Temperature measuring water outlet box

CN224730814UActive Publication Date: 2026-09-08HANGZHOU JIUYANG WATER PURIFICATION SYST
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202521838564.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-27
Publication Date
2026-09-08
Estimated Expiration
2035-08-27

AI Technical Summary

Technical Problem

[0004]本申请的目的在于提供一种测温出水盒,解决了现有出水盒存在的水温检测缺失、水流混合不均匀等问题,以提高设备出水的温度准确性、稳定性以及整体的实用性和使用寿命

Benefits of technology

[0007] In this technical solution, by adding a water temperature sensor to the water outlet box, real-time monitoring of the water temperature inside the box is achieved, solving the problem that traditional water outlet boxes cannot detect water temperature. Simultaneously, the mixing channel formed by the mixing guide effectively guides hot and room temperature water to mix thoroughly before flowing to the outlet. The temperature probe extends directly into the mixing channel, accurately detecting the actual water temperature after mixing. In practical applications, this water temperature sensor can also be used to provide temperature data feedback to the control system, ensuring users can accurately obtain the outlet water temperature. It also allows the control system to adjust the water outlet mode or speed in a timely manner, resulting in water with a more suitable temperature, thus improving the equipment's ability to control water temperature and enhancing user convenience and safety.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224730814U_ABST
    Figure CN224730814U_ABST
Patent Text Reader

Abstract

The application discloses a temperature measuring water outlet box, which comprises a box body and a box cover. The box body and the box cover are matched to form a water outlet cavity. The box body is provided with a hot water inlet, a normal temperature water inlet and at least one water outlet which are communicated with the water outlet cavity respectively. The temperature measuring water outlet box further comprises a water temperature detecting element. A mixed water guiding part is arranged in the water outlet cavity. The mixed water guiding part is enclosed to form a mixed water channel. The mixed water channel is used for guiding the water flow entering from the hot water inlet and the normal temperature water inlet to flow towards the water outlet after being mixed. The temperature measuring probe of the water temperature detecting element extends into the mixed water channel. The temperature measuring water outlet box can detect the water temperature after mixing in real time, ensure that the water outlet temperature meets the expectation, facilitate users to obtain water with appropriate temperature, improve the controllability and accuracy of the water outlet temperature of the equipment, and improve the user experience.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This application relates to the field of water outlet box technology, specifically to a temperature measuring water outlet box. Background Technology

[0002] Water outlet boxes are mainly used in devices that require precise control of water temperature and stable water flow, such as integrated water purifiers and water heaters, instant water purifiers, hot water dispensers, and instant water faucets. Traditionally, water outlet boxes in these devices only have simple inlet and outlet functions and lack water temperature detection. Although some devices (such as the outlet end of the heating element) have internal structures for water temperature detection, the hot water needs to travel a relatively long pipeline after exiting the heating element to reach the water outlet box. Heat loss during heat exchange with the pipeline causes the hot water temperature to drop, making it impossible for users to accurately know the temperature of the water about to flow out.

[0003] Furthermore, in practical use, the device often needs to mix hot and room temperature water to output water at a suitable temperature for the user. For example, when brewing coffee, tea, or meeting the personalized water temperature needs of different users, precise control of the mixed water temperature is crucial. Traditional water outlet boxes often have a simple structural design, lacking effective guidance and optimization for mixing hot and room temperature water. This results in the two water streams entering the outlet chamber not mixing fully and evenly, often leading to localized excessively high or low water temperatures. This not only affects the user experience but also fails to meet the needs of some applications with strict water temperature requirements. Additionally, due to the lack of water temperature detection, the device cannot know the specific temperature of the mixed water that is about to flow out in real time. On one hand, this forces users to rely on experience or the device's preset rough setting to judge the water temperature, but the actual water temperature often deviates significantly from the expected temperature. For example, when a user wants to use hot water at a suitable temperature to brew milk powder or tea, the brewing quality may be affected by water that is too high or too low. Utility Model Content

[0004] The purpose of this application is to provide a temperature-measuring water outlet box that solves the problems of missing water temperature detection and uneven water mixing in existing water outlet boxes, thereby improving the accuracy and stability of the water temperature output from the device, as well as its overall practicality and service life.

