Heating device based on water circulation

Through the design of thermal conductivity components, adjustment components and placement components, the problems of large electricity consumption, easy scale generation, uneven drying of clothes and indoor drying of the water circulation heating device are solved, and efficient energy-saving heating and safe and convenient drying of clothes are achieved.

CN223283133UActive Publication Date: 2025-08-29BEIJING GUOFENG FUYUAN TECHNOLOGY DEVELOPMENT CO LTD
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Patent Information

Application Number
CN202422289454.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-19
Publication Date
2025-08-29
Estimated Expiration
2034-09-19

AI Technical Summary

Technical Problem

The existing water circulation heating device requires additional humidification devices to be used in conjunction with each other. The operation is complicated, the electricity consumption is large, and it is prone to scale, the thermal efficiency is low, and the heating effect is poor in high cold or large space environments, the clothes are drying unevenly and there are safety hazards.

Method used

The thermal conductivity and adjustment components are used to centrally adjust the heat release, and the placement components are combined to achieve uniform drying of clothes and shoes. The scale generation and power loss are reduced through the heating mechanism. The conductive rod does not heat up when heating water. Combined with the removable structural design, humidification and energy saving are achieved.

Benefits of technology

It improves thermal efficiency, reduces power loss, achieves efficient heating in high cold or large spaces, avoids the problems of uneven drying of clothes and indoor drying, and provides safety and convenience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a heating device based on water circulation, and belongs to the technical field of heating devices. Comprising a heater body; and the heat conduction assembly is used for guiding heat emitted by the heating machine body. The heating mechanism is arranged, power consumption is small, scale is not prone to being generated, heat efficiency is high, heat released by the heating device can be gathered through the heat conduction assembly and the adjusting assembly, the released volume can be adjusted, the heat flow direction is accurate, power consumption is reduced, and the heating effect in the high and cold environment or in the large-size room is improved; the clothes and shoes are placed in a matched mode and evenly dried, meanwhile, the clothes hanger can be taken conveniently when the clothes are hung, adverse consequences caused by the fact that drained water infects a heating device are avoided, the surrounding environment can be humidified in a draining and water adding mode, the situation that the human body is uncomfortable due to dryness is avoided, and in addition, through the detachable structural design, the clothes hanger is convenient to use. The detachable storage box can be detached and stored when not in use, so that space occupation or obstruction is avoided.
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Description

Technical Field

[0001] The utility model relates to the technical field of heating devices, in particular to a heating device based on water circulation. Background Art

[0002] A water circulation heating device usually refers to a system that utilizes the large specific heat capacity of water to store and transfer heat by heating water. It is generally divided into movable types and wall-fixed types. Especially for movable water circulation heating devices, most of them use a heating element to generate heat after being energized, and transfer heat to the liquid to increase the liquid temperature. In essence, it is a heat conduction heating process. This heating method consumes a lot of electricity, is very likely to produce scale when heating water, and has low thermal efficiency.

[0003] In addition, the heat released during use is mostly diffused in all directions, covering the entire enclosed space to increase the indoor temperature. However, during use, if the indoor temperature is high or the house is large, the heating effect will be poor. If the intensity of heat release is increased, it will also cause power loss. In addition, some water circulation heating devices are provided with a drying rack, on which clothes can be spread flat for drying, and shoes can be placed directly on the body. However, during use, clothes and shoes cannot be dried evenly, and some parts of clothes and shoes may overheat during the drying process, which may cause fire. Moreover, if the clothes are wet, it is easy for the drainage to infect the heating device, which may cause the risk of electric shock. When the movable water circulation heating device is in use, if the indoor air is dry and cold, the heat released will also cause the indoor dryness, which may cause discomfort to the human body. It requires an additional humidifying device to be used in conjunction, and the operation is relatively cumbersome. Therefore, the present application provides a water circulation-based heating device to meet the needs. Utility Model Content

[0004] The technical problem to be solved by the utility model is to provide a heating device based on water circulation to solve the problems that the existing heating devices require an additional humidifying device to be used in conjunction, are relatively cumbersome to operate, consume electricity and cause scale.

[0005] In order to solve the above technical problems, the present invention provides the following technical solutions:

[0006] A water circulation-based heating device comprises a heating body, a side wall of the heating body being fixedly connected to a communicating mounting culvert, a heating mechanism being disposed within the mounting culvert; the heating mechanism comprising a fixing flange fixedly connected to the outer end of the mounting culvert, a pair of sockets being formed on the outer wall of the fixing flange, conductive rods being fixedly connected within the sockets, the outer ends of the conductive rods being fixedly connected to a power connection socket, the conductive rods being fixedly connected to an insulating sleeve disposed within the mounting culvert cavity, the pair of conductive rods being commonly fixedly connected to an electrical shielding cover, the outer wall of the electrical shielding cover being formed with a plurality of air outlet holes;

[0007] The heat conducting component is used for conducting the heat emitted by the heating body, and the heat conducting component is connected to the heating body.

[0008] Optionally, it also includes: an adjustment component for centrally adjusting and releasing the heat energy after diversion, and the adjustment component is connected to the heat conduction component; a placement component for placing clothes and shoes to be dried, and the placement component is connected to the heat conduction component.

