A kitchen cleaning module
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-10
- Publication Date
- 2026-08-11
AI Technical Summary
[0002]现有的皂液分配器通常设置在水龙头的一侧,为了提高便捷性,通过无接触感应或挥手方式获得皂液,但仍需要打开水龙头获取清水,从而打出泡泡,在接水过程中会导致部分皂液被冲走,造成皂液使用率降低,而且无接触获得皂液,每次只能获取较少量,但对于需要进行大量清洗任务,无接触获取皂液方式反而制约了皂液的获取效率
[0013]该一种厨房清洗模块通过设置了定时关闭制泡机,清水能够对泡泡流经的管道进行冲刷,进而能够减少管道内泡泡的残留,而且由于出水管道和制泡机共同利用出泡管道出液,出水管道也能对出泡管道内残留的泡泡进行冲刷,而且由于皂液与清水通过制泡组件再流出,所以能够提高皂液的使用率,减少皂液被清水冲走,通过按压物理按键获得泡泡,提高获取皂液的便捷性,不需要反复进行无接触的操作,该结构更适合需要进行大量清洗任务。
Smart Images

Figure CN224620724U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of kitchen and bathroom equipment, and in particular to kitchen and bathroom cleaning equipment. Background Technology
[0002] Existing soap dispensers are typically located on the side of the faucet. While they offer convenience by using contactless sensors or gestures to dispense soap, the faucet still needs to be turned on to get water and create lather. This process causes some soap to be washed away, reducing its usability. Furthermore, contactless dispensing only dispenses a small amount at a time, which is inefficient for large-volume cleaning tasks. In addition, because no water flows through the internal pipes, cleaning solution remains inside for extended periods, shortening the lifespan of the motor within the pipes.
[0003] The technical problem to be solved by this application is: how to reduce the residue of cleaning fluid in pipelines. Utility Model Content
[0004] In order to overcome the shortcomings of the existing technology, the purpose of this utility model is to provide a kitchen cleaning module.
[0005] The technical solution adopted by this utility model is as follows: a kitchen cleaning module, including a water faucet, a cold water component, a foaming component, and a bubble pipe. The foaming component includes a foam maker and a push-button switch. The push-button switch controls the water flow from the second cold water pipe into the foam maker. The foam maker is equipped with a timer that controls the foam maker to automatically shut off after being turned on for a period of time. The bubble pipe includes a bubble valve, a water outlet pipe, and a bubble outlet pipe. The two inlets of the bubble valve are respectively connected to the water outlet pipe and the liquid outlet of the foam maker, and the outlet is connected to the bubble outlet pipe. The cold water component includes a first cold water pipe and a second cold water pipe. The first cold water pipe is connected to the inlet of the water outlet pipe, and the inlet of the water faucet is connected to the bubble outlet pipe.
[0006] In some embodiments, the system includes a hot water pipe and a mixing chamber. The mixing chamber includes a temperature control switch, a cold water outlet, a hot water outlet, and a return port. The cold water outlet is connected to the outlet of a first cold water pipe, the hot water outlet is connected to the outlet of the hot water pipe, and the return port is connected to the inlet of the outlet pipe. The temperature control switch is used to control the flow rates of the cold water outlet and the hot water outlet.
[0007] In some embodiments, the cold water assembly includes a main cold water pipe, which allows clean water to flow into a first cold water pipe and a second cold water pipe via a cold water tee.
[0008] In some embodiments, the foaming assembly includes a flow switch and a foaming pipe. The foaming machine is equipped with a flow switch at its inlet. The clean water from the second cold water pipe passes through the push-button switch and the flow switch in sequence. The flow switch controls the foaming machine to start working. The outlet of the foaming machine is connected to the inlet of the foaming pipe, and the outlet of the foaming pipe is connected to the inlet of the bubble valve.
[0009] In some embodiments, the faucet is equipped with a bubble button, which is used to control the opening and closing of the button switch.
[0010] In some embodiments, the bubble button is located at one end of the faucet near the water outlet.
[0011] In some embodiments, the faucet is a pull-out faucet.
