Pipeline machine
By rationally arranging the electrical control devices, water system, and lighting, the problem of inconvenience in using the pipeline machine due to insufficient light has been solved, enabling accurate operation and safety assurance in dim environments.
Patent Information
- Application Number
- CN202520278458.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-20
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2035-02-20
AI Technical Summary
In low light conditions, water dispensers are inconvenient to use, making it difficult for users to clearly observe the water output, which may lead to misoperation and safety hazards.
By rationally arranging the electrical control devices, water system, heating module and illumination lamps, and ensuring that the illumination lamps are placed close to the water outlet, the area below the water outlet is illuminated, reducing interference between modules and minimizing misoperation and safety hazards.
In dimly lit environments, users can operate the water dispenser accurately, reducing misoperation and safety hazards, and improving ease of use and drinking water safety.
Smart Images

Figure CN223925103U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of household appliances, in particular to a pipeline machine. BACKGROUND
[0002] The pipeline machine is generally used in homes, offices and the like, and can heat and cool drinking water so that users can drink hot and cold water according to needs. In actual use, due to multiple factors such as climate, time period and layout position, there is often insufficient light near the pipeline machine, and users cannot clearly observe the pipeline machine and its water outlet condition, which not only affects user operation, leading to insufficient or excessive water taking and the like, but also can cause users to be bumped or scalded, and there is a safety hazard. CONTENT OF THE UTILITY MODEL
[0003] The pipeline machine provided by the embodiments of the present application can solve the problem of inconvenient use of the pipeline machine due to insufficient light.
[0004] The pipeline machine provided by the embodiments of the present application comprises a shell, an electric control device, a water system, a heating module and an irradiation lamp. The shell has an electric control mounting area, a waterway mounting area and an instant heating mounting area arranged side by side in a horizontal direction inside the shell. The shell also has a water outlet channel communicating with the instant heating mounting area. The electric control device is arranged in the electric control mounting area. The water system is arranged in the waterway mounting area. The heating module is arranged in the instant heating mounting area. The heating module comprises a heating main body and a water outlet nozzle. The heating main body communicates with the water system and can heat water supplied by the water system. The water outlet nozzle communicates with the heating main body and extends to the water outlet channel to spray water supplied by the heating main body towards the lower side of the pipeline machine. The irradiation lamp is arranged on the part of the shell defining the instant heating mounting area. The irradiation lamp is used to provide illumination for the area below the water outlet nozzle.
[0005] In some embodiments, the pipeline machine further comprises a sterilization device. The sterilization device is arranged in the instant heating mounting area. One end of the sterilization device communicates with the heating main body, and the other end of the sterilization device communicates with the water outlet nozzle. The sterilization device is used to sterilize water supplied by the heating main body and then supply the water outlet nozzle.
[0006] In some embodiments, the waterway mounting area and the instant heating mounting area are arranged side by side in a first horizontal direction. In a second horizontal direction perpendicular to the first horizontal direction, the sterilization device is arranged on one side of the heating main body, and the sterilization device is located above the water outlet nozzle.
[0007] In some embodiments, the shell has a first side plate arranged horizontally side by side with the heating body, the water outlet nozzle and the sterilization device are arranged in a space between the heating body and the first side plate; the pipeline machine further comprises a display device mounted on the first side plate.
[0008] In some embodiments, the shell is provided with a wire passing opening corresponding to the waterway mounting area, the wire passing opening is located below the waterway system; the pipeline machine further comprises a power supply wire harness arranged inside the shell, the power supply wire harness is in communication with an external power supply, and the power supply wire harness passes through the wire passing opening and is electrically connected to the electric control device.
[0009] In some embodiments, the pipeline machine further comprises a first control wire harness, a second control wire harness and a display device, the display device is mounted on the shell; one end of the first control wire harness is electrically connected to the electric control device, and the other end is electrically connected to the display device; one end of the second control wire harness is electrically connected to the electric control device, and the other end is electrically connected to the heating body, and the first control wire harness and the second control wire harness are arranged in the shell and in a space above the waterway system.
