Water-vapor separation water outlet assembly
By designing a water vapor separation and water outlet component with concentrically arranged exhaust and water outlet channels, the problem of unstable water output and reduced flow caused by air bubbles in the water was solved, achieving stable water output and increased flow, thus improving the cleaning effect and component lifespan.
Patent Information
- Application Number
- CN202520151530.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-22
- Publication Date
- 2026-01-20
- Estimated Expiration
- 2035-01-22
AI Technical Summary
The presence of air bubbles in the water leads to unstable water flow, splashing, and reduced effective flow, thus affecting the cleaning effect.
Design a water vapor separation water outlet component, including a water vapor separation box, an inlet channel, an outlet channel, and an exhaust channel. The gas and water are separated by the concentrically arranged exhaust channel and outlet channel. Gravity and a flow guiding structure are used to optimize water flow and reduce bubble interference.
It improves the stability and flow rate of water output, reduces splashing, enhances impact force, optimizes water output performance, and extends component life.
Smart Images

Figure CN223813375U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to water treatment device's technical field especially relates to a water vapor separation's water outlet subassembly. BACKGROUND
[0002] In daily water, due to the pressure variation in pipeline or tap, water flow impact and other factors can cause bubbles in water, the existence of bubble can make the continuity of water flow is affected to a certain extent, lead to water flow appears unstable, splashing etc., in daily use such as washing hands, washing vegetables, drinking water, when water, water can splash everywhere, wet the surrounding environment, bring inconvenience to the user, and bubbles in water can occupy a certain space, make the effective flow of water reduce, thereby reduce the impact of water flow, in the case where the strong water flow is needed to flush, such as flushing the tableware of heavy oil stain, clean closestool etc., can lead to the decline of cleaning effect.
[0003] The utility model discloses a water vapor separation's water outlet subassembly, which can effectively separate the water vapor in the water, prevent the bubbles from being generated in the water, and ensure the continuity of the water flow. UTILITY MODEL CONTENT
[0004] The utility model discloses a water vapor separation's water outlet subassembly, which can effectively separate the water vapor in the water, prevent the bubbles from being generated in the water, and ensure the continuity of the water flow.
[0005] The utility model discloses a water vapor separation's water outlet subassembly, which can effectively separate the water vapor in the water, prevent the bubbles from being generated in the water, and ensure the continuity of the water flow.
[0006] A water vapor separation's water outlet subassembly, including water vapor separation box, the water inlet channel and the discharge structure arranged at the both sides of water vapor separation box, the discharge structure includes the water outlet channel and the exhaust passage that are separated, water vapor separation chamber is located in water vapor separation box, the water inlet channel, water outlet channel and exhaust passage are connected with water vapor separation chamber respectively, the exhaust passage and water outlet channel concentric arrangement.
[0007] A water vapor separation's water outlet subassembly, including water vapor separation box, the water inlet channel and the discharge structure arranged at the both sides of water vapor separation box, the discharge structure includes the water outlet channel and the exhaust passage that are separated, water vapor separation chamber is located in water vapor separation box, the water inlet channel, water outlet channel and exhaust passage are connected with water vapor separation chamber respectively, the exhaust passage and water outlet channel concentric arrangement.
[0008] The water vapor separation water outlet assembly as described above, the separation support includes oppositely arranged inner side wall and outer side wall, the inner side wall both ends and the outer side wall both ends are correspondingly connected, the inner side wall and the outer side wall are surrounded to form the exhaust passage, the top of the outer side wall extends upward to be connected with the water vapor separation box, the exhaust port is arranged on one side of the outer side wall and located on the upper part of the inner side wall;The inner side wall is surrounded to form an inner side cavity in communication with the water vapor separation cavity, the water outlet is arranged on the inner side of the inner side wall, the inner side cavity is communicated with the water outlet channel through the water outlet, and the exhaust passage surrounds the outer circumferential side of the water outlet channel.
