface 15 in sequence, forming the first air flow path. Through the design of the first air flow path, hot air is ejected from the third air outlet 606 and then ejected onto the upper arc surface along the paths of the plane 14 and the arc-shaped guide surface 15 in sequence. This can make the hot air evenly cover the entire upper arc surface, achieving uniform drying of the towel. In addition, the hot air has a relatively high temperature, which can generate thermal convection, causing dust to rise due to heat. When the hot air on the first air flow path is ejected onto the arc surface, the dust on the arc surface can be carried away through the action of thermal convection, thereby achieving the effect of removing dust, facilitating the cleaning and maintenance of the heat-conducting strip 11. A number of injection holes 16 are provided inside the diversion block 13. The injection holes 16 are located at the junction of the plane 14 and the arc-shaped guide surface 15. The air flow passes through the third air outlet 606 and is guided to the injection holes 16 along the plane 14 and finally ejected out along the injection holes 16, forming the second air flow path. Through the second air flow path, the hot air ejected from the injection holes 16 is ejected downward and along the surface of the towel, directly contacting the towel. This not only increases the contact area between the hot air and the towel, speeds up the heat conduction process, improves the drying efficiency, and makes the towel dry faster, but also enables the hot air to form a thin film during the ejection process, wrapping the surface of the towel. This can reduce the possibility of the towel deforming at high temperatures and maintain the original shape and quality of the towel.

[0043] As Figure 6 and Figure 7 shown, a fixing member 17 is provided on the hanging pipe 3. A rotating shaft 18 is provided on the fixing member 17. A bent rod 19 is provided on the rotating shaft 18. There are two bent rods 19, which are respectively located on both sides of the heat-conducting strip 11. A pressing shaft 20 is provided between the two bent rods 19. The pressing shaft 20 is located in the upper region of the heat-conducting strip 11. The rotating bent rod 19 can firmly clamp the towel between the pressing shaft 20 and the heat-conducting strip 11. This can prevent the towel from loosening or falling during the drying process, ensuring the stability and continuity of the drying effect. And by clamping between the pressing shaft 20 and the heat-conducting strip 11, the original shape and quality of the towel can be maintained, avoiding the deformation that may occur when the towel freely hangs or stacks at high temperatures.

[0044] As Figure 8As shown in the figure, several raised ribs 21 are provided on the surface of the pressure roller 20; the raised ribs 21 can increase the friction between the pressure roller 20 and the towel, thereby increasing the clamping force; this can ensure that the towel is firmly clamped on the pressure roller 20, avoiding loosening or falling of the towel during the drying process; and through the raised ribs 21, the contact area between the towel and the pressure roller 20 can be increased; this can achieve more uniform heat conduction, enabling heat to be transferred more evenly to each part of the towel, realizing uniform heating of the towel. In addition, the raised ribs 21 increase the contact area between the towel and the pressure roller 20, increasing the efficiency of heat conduction; this can improve the drying efficiency and make the towel dry faster; in summary, by providing several raised ribs 21 on the surface of the pressure roller 20, the clamping force can be increased, uniform heating can be achieved, the drying efficiency can be improved, and a better user experience can be provided for users.

[0045] Working principle: During installation, the user positions the fixing rod 2 on the wall surface and uses expansion screws to fix the fixing rod 2 to the wall surface.

[0046] Then, the towel is placed on the heat-conducting strip 11 of the hanging pipe 3, and the bent rod 19 is rotated. The rotating bent rod 19 can firmly clamp the towel between the pressure roller 20 and the heat-conducting strip 11. Then, the driving motor 7 is started to drive the rotating rod 8, so that the impeller 9 rotates inside the installation box 4. Using the pipeline assembly 6, the hot air in the hanging pipe 3 is circulated into the cavity 5 of the installation box 4 and sprayed onto the surface of the hanging pipe 3 along the air outlet nozzle 10; in addition, under the action of the impeller 9, the hot air in the hanging pipe 3 enters the inside of the air flow channel 607 and is sprayed onto the towel along the third air outlet 606, thereby realizing the drying of the towel on the hanging pipe 3, quickly evaporating the moisture on the towel, and making the towel dry rapidly; compared with the traditional drying method, it is more efficient.

[0047] The above are all preferred embodiments of this application, and the protection scope of this application is not limited thereby. Therefore, all equivalent changes made according to the structure, shape, and principle of this application should be covered within the protection scope of this application.

