Automatic energy-saving clothes cabinet using water supply system or heating system for dehumidification
By designing an automatic energy-saving locker that utilizes a water supply system or heating system, and using a heat pipe and fan system to blow hot air into the locker compartment, combined with a humidity sensor and baffle control, the problem of low dehumidification and drying efficiency and high energy consumption of the locker is solved, achieving a highly efficient and energy-saving dehumidification and drying effect.
Patent Information
- Application Number
- CN202411462365.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-18
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2044-10-18
AI Technical Summary
Existing lockers are ineffective at dehumidifying and drying work clothes, and traditional electric heating methods are energy-intensive and cannot fully utilize the heat energy of the coal mine's water supply and heating systems.
Design an automatic energy-saving locker that utilizes a water supply system or heating system. Hot air is blown into the locker compartment through a heat pipe and fan system. Combined with humidity sensors and baffle control, heat distribution is optimized to improve dehumidification efficiency and save energy.
It achieves efficient dehumidification and drying of the lockers, reduces energy consumption, and improves the efficiency and safety of the lockers.
Smart Images

Figure CN119326237B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of energy saving, in particular to an automatic energy-saving clothes cabinet for dehumidification by using a water supply system or a heating system. BACKGROUND
[0002] The clothes cabinet system in the bathroom of a coal mine enterprise occupies a very important position in its production management process due to the particularity of its industry, and is an important part of the production management work of the enterprise. With the continuous development of information technology and automation technology, and the requirements of the state for the information construction and management of intelligent coal mines, the intelligentization and informatization management of the clothes cabinet system in the wellhead bathroom of a coal mine enterprise has become one of the contents of the standard of intelligent mine construction.
[0003] Before entering the mine, coal miners need to change into work clothes and work boots, and when they come out of the mine, they need to change out of the work clothes and work boots and change into regular clothes.
[0004] After entering the mine, the coal miners are affected by the working environment underground, and when they come out of the mine, their faces, hands, and work clothes are already contaminated. In addition, due to the temperature of the working environment underground and the sweating of the body during work, the work clothes are very damp. After changing clothes, they are directly placed in the clothes cabinet and cannot be dried, and the damp and contaminated work clothes seriously affect the reuse of the work clothes.
[0005] To solve the problem of clean and fresh work clothes, many coal mines have changed the work flow of entering the mine, increased the workload of the laundry room, and implemented the cleaning and replacement of work clothes every shift, improving the basic guarantee for the work of miners entering the mine. However, due to the large number of personnel in coal mines, the limited space of the changing room, the limitations of the material and management method of the clothes cabinet, and other issues, the bathroom changing room is dirty, messy, crowded, and inconvenient to change clothes, the safety of stored items is poor, and the work clothes have a strong odor. Therefore, coal miners need to take their own work clothes from the clothes cabinet to change when they go down to work, and can only proceed with subsequent production operations after they have finished dressing.
[0006] Most existing clothes cabinets only have the function of temporarily storing clothes, and it is difficult to dehumidify and dry the inside of the cabinet. It is also difficult to dry the clothes stored inside the clothes cabinet. A small number of clothes cabinets can dehumidify and dry the clothes inside the cabinet, but these clothes cabinets basically use electric heating to work, which consumes a lot of energy.
[0007] The work area of a coal mine has a water supply system and a heating system. The heat energy used by the water supply system is partially recovered through the waste heat of certain equipment (such as the circulating water of an air compressor), and the water supply system and the heating system generally deliver hot water or warm air to the areas where workers need it through pipelines. However, the heat energy in this system cannot be utilized by the clothes cabinets of the workers. SUMMARY
[0008] The utility model discloses an automatic energy-saving clothes cabinet for dehumidification by water supply system or heating system to solve the technical problems of drying work clothes and the deficiency of dehumidification in the cabinet.