[0010] In some embodiments, the pipeline machine comprises one of the irradiation lamps, one of the irradiation lamps is located on a side of the water outlet nozzle away from the electric control device; or, the pipeline machine comprises a plurality of the irradiation lamps, and the plurality of the irradiation lamps are arranged at intervals around the circumferential side of the water outlet nozzle.
[0011] In some embodiments, in the radial direction of the water outlet nozzle, the distance between the irradiation lamp and the center of the water outlet nozzle is d, wherein 15mm≤d≤65mm.
[0012] In some embodiments, the shell comprises a bottom plate having a mounting surface, the mounting surface is provided with the water outlet channel, and the water outlet nozzle is arranged in the water outlet channel and at least partially protrudes from the mounting surface; and a water blocking flange protruding from the mounting surface, the water blocking flange is arranged around the circumferential side of the water outlet nozzle.
[0013] In some embodiments, the irradiation lamp is mounted on the bottom plate and at least partially protrudes from the mounting surface; the shell further comprises a flow guiding flange arranged on the mounting surface, the flow guiding flange is arranged around the circumferential side of the irradiation lamp, and the outer peripheral wall surface of the flow guiding flange is inclined in the vertical direction from the bottom plate to the side close to the irradiation lamp.
[0014] In some embodiments, the pipeline machine further comprises a sensing module arranged in the instant heating installation area; the sensing module is electrically connected with the electric control device and is configured to generate a sensing signal, and the electric control device controls the on-off of the irradiation lamp according to the sensing signal.
[0015] Based on the pipeline machine of the embodiment of the present application, the interference between the modules is reduced by planning the arrangement positions of the electric control device, the waterway system, the heating module and the irradiation lamp, the irradiation lamp is arranged close to the water outlet nozzle, the irradiation lamp can more conveniently provide auxiliary lighting for the water outlet nozzle, that is, the irradiation lamp can provide lighting for the area below the water outlet nozzle, so as to facilitate the user to observe the water outlet area in a dim environment. In this way, the user can accurately operate the pipeline machine based on the water outlet condition, without the help of an additional lighting device, reducing the misoperation and safety hazards caused by blurred vision, improving the convenience of using the pipeline machine, and providing additional protection for the user's drinking water safety. BRIEF DESCRIPTION OF DRAWINGS
[0016] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments or the prior art description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.
[0017] Figure 1 FIG. 1 is a structural schematic diagram of a pipeline machine according to an embodiment of the present application;
[0018] Figure 2 FIG. 2 is a partial structural schematic diagram of a pipeline machine according to an embodiment of the present application;
[0019] Figure 3 FIG. 3 is a sectional view schematic diagram of a shell according to an embodiment of the present application;
[0020] Figure 4 FIG. 4 is a sectional structural schematic diagram of a pipeline machine according to an embodiment of the present application;
[0021] Figure 5 FIG. 5 is a control logic schematic diagram of an irradiation lamp according to an embodiment of the present application.
[0022] REFERENCE SIGNS:
[0023] 2, pipeline machine;
[0024] 21, shell; 201, bottom plate; 201a, installation surface; 202, first side plate; 203, water blocking flange; 204, flow guiding flange; 2131, electric control installation area; 2141, waterway installation area; 2142, instant heating installation area; 240, water outlet channel; 250, wire passing opening;
[0025] 22. Water system; 2211. First inlet solenoid valve; 2214. Water pump; 2215. Water flow sensor; 2217. Negative pressure valve;
[0026] 23. Sterilization device;
[0027] 24. Electrical control device;
[0028] 25. Instantaneous heating device; 251. Heating body; 212. Water outlet;
[0029] 27. Display device;
[0030] 28. Irradiant lamp;
[0031] 2A, Sensing device; 2A1, Infrared sensing unit; 2A2, Light sensing unit. Detailed Implementation
[0032] To make the objectives, technical solutions, and advantages of this application clearer, the following detailed description is provided in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the scope of this application.
[0033] The water dispenser connects to a purified water supply source and has the function of heating and cooling the purified water, thereby providing users with the hot and cold water they need. The inventors discovered that in practical application scenarios, factors such as improper location, nighttime, and rainy weather can all lead to insufficient lighting in the area where the water dispenser is located. This not only weakens the user's ability to perceive the water dispensing status of the water dispenser, but also increases the risk of bumps and burns due to poor visibility, affecting the user experience.
