Water-vapor separation box, faucet and multifunctional water dispenser

By designing the hot water inlet, hot water outlet, and steam exhaust outlet of the water-vapor separator, and using baffle blocks and inclined bottom walls to separate steam and water flow, the problems of low separation efficiency and complex structure of existing water-vapor separators are solved, achieving stable hot water output and improved safety.

CN223554666UActive Publication Date: 2025-11-18ZIBO YUEKA ELECTRIC TECH CO LTD
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Patent Information

Application Number
CN202423183715.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-20
Publication Date
2025-11-18
Estimated Expiration
2034-12-20

AI Technical Summary

Technical Problem

Existing water-vapor separation devices have low separation efficiency, complex structure, unreasonable steam discharge, and lack of multi-outlet design, which affects the stability and safety of hot water.

Method used

Design a water vapor separator box, including a hot water inlet, a hot water outlet, and a steam exhaust outlet. It uses a baffle block and an inclined bottom wall to separate steam and water flow, and discharges steam and water flow through hot water channels at different heights. The box cover is bolted for easy maintenance.

Benefits of technology

It achieves efficient water vapor separation, ensures stable hot water output, reduces the risk of scalding, simplifies equipment structure, and improves safety and ease of maintenance.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The water vapor separation box comprises a box body, one side of the box body is provided with a hot water inlet, the other side of the box body is provided with a water outlet nozzle, the water outlet nozzle is provided with a steam exhaust outlet and hot water outlets, the hot water outlets comprise the first hot water outlet and the second hot water outlet, and the steam exhaust outlet is communicated with the steam exhaust outlet. A stop block is arranged above the water outlet nozzle; the bottom wall of the inner cavity of the box body is inclined from the hot water inlet to the stop block to form an inclined surface; by designing the reasonable layout of the hot water inlet, the hot water outlet and the steam exhaust outlet and arranging the stop block and the inclined bottom wall in the box body, steam and water flow can be effectively separated in the flowing process of hot water. Steam is discharged through the steam discharging channel, hot water is discharged through the hot water channels with different heights according to the hydrodynamic law, efficient water vapor separation is achieved, and it is ensured that output hot water is more stable and purer.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a kind of water vapor separation box, faucet and multifunctional water dispenser. BACKGROUND

[0002] In modern family, office and public facilities, water dispenser has become an important equipment to provide hot water, widely used in tea, coffee and other hot water demand scene. Water dispenser usually heats water source quickly by built-in heating device to provide hot water on demand. However, in the prior art, a certain amount of water vapor often accompanies in heated hot water, these water vapor is directly discharged from water outlet, not only can cause scald risk to user, but also can affect the convenience and comfort of use.

[0003] To solve the above problems, water vapor separation function is introduced in some water dispenser design to reduce the interference of steam directly sprayed to user, and improve the stability of hot water output. However, the existing water vapor separation device usually has the following deficiencies:

[0004] Limited separation efficiency: the separation effect of existing water vapor separation device on hot water and steam is not ideal, part of steam still mixes with hot water and is discharged, which leads to unstable hot water temperature, and is difficult to meet the demand of user for high-quality hot water.

[0005] Complex structure, difficult to maintain: many water vapor separation devices adopt multi-stage separation structure, although it can improve the separation effect to some extent, but increases the complexity of equipment. Complex structure leads to inconvenience in disassembly, cleaning and maintenance, and scale and impurities are easily accumulated after long time use, which affects the running efficiency of equipment.

[0006] Unreasonable steam discharge: in part of water vapor separation device, the design of steam discharge is unreasonable, which can lead to steam condensation backflow, accumulation in the interior of equipment, and increase the difficulty of cleaning. At the same time, steam that is not fully discharged can cause scald risk near water outlet, which reduces the safety of equipment.

[0007] Lack of hot water shunt design: the existing equipment usually designs hot water outlet as single channel, lacks multi-outlet design to adapt to different water demand in different scenes.

[0008] In summary, the water vapor separation device in prior art has deficiencies in separation effect, structure design, steam treatment and multi-purpose hot water output, which is difficult to meet the increasing demand of user for high performance and multi-function of water dispenser. INVENTION CONTENTS

[0009] The first purpose of the utility model is to provide a kind of water vapor separation box with high efficiency, optimized steam discharge and simple structure.