[0009] The water vapor separation water outlet assembly as described above, the separation support further includes first and second flow guide walls arranged between the inner side wall and the outer side wall respectively, the first and second flow guide walls have a first preset included angle therebetween, and water is guided to the water outlet through the first and second flow guide walls.
[0010] The water vapor separation water outlet assembly as described above, the water vapor separation box is provided with a water blocking boss and a water blocking column extending into the water vapor separation cavity, the water blocking boss can extend into the exhaust port, the water blocking column extends into the inner side cavity, and the water blocking boss and the water blocking column form a first gap with the separation support, and the first gap is in communication with the exhaust port and the inner side cavity.
[0011] The water vapor separation water outlet assembly as described above, the outer side wall and the inner side wall are further provided with reinforcing ribs.
[0012] The water vapor separation water outlet assembly as described above, the water vapor separation box includes a top cover and a bottom shell arranged in an up-down manner, the top cover and the bottom shell are sealingly connected, the water vapor separation cavity is arranged in the bottom shell, and the top cover and / or the bottom shell is provided with a baffle extending into the water vapor separation cavity, and one side of the baffle is provided with a second gap in communication with the water vapor separation cavity.
[0013] The water vapor separation water outlet assembly as described above, the water vapor separation cavity is further provided with a drainage plate between the baffle and the discharge structure, the drainage plate is provided with at least two, a second preset included angle is arranged between the two drainage plates, and a third gap in communication with the water vapor separation cavity is further arranged on one side of the two drainage plates.
[0014] The water vapor separation water outlet assembly as described above, the water vapor separation box is provided with an inner sleeve and an outer sleeve, the outer sleeve is arranged on the outer circumferential side of the inner sleeve, the water outlet channel extends to the inner side of the inner sleeve, and the exhaust passage extends between the inner sleeve and the outer sleeve.
[0015] In the water vapor separation water outlet assembly described above, the outer sleeve is detachably and sealed to the water vapor separation box.
[0016] Compared with the prior art, the beneficial effects of this utility model are:
[0017] 1. The water and air bubbles are separated by the water-vapor separation chamber, and the water outlet channel and the exhaust channel are separated. This helps to reduce air bubbles in the water, avoid splashing, instability and discontinuity in the water flow, stabilize the water flow, increase the water flow rate, optimize the water output effect and make it easier for people to use.
[0018] 2. The concentric arrangement of the exhaust channel and the water outlet channel allows for smoother flow of gas and water within these channels, reducing eddies and turbulence and improving water vapor separation. Furthermore, the concentric arrangement results in a more compact structure, reducing the size and space occupied by the water outlet component while maintaining good water vapor separation. Additionally, the concentric arrangement of the exhaust and water outlet channels ensures a more uniform pressure distribution within the water outlet component, which helps extend its service life.
[0019] The present invention will be further described below with reference to the accompanying drawings and specific embodiments. Attached Figure Description
[0020] Figure 1 This is a perspective view of the water outlet component of this utility model;
[0021] Figure 2 Disassembly of the water outlet component of this utility model Figure 1 ;
[0022] Figure 3 Disassembly of the water outlet component of this utility model Figure 2
[0023] Figure 4 for Figure 1 Section A-A in Figure 1 ;
[0024] Figure 5 for Figure 1 Section A-A in Figure 2 (Hidden top cover). Detailed Implementation
[0025] The embodiments of this utility model will now be described in detail with reference to the accompanying drawings. The described embodiments are merely some, not all, of the embodiments of this utility model. All other embodiments obtained by those skilled in the art based on the embodiments of this utility model without inventive effort are within the scope of protection of this utility model.
[0026] It should be noted that all the directionality indications (such as up, down, left, right, front, back, etc.) in the embodiments of the present application are only used to explain the relative positional relationship, movement condition, etc. between the components in a certain specific posture (as shown in the drawings), and if the specific posture changes, the directionality indications will also change accordingly.
