Wardrobe with clothes drying function
By designing the electric drying cabinet body mechanism and condensing and ventilation device in the smart wardrobe, the shortcomings of the existing wardrobe in drying efficiency, insect repellent and airflow humidity reduction are solved, and the effects of multi-region temperature control, classification drying of clothes, current driving insects and condensation and dehumidification are achieved, and the efficiency of clothes drying and environmental drying are improved.
Patent Information
- Application Number
- CN202510382122.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-28
- Publication Date
- 2025-05-13
AI Technical Summary
The existing smart wardrobe has shortcomings in improving drying efficiency, deworming and reducing airflow humidity, which affects the drying effect of clothes and the drying environment around the wardrobe.
A wardrobe with drying clothes is designed, and an electric drying cabinet body mechanism is adopted, including a multi-stage temperature heating device and a condensing ventilation device. The electric drying cabinet body mechanism realizes independent control of different temperatures and classified drying of clothes through multiple independent drying areas and multi-stage temperature heating devices. The condensation and ventilation device uses an L-shaped condensation tube and an airflow speed increase device to condense the hot air flow discharged from the wardrobe, remove moisture, and improve drying efficiency and environmental dryness.
The temperature control of multiple independent drying areas is realized, which improves the efficiency and work efficiency of clothes drying; the insects are driven away by current to keep the interior of the wardrobe clean; the condensation and ventilation device effectively removes moisture and avoids mold in the surrounding environment of the wardrobe.
Smart Images

Figure CN119969737A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of smart homes, and in particular to a wardrobe with a clothes drying function. Background Art
[0002] In today's modern home life, urban living space is becoming increasingly cramped, and people are calculating every inch of space, eager to achieve multiple functions in limited indoor areas. Traditional clothes drying racks, whether floor-standing or hanging, or stand-alone dryers, all take up considerable space. In contrast, wardrobes that combine drying and storage have emerged.
[0003] Patent application with application number CN201810557567.7 discloses a smart wardrobe with automatic drying function, including a cabinet body, a support column fixedly connected to the inside of the cabinet body, a first motor also fixedly installed on the side wall of the support column, a mounting seat fixedly supported on the upper end of the support column, a first gear welded on the mounting seat, and a rotating shaft also rotatably connected to the mounting seat.
[0004] Currently, the first partition, movable isolation board and second partition of the smart wardrobe with automatic drying function separate the cabinet space, and place clothes for four seasons separately, which is convenient for finding when changing seasons. However, the device can also be improved in terms of improving drying efficiency, repelling insects, reducing air flow humidity, etc. In view of this, the test device is improved. Summary of the invention
[0005] The object of the present invention is to provide a wardrobe with a clothes drying function to solve the problems raised in the above background technology.
[0006] To achieve the above object, the present invention provides the following technical solution: a wardrobe with a clothes drying function, comprising an electric drying cabinet mechanism, the top of which is fixedly connected to a digital temperature detection device, a temperature insulation board is fixedly connected inside the electric drying cabinet mechanism, and a multi-stage temperature heating device is fixedly connected to the bottom of the electric drying cabinet mechanism; The multi-stage temperature heating device includes a first power-on device, a first fixing device is fixedly connected to the surface of the first power-on device, an annular stopper is fixedly connected to the cylindrical surface of the first power-on device, a first lever device is fixedly connected to the surface of the first power-on device, a first conductive device is movably connected to the top of one end of a lever of the first lever device, a rubber pad is fixedly connected to the end of the first lever device movably connected to the first conductive device, a first heating plate is fixedly connected to the top of the first conductive device, a first telescopic device is fixedly connected to the top of the other end of the lever of the first lever device, an insulating upper cover is sleeved on the surface of the first power-on device, and a supporting fixed base is arranged above the insulating upper cover.
[0007] Preferably, there are two insulation plates, which divide the space inside the cabinet of the powered drying cabinet mechanism into three independent spaces. There are three first lever devices, which are respectively located at the bottom of the three independent spaces inside the cabinet of the powered drying cabinet mechanism. There are three first conductive devices, which are respectively located at the top of the three first lever devices. The first fixing device is fixedly connected to the fixed base. The inner ring diameter of the annular block is consistent with the inner ring diameter of the first powered device. The outer ring diameter of the annular block is larger than the inner diameter of the insulating upper cover. The weight of one end of the first lever device connected to the first conductive device is greater than that of the other end. The first conductive device is sleeved inside the insulating upper cover. The first heating plate is located inside the supporting fixed base. The end of the first telescopic device away from the first lever device is fixedly connected to the bottom of the supporting fixed base.
