CN117179511A - Combined locking structure of cup cover - Google Patents

Combined locking structure of cup cover Download PDF

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Publication number
CN117179511A
CN117179511A CN202210598946.7A CN202210598946A CN117179511A CN 117179511 A CN117179511 A CN 117179511A CN 202210598946 A CN202210598946 A CN 202210598946A CN 117179511 A CN117179511 A CN 117179511A
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CN
China
Prior art keywords
sliding
sliding block
rocker switch
rail frame
cup cover
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN202210598946.7A
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Chinese (zh)
Inventor
徐庸铨
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Jiin Ming Industry Co ltd
Original Assignee
Jiin Ming Industry Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Jiin Ming Industry Co ltd filed Critical Jiin Ming Industry Co ltd
Priority to CN202210598946.7A priority Critical patent/CN117179511A/en
Publication of CN117179511A publication Critical patent/CN117179511A/en
Pending legal-status Critical Current

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Abstract

The invention relates to a combined locking structure of a cup cover, which at least comprises a cup cover body, a sliding rail frame, a sliding block and a rocker switch, wherein an installation space is concavely arranged on the top surface of the cup cover body, a water outlet is penetrated through the front end of the installation space, the sliding rail frame is installed in the installation space, the sliding block is embedded on the sliding rail frame and can slide between a first position and a second position of the sliding rail frame, the front end of the sliding block is provided with a water sealing block for forming a watertight state corresponding to the water outlet, the rocker switch is pivoted on the sliding block, the sliding block can be controlled to be in a locking state on the sliding rail frame, and the sliding rail frame, the sliding block and the rocker switch are combined and embedded on the top surface of the cup cover body and horizontally slide on the top surface of the cup cover body, so that the structure and the purpose of effectively sealing the water outlet of the cup cover can be provided, and the structure can be prevented from being broken due to collision are achieved.