[0010] The second purpose of the utility model is to provide a faucet with efficient water-vapor separation and optimized steam discharge.

[0011] The third purpose of the utility model is to provide a multifunctional water dispenser with efficient water-vapor separation and optimized steam discharge.

[0012] The first purpose of the utility model is achieved in the following way:

[0013] A water-vapor separation box comprises a box body, a hot water inlet is formed on one side of the box body, a water outlet nozzle is arranged on the other side of the box body, the water outlet nozzle is provided with a steam discharge outlet and a hot water outlet, the hot water outlet comprises a first hot water outlet and a second hot water outlet, a blocking block is arranged above the water outlet nozzle, and the inner cavity bottom wall of the box body is inclined to form an inclined surface from the hot water inlet to the blocking block.

[0014] The blocking block is provided with a first hot water channel corresponding to the position of the first hot water outlet.

[0015] The blocking block is provided with a second hot water channel corresponding to the position of the second hot water outlet.

[0016] The blocking block is provided with a steam discharge channel corresponding to the position of the steam discharge outlet.

[0017] The height of the inlet of the steam discharge channel is higher than that of the inlet of the second hot water channel, and the height of the inlet of the second hot water channel is higher than that of the inlet of the first hot water channel.

[0018] The hot water inlet, the hot water outlet and the steam discharge outlet are reasonably arranged, and the blocking block and the inclined bottom wall are arranged in the box body, so that the steam and the water flow can be effectively separated during the flow of the hot water.

[0019] The inlet of the steam discharge channel is designed to be higher than the inlet of the hot water channel, so that the possibility of steam backflow to the hot water outlet is effectively avoided, the steam can be discharged through the steam discharge outlet independently and quickly, the risk of scalding is reduced, and the use safety of the equipment is improved.

[0020] The bottom wall of the inner cavity of the box body is designed as an inclined surface inclined from the hot water inlet to the blocking block, so that the hot water is guided in a certain direction during the flow, the water-vapor separation process is accelerated, and the separation effect is not affected by the disorder of the water flow.

[0021] The accurate distribution of the blocking block and the channels effectively separates the flow paths of the steam and the hot water, reduces the occurrence of water-vapor mixing, ensures the water quality of the hot water outlet, further optimizes the steam discharge efficiency of the steam discharge channel, and reduces the energy loss during the operation of the equipment.

[0022] The independent design and reasonable height layout of the steam exhaust passage ensure that the excess steam can be quickly discharged, reduce the phenomenon of water accumulation caused by steam condensation in the box body, and prolong the service life.

[0023] The inlet height of the second hot water passage is higher than that of the first hot water passage, so that in the case of small water quantity, only the first hot water passage is used for output, meeting the demand for small amount of hot water; and in the case of large water quantity, the water flow passes through the first hot water passage and the second hot water passage at the same time, effectively improving the hot water output efficiency and meeting the demand for large flow of water.

[0024] Through the design of hot water passage inlets with different heights, automatic shunting according to water quantity is realized, avoiding the phenomenon of slow water flow or overflow caused by single passage output, and ensuring that the equipment can provide stable and fast hot water output in various water use scenarios.

[0025] Through the automatic passage switching design under different flow conditions, the water-steam separation box can meet the needs of both small amount of water use scenarios (such as drinking hot water) and large amount of water use scenarios (such as tea making and coffee brewing), providing users with more flexible water use experience.

[0026] The water quantity shunting is completely automatically adjusted by the water flow and the height difference of the passages, without the need for additional mechanical or electrical control devices, simplifying the equipment structure and reducing the failure rate and maintenance cost.

[0027] The first purpose of the utility model can also be solved by the following technical measures:

[0028] Further, the box cover is provided, the box body is a box body with an open top, the box body is provided with a connecting column, the box cover is buckled on the open top of the box body, and a bolt is locked on the connecting column through the box cover, so that the box cover and the box body are connected together.

[0029] The box body is designed to be open at the top, and the box cover is locked by a bolt, which can be quickly disassembled and installed, facilitating the user to clean, maintain or replace parts in the box body, and improving the maintainability of the equipment.

[0030] The bolt locking mode makes the connection between the box cover and the box body more compact, effectively preventing water vapor leakage, and improving the use efficiency and safety of the water vapor separation box.