[0008] Preferably, an automatic circulating switching current device is fixedly connected to the back of the powered drying cabinet mechanism, and a double filtering device is fixedly connected to the back of the powered drying cabinet mechanism.
[0009] Preferably, the automatic circulating switching current device includes a rectangular shell, a positive conductive device is fixedly connected inside the rectangular shell, a first negative conductive device is fixedly connected inside the rectangular shell, a second negative conductive device is fixedly connected inside the rectangular shell, a cam device is fixedly connected inside the rectangular shell, a second lever device is movably connected to the top of the cam device, and the second power-on device is fixedly connected to one end of the positive conductive device away from the powered drying cabinet mechanism.
[0010] Preferably, the second negative conductive device is higher than the first negative conductive device, the first negative conductive device is movably connected to the bottom of the second lever device, the second negative conductive device is movably connected to the top of the second lever device, the weight of one end of the second lever device movably connected to the second negative conductive device is greater than the other end, the cam device is located below the second negative conductive device, the second power-on device is fixedly connected to the rectangular housing, and the second power-on device is fixedly connected to the second negative conductive device.
[0011] Preferably, the double filtering device includes a first filter screen, and a metal filter screen is arranged on one side of the first filter screen close to the powered drying cabinet mechanism. The filtering accuracy of the metal filter screen is lower than that of the first filter screen. There are three double filtering devices, which are respectively located at the back of three independent spaces inside the powered drying cabinet mechanism. A condensing ventilation device is fixedly connected to the top of the powered drying cabinet mechanism.
[0012] Preferably, the condensation ventilation device includes an L-shaped condenser tube, one end of the L-shaped condenser tube away from the powered drying cabinet mechanism is fixedly connected to a rectangular water tank, a side of the rectangular water tank away from the powered drying cabinet mechanism is provided with a vent, a side of the vent away from the powered drying cabinet mechanism is fixedly connected to an airflow accelerating device, and one end of the airflow accelerating device away from the powered drying cabinet mechanism is fixedly connected to a bent pipe.
[0013] Preferably, the L-shaped condenser is rotated ninety degrees, and the angle between the pipes in two directions of the L-shaped condenser is less than ninety degrees. The end of the L-shaped condenser away from the rectangular water storage tank is fixedly connected to the powered drying cabinet mechanism. The axis of the pipe connecting the L-shaped condenser and the powered drying cabinet mechanism is perpendicular to the top surface of the powered drying cabinet mechanism. There are three L-shaped condensers, which are respectively located at the tops of three independent spaces inside the cabinet of the powered drying cabinet mechanism, and the vent is located on the side of the rectangular water storage tank near the top.
[0014] Compared with the prior art, the present invention has the following beneficial effects: 1. The wardrobe with clothes drying function has a plurality of different drying areas by energizing the drying cabinet mechanism, and the temperature of each drying area is independently controlled. Clothes that require drying at different temperatures can be dried at the same time through the plurality of drying areas with independent temperatures, and the clothes can be classified according to the drying time required, and the clothes that require different drying times can be dried at the same time, thereby increasing the drying work efficiency.
[0015] 2. The wardrobe with clothes drying function makes the surface of the wardrobe with clothes drying function have current by energizing the drying cabinet mechanism. The current on the surface of the wardrobe with clothes drying function is set through a reasonable voltage so that the voltage is within the safe voltage range of insects. While avoiding killing the insects, it will make the insects feel uncomfortable and drive away the insects that want to approach the wardrobe with clothes drying function.
[0016] 3. The wardrobe with clothes drying function condenses the hot air flow generated by the wardrobe with clothes drying function during the drying process through a condensation ventilation device, removes moisture inside the hot air flow, and then discharges the condensed air flow, so as to avoid the air flow discharged from the wardrobe with clothes drying function being too humid, causing the walls or furniture near the air outlet to become moldy.
