Cup cover capable of being pressed in multiple directions

CN120982875APending Publication Date: 2025-11-21YONGKANG YIWOFENG TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202511138539.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-14
Publication Date
2025-11-21

AI Technical Summary

Technical Problem

现有杯盖的开启和关闭操作效率低下,且倒水通道难以清洗,容易藏污纳垢。

Method used

设计一种多向按压的杯盖,通过上按压块和侧按压块的组合操作实现杯盖的开合和倒水,包括上按压组件和封堵盘组件,允许液体通过倒水通道倒出或直接饮用,且组件可拆卸以便清洗。

Benefits of technology

提高了杯盖的操作便利性,适用于不同人群,特别是儿童,且倒水通道可清洗,避免污染。

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the technical field of vacuum cups, and particularly relates to a multidirectional pressing cup cover which is opened and closed with a cup body through side edge pressing and comprises a cup cover body, an upper pressing assembly and a plugging disc assembly. The cup cover comprises a first mounting disc and a second mounting disc, and a pair of locking assemblies and a side pressing block are mounted on the first mounting disc in a limiting manner; the locking assembly comprises a transverse part and a vertical part which are connected in sequence, the vertical part is provided with a clamping hook which is locked or unlocked with the cup body, the side pressing block is connected with an arc-shaped block, and the transverse part is connected with the arc-shaped block to press the side pressing block so as to push the transverse part and the vertical part outwards to separate the cup cover from the cup body; and a water pouring channel is formed among the second mounting disc, the first mounting disc, the upper pressing shell and the plugging disc. According to the multidirectional pressing cup cover, water pouring is achieved through pressing of the upper pressing block, opening and closing of the cup cover and the cup body are achieved through pressing of the side pressing block, and operation is easy and convenient.
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Description

Technical Field

[0001] This invention relates to a multi-directional pressing cup lid, belonging to the technical field of thermos cups. Background Technology

[0002] Cups are essential items in people's daily lives. Cups can be categorized in various ways according to their use, such as water cups, coffee cups, hot drink cups, and insulated cups. Taking insulated cups as an example, they are generally containers with a vacuum layer inside the cup body, made of materials such as ceramic, stainless steel, or titanium alloy, and a sealed lid. The vacuum layer insulates the water or other liquids inside the container from the outside environment, achieving the purpose of keeping them hot or cold. The internal structure of an insulated cup usually has many layers; the vacuum layer prevents heat conduction, and the outer wall of the vacuum layer is plated with silver to block heat radiation. An insulated cup typically includes a liner, an outer shell, and a lid.

[0003] In existing technology, cup lids are typically fixed to the cup body via a threaded connection, which is simple in structure and reliable in connection. However, this threaded connection requires the user to use both hands to remove the lid, which is inconvenient in some situations. Furthermore, the user needs to tighten or loosen the lid repeatedly before and after each use, making the closing and opening efficiency very low. Some special cup lids include a lid, a cup body, and a magnetically attached drinking cap. The lid is threaded to the cup body; a single press on the lid pours water onto the drinking cap, and a second press seals it. The disadvantage of this type of lid is that the pouring channel inside the lid cannot be cleaned, making it prone to accumulating dirt and grime. Summary of the Invention

[0004] This invention proposes a multi-directional pressing cup lid that allows water to be poured by pressing the upper pressing block and the cup body to be opened and closed by pressing the side pressing block. This simple and convenient operation solves the problems existing in the prior art.

[0005] To solve the above-mentioned technical problems, the technical solution of the present invention is as follows: A multi-directional pressing cup lid, which opens and closes to the cup body by pressing from the side, includes a cup lid, an upper pressing component that is detachably connected to the cup lid by rotating it with a thread, and a sealing plate component that abuts against the upper pressing component; The cup lid includes a first mounting plate detachably connected to the cup lid and a second mounting plate connected to the sealing plate assembly. The first mounting plate is limited by a pair of locking components and a side pressing block that abut against each other in sequence. The locking assembly includes a horizontal component and a vertical component connected in sequence. The vertical component is equipped with a hook for locking or unlocking the cup body. The side pressing block is connected to an arc-shaped block. The horizontal component connects with the arc-shaped block to press the side pressing block, thereby pushing the horizontal component and the vertical component outward to separate the cup lid from the cup body. The upper pressing assembly includes an upper pressing shell detachably connected to the first mounting plate, a first central column installed inside the upper pressing shell, and an upper pressing block connected to the first central column and penetrating the upper pressing assembly; The sealing disc assembly includes a second central column that abuts against the first central column, a spring sleeved on the outside of the second central column and installed on the first mounting plate, and a sealing disc installed at the lower end of the second central column that moves up and down with the upper pressing block to block or connect the water pouring channel with the cup body. A pouring channel is formed between the second mounting plate, the first mounting plate, the upper pressing shell, and the sealing plate. Liquid in the cup enters the pouring channel through the space left by the downward movement of the sealing plate, and is then poured out by the user for drinking.

