Water inlet terminal device with sensing function for tea bar pot
By designing the water inlet terminal device for tea bar kettle, the inconvenience and misjudgment of the water inlet mechanism and water level sensing mechanism of the tea bar machine are solved, and the accuracy of simplified installation, reduced costs and improved water level detection is achieved.
Patent Information
- Application Number
- CN202421467450.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-25
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2034-06-25
AI Technical Summary
The water inlet mechanism and water level sensing mechanism of the existing tea bar machine each perform their duties, which leads to inconvenient installation, high space consumption, high cost and difficulty in disassembly, and is prone to misjudgment of water level due to collision between water flow and water surface.
The water inlet terminal device for tea bar pot with induction function is adopted, including glass pot, sealing ring, water inlet pipe head, probe pin, pot cladding, handle, water inlet pipe, probe plug and compression ring. The probe pin is protected by the sealing ring and water inlet pipe head, and the synchronous control of water inlet and water level detection is achieved, simplifying the installation and disassembly process.
The accuracy of water inlet and water level detection is achieved, the installation and disassembly process is simplified, the cost is reduced, and the water level misjudgment is avoided, which improves the user experience.
Smart Images

Figure CN223275303U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of teaware and drinking utensils, in particular to a water inlet terminal device for a teapot with an induction function. Background Art
[0002] The technical solutions typically used in tea bar electric kettles include bottom water inlet, independent high and low water level sensors, and high-cost bottom water inlet thermostats. This makes water inlet unintuitive, and the drawback is that these two separate mechanisms are inconvenient to install, taking up space and manpower, and increasing costs. Disassembly is also difficult, and installation is challenging. Utility Model Content
[0003] In response to the above technical problems, the utility model provides a water inlet terminal device for a tea bar pot with a sensing function to solve the problems that the water inlet mechanism and the water level sensing mechanism of a general tea bar machine each perform their own functions, which easily causes the water flow to collide with the water surface and cause water to splash onto the water level detection component, resulting in water level misjudgment; and the water inlet mechanism and the water level sensing mechanism each perform their own functions, which is inconvenient to install, occupies space and manpower, is costly, inconvenient to disassemble, and difficult to install.
[0004] The utility model is realized through the following technical solutions:
[0005] A water inlet terminal device for a teapot with an induction function, comprising: a glass pot, a sealing ring, a water inlet pipe head, a probe needle, a pot covering, a handle, a water inlet pipe, a probe plug, a handle cover, and a compression ring;
[0006] The cylindrical glass pot is provided with a through hole on the top, which is the water inlet of the glass pot; the sealing ring is made of high-elastic silicone material. The use of silicone material can ensure the environmental performance of the material while effectively sealing. The food-grade silicone material can ensure that no harmful substances are released in a high temperature environment to affect the water quality. The sealing ring is wrapped around the through hole of the glass pot to ensure the sealing of the edge of the through hole of the glass pot. The sealing ring extends downward from the inner wall of the glass pot to separate the probe needle and prevent the probe needle from contacting the inner wall of the glass pot and affecting the effect of detecting the water level; the water inlet pipe head is round In the straight pipe state, the water inlet pipe head is wrapped by a sealing ring and inserted into the through-hole on the glass pot, so as to achieve the function of penetrating the inside and outside of the glass pot, providing the premise for the glass pot to be connected to the water inlet pipe. One side located inside the glass pot extends downward and on both sides along the wall structure of the glass pot, which is used to protect the probe needle so that the probe needle is not completely exposed at the side end face of the glass pot, thereby affecting the effect of the probe needle in detecting the water level; the probe needle is in a thin tube state, and the outer end face of the probe needle is wrapped and protected in the glass pot by the sealing ring and the water inlet pipe head, and the end of the probe needle extends out of the sealing ring and the inlet pipe head. The protective layer of the water pipe head pops out a needle to monitor the water level in the glass pot. The probe needle enters the glass pot along with the water inlet pipe head through the round hole in the glass pot. The probe needle is wrapped by the sealing ring and the water inlet pipe head and is set to enter the glass pot and extend downward along the wall of the glass pot to detect the water level; the pot covering is a non-metallic heat-insulating plastic material, which keeps the drinking water in the glass pot warm and prevents the glass pot body from overheating and scalding, effectively improving the user experience. The pot covering is wrapped and set on the outer end face of the glass pot to achieve the purpose of overall insulation and protection of the glass pot body. The layer of wrapping is set on the outer part of the pot at the water inlet pipe head and extends out a handle downward along the glass pot body; the handle is a cylindrical slotted handle structure, which is used for the installation of the water inlet pipe, and the handle extends from the through-circular hole of the glass pot and extends downward to facilitate grasping; the water inlet pipe is in a hose state, and the front end of the water inlet pipe is set on the water inlet pipe head extending out of the through-circular hole of the glass pot to realize a through water inlet channel, and the water inlet pipe extends downward along the cylindrical slot of the handle; the probe plug is set at the tail end of the probe needle located outside the glass pot, and is used to control the opening and closing of the water inlet through the probe needle.