[0027] In addition, the description of "first", "second" and the like in the present application is only for the purpose of description, and cannot be understood as indicating or implying the relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first", "second" can explicitly or implicitly include at least one of the features. In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the realization of the ordinary skilled in the art, and when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, nor within the protection scope required by the present application.
[0028] Embodiment 1:
[0029] As Figure 1 The utility model provides a water vapor separation's water outlet assembly, including water vapor separation box 1, be located water vapor separation box 1 both sides and go into water channel 2 and discharge structure 3, discharge structure 3 includes the water outlet channel 31 and exhaust channel 32 of phase separation, water outlet channel 31 with exhaust channel 32 phase separation, be equipped with water vapor separation cavity 10 in water vapor separation box 1, go into water channel 2, water outlet channel 31 with exhaust channel 32 are connected with water vapor separation cavity 10 respectively, exhaust channel 32 with water outlet channel 31 concentric arrangement, go into water channel 2 can input water in water vapor separation box 1, this input water includes but is limited to cold water, hot water, warm water etc., make water and bubble phase separation through water vapor separation cavity 10, and water outlet channel 31 with exhaust channel 32 phase separation, it is favorable to reduce the bubble in water, avoid the splashing, unstable, not continuous situation of water flow, make water flow stable, increase water flow, optimize water outlet effect, it is convenient for people to use, secondly, exhaust channel 32 with water outlet channel 31 concentric arrangement, can make gas and water flow more smoothly in exhaust channel 32 with water outlet channel 31, reduce the generation of vortex and turbulence, improve the effect of water vapor separation, and, the exhaust channel 32 and water outlet channel 31 of concentric arrangement are more compact in layout structure, can reduce the volume and occupied space of water outlet assembly under the premise of maintaining good water vapor separation effect, in addition, exhaust channel 32 and water outlet channel 31 concentric arrangement make the pressure distribution in the water outlet assembly more uniform, it is favorable to improve the service life of water outlet assembly.
[0030] Optionally, the water inlet channel 2 can be configured as a water inlet, or as a water inlet pipe connected to the water-vapor separation box 1.
[0031] As shown in Figure 2 and Figure 4 , the water-vapor separation cavity 10 is provided with a separation support 4, the exhaust channel 32 is provided with an exhaust port 321 in communication with the water-vapor separation cavity 10, and the water outlet channel 31 is provided with a water outlet port 311 in communication with the water-vapor separation cavity 10. The exhaust port 321 and the water outlet port 311 are arranged above and below along the height direction of the separation support 4, and the exhaust port 321 and the water outlet port 311 are separated by the separation support 4, and the exhaust channel 32 and the water outlet channel 31 are separated. Since the density of gas is less than that of water, under the action of gravity, gas will naturally rise and water will flow downward. Therefore, the exhaust port 321 is arranged higher than the water outlet port 311, which conforms to the natural flow trend of gas and water, so that gas is more easily gathered at the top of the water-vapor separation cavity 10. These gases are easily discharged into the exhaust channel 32 through the exhaust port 321, and water flows into the water outlet channel 31 through the water outlet port 311 and flows out. This is advantageous for reducing the amount of gas in the water flow, thereby improving the efficiency and effect of water-vapor separation. In other optional embodiments, the water outlet port 311 is vertically arranged through the bottom of the water-vapor separation box 1 to form the water outlet channel 31.