Description

Combined locking structure of cup cover
Technical Field
The invention relates to a combined locking structure of a cup cover, in particular to a structure capable of selectively opening or sealing a water outlet of the cup cover by means of horizontal sliding.
Background
It is known that coffee shops and beverage shops are popular in recent years and are seen everywhere on the street, so that people take people to buy various coffee, tea or other beverages, which are sold in disposable paper cups or plastic cup packages, and according to statistics of environmental protection departments, the usage amount of the disposable beverage cups in taiwan is up to 15 hundred million per year, and the disposable beverage cups provide convenience for people, but the beverage cups cannot be decomposed naturally, so that a considerable burden is brought to the environment.
Although these drinking cups can be recycled, the statistical recovery rate is about eight years according to 2019 of the environmental protection department, that is, hundreds of millions of drinking cups are buried or burned together with general garbage, even streets or beach which are discarded at will somewhere, which endanger natural ecology and environment, so that governments and many environmental protection groups call for people to use environmental protection cups instead, so that the use of disposable drinking cups is reduced, and the waste is reduced.
The environment-friendly cup is generally provided with a cup cover for correspondingly sealing the environment-friendly cup so as to be convenient for users to carry, and can be used in real time for people, the cup cover is at least provided with a water outlet and a cover-lifting type sealing cover, the water outlet is penetrated on the cup cover and communicated with a containing space of the environment-friendly cup, the sealing cover is pivoted on the cup cover and can correspondingly open or jogge to seal the water outlet, a user does not need to take down the cup cover, the water outlet can be opened after the sealing cover of the cup cover is lifted, and the cup cover can be directly closed to the mouth for the users to drink.
However, when the cover of the cup cover is in an open state, if the cover is accidentally collided and bent, damage such as breakage and the like are very easy to occur, so that the cover can not completely seal the water outlet, and people can indirectly purchase an environment-friendly cup for use, and if the cover is repeatedly circulated, the cover still has the actions of wasting resources and being not environment-friendly.
Disclosure of Invention
Therefore, how to provide a durable structure with sealing the water outlet of the cup cover and avoiding breakage and damage caused by collision and bending is the direction of the invention to be researched and improved.
Accordingly, in view of the foregoing, the present invention has been devised by gathering relevant data, evaluating and considering the same by a plurality of parties, and working on the accumulated years of experience in this industry, through continuous trial and error.
In order to achieve the above-mentioned purpose, the present invention provides a combined locking structure of a cup lid, at least comprising: the cup cover comprises a cup cover body, a water outlet and a water outlet, wherein an installation space is concavely formed in the top surface of the cup cover body, and the front end of the installation space is provided with the water outlet in a penetrating manner; the sliding rail frame is provided with at least two sliding rails and a stop part, the two sliding rails are parallel to each other, the stop part is convexly arranged between the sliding rails, and the sliding rail frame is embedded in the installation space; the sliding block is provided with at least one water sealing block, two sliding grooves and an opening, the opening penetrates through the top surface of the sliding block, the water sealing block is arranged at the front end of the bottom of the sliding block and is used for forming a watertight state corresponding to the water outlet, and the two sliding grooves are arranged at the bottom of the sliding block and correspond to the sliding rails, so that the sliding block horizontally slides between a first position and a second position of the sliding rail frame; the rocker switch is provided with at least one pivoting part and one propping part, and the pivoting part penetrates through the opening of the sliding block and is pivoted on the sliding block, so that the rocker switch is pivoted on the sliding block and swings between a first angle and a second angle; the propping part is arranged at the front end of the rocker switch and is responsible for corresponding to the stop part of the sliding block, and when the rocker switch swings at the first angle, the propping part is propped against the stop part, so that the sliding block can form a locking state on the sliding rail frame.
According to the main features described above, the water seal block is made of a waterproof material having elasticity.
According to the main features, the sliding rail of the sliding rail frame is arranged to be inclined downwards at an angle according to the direction of the water outlet, so that when the sliding block slides to the first position, the bottom of the sliding block can be embedded and attached to the top surface of the cup cover body.
According to the above main features, the left and right sides of the installation space have a plurality of protruding points, the outer sides of the front and rear ends of the two sliding rails are respectively concavely provided with at least one embedded portion, and the embedded portions of the sliding rails are respectively correspondingly embedded on the protruding points on one side of the installation space.
According to the above main features, a pivot point is respectively protruding on the inner sides of the two sliding grooves of the sliding block, and the opening of the sliding block is relatively disposed at the middle of the two sliding grooves, so that the pivot portion of the rocker switch is correspondingly pivoted on the pivot point.
