Sliding type sealing bottle cap

By designing a sliding sealed bottle cap, the combination of the small cap of the closure slider in the guide groove, circular guide rail and positioning point is solved, and the balance problem of beverage container cap is achieved between preventing overflow and convenient use, achieving convenient cleaning and sealing effects.

CN223054047UActive Publication Date: 2025-07-04JINHUA HUALIANG VESSEL CO LTD
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Patent Information

Application Number
CN202421774050.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-24
Publication Date
2025-07-04
Estimated Expiration
2034-07-24

AI Technical Summary

Technical Problem

Existing beverage container lids are difficult to find a balance between preventing content from overflowing and easy to use, and are difficult to clean.

Method used

A sliding sealed bottle cap is designed, which includes a small closure slider cover. Through the cooperation of guide grooves, circular guide rails and positioning points, the elastic sliding positioning beads are used to achieve stable switching between the closed and open positions, and is conveniently controlled through the handle.

Benefits of technology

It realizes the prevention of overflow of container contents in the closed position, is convenient to use in the open position, and is easy to clean, providing a good user experience and sealing effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a sliding type sealing bottle cap, which belongs to the technical field of caps of drinking utensils and comprises a container. A cover; the lid has an opening configured to receive liquid from the container and a guide slot, a circular guide rail and a positioning point to receive a closed slider small lid; the small closed slider cover is provided with a handle and an elastic sliding positioning ball; wherein the closed slider small cover with a handle and an elastic sliding positioning ball is configured to slide along a guide groove of the cover, a circular guide rail and a positioning point; wherein the closure slider cap is configured along a guide slot and a circle of the cap in a closed position in which the closure slider cap covers an opening of the cap to help prevent the contents of the container from overflowing and an open position in which the closure slider cap exposes the opening of the cap so that the contents of the container can be consumed The L-shaped guide rails move relative to each other.
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Description

Technical Field

[0001] The utility model belongs to the technical field of covers for drinking utensils, and particularly relates to a sliding sealed bottle cap. Background Art

[0002] Beverage containers can be filled with hot or cold potable liquids, such as water, coffee, tea, soft drinks, or alcoholic beverages such as beer. These beverage containers can be made of a variety of materials, such as stainless steel, ceramic, glass, plastic, cardboard, or paper materials. A cap can be provided on the beverage container to provide an opening for pouring out the contents of the beverage container. In some cases, it may be desirable to selectively close and store the container so that the contents of the container do not spill. Content of the Utility Model

[0003] The purpose of the utility model is to provide a sliding sealed bottle cap to solve the problems raised in the background art.

[0004] To achieve the above purpose, the utility model provides the following technical solution: A sliding sealed bottle cap, comprising:

[0005] A container;

[0006] A cap;

[0007] The cap has an opening configured to receive liquid from the container and a guide groove, a circular guide rail, and a positioning point for receiving a sealing sliding small cap;

[0008] A sealing sliding small cap having a handle and an elastic sliding positioning bead;

[0009] Wherein, the sealing sliding small cap having a handle and an elastic sliding positioning bead is configured to slide between the guide groove, the circular guide rail, and the positioning point of the cap;

[0010] Wherein, the sealing sliding small cap is configured to move between a closed position where the sealing sliding small cap covers the opening of the cap to help prevent the contents of the container from spilling and an open position where the sealing sliding small cap exposes the opening of the cap so that the contents of the container can be consumed along the guide groove and the circular guide rail of the cap;

[0011] Wherein, the sealing sliding small cap is configured to be locked in place at the closed position and the open position by the guide groove, the circular guide rail, and the elastic sliding positioning bead, and the positioning point of the cap. Of course, the positioning point can also be cancelled, and it can be locked in place only by the pre-pressure and pre-compression amount of the elastic sliding positioning bead (the positioning point is preferably used as the description of the present invention. When it comes to the positioning point, it can also be replaced by the pre-pressure and pre-compression amount of the elastic sliding positioning bead for locking in place);

[0012] Wherein, the closable slider small cover is configured to be fixed on the cover and configured to be removable from the cover by a user via a handle of the closable slider small cover;

[0013] Wherein, the cover further includes a channel and a guide rail configured to receive the closable slider small cover, and wherein the guide rail and the guide groove limit the lateral movement of the closable slider small cover and allow a range of lateral movement;

[0014] Wherein, a rear arc of the guide groove of the cover is configured to form a gap between the closable slider and the rear wall of the channel when the closable slider small cover is in the open position, such that the gap helps to prevent displacement of the liquid in the channel.

