Turnover cup cover base structure and using method thereof
The detachable flip-top structure and modular electric locking system solve the problems of high cost and compatibility when preventing accidental touches and changing the appearance of flip-top cup lids, achieving a safe and convenient appearance change.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- DONGGUAN HENGMING ELECTRONICS CO LTD
- Filing Date
- 2026-01-29
- Publication Date
- 2026-04-14
AI Technical Summary
Existing flip-top cup lids suffer from high costs, complicated assembly, and difficulties in adapting and updating when it comes to preventing accidental touches and changing the appearance.
It adopts a detachable flip-top structure, combined with an electric locking module, a verification module and a power storage module. It unlocks via fingerprint recognition, realizing a modular design that is suitable for cup lids with different appearances.
It achieves high security and convenient appearance replacement of the flip lid, reduces assembly and update costs, and improves the adaptability and security of the cup lid.
Smart Images

Figure CN121845401A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of cup lid technology, and more specifically, to a flip-top cup lid base structure and its usage method. Background Technology
[0002] Flip-top cup lids on the market typically consist of a flip-top lid and a lid body. The lid body has a drinking spout, and one end of the flip-top lid is rotatably mounted on the lid body. The flip-top lid and the lid body are connected by a spring-loaded latch. When the flip-top lid and the lid body are in place, the drinking spout can be sealed.
[0003] To prevent accidental opening of the flip cover during daily use by anyone other than the user or trusted individuals, fingerprint unlocking is currently used on the market. This effectively prevents accidental opening by external force or by people not on the whitelist, providing high security. However, most fingerprint cup covers currently use integrated assembly, which is troublesome to glue and assemble, resulting in higher costs. Furthermore, it is difficult to adapt and update the product when replacing it with a new design. Summary of the Invention
[0004] The purpose of this invention is to provide a flip-top cup lid base structure and its usage method in order to solve the above-mentioned problems.
[0005] This invention provides a flip-top lid base structure, comprising: A flip cover, the flip cover including a base; An electric locking module mounted on a base includes a motor detachably mounted on the base, a push block connected to the output shaft of the motor, a transverse shaft slidably connected to the base, a fixed shaft movably connected to the base, a torsion spring movably connected to the fixed shaft, and a hook-shaped fastener. The arc end of the hook-shaped fastener is movably connected to the transverse shaft.
[0006] As a further optimization of the present invention, it also includes: A verification module is provided on the base, which is used to acquire user information and transmit control signals to the electric latch module; A power storage module is mounted on the base, and both the verification module and the electric latch module are electrically connected to the power storage module. The flip cover also includes a detachable outer cover body connected to the base and a sealing head. A sealing element is provided in the gap between the outer cover body and the base. The outer cover body is provided with a mounting hole 1 for the energy storage module and a mounting hole 2 for the verification module.
[0007] As a further optimization of the present invention, the verification module includes an integrated circuit module mounted on a base, a fingerprint sensor, and a fingerprint sensor cable electrically connected between the integrated circuit module and the fingerprint sensor. The base is provided with a mounting slot one adapted to the integrated circuit module and a mounting slot two adapted to the fingerprint sensor.
[0008] As a further optimization of the present invention, the energy storage module includes a charging terminal mounted on a base and a battery electrically connected to an integrated circuit module. The charging terminal is electrically connected to the integrated circuit module, and the base is provided with a mounting slot three that is adapted to the charging terminal.
[0009] As a further optimization of the present invention, the base is provided with a motor mounting hole adapted to the motor and a transverse groove adapted to the transverse axis, and a limiting block is provided on the base. One end of the torsion spring contacts the hook-shaped fastener, and the other end contacts the limiting block. When the push block rotates around the motor output shaft, it is used to drive the transverse axis to move toward one end of the torsion spring in the transverse groove.
