Cup cover and liquid containing device

By designing a cup lid with a switch signal receiver, the problem of water cup being mistakenly taken in many children's environments is solved, and the effect of preventing misopening and disease transmission is achieved.

CN223232480UActive Publication Date: 2025-08-19THE SMALL MONSTER (SHENZHEN) TECH CO LTD
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Patent Information

Application Number
CN202422204505.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-09
Publication Date
2025-08-19
Estimated Expiration
2034-09-09

AI Technical Summary

Technical Problem

Existing water cups are easily taken by mistake in places with many children, which leads to discomfort and disease transmission in people with weak bodies. Existing thermos cups are difficult to prevent them from being opened by mistake.

Method used

A cup lid is designed, including a rotating tooth assembly, an outer rotating assembly, a cup cover and a locking mechanism. The locking mechanism is controlled by a switch signal receiver, so that the cup cover cannot be opened after being taken by others. The rotating tooth assembly and the outer rotating assembly are fixed or movably connected on the cup body to prevent mistaken opening.

Benefits of technology

Effectively prevent others from unscrewing the lid of the cup at will, avoiding the potential risk of disease transmission, and ensuring that only authorized persons can use the water cup normally.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of water cups, and provides a cup cover and a liquid containing device, and the cup cover comprises a spiral tooth assembly which is arranged at the end part of a cup body and is rotatably connected with the end part of the cup body, and a suction nozzle opening is formed in the spiral tooth assembly; the outer rotating assembly is arranged on the outer side of the rotating tooth assembly in a sleeving manner and can be fixedly and movably connected with the rotating tooth assembly; the cup cover is connected with the outer rotating assembly and can be opened and closed relative to the outer rotating assembly; the clamping and stopping mechanism is installed between the outer rotating assembly and the cup cover and used for controlling opening and closing of the cup cover; the switch signal receiver is used for triggering the clamping mechanism to be opened; through the arrangement of the switch signal receiver, after the liquid containing device is taken by other people, the cup cover cannot be opened, and when the cup cover cannot be opened, the potential risk caused by the fact that the cup cover is unscrewed at will by other people can be avoided.
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Description

Technical Field

[0001] The utility model relates to the technical field of water cups, in particular to a cup cover and a liquid containing device. Background Art

[0002] A water cup is a container used to hold liquids, usually in a cylindrical shape, to facilitate drinking water.

[0003] In places with a large number of children, such as schools, children's playgrounds and other places, in order to ensure that children have water to drink after playing, most of them carry thermoses at this stage; however, in places with a large number of children, there will be problems such as similar water cups being taken by mistake, resulting in water cups being used by other children. Since the physical fitness of each child and whether they are sick are unknown, some weak people are prone to discomfort and carry diseases, causing the problem of disease transmission, which the existing thermoses are difficult to prevent. Summary of the Invention

[0004] In view of the deficiencies in the cup cover protection measures in the prior art, the purpose of the present invention is to provide a cup cover and a liquid containing device that can prevent accidental opening.

[0005] In order to solve the above problems, the present invention provides the following technical solutions:

[0006] A cup cover and liquid receiving device, comprising: a screw thread assembly mounted on the end of the cup body and rotatably connected to the end of the cup body, wherein a suction nozzle is provided in the screw thread assembly;

[0007] An outer rotating assembly is sleeved on the outer side of the thread-screwing assembly and can be fixedly and movably connected to the thread-screwing assembly;

[0008] a cup cover connected to the outer rotating assembly and capable of opening and closing relative to the outer rotating assembly;

[0009] A locking mechanism, installed between the outer rotating assembly and the cup cover, for controlling the opening and closing of the cup cover;

[0010] A switch signal receiver, used for triggering the locking mechanism to open;

[0011] When the switch signal receiver is triggered, the switch signal receiver controls the locking mechanism to start, and the locking mechanism opens the cup cover.

[0012] In some embodiments, the locking mechanism includes a switch mechanism and a limit mechanism;

[0013] The switch mechanism is installed in the cup cover;

[0014] The limiting mechanism is installed on the outer rotating assembly;

[0015] The limiting mechanism is used in conjunction with the switch mechanism to control the cup cover and the outer rotating assembly to be locked and / or closed.