According to the above main features, the front and rear ends of the rocker switch are respectively concavely provided with a positioning groove, the front and rear ends of the opening of the slider are respectively provided with a convex rib, and the positioning grooves at the front and rear ends can be embedded into the convex ribs at the corresponding ends, so that the rocker switch can be swung and fixed at the first angle or the second angle.
The invention has the main advantages that the invention provides a combined locking structure of a cup cover, which is characterized in that the top surface of a cup cover body is concavely provided with an installation space, the front end of the installation space is provided with at least one water outlet in a penetrating way, at least one sliding rail frame and at least one sliding block are combined and embedded in the installation space, the sliding block can horizontally and linearly slide between a first position and a second position of the sliding rail frame, the front end of the sliding block is provided with a water sealing block for correspondingly sealing the water outlet, and the sliding block can be controlled to be in a locking state on the sliding rail frame by utilizing the swinging of a rocker switch, and the sliding rail frames, the sliding block and the rocker switch are combined and embedded on the top surface of the cup cover body and horizontally slide on the top surface of the cup cover body, thereby achieving the effects of effectively sealing the cup cover water outlet and avoiding fracture and destruction caused by collision and the structure thereof.
Drawings
FIG. 1 is a schematic view of a combined locking structure of a cup lid according to the present invention;
FIG. 2 is a schematic partial cross-sectional view of FIG. 1;
FIG. 3 is a schematic diagram of an embodiment of a combined locking structure for a cup lid according to the present invention, showing a state in which the slider slides to a first position to lock and seal the water outlet;
FIG. 4 is a perspective view of FIG. 3;
FIG. 5 is a second schematic view of an embodiment of a combined locking structure for a cup lid according to the present invention, showing a manner in which the slider is unlocked and can slide between a first position to a second position of the slide rail;
fig. 6 is a third schematic view of an embodiment of a combined locking structure for a cup lid according to the present invention, in which the slider slides to a second position to lock and keep the water outlet open.
Reference numerals illustrate: 10-a cup cover body; 11-installation space; 110-a water outlet; 111-bump; 20-a slide rail frame; 21-a slide rail; 211-embedding part; 22-stop; 30-sliding blocks; 31-a water seal block; 32-sliding grooves; 321-pivot points; 33-opening; 331-ribs; 40-rocker switch; 401-positioning grooves; 41-a pivoting part; 42-abutment.
Detailed Description
To achieve the above and other objects and advantages, in accordance with the purpose of the invention, as embodied and broadly described, a preferred embodiment of the invention will now be described with reference to the accompanying drawings, in which the features and functions are as follows, to facilitate a complete understanding.
Referring to fig. 1 to 6, the present invention provides a combined locking structure for a cup lid, at least comprising: a cup cover body 10, a sliding rail frame 20, a sliding block 30 and a rocker switch 40 (as shown in fig. 1 and 2), wherein the cup cover body 10 can be covered on a cup body, a mounting space 11 is concavely arranged on the top surface of the cup cover body 10, a water outlet 110 is penetrated at the front end of the mounting space 11, the sliding rail frame 20 is embedded in the mounting space 11, the sliding block 30 is embedded on the sliding rail frame 20 for horizontally and linearly sliding the sliding block 30 between a first position and a second position of the sliding rail frame 20, a water sealing block 31 is arranged at the front end of the sliding block 30, when the sliding block 30 slides to the first position, the water sealing block 31 correspondingly seals the water outlet 110, and preferably, the water sealing block 31 is made of rubber, silica gel or other elastic waterproof materials, so that the water sealing block 31 can truly seal the water outlet 110 and form a watertight state, when the sliding block 30 slides to the second position, the water sealing block 31 is separated from the water outlet 110, so that the water outlet 110 is opened, the rocker switch 40 has a pivot portion 41 pivoted on the sliding block 30 (as shown in fig. 1 to 3), and swings between a first angle and a second angle with the pivot portion 41 as an axis, when the rocker switch 40 swings to the first angle, the sliding block 30 is controlled to form a locking state, when the rocker switch 40 swings to the second angle, the locking state of the sliding block 30 is released, so that the sliding block 30 can slide, and the sliding rail frame 20, the sliding block 30 and the rocker switch 40 are combined and embedded on the top surface of the cup cover body 10 (as shown in fig. 4), and slide horizontally on the top surface of the cup cover body 10 (as shown in fig. 3 to 6), therefore, the structure and the purpose of effectively sealing the water outlet of the cup cover and avoiding fracture caused by collision can be achieved.