[0031] Further, the connecting column is arranged on the inclined surface.

[0032] The arrangement of the connecting column on the inclined surface does not damage the drainage function of the inclined surface, and the water flow can smoothly flow to the passage inlet, further improving the water vapor separation efficiency.

[0033] Further, the first hot water channel inner wall is provided with first blocking ribs at intervals, and the second hot water channel inner wall is provided with second blocking ribs at intervals.

[0034] The inner walls of the first hot water channel and the second hot water channel are provided with blocking ribs at intervals, which can effectively guide the water flow along a fixed path, increase the turbulent effect of the water flow, thereby promoting more water vapor separation and improving water purity.

[0035] The interval design of the blocking ribs ensures smooth water flow, while avoiding increased resistance caused by sharp turning, thereby optimizing the hot water delivery efficiency of the equipment.

[0036] The distribution of the blocking ribs on the inner wall can improve the overall structural strength of the channel, avoid deformation or damage of the channel during long-term use, and improve the durability of the equipment.

[0037] The second purpose of the utility model is achieved as follows:

[0038] A faucet comprises a water heating device for heating water, a main control board and a faucet, the water heating device is arranged in the faucet;

[0039] The water vapor separation box is arranged in the faucet, the water outlet nozzle is exposed outside the faucet, the hot water inlet is communicated with the water outlet of the water heating device, and the water inlet of the water heating device is connected with an external water source.

[0040] The water heating device is electrically connected with the main control board, and the main control board controls the start and stop of the water heating device.

[0041] The water heating device is directly arranged in the faucet, realizes the organic combination of the heating function and the faucet, reduces the dependence on external equipment, and reduces the space occupied by the whole equipment.

[0042] The integrated design makes the appearance of the equipment more simple, and is suitable for environments with high requirements for space and appearance, such as families and offices.

[0043] Since the water heating device is directly arranged in the faucet, the instant heating effect can be realized, the user does not need to wait, and the convenience and efficiency of use are greatly improved.

[0044] The design of the built-in water heating device can also effectively avoid energy waste caused by long-time heating, and improve the energy saving of the equipment.

[0045] The arrangement of the water vapor separation box can effectively separate hot water and water vapor, avoid mixing of steam when hot water flows out, and improve the use comfort of users.

[0046] The main control board controls the start and stop of the water heating device, can accurately control the hot water output according to the user's demand, avoids the problems of excessive heating or insufficient water, and guarantees the safety and efficiency of the equipment operation.

[0047] The water inlet of the water heating device is connected with an external water source, and supports various forms of water supply systems, whether household tap water or bottled water can be compatible, expanding the application range of the device.

[0048] The third object of the utility model is realized as follows:

[0049] A multifunctional water dispenser comprises a base, a cooking utensil heating device for heating a cooking utensil, and a control panel, the top of the base is provided with a water receiving area and a cooking utensil heating area, the faucet is rotatably arranged on the top of the base, and the faucet is rotated to make the water outlet nozzle enter the water receiving area or the cooking utensil heating area.

[0050] The cooking utensil heating device is arranged in the base and located below the cooking utensil heating area.

[0051] The water heating device comprises a first water heating device and a second water heating device, the first water heating device is arranged in the base, and the second water heating device is arranged in the faucet.

[0052] The first water heating device and the second water heating device are communicated, the water inlet of the first water heating device extends out of the base to connect with an external water source, and the water outlet of the second water heating device is communicated with the hot water inlet.

[0053] The first water heating device, the second water heating device, the cooking utensil heating device, and the control panel are electrically connected with a main control panel respectively, and the control panel controls the start and stop of the first water heating device, the second water heating device, and the cooking utensil heating device through the main control panel.

[0054] The water heating, cooking utensil heating, and multifunctional water outlet design are integrated in one device to form a water dispenser, which greatly reduces the use and space occupation of independent devices and is suitable for scenes with limited space, such as small kitchens, offices, etc.

[0055] The faucet can be rotated to the water receiving area or the cooking utensil heating area, so that the user can easily complete the water receiving or heating operation without moving the container, and the operation complexity is reduced.

[0056] The first water heating device and the second water heating device are used in cooperation to realize rapid hot water supply through the way of division of labor and cooperation.

[0057] The first water heating device preheats the water source to provide basic hot water output capacity.