[0009] Optionally, the heat conduction assembly includes a front guide plate arranged on one side of the heating body, and a rear guide plate arranged on the other side of the heating body, an upper U-shaped plate located above the heating body is fixedly connected between the front guide plate and the rear guide plate, both side walls of the front guide plate are fixedly connected with side wing baffles, and a fixing ring fixedly connected to the side wall of the front guide plate is arranged above the side wing baffle, and the fixing ring is fixedly connected to the heating body.

[0010] Optionally, the front guide plate includes a guide connecting plate fixedly connected to the upper U-shaped plate, the outer wall of the guide connecting plate is provided with a mounting hole, a heat collecting box is fixedly connected in the mounting hole, a plurality of guide holes are provided on the heat collecting box, the adjustment components are connected to a plurality of adjustment components and a limiting unit, the adjustment component is connected to the front guide plate; the adjustment components are connected to a guide unit and an adjustment unit, and the guide unit is connected to the front guide plate.

[0011] Optionally, the guide unit includes a tube body fixedly connected to the guide hole, a groove body is provided at one end of the tube body away from the guide hole, a plurality of sliding holes distributed in a circumferential array are provided on the outer wall of the tube body, and the sliding holes are communicated with the groove body; the adjustment unit includes an adjustment head inserted into the groove body, an annular groove is provided in the adjustment head, an inner groove is provided on one side of the annular groove and is communicated with the annular groove, a connecting ring is fixedly connected in the annular groove, and a connecting ring is fixedly connected in the inner groove The connecting ring fixes the support piece, and the inner groove and the support piece are both arranged in an arc shape; the limiting unit includes a slip ring sleeved on the tube body, and the inner wall of the slip ring is fixedly connected to a plurality of connecting plates distributed in a circular array, one end of the connecting plate passes through the sliding hole and is fixedly connected to the adjusting head, and a movable plate is fixedly connected between the plurality of slip rings, and a side wall of the movable plate away from the front guide plate is fixedly connected to a T-shaped pull rod, and both side walls of the connecting plate are fixedly connected to damping rubber that contacts the inner wall of the sliding hole.

[0012] Optionally, the placement component includes a pair of card slots fixedly connected to the upper U-shaped plate, a plurality of heat dissipation holes opened on the upper U-shaped plate are arranged between the pair of card slots, a positioning tube is clamped in the card slot, both ends of the pair of positioning tubes are commonly fixedly connected to a frame, the pair of frames are symmetrically arranged, and an installation cavity is formed between the pair of frames and the pair of positioning tubes, a plurality of storage units fixedly connected to the frame are arranged in the installation cavity, and a pair of hanging racks arranged in parallel are commonly installed on the pair of frames.

[0013] Optionally, the frame includes a branch pipe fixedly connected to the end of the positioning pipe, a pair of the branch pipe ends are commonly fixedly connected to an outer protective pipe, a pair of the outer protective pipe ends are commonly fixedly connected to a U-shaped support rod, and a pair of the branch pipes are commonly fixedly connected to a bottom plate bent plate, the outer wall of one end of the bottom plate bent plate is in contact with the outer wall of the upper U-shaped plate, the bottom plate bent plate is arranged in a slope shape near the inner wall of one end of the upper U-shaped plate, the middle section is arranged in an inward concave arc shape, and the other end is arranged in a slope shape, a pair of plug-in tubes are fixedly connected to the U-shaped support rod, and the plug-in tubes are located on the outside of the installation cavity.

[0014] Optionally, the storage unit includes a fixed sleeve fixedly connected to the U-shaped support rod, and the fixed sleeve is fixedly connected to a hanging tube and a second placement tube in sequence, and a first placement tube arranged above the heat dissipation hole is fixedly connected between a pair of the second placement tubes.

[0015] Optionally, the hanging rack includes an L-shaped rod inserted into the plug-in tube, a U-shaped frame is fixedly connected between a corresponding pair of L-shaped rods, and a circular ring that fits the top of the plug-in tube is fixedly sleeved on the L-shaped rod.

[0016] Optionally, the frame and the positioning tube are an integrated structure, the frame, the positioning tube, the storage unit and the hanging rack are all made of lightweight and stainless materials, and the card slot is made of elastic material.

[0017] Compared with the prior art, the present invention has at least the following beneficial effects:

[0018] In the above scheme, by providing a heating mechanism, not only is the power consumption low, but scale is not easily generated when heating water, and the thermal efficiency is high.

[0019] Through the coordinated setting of the heat-conducting components and the regulating components, the heat released by the heating device can be concentrated, and the volume of heat release can be adjusted at the same time, the flow of heat can be accurately controlled, and the energy loss can be reduced, thereby improving the heating effect in high-altitude cold or large-sized room conditions, and avoiding the situation where the heating device releases heat in all directions due to low temperature or large room volume, resulting in poor heating effect.

[0020] By setting up the placement components, not only the adaptive placement of clothes and shoes is achieved, but also the uniform drying of clothes and shoes is achieved. At the same time, it is convenient to take the hanger when hanging clothes, and the adverse consequences caused by drainage and contamination of the heating device can be avoided. The surrounding environment can be humidified by drainage and water addition to avoid dryness causing human discomfort. In addition, through the detachable structural design, it can be disassembled and stored when not in use to avoid occupying space or causing obstruction. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] The accompanying drawings, which are incorporated herein and constitute part of the specification, illustrate embodiments of the invention and, together with the description, further serve to explain the principles of the invention and enable those skilled in the relevant art to make and use the invention.