[0005] The technical solution adopted in this application is as follows:

[0006] A temperature-measuring water outlet box includes a box body and a box cover, which cooperate to form a water outlet cavity. The box body is provided with a hot water inlet, a room temperature water inlet, and at least one water outlet respectively connected to the water outlet cavity. The temperature-measuring water outlet box also includes a water temperature detection element. A water mixing guide is provided in the water outlet cavity, which surrounds to form a water mixing channel. The water mixing channel is used to guide the water flowing from the hot water inlet and the room temperature water inlet to mix and flow toward the water outlet. The temperature probe of the water temperature detection element extends into the water mixing channel.

[0007] In this technical solution, by adding a water temperature sensor to the water outlet box, real-time monitoring of the water temperature inside the box is achieved, solving the problem that traditional water outlet boxes cannot detect water temperature. Simultaneously, the mixing channel formed by the mixing guide effectively guides hot and room temperature water to mix thoroughly before flowing to the outlet. The temperature probe extends directly into the mixing channel, accurately detecting the actual water temperature after mixing. In practical applications, this water temperature sensor can also be used to provide temperature data feedback to the control system, ensuring users can accurately obtain the outlet water temperature. It also allows the control system to adjust the water outlet mode or speed in a timely manner, resulting in water with a more suitable temperature, thus improving the equipment's ability to control water temperature and enhancing user convenience and safety.

[0008] The mixing channel includes a mixing zone, the entrance of which is located between the hot water inlet and the ambient temperature water inlet, and the temperature probe extends into the mixing zone.

[0009] In this technical solution, the inlet of the mixing zone is located between the hot water inlet and the ambient temperature water inlet. This balances the distances from the hot water inlet and the ambient temperature water inlet to the mixing zone as much as possible, reducing the problem of decreased mixing uniformity caused by one inlet being too far from the mixing zone while the other is too close. The temperature probe's detection position is limited to the mixing zone. Since the mixing zone is the core area where hot and ambient temperature water mix, detection here provides a more accurate reflection of the temperature of the water about to flow out, avoiding temperature deviations caused by improper detection location. This further improves the accuracy of water temperature detection, providing a reliable basis for precise water temperature control by the equipment and ensuring the stability of the outlet water temperature.

[0010] The mixing water guide includes a hot water guide plate and a room temperature water guide plate formed in the housing. The hot water guide plate includes a first water-blocking section and a first flow-guiding section connected at an angle. The first water-blocking section is directly opposite the hot water inlet. The room temperature water guide plate includes a second water-blocking section and a second flow-guiding section connected at an angle. The second water-blocking section is directly opposite the room temperature water inlet. The first flow-guiding section and the second flow-guiding section extend together toward the water outlet and enclose the mixing water zone.

[0011] In this technical solution, the structural design of the hot water guide plate and the room temperature water guide plate allows the first and second water-blocking sections to buffer and block the incoming hot and room temperature water, respectively. The first and second flow guiding sections guide the two water streams towards the outlet and enclose them to form a mixing zone. This structure forces the water streams to fully converge and mix within the mixing zone, enhancing the mixing effect, reducing local water temperature unevenness, and providing a stable detection environment for the temperature probe, thus indirectly improving the temperature measurement accuracy.

[0012] The inner side of the box cover is provided with a water-blocking protrusion. The water-blocking protrusion extends into the upper part of the mixing area, so that the hot water guide plate, the room temperature water guide plate and the water-blocking protrusion surround and form a flow-limiting hole located in the lower part of the mixing area. The temperature measuring probe extends into the flow-limiting hole.

[0013] In this technical solution, the water-blocking protrusion, together with the hot water guide plate and the room temperature water guide plate, forms a flow-limiting hole, which can limit the water flow in the mixing zone, making the water flow speed more stable and avoiding temperature fluctuations and detection interference caused by rapid water flow. This allows the temperature probe to detect the water temperature more stably. At the same time, the flow-limiting hole can also prolong the residence time of the water flow in the mixing zone, promote more uniform mixing of hot water and room temperature water, and further ensure the consistency of the outlet water temperature.

[0014] The hot water inlet and the room temperature water inlet are symmetrically distributed along the center plane of the water outlet cavity; the hot water guide plate and the room temperature water guide plate are symmetrically distributed along the center plane of the water outlet cavity.