[0015] Wherein, an expected positioning bead is located in the cover, and the guide rail is disposed on the closable slider small cover.

[0016] Specifically, the closable slider small cover includes an elastic sliding positioning bead and a small cover body;

[0017] The cover includes a guide groove, a circular guide rail, and positioning points for locking the closable slider small cover in the closed position and the open position, and for holding the closable slider small cover on the cover.

[0018] Specifically, when the user pushes the closable slider small cover assembly backward along the guide groove and the circular guide rail of the cover to a position behind the second positioning point of the cover, the elastic sliding positioning bead and the positioning point interact to hold the closable slider small cover in the open position and prevent it from freely moving forward;

[0019] When the user pushes the closable slider small cover assembly forward along the guide groove of the cover to a position in front of the first positioning point, the elastic sliding positioning bead and the positioning point interact to hold the closable slider small cover in the closed position and prevent it from freely moving backward.

[0020] Specifically, the elastic sliding positioning bead is located on the closable slider small cover and on the positioning point, the circular guide rail, and the guide groove of the cover.

[0021] Specifically, the closable slider small cover tapers at each end to provide a reduced area of contact between each end of the closable slider and the channel and helps to prevent displacement of the liquid in the channel.

[0022] Specifically, the closable slider small cover has symmetry such that the closable slider small cover can be placed in different orientations and gently pressed onto the cover.

[0023] Compared with the prior art, the technical effects and advantages of the present utility model:

[0024] The sliding sealing bottle cap: (1) slides between a closed position and an open position, in which closed position the sealing slider small cap covers the opening to help prevent the spillage of the contents of the container, and in which open position the sealing slider small cap exposes the opening so that the contents of the container can be consumed; (2) is locked in place between the closed position and the open position; (3) remains fixed to or removable from the cap during movement between the closed position and the open position, so that the cap and the sealing slider small cap can be cleaned.

[0025] The sealing slider small cap can cover the opening of the cap in the closed position, effectively preventing the liquid in the container from spilling. The handle design facilitates the user to easily control the switching of the sealing slider small cap between the closed and open positions.

[0026] The cooperation between the elastic sliding positioning beads and the positioning points can effectively lock the sealing slider small cap in the open or closed position, preventing accidental movement. The user can unlock and move the sealing slider small cap by applying an appropriate force.

[0027] The sealing slider small cap can be detached from the cap for easy cleaning, and the user can reinstall the sealing slider small cap on the cap through simple operations. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] In order to more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the following will briefly introduce the drawings required for the description of the specific embodiments or the prior art. Obviously, the following drawings are some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0029] Figure 1 Shows an isometric top view of an exemplary cap assembly in the open position.

[0030] Figure 2 Shows an isometric top view of an exemplary cap assembly in the closed position.

[0031] Figure 3 Shows a sectional view of the sliding direction of an exemplary cap assembly in the closed position.

[0032] Figure 4 Shows a sectional view of the locking direction of an exemplary cap assembly in the closed position.

[0033] Figure 5 Shows for receiving Figure 1 An isometric view of an exemplary container for an exemplary cap assembly.

[0034] Figure 6 Shows an isometric top view of the lid in an exemplary lid assembly of Figure 1 .

[0035] Figure 7 Shows a top view of the lid in an exemplary lid assembly of Figure 1 .

[0036] Figure 8 Shows a transverse cross-sectional view of the lid in an exemplary lid assembly of Figure 1 .

[0037] Figure 9 Shows a longitudinal cross-sectional view of the lid in an exemplary lid assembly of Figure 1 .

[0038] Figure 10 Shows a partial enlarged view of the closure slider small lid Figure 1 in an exemplary lid assembly of Figure 9 .