[0034] Based on this, this application provides a pipeline machine. Please refer to [link / reference]. Figures 1-2 The pipeline machine 2 includes a housing 21, an electrical control device 24, a water system 22, an instant heating device 25, and an illumination lamp 28.
[0035] In order to optimize the thermal management within the pipeline machine 2 and avoid unnecessary heat transfer and superposition between the electronic control device 24 and the instant heating device 25, in this embodiment, the electronic control device 24, the water system 22 and the instant heating device 25 are arranged side by side. The water system 22 forms a thermal isolation barrier, separating the electronic control device 24 and the instant heating device 25, thereby reducing thermal energy interaction interference.
[0036] In this embodiment, the housing 21 is used to provide mounting positions for other components, such as... Figure 3As shown, the housing 21 has an electric control installation area 2131, a waterway installation area 2141 and an instant heating installation area 2142 arranged side by side in a horizontal direction, for example, the electric control installation area 2131, the waterway installation area 2141 and the instant heating installation area 2142 are arranged side by side along a first horizontal direction X, the first horizontal direction X is the length direction of the pipeline machine 2, the electric control device 24 is arranged in the electric control installation area 2131, the electric control device 24 can control the components in the waterway system 22 and the instant heating device 25 to complete corresponding actions based on user instructions. The waterway system 22 is arranged in the waterway installation area 2141, the waterway system 22 is in communication with a clean water supply source, and can pump water to the instant heating device 25. The instant heating device 25 is arranged in the instant heating installation area 2142, the instant heating device 25 includes a heating body 251 and a water outlet nozzle 212, the heating body 251 is in communication with the waterway system 22, and can heat the water supplied by the waterway system 22.
[0037] In other embodiments, the electric control installation area 2131, the waterway installation area 2141 and the instant heating installation area 2142 are not limited to being arranged side by side in a straight line direction, for example, the waterway installation area 2141 and the instant heating installation area 2142 are arranged side by side along the first horizontal direction X, and the waterway installation area 2141 and the electric control installation area 2131 are arranged side by side and stacked along a second horizontal direction Y, the second horizontal direction Y is perpendicular to the first horizontal direction X, and the second horizontal direction Y can be the width direction of the pipeline machine 2.
[0038] The housing 21 includes a bottom plate 201, the bottom plate 201 has a water outlet passage 240 in communication with the instant heating installation area 2142, and the water outlet passage 240 is in communication with the outside space of the housing 21, the water outlet nozzle 212 is in communication with the heating body 251, and the water outlet nozzle 212 extends to the water outlet passage 240 to spray the water supplied by the heating body 251 towards the lower side of the pipeline machine 2. It can be understood that the preset water outlet direction of the water outlet nozzle 212 is downward along a vertical direction Z, and in actual use, due to the dynamic characteristics of the water flow, the water flow will have a tendency to spread around when the water outlet nozzle 212 actually discharges water, and will cover a certain water outlet range. In a broad sense, the water outlet direction of the water outlet nozzle 212 is still towards the lower side of the pipeline machine 2.
[0039] In the embodiments of the present application, the irradiation lamp 28 is installed on the part of the shell 21 defining the instant heating installation area 2142, and the irradiation lamp 28 is used to provide illumination for the area below the water outlet nozzle 212. Through the arrangement of the electric control device 24, the waterway system 22, the instant heating device 25, and the irradiation lamp 28, the present application reduces the interference between the modules, realizes the arrangement of the irradiation lamp 28 close to the water outlet nozzle 212, and the irradiation lamp 28 can more conveniently provide auxiliary illumination for the water outlet nozzle 212, that is, provide illumination for the area below the water outlet nozzle 212, so as to facilitate the user to observe the water outlet area in a dimly lit environment. In this way, the user can accurately operate the pipeline machine 2 based on the water outlet condition, without the help of an additional illumination device, reduces the misoperation and safety hazards caused by blurred vision, improves the convenience of using the pipeline machine 2, and provides additional protection for the user's drinking water safety.