[0010] As a further optimization of the present invention, it also includes a cup lid, which is movably connected to a flip lid. A drinking spout is provided in the middle of the cup lid, and a limiting block two and a telescopic drinking mechanism are connected to the cup lid. The telescopic drinking mechanism is coaxially arranged with the drinking spout. The limiting block two is provided with a limiting groove that cooperates with the hook-shaped part of the hook-shaped fastener. The telescopic drinking mechanism includes a telescopic drinking tube assembly, a one-way pressure relief assembly disposed on the telescopic drinking tube assembly, and a fast-discharge and slow-inhale assembly. The one-way pressure relief assembly is used to connect the inner ring area of the telescopic drinking tube assembly to the internal space of the telescopic drinking tube assembly in one direction. The two ends of the fast-discharge and slow-inhale assembly are respectively connected to the internal space of the telescopic drinking tube assembly and its outer ring area.
[0011] As a further optimization of the present invention, the telescopic drinking tube assembly includes a ring body one, a ring body two coaxially arranged with the ring body, a telescopic tube one and a telescopic tube two connected between the ring body one and the ring body two, and a plurality of telescopic support rods and springs one. A sealed chamber is formed between the ring body one, the ring body two, the telescopic tube one and the telescopic tube two, and the plurality of telescopic support rods and springs one are all located in the sealed chamber.
[0012] As a further optimization of the present invention, the one-way pressure relief assembly includes a cavity one disposed on the ring body two, a limiting ring and a limiting frame fixedly connected to the inner wall of the cavity one, a square slide rod slidably connected to the limiting frame, a sealing plate connected to one end of the square slide rod, and a spring two connected between the limiting frame and the sealing plate. The diameter of the sealing plate is larger than the inner diameter of the limiting ring, and the limiting ring is located at the junction of the cavity one and the inner circular surface of the ring body two.
[0013] As a further optimization of the present invention, the rapid expulsion and slow absorption assembly includes a second cavity on the first ring body, a partition plate fixedly connected to the inner wall of the second cavity, a plurality of air holes on the partition plate, and a plastic sheet connected to the air holes. The plastic sheet is fixedly connected to the air holes on only one side, and the plastic sheet only covers part of the air holes. The plastic sheet is located on the end face of the partition plate near the outer circular surface of the first ring body.
[0014] A method of using the flip-top lid base structure as described above includes the following steps: Step 1: Obtain the user's fingerprint information through the verification module and determine whether it is on the whitelist. If so, send an unlock signal to the electric lock module. Step 2: After receiving the unlock signal, the electric latch module operates to the unlock state, and after a preset time, it resets to the locked state.
[0015] The beneficial effects of this invention are as follows: The flip cover of this invention adopts a detachable assembly method. When replacing the appearance components, the internal integrated electronic structure can be applied to any shape of shell to build an integrated electronic and mechanical structure module, which solves the difficulties in the market in terms of technical breakthroughs and waterproof and dustproof structure integration. The cup lid shape can be changed at will. The modular design can shorten the cup lid design process. If a new customer changes the appearance shape, the base integration can be applied immediately, saving the cost of controlling key technologies. Attached Figure Description
[0016] Figure 1 This is a view showing the cup lid and flip cover of the present invention in action; Figure 2 This is a view showing the cooperation of the base, verification module, energy storage module, and electric locking module of the present invention; Figure 3 This is a view showing the cooperation between the base and the electric locking module of the present invention; Figure 4 This is a structural schematic diagram of the electric locking module of the present invention; Figure 5 This is a view showing the cup lid and the telescopic drinking mechanism of the present invention in action; Figure 6 This is a schematic diagram of the telescopic drinking mechanism of the present invention; Figure 7 This is the invention Figure 6 Enlarged view of point A in the middle; Figure 8 This is the invention Figure 6 A magnified view of point B in the middle.