[0006] The junction between the horizontal component and the arc-shaped block is provided with a first inclined surface.

[0007] The first mounting plate is provided with a cup cover shell for limiting and locking components and side pressing blocks. The cup cover shell has a through hole for the side pressing block and an outward protrusion area for installing the locking components.

[0008] The first mounting plate has a slot for installing a spring, and the inner wall of the slot has an internal thread. The upper pressing housing has an external thread that matches the internal thread, so that the upper pressing assembly can be detached.

[0009] A spring cover is placed on the upper end of the spring. A limit block movable area and a limit block locking area are opened at the top of the second central column. The spring cover is provided with a limit block that cooperates with the limit block movable area and the limit block locking area and is used to limit the second central column.

[0010] The upper pressing shell has an upper limit groove and a lower limit groove for the pressing column on its inner side.

[0011] Below the first central post is a pressing plate for locking or unlocking the sealing plate assembly. Multiple triangular connecting post limiting grooves are installed on the outside of the first central post. The pressing plate includes pressing pieces and pressing posts evenly spaced. The pressing posts cooperate with the triangular connecting post limiting grooves so that the pressing posts are located in the upper limiting groove of the pressing posts once and in the lower limiting groove of the pressing posts once.

[0012] The lower limiting groove of the pressing column is provided with a second inclined surface that cooperates with the pressing column, and the pressing block is provided with a third inclined surface that cooperates with the lower limiting groove of the pressing column and the triangular connecting column.

[0013] The first central column, the second central column, and the upper pressing block are provided with vent holes, and the first mounting plate is provided with a water outlet hole that communicates with the cup body.

[0014] The cup body is provided with a cup mouth assembly, which includes a concave cup mouth and a convex cup mouth from bottom to top. The concave cup mouth matches the hook, and the upper side of the convex cup mouth is provided with a fourth inclined surface to facilitate the cup body to be inserted from top to bottom.

[0015] The upper pressing block presses down, causing the first central column, the second central column, and the sealing plate to move downward, creating an open space. The user can then pour the liquid from the cup onto the drinking cap or a disposable cup.

[0016] This invention has the following characteristics and significant effects: This invention relates to a multi-directional pressing cup lid. Water is poured by pressing the upper pressing block, and the lid and cup body are opened and closed by pressing the side pressing blocks. Users can press down the upper pressing block to open the cup body and the water pouring channel, allowing the liquid in the cup body to be drunk directly or poured into the drinking cap. Alternatively, the side pressing blocks on both sides of the lid can be pressed simultaneously to unlock the cup body and lid for direct drinking. Multiple drinking methods enhance convenience and are suitable for different groups, especially children, making it widely applicable.

[0017] The present invention relates to a multi-directional pressing cup lid, comprising a cup lid, an upper pressing component, and a sealing plate component. The upper pressing component and the sealing plate component are detachable from the cup lid, which enables cleaning of the water pouring channel. Disassembly is simple and avoids the inability to clean the inside of the existing water pouring cup lid due to contamination. Attached Figure Description

[0018] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0019] Figure 1 This is a perspective view of a multi-directional pressing cup lid according to the present invention; Figure 2 This is a cross-sectional view (1) of a multi-directional pressing cup lid according to the present invention; Figure 3 This is a cross-sectional view (2) of a multi-directional pressing cup lid according to the present invention; Figure 4 This is a cross-sectional view (3) of a multi-directional pressing cup lid according to the present invention; Figure 5 This is a schematic diagram of the structure of the first mounting plate, the side pressing block, and the locking assembly in a multi-directional pressing cup lid according to the present invention; Figure 6 This is a schematic diagram of the structure of the first mounting plate in a multi-directional pressing cup lid according to the present invention; Figure 7This is a schematic diagram of the upper pressing component and sealing disc component in a multi-directional pressing cup lid according to the present invention; Figure 8 This is a schematic diagram of the upper pressing shell of a multi-directional pressing cup lid according to the present invention; Figure 9 This is a schematic diagram of the structure of the spring-loaded top cover in a multi-directional pressing cup lid according to the present invention; Figure 10 This is a schematic diagram of the structure of the second central column and sealing plate in a multi-directional pressing cup lid according to the present invention; Figure 11 This is a schematic diagram of the outer shell of the cup lid in a multi-directional pressing cup lid according to the present invention.