[0015] In this technical solution, the symmetrical distribution design of the hot water inlet and the room temperature water inlet, as well as the hot water guide plate and the room temperature water guide plate, ensures that the two water streams can obtain balanced guidance and mixing conditions after entering the water outlet chamber. This avoids water flow deviation or mixing ratio imbalance caused by the asymmetry of the two sides of the structure, ensuring that the hot water and room temperature water can be fully mixed in the expected ratio, reducing water temperature fluctuations, and improving the stability and reliability of the water outlet box.

[0016] The side wall of the box is provided with a mounting hole, the water temperature detection element is fixed in the mounting hole, the temperature probe extends into the mixing channel through the mounting hole, and a sealing body is provided between the water temperature detection element and the inner wall of the mounting hole.

[0017] In this technical solution, the mounting hole provides a stable mounting position for the water temperature detection component, ensuring that it will not shift due to water flow impact or vibration during equipment operation, thus guaranteeing the accuracy of the temperature probe's detection position. The sealing body effectively prevents water from leaking from the outlet chamber through the mounting hole, avoiding damage to other components of the equipment caused by leakage, and also ensuring the safety and service life of the equipment.

[0018] The mounting hole is located on the side wall of the first end of the box body, and the hot water inlet and the room temperature water inlet are located on the side wall of the second end of the box body opposite to the first end.

[0019] In this technical solution, the mounting hole and the hot water inlet and the normal temperature water inlet are respectively set at opposite ends of the box body, so that the water temperature detection device is far away from the water flow impact area of ​​the inlet, reducing the interference of water flow fluctuations on the temperature probe during water intake, while providing reasonable space for the wiring of the water temperature detection device, avoiding mutual influence between the wiring and the water flow path, and optimizing the internal structural layout of the water outlet box.

[0020] The water outlet includes a high-level water outlet and a low-level water outlet. The inlet of the high-level water outlet is higher than the inlet of the low-level water outlet, and the outlet of the mixing channel faces the low-level water outlet.

[0021] In this technical solution, the high-level and low-level water outlets allow the water outlet box to meet different usage needs. For example, when discharging hot water at a low flow rate, the hot water is discharged only through the low-level water outlet, while the high-level water outlet forms a steam discharge channel, which helps with water-vapor separation. When discharging water at a high flow rate, the high-level and low-level water outlets discharge water together, reducing the phenomenon of water pressure buildup. Furthermore, the mixing channel outlet faces the low-level water outlet, ensuring that the mixed water flows out preferentially from the low-level water outlet, thus guaranteeing the stability and controllability of the water temperature along the main water outlet path.

[0022] The temperature measuring water outlet box also includes a water outlet connected to the bottom of the box body. The water outlet includes an outer water tube and an inner water outlet tube connected inside the outer water tube. The inner water outlet tube is used for water to be discharged from the low-level water outlet, and the water outlet channel between the outer water tube and the inner water outlet tube is used for water to be discharged from the high-level water outlet.

[0023] In this technical solution, the inner water outlet and the outer water outlet of the spout correspond to the low-position water outlet and the high-position water outlet, respectively, so that the water flow paths of different water outlets are independent of each other, avoiding interference between water flows, ensuring the stability of each water outlet, and also helping to optimize the water outlet pattern through the inner water outlet and the outer water outlet.

[0024] The inlet of the inner water outlet cylinder is covered with a first turbulence-dispersing net with multiple mesh openings, and the outlet of the water outlet channel is covered with a second turbulence-dispersing net with multiple mesh openings.