[0022] Figure 1 This is a schematic diagram of the overall three-dimensional structure of the first embodiment of the present utility model;

[0023] Figure 2 for Figure 1 Schematic diagram of a partially cutaway three-dimensional structure;

[0024] Figure 3 This is a schematic diagram of the overall three-dimensional structure of the second embodiment of the present invention from a first viewing angle;

[0025] Figure 4 This is a schematic diagram of the overall three-dimensional structure of the second embodiment of the present invention from a second viewing angle;

[0026] Figure 5 for Figure 1 Schematic diagram of a partially cutaway three-dimensional structure;

[0027] Figure 6 for Figure 5 A in the middle is an enlarged structural diagram;

[0028] Figure 7 It is a schematic diagram of the partially cutaway and enlarged structure of the heating body, heat-conducting component, regulating component and card slot;

[0029] Figure 8 for Figure 7 The enlarged structural diagram at B in the middle;

[0030] Figure 9 It is a schematic diagram of a cross-sectional, enlarged structure of a heat conducting component;

[0031] Figure 10 Schematic diagram of the three-dimensional structure of the limiting unit;

[0032] Figure 11 It is a schematic diagram of the three-dimensional enlarged structure of the connecting ring and the supporting piece;

[0033] Figure 12 A schematic diagram of the three-dimensional enlarged structure of the frame, positioning tubes and storage units;

[0034] Figure 13 for Figure 2 Schematic diagram of the partially cutaway three-dimensional structure.

[0035] [reference numerals]

[0036] 1. Heating unit; 2. Heat conduction assembly; 21. Front deflector; 211. Deflector connection plate; 212. Heat collecting box; 213. Deflector hole; 22. Upper U-shaped plate; 23. Rear deflector; 24. Baffle; 25. Side baffle; 26. Fixed collar; 3. Adjustment assembly; 31. Guide unit; 311. Tube; 312. Slot; 313. Slide hole; 32. Adjustment unit; 321. Adjustment head; 322. Inner groove; 323. Connecting ring; 324. Support plate; 33. Limiting unit; 331. Slip ring; 332. Moving plate; 333 , T-shaped pull rod; 335, damping rubber; 4, placement component; 41, frame; 411, branch pipe; 412, outer protective tube; 413, U-shaped support rod; 414, bottom plate bending plate; 415, plug-in tube; 42, positioning tube; 43, card slot; 44, storage unit; 441, first placement tube; 442, second placement tube; 443, hanging tube; 444, fixing sleeve; 45, hanging frame; 5, installation culvert; 6, heating mechanism; 61, fixing flange; 62, power connection socket; 63, conductive rod; 64, insulating sleeve; 65, electrical shielding cover.

[0037] As shown in the figure, in order to clearly implement the structure of the embodiment of the present invention, specific structures and devices are marked in the figure, but this is only for illustrative purposes and is not intended to limit the present invention to the specific structure, devices and environment. According to specific needs, ordinary technicians in this field can adjust or modify these devices and environments. DETAILED DESCRIPTION

[0038] The following describes in detail a water circulation heating device provided by the present invention, with reference to the accompanying drawings and specific embodiments. It is also noted that, for the sake of completeness, the following embodiments are best and preferred embodiments, and those skilled in the art may employ alternative implementations for known technologies. Furthermore, the accompanying drawings are intended only to provide a more detailed description of the embodiments and are not intended to limit the present invention.

[0039] It should be noted that references in the specification to "one embodiment," "an embodiment," "an exemplary embodiment," "some embodiments," etc. indicate that the described embodiments may include specific features, structures, or characteristics, but not every embodiment necessarily includes such specific features, structures, or characteristics. In addition, when specific features, structures, or characteristics are described in conjunction with an embodiment, it is within the knowledge of persons skilled in the relevant art to implement such features, structures, or characteristics in conjunction with other embodiments (whether or not explicitly described).

[0040] In general, terms can be understood, at least in part, from their use in context. For example, depending at least in part on the context, the term "one or more" as used herein can be used to describe any feature, structure, or characteristic in the singular sense, or can be used to describe a combination of features, structures, or characteristics in the plural sense. Additionally, the term "based on" can be understood as not necessarily intended to convey an exclusive set of factors, but can instead, depending at least in part on the context, allow for the presence of other factors that are not necessarily explicitly described.

[0041] It will be understood that the meanings of “on,” “over,” and “above” in the present invention should be interpreted in the broadest manner, so that “on” means not only “directly on” something but also includes the meaning of being “on” something with intervening features or layers, and “on” or “above” means not only “on” or “above” something but also includes the meaning of being “on” or “above” something with no intervening features or layers.

[0042] Additionally, spatially relative terms such as "below," "beneath," "lower," "above," and "upper" may be used herein for descriptive convenience to describe the relationship of one element or feature to another element or features, as illustrated in the accompanying drawings. Spatially relative terms are intended to encompass different orientations of the device in use or operation in addition to the orientation depicted in the accompanying drawings. The device may be oriented in other ways, and the spatially relative descriptors used herein should be similarly interpreted accordingly.