[0032] Further, as shown in Figure 2 and Figure 4As shown, the partition support 4 comprises oppositely arranged inner side wall 41 and outer side wall 42, which are longitudinally arranged in the water-vapor separation cavity 10 and connected with the top wall and bottom wall of the water-vapor separation cavity 10, i.e. the top and bottom ends of the partition support 4 are connected with the water-vapor separation box 1, the two ends of the inner side wall 41 and the two ends of the outer side wall 42 are correspondingly connected, the inner side wall 41 and the outer side wall 42 form the exhaust passage 32 therebetween, the top of the outer side wall 42 extends upward to be connected with the water-vapor separation box 1 to realize the connection of the top of the partition support 4 with the water-vapor separation box 1, and the exhaust port 321 is arranged on one side of the outer side wall 42 and located at the upper part of the inner side wall 41; the side of the inner side wall 41 away from the outer side wall 42 forms an inner side cavity 411 in communication with the water-vapor separation cavity 10, and the water outlet 311 is arranged on the inner side of the inner side wall 41, the inner side cavity 411 is in communication with the water outlet passage 31 through the water outlet 311, the exhaust passage 32 surrounds the outer circumferential side of the inner side cavity 411 to realize the concentric arrangement of the exhaust passage 32 and the water outlet passage 31, and the exhaust port 321 and the water outlet 311 are arranged on the upper and lower sides of the inner side cavity 411 respectively; water can flow to the water outlet 311 along the bottom wall of the water-vapor separation cavity 10 and flow out to the outside through the water outlet passage 31 for the user to use, and at the same time, the gas in the water rises to the top of the water-vapor separation cavity 10 and enters the exhaust passage 32 through the exhaust port 321 for discharge.
[0033] In some optional embodiments, as shown in FIG. 2, the water-vapor separation box 1 comprises a partition support 4 arranged in the water-vapor separation cavity 10, and the partition support 4 is arranged in the water-vapor separation cavity 10 to divide the water-vapor separation cavity 10 into a water outlet passage 31 and an exhaust passage 32. Figure 2 As shown, the outer side wall 42 and the inner side wall 41 are arc-shaped walls, the water inlet passage 2 is opposite to the outer side wall 42 along the water flow direction in the water-vapor separation cavity 10, and the openings of the exhaust port 321 and the inner side cavity 411 are directed away from the water inlet passage 2 to avoid the exhaust port 321 and the water outlet 311 being directly opposite to the water flow, so that water can be branched along the outer side wall 42 to slow down the water flow speed and make the water flow smoothly into the water outlet passage 31, thereby avoiding the generation of new bubbles when water is discharged. It should be noted that the opening of the inner side cavity 411 refers to the communication port of the inner side cavity 411 with the water-vapor separation cavity 10.
[0034] In some optional embodiments, as shown in FIG. 2, the water-vapor separation box 1 comprises a partition support 4 arranged in the water-vapor separation cavity 10, and the partition support 4 is arranged in the water-vapor separation cavity 10 to divide the water-vapor separation cavity 10 into a water outlet passage 31 and an exhaust passage 32. Figure 2As shown, the partition support 4 further comprises a first flow guide wall 43 and a second flow guide wall 44 respectively arranged between the inner side wall 41 and the outer side wall 42, the first flow guide wall 43 and the second flow guide wall 44 are respectively connected to the two ends of the inner side wall 41 and the outer side wall 42 corresponding to each other, the first flow guide wall 43 and the second flow guide wall 44 have a first preset included angle between them, the distance between the first flow guide wall 43 and the second flow guide wall 44 gradually decreases along the water flow direction, and the first flow guide wall 43 and the second flow guide wall 44 are preferably arranged in a V shape and the opening between them faces away from the water inlet channel 2. The water is guided to the water outlet 311 by the first flow guide wall 43 and the second flow guide wall 44, which can accelerate the speed of water flow into the water outlet channel 31 to improve the water outlet efficiency. Preferably, the opening between the first flow guide wall 43 and the second flow guide wall 44 faces the same direction as the air outlet 321.