[0040] The shell 21 has a first side plate 202 arranged side by side with the heating main body in the horizontal direction, the first side plate 202 is connected to one side of the bottom plate 201 along the second horizontal direction Y, and the first side plate 202 is used to be arranged towards the user. In actual use, the pipeline machine 2 further includes a display device 27, and the first side plate 202 is used to arrange the display device 27, so as to facilitate the user to observe the working state of the pipeline machine 2.
[0041] Please refer to Figure 4 The bottom plate 201 has a mounting surface 201a, the mounting surface 201a is provided with a water outlet passage 240, the water outlet nozzle 212 is arranged in the water outlet passage 240 and at least partially protrudes from the mounting surface 201a, and the shell 21 further includes a water blocking flange 203, the water blocking flange 203 is arranged on the mounting surface 201a, and the water blocking flange 203 is arranged around the circumferential side of the water outlet nozzle 212. The water blocking flange 203 forms an effective water blocking barrier, and can block the splashing water liquid that may be generated when the water outlet nozzle 212 is used to outlet water, so as to avoid the splashing water liquid from splashing on the irradiation lamp 28.
[0042] In some embodiments, in order to ensure that the irradiation lamp 28 can effectively irradiate the water outlet condition of the water outlet nozzle 212, the irradiation lamp 28 is installed on the bottom plate 201 and at least partially protrudes from the mounting surface 201a, so as to ensure that the illumination side of the irradiation lamp 28 and the water outlet side of the water outlet nozzle 212 are consistent, so that the irradiation lamp provides sufficient illumination range. The shell 21 further includes a flow guiding flange 204, the flow guiding flange 204 is arranged on the mounting surface 201a, and the flow guiding flange 204 surrounds the circumferential side of the part of the irradiation lamp 28 protruding from the mounting surface 201a, wherein the outer circumferential wall surface of the flow guiding flange 204 is inclined in the vertical direction from the bottom plate 201 to the side close to the irradiation lamp 28, the flow guiding flange 204 can block water for the irradiation lamp 28, and the water liquid splashing on the flow guiding flange 204 can be collected downward along the inclined surface thereof and dripped, so as to avoid the water liquid from gathering or seeping around the irradiation lamp 28.
[0043] In some embodiments, the water dispenser 2 includes an illumination lamp 28 located on one side of the water outlet 212. For example, along the second horizontal direction Y, the illumination lamp 28 is located on the side of the water outlet 212 away from the first side plate 202. In this way, the illumination lamp 28 can provide effective illumination for the water outlet 212 and helps to reduce the obstruction of the illumination lamp 28 caused by user operation.
[0044] In some embodiments, the water dispenser includes a plurality of illumination lamps 28, which are spaced apart around the periphery of the water outlet 212. The illumination from the plurality of illumination lamps 28 can more evenly illuminate the water outlet area of the water outlet 212. Even if one or more of the illumination lamps 28 are blocked or damaged, the other illumination lamps can still provide effective illumination, providing users with a better lighting experience.
[0045] In some embodiments, the center-to-center distance between the illumination lamp 28 and the water outlet 212 in the radial direction of the water outlet 212 is d, where 15mm ≤ d ≤ 65mm, so that the illumination lamp 28 can form a good lighting effect. It can be understood that the center-to-center distance d is the distance from the geometric center point of the water outlet 212 to the geometric center point of the light-emitting surface of the illumination lamp 28 on the same horizontal plane. When the center-to-center distance d > 65mm, the distance between the illumination lamp 28 and the water outlet 212 is too far, and the light from the illumination lamp 28 may not be able to effectively illuminate the water outlet 212 and its surrounding area, resulting in poor lighting effect; when the center-to-center distance d < 15mm, the distance between the illumination lamp 28 and the water outlet 212 is too close, increasing the risk that the illumination lamp 28 will be blocked by the water outlet 212 or its surrounding components, thereby reducing the lighting effect.
[0046] The control logic of the illumination lamp 28 in the embodiments of this application will be described in detail below with reference to the accompanying drawings.