[0058] The second water heating device instantaneously heats when water is discharged, further improving the hot water output temperature and efficiency.

[0059] The double heating design can meet the requirements of hot water temperature and water outlet speed in different scenes, and improves the equipment performance and use experience.

[0060] The built-in cooking utensil heating device can heat tableware, tea sets and the like at high temperature, meets the high-temperature disinfection or heating requirements, and provides a solution for users with high hygiene requirements.

[0061] The water outlet nozzle directly communicates with the hot water inlet, ensures smooth water supply, and supports users to quickly obtain hot water for drinking or cleaning.

[0062] Through linkage of the main control board and the control panel, users can easily select to start or stop different function modules, and realize accurate control.

[0063] The division design of the double heating device effectively reduces the long-term running time of the heating device, and reduces energy consumption.

[0064] The third purpose of the utility model can also be solved by the following technical measures:

[0065] Further, the cooking utensil heating device is an electric ceramic stove, the cooking utensil heating area of the base is provided with a microcrystalline panel, and the heating part of the electric ceramic stove is tightly attached to the microcrystalline panel.

[0066] The heating part of the electric ceramic stove is tightly attached to the microcrystalline panel, so that heat can be quickly and uniformly transmitted to the microcrystalline panel, improving heating efficiency, shortening heating time and improving user experience.

[0067] The microcrystalline panel has good high-temperature resistance and can work continuously under high-temperature conditions, so that the cup in the cooking utensil can be more thoroughly disinfected at high temperature, and the disinfection effect is guaranteed.

[0068] The thermal conductivity of the microcrystalline panel makes the surface temperature distribution of the cooking utensil heating area more uniform, avoiding the problems of local overheating or uneven temperature, and improving the uniformity and safety of heating.

[0069] The surface of the microcrystalline panel is smooth and resistant to dirt, which is convenient for users to clean after use and keep clean. In addition, the texture of the microcrystalline panel improves the overall appearance of the water dispenser.

[0070] The utility model has the advantages of the following:

[0071] The utility model discloses a reasonable layout of the hot water inlet, the hot water outlet and the steam outlet, and sets blocking blocks and an inclined bottom wall in the box body, so that steam and water flow can be effectively separated during the flow of hot water. Steam is discharged through the steam passage, and hot water is discharged through hot water passages of different heights according to the law of fluid dynamics, realizing efficient separation of water vapor, ensuring that the output hot water is more stable and pure.

[0072] The inlet of the steam discharge passage is designed to be higher than the inlet height of the hot water passage, effectively avoiding the possibility of steam backflow to the hot water outlet, ensuring that steam can be independently and quickly discharged through the steam discharge outlet, reducing the risk of scalding and improving the use safety of the equipment.

[0073] The inlet height of the second hot water passage is higher than the inlet of the first hot water passage, so that in the case of small water volume, only the first hot water passage is used for output, meeting the demand for small amount of hot water use; when the water volume is large, the water flow passes through the first hot water passage and the second hot water passage at the same time, effectively improving the hot water output efficiency and meeting the demand for large flow water use.

[0074] The utility model discloses, through the hot water passage inlet design of different height, according to the automatic shunting of water volume, avoid the phenomenon that the water flow is slow or overflowed possibly caused by single passage output, ensure that the equipment can provide stable, fast hot water output under various water scenes. BRIEF DESCRIPTION OF DRAWINGS

[0075] Figure 1 It is a schematic view of a multifunctional water dispenser.

[0076] Figure 2 It is an assembly schematic view of a multifunctional water dispenser.

[0077] Figure 3 It is a partial sectional view of a multifunctional water dispenser.

[0078] Figure 4 It is an exploded view of a multifunctional water dispenser.

[0079] Figure 5 It is a schematic view of a first water heating device of a multifunctional water dispenser.

[0080] Figure 6 It is a schematic view of a first water heating device (without protective shell).

[0081] Figure 7 It is a sectional view of a first water heating device.

[0082] Figure 8 It is an exploded view of a first water heating device.

[0083] Figure 9 It is a sectional view of a first water heating device.

[0084] Figure 10 It is a schematic view of a first water heating device (with locking hoop).

[0085] Figure 11 It is a schematic view of a locking hoop of a first water heating device.

[0086] Figure 12 It is a schematic view of a water vapor separation box.