[0012] The beneficial effects of this utility model are as follows:
[0013] This kitchen cleaning module features a timed shutdown function for the foam maker. Clean water flushes the pipes through which the bubbles flow, reducing bubble residue. Since the water outlet and foam maker share the same foam outlet pipe, the water outlet also flushes away any remaining bubbles. Furthermore, because the soap and water flow out through the foam maker, the utilization rate of the soap is increased, reducing the amount of soap washed away. Bubbles are obtained by pressing a physical button, enhancing the convenience of soap dispensing without requiring repeated contactless operations. This structure is particularly suitable for tasks requiring high-volume cleaning. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the structural connection of this utility model;
[0015] Figure 2 This is a schematic diagram of the structural connections of the foaming assembly;
[0016] Figure 3 This is a schematic diagram of the overall structure of this utility model;
[0017] The labels and names in the diagram correspond as follows: 1. Water tap; 2. Mixing chamber; 3. Cold water assembly; 4. Hot water pipe; 5. Foaming assembly; 6. Bubble pipe; 11. Bubble button; 21. Temperature control switch; 31. Main cold water pipe; 32. First cold water pipe; 33. Cold water tee pipe; 34. Second cold water pipe; 51. Foam maker; 52. Soap liquid storage chamber; 54. Foaming pipe; 61. Bubble valve; 62. Water outlet pipe; 63. Bubble outlet pipe. Detailed Implementation
[0018] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0019] Please see Figure 1 This utility model provides a technical solution: a kitchen cleaning module, including a water faucet 1, a mixing chamber 2, a cold water component 3, a hot water pipe 4, a foaming component 5, and a bubble pipe 6.
[0020] Please see Figure 3 The cold water assembly 3 includes a main cold water pipe 31, a first cold water pipe 32, a cold water tee pipe 33, and a second cold water pipe 34. The cold water tee pipe 33 is a one-in-two-out tee pipe, through which the main cold water pipe 31 directs water into the first cold water pipe 32 and the second cold water pipe 34. The outlet of the first cold water pipe 32 is connected to the mixing chamber 2, and the hot water pipe 4 is also connected to the mixing chamber 2. The outlet of the second cold water pipe 34 is connected to the inlet of the foaming assembly 5.
[0021] Please see Figure 2 The foaming assembly 5 includes a foaming machine 51, a soap solution storage chamber 52, a water flow switch, and a foaming pipe 54. The foaming machine 51 has a push-button switch and a water flow switch at its inlet. The outlet of the second cold water pipe 34 is connected to the inlet of the foaming machine 51. The second cold water pipe 34 passes through the push-button switch and the water flow switch in sequence. The outlet of the foaming machine 51 is connected to the inlet of the foaming pipe 54. When the water flow switch detects water flowing into the foaming machine 51, the foaming machine 51 starts working, and the foamed bubbles flow out from the foaming pipe 54. Therefore, the water flow switch controls the foaming machine 51 to start working. Specifically, the water flow switch can be a reed switch. The soap solution storage chamber 52 is detachably connected to the foaming machine 51, allowing for convenient addition of soap solution to the storage chamber 52 as needed. In this embodiment, the foam maker 51 is equipped with a timer. The timer controls the foam maker 51 to turn on for a period of time and then automatically turn off. The foam maker 51 adjusts the foaming time through the timer. The foam maker 51 will foam for a limited time after it is turned on. When the limited time is reached, the foam maker 51 stops working. Clean water flows out of the foam maker 51 but does not foam, thereby flushing the pipes inside the foam maker 51. For details, please refer to the foaming principle in CN 223041423U.
[0022] Please see Figure 3The bubble pipe 6 includes a bubble valve 61, a water outlet pipe 62, and a bubble outlet pipe 63. The inlet of the water outlet pipe 62 is connected to the mixing chamber 2, and the outlet of the bubble outlet pipe 63 is connected to the inlet of the water faucet 1. The outlet of the bubble-making pipe 54 is connected to the bubble outlet pipe 63 through the bubble valve 61. The bubble valve 61 is a three-way valve with two inlets and one outlet. One inlet of the bubble valve 61 is connected to the water outlet pipe 62, the other inlet is connected to the bubble-making pipe 54, and the outlet is connected to the inlet of the bubble outlet pipe 63.
[0023] Please see Figure 3 The mixing chamber 2 includes a temperature control switch 21, a cold water outlet, a hot water outlet, and a return port. The cold water outlet is connected to the outlet of the first cold water pipe 32, the hot water outlet is connected to the outlet of the hot water pipe 4, and the return port is connected to the inlet of the outlet pipe 62. The temperature control switch 21 is used to control the flow rate of the cold water outlet and the hot water outlet. Adjusting the flow rate of the cold water outlet and the hot water outlet using the temperature control switch 21 is existing technology and will not be described in detail here. When the temperature control switch 21 is turned on, the first cold water pipe 32 and the hot water pipe 4 enter the mixing chamber 2 for mixing. The mixed water flows into the outlet pipe 62 through the return port. The water in the outlet pipe 62 passes through the bubble outlet pipe 63 and finally flows out from the outlet of the faucet 1.