[0016] In some embodiments, the switch mechanism includes a motor, a first buckle, and a push rod mounted on the motor;

[0017] The limiting mechanism includes a first hook;

[0018] The first buckle is engageable with and detachable from the first hook;

[0019] The motor can receive a trigger signal from the switch signal receiver;

[0020] When the motor receives the trigger signal from the switch signal receiver, the motor pushes the push rod to move, and the push rod pushes the first buckle to disengage the first buckle from the first hook, thereby opening the cup cover relative to the outer rotating component.

[0021] In some embodiments, the switch mechanism further includes a torsion spring; the torsion spring is mounted on the first clip, and when the push rod retracts into the motor, the torsion spring controls the first clip to engage with the first hook.

[0022] In some embodiments, the switch signal receiver is a fingerprint controller, an electronic password controller, a face recognition controller, or a QR code recognition controller.

[0023] In some embodiments, the cup cover further includes a locking mechanism; the locking mechanism is used to control the fixed connection and / or dynamic connection between the screw thread assembly and the outer rotating assembly.

[0024] In some embodiments, the locking mechanism includes a first control member mounted on the cup cover and a second control member mounted between the screw thread assembly and the outer rotating assembly;

[0025] The first control member is used to control the second control member to move between a coupled position and a disengaged position;

[0026] When the cup cover is closed, the first control member controls the second control member to move to the disengaged position, and the second control member controls the movable connection between the screw thread assembly and the outer rotating assembly. When the screw thread assembly and the outer rotating assembly are movably connected, when the outer rotating assembly is rotated relative to the cup body, the screw thread assembly does not rotate synchronously with the outer rotating assembly, and the screw thread assembly does not rotate relative to the cup body, so that the outer rotating assembly and the screw thread assembly cannot be separated from the cup body;

[0027] When the cup cover is opened, the first control member controls the second control member to move to the connection position, and the second control member controls the screw thread assembly and the outer rotating assembly to be fixedly connected. When the screw thread assembly and the outer rotating assembly are fixedly connected, when the outer rotating assembly is rotated relative to the cup body, the screw thread assembly and the outer rotating assembly can be rotated synchronously, so that the outer rotating assembly and the screw thread assembly are detached from the cup body.

[0028] In some embodiments, the first control member comprises a first magnet;

[0029] The second control member includes a second magnet and a first clamping member fixedly connected to the second magnet; the screw thread assembly is provided with a first limiting member engaged with the first clamping member;

[0030] When the cup cover is closed, the first magnet attracts the second magnet to move, and the second control member moves to a disengaged position;

[0031] When the cup cover is opened, the second magnet loses the attraction force of the first magnet, and the second control member moves to the coupling position.

[0032] In some embodiments, a movable space is further provided in the cup cover, and the movable space is configured to at least allow the second control member to move between a coupled position and a disconnected position.

[0033] In some embodiments, the liquid receiving device includes a cup body and the cup cover:

[0034] The end of the cup body is provided with an opening;

[0035] The cup cover is installed on the opening at the end of the cup body.

[0036] The beneficial effect of the present invention is that, through the setting of the switch signal receiver, the cup cover cannot be opened after the liquid containing device is taken away by others. When the cup cover cannot be opened, the locking mechanism makes the screw thread assembly and the outer rotating assembly movably connected. When the outer rotating assembly is rotated relative to the cup body, that is, when an outsider unscrews the cup cover, the screw thread assembly does not rotate synchronously with the outer rotating assembly, and the screw thread assembly does not rotate relative to the cup body. That is, at this time, the outer rotating assembly is idling, and the outer rotating assembly and the screw thread assembly cannot be separated from the cup body, that is, the cup cover cannot be opened. The present invention can avoid the potential risks caused by others unscrewing the cup cover at will. BRIEF DESCRIPTION OF THE DRAWINGS

[0037] Figure 1 It is a three-dimensional diagram of the liquid containing device of the present invention;

[0038] Figure 2 This is a front cross-sectional view of the liquid containing device of the present invention;

[0039] Figure 3 This is an exploded view of the liquid containing device of the present invention;

[0040] Figure 4 This is an exploded view of the cup cover of the liquid receiving device of the present invention;

[0041] Figure 5 This is an exploded view of the cup cover and the outer rotating assembly of the present invention;

[0042] Figure 6 This is a cross-sectional view of one embodiment of the cup cover of the present invention;

[0043] Figure 7 For this utility model Figure 6 A magnified view of point A;

[0044] Figure 8 This is a cross-sectional view of an embodiment of the cup cover of the present invention in an open state;

[0045] Figure 9 This is a three-dimensional diagram of the first clamping member of the present invention;

[0046] Figure 10 This is a three-dimensional diagram of a thread-screwing assembly according to one embodiment of the present invention;

[0047] Figure 11 This is a cross-sectional view of another embodiment of the cup cover of the present invention;

[0048] Figure 12 This is a three-dimensional diagram of the second clamping member of the present invention;

[0049] Figure 13 A three-dimensional diagram of a screw thread assembly according to another embodiment of the present invention;

[0050] Figure 14 This is a cross-sectional view of another embodiment of the cup cover of the present invention.