[0087] Figure 13 This is a schematic diagram of the water vapor separator from another angle.

[0088] Figure 14 This is a cross-sectional view of the water vapor separator.

[0089] Figure 15 This is an assembly diagram of the water vapor separator.

[0090] Figure 16 for Figure 4 Enlarged view of part A. Detailed Implementation

[0091] The present invention will be further described below with reference to the accompanying drawings and embodiments:

[0092] Implementation examples, in conjunction with Figures 1 to 16 As shown, a multi-functional water dispenser includes a base 1, a cooking vessel heating device 2 for heating cooking vessels, a water heating device 3 for heating water, a control panel 4, a main control board 5, and a faucet 6. The top of the base 1 is provided with a water receiving area 11 and a cooking vessel heating area 12. The faucet 6 is provided with a water outlet. The faucet 6 is rotatably mounted on the top of the base 1. The faucet 6 rotates so that the water outlet enters the water receiving area 11 or the cooking vessel heating area 12.

[0093] The cooking vessel heating device 2 is installed inside the base 1 and located below the cooking vessel heating area 12;

[0094] The water heating device 3 includes a first water heating device 31 and a second water heating device 32. The first water heating device 31 is installed in the base 1, and the second water heating device 32 is installed in the faucet 6.

[0095] The first water heating device 31 and the second water heating device 32 are connected. The inlet of the first water heating device 31 extends out of the base 1 and is connected to an external water source. The outlet of the second water heating device 32 is connected to the water outlet.

[0096] The first water heating device 31, the second water heating device 32, the cooking vessel heating device 2, and the control panel 4 are electrically connected to the main control board 5. The control panel 4 controls the start and stop of the first water heating device 31, the second water heating device 32, and the cooking vessel heating device 2 through the main control board 5.

[0097] Furthermore, it also includes a first radiator 33, a first silicon controlled rectifier 34, a second radiator 35 and a second silicon controlled rectifier 36, and the main control board 5 is provided with a first main control unit for controlling the first water heating device 31 and a second main control unit for controlling the second water heating device 32.

[0098] The first controllable silicon 34 and the first main control part are electrically connected, the first radiator 33 is provided with a first water channel 331 for connecting a water source, the first controllable silicon 34 is closely attached to the first radiator 33, and the first controllable silicon 34 and the first radiator 33 exchange heat;

[0099] The second controllable silicon 36 and the second main control part are electrically connected, the second radiator 35 is provided with a second water channel 351 for connecting a water source, the second controllable silicon 36 is closely attached to the second radiator 35, and the second controllable silicon 36 and the second radiator 35 exchange heat;

[0100] When the external water source passes through the first water channel 331 and the second water channel 351, the first radiator 33 and the second radiator 35 respectively exchange heat with water, so as to realize heat dissipation of the first controllable silicon 34 and the second controllable silicon 36.

[0101] Further, a heat dissipation fan 7 is further included, the base 1 is provided with an air inlet and an air outlet, and the heat dissipation fan 7 is arranged in the base 1 and is electrically connected with the main control panel 5.

[0102] Further, a motor 8 is further included, the control panel 4 is arranged on the top of the base 1, the motor 8 is electrically connected with the main control panel 5, the control panel 4 controls the motor 8 to work through the main control panel 5, and the motor 8 drives the water faucet 6 to rotate, so that the water outlet nozzle enters the water receiving area 11 or the cooking utensil heating area 12.

[0103] Further, a water inlet pipeline 21, a water pump 22 and a water outlet pipeline 23 are further included, the water inlet pipeline 21, the water pump 22 and the water outlet pipeline 23 are arranged in the base 1, the water inlet pipeline 21 passes through the first water channel 331 and the second water channel 351, an inlet of the water inlet pipeline 21 extends out of the base 1 and is used for connecting a water source, an outlet of the water inlet pipeline 21 is communicated with an inlet of the water pump 22, an outlet of the water pump 22 is communicated with a water inlet of the first water heating device 31, a water outlet of the first water heating device 31 is communicated with an inlet of the water outlet pipeline 23, and an outlet of the water outlet pipeline 23 is communicated with a water inlet of the second water heating device 32.