[0035] In other optional embodiments, as shown in Figure 3 and Figure 4 As shown, the water vapor separation box 1 is provided with a water blocking boss 13 and a water blocking column 14 extending into the water vapor separation cavity 10, wherein the water blocking column 14 is arranged at the lower part of the water blocking boss 13, the water blocking boss 13 can extend into the air outlet 321, the water blocking boss 13 is opposite to the outer side wall 42, the water blocking column 14 extends into the inner side cavity 411, and the water blocking column 14 is above the water outlet 311, the water blocking column 14 is opposite to the inner side wall 41, the water blocking boss 13 and the water blocking column 14 form a first gap with the partition support 4, the first gap is in communication with the air outlet 321 and the inner side cavity 411, and gas can flow through the first gap to the air outlet 321 and enter the air outlet channel 32 from the air outlet 321; the flowable space of the air outlet 321 and the inner side cavity 411 is reduced by the water blocking boss 13 and the water blocking column 14 to avoid water easily entering the air outlet channel 32 through the air outlet 321, especially in the case of excessive water flow in the water vapor separation box 1, the water flow speed is slowed down by the water blocking boss 13 and the water blocking column 14, so that the water flow enters the water outlet channel 31 through the water outlet 311 as much as possible, and the water outlet amount of the water outlet assembly is improved.
[0036] In other optional embodiments, as shown in Figure 2As shown in Figure 4, a baffle 15 is also provided inside the water vapor separation chamber 10. The baffle 15 is located near the water inlet channel 2, and a second gap communicating with the water vapor separation chamber 10 is provided on one side of the baffle 15. The water entering the water vapor separation chamber 10 through the water inlet channel 2 can be blocked by the baffle 15 to slow down its flow speed. The baffle 15 can also break up air bubbles in the water and block air bubbles in the water to slow down their flow speed, thereby achieving the separation of water and air bubbles. Optionally, several baffles 15 may be provided, and the baffles 15 may extend downward from the top wall of the water vapor separation chamber 10, and / or the baffles 15 may extend upward from the bottom wall of the water vapor separation chamber 10; each baffle 15 has a second gap communicating with the water vapor separation chamber 10 on its periphery, and each second gap may be provided near the side wall, top wall or bottom wall of the water vapor separation chamber 10, so that bubbles and water flow along the second gap towards the exhaust channel 32 and the water outlet channel 31 at different flow speeds, thereby facilitating water vapor separation.
[0037] In other alternative embodiments, such as Figure 2 As shown, the water vapor separation chamber 10 is further provided with a guide plate 16 located between the baffle 15 and the discharge structure 3. At least two guide plates 16 are provided, with two guide plates 16 arranged opposite each other between the baffle 15 and the outer wall 42. A second preset angle is provided between the two guide plates 16. Preferably, the two guide plates 16 are arranged in a V-shape, and the distance between the two guide plates 16 gradually decreases from the water inlet channel 2 towards the outer wall 42. This facilitates concentrating the water flow and guiding it to the outer wall 42, allowing the water flow to reach the outlet 311 along the outer wall 42. One side of each guide plate 16 is also provided with a guide plate corresponding to the outer wall 42. The water vapor separation chamber 10 is connected to a third gap, which includes the gap between the guide plate 16 and the top wall of the water vapor separation chamber 10, to allow gas flow, so that the gas rises and separates from the water phase, preventing the gas from sinking and remixing with the water; the third gap also includes the gap between the guide plate 16 and the outer wall 42, to allow water to flow smoothly; on the other hand, when the water inlet channel 2 stops injecting water into the water vapor separation chamber 10, the two guide plates 16 and the arc-shaped outer wall 42 slow down the water remaining in the water vapor separation chamber 10, so as to limit the residual water from flowing out through the water outlet channel 31, and stop the water outlet assembly from discharging water.
[0038] In some alternative embodiments, the outer sidewall 42 and the inner sidewall 41 extend circumferentially around the water outlet channel 31. To improve the connection stability between the outer sidewall 42 and the inner sidewall 41, such as... Figure 2 As shown, a reinforcing rib 45 is also provided between the outer side wall 42 and the inner side wall 41. The reinforcing rib 45 is arranged radially along the outer side wall 42 to ensure that the interior of the exhaust channel 32 is unobstructed.