[0025] In this technical solution, when water flows through, the first and second turbulence nets can change the flow state of the water, so that the water flow produces a reasonable turbulence effect, optimize the water flow, and make the water pattern more beautiful and uniform, avoiding the situation where the water flow is too regular and rigid; at the same time, the turbulence process can also produce a bubble effect, increasing the interest and visual appeal of the water, and can also improve the water purification effect by using the bursting of bubbles. Attached Figure Description

[0026] The accompanying drawings, which are included to provide a further understanding of this application and form part of this application, illustrate exemplary embodiments and are used to explain this application, but do not constitute an undue limitation of this application. In the drawings:

[0027] Figure 1 This is an assembly drawing of the temperature measuring water outlet box provided in an embodiment of this application;

[0028] Figure 2 Cross-sectional view of the temperature measuring water outlet box provided in the embodiments of this application. Figure 1 ;

[0029] Figure 3 This is an assembly drawing of the housing and water temperature detection element provided in the embodiments of this application;

[0030] Figure 4 This is a schematic diagram of the structure of the box provided in the embodiments of this application. Figure 1 ;

[0031] Figure 5 This is a schematic diagram of the structure of the box provided in the embodiments of this application. Figure 2 In this context, the dashed line L represents the center surface of the water outlet cavity;

[0032] Figure 6 This is a schematic diagram of the structure of the box lid provided in an embodiment of this application;

[0033] Figure 7 Cross-sectional view of the temperature measuring water outlet box provided in the embodiments of this application. Figure 2 ;

[0034] Figure 8 This is a cross-sectional view of the water outlet provided in an embodiment of this application.

[0035] List of components and reference numerals:

[0036] 1. Body; 11. Hot water inlet; 12. Room temperature water inlet; 13. Water outlet; 131. High-level water outlet; 132. Low-level water outlet; 14. Hot water guide plate; 141. First water baffle section; 142. First flow guide section; 15. Room temperature water guide plate; 151. Second water baffle section; 152. Second flow guide section; 16. Mixing zone; 17. Mounting hole.

[0037] 2 lids, 21 water-resistant protrusions;

[0038] 3 water temperature detection components, 31 temperature probes;

[0039] 4. Sealing body;

[0040] 5 spout, 51 outer water cylinder, 52 inner water cylinder;

[0041] 6. First turbulence network;

[0042] 7. Second turbulence net. Detailed Implementation

[0043] To more clearly illustrate the overall concept of this application, a detailed explanation is provided below with reference to the accompanying drawings.

[0044] Many specific details are set forth in the following description in order to provide a full understanding of this application. However, this application may also be implemented in other ways different from those described herein. Therefore, the scope of protection of this application is not limited to the specific embodiments disclosed below.

[0045] Furthermore, it should be understood in the description of this application that the terms "upper," "lower," "top," "bottom," "inner," "outer," "axial," "radial," "circumferential," "lateral," and "longitudinal," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.

[0046] In this application, unless otherwise expressly specified and limited, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection, an electrical connection, or a communication connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.

[0047] In this application, unless otherwise expressly specified and limited, the "above" or "below" of the second feature can mean that the first and second features are in direct contact, or that the first and second features are in indirect contact through an intermediate medium. In the description of this specification, references to terms such as "an embodiment," "some embodiments," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of this application. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described can be combined in any suitable manner in one or more embodiments or examples.

[0048] In the embodiments of this application, reference is made to Figures 1 to 8As shown, this application provides a temperature-measuring water outlet box to address the problems of existing outlet boxes failing to detect water temperature and exhibiting uneven water mixing. For ease of explanation and understanding, the following descriptions are based on the illustrated product structure. Of course, those skilled in the art will understand that the above structure is merely a specific example and illustrative illustration, and does not constitute a specific limitation on the technical solution provided in this application.

[0049] like Figure 1 , Figure 2 and Figure 3 As shown, the temperature-measuring water outlet box includes a box body 1 and a box cover 2. The box body 1 and the box cover 2 cooperate to form a water outlet cavity. The box body 1 and the box cover 2 are preferably connected by welding (such as ultrasonic welding) to improve the sealing of the water outlet cavity. The box body 1 is provided with a hot water inlet 11, a room temperature water inlet 12 and at least one water outlet 13 respectively connected to the water outlet cavity. The temperature-measuring water outlet box also includes a water temperature detection element 3. A mixing guide is provided in the water outlet cavity, which surrounds to form a mixing channel. The mixing channel is used to guide the water flowing from the hot water inlet 11 and the room temperature water inlet 12 to mix and flow towards the water outlet 13. The temperature probe 31 of the water temperature detection element 3 extends into the mixing channel. The water temperature detection element 3 can be a temperature sensor or other suitable structure.