[0017] In the diagram: 1. Cup lid; 101. Drinking spout; 2. Flip lid; 201. Base; 2010. Motor mounting hole; 2011. Horizontal sliding groove; 2012. Limiting block one; 202. Outer cover; 203. Sealing head; 3. Verification module; 301. Integrated circuit module; 302. Fingerprint sensor; 303. Fingerprint sensor cable; 4. Power storage module; 401. Charging terminal; 402. Battery; 5. Electric locking module; 501. Motor; 502. Push block; 503. Horizontal sliding axis; 504. Fixed... 505. Fixed axis; 506. Torsion spring; 507. Hook-shaped fastener; 508. Limiting block two; 6. Telescopic drinking mechanism; 609. Ring body one; 600. Ring body two; 601. Telescopic tube one; 602. Telescopic tube two; 603. Telescopic support rod; 604. Spring one; 605. Cavity one; 606. Limiting ring; 607. Limiting frame; 618. Sealing plate; 619. Square slide rod; 610. Spring two; 611. Cavity two; 612. Partition plate; 613. Air hole; 614. Plastic sheet. Detailed Implementation
[0018] The subject matter described herein will now be discussed with reference to exemplary embodiments. It should be understood that these embodiments are discussed merely to enable those skilled in the art to better understand and implement the subject matter described herein. Furthermore, features described in some examples may be combined in other examples.
[0019] like Figures 1 to 3 As shown, a flip-top lid base structure includes: Flip cover 2, flip cover 2 includes base 201; Electric locking module 5 is installed on base 201; The verification module 3, located on the base 201, is used to acquire user information and transmit control signals to the electric latch module 5. The energy storage module 4, the verification module 3, and the electric latch module 5, which are located on the base 201, are all electrically connected to the energy storage module 4.
[0020] It should be noted that the above-mentioned flip-top lid base structure includes the following steps when in use: Step 1: Obtain the user's fingerprint information through the verification module 3 and determine whether it is on the whitelist. If so, send an unlock signal to the electric lock module 5. Step 2: After receiving the unlock signal, the electric locking module 5 operates to the unlocked state. In the unlocked state, the electric locking module 5 can separate from any mating cup lid 1, so that the entire flip cover 2 is no longer limited to cover the cup lid 1, and the flip cover 2 can rotate around the movable connection with the cup lid 1. The movable connection between the flip cover 2 and the cup lid 1 is provided with a rotating opening spring. Therefore, when the electric locking module 5 separates from any mating cup lid 1, the flip cover 2 can be flipped to the maximum angle for user convenience. After a preset time, it resets to the locked state. When closing, the user only needs to cover the cup lid 1 with the flip cover 2 again, and the electric locking module 5 can reconnect with the cup lid 1.
[0021] In an optional embodiment of the invention, such as Figures 1 to 2 As shown, the flip cover 2 also includes an outer cover 202 detachably connected to the base 201 and a sealing head 203. A sealing element is provided in the gap between the outer cover 202 and the base 201. The outer cover 202 is provided with a mounting hole 1 for the energy storage module 4 and a mounting hole 2 for the verification module 3.
[0022] It should be noted that, as mentioned above, the outer cover 202 is detachably connected to the base 201. Therefore, when the appearance of the outer cover 202 is changed or its structural shape is altered, it can be easily assembled with the base 201 without redesigning and reassembling the base 201 and the verification module 3, the power storage module 4, and the electric latch module 5 installed on the base 201. This greatly saves the design cost of the internal circuit and mechanical integration modules. It is only necessary to open corresponding mounting holes one and two on the outer cover 202 for the verification module 3 and the power storage module 4. Mounting hole one is for the installation of the charging module of the power storage module 4, and mounting hole two is for the installation of the fingerprint collection module of the verification module 3 for collecting user fingerprint information. Both are for exposing the above modules to the outside of the outer cover 202, so that users can directly contact them or connect them to the charger.
[0023] In an optional embodiment of the invention, such as Figures 1 to 4 As shown, the verification module 3 includes an integrated circuit module 301, a fingerprint sensor 302, and a fingerprint sensor cable 303 electrically connected between the integrated circuit module 301 and the fingerprint sensor 302, all mounted on the base 201. The base 201 is provided with a mounting slot 1 adapted to the integrated circuit module 301 and a mounting slot 2 adapted to the fingerprint sensor 302.