[0039] In the embodiment, the water-vapor separation box 1 can be integrally formed as a whole, so as to improve the structural strength and air tightness of the water-vapor separation box 1, and avoid air leakage and water leakage.
[0040] Embodiment 2:
[0041] Embodiment 2 is different from embodiment 1 in that, as shown in Figure 2 the water-vapor separation box 1 comprises a top cover 11 and a bottom shell 12 arranged in a top-bottom manner, the water-vapor separation cavity 10 is arranged in the bottom shell 12, the top cover 11 is sealingly covered on the upper portion of the bottom shell 12 to close the water-vapor separation cavity 10, the top cover 11 and the bottom shell 12 are sealingly connected to avoid water leakage and air leakage, the separation support 4 extends from the bottom shell 12 towards the top cover 11, and the outer side wall 42 extends to be capable of abutting against the top cover 11; the top cover 11 and / or the bottom shell 12 is / are provided with the baffle 15; the drainage plate 16 extends from the bottom shell 12 towards the top cover 11; the water-vapor separation box 1 is arranged in a split structure, so as to facilitate cleaning of scale and sundries in the water-vapor separation cavity 10, and thus guarantee normal water output of the water-vapor separation box 1.
[0042] Embodiment 3:
[0043] Embodiment 3 is based on embodiment 1 or embodiment 2, and has the following implementation, as shown in Figure 3 the water-vapor separation box 1 is provided with an inner sleeve 5 and an outer sleeve 6 at the bottom, the outer sleeve 6 is arranged at the outer circumferential side of the inner sleeve 5, and the outer sleeve 6 and the inner sleeve 5 are concentrically arranged, the water outlet channel 31 extends to the inner side of the inner sleeve 5, and the air outlet channel 32 extends between the inner sleeve 5 and the outer sleeve 6; the water outlet assembly can be connected with external pipelines through the outer sleeve 6 and the inner sleeve 5, so as to facilitate people to take water; in addition, the outer sleeve 6 and the inner sleeve 5 are preferably arranged at the bottom of the water-vapor separation box 1, so as to promote water flow out of the water-vapor separation cavity 10 by gravity, improve water output efficiency, and facilitate users to connect pipelines.
[0044] In some alternative embodiments, the inner sleeve 5 and the outer sleeve 6 are integrally formed with the water vapor separation box 1. The water outlet 311 is located at the bottom of the water vapor separation box 1 and extends to the inner side of the inner sleeve 5 to form the water outlet channel 31 communicating with the water vapor separation chamber 10. The exhaust channel 32 extends from between the outer side wall 42 and the inner side wall 41 to between the outer sleeve 6 and the inner sleeve 5 to form the exhaust channel 32 communicating with the water vapor separation chamber 10. The water outlet channel 31 and the exhaust channel 32 form a straight cylindrical output structure, which helps to ensure smooth flow of water and gas and promotes the water outlet efficiency and exhaust efficiency of the water outlet component.
[0045] Example 4:
[0046] The difference between Example 4 and Example 3 is that, as Figure 3 As shown, the outer sleeve 6 is detachably and sealed to the water vapor separation box 1; further optionally, the bottom of the water vapor separation box 1 is provided with a retaining ring 7 located on the outer periphery of the inner sleeve 5, which is used to snap the outer sleeve 6 into the retaining ring 7 so that the outer sleeve 6 is detachably connected to the water vapor separation box 1, and the outer sleeve 6 is sleeved on the outer periphery of the inner sleeve 5; this is to improve the installation flexibility of the water outlet component; furthermore, the retaining ring 7 is provided with a clamping groove 71, and the outer sleeve 6 is provided with a retaining block 61 that matches the clamping groove 71, so as to improve the connection stability of the outer sleeve 6.
[0047] The above examples are merely illustrative of the technical content of this utility model to facilitate reader understanding, but do not imply that the implementation of this utility model is limited to these embodiments. Any technical extensions or re-creations made based on this utility model are protected by this utility model. The scope of protection of this utility model is defined by the claims.