[0043] Example 1

[0044] like Figure 1 、 Figure 2As shown, an embodiment of the present invention provides a heating device based on water circulation, including a heating body 1, a side wall of the heating body is fixedly connected to a connecting installation culvert 5, and a heating mechanism 6 is arranged in the installation culvert 5; the heating mechanism 6 can be applied to any form of water heating device. During use, when heat is generated, there are conductive particles in the water, and current flows into the water. The particles conduct electricity and move from one conductive rod to another conductive rod. Since alternating current is passed, the particles move back and forth between the two conductive rods to generate heat, and the water itself has water resistance, so no short circuit will occur; when it is not charged, such as connected to 220V, the neutral wire is connected to the shielding cover, the shielding cover is equivalent to zero potential, the current can only flow in the shielding cover, and the water outside the shielding cover cannot If it is charged, the three-phase electricity will also have zero potential if connected to 380V. Because of the existence of the shielding cover, the current will not flow out to other areas. The heating mechanism 6 includes a fixed flange 61 fixedly connected to the outer end of the installation culvert 5. The outer wall of the fixed flange 61 is provided with a pair of sockets, and a conductive rod 63 is fixedly connected to the socket. By setting the conductive rod 63, during use, the current will pass through the conductive rod 63 into the water. The conductive rod 63 itself does not generate heat, and the conductive liquid (ions in the water, the conductive liquid resistance is not greater than 4 ohms) will generate temperature through the flow of current. The temperature of the conductive rod 63 will increase with the increase of the temperature of the conductive liquid. The temperature of the conductive rod 63 itself is lower than the temperature of the conductive liquid. When the temperature of the conductive rod 63 is the highest, it is the same as the conductive liquid. The area near the conductive rod 63 After the conductive liquid is self-heated, the conductive liquid will transfer heat through convection, thereby directly converting electrical energy into thermal energy. There is almost no energy loss in this conversion process. Therefore, it has extremely high thermal efficiency and also avoids the generation of scale in the heating body 1. The outer end of the conductive rod 63 is fixedly connected to the power connection seat 62. The conductive rod 63 is fixedly connected to the insulating sleeve 64 set in the cavity of the installation culvert 5. The pair of conductive rods 63 are commonly fixedly connected to the electrical shielding cover 65. The shielding cover 65 is a rectangular parallelepiped setting, covering the outside of the pair of conductive rods 63. The two ends of the rectangular parallelepiped are passed through, and one end is welded with a conductive column at the midpoint of the upper and lower sides. The conductive column passes through the reserved hole on the side wall of the container box and is connected to one of the conductors through an external wire and connected to the neutral line; or , directly weld the shielding cover to the conductor of the neutral wire, set a sealing gasket between the conductive column and the container box, and set an electrical shielding cover 65 to ensure that the current generated by the conductive rod 63 will not appear in the water outside the shielding cover. A plurality of air vents are provided on the outer wall of the electrical shielding cover 65. One of the power connection bases 62 is electrically connected to the positive pole, and the other power connection base 62 is electrically connected to the negative pole. During use, the positive pole is connected to the positive pole of the power line, the negative pole is connected to the negative pole of the power line, and is electrically connected to the external control device. A temperature sensor is provided in the installation culvert 5, and the temperature sensor is electrically connected to the external control device through an external power supply. When in use, the temperature value is set to be in the range of 45°C to 60°C (this is the existing technology).

[0045] By setting up the heating mechanism 6, during use, the external control device is started to connect the external power supply, and the electricity will enter the conductive rod 63 through the power connection socket 62, and then directly conduct the electricity to the water. After the water is energized, the temperature gradually increases. As the water temperature increases, the resistance of the water decreases. In this process, the conductive rod 63 itself does not generate heat, and the conductive liquid generates temperature through the flow of current. The temperature of the conductor increases as the temperature of the conductive liquid increases. The temperature of the conductor itself is lower than the temperature of the conductive liquid. When the temperature is highest, it is the same as the conductive liquid. Compared with the existing technology, the utility model heats through the above structure, consumes less power, is not easy to generate scale when heating water, and has high thermal efficiency.

[0046] Example 2

[0047] like Figures 3 to 13 As shown, the components identical or corresponding to those in the first embodiment are designated by the corresponding reference numerals in the first embodiment. For simplicity, only the differences from the first embodiment are described below. The second embodiment differs from the first embodiment in that:

[0048] For example, the heat conducting component 2 is used to conduct the heat emitted by the heating body 1, and the heat conducting component 2 is connected to the heating body 1; the regulating component 3 is used to centrally regulate the release of the heat after conduction, and the regulating component 3 is connected to the heat conducting component 2; the placing component 4 is used to place clothes and shoes to be dried, and the placing component 4 is connected to the heat conducting component 2.

[0049] like Figure 3 、 Figure 4 and Figure 9As shown, the heat-conducting assembly 2 includes a front guide plate 21 arranged on one side of the heating body 1, and a rear guide plate 23 arranged on the other side of the heating body 1. The bottom end of the front guide plate 21 is fixedly connected to a baffle 24, which is made of rubber material. In order to block the heat from overflowing from the bottom of the front guide plate 21, a plurality of heat dissipation waist holes are provided on the outer wall of the rear guide plate 23. An upper U-shaped plate 22 located above the heating body 1 is fixedly connected between the front guide plate 21 and the rear guide plate 23. Both side walls of the front guide plate 21 are fixedly connected with side wing baffles 25. The other end of the side wing baffle 25 is located between the rear guide plate 23 and the heating body 1, and it is in contact with the side wall of the heating body 1. The side wing baffles 25 are arranged in an arc shape, and the outer wall of the side wing baffles 25 is provided with a weakening groove. The inner wall of the side wing baffles 25 is aligned with the heating body 1 forms a guide cavity, a fixing collar 26 fixedly connected to the side wall of the front guide plate 21 is provided above the side baffle 25, and the fixing collar 26 is fixedly connected to the heating body 1, and the front guide plate 21 includes a guide connecting plate 211 fixedly connected to the upper U-shaped plate 22, and a waist-shaped hole is provided on the guide connecting plate 211, and a transparent plate is installed in the waist-shaped hole. The transparent plate is provided to facilitate observation of the internal heating body 1 and to block heat to prevent heat from overflowing from the waist-shaped hole. A mounting hole is provided on the outer wall of the guide connecting plate 211, and a heat collecting box 212 is fixedly connected in the mounting hole. The connection between the heat collecting box 212 and the mounting hole is chamfered. The setting of the heat collecting box 212 is to allow heat to be gathered. A plurality of guide holes 213 are provided on the heat collecting box 212, so that the gathered heat can overflow through the guide holes 213.