[0017] 4. The wardrobe with clothes drying function increases the air flow rate inside the wardrobe with clothes drying function by energizing the drying cabinet mechanism and cooperating with the condensing ventilation device. The increased airflow can take away moisture on the surface of clothes more quickly, thereby improving the drying efficiency of the wardrobe with clothes drying function. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is a schematic diagram of the structure of the present invention; Figure 2 For the present invention Figure 1 A is an enlarged schematic diagram; Figure 3 is a cross-sectional view of the structure of the present invention; Figure 4 It is a structural schematic diagram of the multi-stage temperature heating device of the present invention; Figure 5 It is a cross-sectional view of the multi-stage temperature heating device of the present invention; Figure 6 For the present invention Figure 5 A magnified schematic diagram of B; Figure 7 It is a structural schematic diagram of the automatic circulating switching current device of the present invention; Figure 8 A cross-sectional view of the automatic circulating switching current device of the present invention Fig. 9 It is a structural schematic diagram of the automatic circulating switching current device of the present invention; Fig.10 It is a schematic structural diagram of the condensation ventilation device of the present invention.
[0019] In the figure: 1. Power-on drying cabinet mechanism; 2. Digital display temperature detection device; 3. Insulation board; 4. Multi-stage temperature heating device; 401. First power-on device; 402. First fixing device; 403. Annular stopper; 404. First lever device; 405. First conductive device; 406. Rubber pad; 407. First heating plate; 408. First telescopic device; 409. Insulation cover; 410. Support and fix base; 5. Automatic cycle switch current device; 501 , rectangular shell; 502, positive electrode conductive device; 503, first negative electrode conductive device; 504, second negative electrode conductive device; 505, cam device; 506, second lever device; 507, second power-on device; 6, double filtering device; 601, first filter screen; 602, metal filter screen; 7, condensation ventilation device; 701, L-shaped condenser; 702, rectangular water storage tank; 703, vent; 704, air flow speed increasing device; 705, bent pipe. DETAILED DESCRIPTION
[0020] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0021] For example, see Figure 1-Figure 9The present invention provides a technical solution: a wardrobe with a clothes drying function, comprising an electric drying cabinet mechanism 1, the electric drying cabinet mechanism 1 is used to separate clothes that require different drying temperatures to avoid drying clothes that require low-temperature drying together with clothes that require high-temperature drying, so that the clothes that require low-temperature drying are damaged, the top of the electric drying cabinet mechanism 1 is fixedly connected to a digital display temperature detection device 2, the inside of the electric drying cabinet mechanism 1 is fixedly connected to a temperature insulation board 3, the number of the temperature insulation boards 3 is two, and the space inside the cabinet of the electric drying cabinet mechanism 1 is evenly divided into three independent spaces, and the bottom of the electric drying cabinet mechanism 1 is fixedly connected to a multi-stage temperature heating device 4; the multi-stage temperature heating device 4 includes a first power-on device 401, the first power-on device 40 1 is fixedly connected to the surface of the first fixing device 402, and the first fixing device 402 is fixedly connected to the fixed base. The cylindrical surface of the first power-on device 401 is fixedly connected to an annular stopper 403, the outer ring diameter of the annular stopper 403 is larger than the inner diameter of the insulating upper cover 409, and the inner ring diameter of the annular stopper 403 is consistent with the inner ring diameter of the first power-on device 401. The surface of the first power-on device 401 is fixedly connected to a first lever device 404, and the weight of one end of the first lever device 404 connected to the first conductive device 405 is greater than the other end. There are three first lever devices 404, which are respectively located at the bottom of three independent spaces inside the cabinet of the power-on drying cabinet mechanism 1, and the top of one end of the lever of the first lever device 404 is movably connected to the first conductive device 405. The first conductive device 405 is sleeved inside the insulating upper cover 409. The number of the first conductive devices 405 is three and they are respectively located at the tops of the three first lever devices 404. One end of the first lever device 404 that is movably connected to the first conductive device 405 is fixedly connected to a rubber pad 406. The rubber pad 406 is used to reduce the impact of the bottom of the first lever device 404 on the first power-on device 401. The top of the first conductive device 405 is fixedly connected to a first heating plate 407. The first heating plate 407 is located inside the supporting fixed base 410. The top of the other end of the lever of the first lever device 404 is fixedly connected to a first telescopic device 408. The end of the first telescopic device 408 that is away from the first lever device 404 is connected to the supporting fixed base 410. The bottom is fixedly connected, an insulating upper cover 409 is sleeved on the surface of the first power-on device 401, and a supporting fixed base 410 is arranged above the insulating upper cover 409. An automatic cycle switching current device 5 is fixedly connected to the back of the power-on