Claims
1. A water vapor separating water outlet assembly, characterized in that, The water vapor separation box (1) is provided with a water vapor separation cavity (10), and the water vapor separation cavity (10) is in communication with the water inlet channel (2), the water outlet channel (31) and the exhaust channel (32).
2. A water vapor separating outlet assembly according to claim 1, wherein, The water vapor separation cavity (10) is provided with a separation support (4), the exhaust channel (32) is provided with an exhaust port (321) in communication with the water vapor separation cavity (10), and the water outlet channel (31) is provided with a water outlet port (311) in communication with the water vapor separation cavity (10).
3. A water vapor separating outlet assembly according to claim 2, wherein, The separation support (4) comprises oppositely arranged inner side walls (41) and outer side walls (42), the two ends of the inner side walls (41) and the two ends of the outer side walls (42) are correspondingly connected, respectively, and the exhaust channel (32) is formed between the inner side walls (41) and the outer side walls (42), the top of the outer side wall (42) extends upward to be connected with the water vapor separation box (1), and the exhaust port (321) is arranged on one side of the outer side wall (42) and located at the upper part of the inner side wall (41). The inner side wall (41) is provided with an inner side cavity (411) in communication with the water vapor separation cavity (10) on the side away from the outer side wall (42), the water outlet port (311) is arranged on the inner side of the inner side wall (41), the inner side cavity (411) is in communication with the water outlet channel (31) through the water outlet port (311), and the exhaust channel (32) surrounds the outer circumferential side of the water outlet channel (31).
4. A water vapor separating outlet assembly according to claim 3, wherein, The separation support (4) further comprises a first flow guide wall (43) and a second flow guide wall (44) arranged between the inner side wall (41) and the outer side wall (42), respectively, and the first flow guide wall (43) and the second flow guide wall (44) have a first preset included angle, and water is guided to the water outlet port (311) through the first flow guide wall (43) and the second flow guide wall (44).
5. A water vapor separating outlet assembly as claimed in claim 3, wherein, The water vapor separation box (1) is provided with a water vapor separation cavity (10), and the water vapor separation cavity (10) is in communication with the water inlet channel (2), the water outlet channel (31) and the exhaust channel (32).
6. A water vapor separating outlet assembly as claimed in claim 3, wherein, The outer side wall (42) and the inner side wall (41) are further provided with a reinforcing rib (45).
7. A water vapor separating outlet assembly according to any one of claims 1 to 6, characterized in that The water-vapor separation box (1) comprises a top cover (11) and a bottom shell (12) arranged in an up-down mode, the top cover (11) and the bottom shell (12) are sealingly connected, the water-vapor separation cavity (10) is arranged in the bottom shell (12), the top cover (11) and / or the bottom shell (12) is provided with a baffle (15) extending towards the water-vapor separation cavity (10), and one side of the baffle (15) is provided with a second gap in communication with the water-vapor separation cavity (10).
8. A water vapor separating outlet assembly according to claim 7, wherein, The water-vapor separation cavity (10) is further provided with a drainage plate (16) between the baffle (15) and the exhaust structure (3), the drainage plate (16) is provided with at least two, a second preset included angle is arranged between the two drainage plates (16), and one side of the two drainage plates (16) is further provided with a third gap in communication with the water-vapor separation cavity (10).
9. A water vapor separating outlet assembly according to any one of claims 1-6, characterized in that The water-vapor separation box (1) is provided with an inner sleeve (5) and an outer sleeve (6) at the bottom, the outer sleeve (6) is arranged on the outer circumferential side of the inner sleeve (5), the water outlet channel (31) extends to the inner side of the inner sleeve (5), and the air exhaust channel (32) extends between the inner sleeve (5) and the outer sleeve (6).
10. A water vapor separating outlet assembly according to claim 9, wherein, The outer sleeve (6) and the water-vapor separation box (1) are sealingly and detachably connected.