[0050] like Figure 3 、 Figure 7 、 Figure 8 、 Figure 10 and Figure 11As shown, the adjustment component 3 is connected to multiple adjustment components and a limit unit 33, and the adjustment component is connected to the front guide plate 21; the adjustment component is connected to a guide unit 31 and an adjustment unit 32, and the guide unit 31 is connected to the front guide plate 21, and the guide unit 31 includes a tube body 311 fixedly connected to the guide hole 213, and a groove body 312 is provided at one end of the tube body 311 away from the guide hole 213, and a plurality of sliding holes 313 distributed in a circumferential array are provided on the outer wall of the tube body 311, and the sliding holes 313 are connected to the groove body 312. The setting of the guide unit 31 is to facilitate guiding the adjustment unit 32; the adjustment unit 32 includes an adjustment head 321 inserted into the groove body 312, and an annular groove is provided in the adjustment head 321, and an inner groove 322 is provided on one side of the annular groove The cam 323 is fixed on the top of the cam 324, and the cam 324 is fixed on the top of the cam 324. The cam 323 and the support plate 324 are both arranged in an arc shape. The inner diameter of the adjusting head 321 close to the tube body 311 is arranged in a decreasing manner toward the other end. The adjusting head 321 is made of an elastic material. The setting of the adjusting head 321 is to facilitate the release of overflowing heat and to adjust the amount of released heat. The support plate 324 is made of an elastic metal material. The purpose of setting the support plate 324 is to enhance the structural strength of the adjusting head 321 and prevent it from being affected by deformation during use. The setting of the connecting ring 323 is to fix multiple support plates 324. The connecting ring 323 and multiple support plates 324 are an integrated structure.

[0051] The limit unit 33 includes a slip ring 331 sleeved on the tube body 311, and the inner wall of the slip ring 331 is fixedly connected to a plurality of connecting plates distributed in a circumferential array, one end of the connecting plate passes through the sliding hole 313 and is fixedly connected to the adjusting head 321. The setting of the connecting plate is to connect the slip ring 331 to the adjusting head 321, and the multiple slip rings 331 are commonly fixedly connected to a movable plate 332. In order to facilitate the simultaneous operation of the multiple slip rings 331, the movable plate 332 is fixedly connected to a side wall away from the front guide plate 21 by a T-shaped pull rod 333. The setting of the T-shaped pull rod 333 is to facilitate the operation of the movable plate 332. Both side walls of the connecting plate are fixedly connected to damping rubber 335 that contacts the inner wall of the sliding hole 313. In order to ensure that the movable plate 332 is in a moving state, the slip ring 331 and the adjusting head 321 can remain relatively fixed with the tube body 311.

[0052] Through the coordinated arrangement of the heat conducting component 2 and the regulating component 3, during use, the heating body 1 is started to work, and heat is generated during its operation. When the heat passes between the front guide plate 21 and the heating body 1, the heat in the middle will enter the heat collecting box 212 in diameter, and the heat on both sides will pass through the side baffles 25 as the diversion starting point, enter the diversion connecting plate 211, and then enter the heat collecting box 212 for accumulation. The accumulated heat will overflow through the diversion hole 213, and further will pass through the pipe body The inner cavity of 311 enters into the regulating head 321 and is released by one end of the regulating head 321. When the amount of heat released needs to be increased, the T-shaped pull rod 333 is pushed toward the front guide plate 21, which moves the movable plate 332 and also drives the slip ring 331 to move on the slip ring 331, thereby driving the connecting plate and the regulating head 321 to move into the groove body 312. During the process, the supporting piece 324 is straightened under the constraint of the groove body 312, and further the inner groove 322 is supported. When the cap 331 of the second hand is in the closed position, the cap 332 of the second hand will be in the open position, so that the cap 332 of the second hand will be in the open position, and the cap 332 of the second hand will be in the open position, so that the cap 332 of the second hand will be in the open position, and the cap 332 of the second hand will be in the open position, so that the cap 332 of the second hand will be in the open position, and the cap 332 of the second hand will be in the open position, so that the cap 332 of the second hand will be in the open position, and the cap 332 of the second hand will be in the open position, so that the cap 332 of the second hand will be in the open position, and the cap 332 of the second hand will be in the open position, and the cap 332 of the second hand will be in the open position, and the cap 332 of the second hand will be in the open position, and the cap