[0007] Preferably, the handle cover is a cylindrical slotted handle structure, and the handle cover is snap-fitted to the upper part of the handle. The upper and lower parts of the handle cover and the handle cooperate to form a complete handle for gripping the pot.
[0008] Preferably, the clamping ring is in a circular shape, which is used to fix the probe needle stably and keep the probe needle from deviating from the proper position. The clamping ring is set on the water inlet pipe head of the outer part of the glass pot, and the tail of the probe needle outside the glass pot is fixedly connected by the clamping ring. The contact connection between the probe plug and the probe needle is fixedly connected by the clamping ring. The clamping ring keeps the probe plug and the probe needle tightly connected, which is beneficial for the probe needle to effectively control the probe plug for a long time.
[0009] Preferably, the probe plug can control the water inlet switch of the glass pot through the probe needle. Drinking water enters the glass pot through the water inlet pipe. When the drinking water in the glass pot reaches a reasonable position, it contacts the probe needle and opens. The opened probe needle controls the probe plug, and the probe plug controls to stop the water inlet.
[0010] Beneficial effects: This solution uses a probe plug located at the water inlet pipe head to effectively control the probe needle to detect the water level in the glass pot, and timely control the water inlet and water stop. The extension of the sealing ring and the extension of the water inlet pipe head to wrap the probe needle is not easy to be accidentally touched by the water splash, causing the probe needle to open and the water level not to reach the specified position and stop the water supply. The operation is simple, fast and reliable, and it avoids the collision of water flow and water surface causing water to splash onto the water level detection component and cause water level misjudgment, ensuring the accuracy and effectiveness of water level detection by the water level detection component, and realizing synchronous control of the water inlet mechanism and the water level sensing mechanism. It has the advantages of easy installation, low cost, easy disassembly, and easy installation. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] Figure 1 It is a schematic diagram of the overall structure of the main body of the utility model.
[0012] Figure 2 It is a schematic diagram of the overall structure of the utility model.
[0013] Figure 3 It is a schematic plan view of the overall structure of the utility model.
[0014] In the figure: glass pot 1, sealing ring 2, water inlet pipe head 3, probe needle 4, pot covering 5, handle 6, water inlet pipe 7, probe plug 8, handle cover 9, and clamping ring 10. DETAILED DESCRIPTION
[0015] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0016] The cylindrical glass pot 1 is provided with a through hole on the upper part, which is the water inlet of the glass pot 1; the sealing ring 2 is made of high-elastic silicone material. The use of silicone material can ensure the environmental performance of the material while effectively sealing. The food-grade silicone material can ensure that no harmful substances are released to affect the water quality in a high temperature environment. The sealing ring 2 is wrapped around the through hole of the glass pot 1 to ensure the sealing of the edge of the through hole of the glass pot 1. The sealing ring 2 extends downward from the inner wall of the glass pot 1 to space the probe needle 4 to prevent the probe needle 4 from contacting the inner wall of the glass pot 1 and affecting the effect of detecting the water level; the water inlet pipe head 3 is a circular straight pipe The water inlet pipe head 3 is wrapped by the sealing ring 2 and inserted into the through-hole on the glass pot 1, so as to achieve the function of penetrating the inside and outside of the glass pot 1, and provide the premise for the glass pot 1 to be connected to the water inlet pipe 7. One side located inside the glass pot 1 extends downward and on both sides along the wall structure of the glass pot 1, which is used to protect the probe needle 4, so that the probe needle 4 is not completely exposed on the side end face of the glass pot 1, thereby affecting the effect of the probe needle 4 on detecting the water level; the probe needle 4 is in a thin tube state, and the outer end face of the probe needle 4 is wrapped and protected in the glass pot 1 by the sealing ring 2 and the water inlet pipe head 3, and the end of the probe needle 4 extends out of the sealing ring 2 and the water inlet pipe head 3. The protective layer of the pipe head 3 pops out the needle to monitor the water level in the glass pot 1. The probe needle 4 enters the interior of the glass pot 1 along the water inlet pipe head 3 through the through-hole of the glass pot 1. The probe needle 4 is wrapped by the sealing ring 2 and the water inlet pipe head 3 and is set to enter the interior of the glass pot 1 and extend downward along the wall of the glass pot 1 to detect the water level; the pot covering 5 is a non-metallic heat-insulating plastic material, which keeps the drinking water in the glass pot 1 warm and prevents the glass pot body from overheating and scalding, effectively improving the user experience. The pot covering 5 is wrapped and set on the outer end surface of the glass pot 1 to achieve the purpose of overall insulation and protection of the glass pot body. 5 wraps around the outer part of the pot set on the water inlet pipe head 3 and extends out with the handle 6 downward along the pot body of the glass pot 1; the handle 6 is a cylindrical slotted handle structure, used for the installation of the water inlet pipe 7, the handle 6 extends from the through-hole of the glass pot 1 and extends downward, which is convenient for grasping; the water inlet pipe 7 is in a hose state, and the front end of the water inlet pipe 7 is set on the water inlet pipe head 3 extending from the through-hole of the glass pot 1 to realize the through-water inlet channel, and the water inlet pipe 7 extends downward along the cylindrical slot of the handle 6; the probe plug 8 is set at the tail end of the probe needle 4 located outside the glass pot 1, and is used to control the opening and closing of the water inlet through the probe needle 4.