drying cabinet mechanism 1. The automatic cycle switching current device 5 is used to automatically repeat the closing of the current on the surface of the power-on drying cabinet mechanism 1 to reduce the probability of killing insects by the current. A double filtering device 6 is fixedly connected to the back of the power-on drying cabinet mechanism 1. The double filtering device 6 is used to cooperate with the condensing ventilation device 7 to increase the air flow rate while improving the filtering accuracy, and to drive away insects through the intermittent current on the surface of the metal filter 602 to prevent insects from clogging the double filtering device 6. The automatic cycle switching current device 5 includes a rectangular shell 501.A positive electrode conductive device 502 is fixedly connected inside the rectangular housing 501, a first negative electrode conductive device 503 is fixedly connected inside the rectangular housing 501, the first negative electrode conductive device 503 is movably connected to the bottom of the second lever device 506, a second negative electrode conductive device 504 is fixedly connected inside the rectangular housing 501, the second negative electrode conductive device 504 is movably connected to the top of the second lever device 506, the second negative electrode conductive device 504 is higher than the first negative electrode conductive device 503, a cam device 505 is fixedly connected inside the rectangular housing 501, the cam device 505 is located below the second negative electrode conductive device 504, the top of the cam device 505 is movably connected to the second lever device 506, the second lever device 506 is movably connected to the second negative electrode conductive device The weight of one end of the movable connection of the device 504 is greater than the other end. The end of the positive conductive device 502 away from the powered drying cabinet mechanism 1 is fixedly connected to the second powered device 507. The second powered device 507 is fixedly connected to the rectangular shell 501. The second powered device 507 is fixedly connected to the second negative conductive device 504. The double filter device 6 includes a first filter 601. A metal filter 602 is arranged on the side of the first filter 601 close to the powered drying cabinet mechanism 1. The filtering accuracy of the metal filter 602 is less than that of the first filter 601. There are three double filter devices 6, which are respectively located at the back of three independent spaces inside the cabinet of the powered drying cabinet mechanism 1. The top of the powered drying cabinet mechanism 1 is fixedly connected to a condensation ventilation device 7.
[0022] The working principle of this embodiment is as follows: by connecting the first power supply device 401 to a power source, and then extending the first telescopic device 408 to apply pressure to one end of the first lever device 404, the end of the first lever device 404 that is under pressure drops and contacts the first power supply device 401. Since the end of the first lever device 404 that contacts the first telescopic device 408 drops, the other end of the first lever device 404 rises and then connects to the first conductive device 405. Then the first power supply device 401 transmits current to the first conductive device 405 through the first lever device 404, and then the first conductive device 405 transmits current to the first heating plate. 407, and then the temperature of the first heating plate 407 begins to rise slowly. When the digital temperature detection device 2 located on the top of the powered drying cabinet mechanism 1 detects that the temperature reaches the set target, the first telescopic device 408 retracts to make the pressure on one end of the first lever device 404 disappear. Since the end of the first lever device 404 connected to the first conductive device 405 is heavier, the end of the first lever device 404 in contact with the first telescopic device 408 rises under the influence of gravity and leaves the surface of the first powered device 401, and the end of the first lever device 404 connected to the first conductive device 405 drops and leaves the surface of the first conductive device 405. , disconnect the circuit connection between the first power-on device 401 and the first heating plate 407, so that the first heating plate 407 does not continue to heat up. In this process, the second power-on device 507 is connected to a power source, and then the cam device 505 starts to rotate. During the rotation of the cam device 505, the cam of the cam device 505 slowly raises the height of one end of the second lever device 506. When the cam device 505 raises the height of one end of the second lever device 506 to the highest point and contacts the second negative conductive device 504, the other end of the second lever device 506 contacts the first negative conductive device 503, so that the surface of the power-on drying cabinet mechanism 1 is electrically The current flows, and since the end of the second lever device 506 that contacts the second negative conductive device 504 is lighter, as the cam device 505 continues to rotate, the end of the second lever device 506 that contacts the second negative conductive device 504 begins to decline. As the end of the second lever device 506 that contacts the second negative conductive device 504 declines, the end of the second lever device 506 that contacts the first negative conductive device 503 begins to rise, so that the current connection between the second power-on device 507 and the power-on drying cabinet mechanism 1 is disconnected. As the cam device 505 continues to rotate, this process is repeated, so that the power-on drying cabinet mechanism 1 is intermittently energized.