[0053] like Figures 4 to 6 、 Figure 12 and Figure 13As shown, the placement component 4 includes a pair of card slots 43 fixedly connected to the upper U-shaped plate 22, and the side walls of the card slots 43 at both ends are provided with weakened sections. The inner wall of the weakened section is provided with an inward convex arc shape, so that the two ends of the card slots 43 are turned outward. A plurality of heat dissipation holes opened on the upper U-shaped plate 22 are provided between the pair of card slots 43. In order to facilitate the heat flowing between the heating body 1 and the upper U-shaped plate 22 to be discharged through the heat dissipation holes, and at the same time, in order to facilitate the drying of clothes and shoes, a positioning tube 42 is clamped in the card slot 43, and a pair of card slots are provided on the outer wall of the positioning tube 42. The card slots are clamped in the weakened section. The two ends of the pair of positioning tubes 42 are fixedly connected to the frame 41, and the pair of frames 41 are symmetrically arranged. An installation cavity is formed between the pair of frames 41 and the pair of positioning tubes 42. A plurality of storage units 44 fixedly connected to the frame 41 are arranged in the installation cavity. A pair of hanging racks 45 arranged in parallel are installed on the pair of frames 41. The installation cavity is provided to facilitate the installation of the storage units 44, and at the same time play a role of support and installation positioning. The hanging racks 45 are provided to facilitate the hanging of clothes.

[0054] The frame 41 includes a branch pipe 411 fixedly connected to the end of the positioning pipe 42, a pair of branch pipes 411 ends are commonly fixedly connected to an outer protective pipe 412, a pair of outer protective pipes 412 ends are commonly fixedly connected to a U-shaped support rod 413, the outer protective pipe 412 is arranged in a curved shape, and plays a role in supporting the U-shaped support rod 413, a pair of branch pipes 411 are commonly fixedly connected to a bottom plate curved plate 414, one end outer wall of the bottom plate curved plate 414 is in contact with the outer wall of the upper U-shaped plate 22, the bottom plate curved plate 414 is close to the inner wall of one end of the upper U-shaped plate 22 and is arranged in a slope shape, the middle section is arranged in an inward concave arc shape, and the other end is arranged in a slope shape, by bending the bottom plate The shape of the plate 414 is convenient for guiding the heat emitted from the heat dissipation holes so that the heat can be evenly distributed under the second placement tube 442, further facilitating the drying of clothes and shoes, and at the same time facilitating the collection of water drained from clothes and shoes to prevent it from dripping onto the ground or coming into contact with the heating body 1. The collected water will be evaporated with the heat, thereby increasing the indoor humidity. When clothes are not dried, water can be added to the branch pipe 411 to achieve the above effect, thereby avoiding the indoor drying caused by auxiliary heating. A pair of plug-in tubes 415 are fixedly connected to the U-shaped support rod 413, and the plug-in tubes 415 are located on the outside of the installation cavity to facilitate the installation of the hanging rack 45.

[0055] The storage unit 44 includes a fixing sleeve 444 fixedly sleeved on the U-shaped support rod 413, and a hanging tube 443 and a second placement tube 442 are fixedly connected to the fixing sleeve 444 in sequence. A first placement tube 441 arranged above the heat dissipation hole is fixedly connected between a pair of second placement tubes 442. The hanging tube 443 is arranged in a curved shape to facilitate the hanging of clothes hangers, and then to facilitate the use of clothes hangers for hanging clothes when drying clothes. The second placement tube 442 is arranged in a U shape to facilitate the placement of shoes or clothes to be dried or relatively wet. The first placement tube 441 is arranged to facilitate the placement of shoes. During use, a pair of shoes can be placed with the soles facing up and side by side. When placed, the outside of the shoe will fit into the second placement tube 442 to prevent it from tipping over, and further to facilitate the internal cleaning. For drying, the hanging rack 45 includes an L-shaped rod inserted into the plug-in tube 415, and a U-shaped rack is fixedly connected between the corresponding pair of L-shaped rods. In order to facilitate the hanging of clothes, a circular ring is fixedly sleeved on the L-shaped rod, which fits the top of the plug-in tube 415. In order to limit the position of the L-shaped rod, the L-shaped rod is set to enable it to be plugged into the plug-in tube 415, and at the same time, the U-shaped rack can be supported and fixed. The frame 41 and the positioning tube 42 are an integrated structure. The frame 41, the positioning tube 42, the storage unit 44 and the hanging rack 45 are all made of lightweight and stainless material. In order to reduce weight and facilitate taking, while avoiding the heavy load on the heat-conducting component 2, it also avoids rusting during use. The card slot 43 is made of elastic material to facilitate the card slot 43.

[0056] By setting the placement component 4, during use, first hang the clothes on the U-shaped rack and make them not be above the first placement tube 441, or you can directly lay out the shorter clothes on the second placement tube 442, or you can put a pair of shoes with the soles facing up and side by side. When placing, the outside of the shoes will fit in with the second placement tube 442. For example, when the clothes are hung to drain or the clothes and shoes placed on the second placement tube 442 to drain, the water will gather on the bottom plate curved plate 414 for collection, and the collected water will be heated. The evaporation makes the dry environment humidified. When part of the heat generated during the operation of the heating body 1 passes between the upper U-shaped plate 22 and the heating body 1, the heat will be released through the heat dissipation holes. The heat will overflow into the bottom plate curved plate 414 from above the upper U-shaped plate 22 and diffuse, thereby generating heat under the first placement tube 441 and the second placement tube 442. For example, if shoes are placed on the first placement tube 441, the heat will dry the inside and the upper of the shoes. If the clothes to be dried are spread flat on the second placement tube 442, the heat will be The clothes can be dried. If indoor humidification is required, water can be directly poured into the bottom plate curved plate 414. The heat generated will evaporate the water vapor, further achieving a humidification effect. If the storage unit 44 and the hanging rack 45 are not in use, the positioning tube 42 can be disengaged from the card slot 43 by pulling the rack 41. During this period, the port of the card slot 43 will expand outward. If the hanging rack 45 is not in use, the U-shaped rack can be directly lifted upward, which will cause the L-shaped rod to be removed from the plug-in tube 415. Compared with the existing heating devices, the utility model not only realizes the adaptive placement of clothes and shoes through the above structure, but also realizes the uniform drying of clothes and shoes. At the same time, it is convenient to take out the hanger when hanging clothes, and avoids the adverse consequences caused by drainage and contamination of the heating device. The surrounding environment can be humidified by drainage and water addition to avoid dryness and causing human discomfort. In addition, through the detachable structural design, it can be disassembled and stored when not in use to avoid occupying space or causing obstruction.