[0047] In this embodiment, the water dispenser 2 further includes a display device 27 and a sensing device 2A. The display device 27 is electrically connected to the electronic control device 24. The display device 27 can receive signals and data from the electronic control device 24 and display the operating information of the water dispenser 2, such as the water temperature setting, water temperature, and WiFi connection information. The display device 27 is mounted on the first side panel 202 to facilitate user viewing of the operating information of the water dispenser 2. Furthermore, the first side panel 202 also includes multiple buttons located above the display device 27, allowing users to operate the water dispenser 2 via the buttons, such as selecting the water temperature setting, starting or stopping water flow, etc.
[0048] Since the display device 27 and the illumination lamp 28 are located close to each other, in this embodiment, the display device 27 is electrically connected to the illumination lamp 28. The display device 27 also supplies power to the illumination lamp 28 and directly controls the on / off state of the illumination lamp 28, which helps to simplify the wiring complexity within the pipeline machine 2. In a specific implementation, based on the sensing signal from the sensing device 2A, the electronic control device 24 sends a lighting on / off signal to the display device 27, and the display device 27 controls the on / off state of the illumination lamp 28 accordingly.
[0049] Please see Figure 5 The sensing device 2A is located in the instant heating installation area 2142. The sensing device 2A is electrically connected to the electronic control device 24. The sensing device detects changes in the environment around the pipeline machine 2, such as light intensity and human proximity, and generates corresponding sensing signals accordingly. The sensing device 2A transmits the sensing signals to the electronic control device 24, and the electronic control device 24 controls the opening and closing of the illumination lamp 28 according to the sensing signals.
[0050] In some embodiments, the sensing device 2A includes an infrared sensing unit 2A1, which is disposed in the instant-heating mounting area 2142. The infrared sensing unit 2A1 is capable of sensing whether a human body is approaching. In actual use, after detecting the approach of a human body, the infrared sensing unit 2A1 sends an infrared signal to the electronic control device 24. After receiving the infrared signal, the electronic control device 24 controls the illumination lamp 28 to turn on. Optionally, the infrared sensing unit 2A1 can also be replaced with other sensors, such as microwave sensors, ultrasonic sensors, etc., to realize the human body detection function.
[0051] In some embodiments, the sensing device 2A includes a light-sensing unit 2A2, which is disposed in the instant heating installation area 2142. At least a portion of the housing 21 corresponding to the light-sensing unit 2A2 is light-transmitting, enabling the light-sensing unit 2A2 to sense the intensity of ambient light near the water dispenser 2. For example, the housing 21 may have a light-transmitting hole corresponding to the light-sensing unit 2A2, or the portion of the housing 21 corresponding to the light-sensing unit 2A2 may be made of a light-transmitting material. The light-sensing unit 2A2 is electrically connected to the electronic control device 24 and sends ambient light intensity signals to the electronic control device 24. In response to the ambient light intensity signals and infrared signals, the electronic control device 24 controls the activation and deactivation of the illumination lamp 28. In practical use, when the light-sensing unit 2A2 detects weak ambient light and the infrared sensing unit 2A1 detects a human body approaching, the electronic control device 24 controls the illumination lamp 28 to turn on. This avoids the illumination lamp 28 being turned on in well-lit conditions, preventing unnecessary waste.
[0052] In this embodiment, to avoid problems such as bacterial growth and pipe sticking caused by a water tank, and to mitigate the risk of water pollution, no water tank is installed in the water system 22. The water system 22 includes a first inlet solenoid valve 2211, a negative pressure valve 2217, and a water pump 2214. The inlet end of the first inlet solenoid valve 2211 is connected to an external clean water source and is used to control the flow of water. The negative pressure valve 2217 is located between the first inlet solenoid valve 2211 and the water pump 2214. The negative pressure valve 2217 is used to prevent negative pressure from forming in the water system, helping to maintain the continuity and stability of the water flow in the water system 22. The end of the water pump 2214 furthest from the negative pressure valve 2217 is connected to the heating body 251. The water pump 2214 generates negative pressure at the inlet end of the solenoid valve to pump water to the heating body 251.
[0053] In some embodiments, the water system 22 further includes a water volume sensor 2215, which is electrically connected to the electronic control device 24. The water volume sensor 2215 detects the water volume in the water system 22 and sends the signal to the electronic control device 24. The electronic control device 24 controls the heating level of the heating element 251 based on the water volume signal to prevent the heating element 251 from overheating and burning or generating high-temperature steam that could cause injury. Optionally, the water volume sensor 2215 is located between the negative pressure valve 2217 and the water pump 2214, or between the water pump 2214 and the heating element 251.