[0051] Reference numerals:

[0052] 100, cup lid; 110, cup body; 120, screw thread assembly; 130, outer rotating assembly; 140, cup cover; 150, locking mechanism; 160, switch mechanism; 170, switch signal receiver; 180, small screw cap; 200, liquid receiving device;

[0053] 121, external threaded member; 122, internal support member; 12a, annular groove; 123, nozzle opening; 124, internal thread; 125, external thread; 126, through hole; 127, installation space; 128, receiving groove;

[0054] 151. First magnet; 152. Second magnet; 153. First clamping member; 154. First stopper; 155. Guide rail; 156. Slot;

[0055] 251, toggle member; 252, follower member; 253, second clamping member; 254, second limiting member;

[0056] 161. Motor; 162. Push rod; 163. First buckle; 164. First hook; 165. Screw; 166. Thread; 167. Torsion spring; 168. Battery;

[0057] 261, electric cylinder; 262, second buckle; 263, second hook;

[0058] 181. Sealing element; 182. Clamping block; 183. Clamping slot; 184. Temperature measuring mechanism; 185. Rotary sealing element;

[0059] 2a, first sealing member; 2b, second sealing member; 2c, third sealing member;

[0060] 201. Base; 202. Straw. DETAILED DESCRIPTION

[0061] The following will be combined with the accompanying drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are only part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making any creative efforts are within the scope of protection of this application.

[0062] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of the technical features being referred to. Thus, a feature specified as "first" or "second" may explicitly or implicitly include one or more of such features. In the description of this utility model, "plurality" means two or more, unless otherwise specifically defined.

[0063] For the convenience of describing the first, second, and third directions in the embodiments of this application, the first direction is the left-right direction in the drawings, the second direction is the front-back direction in the drawings, and the third direction is the up-down direction in the drawings. The x-axis arrow direction is referred to as the "right" direction, the y-axis arrow direction is referred to as the "up" direction, and the z-axis arrow direction is referred to as the "back" direction in the following text. However, in the actual application of this application, this is not limiting.

[0064] like Figure 2As shown, this embodiment provides a cup cover 100, which includes a screw thread assembly 120, an outer rotating assembly 130, a cup cover 140 and a locking mechanism 150. The screw thread assembly 120 is installed at the end of the cup body 110 and is rotatably connected to the end of the cup body 110. A suction nozzle 123 is provided in the screw thread assembly 120, and the outer rotating assembly 130 is provided with a through hole 126 for the suction nozzle 123 to pass through. When the screw thread assembly 120 is installed with the cup body 110, the screw thread assembly 120 blocks the end of the cup body 110 to prevent the water in the cup body 110 from spilling out. The screw thread assembly 120 is provided with a suction nozzle 123 to facilitate water intake through the suction nozzle 123.