[0020] In the diagram: 1-Cup lid; 2-Outward protruding area; 3-Second mounting plate; 4-Sealing plate; 5-Upper pressing block; 6-Upper pressing assembly; 7-Water pouring channel; 8-Side pressing block; 9-Upper pressing outer shell; 10-Second central pillar; 12-Spring; 13-First central pillar; 14-Ventilation hole; 15-Vertical component; 16-Hook; 17-First mounting plate; 18-Locking assembly; 19-Arc-shaped block; 20-Horizontal component; 21-First inclined surface; 22-Internal thread; 23-Groove; 24-Water outlet; 25-External thread; 26-Triangular connecting post; 27-Pressing post; 28-Pressing piece; 29-Pressing plate; 30-Spring top cover; 31-Limiting block; 32-Limiting block moving area; 33-Limiting block locking area; 34-Upper limit groove of pressing post; 35-Lower limit groove of pressing post; 36-Through hole of side pressing block; 37-Cup lid outer shell. Detailed Implementation

[0021] The specific embodiments of the present invention will be further described below with reference to the accompanying drawings. It should be noted that these descriptions are for the purpose of aiding understanding the present invention, but do not constitute a limitation thereof. Furthermore, the technical features involved in the various embodiments of the present invention described below can be combined with each other as long as they do not conflict with each other.

[0022] Reference Figures 1-4 A multi-directional pressing cup lid that opens and closes with the cup body by pressing from the side, comprising a cup lid 1, an upper pressing component 6 detachably connected to the cup lid 1, and a sealing disc component that abuts against the upper pressing component 6; The cup lid 1 includes a first mounting plate 17 detachably connected to the cup lid 1 and a second mounting plate 3 connected to the sealing plate assembly. The first mounting plate 17 is limited by a pair of locking components 18 and side pressing blocks 8 that abut against each other in sequence. Reference Figure 5 and Figure 6The locking assembly 18 includes a horizontal member 20 and a vertical member 15 connected in sequence. The vertical member 15 is equipped with a hook 16 for locking or unlocking the cup body. The side pressing block 8 is connected to an arc-shaped block 19. The horizontal member 20 is connected to the arc-shaped block 19 to press the side pressing block 8, thereby pushing the horizontal member 20 and the vertical member 15 outward to separate the cup lid 1 from the cup body. Reference Figure 8 The upper pressing assembly 6 includes an upper pressing housing 9 detachably connected to the first mounting plate 17, a first central column 13 installed inside the upper pressing housing 9, and an upper pressing block 5 connected to the first central column 13 and passing through the upper pressing assembly 6; Reference Figure 7 and Figure 10 The sealing disc 4 assembly includes a second central column 10 that abuts against the first central column 13, a spring 12 sleeved on the outside of the second central column 10 and installed on the first mounting disc 17, and a sealing disc 4 installed at the lower end of the second central column 10 and moving up and down with the upper pressing block 5 to block or connect the water pouring channel 7 with the cup body. A water pouring channel 7 is formed between the second mounting plate 3, the first mounting plate 17, the upper pressing outer shell 9, and the sealing plate 4. The liquid in the cup enters the water pouring channel 7 through the space left by the downward movement of the sealing plate 4, and is then poured out by the user for drinking.

[0023] The junction of the transverse component 20 and the arc-shaped block 19 is provided with a first inclined surface 21.

[0024] The first mounting plate 17 is externally provided with a cup lid shell 37 for limiting and locking components 18 and side pressing blocks 8. The cup lid shell 37 has a side pressing block through hole 36 and an outward protrusion area 2 for installing the locking components 18. The first mounting plate 17 has a slot 23 for installing spring 12. The inner wall of the slot 23 has an internal thread 22. The upper pressing shell 9 has an external thread 25 that matches the internal thread 22, so that the upper pressing components 6 can be detached.

[0025] Reference Figure 9 A spring cover 30 is mounted on the upper end of the spring 12. The spring cover 30 and the spring 12 are limited by the first mounting plate 17. The top of the second central column 10 has a limit block movable area 32 and a limit block locking area 33. The spring cover 30 has a limit block 31 that cooperates with the limit block movable area 32 and the limit block locking area 33 and is used to limit the second central column 10. During disassembly, the second central column 10 can be disassembled from the spring cover 30 simply by rotating it so that the limit block 31 is located in the limit block movable area 32.

[0026] The upper pressing shell 9 has an upper limit groove 34 and a lower limit groove 35 for the pressing column on its inner side.

[0027] Below the first central post 13 is a pressing plate 29 for locking or unlocking the sealing disc 4 assembly. Multiple triangular connecting posts 26 with limiting grooves are installed on the outer side of the first central post 13. The pressing plate 29 includes pressing pieces 28 and pressing posts 27 evenly spaced. The pressing posts 27 cooperate with the limiting grooves of the triangular connecting posts 26, such that the pressing posts 27 are positioned once in the upper limiting groove 34 and once in the lower limiting groove 35. The lower limiting groove 35 has a second inclined surface that cooperates with the pressing posts 27, and the pressing piece has a third inclined surface that cooperates with the lower limiting groove 35 and the triangular connecting posts 26.