[0057] The working principle of the technical solution provided by the utility model is as follows:

[0058] During use, the external control device is started to connect the external power supply, and the electricity will enter the conductive rod (63) through the power connection seat (62), and then directly conduct the electricity to the water. After the water is energized, the temperature gradually increases. As the water temperature increases, the resistance of the water decreases. During this process, the conductive rod (63) itself does not generate heat, and the conductive liquid generates temperature through the flow of current. The temperature of the conductor increases as the temperature of the conductive liquid increases. The temperature of the conductor itself is lower than the temperature of the conductive liquid, and the temperature is the same as that of the conductive liquid at the highest point.

[0059] When heat is generated during operation, when the heat passes between the front guide plate 21 and the heating body 1, the heat in the middle will enter the heat collection box 212 with a diameter, and the heat on both sides will pass through the side baffles 25 as the diversion starting point, enter the guide connection plate 211, and then enter the heat collection box 212 for accumulation. The accumulated heat will overflow through the guide hole 213, and further enter the regulating head 321 through the inner cavity of the tube body 311, and be released from one end of the regulating head 321. When it is necessary to increase the amount of heat released, the T-shaped pull rod 333 is pushed toward the front guide plate 21, and its movement will cause the movable plate 332 to move, and at the same time, it will drive the slip ring 331 to move on the slip ring 331, and then drive the connecting plate and the regulating head 321 toward the trough body. 312, the support piece 324 will become straightened under the constraint of the groove body 312, and the inner groove 322 will be further expanded. In this process, the port of the adjusting head 321 will gradually become larger, and the amount of heat released will be increased. When it is adjusted to a certain amount, the T-shaped pull rod 333 can be stopped from being pushed, and the damping rubber 335 will come into conflict with the sliding hole 313, so that the movable plate 332 can be relatively positioned, and the connecting plate and the adjusting head 321 can be further positioned, and the heat released can be quantified. When the adjusting head 321 is completely inserted into the groove body 312, the amount of heat released is maximized. When the port diameter of the adjusting head 321 is at the minimum value, the amount of heat released is minimized.

[0060] When clothes need to be dried, first hang the clothes on the U-shaped rack and make sure that they are not above the first placement tube 441, or you can lay shorter clothes directly on the second placement tube 442, or you can place a pair of shoes with the soles facing up and side by side. When placing them, the outside of the shoes will be in contact with the second placement tube 442. When the hung clothes are drained or the clothes and shoes placed on the second placement tube 442 are drained, the water will gather on the bottom plate curved plate 414 for collection, and the collected water will be evaporated by the heat, so that the dry environment can be humidified. When part of the heat generated during the operation of the heating body 1 passes between the upper U-shaped plate 22 and the heating body 1, the heat will be released through the heat dissipation holes, and the heat will overflow from the top of the upper U-shaped plate 22 into the bottom plate curved plate 414 for diffusion. , which will generate heat under the first placement tube 441 and the second placement tube 442. If shoes are placed on the first placement tube 441, the heat will dry the inside and the upper of the shoes. If clothes to be dried are spread flat on the second placement tube 442, the heat will dry the clothes. If indoor humidification is required, water can be directly poured into the bottom plate curved plate 414. The heat generated will cause the water vapor to evaporate, further achieving a humidification effect. If the storage unit 44 and the hanging rack 45 are not used normally, the positioning tube 42 can be disengaged from the inside of the card slot 43 by pulling the rack 41, and the positioning tube 42 can be removed. During this period, the port of the card slot 43 will expand outward. If the hanging rack 45 is not used, the U-shaped rack can be directly lifted upward, which will cause the L-shaped rod to be disengaged from the plug-in tube 415.

[0061] This invention encompasses any alternatives, modifications, equivalents, and solutions that do not depart from the spirit and scope of this invention. To provide a thorough understanding of this invention, specific details are described in detail in the following preferred embodiments of this invention, but those skilled in the art will be able to fully understand this invention without these detailed descriptions. Furthermore, to avoid unnecessary confusion regarding the essence of this invention, well-known methods, processes, procedures, components, and circuits are not described in detail.

[0062] The above is only a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the principles of the present invention. These improvements and modifications should also be regarded as within the scope of protection of the present invention.