[0009] In order to realize the above-mentioned purpose, the utility model provides the following technical scheme: an automatic energy-saving clothes cabinet for dehumidification by water supply system or heating system, comprising:
[0010] A cabinet body is internally provided with a plurality of independent cabinet rooms, the front surface of each cabinet room is hingedly provided with a cabinet door, and the inside of each cabinet room is provided with a ventilation hole for hot air to enter, and the inside top of the cabinet room is provided with a hanger for hanging a clothes hanger.
[0011] A flow guide cover is located at the back of the cabinet body, one side of the flow guide cover is connected with a flow guide frame, and the outer wall of the flow guide cover is provided with an inner air inlet hole for air inlet, and the side of the flow guide frame relative to the flow guide cover is communicated with the ventilation hole.
[0012] A water inlet pipe is located at one side of the flow guide cover.
[0013] A fixed pipe is located at the other side of the flow guide cover.
[0014] The side of the water inlet pipe and the fixed pipe opposite to each other is fixedly provided with a connecting disc, a plurality of heat pipes are connected between the two connecting discs, and the heat pipes, the connecting disc, the water inlet pipe and the fixed pipe are in communication.
[0015] The plurality of heat pipes are located in the inside of the flow guide cover.
[0016] A water outlet pipe is located below the fixed pipe, and the water outlet pipe and the fixed pipe are connected through a pipeline, and a set of flow guide cover, fixed pipe and heat pipe and other components for heat conduction can be additionally installed on the pipeline between the water outlet pipe and the fixed pipe, as shown in the drawings, and the two sets of heat conduction in the specification are shown. Figure 4 Figure 4
[0017] Preferably, the plurality of heat pipes are annularly distributed between the two connecting discs, and the heat pipes are in the shape of a few Chinese characters.
[0018] Preferably, the fixed pipe is concave inward at the position close to the middle position, forming a concave part, the inside of the fixed pipe is provided with an impeller at the concave part, one side of the impeller is connected with a first transmission rod, the end of the first transmission rod extends to the outside of the fixed pipe, and a sealing ring is arranged at the connection between the first transmission rod and the fixed pipe, which can adopt the sealing ring of the water pump, and the sealing principle at the connection between the first transmission rod and the fixed pipe is the sealing principle of the water pump, and the specific components and models can be determined according to the actual situation, which is the prior art and will not be described in detail.
[0019] The inside of the guide frame is provided with a wind wheel, one side of the guide frame is provided with a fixed cylinder, one end of the wind wheel is rotatably connected with the guide frame through a bearing, the other end of the wind wheel is connected with a second transmission rod, the second transmission rod passes through one side of the guide frame and penetrates the fixed cylinder at the same time, and the second transmission rod is rotatably connected with the guide frame and the fixed cylinder through a bearing.
[0020] The first transmission rod and the second transmission rod are transmitted through a synchronous belt and a synchronous pulley.
[0021] Preferably, the inside of the fixed tube located outside the first transmission rod is provided with a support ring, the support ring is rotatably connected with the first transmission rod through a bearing, and a plurality of support rods are annularly connected between the support ring and the fixed tube, which can further improve the stability of the impeller and the first transmission rod during rotation.
[0022] Preferably, the cabinet is provided with a worm gear above each cabinet chamber, and a worm is arranged on the top of the cabinet along the length direction of the cabinet, support blocks are arranged on both sides of the top of the cabinet, the support blocks are rotatably connected with the worm through a bearing, the worm is meshingly connected with the worm gear, and the worm and the first transmission rod are transmitted through a synchronous belt and a synchronous pulley.
[0023] The bottom of the worm gear is connected with a connecting rod, the bottom of the connecting rod penetrates into the inside of the cabinet and is connected with a hanging rack, a support cylinder is arranged outside the connecting rod between the cabinet and the worm gear, the support cylinder is rotatably connected with the connecting rod through a bearing, and the bottom of the support cylinder is welded and fixed to the cabinet.
[0024] Preferably, the outside of the cabinet is provided with a protective shell, an outer air inlet hole is formed in the back of the protective shell, and a controller is mounted on the front surface of the protective shell.