[0039] Figure 11 Shows an isometric top view of the closure slider small lid 150 in an exemplary lid assembly of Figure 1 .

[0040] Figure 12 Shows an isometric bottom view of the closure slider small lid in an exemplary lid assembly of Figure 1 .

[0041] Figure 13 Shows a top view of the closure slider small lid in an exemplary lid assembly of Figure 1 .

[0042] Figure 14 Shows a cross-sectional view of the closure slider small lid in an exemplary lid assembly of Figure 1 .

[0043] Figure 15 Shows a cross-sectional view of the sliding positioning beads in the closure slider small lid in an exemplary lid assembly of Figure 1 . Detailed Description of the Invention

[0044] In the following description, numerous specific details are given to provide a more thorough understanding of the present invention. However, it will be apparent to one of ordinary skill in the art that the present invention may be practiced without one or more of these details. In other instances, well-known features have not been described in order to avoid obscuring the present invention.

[0045] Unless otherwise defined, the directions such as up, down, left, right, front, back, inside and outside involved in this text are based on the up, down, left, right, front, back, inside and outside directions shown in the figures of the present utility model, and are hereby explained together.

[0046] This embodiment discloses a sliding sealing bottle cap as shown in Figures 1 to 15 :

[0047] Figure 1 An exemplary cap assembly 100 is depicted. The cap assembly 100 generally includes a cap 110 and a closure slider cap 150 configured to move between an open position and a closed position to selectively open or close an opening 112 of a liquid. Figure 1 An isometric view of the exemplary cap assembly 100 is depicted, wherein the closure slider cap 150 is in an open position on a container 105. Figure 2 An isometric view of the exemplary cap assembly 100 is depicted, wherein the closure slider cap 150 is in a closed position on a container 105. Figure 3 A cross-sectional view showing the sliding direction of an exemplary cap assembly in a closed position is shown. Figure 4 A cross-sectional view showing the locking direction of an exemplary cap assembly in a closed position is shown. Figure 5 An isometric view of an exemplary container 105 for receiving the cap 110 is depicted. The cap 110 may also include a sidewall 114 that may define a groove 116 for placing a gasket (not shown) that provides a seal between the cap assembly 100 and the container 105. However, as will be discussed below, other sealing methods for sealing the cap 110 to the container 105 are also contemplated. The cap 110 may also include a rim 118 for engaging an opening 107 of the container 105. The rim 118 may also include a top wall 120 and an optional cap tab 122 extending from the top wall 120 to assist a user in removing the cap assembly 100 from the container 105.

[0048] Figure 6 An isometric top-down perspective view of the cap 110 in an exemplary cap assembly is shown. Figure 7 Shows Figure 1 The top view of the cap in an exemplary cap assembly. The closure slider cap 150 is removed. As shown in Figure 6 The cap 110 may also include an intermediate wall 124 extending below the rim 118. The intermediate wall 124 may define a recess 126 for receiving the closure slider cap 150. Figure 9Longitudinal cross-sectional view of the lid in the exemplary lid assembly. The recess 126 and the intermediate wall 124 may form intermediate guide walls 123a and 123b, including two circular guide rails 134a, 134b. The open position or the closed position determines the specific positions of the positioning points 159a, 159b, 159c, 159d. This allows the closure slider lid 150 to be selectively locked in the open position or the closed position during use, which also prevents the closure slider lid 150 from inadvertently moving in the guide channel 127 and the two circular guide rails 134a, 134b. And in particular, the recess 126 may define a guide channel 127 and circular guide rails 134a and 134b for the closure slider lid 150 to move between the open position and the closed position. As Figure 7 shown, the opening 112 for drinking or pouring liquid out of the container may also be formed in the recess 126.

[0049] The recess 126 and the intermediate wall 124 of the lid 110 may include two circular guide rails 134a, 134b and positioning points 159a, 159b, 159c, 159d. The positioning points, circular guide rails 134a, 134b and the guide groove 127 are configured to allow the closure slider lid 150 to travel along the guide channel 127 and the spring sliding positioning beads along the two circular guide rails 134a, 134b from the closed position of the closure slider lid to the open position and lock over the positioning points 159b, 159d. Conversely, it allows the closure slider lid 150 to travel along the guide channel 127 and the spring sliding positioning beads along the two circular guide rails 134a, 134b from the open position of the closure slider lid to the closed position and lock over the positioning points 159a, 159c.