[0065] In this embodiment, the outer rotating assembly 130 is mounted on the outside of the screw assembly 120 and is fixedly and movably connected to the screw assembly 120. The cup 140 is mounted on the outer rotating assembly 130 and can be opened and closed relative to the outer rotating assembly 130. The locking mechanism 150 is installed between the screw assembly 120 and the outer rotating assembly 130. When the cup 140 is opened, the locking mechanism 150 fixes the screw assembly 120 and the outer rotating assembly 130. When the cup 140 is closed, the screw assembly 120 and the outer rotating assembly 130 can rotate relative to each other. That is, when the cup cover 140 is opened, the locking mechanism 150 fixes the outer rotating assembly 130 and the screw thread assembly 120 together. When the screw thread assembly 120 and the outer rotating assembly 130 are fixedly connected, when the outer rotating assembly 130 is rotated relative to the cup body 110, the screw thread assembly 120 and the outer rotating assembly 130 can be rotated synchronously, so that the outer rotating assembly 130 and the screw thread assembly 120 are separated from the cup body 110. When the cup cover 140 is closed, the locking mechanism 150 movably connects the screw thread assembly 120 and the outer rotating assembly 130. When the screw thread assembly 120 and the outer rotating assembly 130 are movably connected, when the screw thread assembly 120 and the outer rotating assembly 130 are rotated relative to the cup body, the screw thread assembly 120 does not rotate synchronously with the outer rotating assembly 130, and the screw thread assembly 120 does not rotate relative to the cup body 110, so that the outer rotating assembly 130 and the screw thread assembly 120 cannot be separated from the cup body 110. When the cup cover 140 is closed, the outer rotating assembly 130 and the screw thread assembly 120 rotate relative to each other, and the screw thread assembly 120 and the cup body 110 are not separated, ensuring that the cup lid 100 cannot be opened, preventing others from accidentally drinking. At the same time, when the cup cover 140 is opened, it is convenient to drink water, and the screw thread assembly 120 can be separated from the cup body 110, making it convenient to fill the cup body 110 with water.

[0066] like Figure 6-7As shown, in this embodiment, the locking mechanism 150 includes a first control member mounted on the cup cover 140 and a second control member mounted between the screw thread assembly 120 and the outer rotating assembly 130. The first control member is used to control the movement of the second control member between a connected position and a disconnected position. When the cup cover 140 is closed, the first control member controls the second control member to move to the disconnected position, and the second control member controls the movable connection between the screw thread assembly 120 and the outer rotating assembly 130. When the cup cover 140 is opened, the first control member controls the second control member to move to the connected position, and the second control member controls the fixed connection between the screw thread assembly 120 and the outer rotating assembly 130.

[0067] In this embodiment, a movable space is further provided in the cup cover 100, and the movable space is configured to at least allow the second control member to move between the connected position and the disengaged position, thereby ensuring that the second control member controls the fixed connection and movable connection between the screw thread assembly 120 and the outer rotating assembly 130.

[0068] In this embodiment, a receiving groove 128 is provided inside the cup cover 140, and the first control part is fixedly installed in the receiving groove 128; the first control part includes a first magnet 151. The first magnet 151 is fixed in the receiving groove 128 in the cup cover 140 by bonding or clamping. The second control part includes a second magnet 152. When the cup cover 140 is closed, the first magnet 151 attracts the second magnet 152 to move, and the second control part moves to the disengaged position; when the cup cover 140 is opened, the second magnet 152 loses the adsorption force of the first magnet 151, and the second control part moves to the connected position. The adsorption and detachment of the first magnet 151 and the second magnet 152 are used to achieve a fixed connection and a rotational connection between the screw thread assembly 120 and the outer rotating assembly 130, without the need for manual touch operation, and is easy to use.

[0069] like Figure 5-9As shown, the second control component also includes a first clamping member 153 fixedly connected to the second magnet 152; the screw thread assembly 120 is provided with a first stopper 154 that engages with the first clamping member 153. A guide rail 155 is provided within the outer rotating assembly 130, and the first clamping member 153 is placed and moved within the guide rail 155. The first clamping member 153 is provided with a slot 156 for mounting the second magnet 152. The second magnet 152 is engaged in the slot 156, so that the first clamping member 153 and the second magnet 152 are fixedly mounted. The first stopper 154 is installed on the screw thread assembly 120. When the cup cover 140 is closed, the first magnet 151 attracts the second magnet 152, and the second control component moves to the disengaged position, causing the first clamping member 153 to move away from the first stopper 154, thereby movably connecting the screw thread assembly 120 and the outer rotating assembly 130. When the cup cover 140 is opened, the second magnet 152 loses the attraction force of the first magnet 151, and the second control member moves to the connection position, causing the first clamping member 153 to move toward the first stopper 154 and engage with the first stopper 154, thereby fixedly connecting the screw thread assembly 120 and the outer rotating assembly 130. The first clamping member 153 is separated from and engaged with the first stopper 154 by the attraction and separation of the first magnet 151 and the second magnet 152, without applying additional force to the first clamping member 153, thereby preventing the problem of the first clamping member 153 and the first stopper 154 being unable to separate or engage due to insufficient additional force.