[0025] Preferably, a filter screen for filtering dust is mounted in each of the inner air inlet hole and the outer air inlet hole.
[0026] Preferably, a humidity sensor for monitoring the humidity content is mounted in the inside of each cabinet chamber, a baffle is arranged on the front surface of the ventilation hole, the upper and lower sides of the baffle are slidably connected with the cabinet through slide rails, a forward-reverse motor is mounted on one side of the baffle in the inside of the cabinet, a lead screw is connected with the transmission shaft of the forward-reverse motor, the end of the lead screw is rotatably connected with the cabinet through a bearing, and the lead screw is threadedly connected with the baffle, as shown in the drawings Figure 6As shown, one of the figures shows three cabinet rooms, temporarily named as A room, B room and C room from left to right, when the humidity content of C room is less than the set threshold (the specific threshold can be set by the staff, which is a conventional technology, similar to the principle of smoke alarm, when the content of a certain component in the air exceeds the general value, the smoke alarm will automatically alarm), it indicates that there is no need to continue to heat C room at present, at this time, the reversible motor located in C room starts to work under the action of the controller, cooperates with the lead screw and slide rail, so that the baffle blocks the ventilation hole inside C room, and then the heat of the heat pipe changes from supplying A room, B room and C room to only supplying A room and B room, therefore, the clothes in A room and B room can be dehumidified more quickly, thus greatly improving the dehumidification efficiency of the wardrobe, and also more energy-saving;
[0027] On the contrary, when the humidity content inside the cabinet room is large, the baffle will move away from the front surface of the ventilation hole, so that hot air can re-enter the inside of the cabinet room.
[0028] The hot air will seep out through the gap between the cabinet body and the cabinet door after taking away the water vapor inside the cabinet room.
[0029] Preferably, an electric three-way valve is installed on the water inlet pipe, and a water guide pipe is connected between the remaining end of the electric three-way valve and the water outlet pipe, when the humidity of each cabinet room inside the cabinet body is all reduced to below the threshold set by the humidity sensor, the controller will make the water inlet pipe and the water guide pipe communicate, thereby avoiding the continuous emission of hot water heat in the cabinet body, so as to retain the hot water heat for use in other places, further improving the energy saving of the cabinet body, in the present application, all pipes are made of heat preservation pipes (except heat pipes), in order to avoid heat loss, heat preservation materials can be installed inside the protective shell and the cabinet body.
[0030] Preferably, a display panel is installed on the cabinet door, and an electronic lock is installed between the cabinet door and the cabinet room.
[0031] In the above technical solution, the present application provides technical effects and advantages:
[0032] 1. The hot water heats the air around it through the heat pipe, the concave part makes the water flow in the fixed pipe drive the impeller to rotate rapidly, and then drives the first transmission rod to rotate, cooperates with the synchronous belt and the synchronous pulley, can drive the second transmission rod to rotate and the worm to rotate respectively, the second transmission rod drives the wind wheel to rotate, and then blows the hot air around the heat pipe to the inside of the cabinet room through the guide frame and the ventilation hole, to dehumidify the inside of the cabinet room and dry the work clothes, the worm drives the worm wheel to rotate, and then drives the connecting rod and the hanger to rotate, so as to make the work clothes rotate, thereby accelerating the flowability of the hot air around the work clothes and improving the drying efficiency of the work clothes;
[0033] 2、When the humidity content in the cabinet room is small, the reversible electric machine will start to work under the action of the controller, cooperating with the screw rod and the slide rail, so that the baffle is shielded at the ventilation hole in the cabinet room, and then the heat of the heat pipe is not supplied to the current cabinet room, but to other cabinet rooms, so as to fully utilize the hot air to dry the cabinet room, and the energy saving effect is greatly increased; when the dehumidification of each cabinet room in the cabinet body is completed, the controller will make the water inlet pipe and the water guide pipe communicate, so as to avoid the heat of hot water continuing to dissipate in the cabinet body, so as to retain the heat of hot water for use in other places, and further improve the energy saving of the cabinet body. BRIEF DESCRIPTION OF DRAWINGS
[0034] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments described in the present application, and other drawings can also be obtained by those skilled in the art according to these drawings.