[0050] The temperature-sensing water dispenser box of this application includes a water temperature detection element 3, which enables water temperature detection. The temperature probe 31 of the water temperature detection element 3 extends into the mixing channel. In practical use, this design overcomes the limitation of traditional water dispenser boxes that cannot detect water temperature. When applied to devices such as integrated water purifiers, instant water purifiers, hot water dispensers, and instant water faucets, the temperature-sensing water dispenser 3 allows for real-time detection and feedback of the temperature, enabling the device to obtain real-time temperature information of the water about to flow out. For example, when users fill water into devices such as integrated water purifiers, they no longer need to rely solely on experience or preset settings to roughly judge the water temperature as before. Instead, they can know for sure whether the water temperature meets their needs, improving the controllability of the water temperature and avoiding situations where excessively high or low water temperatures affect the usage effect.

[0051] Furthermore, a mixing guide is installed within the water outlet chamber to form a mixing channel, guiding the hot and room temperature water to mix and flow towards the outlet 13. Compared to the simple inlet and outlet structure of traditional water outlet boxes, this design allows two streams of water at different temperatures to mix in an orderly manner along a pre-set channel before entering the outlet 13. This effectively improves the uniformity of water mixing, reduces localized overheating or underheating due to uneven mixing, and results in a more stable and uniform water temperature at the final outlet. This meets the needs of various usage scenarios requiring precise water temperature control and enhances the overall user experience.

[0052] As a preferred embodiment of this application, such as Figure 3 and Figure 5 As shown, the mixing channel includes a mixing zone 16, with its inlet located between the hot water inlet 11 and the ambient temperature water inlet 12. A temperature probe 31 extends into the mixing zone 16. This embodiment optimizes the structure of the mixing channel to include the mixing zone 16, with the temperature probe 31 extending into it. The mixing zone 16 serves as the core area for the thorough mixing of hot and ambient temperature water. Temperature detection here provides the most accurate reflection of the actual temperature of the mixed water flowing towards the outlet 13. For example, in actual tea brewing, precise water temperature is crucial for the release of tea flavor. Detecting the water temperature in the mixing zone 16 avoids temperature errors caused by the detection location deviating from the critical mixing area, providing reliable water temperature feedback to the equipment. This ensures that the equipment can accurately adjust the mixing ratio of hot and ambient temperature water according to the actual water temperature, ensuring that the water flowing out each time reaches the user's desired suitable temperature and stably meets the user's personalized water temperature needs.

[0053] Regarding the structure of the mixing guide, in a preferred embodiment, such as Figure 4 and Figure 5 As shown, the mixing water guide section includes a hot water guide plate 14 and a room temperature water guide plate 15 formed in the housing 1. The hot water guide plate 14 includes a first water-blocking section 141 and a first flow guide section 142 connected at an angle. The first water-blocking section 141 is directly opposite the hot water inlet 11. The room temperature water guide plate 15 includes a second water-blocking section 151 and a second flow guide section 152 connected at an angle. The second water-blocking section 151 is directly opposite the room temperature water inlet 12. The first flow guide section 142 and the second flow guide section 152 extend together toward the outlet 13 and enclose to form a mixing water zone 16. The first baffle section 141 of the hot water guide plate 14 faces the hot water inlet 11, which can block and buffer the hot water that just enters the outlet chamber and guide it towards the mixing zone 16. The second baffle section 151 of the room temperature water guide plate 15 faces the room temperature water inlet 12, which can block and buffer the room temperature water that just enters the outlet chamber and guide it towards the mixing zone 16. The hot water guide plate 14 and the room temperature water guide plate 15 change the initial flow direction and velocity of the hot water flow and the room temperature water flow, respectively, making them more conducive to subsequent mixing. The first guide section 142 and the second guide section 152 extend towards the outlet 13 and enclose to form the mixing zone 16. This structure can force the hot water and room temperature water to converge in the mixing zone 16 along a predetermined path, further enhancing the fullness and uniformity of water mixing.