[0050] In addition, the recess 127 of the lid 110 may include one or more vent holes 132a, 132b, which provide an air inflow channel during pouring liquid from the container. The flow rate of the vent holes meets the needs of the user, and its size can be further adjusted as needed. As will be discussed in further detail below, depending on the position of the closure slider lid relative to the lid 110, the first vent hole 132a and the second vent hole 132b may be selectively opened and closed by the closure slider lid 150.

[0051] Also as Figure 6As shown, the lid 110 may also include a rear arc 129 within the channel 127. The rear arc 129 may be located on the rear wall of the channel 127. The rear arc 129 provides a stopping function for the closure slider lid 150 such that the closure slider lid 150 is close to the rear arc 129 when in the fully open position. In this way, a gap may be formed between the closure slider lid 150 and the rear wall of the channel 127, and when any liquid is in the channel 127, this gap may help prevent displacement of the liquid within the channel 127. This in turn helps prevent the closure slider lid from moving to the open position to avoid splashing the liquid in the channel 127 onto the user.

[0052] As shown in Figure 8 (which is a cross-sectional view of the lid 110), the intermediate wall 124 may extend at an angle relative to the top wall 120 and the side wall 114. This allows the opening 112 for pouring the liquid out of the container to be positioned at a certain height below the rim 118.

[0053] Figure 11 Shown is Figure 1 an isometric top view of the closure slider lid 150 in an exemplary lid assembly. Figure 12 Shown is Figure 1 an isometric bottom view of the closure slider lid in an exemplary lid assembly. Figure 13 Shown is Figure 1 a top view of the closure slider lid in an exemplary lid assembly. Figure 14 Shown is Figure 1 a cross-sectional view of the closure slider lid in an exemplary lid assembly. As discussed herein, the closure slider lid 150 may generally include a handle 152a, a closure slider lid body 155 of the handle 152b, elastic sliding positioning components 157a, elastic sliding positioning components 157b, elastic sliding positioning components 157c, and elastic sliding positioning components 157d. It is composed of a total of 5 parts (of course, the number of elastic sliding positioning components can be reduced or increased).

[0054] As shown in Figure 3 the closure slider lid 150 may be provided with two symmetries, which allows the closure slider lid 150 to be placed in the lid 110 in two different orientations. This eliminates user errors when installing the closure slider lid 150 onto the lid 110.

[0055] As shown in Figure 14As shown, the closure slider cap body 155 may include two symmetrical flanges 151a, 151b, both of which are configured to selectively cover and seal an opening 112 for pouring liquid out of the container. Tabs or handles 152a, 152b are configured for a user to grasp to selectively move the closure slider cap 150 to an open position to expose the opening 112 on the lid 110 or a closed position to cover the opening 112 on the lid 110. The handles 152a, 152b may include two inwardly tapered partial circular arc surfaces 153a, 153b for grasping purposes and an operating plane 161. The handle 152a and the flange 151a are recessed inwardly to form a concave surface 154a for grasping the handle, and the handle 152b and the flange 151b are recessed inwardly to form a concave surface 154b for grasping the handle. These two surfaces 154a, 154b are configured for a user to grasp to selectively provide a better user experience for the closure slider cap. The closure slider cap body 155 is provided with a total of 4 fixing holes 156a, 156b, 156c, 156d for fixing the elastic sliding positioning beads 157a, 157b, 157c, 157d. The closure slider cap body 155 has symmetry, and the closure slider cap 155 has a degree of symmetry such that the closure slider cap can be placed in different orientations and gently pressed onto the lid.

[0056] In addition, Figure 14 is shown Figure 1 a cross-sectional view of a closure slider cap in an exemplary cap assembly. The closure slider cap 150 may be provided with tapered ends 164a, 164b, which also create a smaller contact area between the closure slider cap 150 and the channel, thus reducing the amount of splashing of any contents located in the channel 127 of the lid 110.