More specifically, the slide rail frame 20 has at least two slide rails 21 and a stopping portion 22, the slide rails 21 are parallel to each other, the stopping portion 22 is protruded between the slide rails 21, the slide block 30 has at least two slide grooves 32 and an opening 33 (as shown in fig. 1 and 2) in addition to the water sealing block 31, the opening 33 is penetrated through the top surface of the slide block 30, the two slide grooves 32 are respectively disposed on the left and right sides of the bottom of the slide block 30 and respectively correspond to the two slide rails 21, so that the outer sides of the two slide grooves 30 are correspondingly embedded in the inner sides of the slide rails 21, the slide block 30 can horizontally slide between the first position to the second position on the slide rail frame 20, the rocker switch 40 has a abutting portion 42 in addition to the pivoting portion 41, and preferably, the pivoting portion 41 is disposed at the bottom of the rocker switch 40, so as to penetrate through the opening 33 of the slide block 30 and pivot on the slide block 30, the rocker switch 40 can swing between the first angle and the second angle (as shown in fig. 3 and 5), the outer sides of the slide rail frame 30 correspondingly swing between the first angle and the second angle (as shown in fig. 3 and 5), the front side of the slide block 40 is correspondingly formed between the first position and the second position and the stopping portion 42 shown in fig. 2, and the front side of the slide frame 40 is pivoted to the second position (shown in fig. 2) and the front side of the slide frame 40 is correspondingly pivoted to the top position shown in fig. 2).
In a preferred embodiment, the mounting space 11 of the cup cover body 10 is provided with at least a plurality of protruding points 111, the protruding points 111 are respectively disposed at the front end and the rear end of the left and right side surfaces of the mounting space 11 (as shown in fig. 1 and 2), the front and rear end portions of the outer sides of the sliding rails 21 are respectively concavely provided with an embedded portion 211, corresponding to the protruding points 111 of the mounting space 11, so that the embedded portion 211 of the front and rear end portions of each sliding rail 21 can be respectively provided with the protruding points 111 of the corresponding sides of the mounting space 11 in an embedded manner, the sliding rail frame 20 is mounted and embedded in the mounting space 11 (as shown in fig. 1 and 2), the inner sides of the two sliding grooves 32 are respectively convexly provided with a pivot point 321 (as shown in fig. 2), the opening 33 is relatively disposed at the middle of the two sliding grooves 32, and the pivot portion 41 of the sliding rail switch 40 can pass through the opening 33 of the sliding block 30 and is pivotally mounted on the pivot point 321 of the two sliding grooves 32 (as shown in fig. 1 and 2), so that the sliding rail switch 40 can swing between the first angle and the second angle (as shown in fig. 3 and 5).
And the front and rear ends of the pivot portion 41 of the rocker switch 40 are respectively concavely provided with a positioning groove 401, the front and rear ends of the opening 33 of the slider 30 are respectively correspondingly provided with a convex rib 331, the positioning grooves 401 at the front and rear ends can be respectively correspondingly embedded with the convex ribs 331 at each end, so that the propping portion 42 can correspondingly prop against the edge of the stopping portion 22, and the rocker switch 40 can control the slider 30 to form a locking state (as shown in fig. 3 and 6) or a sliding state (as shown in fig. 5) on the sliding rail frame 20, unlike the conventional flip type sealing cover, even if other accidental collision occurs during use, there is no need to worry about structural fracture caused by collision.
When the slider 30 is placed at the first position, the water seal block 31 of the slider 30 correspondingly seals the water outlet 110 of the cup cover body 10, the rocker switch 40 pivoted and embedded on the slider 30 can be swung to the first angle, the positioning groove 401 at the front end of the rocker switch 40 is mutually embedded with the convex rib 331 at the front end of the opening 33 of the slider 30, so that the rocker switch 40 is fixed at the first angle, the propping portion 42 of the rocker switch 40 is propped against the stop portion 22, the slider 30 is controlled to form a locking state on the slide rail frame 20 to keep the positioning, so that the water outlet 110 forms a watertight state (as shown in fig. 3), when a user needs drinking, the rocker switch 40 is also controlled to release the locking by the rocker switch 40, the positioning groove 401 at the rear end of the rocker switch 40 is mutually embedded with the convex rib 331 at the rear end of the opening 33 of the slider 30, the propping portion 42 of the rocker switch 40 is enabled to be fixed at the first angle, the propped against the stop portion 22 of the slide rail frame 20, so that the water outlet 110 is enabled to be separated from the slide rail frame 20, and the water outlet 110 is enabled to be directly separated from the water outlet 110 when the position of the cup cover body 10 is enabled to be separated from the position (as shown in fig. 3).
When the slider 30 slides to the second position, the rocker switch 40 swings to the first angle to control the slider 30 to be in a locked state for positioning, and the positioning slot 401 at the front end of the rocker switch 40 is engaged with the rib 331 corresponding to the front end of the opening 33 of the slider 30 again, so that the abutting portion 42 abuts against the stop portion 22, and the water outlet 110 is kept in an open state (as shown in fig. 6), and vice versa.
In addition, the sliding rail 21 of the sliding rail frame 20 may be disposed at an angle inclined downward in the direction of the water outlet 110 (as shown in fig. 2), so that the sliding block 30 is relatively displaced downward in the process of sliding in translation towards the first position, and when the sliding block 30 slides to the first position, the bottom of the sliding block 30 is just capable of being embedded and attached to the top surface of the cap body 10, so as to limit the sliding block 30 from being capable of sliding in the direction, and when the water sealing block 31 seals the water outlet 110, the water sealing block 31 is not excessively deformed to cause leakage.
The above description is illustrative of the invention and is not to be construed as limiting, and it will be understood by those skilled in the art that many modifications, variations or equivalents may be made without departing from the spirit and scope of the invention as defined in the appended claims.