[0023] Example 2, based on Example 1, please refer to Fig.10The present invention provides a technical solution: the condensation ventilation device 7 includes an L-shaped condensation tube 701, the L-shaped condensation tube 701 is rotated ninety degrees, the angle between the pipes in the two directions of the L-shaped condensation tube 701 is less than ninety degrees, the end of the L-shaped condensation tube 701 away from the rectangular water storage tank 702 is fixedly connected to the powered drying cabinet mechanism 1, the pipeline axis connecting the L-shaped condensation tube 701 and the powered drying cabinet mechanism 1 is perpendicular to the top surface of the powered drying cabinet mechanism 1, the number of L-shaped condensation tubes 701 is three, and they are respectively located at the tops of three independent spaces inside the cabinet of the powered drying cabinet mechanism 1, and the L-shaped condensation tube 701 is used to condense the moisture inside the hot air flowing through Condensation reduces the humidity in the hot air, and the end of the L-shaped condenser 701 away from the powered drying cabinet mechanism 1 is fixedly connected to a rectangular water tank 702. A vent 703 is provided on the side of the rectangular water tank 702 away from the powered drying cabinet mechanism 1. The vent 703 is located on the side of the rectangular water tank 702 near the top. The side of the vent 703 away from the powered drying cabinet mechanism 1 is fixedly connected to an airflow acceleration device 704. The end of the airflow acceleration device 704 away from the powered drying cabinet mechanism 1 is fixedly connected to a bent pipe 705. The bent pipe 705 is used to reduce the flow rate of the exhaust airflow to prevent the exhaust airflow from blowing up dust or other debris.
[0024] The working principle of this embodiment is as follows: the flow rate of the air inside the powered drying cabinet mechanism 1 is increased by the air flow speed increasing device 704, and then as the powered drying cabinet mechanism 1 starts to operate, the hot air inside the powered drying cabinet mechanism 1 starts to rise, and in the process of the hot air inside the powered drying cabinet mechanism 1 passing through the L-shaped condenser 701, the hot air contacts the inner wall of the L-shaped condenser 701 with a lower temperature, so that the moisture inside the hot air condenses into liquid water, and the condensed liquid water flows along the inclined pipe of the L-shaped condenser 701 into the rectangular water storage tank 702, and the condensed hot air enters the air flow speed increasing device 704 through the vent 703 and then enters the bent pipe 705. In the process of passing through the bent pipe 705, the air flow rate is reduced by bending the bent pipe 705.
[0025] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A wardrobe with a clothes drying function, comprising an electric drying cabinet mechanism (1), characterized in that: The top of the powered drying cabinet mechanism (1) is fixedly connected to a digital temperature detection device (2), the interior of the powered drying cabinet mechanism (1) is fixedly connected to a temperature insulation board (3), and the bottom of the powered drying cabinet mechanism (1) is fixedly connected to a multi-stage temperature heating device (4); The multi-stage temperature heating device (4) comprises a first power supply device (401), a first fixing device (402) is fixedly connected to the surface of the first power supply device (401), a ring-shaped stopper (403) is fixedly connected to the cylindrical surface of the first power supply device (401), a first lever device (404) is fixedly connected to the surface of the first power supply device (401), a first conductive device (405) is movably connected to the top of one end of a lever of the first lever device (404), a rubber pad (406) is fixedly connected to the end of the first lever device (404) movably connected to the first conductive device (405), a first heating plate (407) is fixedly connected to the top of the first conductive device (405), a first telescopic device (408) is fixedly connected to the top of the other end of the lever of the first lever device (404), an insulating upper cover (409) is sleeved on the surface of the first power supply device (401), and a supporting fixed base (410) is arranged above the insulating upper cover (409).