[0104] Further, the cooking utensil heating device 2 is an electric ceramic stove, the cooking utensil heating area 12 of the base 1 is provided with a microcrystalline panel 121, and a heating part of the electric ceramic stove is closely attached to the microcrystalline panel 121.

[0105] Further, the first water heating device 31 is arranged in the base 1 in a horizontal manner, and the second water heating device 32 is arranged in the water faucet 6 in a vertical manner.

[0106] Further, the first water heating device 31 comprises a heating pipe body 311 and a spiral body 312, the diameter of the spiral body 312 is smaller than the inner diameter of the heating pipe body 311, the spiral body 312 is fixed in the inner cavity of the heating pipe body 311, the water channel 313 for guiding the directional flow of water is formed between the inner wall of the heating pipe body 311 and the spiral body 312, one end of the heating pipe body 311 is the water inlet, the other end of the heating pipe body 311 is the water outlet, the water inlet and the water outlet are communicated with the inner cavity of the heating pipe body 311, and the heating pipe body 311 heats the water passing through the water channel 313;

[0107] The spiral body 312 is a screw rod, the length of the screw rod is less than or equal to the length of the heating pipe body 311, and the thread of the screw rod and the inner wall of the heating pipe body 311 form the water channel 313 for guiding the radial flow of water along the heating pipe body 311;

[0108] The second water heating device has the same structure as the first water heating device.

[0109] Further, the heating pipe body 311 comprises a hollow conduit 314 for water passing, an insulation layer 315 and an electric heating wire 316, and the hollow conduit 314 is provided with the insulation layer 315 on the periphery;

[0110] The electric heating wire 316 is wound on the insulation layer 315;

[0111] The electric heating wire 316 generates heat after being electrified, the heat heats the hollow conduit 314 through the insulation layer 315, and the hollow conduit 314 heats the water passing through the hollow conduit 314.

[0112] Further, the water faucet 6 is provided with a water-vapor separation box 9, the water-vapor separation box 9 comprises a box body 91, one side of the box body 91 is provided with a hot water inlet 911, the other side of the box body 91 is provided with a water outlet nozzle 10, the water outlet nozzle 10 is provided with a steam discharge outlet 101 and a hot water outlet 102, the hot water outlet 102 comprises a first hot water outlet 1021 and a second hot water outlet 1022, the water outlet nozzle 10 is provided with a blocking block 20 above, and the inner cavity bottom wall of the box body 91 is inclined to form an inclined surface 92 from the hot water inlet 911 to the blocking block 20;

[0113] The blocking block 20 is provided with a first hot water channel 201 corresponding to the position of the first hot water outlet 1021 and communicated with the first hot water outlet 1021;

[0114] The blocking block 20 is provided with a second hot water channel 202 corresponding to the position of the second hot water outlet 1022 and communicated with the second hot water outlet 1022;

[0115] The blocking block 20 is provided with a steam passage 203 corresponding to the position of the steam outlet 101, which is communicated with the steam outlet 101.

[0116] The height of the inlet of the steam passage 203 is higher than the height of the inlet of the second hot water passage 202, and the height of the inlet of the second hot water passage 202 is higher than the height of the inlet of the first hot water passage 201.

[0117] Further, the box cover 94 is further included, the box body 91 is a top open box body 91, the box body 91 is built-in with a connecting column 93, the box cover 94 is buckled on the top open port of the box body 91, and the bolt is locked on the connecting column 93 through the box cover 94, so that the box cover 94 and the box body 91 are connected together.

[0118] Further, the connecting column 93 is arranged on the inclined surface 92.

[0119] Further, the first hot water passage 201 is provided with first blocking ribs 2011 at intervals on the inner wall, and the second hot water passage 202 is provided with second blocking ribs 2021 at intervals on the inner wall.

[0120] The water vapor separation box 9 is arranged in the faucet 6, the water outlet nozzle 10 is exposed outside the faucet 6, and the hot water inlet 911 is communicated with the water outlet of the second water heating device 32.

[0121] Further, the lock clamp 30 and the rivet 40 are further included, the lock clamp 30 is provided with a clamping cavity 301 for clamping the heating pipe body 311, the clamping cavity 301 is provided with an upper clamping piece 302 and a lower clamping piece 303 at the inlet, and the upper clamping piece 302 and the lower clamping piece 303 form an opening for the heating pipe body 311 to pass through;

[0122] The heating pipe body 311 passes through the opening into the clamping cavity 301, the rivet 40 passes through the upper clamping piece 302 and the lower clamping piece 303 to close the opening and lock the clamping cavity 301, so as to reduce the size of the clamping cavity 301, so that the clamping cavity 301 clamps the heating pipe body 311.