Claims

1. An electric heated towel rack, which is mounted on a wall, comprises two mounting poles (1), wherein the mounting poles (1) and the wall are connected via a fixing rod (2), and a plurality of hanging tubes (3) for placing towels are provided between the two mounting poles (1), wherein a heating element is provided inside the hanging tubes (3), and wherein: The fixing rod (2) is provided with an installation box (4), the interior of the installation box (4) is provided with a cavity (5), the hanging pipe (3) and the cavity (5) of the installation box (4) are communicated with each other through a pipe assembly (6), the pipe assembly (6) is used to circulate the hot air in the hanging pipe (3) into the cavity (5), a driving motor (7) is provided in the cavity (5) of the installation box (4), the output end of the driving motor (7) is connected to a rotating rod (8), the rotating rod (8) is provided with an impeller (9), and the installation box (4) is provided with a plurality of air outlet nozzles (10) connected with the cavity (5), the air outlet end of the air outlet nozzle (10) faces the surface of the hanging pipe (3); The upper surface of the hanging tube (3) is provided with a heat-conducting card strip (11), and the heat-conducting card strip (11) and the hanging tube (3) are detachably arranged. The lower surface of the heat-conducting card strip (11) is provided with a lower arc surface that matches the hanging tube (3), and the upper surface of the heat-conducting card strip (11) forms an upper arc surface, and the upper arc surface is in contact with the towel; The pipeline assembly (6) includes a pipeline cavity provided in the installation box (4), and a collecting pipe (601) is provided in the pipeline cavity of the installation box (4); The pipeline assembly (6) further comprises an air flow channel (607) provided in the heat conductive card strip (11) and a second air outlet (604) provided on the collecting pipe (601); the input end of the air flow channel (607) of the heat conductive card strip (11) and the second air outlet (604) of the collecting pipe (601) are communicated with each other via a second branch pipe (605); a third air outlet (606) is provided on the heat conductive card strip (11), and the third air outlet (606) is communicated with the air flow channel (607); The heat-conducting card strip (11) is provided with an end surface (12) parallel to the axis of the hanging tube (3), and the third air outlet (606) is located on the end surface (12).

2. The electric heated towel rack according to claim 1, characterized in that: The installation box (4) is provided with a plurality of installation holes (602), the end of the hanging pipe (3) passes through the installation hole (602) and the pipeline cavity and is connected to the collecting pipe (601), the collecting pipe (601) is provided with a plurality of first air outlets, and a first branch pipe (603) is provided at the first air outlet of the collecting pipe (601), one end of the first branch pipe (603) is connected to the collecting pipe (601), and the other end of the first branch pipe (603) passes through the installation box (4) and faces into the cavity (5).

3. The electric heated towel rack according to claim 1, characterized in that: A guide block (13) is provided on the end surface (12) of the heat-conducting card strip (11), and a plane (14) and an arc-shaped guide surface (15) are provided on the guide block (13), the plane (14) and the arc-shaped guide surface (15) are arranged tangentially, and the third air outlet (606) is located on one side of the plane (14).

4. The electric heated towel rack according to claim 3, characterized in that: The end of the arc-shaped guide surface (15) faces the upper arc-shaped surface of the heat transfer card strip (11), and the air flow passes through the third air outlet (606) and is sequentially ejected along the plane (14) and the arc-shaped guide surface (15) to the upper arc-shaped surface, forming a first air flow path.

5. The electric heated towel rack according to claim 3, characterized in that: The guide block (13) is provided with a plurality of perforations (16) inside. The perforations (16) are located at the intersection of the plane (14) and the arc-shaped guide surface (15). The airflow passes through the third air outlet (606) and is guided along the plane (14) into the perforations (16). Finally, the airflow is ejected along the perforations (16) to form a second airflow path.

6. The electric heated towel rack according to claim 1, characterized in that: The hanging tube (3) is provided with a fixing part (17), the fixing part (17) is provided with a rotating shaft (18), the rotating shaft (18) is provided with a bending rod (19), two bending rods (19) are provided and are respectively located on both sides of the heat conductive card strip (11), a pressing shaft (20) is provided between the two bending rods (19), and the pressing shaft (20) is located in the upper area of the heat conductive card strip (11).

7. The electric heated towel rack according to claim 6, characterized in that: The surface of the pressing shaft (20) is provided with a plurality of raised ribs (21).

Citation Information

Patent Citations

  • Towel rack

    CN202112992U

  • Circulating air flow type towel rack with air deflectors

    CN203662662U