[0054] In a preferred embodiment, the tops of the hot water guide plate 14 and the room temperature water guide plate 15 can be flush with the top surface of the box body 1. When the box cover 2 is fitted into the box body 1, the hot water guide plate 14 and the room temperature water guide plate 15 are exactly abutting against the inner surface of the box cover 2. This prevents the formation of a water passage gap above the hot water guide plate 14 and the room temperature water guide plate 15, which would cause some water to escape from the mixing zone 16 and flow out through the water passage gap. This ensures that the hot water and room temperature water are forcibly guided to flow toward the mixing zone 16.

[0055] As a preferred embodiment of this implementation, such as Figure 2 , Figure 6 and Figure 7 As shown, the inner side of the cover 2 is provided with a water-blocking protrusion 21, which extends into the upper part of the mixing zone 16. The hot water guide plate 14, the room temperature water guide plate 15, and the water-blocking protrusion 21 together form a flow-limiting hole located at the lower part of the mixing zone 16. The temperature probe 31 extends into the flow-limiting hole. Those skilled in the art will understand that the presence of the flow-limiting hole can limit the flow of water through the mixing zone 16, making the water flow speed more stable and uniform, avoiding temperature fluctuations caused by excessively fast or rapid water flow, and preventing interference with water temperature detection. In daily use, such as frequent switching of the faucet to get water, and when the water flow is variable, the flow-limiting hole ensures that the temperature probe 31 can stably and accurately detect the water temperature. It also allows the water to have more time to fully mix within the mixing zone 16, further improving the temperature uniformity of the mixed water. This ensures that the final outflowing water maintains a stable and suitable temperature under different operating conditions, optimizing user convenience and comfort.

[0056] Furthermore, such as Figure 4 and Figure 5 As shown, the hot water inlet 11 and the room temperature water inlet 12 are located along the center surface of the water outlet cavity. Figure 5 The dashed lines L in the diagram show a symmetrical distribution; the hot water guide plate 14 and the room temperature water guide plate 15 are symmetrically distributed along the center plane of the outlet cavity. This symmetrical design ensures that, in practical applications, hot and room temperature water are uniformly guided and constrained after entering the outlet cavity simultaneously, maintaining a balance in flow rate and velocity between the two water streams and avoiding water flow imbalance caused by structural asymmetry. For example, even after prolonged use, slight differences in the performance of various components may occur; this symmetrical structure still ensures stable and thorough mixing of hot and room temperature water, reducing the possibility of water temperature fluctuations and improving the stability and reliability of the outlet water temperature.

[0057] As a preferred embodiment of this application, such as Figures 2 to 4As shown, the side wall of the housing 1 has a mounting hole 17. The water temperature sensor 3 is fixed in the mounting hole 17, and the temperature probe 31 extends into the mixing channel through the mounting hole 17. A sealing body 4 is provided between the water temperature sensor 3 and the inner wall of the mounting hole 17. During installation, one end of the water temperature sensor 3 with the temperature probe 31 is extended into the mixing channel through the mounting hole 17, while the other end is blocked outside the outlet box by the stepped structure on the water temperature sensor 3. This end constitutes the power supply terminal of the water temperature sensor 3 and can be used to connect a data cable. Furthermore, to ensure installation stability, the water temperature sensor 3 can be fixed to the housing 1 with screws. The mounting hole 17 provides a stable mounting position for the water temperature sensor 3. During equipment operation, even when affected by external factors such as water flow impact and equipment vibration, the water temperature sensor 3 can be firmly fixed in the corresponding position, ensuring the accuracy of the temperature probe 31's insertion into the mixing channel, thereby ensuring the continuity and reliability of water temperature detection. Meanwhile, the sealing body 4 effectively prevents water in the water outlet chamber from leaking through the mounting hole 17, avoiding problems such as short circuits and damage to internal components that may be caused by water leakage, ensuring the normal operation and service life of the equipment, reducing the maintenance cost of the equipment, and allowing users to use the equipment stably for a long time without frequently worrying about equipment failure.

[0058] Furthermore, such as Figure 4 As shown, the mounting hole 17 is located on the side wall of the first end of the housing 1, and the hot water inlet 11 and the room temperature water inlet 12 are located on the side wall of the second end of the housing 1 opposite to the first end. This layout keeps the water temperature sensor 3 away from the direct impact area of ​​the hot water inlet 11 and the room temperature water inlet 12, minimizing the interference of water flow fluctuations and impacts on the water temperature sensor 3 and its detection operation, ensuring the accuracy and stability of water temperature detection. Moreover, this layout is more rational in terms of the internal structure of the equipment, reserving appropriate space for the wiring and other related components of the water temperature sensor 3, avoiding the intersection and interference between the wiring and the water flow path, optimizing the overall space utilization inside the equipment, and making the internal structure of the equipment more regular and orderly.