[0017] Furthermore, the handle cover 9 is a cylindrical slotted handle structure, and the handle cover 9 is snap-fitted onto the upper portion of the handle 6 . The upper and lower cooperation of the handle cover 9 and the handle 6 forms a complete pot grip handle.
[0018] Furthermore, the clamping ring 10 is in a circular ring state, which is used to fix the probe needle 4 stably and keep the probe needle 4 from deviating from its proper position. The clamping ring 10 is sleeved on the water inlet pipe head 3 of the outer part of the glass pot 1, and the tail of the probe needle 4 outside the glass pot 1 is fixedly connected by the clamping ring 10. The contact connection between the probe plug 8 and the probe needle 4 is fixedly connected by the clamping ring 10. The clamping ring 10 keeps the probe plug 8 and the probe needle 4 tightly connected, which is beneficial for the probe needle 4 to effectively control the probe plug 8 for a long time.
[0019] Furthermore, the probe plug 8 can control the water inlet switch of the glass pot 1 through the probe needle 4. The drinking water enters the glass pot 1 through the water inlet pipe 7. The drinking water in the glass pot 1 reaches a reasonable position and contacts the probe needle 4 to open. The opened probe needle 4 controls the probe plug 8, and the probe plug 8 controls to stop the water inlet.
Claims
1. A water inlet terminal device for a teapot with an induction function, comprising: A glass kettle (1), a sealing ring (2), a water inlet pipe head (3), a probe needle (4), a kettle coating (5), a handle (6), a water inlet pipe (7), and a probe plug (8), characterized in that a through-hole is provided on the upper part of the cylindrical glass kettle (1); the sealing ring (2) is made of high-elastic silicone material, the sealing ring (2) is wrapped and arranged on the through-hole of the glass kettle (1), and extends downward on the inner wall of the glass kettle (1); the water inlet pipe head (3) is in a circular straight tube state, the water inlet pipe head (3) is wrapped by the sealing ring (2) and inserted into the through-hole on the glass kettle (1), wherein one side located inside the glass kettle (1) extends downward and has a sheet shape on both sides along the kettle wall structure of the glass kettle (1); the probe needle (4) is in a thin tube state, and enters the interior of the glass kettle (1) along the water inlet pipe head (3) from the through-hole of the glass kettle (1), specifically The probe needle (4) is wrapped by the sealing ring (2) and the water inlet pipe head (3) and is arranged to enter the interior of the glass pot (1) and extend downward along the wall of the glass pot (1); the pot covering (5) is a non-metallic heat-insulating plastic material, and the pot covering (5) is wrapped and arranged on the outer end surface of the glass pot (1). At the same time, the pot covering (5) wraps the pot outer part set on the water inlet pipe head (3) and extends out a handle (6) that follows the pot body of the glass pot (1) downward; the handle (6) is a cylindrical slotted handle structure, extending from the through-hole of the glass pot (1) and extending downward; the water inlet pipe (7) is in a hose state, and the front end of the water inlet pipe (7) is arranged on the water inlet pipe head (3) extending from the through-hole of the glass pot (1) and extending downward along the cylindrical slot of the handle (6); the probe plug (8) is arranged at the tail end of the probe needle (4) located outside the glass pot (1).
2. The water inlet terminal device for a teapot with an induction function according to claim 1 is characterized in that: The handle cover (9) is a cylindrical slotted handle structure, and the handle cover (9) is buckled and arranged on the upper part of the handle (6).
3. The water inlet terminal device for a teapot with an induction function according to claim 1 is characterized in that: The clamping ring (10) is in a circular ring state and is sleeved on the water inlet pipe head (3) of the outer part of the glass pot (1). The tail of the probe needle (4) outside the glass pot (1) is fixedly connected by the clamping ring (10), and the contact connection between the probe plug (8) and the probe needle (4) is fixedly connected by the clamping ring (10).
4. The water inlet terminal device for a teapot with an induction function according to claim 1 is characterized in that: The probe plug (8) can control the water inlet switch of the glass pot (1) through the probe needle (4).