2. A wardrobe with clothes drying function according to claim 1, characterized in that: The number of the insulation plates (3) is two, and the space inside the cabinet of the powered drying cabinet mechanism (1) is evenly divided into three independent spaces. The number of the first lever devices (404) is three, and they are respectively located at the bottom of the three independent spaces inside the cabinet of the powered drying cabinet mechanism (1). The number of the first conductive devices (405) is three, and they are respectively located at the top of the three first lever devices (404). The first fixing device (402) is fixedly connected to the fixed base. The inner ring diameter of the annular stopper (403) is the same as that of the first powered device (401). The inner ring diameter of the annular stopper (403) is consistent with that of the insulating upper cover (409); the outer ring diameter of the annular stopper (403) is larger than the inner diameter of the insulating upper cover (409); the weight of one end of the first lever device (404) connected to the first conductive device (405) is larger than the other end; the first conductive device (405) is sleeved inside the insulating upper cover (409); the first heating plate (407) is located inside the supporting fixed base (410); and the end of the first telescopic device (408) away from the first lever device (404) is fixedly connected to the bottom of the supporting fixed base (410).
3. A wardrobe with clothes drying function according to claim 1, characterized in that: The back of the powered drying cabinet mechanism (1) is fixedly connected to an automatic circulating switching current device (5), and the back of the powered drying cabinet mechanism (1) is fixedly connected to a double filtering device (6).
4. A wardrobe with clothes drying function according to claim 3, characterized in that: The automatic cycle switch current device (5) comprises a rectangular housing (501), a positive electrode conductive device (502) is fixedly connected inside the rectangular housing (501), a first negative electrode conductive device (503) is fixedly connected inside the rectangular housing (501), a second negative electrode conductive device (504) is fixedly connected inside the rectangular housing (501), a cam device (505) is fixedly connected inside the rectangular housing (501), a second lever device (506) is movably connected to the top of the cam device (505), and a second power-on device (507) is fixedly connected to one end of the positive electrode conductive device (502) away from the power-on drying cabinet mechanism (1).
5. A wardrobe with clothes drying function according to claim 4, characterized in that: The second negative electrode conductive device (504) is higher than the first negative electrode conductive device (503); the first negative electrode conductive device (503) is movably connected to the bottom of the second lever device (506); the second negative electrode conductive device (504) is movably connected to the top of the second lever device (506); the weight of one end of the second lever device (506) movably connected to the second negative electrode conductive device (504) is greater than the other end; the cam device (505) is located below the second negative electrode conductive device (504); the second power-on device (507) is fixedly connected to the rectangular housing (501); and the second power-on device (507) is fixedly connected to the second negative electrode conductive device (504).
6. The wardrobe with clothes drying function according to claim 4, characterized in that: The double filtering device (6) comprises a first filter (601), a metal filter (602) being arranged on a side of the first filter (601) close to the powered drying cabinet mechanism (1), the filtering accuracy of the metal filter (602) being lower than that of the first filter (601), the number of the double filtering devices (6) being three, which are respectively located at the back of three independent spaces inside the powered drying cabinet mechanism (1), and the top of the powered drying cabinet mechanism (1) is fixedly connected to a condensing ventilation device (7).
7. A wardrobe with clothes drying function according to claim 6, characterized in that: The condensation ventilation device (7) comprises an L-shaped condensation tube (701), one end of the L-shaped condensation tube (701) away from the powered drying cabinet mechanism (1) is fixedly connected to a rectangular water storage tank (702), a side of the rectangular water storage tank (702) away from the powered drying cabinet mechanism (1) is provided with a vent (703), a side of the vent (703) away from the powered drying cabinet mechanism (1) is fixedly connected to an airflow speed increasing device (704), and one end of the airflow speed increasing device (704) away from the powered drying cabinet mechanism (1) is fixedly connected to a bent pipe (705).
8. The wardrobe with clothes drying function according to claim 7, characterized in that: The L-shaped condenser (701) is rotated ninety degrees, and the angle between the pipes in two directions of the L-shaped condenser (701) is less than ninety degrees. The end of the L-shaped condenser (701) away from the rectangular water storage tank (702) is fixedly connected to the powered drying cabinet mechanism (1). The axis of the pipe connecting the L-shaped condenser (701) and the powered drying cabinet mechanism (1) is perpendicular to the top surface of the powered drying cabinet mechanism (1). There are three L-shaped condensers (701), which are respectively located at the tops of three independent spaces inside the cabinet of the powered drying cabinet mechanism (1). The vent (703) is located on the side of the rectangular water storage tank (702) near the top.
Citation Information
Patent Citations
A smart wardrobe with automatic drying function
CN108783959B