[0035] Figure 1 It is the appearance diagram of the cabinet door of the present application when it is not opened;
[0036] Figure 2 It is the appearance diagram of the cabinet door of the present application when it is opened;
[0037] Figure 3 It is the structure diagram of the outer air inlet hole of the present application;
[0038] Figure 4 It is the structure diagram of the worm gear of the present application;
[0039] Figure 5 It is the side view of the cabinet body of the present application;
[0040] Figure 6 It is the front view of the cabinet door of the present application when it is opened;
[0041] Figure 7 It is the structure diagram of the flow guide frame of the present application;
[0042] Figure 8 It is the structure diagram of the heat pipe of the present application;
[0043] Figure 9 It is the sectional view of the fixed pipe of the present application;
[0044] Figure 10 It is the structure diagram of the hanging rack of the present application.
[0045] Explanation of reference signs:
[0046] 1, cabinet body; 2, protective shell; 3, water inlet pipe; 4, electric three-way valve; 5, cabinet door; 6, controller; 7, hanger; 8, outer air inlet hole; 9, water outlet pipe; 10, worm; 11, worm; 12, fairing; 13, inner air inlet hole; 14, concave part; 15, fairing frame; 16, fixed cylinder; 17, support cylinder; 18, forward and reverse motor; 19, ventilation hole; 20, baffle; 21, connecting rod; 22, humidity sensor; 23, fixed pipe; 24, wind wheel; 25, heat pipe; 26, impeller; 27, water guide pipe; 28, connecting disc; 29, support ring; 30, support rod; 31, first transmission rod; 32, second transmission rod; 33, display panel; 34, electronic lock. DETAILED DESCRIPTION
[0047] In order for those skilled in the art to better understand the technical solutions of the present application, the present application will be further described in detail below with reference to the drawings.
[0048] The present application provides an automatic energy-saving clothes cabinet for dehumidification by using a water supply system or a heating system, as shown in Figures 1-9 The present application provides an automatic energy-saving clothes cabinet for dehumidification by using a water supply system or a heating system, as shown in
[0049] Cabinet body 1, the inside of the cabinet body 1 is provided with a plurality of independent cabinet rooms, the front surface of each cabinet room is provided with a cabinet door 5 through a hinge, and the inside of each cabinet room is provided with a ventilation hole 19 for hot air to enter, and the inside top of the cabinet room is provided with a hanger 7 for hanging clothes hangers;
[0050] Fairing 12, the fairing 12 is located on the back of the cabinet body 1, one side of the fairing 12 is connected with a fairing frame 15, and the outer wall of the fairing 12 is provided with an inner air inlet hole 13 for air inlet, and one side of the fairing frame 15 relative to the fairing 12 is communicated with the ventilation hole 19;
[0051] Water inlet pipe 3, the water inlet pipe 3 is located on one side of the fairing 12;
[0052] Fixed pipe 23, the fixed pipe 23 is located on the other side of the fairing 12;
[0053] The side of the water inlet pipe 3 and the fixed pipe 23 opposite to each other is fixed with a connecting disc 28, a plurality of heat pipes 25 are connected between the two connecting discs 28, and the heat pipes 25, the connecting discs 28, the water inlet pipe 3 and the fixed pipe 23 are in communication state;
[0054] A plurality of heat pipes 25 are located in the inside of the fairing 12;
[0055] The water outlet pipe 9 is located below the fixed pipe 23, and the water outlet pipe 9 and the fixed pipe 23 are connected by a pipeline. A set of (or more, depending on the actual situation) heat-conducting flow guide covers 12, fixed pipes 23, and heat-conducting pipes 25 can be additionally installed on the pipeline between the water outlet pipe 9 and the fixed pipe 23. The specific arrangement is shown in the drawings accompanying the specification Figure 4 The specific arrangement is shown in the drawings accompanying the specification Figure 4 At this time, there are two sets of heat-conducting.