[0057] As Figure 3 shown, where due to the angle of the channel 127, the liquid tends to travel downward along the slope of the channel 127 and collect near the opening 112 in the lid 110. This can especially help reduce the splashing of the contents near the opening of the lid when the user closes the lid 110 with the closure slider cap 150.

[0058] Figure 12(It is a rear perspective view of the closed slider small cover 150) shows the reverse sides of the two symmetrical flanges 151a and 151b covering the opening 112 of the covering lid 110 of the exemplary closed slider small cover 150, which are configured as 162 and 163, and the sunken area air flow channel 158 therebetween. The formation of the sunken area air flow channel 158 facilitates the air flow of the vent holes 132a and 132b when the opening 112 of the lid 110 is in the open position. The residual liquid attached near the channel will also be mostly sucked into the container through the vent holes during the pouring of the liquid from the container. It can also reduce the splashing of the contents of the channel 127 when the opening 112 of the covering lid 110 of the closed slider small cover 150 is reduced or the closed slider small cover 150 is pushed towards the rear arc surface 129 of the groove 127 to open the opening 112. A gap is formed between the side walls 123a and 123b of the channel 127 and the closed slider small cover 150, and the cross-sectional area of the air flow channel of the gap is larger than the cross-sectional area of the exhaust hole to ensure the smoothness of the internal and external air channels.

[0059] Figure 7 (Cross-sectional view of the elastic positioning bead) shows the structure of the elastic positioning bead 157, which mainly consists of three parts, including the outer shell 180, the sliding ball 181, and the stainless steel spring. As a standard part, the sliding ball 181 of the elastic positioning bead 157 is pre-pressed by the stainless steel spring 182 to ensure that the sliding ball 181 is fixed in the middle of the outer shell 180. When the outer shell 180 is fixed and the sliding ball 181 is squeezed and changed by the extrusion force, the sliding ball 181 will contract and extend within the elastic range of the stainless steel spring to ensure that the sliding ball 181 is always in contact with and pressed by the stainless steel spring 182, so that the axis of the sliding ball 181 is extruded outward to try to restore the initial pre-pressure state.

[0060] To operate the closed slider small cover 150, the user can move the closed slider small cover 150 from the open position to the closed position by grasping the handles 152a and 152b separately or simultaneously. The closed slider small cover 150 moves along the guiding channel 126 and the two circular guide rails 134a and 134b, so that the sealing surface 162 or the sealing surface 163 of the small cover body 155 covers the opening 112 and the vent holes 132a and 132b of the lid 110. Conversely, the user can move the closed slider small cover 150 from the closed position to the open position by grasping the handles 152a and 152b separately or simultaneously. The closed slider small cover 150 moves along the guiding channel 126 and the two circular guide rails 134a and 134b, so that the sealing surface 162 or the sealing surface 163 of the small cover body 155 leaves the opening 112 and the vent holes 132a and 132b of the upper lid 110. And it helps to prevent the contents of the container from overflowing from the container.

[0061] Additionally, for cleaning purposes or if the user does not want the closure slider cap 150 to be located on the cap 110, the closure slider cap 150 can be selectively removed from the cap 110 (the magnitude of the operating force is within 0.5 - 5 N). To remove the closure slider cap 150 from the cap 110, from the lower side of the cap assembly 100, the user can grasp the handles 152a and 152b on the closure slider cap 150 and pull the closure slider cap 150 outward so that the sliding positioning beads 157a, 157b, 157c, 157d become disengaged from the first guide rail 134a and the second guide rail 134b, enabling the user to thoroughly clean the cap 110 when the closure slider cap 150 is removed from the cap 110.

[0062] Moreover, to place the closure slider cap 150 back onto the cap 110, position the closure slider cap 150 near the guide groove of the cap body 110 and along the directions of the guide rails 134a, 134b, and press the surface 158 of the closure slider cap with the thumb. The sliding positioning beads 157a, 157b, 157c, 157d, driven by the pressure of the thumb and the rounded corner 125 of the guide groove surface, smoothly fall into the first guide rail 134a and the second guide rail 134b (the magnitude of the operating force is within 0.5 - 5 N). Thus, the closure slider cap 150 is held in place on the cap 110. Since the closure slider cap 150 is symmetric, the closure slider cap 150 can be placed on the cap in two different orientations.