[0123] Further, the upper clamping piece 302 and the lower clamping piece 303 are both provided with through holes 304 for the rivet 40 to pass through.

[0124] Further, the upper clamping piece 302 is provided with a power supply terminal 50 at the end, the power supply terminal 50 is electrically connected with the heating pipe body 311, an external power supply supplies power to the heating pipe body 311 through the power supply terminal 50, so that the heating pipe body 311 works to heat the water passing through the water passage 313.

[0125] Multifunctional water dispenser operation method

[0126] Tea making mode

[0127] Start-up: Press the "tea mode" button on the control panel 4.

[0128] Select water temperature: Select the desired water temperature (e.g. 80°C, 90°C, etc.) through the control panel 4.

[0129] Water heating and dispensing:

[0130] The main control board 5 controls the first water heating device 31 to heat the water to the set temperature.

[0131] The heated hot water enters the second water heating device 32 through the water inlet pipeline 21 for precise temperature adjustment.

[0132] After heating is completed, the hot water flows from the water outlet nozzle 10 of the faucet 6 into the water receiving area 11 for the user to brew tea.

[0133] Switching area: The user can start the motor 8 to rotate the faucet 6 through the control panel 4 to switch the water outlet nozzle 10 from the water receiving area 11 to the cooking utensil heating area 12, meeting the needs of multiple scenarios.

[0134] Disinfection mode

[0135] Used for high-temperature disinfection of the cup to ensure hygiene during use.

[0136] Select "disinfection mode" on the control panel 4.

[0137] The user places the cup to be disinfected in the cooking utensil and places the cooking utensil in the cooking utensil heating area 12.

[0138] The motor 8 rotates the water outlet nozzle 10 above the cooking utensil heating area 12.

[0139] The device starts the first water heating device 31 and the second water heating device 32 to inject hot water through the water outlet nozzle 10 into the cooking utensil to the appropriate water level.

[0140] After the water injection is completed, the electric ceramic stove starts and heats the cooking utensil, causing the water in the cooking utensil to boil, thereby high-temperature disinfecting the cup.

[0141] After reaching the set disinfection time or water temperature, the device automatically stops heating, and the disinfection mode is completed.

[0142] Stop mode

[0143] Press the "stop" button on the control panel 4, and the device immediately stops running.

[0144] The main control board 5 turns off the first water heating device 31 and the second water heating device 32 and the cooling fan 7.

[0145] The motor 8 stops rotating, and the faucet 6 remains in the current position.

[0146] Water vapor separation principle

[0147] Water vapor separation box 9 design: the faucet 6 is provided with a water vapor separation box 9, and high-efficiency water vapor separation is realized through the special structure of the box body 91.

[0148] Inclined surface 92 flow guide: after the hot water enters the box body 91 through the hot water inlet 911, it flows along the inclined surface 92 to the blocking block 20.

[0149] Separation channel design:

[0150] The first hot water channel 201 and the second hot water channel 202 are located at different heights, so that hot water is preferentially discharged from the low-position outlet.

[0151] The steam discharge channel 203 has an inlet higher than the inlets of the first hot water channel 201 and the second hot water channel 202, and high-temperature water vapor naturally escapes along the steam discharge channel 203 to avoid mixing with hot water.

[0152] Blocking block 20 effect: the blocking block 20 separates hot water and water vapor, further prevents water vapor mixing, and improves hot water outlet purity.

[0153] Rib enhances separation: the ribs provided on the inner wall of the hot water channel 313 make the water flow uniformly distributed, slow down the water flow speed, and effectively separate water vapor.

[0154] The steam discharge outlet 101 is connected to the outside, continuously discharges water vapor, and ensures stable and pure water flow.

[0155] Through the above operation and design, the water dispenser can realize tea brewing, disinfection and other multifunctional applications, effectively prevent water vapor mixing, and improve user experience and equipment efficiency.