[0024] It should be noted that, as mentioned above, when the user opens the flip cover 2, the finger corresponding to the fingerprint registered in the system needs to be pressed on the fingerprint sensor 302. The fingerprint sensor 302 collects the current user information and transmits it to the integrated circuit module 301. The integrated circuit module 301 can compare the current user fingerprint information with the whitelist fingerprint information registered in the system. If the comparison is consistent, the integrated circuit module 301 transmits an unlock signal to the electric latch module 5, thereby controlling the electric latch module 5 to switch to the unlock state. If it is not whitelist fingerprint information, it cannot be opened, thus ensuring high security.
[0025] In an optional embodiment of the invention, such as Figures 1 to 4 As shown, the energy storage module 4 includes a charging terminal 401 mounted on the base 201 and a battery 402 electrically connected to the integrated circuit module 301. The charging terminal 401 is electrically connected to the integrated circuit module 301, and the base 201 is provided with a mounting slot 3 adapted to the charging terminal 401.
[0026] It should be noted that, as mentioned above, charging can be performed by inserting the charger plug into the battery 402. The outer cover 202 is also provided with a sealing plug to seal the battery 402, so that the battery 402 can be sealed when not charging. The charging terminal 401 can supply power to the integrated circuit module 301 and the electric latch module 5.
[0027] In an optional embodiment of the invention, such as Figures 2 to 4 As shown, the electric locking module 5 includes a motor 501 detachably mounted on the base 201, a push block 502 connected to the output shaft end of the motor 501, a transverse shaft 503 slidably connected to the base 201, a fixed shaft 504 movably connected to the base 201, a torsion spring 505 movably connected to the fixed shaft 504, and a hook-shaped fastener 506. The arc end of the hook-shaped fastener 506 is movably connected to the transverse shaft 503. The base 201 is provided with a motor mounting hole 2010 adapted to the motor 501 and a transverse groove 2011 adapted to the transverse shaft 503. The base 201 is provided with a limiting block 2012. One end of the torsion spring 505 contacts the hook-shaped fastener 506, and the other end contacts the limiting block 2012. When the push block 502 rotates around the output shaft of the motor 501, it is used to drive the transverse shaft 503 to move towards one end of the torsion spring 505 in the transverse groove 2011.
[0028] It should be noted that, as mentioned above, when the integrated circuit module 301 sends a control signal to the electric latch module 5, it can control the motor 501 to drive the push block 502 to rotate at a set angle according to the set program. When the push block 502 rotates, it contacts the transverse axis 503 and pushes it to move along the transverse groove 2011. During this process, the transverse axis 503 can drive the arc end of the hook-shaped latch 506, which is movably connected to it, to move synchronously. However, due to the limitation of the fixed axis 504, the hook-shaped latch 506 can only rotate around the fixed axis 504 during the movement of the transverse axis 503. When the fixed axis 504 rotates, it can remove the hook-shaped part from the corresponding limiting structure, thereby making the outer cover 202 no longer limited. The outer cover 202 rotates. When the outer cover 202 rotates to its maximum angle, the motor 501 rotates back, the push block 502 resets, and the transverse shaft 503 resets to its initial state under the elastic force of the torsion spring 505. When it is necessary to close the flip cover 2 onto the corresponding cup lid 1, it can be reset by pressing the flip cover 2. During this process, because the bottom wedge surface of the hook-shaped part of the hook-shaped fastener 506 contacts the corresponding limiting mechanism, the hook-shaped fastener 506 rotates around the fixed shaft 504 under the action of the resistance component. When the hook-shaped part of the hook-shaped fastener 506 is no longer restricted, it can reset under the action of the torsion spring 505 and make the hook-shaped part engage in the corresponding limiting mechanism, thereby realizing a mechanized limiting connection.