[0063] When the closure slider cap 150 is to be held in the closed position, while the pressure from the liquid acts on the sealing surface 162 or the sealing surface 163 through the opening and the vent hole of the cap 110, the closure slider cap 150 and the cap 110 are supported within the guide rails 134a, 134b by the pressure generated by the compression of the 4 elastic positioning beads. The direction of the pre - pressure force of the elastic positioning beads between the closure slider cap 150 and the cap 110 and the direction of the force from the pressure of the inverted filling container are in the normal direction. Therefore, the pre - pressure force of the elastic positioning beads between the closure slider cap 150 and the cap 110 is more likely to resist the force from the pressure of the inverted filling container. In this way, in Figure 2 the example, the force generated by the interaction of the 4 elastic positioning beads can be between 8 N and 20 N. Additionally, the pre - pressed elastic tension can be configured such that in the case of heat and / or pressurized liquid, when the internal air pressure is too high and the closure slider cap 150 slightly contracts, it will ultimately squeeze outward to open the air passage for ventilation. Contrary to a completely sealed non - ventilating / leaking cap or a press - fit cap on the container, this is desirable because when encountering highly pressurized liquid, it makes the press - fit cap less likely to completely detach from the container and can relieve the pressure generated by the highly pressurized liquid inside. InFigure 2 In the example, the pre-pressure on the lid provided by the sliding positioning beads can be formed to be less than the holding force of the gasket between the lid and the container. For example, the lid 110 can be held to the container by a first force, and the sealing slider small lid 150 can be held to the lid by a second force, and the first force can be greater than the second force, such that the sealing slider small lid will be released from the lid before the lid is released from the container. In this way, the pre-pressure on the lid provided by the sliding positioning beads can be less than the holding force of the gasket between the lid and the container, such that the sealing slider small lid will vent before the gasket, thus preventing the container from overflowing quickly.

[0064] In addition, the surface roughness of the area of the lid that interacts with the sealing slider small lid 150 can be adjusted according to the amount of feedback desired by the user. For example, the surface roughness of the area of the lid that interacts with the sealing slider small lid 150 can be reduced to allow the user to easily manipulate the sealing slider small lid 150 from the closed position to the open position and from the open position to the closed position during the use of the product.

[0065] The sealing slider small lid can also include channels, and when the sealing slider small lid is in the open position, the channels can be configured such that the vent holes are substantially aligned. The sealing slider small lid can also include a venting channel that continues with the first sidewall and the second sidewall of the lid. Ensure that the entire gas path is unobstructed. And when the sealing slider small lid is in the closed position, the reverse structures 162 and 163 on the reverse side of the sealing slider small lid exactly seal the opening 112 of the lid and the vent holes 134a and 134b. This helps prevent the contents of the container from overflowing from the container.

[0066] It can also be anticipated that the guide rail of the lid and the sliding positioning beads of the small lid are also designed in reverse.

[0067] The present invention has been disclosed in the accompanying drawings with reference to various examples. However, the purpose of the present disclosure is to provide examples of various features and concepts related to the present invention, rather than to limit the scope of the present invention. Those skilled in the relevant art will recognize that many variations and modifications can be made to the above examples without departing from the scope of the present invention. Embodiment

[0068] A lid assembly, comprising: a rim for engaging an opening of a container, the rim defining a top wall and a lid tab extending from the top wall; a side wall defining a groove for placing a gasket; an intermediate wall extending below the rim, the intermediate wall defining a recess, the side wall of the recess having a first guide rail, a second guide rail, a positioning point for positioning a closure slider lid, and configured to be vented; the closure slider lid configured to selectively provide a closed position by covering the opening and a pushed-back position of the closure slider lid to provide an open opening position, the closure slider lid including a closure slider lid tab, a first elastic positioning bead, a second elastic positioning bead, a third elastic positioning bead, and a fourth elastic positioning bead, and one or more handles of the closure slider lid.