[0054] In this embodiment, the sterilization device 23 is installed in the instant heating installation area 2142. One end of the sterilization device 23 is connected to the heating body 251, and the other end is connected to the water outlet 212. The water passing through the heating body 251 is disinfected by the sterilization device 23 and then flows out through the water outlet 212. For example, the sterilization device 23 may be equipped with an ultraviolet lamp, which irradiates the passing water flow with ultraviolet light to kill germs in the water.
[0055] In some embodiments, the water installation area 2141 and the instant heating installation area 2142 are arranged side by side in the first horizontal direction X. In the second horizontal direction Y, the sterilization device 23 is located on one side of the heating body 251 and above the water outlet 212. In this way, the sterilization device 23 and the heating body 251 are arranged side by side in the second horizontal direction Y, which reduces the length of the instant heating installation area 2142 in the first horizontal direction X and helps to make the internal structure of the water dispenser 2 more compact.
[0056] In some embodiments, the water outlet 212 and the sterilization device 23 are disposed in the space between the heating body 251 and the first side plate 202, so that the heating body 251 and the first side plate 202 are spaced apart. It is understood that the first side plate 202 is provided with a display device 27 and buttons, etc. The spaced arrangement of the heating body 251 and the first side plate 202 can prevent the heat generated by the heating body 251 during operation from adversely affecting the display device 27 (such as a display screen or indicator light) and the buttons.
[0057] In actual use, the user presses a button to dispense water. The first inlet solenoid valve 2211 opens, activating the water pump 2214. Purified water enters the water system 22 through the inlet of the first inlet solenoid valve 2211, and is pumped by the water pump 2214 through the negative pressure valve 2217, the water pump 2214, the heating element 251, and the sterilization device 23, finally flowing out from the outlet 212. It can be understood that when purified water enters the instant heating device 25, the electronic control device 24 controls the heating element 251 according to the user's settings. If the user needs hot water (i.e., the set outlet water temperature is higher than the water temperature pumped to the instant heating device 25), the electronic control device 24 controls the heating element 251 to heat the purified water until the set outlet water temperature is reached, at which point hot water is output. If the user needs room temperature water, the heating element 251 does not need to operate, and the instant heating device 25 directly outputs purified water.
[0058] Understandably, in the water dispenser 2, the electrical control device 24 is responsible for receiving user commands and controlling the various components in the water system 22, the instant heating device 25, and the sterilization device 23 to complete their respective actions. The water dispenser 2 also includes a power harness and a control harness. The electrical control device 24 is electrically connected to an external power source through the power harness to obtain the required power supply. The electrical control device 24 is connected to each module through the control harness to control each module to complete its corresponding actions.
[0059] In this embodiment, to avoid electromagnetic interference from high-voltage lines on the signal transmission of low-voltage lines, the high-voltage and low-voltage lines inside the water dispenser 2 are spaced apart. The housing 21 has a cable passage opening 250 corresponding to the water system installation area 2141. One end of the power cable is connected to an external power source, and the other end passes through the cable passage opening 250 and is electrically connected to the control device 24. The cable passage opening 250 is located below the water system 22. Correspondingly, the portion of the power cable inside the housing 21 is located in the space below the water system 22. This facilitates the separation of high-voltage and low-voltage lines, and the power cable is led out from the lower side of the housing 21 of the water dispenser 2 for easy connection to a household power source.
[0060] Furthermore, the control harness includes a first control harness and a second control harness. One end of the first control harness is electrically connected to the electronic control device 24, and the other end is electrically connected to the display device 27. One end of the second control harness is electrically connected to the electronic control device 24, and the other end is electrically connected to the heating body 251. The first and second control harnesses are located within the housing 21 and in the space above the water system 22. In this way, the power harness and control harness are spaced Z-shaped vertically. The separation of high-voltage and low-voltage lines effectively avoids electromagnetic interference, improves the transmission quality of low-voltage signals, and ensures the normal operation of the pipeline machine 2.