Claims (6)

1. A combination locking structure for a cup lid, comprising:
the cup cover comprises a cup cover body, a water inlet and a water outlet, wherein an installation space is concavely formed in the top surface of the cup cover body, and at least one water outlet is formed in the front end of the installation space in a penetrating manner;
the sliding rail frame is provided with at least two sliding rails and a stop part, the two sliding rails are parallel to each other, the stop part is convexly arranged between the sliding rails, and the sliding rail frame is embedded in the installation space;
the sliding block is provided with at least one water sealing block, two sliding grooves and an opening, the opening penetrates through the top surface of the sliding block, the water sealing block is arranged at the front end of the bottom of the sliding block and is used for forming a watertight state corresponding to the water outlet, and the two sliding grooves are arranged at the bottom of the sliding block and correspond to the sliding rail, so that the sliding block horizontally slides between a first position and a second position of the sliding rail frame; the method comprises the steps of,
the rocker switch is provided with at least one pivoting part and a propping part, and the pivoting part penetrates through the opening of the sliding block and is pivoted on the sliding block, so that the rocker switch is pivoted on the sliding block and swings between a first angle and a second angle; the propping part is arranged at the front end of the rocker switch and is responsible for corresponding to the stop part of the sliding block, and when the rocker switch swings at the first angle, the propping part is propped against the stop part, so that the sliding block can form a locking state on the sliding rail frame.
2. The combination locking mechanism for a cup lid as set forth in claim 1, wherein: the water sealing block is made of elastic waterproof material.
3. The combination locking mechanism for a cup lid as set forth in claim 1, wherein: the sliding rail of the sliding rail frame is arranged to incline downwards by an angle according to the direction of the water outlet.
4. The combination locking mechanism for a cup lid as set forth in claim 1, wherein: the mounting space is provided with a plurality of protruding points, at least one embedding part is concavely arranged at the outer sides of the front end part and the rear end part of the two sliding rails respectively, and the embedding parts of the sliding rails are respectively correspondingly embedded on the protruding points at one side of the mounting space.
5. The combination locking mechanism for a cup lid as set forth in claim 1, wherein: the inner sides of the two sliding grooves of the sliding block are respectively provided with a pivot point in a protruding mode, and the opening of the sliding block is oppositely arranged at the middle of the two sliding grooves and is used for enabling the pivot part of the rocker switch to be correspondingly pivoted on the pivot points.
6. The combination locking mechanism for a cup lid as set forth in claim 1, wherein: the front end and the rear end of the rocker switch are respectively concavely provided with a positioning groove, the front end and the rear end of the opening of the sliding block are respectively and oppositely provided with a convex rib, and the positioning grooves at the front end and the rear end can be embedded into the convex ribs at the corresponding ends, so that the rocker switch can be fixed at the first angle or the second angle in a swinging way.
CN202210598946.7A 2022-05-30 2022-05-30 Combined locking structure of cup cover Pending CN117179511A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202210598946.7A CN117179511A (en) 2022-05-30 2022-05-30 Combined locking structure of cup cover

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202210598946.7A CN117179511A (en) 2022-05-30 2022-05-30 Combined locking structure of cup cover

Publications (1)

Publication Number Publication Date
CN117179511A true CN117179511A (en) 2023-12-08

Family

ID=88983703

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202210598946.7A Pending CN117179511A (en) 2022-05-30 2022-05-30 Combined locking structure of cup cover

Country Status (1)

Country Link
CN (1) CN117179511A (en)

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