[0028] The first central column 13, the second central column 10, and the upper pressing block 5 are provided with vent holes 14, and the first mounting plate 17 is provided with a water outlet hole 24 that communicates with the cup body. The vent holes 14 facilitate the discharge of high-temperature gas inside the cup body, and the diameter of the vent holes 14 is relatively small.

[0029] The cup body is provided with a cup mouth assembly, which includes a concave cup mouth and a convex cup mouth from bottom to top. The concave cup mouth matches the hook 16, and the upper side of the convex cup mouth has a fourth inclined surface to facilitate the cup body to be inserted from top to bottom. The upper pressing block 5 presses down, causing the first central column 13, the second central column 10, and the sealing plate 4 to move down, creating an open space, allowing the user to pour the cup and pour the liquid into the drinking cap.

[0030] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings, but the present invention is not limited to the described embodiments. For those skilled in the art, various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention, and these variations still fall within the protection scope of the present invention.

Claims

1. A multi-directional pressing cup lid, which opens and closes with the cup body by pressing along its side, comprising a cup lid, an upper pressing assembly detachably connected to the cup lid, and a sealing disc assembly abutting against the upper pressing assembly; characterized in that: The cup lid includes a first mounting plate detachably connected to the cup lid and a second mounting plate connected to the sealing plate assembly. The first mounting plate is limited by a pair of locking components and a side pressing block that abut against each other in sequence. The locking assembly includes a horizontal component and a vertical component connected in sequence. The vertical component is equipped with a hook for locking or unlocking the cup body. The side pressing block is connected to an arc-shaped block. The horizontal component connects with the arc-shaped block to press the side pressing block, thereby pushing the horizontal component and the vertical component outward to separate the cup lid from the cup body. The upper pressing assembly includes an upper pressing shell detachably connected to the first mounting plate, a first central column installed inside the upper pressing shell, and an upper pressing block connected to the first central column and penetrating the upper pressing assembly; The sealing disc assembly includes a second central column that abuts against the first central column, a spring sleeved on the outside of the second central column and installed on the first mounting plate, and a sealing disc installed at the lower end of the second central column that moves up and down with the upper pressing block to block or connect the water pouring channel with the cup body. A water-returning channel is formed between the second mounting plate, the first mounting plate, the upper pressing shell, and the sealing plate.

2. The multi-directional pressing cup lid according to claim 1, characterized in that: The junction between the horizontal component and the arc-shaped block is provided with a first inclined surface.

3. A multi-directional pressing cup lid according to claim 1 or 2, characterized in that: The first mounting plate is provided with a cup cover shell for limiting and locking components and side pressing blocks. The cup cover shell has a through hole for the side pressing block and an outward protrusion area for installing the locking components.

4. A multi-directional pressing cup lid according to claim 1 or 2, characterized in that: The first mounting plate has a slot for installing a spring, and the inner wall of the slot has an internal thread. The upper pressing housing has an external thread that matches the internal thread, so that the upper pressing assembly can be detached.

5. A multi-directional pressing cup lid according to claim 1, characterized in that: A spring cover is placed on the upper end of the spring. A limit block movable area and a limit block locking area are opened at the top of the second central column. The spring cover is provided with a limit block that cooperates with the limit block movable area and the limit block locking area and is used to limit the second central column.

6. A multi-directional pressing cup lid according to claim 1, characterized in that: The upper pressing shell has an upper limit groove and a lower limit groove for the pressing column on its inner side.

7. A multi-directional pressing cup lid according to claim 6, characterized in that: Below the first central post is a pressing plate for locking or unlocking the sealing plate assembly. Multiple triangular connecting post limiting grooves are installed on the outside of the first central post. The pressing plate includes pressing pieces and pressing posts evenly spaced. The pressing posts cooperate with the triangular connecting post limiting grooves so that the pressing posts are located in the upper limiting groove of the pressing posts once and in the lower limiting groove of the pressing posts once.

8. A multi-directional pressing cup lid according to claim 1, characterized in that: The lower limiting groove of the pressing column is provided with a second inclined surface that cooperates with the pressing column, and the pressing block is provided with a third inclined surface that cooperates with the lower limiting groove of the pressing column and the triangular connecting column.

9. A multi-directional pressing cup lid according to claim 1, characterized in that: The first central column, the second central column, and the upper pressing block are provided with vent holes, and the first mounting plate is provided with a water outlet hole that communicates with the cup body.

10. A multi-directional pressing cup lid according to claim 1, characterized in that: The cup body is provided with a cup mouth assembly, which includes a concave cup mouth and a convex cup mouth from bottom to top. The concave cup mouth matches the hook, and the upper side of the convex cup mouth is provided with a fourth inclined surface to facilitate the cup body to be inserted from top to bottom.