[0056] Further, the heat-conducting pipes 25 are arranged in a ring shape between the two connecting plates 28 and have a few-shaped structure.
[0057] Further, the fixed pipe 23 is recessed inward at a position close to the middle to form a concave portion 14. The inside of the fixed pipe 23 at the concave portion 14 is provided with an impeller 26. One side of the impeller 26 is connected to a first transmission rod 31, and the end of the first transmission rod 31 extends to the outside of the fixed pipe 23. A sealing ring is arranged at the connection between the first transmission rod 31 and the fixed pipe 23. The sealing ring can be a sealing ring for a water pump. The sealing principle at the connection between the first transmission rod 31 and the fixed pipe 23 is the sealing principle of a water pump. The specific components and models can be determined according to the actual situation. This is prior art and will not be described in detail.
[0058] The inside of the flow guide frame 15 is provided with a wind wheel 24. The flow guide frame 15 has a fixed cylinder 16 on one side. One end of the wind wheel 24 is rotatably connected to the flow guide frame 15 through a bearing. The other end of the wind wheel 24 is connected to a second transmission rod 32. The second transmission rod 32 passes through one side of the flow guide frame 15 and simultaneously penetrates the fixed cylinder 16. The second transmission rod 32 is rotatably connected to the flow guide frame 15 and the fixed cylinder 16 through bearings.
[0059] The first transmission rod 31 and the second transmission rod 32 are connected by a synchronous belt and a synchronous belt wheel.
[0060] Further, the inside of the fixed pipe 23 at the outside of the first transmission rod 31 is provided with a support ring 29. The support ring 29 is rotatably connected to the first transmission rod 31 through a bearing. A plurality of support rods 30 are annularly connected between the support ring 29 and the fixed pipe 23. The use of the support ring 29 and the support rod 30 can further improve the stability of the impeller 26 and the first transmission rod 31 during rotation.
[0061] Further, the cabinet 1 is provided with a worm gear 10 above each cabinet chamber. The top of the cabinet 1 is provided with a worm 11 along the length direction. Support blocks are arranged on both sides of the top of the cabinet 1. The support blocks are rotatably connected to the worm 11 through bearings. The worm 11 is meshingly connected to the worm gear 10. The worm 11 and the first transmission rod 31 are connected by a synchronous belt and a synchronous belt wheel.
[0062] The bottom of the worm wheel 10 is connected with a connecting rod 21, the bottom of the connecting rod 21 penetrates to the inside of the cabinet body 1 and is connected with the hanger 7, the outside of the connecting rod 21 is provided with a supporting cylinder 17 between the cabinet body 1 and the worm wheel 10, the supporting cylinder 17 is rotatably connected with the connecting rod 21 through a bearing, and the bottom of the supporting cylinder 17 is welded and fixed to the cabinet body 1.
[0063] Further, the outside of the cabinet body 1 is provided with a protective shell 2, the back of the protective shell 2 is provided with an outer air inlet hole 8, and the front surface of the protective shell 2 is provided with a controller 6.
[0064] Further, the inner air inlet hole 13 and the outer air inlet hole 8 are both provided with a filter screen for filtering dust.