Claims

1. A heating device based on water circulation, characterized in that: include: A heating body, wherein a side wall of the heating body is fixedly connected to a mounting culvert arranged in communication, and a heating mechanism is arranged in the mounting culvert; The heating mechanism includes a fixed flange fixedly connected to the outer end of the mounting culvert, a pair of sockets are opened on the outer wall of the fixed flange, a conductive rod is fixedly connected in the socket, the outer end of the conductive rod is fixedly connected to the power connection socket, the conductive rod is fixedly connected to the insulating sleeve disposed in the cavity of the mounting culvert, the pair of conductive rods are fixedly connected to an electrical shielding cover, and a plurality of air outlet holes are opened on the outer wall of the electrical shielding cover; The heat conducting component is used for conducting the heat emitted by the heating body, and the heat conducting component is connected to the heating body.

2. The water circulation-based heating device according to claim 1, characterized in that: Also includes: An adjusting component, used for adjusting and releasing the heat energy after the conduction, the adjusting component being connected to the heat conducting component; The placement component is used for placing clothes and shoes to be dried, and the placement component is connected to the heat conduction component.

3. The water circulation-based heating device according to claim 2, characterized in that: The heat conduction assembly includes a front guide plate arranged on one side of the heating body, and a rear guide plate arranged on the other side of the heating body. An upper U-shaped plate located above the heating body is fixedly connected between the front guide plate and the rear guide plate. Both side walls of the front guide plate are fixedly connected with side wing baffles. A fixing ring fixedly connected to the side wall of the front guide plate is arranged above the side wing baffle, and the fixing ring is fixedly connected to the heating body.

4. The water circulation-based heating device according to claim 3, characterized in that: The front deflector includes a deflector connecting plate fixedly connected to the upper U-shaped plate, the outer wall of the deflector connecting plate is provided with a mounting hole, a heat collecting box is fixedly connected in the mounting hole, and the heat collecting box is provided with a plurality of deflection holes; A plurality of adjustment components and a limiting unit connected to the adjustment component, wherein the adjustment component is connected to the front deflector; The adjusting assembly is connected to a guide unit and an adjusting unit, and the guide unit is connected to the front deflector.

5. The water circulation-based heating device according to claim 4, characterized in that: The guide unit includes a tube body fixedly connected to the guide hole, a groove body is formed at one end of the tube body away from the guide hole, and a plurality of sliding holes distributed in a circumferential array are formed on the outer wall of the tube body, and the sliding holes are connected to the groove body; The adjusting unit includes an adjusting head inserted into the groove body, an annular groove is formed in the adjusting head, an inner groove is provided on one side of the annular groove and is communicated with the annular groove, a connecting ring is fixedly connected in the annular groove, a supporting piece fixed to the connecting ring is fixedly connected in the inner groove, and the inner groove and the supporting piece are both arranged in an arc shape; The limiting unit includes a slip ring sleeved on the tube body, and a plurality of connecting plates distributed in a circular array are fixedly connected to the inner wall of the slip ring. One end of the connecting plate passes through the sliding hole and is fixedly connected to the adjusting head. A movable plate is fixedly connected between the plurality of slip rings. A side wall of the movable plate away from the front guide plate is fixedly connected to a T-shaped pull rod, and both side walls of the connecting plate are fixedly connected to damping rubber that contacts the inner wall of the sliding hole.

6. The water circulation-based heating device according to claim 4, characterized in that: The placement component includes a pair of card slots fixedly connected to the upper U-shaped plate, a plurality of heat dissipation holes opened on the upper U-shaped plate are arranged between the pair of card slots, a positioning tube is clamped in the card slot, both ends of the pair of positioning tubes are commonly fixedly connected to a frame, the pair of frames are symmetrically arranged, and an installation cavity is formed between the pair of frames and the pair of positioning tubes. A plurality of storage units fixedly connected to the frames are arranged in the installation cavity, and a pair of hanging racks arranged in parallel are commonly installed on the pair of frames.

7. The water circulation-based heating device according to claim 6, characterized in that: The frame includes a branch pipe fixedly connected to the end of the positioning pipe, a pair of the branch pipe ends are commonly fixedly connected to an outer protective pipe, a pair of the outer protective pipe ends are commonly fixedly connected to a U-shaped support rod, and a pair of the branch pipes are commonly fixedly connected to a bottom plate bent plate, the outer side wall of one end of the bottom plate bent plate is in contact with the outer side wall of the upper U-shaped plate, the bottom plate bent plate is arranged in a slope shape near the inner wall of one end of the upper U-shaped plate, the middle section is arranged in an inward concave arc shape, and the other end is arranged in a slope shape, a pair of plug-in tubes are fixedly connected to the U-shaped support rod, and the plug-in tubes are located on the outside of the installation cavity.

8. The water circulation-based heating device according to claim 7, characterized in that: The storage unit includes a fixed sleeve fixedly connected to the U-shaped support rod, the fixed sleeve is fixedly connected with a hanging tube and a second placement tube in sequence, and a first placement tube arranged above the heat dissipation hole is fixedly connected between a pair of the second placement tubes.

9. The water circulation-based heating device according to claim 8, characterized in that: The object hanging rack includes an L-shaped rod inserted into the plug-in tube, a U-shaped frame is fixedly connected between a corresponding pair of L-shaped rods, and a circular ring that fits the top of the plug-in tube is fixedly sleeved on the L-shaped rod.

10. The water circulation-based heating device according to claim 9, characterized in that: The frame and the positioning tube are an integrated structure. The frame, the positioning tube, the storage unit and the hanging frame are all made of lightweight and stainless materials, and the card slot is made of elastic material.