[0061] In the accompanying drawings of this embodiment, the same or similar reference numerals correspond to the same or similar components. In the description of this application, it should be understood that if terms such as "upper," "lower," "left," and "right" 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, the terms used to describe positional relationships in the accompanying drawings are only for illustrative purposes and should not be construed as limiting this patent. For those skilled in the art, the specific meaning of the above terms can be understood according to the specific circumstances.
[0062] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this application should be included within the protection scope of this application.
Claims
1. A pipeline machine, characterized in that, include: The housing has an electrical control installation area, a water circuit installation area, and an instant heating installation area arranged side by side in a horizontal direction. The housing also has a water outlet channel communicating with the instant heating installation area. The electrical control device is located in the electrical control installation area; A water system is located in the water system installation area; An instant heating device is provided in the instant heating installation area. The instant heating device includes a heating body and a water outlet. The heating body is connected to the water system and can heat the water supplied by the water system. The water outlet is connected to the heating body and extends to the water outlet channel to spray the water supplied by the heating body toward the bottom of the pipeline machine. and An illumination lamp is installed in the portion of the housing that defines the instant heating mounting area, the illumination lamp being used to provide illumination to the area below the water outlet.
2. The pipeline machine according to claim 1, characterized in that, The pipeline machine also includes a sterilization device, which is installed in the instant heating installation area. One end of the sterilization device is connected to the heating body and the other end is connected to the water outlet. The sterilization device is used to disinfect the water supplied by the heating body and then supply it to the water outlet.
3. The pipeline machine according to claim 2, characterized in that, The waterway installation area and the instant heating installation area are arranged side by side in the first horizontal direction; In a second horizontal direction perpendicular to the first horizontal direction, the sterilization device is located on one side of the heating body and above the water outlet.
4. The pipeline machine according to claim 2, characterized in that, The housing has a first side plate arranged horizontally alongside the heating body, and the water outlet and the sterilization device are disposed in the space between the heating body and the first side plate; The pipeline machine also includes a display device, which is mounted on the first side panel.
5. The pipeline machine according to claim 1, characterized in that, The housing is provided with a wire passage opening corresponding to the water circuit installation area, and the wire passage opening is located below the water circuit system; The pipeline machine also includes a power harness, which is connected to an external power source and passes through the wire opening and is electrically connected to the electrical control device.
6. The pipeline machine according to claim 1, characterized in that, The pipeline machine also includes a first control harness, a second control harness, and a display device, wherein the display device is installed in the housing; One end of the first control harness is electrically connected to the electronic control device, and the other end is electrically connected to the display device; One end of the second control harness is electrically connected to the electronic control device, and the other end is electrically connected to the heating body. The first control harness and the second control harness are located inside the housing and in the space above the water system.
7. The pipeline machine according to claim 1, characterized in that, The water dispenser includes one of the illumination lamps, located on the side of the water outlet away from the electronic control device; or... The pipeline machine includes a plurality of illumination lamps, which are arranged at intervals around the periphery of the water outlet.
8. The pipeline machine according to claim 1, characterized in that, In the radial direction of the water outlet, the center distance between the illumination lamp and the water outlet is d, where 15mm≤d≤65mm.
9. The pipeline machine according to claim 1, characterized in that, The housing includes: A base plate having a mounting surface, the mounting surface having the water outlet channel, and a water outlet nozzle disposed in the water outlet channel and at least partially extending out of the mounting surface; and A water-blocking flange is provided on the mounting surface and is arranged around the periphery of the water outlet.
10. The pipeline machine according to claim 9, characterized in that, The illumination lamp is mounted on the base plate and at least partially extends out of the mounting surface; The housing also includes a flow guide flange, which is disposed on the mounting surface and surrounds the periphery of the illumination lamp. The outer peripheral wall of the flow guide flange is inclined vertically from the base plate toward the side closer to the illumination lamp.
11. The pipeline machine according to claim 1, characterized in that, The pipeline machine also includes a sensing device, which is located in the instant heating installation area; The sensing device is electrically connected to the electronic control device and is used to generate a sensing signal. The electronic control device controls the opening and closing of the illumination lamp according to the sensing signal.