[0029] In an optional embodiment of the invention, such as Figures 4 to 6 As shown, it also includes a cup lid 1, which is movably connected to a flip lid 2. A drinking spout 101 is provided in the middle of the cup lid 1, and a limiting block 2 507 and a telescopic drinking mechanism 6 are connected to the cup lid 1. The telescopic drinking mechanism 6 is coaxially arranged with the drinking spout 101. The limiting block 2 507 is provided with a limiting groove that cooperates with the hook-shaped part of the hook-shaped fastener 506. The telescopic drinking mechanism 6 includes a telescopic drinking tube assembly, a one-way pressure relief assembly disposed on the telescopic drinking tube assembly, and a fast-discharge and slow-inhale assembly. The one-way pressure relief assembly is used to connect the inner ring area of the telescopic drinking tube assembly to the internal space of the telescopic drinking tube assembly in one direction. The two ends of the fast-discharge and slow-inhale assembly are respectively connected to the internal space of the telescopic drinking tube assembly and its outer ring area.
[0030] It should be noted that, as mentioned above, the hook-shaped part of the hook-shaped fastener 506 and the limiting groove of the limiting block 507 can engage in a limiting action, thereby allowing the flip cover 2 to be stably locked onto the cup lid 1. When the flip cover 2 is in the open state, the telescopic straw assembly returns to its original position and extends under its own elastic force, thus extending the length of the telescopic straw assembly for user convenience. This can be applied to limiting blocks 507 with different structures on the cup lid 1. When the flip cover 2 is in the closed state, the sealing head 203 on the flip cover 2 will press against the telescopic straw assembly, shortening it and sealing the upper opening of the telescopic straw assembly, thereby achieving a seal. The effect of the drinking spout 101 is that when used with the cup body, the temperature of the water in the cup body is not constant. When the temperature is high, the air pressure in the space between the cup body, the cup lid 1, and the telescopic drinking mechanism 6 increases. After the air pressure increases to the set value, the one-way pressure relief component can be opened. The one-way pressure relief component guides the high-pressure gas into the internal space of the telescopic drinking tube component in one direction, and slowly discharges it from the fast discharge and slow suction component to the gap between the base 201 and the cup lid 1, and escapes from the gap. This can effectively prevent the high-pressure gas jet or hot water splash caused by opening the flip cover 2 under high pressure, and further improve the safety of use.
[0031] In an optional embodiment of the invention, such as Figures 4 to 6 As shown, the telescopic drinking tube assembly includes a first ring 601, a second ring 602 coaxially arranged with the first ring 601, a first telescopic tube 603 and a second telescopic tube 604 connected between the first ring 601 and the second ring 602, and several telescopic support rods 605 and springs 606. A sealed chamber is formed between the first ring 601, the second ring 602, the first telescopic tube 603 and the second telescopic tube 604, and the several telescopic support rods 605 and springs 606 are all located in the sealed chamber.
[0032] It should be noted that, as mentioned above, when the sealing head 203 is removed from the telescopic drinking tube assembly, the telescopic drinking tube assembly is no longer restricted, and its internal spring 606 begins to reset and pushes the ring 602 away from the ring 601. During this process, the telescopic tube 603, the telescopic tube 604, and the telescopic support rod 605 are all in a stretched state until the elastic force of the spring 606 reaches a balanced state. At this time, the height of the ring 602 is much higher than the limiting block 507, which makes it convenient for the user to drink. During this extension process, due to the action of the fast discharge and slow suction component, the gas flow rate inside the telescopic drinking tube assembly can be kept within the control range during the extension process, so that the ring 602 can extend stably rather than in an instantaneous ejection state, which can effectively adapt to the opening of the flip cover 2.
[0033] In an optional embodiment of the invention, such as Figures 6 to 7As shown, the one-way pressure relief assembly includes a cavity 607 disposed on the second ring 602, a limiting ring 608 and a limiting frame 609 fixedly connected to the inner wall of the cavity 607, a square slide rod 611 slidably connected to the limiting frame 609, a sealing plate 610 connected to one end of the square slide rod 611, and a spring 612 connected between the limiting frame 609 and the sealing plate 610. The diameter of the sealing plate 610 is larger than the inner diameter of the limiting ring 608, and the limiting ring 608 is located at the junction of the cavity 607 and the inner circular surface of the second ring 602.