[0070] In this embodiment, there are multiple first stoppers 154, distributed along the inner circumference of the screw thread assembly 120. When the screw thread assembly 120 and the outer rotating assembly 130 rotate relative to each other, the cup cover 140 is opened to move the first engaging member 153 toward the first stopper 154, and the first engaging member 153 can engage with a corresponding first stopper 154. This ensures that after the first engaging member 153 rotates relative to the screw thread assembly 120 along with the outer rotating assembly 130, when the cup cover 140 is opened, the first engaging member 153 can promptly engage with the first stopper 154, thereby securing the screw thread assembly 120 and the outer rotating assembly 130. This allows for quick separation of the screw thread assembly 120 from the cup body 110 when needed.

[0071] like Figure 10As shown, in another embodiment, the first control member further includes a toggle member 251 mounted on the cup cover 140. The second control member includes a follower member 252 mounted on the outer rotating assembly 130, and the follower member 252 is movable. When the cup cover 140 is closed, the toggle member 251 pushes the follower member 252 to move; the screw thread assembly 120 is movably connected relative to the outer rotating assembly 130; when the cup cover 140 is opened, the toggle member 251 pushes the follower member 252 to move in the opposite direction, and the screw thread assembly 120 and the outer rotating assembly 130 are fixedly connected. Only by opening and closing the cup cover 140 can the screw thread assembly 120 and the outer rotating assembly 130 be directly fixedly connected and rotated without manual touch operation.

[0072] like Figure 10-12 As shown, in another embodiment, the locking mechanism 150 further includes a second clamping member 253 and a second stopper 254. The second clamping member 253 is fixedly mounted to the follower 252 and is mounted to the outer rotating assembly 130 along with the follower 252. The second stopper 254 is mounted on the screw thread assembly 120, and the second clamping member 253 is placed on the second stopper 254 to secure the screw thread assembly 120 to the outer rotating assembly 130.

[0073] When the cup cover 140 is closed, the toggle member 251 pushes the follower 252 to move the second engaging member 253 away from the second stopper 254, separating the second engaging member 253 from the second stopper 254 and movably connecting the thread assembly 120 and the outer rotating assembly 130. When the cup cover 140 is opened, the toggle member 251 pushes the follower 252 in the opposite direction to move the second engaging member 253 toward the second stopper 254, engaging the second engaging member 253 with the second stopper 254 and fixedly connecting the thread assembly 120 and the outer rotating assembly 130. By using the toggle member 251 to push the follower 252 to separate and engage the second engaging member 253 and the second stopper 254, there is no need to worry about the difficulty of separating or engaging the second engaging member 253 and the second stopper 254.

[0074] In another embodiment, the outer rotating assembly 130 and the cup 140 are hingedly mounted, with a toggle member 251 mounted at the intersection and fixed to the cup 140. The toggle member 251 is a gear, and the driven member 252 is a rack. As the toggle member 251 rotates about the hinge with the cup 140, it pushes the driven member 252 to rotate, thereby separating or engaging the second engaging member 253 with the second retaining member 254. Using a gear as the toggle member 251 and a rack as the driven member 252 makes the separation and engagement of the second engaging member 253 with the second retaining member 254 more stable.

[0075] In this embodiment, the screw thread assembly 120 includes an external screw thread part 121 and an internal support part 122 that are fixedly connected. The screw thread assembly 120 also includes an installation space located between the external screw thread part 121 and the internal support part 122, and the end of the cup body 110 is located in the installation space. The external screw thread part 121 is used to be rotatably connected to the outer side of the end of the cup body 110, and the internal support part 122 is located on the inner side of the end of the cup body 110. An internal thread 124 is provided on the inner side of the external screw thread part 121, and an external thread 125 that cooperates with the external screw thread part 121 is provided on the outer edge of the end of the cup body 110. The cup body 110 is rotationally connected to the external screw thread part 121 via the internal thread 124 and the external thread 125; the internal thread 124 and the external thread 125 realize the fixation and separation of the cup body 110 and the external screw thread part 121. An annular groove 12a is defined on the inner support member 122. The groove and the outer screw thread member define a movable space. A first stopper 154 is positioned within the groove 12a. The first engaging member 153 moves away from and toward the first stopper 154 via the groove 12a. This reciprocating motion of the groove 12a ensures that the first stopper 154 does not prevent the outer rotating assembly 130 from rotating relative to the screw thread assembly 120.