[0156] In other embodiments, the heating pipe body 311 includes a hollow conduit 314 for water passage, an insulation layer 315, and an electromagnetic coil, the hollow conduit 314 is provided with the insulation layer 315 on the periphery;

[0157] The electromagnetic coil is wound on the insulation layer 315, the clamping cavity 301 clamps the electromagnetic coil, and the electromagnetic coil and the power supply terminal 50 are electrically connected;

[0158] The electromagnetic coil generates a changing magnetic field that penetrates the hollow conduit 314 and induces eddy currents, and the eddy currents in the hollow conduit 314 generate heat due to the electrical resistance of the metal, thereby heating the water passing through the hollow conduit 314.

[0159] In other embodiments, the heating tube body 311 comprises a hollow conduit 314 for water to pass through, an insulation layer 315 arranged peripherally on the hollow conduit 314, and an electrothermal film;

[0160] The electrothermal film is wound on the insulation layer 315, the clamping cavity 301 clamps the electrothermal film, and the electrothermal film is electrically connected with the power supply terminal 50;

[0161] The electrothermal film generates heat when powered, the heat is transferred to the hollow conduit 314 through the insulation layer 315, and the hollow conduit 314 generates heat to heat the water passing through the hollow conduit 314.

Claims

1. A water vapor separator, comprising a box body, characterized in that: A hot water inlet is provided on one side of the box body, and a water outlet is provided on the other side of the box body. The water outlet has a steam outlet and a hot water outlet. The hot water outlet includes a first hot water outlet and a second hot water outlet. A blocking block is provided above the water outlet. The bottom wall of the inner cavity of the box body is inclined from the hot water inlet toward the blocking block to form an inclined surface. The blocking block has a first hot water channel connected to the first hot water outlet at the corresponding position of the first hot water outlet; The blocking block has a second hot water channel connected to the second hot water outlet at the corresponding position of the second hot water outlet. The blocking block has an exhaust channel connected to the exhaust outlet at the corresponding exhaust outlet position; The height of the inlet of the exhaust channel is higher than the height of the inlet of the second hot water channel, and the height of the inlet of the second hot water channel is higher than the height of the inlet of the first hot water channel.

2. The water vapor separator according to claim 1, characterized in that: It also includes a lid, the box body is an open-top box body, the box body has a built-in connecting post, the lid is fastened to the open top of the box body, and bolts pass through the lid and lock it to the connecting post so that the lid and the box body are connected together.

3. The water vapor separator according to claim 2, characterized in that: The connecting column is set on the inclined surface.

4. The water vapor separator according to claim 1, characterized in that: The inner wall of the first hot water channel is provided with first baffles at intervals, and the inner wall of the second hot water channel is provided with second baffles at intervals.

5. A faucet employing a water vapor separator as described in any one of claims 1-4, characterized in that: It includes a water heating device for heating water, a main control board, and a faucet, wherein the water heating device is installed inside the faucet; The water vapor separator is placed inside the faucet, the water outlet protrudes outside the faucet, the hot water inlet is connected to the outlet of the water heating device, and the inlet of the water heating device is connected to an external water source. The water heating device is electrically connected to the main control board, which controls the start and stop of the water heating device.

6. A multi-functional water dispenser employing the faucet as described in claim 5, characterized in that: The device includes a base, a cooking vessel heating device for heating cooking vessels, and a control panel. The top of the base is provided with a water receiving area and a cooking vessel heating area. The faucet is rotatably mounted on the top of the base, and the faucet rotates to allow the water outlet to enter the water receiving area or the cooking vessel heating area. The cooking vessel heating device is installed inside the base and located below the cooking vessel heating area; The water heating device includes a first water heating device and a second water heating device. The first water heating device is installed inside the base, and the second water heating device is installed inside the faucet. The first water heating device and the second water heating device are connected together. The inlet of the first water heating device extends out of the base and is connected to an external water source. The outlet of the second water heating device is connected to the hot water inlet. The first water heating device, the second water heating device, the cooking vessel heating device, and the control panel are electrically connected to the main control board. The control panel controls the start and stop of the first water heating device, the second water heating device, and the cooking vessel heating device through the main control board.

7. The multifunctional water dispenser according to claim 6, characterized in that: The cooking vessel heating device is an electric ceramic stove, and the cooking vessel heating area of ​​the base is provided with a microcrystalline panel, with the heating part of the electric ceramic stove closely attached to the microcrystalline panel.