[0034] It should be noted that, as mentioned above, when the pressure in the water storage space formed by the cup body, cup lid 1, telescopic drinking straw assembly, and sealing head 203 exceeds the preset value, high-pressure gas acts on the sealing plate 610 and pushes it toward the interior of cavity 607. During this process, spring 612 is in a compressed state, and the sealing plate 610 and the limiting ring 608 are no longer in contact. High-pressure gas can enter cavity 607 from the gap between the limiting ring 608 and the sealing plate 610, and finally enter the sealed chamber. The gas entering the sealed chamber can be discharged from the fast exhaust and slow suction assembly and slowly escape from the gap between the base 201 and the cup lid 1.
[0035] In an optional embodiment of the invention, such as Figure 6 and Figure 8 As shown, the fast-release and slow-inhale assembly includes a second cavity 613 disposed on the first ring 601, a partition 614 fixedly connected to the inner wall of the second cavity 613, a plurality of air holes 615 disposed on the partition 614, and a plastic sheet 616 connected to the air holes 615. The plastic sheet 616 is fixedly connected to the air holes 615 only on one side, and the plastic sheet 616 only covers part of the air holes 615. The plastic sheet 616 is located on the end face of the partition 614 near the outer circular surface of the first ring 601.
[0036] It should be noted that, as mentioned above, when gas is discharged, the plastic sheet 616 is subjected to pressure and begins to bend outwards towards the ring 601, so that the covered vents 615 are all in a conductive state. At this time, gas can be quickly discharged from the cavity 613. When the telescopic drinking straw assembly is in the extended state, the plastic sheet 616 can tightly cover some of the vents 615 under negative pressure, so that external gas can enter from some of the uncovered vents 615. This provides some air resistance for the extension of the telescopic drinking straw assembly, so that the extension process of the telescopic drinking straw assembly can be relatively stable and slow, thus preventing the instantaneous ejection extension of the telescopic drinking straw assembly.
[0037] The above description of this embodiment is not limited to the specific implementation described above. The specific implementation described above is merely illustrative and not restrictive. Those skilled in the art can make many other forms based on the guidance of this embodiment, all of which are within the protection scope of this embodiment.
Claims
1. A flip-top cup lid base structure, characterized in that, include: A flip cover (2), the flip cover (2) including a base (201); An electric locking module (5) is provided on the base (201). The electric locking module (5) includes a motor (501) detachably mounted on the base (201), a push block (502) connected to the output shaft end of the motor (501), a transverse shaft (503) slidably connected to the base (201), a fixed shaft (504) movably connected to the base (201), a torsion spring (505) movably connected to the fixed shaft (504), and a hook-shaped fastener (506). The arc end of the hook-shaped fastener (506) is movably connected to the transverse shaft (503).
2. The flip-top lid base structure according to claim 1, characterized in that, Also includes: A verification module (3) is provided on the base (201). The verification module (3) is used to acquire user information and transmit control signals to the electric latch module (5). The energy storage module (4) is mounted on the base (201), and the verification module (3) and the electric latch module (5) are both electrically connected to the energy storage module (4); The flip cover (2) also includes an outer cover (202) detachably connected to the base (201) and a sealing head (203). A sealing element is provided in the gap between the outer cover (202) and the base (201). The outer cover (202) is provided with a mounting hole 1 for the energy storage module (4) and a mounting hole 2 for the verification module (3).
3. The flip-top lid base structure according to claim 2, characterized in that, The verification module (3) includes an integrated circuit module (301) mounted on a base (201), a fingerprint sensor (302) and a fingerprint sensor cable (303) electrically connected between the integrated circuit module (301) and the fingerprint sensor (302). The base (201) is provided with a mounting slot 1 adapted to the integrated circuit module (301) and a mounting slot 2 adapted to the fingerprint sensor (302).