[0059] As a preferred embodiment of this application, such as Figure 4As shown, the water outlet 13 includes a high-level outlet 131 and a low-level outlet 132. The inlet of the high-level outlet 131 is higher than the inlet of the low-level outlet 132, and the outlet of the mixing channel faces the low-level outlet 132. The different inlet heights of the high-level outlet 131 and the low-level outlet 132 give the device diverse water output functions to cope with different usage scenarios. For example, when discharging hot water at a low flow rate (the water level in the outlet chamber is lower than the inlet of the high-level outlet 131), the hot water is discharged only through the low-level outlet 132. In this case, the high-level outlet 131 constitutes a steam discharge channel, playing an important role in water-vapor separation. In actual use, hot water is often accompanied by water vapor during the outflow process. Without an effective water-vapor separation mechanism, water vapor flowing out with the hot water may cause inconvenience, such as the occurrence of jet spraying. The high-level outlet 131 serves as a steam venting channel, ensuring timely separation and discharge of water vapor, guaranteeing the safety and comfort of hot water flow. It also ensures purer hot water, preventing water vapor from affecting the actual usability of the hot water. When a large flow rate is applied, both the high-level outlet 131 and the low-level outlet 132 flow simultaneously, effectively reducing pressure buildup. In scenarios requiring rapid dispensing of large amounts of water, such as using large-capacity containers or multiple users continuously using the water, a single outlet 13 can cause excessive pressure at that outlet, leading to problems like poor flow, splashing, or even equipment damage. The coordinated operation of the high-level outlet 131 and the low-level outlet 132 distributes the water pressure, allowing for smoother flow and ensuring stability and fluidity during high-flow periods, thus enhancing the equipment's adaptability to various usage needs.

[0060] Furthermore, such as Figure 1 , Figure 2 and Figure 8 As shown, the temperature measuring water outlet box also includes a water outlet 5 connected to the bottom of the box body 1. The water outlet 5 includes an outer water tube 51 and an inner water outlet tube 52 connected inside the outer water tube 51. The inner water outlet tube 52 is used for water discharge from the low-level water outlet 132, and the water outlet channel between the outer water tube 51 and the inner water outlet tube 52 is used for water discharge from the high-level water outlet 131. By connecting the water outlet 5 to the bottom of the box body 1, the outer water tube 51 and the inner water outlet tube 52 correspond to the water discharge paths of different water outlets 13, so that the water flow from the high-level water outlet 131 and the low-level water outlet 132 can flow out along independent and orderly channels. This structure avoids mutual interference between the water flow from different water outlets 13 and ensures the stability and smoothness of water discharge from each water outlet 13. Specifically, the water outlet 5 can be connected to the bottom of the box 1 by means of threaded connection, screw connection, or interference fit; the water outlet 5 and the box 1 can also be sealed by a sealing ring to prevent water from seeping out through the gap between them.

[0061] Furthermore, such as Figure 2 As shown, the inlet of the inner water outlet cylinder 52 is covered with a first turbulence-dispersing net 6 with multiple mesh openings, and the outlet of the water outlet channel is covered with a second turbulence-dispersing net 7 with multiple mesh openings. The first turbulence-dispersing net 6 is clamped and fixed by the upper edge of the inner water outlet cylinder 52 and the lower edge of the low-position water outlet 132, while the second turbulence-dispersing net 7 overlaps on the inwardly folded lower edge of the outer water outlet cylinder 51. When water enters the inner water outlet cylinder 52, the first turbulence-dispersing net 6 can turbulently change the flow state of the water, making it more uniform and gentle, avoiding excessive concentration or turbulence, reducing noise generated by water flow impact, and optimizing the shape of the water flowing out from the low-position water outlet 132. Similarly, the second turbulence-dispersing net 7 plays a similar role at the outlet of the water outlet channel, making the water flowing out from the high-position water outlet 131 more stable and aesthetically pleasing. Furthermore, during the turbulence process, the mesh openings can also create a certain foaming effect, increasing the interest and visual appeal of the water flow, and can also improve the water purification effect by utilizing the bursting of bubbles.