[0076] In this embodiment, the cup cover 100 also includes a rotary seal 185, which is installed on the screw thread assembly 120. The rotary seal 185 is used to seal between the cup body 110 and the screw thread assembly 120. When the screw thread assembly 120 rotates relative to the end of the cup body 110, the rotary seal 185 seals the cup body 110 and the screw thread assembly 120, and the liquid in the cup body 110 will not seep out through the end of the cup body 110. The rotary seal 185 is a second elastic sealing ring. When the screw thread assembly 120 rotates relative to the end of the cup body 110, the end of the cup body 110 squeezes the second elastic sealing ring to deform it, causing the end of the cup body 110 to sink into the second elastic sealing ring. The second elastic sealing ring prevents the liquid in the cup body 110 from seeping out through the end of the cup body 110; the squeezing and sealing of the second elastic sealing ring effectively ensures that the liquid will not seep out through the screw thread assembly.

[0077] In this embodiment, the cup cover 100 further includes a switch mechanism 160 and a switch signal receiver 170 that triggers the switch mechanism 160. The switch mechanism 160 is mounted inside the cup cover 140. When the switch signal receiver 170 triggers the switch mechanism 160 to open, the switch mechanism 160 controls the cup cover 140 to open relative to the outer rotating assembly 130. By triggering the switch mechanism 160 through the switch signal receiver 170, the risk of the cup cover being directly opened can be eliminated.

[0078] In this embodiment, the switch mechanism 160 includes a motor 161, a first buckle 163, and a push rod 162 mounted on the motor 161. The outer rotating assembly 130 is provided with a first hook 164 that cooperates with the first buckle 163. A screw 165 is provided on the rotating shaft of the motor 161, and a thread 166 is provided in the push rod 162. When the motor 161 rotates, the screw 165 and the thread 166 push the push rod 162 to move. When the motor 161 receives a trigger signal from the switch signal receiver 170, the motor 161 pushes the push rod 162 to move, and the push rod 162 pushes the first buckle 163 to disengage the first buckle 163 from the first hook 164, thereby opening the cup cover 140 relative to the outer rotating assembly 130. The use of the motor 161 for pushing solves the problem that children have little strength and find it difficult to open the cup cover 140.

[0079] In this embodiment, the electronic control unit includes a motor 161, a push rod 162 mounted on the motor, and a battery 168. The battery 168 provides power to the motor 161. The cup cover 140 also includes a seal 181, which is mounted on the cup cover 140 and seals the electronic control unit within the cup cover 140. When the electronic control unit opens or closes the cup cover 140, the seal 181 seals the cup cover 140, preventing liquid in the cup body 110 from spilling or seeping into the electronic control unit.

[0080] In this embodiment, the sealing member includes a first sealing member 2a, a second sealing member 2b, a third sealing member 2c, and a waterproof cover covering the electronic control member. The third sealing member 2c is made of an elastic material. The first sealing member 2a is made of a hard waterproof sheet material. The second sealing member 2b is arranged around the first sealing member 2a, and the second sealing member 2b tightly seals the first sealing member 2a with the cup cover 140. The push rod 162 passes through the first sealing member 2a, and the third sealing member 2c is sleeved on the push rod 162, and the third sealing member 2c is sealed and fixed to the first sealing member 2a. When the push rod 162 moves, the push rod 162 pushes the third sealing member 2c to elastically deform, and the third sealing member 2c prevents the push rod 162 from communicating with the outside of the cup cover 140. The first sealing member 2a, the second sealing member 2b, and the third sealing member 2c serve as the first seal of the cup cover 140 to prevent liquid infiltration. The waterproof cover covers the electronic control member to provide a second seal, keeping the electronic control member dry at all times and preventing failure due to water ingress.

[0081] like Figure 13In another embodiment, the switch mechanism 160 includes an electric cylinder 261 and a second latch 262. The outer rotating assembly 130 is provided with a second hook 263 that engages with the second latch 262. When the electric cylinder 261 receives a trigger signal from the switch signal receiver 170, it directly pushes the second latch 262 to disengage from the second hook 263, thereby opening the cup cover 140 relative to the outer rotating assembly 130. Using the electric cylinder 261 for pushing solves the problem of children having difficulty opening the cup cover 140 due to their limited strength.