[0024] The faucet 1 is equipped with a bubble button 11, which is located at the end of the faucet 1 near the water outlet. For easy observation, the bubble button 11 is positioned on the side of the faucet 1 closest to the user. The bubble button 11 controls the opening and closing of the button switch, thereby controlling the flow of water from the second cold water pipe 34 into the bubble maker 51. When the user presses the bubble button 11, cold water flows from the second cold water pipe 34 through the flow switch. Since the flow switch detects the water flow, it opens when the flow reaches a certain level, allowing water to enter the bubble maker 51 and start operating. Therefore, the bubble button 11 and the flow switch provide dual control over the operation of the bubble maker 51, ensuring that the bubble maker 51 can still operate even when there is a water shortage.
[0025] In order to further improve the rinsing range of the water tap 1, in this embodiment, the water tap 1 is a pull-out tap.
[0026] The usage process of this utility model is as follows: During use, press the bubble button 11, the bubble-making component 5 works, and the bubbles flow from the bubble-making pipe 54 to the bubble-discharging pipe 63, and finally flow out from the water outlet faucet 1. Since the bubble-making component 5 continuously produces bubbles, the bubbles will continue to flow out until the time limit is reached. The bubble-making machine 51 stops producing bubbles, but clean water still flows out through the bubble-making machine 51, which can rinse the bubbles in the bubble-making machine 51 and the bubble-making pipe 54 until the bubble button 11 is pressed to stop.
[0027] Press the bubble button 11 to stop, turn on the temperature control switch 21, and the clean water after the cold and hot water are mixed flows through the water outlet pipe 62 and then through the bubble outlet pipe 63. It can still flush away the residual bubbles in the bubble outlet pipe 63 and continuously output clean water.
[0028] The above usage process is convenient for daily kitchen use habits: first use bubbles to continuously wash the kitchen utensils, and then use clean water to rinse them.
[0029] Finally, it should be noted that the above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.
Claims
1. A kitchen cleaning module, characterized in that, The device includes a water tap (1), a cold water assembly (3), a foam-making assembly (5), and a bubble pipe (6). The foam-making assembly (5) includes a foam maker (51) and a push-button switch. The push-button switch controls the flow of water from the second cold water pipe (34) into the foam maker (51). The foam maker (51) is equipped with a timer that controls the foam maker (51) to automatically shut off after being turned on for a period of time. The bubble pipe (6) includes a bubble valve (61), a water outlet pipe (62), and a bubble outlet pipe (63). The two inlets of the bubble valve (61) are connected to the water outlet pipe (62) and the liquid outlet of the foam maker (51), respectively, and the outlet is connected to the bubble outlet pipe (63). The cold water assembly (3) includes a first cold water pipe (32) and a second cold water pipe (34). The first cold water pipe (32) is connected to the inlet of the water outlet pipe (62), and the inlet of the water tap (1) is connected to the bubble outlet pipe (63).
2. The kitchen cleaning module according to claim 1, characterized in that, It includes a hot water pipe (4) and a mixing chamber (2). The mixing chamber (2) includes a temperature control switch (21), a cold water outlet, a hot water outlet and a return port. The cold water outlet is connected to the outlet of the first cold water pipe (32), the hot water outlet is connected to the outlet of the hot water pipe (4), and the return port is connected to the inlet of the outlet pipe (62). The temperature control switch (21) is used to control the flow rate of the cold water outlet and the hot water outlet.
3. A kitchen cleaning module according to claim 1, characterized in that, The cold water assembly (3) includes a cold water main pipe (31), which allows clean water to flow into the first cold water pipe (32) and the second cold water pipe (34) through a cold water tee pipe (33).
4. A kitchen cleaning module according to claim 1, characterized in that, The foam-making component (5) includes a flow switch and a foam-making pipe (54). The foam-making machine (51) is equipped with a flow switch at its inlet. A push-button switch and a flow switch are sequentially installed on the water flow path of the second cold water pipe (34). The flow switch is used to control the foam-making machine (51) to start working. The outlet of the foam-making machine (51) is connected to the inlet of the foam-making pipe (54). The outlet of the foam-making pipe (54) is connected to the inlet of the bubble valve (61).
5. A kitchen cleaning module according to claim 1, characterized in that, The faucet (1) is equipped with a bubble button (11), which is used to control the opening and closing of the button switch.
6. A kitchen cleaning module according to claim 5, characterized in that, The bubble button (11) is located at one end of the faucet (1) near the water outlet.
7. A kitchen cleaning module according to claim 1, characterized in that, The faucet (1) is a pull-out faucet.
Citation Information
Patent Citations
Foaming device, bathing foam machine and bathing system
CN223041423U