4. The flip-top lid base structure according to claim 3, characterized in that, The energy storage module (4) includes a charging terminal (401) installed on the base (201) and a battery (402) electrically connected to the integrated circuit module (301). The charging terminal (401) is electrically connected to the integrated circuit module (301), and the base (201) is provided with a mounting slot that is adapted to the charging terminal (401).
5. The flip-top lid base structure according to claim 1, characterized in that, The base (201) is provided with a motor mounting hole (2010) adapted to the motor (501) and a transverse groove (2011) adapted to the transverse shaft (503). The base (201) is provided with a limiting block (2012). One end of the torsion spring (505) is in contact with the hook-shaped fastener (506), and the other end is in contact with the limiting block (2012). When the push block (502) rotates around the output shaft of the motor (501), it is used to drive the transverse shaft (503) to move towards one end of the torsion spring (505) in the transverse groove (2011).
6. The flip-top lid base structure according to claim 5, characterized in that, It also includes a cup lid (1), which is movably connected to a flip lid (2). The cup lid (1) has a drinking spout (101) in the middle position, and a limiting block (507) and a telescopic drinking mechanism (6) are connected to the cup lid (1). The telescopic drinking mechanism (6) is coaxially arranged with the drinking spout (101). The limiting block (507) has a limiting groove that cooperates with the hook-shaped part of the hook-shaped fastener (506). The telescopic drinking mechanism (6) includes a telescopic drinking tube assembly, a one-way pressure relief assembly disposed on the telescopic drinking tube assembly, and a fast-discharge and slow-inhale assembly. The one-way pressure relief assembly is used to connect the inner ring area of the telescopic drinking tube assembly to the internal space of the telescopic drinking tube assembly in one direction. The two ends of the fast-discharge and slow-inhale assembly are respectively connected to the internal space of the telescopic drinking tube assembly and its outer ring area.
7. The flip-top lid base structure according to claim 6, characterized in that, The telescopic drinking tube assembly includes a first ring (601), a second ring (602) coaxially arranged with the first ring (601), a first telescopic tube (603) and a second telescopic tube (604) connected between the first ring (601) and the second ring (602), as well as several telescopic support rods (605) and a first spring (606). A sealed chamber is formed between the first ring (601), the second ring (602), the first telescopic tube (603) and the second telescopic tube (604), and several of the telescopic support rods (605) and the first spring (606) are located in the sealed chamber.
8. The flip-top lid base structure according to claim 7, characterized in that, The one-way pressure relief assembly includes a cavity (607) disposed on the second ring (602), a limiting ring (608) and a limiting frame (609) fixedly connected to the inner wall of the cavity (607), a square slide rod (611) slidably connected to the limiting frame (609), a sealing plate (610) connected to one end of the square slide rod (611), and a spring (612) connected between the limiting frame (609) and the sealing plate (610). The diameter of the sealing plate (610) is larger than the inner diameter of the limiting ring (608), and the limiting ring (608) is located at the junction of the cavity (607) and the inner circular surface of the second ring (602).
9. The flip-top lid base structure according to claim 8, characterized in that, The fast-release and slow-absorption assembly includes a second cavity (613) on the first ring (601), a partition (614) fixedly connected to the inner wall of the second cavity (613), a plurality of air holes (615) on the partition (614), and a plastic sheet (616) connected to the air holes (615). The plastic sheet (616) is fixedly connected to the air holes (615) on only one side, and the plastic sheet (616) only covers part of the air holes (615). The plastic sheet (616) is located on the end face of the partition (614) near the outer circular surface of the first ring (601).
10. A method of using the flip-top lid base structure as described in any one of claims 1-9, characterized in that, Includes the following steps: Step 1: Obtain the user's fingerprint information through the verification module (3) and determine whether it is on the whitelist. If it is, send an unlock signal to the electric lock module (5). Step 2: After receiving the unlock signal, the electric latch module (5) operates to the unlock state, and after a preset time, it resets to the locked state.