[0082] In this embodiment, the switch signal receiver 170 is a fingerprint controller, an electronic password lock or a face recognition device, etc., which can prevent the cup cover 140 from being opened after the liquid containing device 200 is taken away by others. When the cup cover 140 cannot be opened, the locking mechanism makes the screw thread assembly 120 and the outer rotating assembly 130 movably connected. When the outer rotating assembly 130 is rotated relative to the cup body 110, that is, when an outsider unscrews the cup cover, the screw thread assembly 120 does not rotate synchronously with the outer rotating assembly 130, and the screw thread assembly 120 does not rotate relative to the cup body 110. That is, at this time, the outer rotating assembly 130 is idling, and the outer rotating assembly 130 and the screw thread assembly 120 cannot be detached from the cup body 110, that is, the cup cover 100 cannot be opened. The utility model can avoid the potential risks brought about by others unscrewing the cup cover 110 at will.

[0083] In this embodiment, the cup cover 100 further includes a rotary sealing assembly, which is rotatably connected to the cup cover 140. When the cup cover 140 is closed, the rotary sealing assembly abuts the suction nozzle opening 123; and when the outer rotating assembly 130 is rotated relative to the cup body, the cup cover 140 rotates synchronously with the outer rotating assembly 130, while the screw thread assembly 120 and the rotary sealing assembly do not rotate synchronously with the outer rotating assembly 130. The cup cover 140 rotates relative to the rotary sealing assembly, while the rotary sealing assembly does not rotate relative to the suction nozzle opening 123, thereby allowing the rotary sealing assembly to seal the suction nozzle opening 123. The rotary sealing assembly blocks the suction nozzle opening 123, ensuring the sealing of the suction nozzle opening 123 after the cup cover 140 is closed; and the rotary seal rotates relative to the cup cover 140, ensuring that the cup cover 140 will not be blocked by the rotary seal when rotating with the outer rotating assembly 130.

[0084] In this embodiment, the rotary seal assembly includes a small rotary cover 180 and a seal 181. When the cup cover 140 is closed, the seal 181 abuts against the nozzle opening 123 to seal the nozzle opening 123. The small rotary cover 180 rotates within the cup cover 140, ensuring that the cup cover 140 is not blocked by the rotary seal when rotating with the outer rotating assembly 130.

[0085] In this embodiment, the small rotating cover 180 includes a cover plate and a block 182 extending from the side of the cover plate. The cup cover 140 is provided with a slot 183 that cooperates with the block. When the outer rotating component 30 is rotated relative to the cup body 110, the slot 183 rotates relative to the block 182. Through the block 182 and the slot 183, the small rotating cover 180 can be more easily rotated relative to the cup cover 140.

[0086] The seal 181 is a first elastic sealing ring, which is fixed to the small screw cover 180. When the cup cover 140 is closed, the suction nozzle 123 squeezes the first elastic sealing ring to deform it so that the end of the suction nozzle 123 is sunken into the first elastic sealing ring. The first elastic sealing ring prevents the liquid in the cup body 110 from leaking out through the suction nozzle 123.

[0087] In this embodiment, the cup cover also includes a temperature measuring mechanism 184, which is installed in the rotating sealing assembly; the temperature measuring mechanism 184 can detect the temperature inside the cup body 110 and can indicate the temperature inside the cup body to ensure that you are reminded to prevent burns when drinking water.

[0088] like Figure 1 As shown, this embodiment provides a liquid containing device 200, which includes a cup body 110, and an opening is provided at the end of the liquid containing device 200; the cup cover 100 is installed at the end of the cup body 110, and the combination of the cup cover 100 and the cup body 110 can prevent water from spilling.

[0089] like Figure 3 As shown, in this embodiment, the liquid receiving device 200 further includes a base 201 and a straw 202. The base 201 is bonded or clamped to the other end of the cup body 110. The straw 202 is placed within the cup body 110, with one end of the straw 202, adjacent to the screw thread assembly 120, positioned within the nozzle opening 123, and the other end of the straw 202 positioned at the bottom of the cup body 110.

[0090] To sum up, the present invention provides a cup lid and a liquid containing device. Through the setting of a switch signal receiver, the cup cover cannot be opened after the liquid containing device is taken away by others. When the cup cover cannot be opened, the locking mechanism makes the screw thread assembly and the outer rotating assembly movably connected. When the outer rotating assembly is rotated relative to the cup body, that is, when an outsider unscrews the cup lid, the screw thread assembly does not rotate synchronously with the outer rotating assembly, and the screw thread assembly does not rotate relative to the cup body. That is, at this time, the outer rotating assembly is idling, and the outer rotating assembly and the screw thread assembly cannot be detached from the cup body, that is, the cup lid cannot be opened. The present invention can avoid the potential risks brought about by others unscrewing the cup lid at will.