[0065] Further, the inside of each cabinet chamber is provided with a humidity sensor 22 for monitoring the humidity content, the front surface of the air vent 19 is provided with a baffle 20, the upper and lower sides of the baffle 20 are both slidably connected with the cabinet body 1 through a slide rail, the inside of the cabinet body 1 is provided with a reversible motor 18 on one side of the baffle 20, a lead screw is connected to the transmission shaft of the reversible motor 18, the end of the lead screw is rotatably connected with the cabinet body 1 through a bearing, and the lead screw is threadedly connected with the baffle 20, as shown in the description accompanying drawings. Figure 6 As shown in the description accompanying drawings, one of the three cabinet chambers is temporarily named as the A chamber, the B chamber and the C chamber from left to right, when the humidity content of the C chamber is less than a set threshold value (the specific threshold value can be set by the staff, which is a conventional technology, similar to the principle of a smoke alarm, when the content of a certain component in the air exceeds the general value, the smoke alarm will automatically alarm), it indicates that there is no need to continue to supply heat to the C chamber, at this time, the reversible motor 18 located in the C chamber starts to work under the action of the controller 6, cooperates with the lead screw and the slide rail to make the baffle 20 block the air vent 19 in the C chamber, and then the heat of the heat pipe 25 changes from supplying the A chamber, the B chamber and the C chamber to only supplying the A chamber and the B chamber, therefore, the clothes in the A chamber and the B chamber can be dehumidified more quickly, thus greatly improving the dehumidifying efficiency of the clothes cabinet and being more energy-saving;
[0066] The inside of the cabinet chamber is provided with two partitions, which divide the inside space of the cabinet chamber into three areas from top to bottom, the upper area can be used for placing clean clothes, the middle area can be used for placing wet dirty clothes, and the lowermost area can be used for placing work boots.
[0067] Conversely, when the humidity content in the cabinet chamber is large, the baffle 20 will move away from the front surface of the air vent 19, so that hot air can re-enter the inside of the cabinet chamber.
[0068] After the hot air takes away the water vapor in the cabinet chamber, it will seep out through the gap between the cabinet body 1 and the cabinet door 5.
[0069] Further, the water inlet pipe 3 is provided with an electric three-way valve 4, and a water guide pipe 27 is connected between the remaining end of the electric three-way valve 4 and the water outlet pipe 9, when the humidity of each cabinet in the cabinet body 1 is all reduced to below the threshold set by the humidity sensor 22, the controller 6 will make the water inlet pipe 3 and the water guide pipe 27 communicate, thereby avoiding the hot water heat to continue to dissipate in the cabinet body 1, so as to retain the hot water heat for use in other places, further improving the energy saving of the cabinet body 1, in the present application, all pipes are heat preservation pipes (except the heat conduction pipe 25), in order to avoid heat loss, heat preservation materials can be installed in the protective shell 2 and the inside of the cabinet body 1.
[0070] Further, the cabinet door 5 is provided with a display panel 33, and an electronic lock 34 is installed between the cabinet door 5 and the cabinet, the display panel 33 can display the information of the current user of the cabinet, and the display panel 33 is additionally provided with an iris recognizer, the user can input the information in advance, when opening the cabinet, only need to identify and open through the iris recognition, when the user information is identified by the iris recognition and corresponds to the information of the current user of the cabinet, the electronic lock 34 is automatically opened, which is convenient for the user to open the cabinet door 5.
[0071] The working principle is as follows:
[0072] First of all, the hot water in the present application is provided by the coal mine constant pressure water supply system, the coal mine constant pressure water supply system is to realize sufficient water source and stable water supply to meet the daily water demand of workers, generally through pipeline throughout the area where water is needed, to ensure that workers can use hot water at any time, the present application is based on the hot water provided by the coal mine constant pressure water supply system to improve the locker of workers, and the heating pipeline of hot water is used to dehumidify and dry the locker of workers, so as to dry the work clothes in the locker (the coal mine constant pressure water supply system is prior art, and will not be described in detail);
[0073] Firstly, the hot water pipeline or the heating pipeline (the heating is provided by the heating system in the coal mine production operation, if the heating is used, the subsequent hot water can be understood as heating, and here only the hot water is introduced) is connected into the water inlet pipe 3, the hot water will enter into the plurality of heat conduction pipes 25 through the water inlet pipe 3 and the connecting disc 28, the heat conduction pipes 25 will dissipate the heat of the hot water and heat the air around, then the water flow will flow to the direction of the fixed pipe 23, in the process of the water flow moving to the concave part 14, the cross section through by the water flow will gradually decrease, and then the pressure of the water flow will gradually increase, the water flow will drive the impeller 26 to rotate rapidly, thereby providing enough power for the first transmission rod 31 to rotate;
[0074] When the first transmission rod 31 rotates, the second transmission rod 32 also rotates synchronously with the first transmission rod 31 due to the transmission between the first transmission rod 31 and the second transmission rod 32 through the synchronous belt and the synchronous belt wheel. During the rotation of the second transmission rod 32, the wind wheel 24 is driven to rotate, and the hot air around the heat pipe 25 is blown to the inside of the cabinet room through the guide frame 15 and the ventilation hole 19, so as to dehumidify the inside of the cabinet room and dry the clean work clothes, preventing the humid air from affecting the clean work clothes.