[0062] For any parts not mentioned in this application, existing technologies may be used or referenced.

[0063] The various embodiments in this specification are described in a progressive manner. The same or similar parts between the various embodiments can be referred to each other. Each embodiment focuses on describing the differences from other embodiments.

[0064] The above description is merely an embodiment of this application and is not intended to limit this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principle of this application should be included within the scope of the claims of this application.

Claims

1. A temperature-measuring water outlet box, comprising a box body and a box cover, the box body and the box cover fitting together to form a water outlet cavity, the box body having a hot water inlet, a room temperature water inlet, and at least one water outlet respectively connected to the water outlet cavity, characterized in that, The temperature measuring water outlet box also includes a water temperature detection component; The water outlet cavity is provided with a water mixing guide, which encloses and forms a water mixing channel. The water mixing channel is used to guide the water flowing from the hot water inlet and the room temperature water inlet to mix and flow toward the water outlet. The temperature probe of the water temperature detection element extends into the water mixing channel.

2. The temperature measuring water outlet box according to claim 1, characterized in that, The mixing channel includes a mixing zone, the entrance of which is located between the hot water inlet and the ambient temperature water inlet, and the temperature probe extends into the mixing zone.

3. The temperature measuring water outlet box according to claim 2, characterized in that, The mixing water guide includes a hot water guide plate and a room temperature water guide plate formed in the housing. The hot water guide plate includes a first water-blocking section and a first flow-guiding section connected at an angle. The first water-blocking section is directly opposite the hot water inlet. The room temperature water guide plate includes a second water-blocking section and a second flow-guiding section connected at an angle. The second water-blocking section is directly opposite the room temperature water inlet. The first flow-guiding section and the second flow-guiding section extend together toward the water outlet and enclose the mixing water zone.

4. The temperature measuring water outlet box according to claim 2 or 3, characterized in that, The inner side of the box cover is provided with a water-blocking protrusion. The water-blocking protrusion extends into the upper part of the mixing area, so that the hot water guide plate, the room temperature water guide plate and the water-blocking protrusion surround and form a flow-limiting hole located in the lower part of the mixing area. The temperature measuring probe extends into the flow-limiting hole.

5. The temperature measuring water outlet box according to claim 3, characterized in that, The hot water inlet and the room temperature water inlet are symmetrically distributed along the center plane of the water outlet cavity; The hot water guide plate and the room temperature water guide plate are symmetrically distributed along the center surface of the water outlet cavity.

6. The temperature measuring water outlet box according to claim 1, characterized in that, The side wall of the box is provided with a mounting hole, the water temperature detection element is fixed in the mounting hole, the temperature probe extends into the mixing channel through the mounting hole, and a sealing body is provided between the water temperature detection element and the inner wall of the mounting hole.

7. The temperature measuring water outlet box according to claim 6, characterized in that, The mounting hole is located on the side wall of the first end of the box body, and the hot water inlet and the room temperature water inlet are located on the side wall of the second end of the box body opposite to the first end. 8.The temperature measuring water outlet box of claim 1, wherein, The water outlet includes a high-level water outlet and a low-level water outlet. The inlet of the high-level water outlet is higher than the inlet of the low-level water outlet, and the outlet of the mixing channel faces the low-level water outlet.

9. The temperature measuring water outlet box according to claim 8, characterized in that, The temperature measuring water outlet box also includes a water outlet connected to the bottom of the box body. The water outlet includes an outer water tube and an inner water outlet tube connected inside the outer water tube. The inner water outlet tube is used for water to be discharged from the low-level water outlet, and the water outlet channel between the outer water tube and the inner water outlet tube is used for water to be discharged from the high-level water outlet.

10. The temperature measuring water outlet box according to claim 9, characterized in that, The inlet of the inner water outlet cylinder is covered with a first turbulence-dispersing net with multiple mesh openings, and the outlet of the water outlet channel is covered with a second turbulence-dispersing net with multiple mesh openings.