[0091] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, rather than to limit them. Although the present application has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein. However, these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present application.

Claims

1. A cup cover, which is installed on the end of the cup body, characterized in that: include: A screw thread assembly is mounted on the end of the cup body and is rotatably connected to the end of the cup body, and a suction nozzle is provided in the screw thread assembly; An outer rotating assembly is sleeved on the outer side of the thread-screwing assembly and can be fixedly and movably connected to the thread-screwing assembly; a cup cover connected to the outer rotating assembly and capable of opening and closing relative to the outer rotating assembly; A locking mechanism, installed between the outer rotating assembly and the cup cover, for controlling the opening and closing of the cup cover; A switch signal receiver, used for triggering the locking mechanism to open; When the switch signal receiver is triggered, the switch signal receiver controls the locking mechanism to start, and the locking mechanism opens the cup cover.

2. The cup cover according to claim 1, characterized in that: The locking mechanism includes a switch mechanism and a limit mechanism; The switch mechanism is installed in the cup cover; The limiting mechanism is installed on the outer rotating assembly; The limiting mechanism is used in conjunction with the switch mechanism to control the cup cover and the outer rotating assembly to be locked and / or closed.

3. The cup cover according to claim 2, characterized in that: The switch mechanism includes a motor, a first buckle, and a push rod installed on the motor; The limiting mechanism includes a first hook; The first buckle is engageable with and detachable from the first hook; The motor can receive a trigger signal from the switch signal receiver; When the motor receives the trigger signal from the switch signal receiver, the motor pushes the push rod to move, and the push rod pushes the first buckle to disengage the first buckle from the first hook, thereby opening the cup cover relative to the outer rotating component.

4. The cup cover according to claim 3, characterized in that: The switch mechanism further includes a torsion spring; the torsion spring is mounted on the first buckle, and when the push rod is retracted into the motor, the torsion spring controls the first buckle to engage with the first hook.

5. The cup cover according to claim 1, characterized in that: The switch signal receiver is a fingerprint controller, an electronic password controller, a face recognition controller or a QR code recognition controller.

6. The cup cover according to claim 1, characterized in that: The cup cover also includes a locking mechanism; the locking mechanism is used to control the fixed connection or dynamic connection between the screw thread assembly and the outer rotating assembly.

7. The cup cover according to claim 6, characterized in that: The locking mechanism includes a first control member installed on the cup cover and a second control member installed between the screw thread assembly and the outer rotating assembly; The first control member is used to control the second control member to move between a coupled position and a disengaged position; When the cup cover is closed, the first control member controls the second control member to move to the disengaged position, and the second control member controls the movable connection between the screw thread assembly and the outer rotating assembly. When the screw thread assembly and the outer rotating assembly are movably connected, when the outer rotating assembly is rotated relative to the cup body, the screw thread assembly does not rotate synchronously with the outer rotating assembly, and the screw thread assembly does not rotate relative to the cup body, so that the outer rotating assembly and the screw thread assembly cannot be separated from the cup body; When the cup cover is opened, the first control member controls the second control member to move to the connection position, and the second control member controls the screw thread assembly and the outer rotating assembly to be fixedly connected. When the screw thread assembly and the outer rotating assembly are fixedly connected, when the outer rotating assembly is rotated relative to the cup body, the screw thread assembly and the outer rotating assembly can be rotated synchronously, so that the outer rotating assembly and the screw thread assembly are detached from the cup body.

8. The cup cover according to claim 7, characterized in that: The first control member includes a first magnet; The second control member includes a second magnet and a first clamping member fixedly connected to the second magnet; the screw thread assembly is provided with a first limiting member engaged with the first clamping member; When the cup cover is closed, the first magnet attracts the second magnet to move, and the second control member moves to a disengaged position; When the cup cover is opened, the second magnet loses the attraction force of the first magnet, and the second control member moves to the coupling position.

9. The cup cover according to claim 7, characterized in that: An active space is further provided in the cup cover, and the active space is configured to at least allow the second control member to move between a coupling position and a disengaging position.

10. A liquid containing device, characterized in that: The liquid containing device comprises a cup body and a cup cover according to any one of claims 1 to 9: The end of the cup body is provided with an opening; The cup cover is installed on the opening at the end of the cup body.