[0075] At the same time, the first transmission rod 31 also drives the worm 11 to rotate through the synchronous belt and the synchronous belt wheel, and the worm 11 and the worm wheel 10 are in meshing state, so that the worm wheel 10 rotates, and drives the connecting rod 21 and the hanger 7 to rotate. Therefore, after the work clothes are hung on the hanger 7, the work clothes also rotate to speed up the flow of hot air around the work clothes, improve the drying efficiency of the work clothes, and adjust the angle between the surface of the work clothes and the hot air ejected from the ventilation hole 19, further improving the drying efficiency of the work clothes.
[0076] When the humidity content in the cabinet room is low, the reversible motor 18 starts to work under the action of the controller 6, cooperates with the screw rod and the sliding rail, and makes the baffle 20 block the ventilation hole 19 in the cabinet room, so that the heat of the heat pipe 25 is not supplied to the current cabinet room, but is supplied to other cabinet rooms, so as to fully utilize the hot air to dry the cabinet room, and greatly increase the energy saving effect.
[0077] When the humidity content in the cabinet room is low, the reversible motor 18 starts to work under the action of the controller 6, cooperates with the screw rod and the sliding rail, and makes the baffle 20 block the ventilation hole 19 in the cabinet room, so that the heat of the heat pipe 25 is not supplied to the current cabinet room, but is supplied to other cabinet rooms, so as to fully utilize the hot air to dry the cabinet room, and greatly increase the energy saving effect.
[0078] The above only describes some exemplary embodiments of the present application by way of illustration, and it is needless to say that those skilled in the art can modify the described embodiments in various ways without departing from the spirit and scope of the present application. Therefore, the above drawings and descriptions are illustrative in nature and should not be understood as limiting the scope of protection of the claims of the present application.
Claims
1. An automatic energy-saving clothes locker for dehumidification using a water supply system or a heating system, characterized by, Include: Cabinet body (1), the inside of the cabinet body (1) is provided with a plurality of independent cabinet rooms, the front surface of each cabinet room is provided with a cabinet door (5) through a hinge, and the inside of each cabinet room is provided with a ventilation hole (19) for hot air to enter, and the inside of the cabinet room is provided with a hanger (7) for hanging a clothes hanger; The guide cover (12) is located on the back of the cabinet body (1), one side of the guide cover (12) is connected with a guide frame (15), and the outer wall of the guide cover (12) is provided with an inner air inlet hole (13) for air inlet, and the side of the guide frame (15) relative to the guide cover (12) is communicated with the ventilation hole (19); The water inlet pipe (3) is located on one side of the guide cover (12); The fixed pipe (23) is located on the other side of the guide cover (12); The water inlet pipe (3) and the fixed pipe (23) are fixed with connecting discs (28) on the opposite sides, a plurality of heat conducting pipes (25) are connected between the two connecting discs (28), the heat conducting pipes (25), the connecting discs (28), the water inlet pipe (3) and the fixed pipe (23) are in communication state; The plurality of heat conducting pipes (25) are located in the inside of the guide cover (12); the plurality of heat conducting pipes (25) are annularly distributed between the two connecting discs (28), and the heat conducting pipes (25) are in the shape of a few Chinese characters; The water outlet pipe (9) is located below the fixed pipe (23), and the water outlet pipe (9) and the fixed pipe (23) are connected through a pipeline; The fixed pipe (23) is recessed inwardly near the middle position to form a concave part (14), the inside of the fixed pipe (23) is provided with an impeller (26) at the concave part (14), one side of the impeller (26) is connected with a first transmission rod (31), the end of the first transmission rod (31) extends to the outside of the fixed pipe (23), and a sealing ring is arranged at the connection between the first transmission rod (31) and the fixed pipe (23); The inside of the guide frame (15) is provided with a wind wheel (24), one side of the guide frame (15) is provided with a fixed cylinder (16), one end of the wind wheel (24) is rotatably connected with the guide frame (15) through a bearing, the other end of the wind wheel (24) is connected with a second transmission rod (32), the second transmission rod (32) penetrates one side of the guide frame (15) and simultaneously penetrates the fixed cylinder (16), and the second transmission rod (32) is rotatably connected with the guide frame (15) and the fixed cylinder (16) through bearings; The first transmission rod (31) and the second transmission rod (32) are transmitted through synchronous belts and synchronous pulleys; The cabinet body (1) is provided with a worm gear (10) above each cabinet room, and a worm (11) is arranged on the top of the cabinet body (1) along the length direction, support blocks are arranged on both sides of the top of the cabinet body (1), the support blocks and the worm (11) are rotatably connected through bearings, the worm (11) is meshingly connected with the worm gear (10), and the worm (11) and the first transmission rod (31) are transmitted through synchronous belts and synchronous pulleys. The bottom of the worm gear (10) is connected with a connecting rod (21), the bottom of the connecting rod (21) penetrates to the inside of the cabinet body (1) and is connected with the hanger (7), the outside of the connecting rod (21) is located between the cabinet body (1) and the worm gear (10) and is provided with a supporting cylinder (17), the supporting cylinder (17) is rotatably connected with the connecting rod (21) through a bearing, and the bottom of the supporting cylinder (17) is welded and fixed to the cabinet body (1).
2. The automatic energy-saving clothes cabinet with dehumidification by using water supply system or heating system according to claim 1, characterized in that: The inside of the fixed pipe (23) is located outside the first transmission rod (31) and is provided with a supporting ring (29), the supporting ring (29) is rotatably connected with the first transmission rod (31) through a bearing, and a plurality of supporting rods (30) are connected in an annular manner between the supporting ring (29) and the fixed pipe (23).
3. The automatic energy-saving clothes cabinet with dehumidification by using water supply system or heating system according to claim 1, characterized in that: The outside of the cabinet body (1) is provided with a protective shell (2), the back of the protective shell (2) is provided with an outer air inlet hole (8), and the front surface of the protective shell (2) is provided with a controller (6).
4. The automatic energy-saving clothes cabinet with dehumidification by using water supply system or heating system according to claim 3, characterized in that: The inner air inlet hole (13) and the outer air inlet hole (8) are both provided with a filter screen for filtering dust.
5. The automatic energy-saving clothes cabinet with dehumidification by using water supply system or heating system according to claim 4, characterized in that: The inside of each cabinet room is provided with a humidity sensor (22) for monitoring humidity content, the front surface of the ventilation hole (19) is provided with a baffle (20), the upper and lower sides of the baffle (20) are both slidably connected with the cabinet body (1) through a sliding rail, the inside of the cabinet body (1) is provided with a reversible motor (18) on one side of the baffle (20), a lead screw is connected to the transmission shaft of the reversible motor (18), the end of the lead screw is rotatably connected with the cabinet body (1) through a bearing, and the lead screw is threadedly connected with the baffle (20).
6. The automatic energy-saving clothes cabinet with dehumidification by using water supply system or heating system according to claim 5, characterized in that: The water inlet pipe (3) is provided with an electric three-way valve (4), and a water guide pipe (27) is connected between the remaining end of the electric three-way valve (4) and the water outlet pipe (9).
7. The automatic energy-saving clothes locker for dehumidification using a water supply system or a heating system according to claim 1, characterized in that: The cabinet door (5) is provided with a display panel (33), and an electronic lock (34) is arranged between the cabinet door (5) and the cabinet room.
Citation Information
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