[0069] Wherein the closure slider lid further includes a channel, and wherein when the closure slider lid is in the open position, the channel is configured to be vented.

[0070] Wherein the exhaust channel is formed in the bottom surface of the closure slider. The adjacent vent channel is formed in the gap between the side wall of the guide groove and the side wall of the slider lid. When the user uses it, the residual contents in the channel can be inhaled through the exhaust hole, reducing the splash when the lid is closed during use.

[0071] Wherein the elastic positioning bead is fixed, there is a pre-pressure inside the elastic positioning bead itself, and the sliding ball moves inward when being squeezed.

[0072] Wherein the closure slider lid has symmetry such that the closure slider lid can be placed on the lid assembly in different orientations.

[0073] Of course, the positioning point can also be cancelled, and the positioning is locked only by the pre-pressure and pre-compression amount of the elastic sliding positioning bead (the positioning point is preferably described in the present invention, and when it comes to the positioning point, the pre-pressure and pre-compression amount of the elastic sliding positioning bead can also be used to replace the locking positioning).

[0074] It should be noted that, in this text, relational terms such as "one" and "two" are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprising", "including" or any other variant thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements, but also includes other elements not expressly listed, or further includes elements inherent to such process, method, article or device. Without further limitation, an element defined by the statement "comprising an..." does not exclude the presence of additional identical elements in the process, method, article or device comprising said element.

[0075] Although embodiments of the present invention have been shown and described, it will be understood by those of ordinary skill in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A sliding sealed bottle cap, characterized in that, Comprising: A container; A lid; The lid has an opening configured to receive liquid from the container and a guide groove, a circular guide rail, and a positioning point for receiving a sealing slider cap; A sealing slider cap having a handle and an elastic sliding positioning bead; Wherein, the sealing slider cap having a handle and an elastic sliding positioning bead is configured to slide between the guide groove, the circular guide rail, and the positioning point of the lid; Wherein, the sealing slider cap is configured to move between a closed position where the sealing slider cap covers the opening of the lid to help prevent the contents of the container from spilling and an open position where the sealing slider cap exposes the opening of the lid so that the contents of the container can be consumed along the guide groove and the circular guide rail of the lid; Wherein, the sealing slider cap is configured to be locked in place at the closed position and the open position by the guide groove, the circular guide rail, the elastic sliding positioning bead, and the positioning point of the lid; Wherein, the sealing slider cap is configured to be fixed to the lid and configured to be removable from the lid by a user through the handle of the sealing slider cap; Wherein, the lid further includes a channel and a guide rail configured to receive the sealing slider cap, and wherein the guide rail and the guide groove limit the lateral movement of the sealing slider cap and allow a range of lateral movement; Wherein, the rear arc of the guide groove of the lid is configured to form a gap between the sealing slider and the rear wall of the channel when the sealing slider cap is in the open position, so that the gap helps to prevent the displacement of the liquid in the channel; Wherein, the expected positioning bead is located in the lid, and the guide rail is provided on the sealing slider cap.

2. The sliding sealing bottle cap according to claim 1, characterized in that: The sealing slider cap includes an elastic sliding positioning bead and a cap body; The lid includes a guide groove, a circular guide rail, and a positioning point for locking the sealing slider cap in the closed position and the open position, and for holding the sealing slider cap on the lid.

3. The sliding sealing bottle cap according to claim 2, characterized in that: When the user pushes the sealing slider cap assembly backward along the guide groove and the circular guide rail of the lid behind the second positioning point of the lid, the elastic sliding positioning bead and the positioning point interact to hold the sealing slider cap in the open position and prevent it from moving forward freely; When the user pushes the sealing slider cap assembly forward along the guide groove of the lid in front of the first positioning point, the elastic sliding positioning bead and the positioning point interact to hold the sealing slider cap in the closed position and prevent it from moving backward freely.

4. The sliding seal bottle cap according to claim 3, characterized in that: The elastic sliding positioning bead is located on the sealing slider cap and on the positioning point, the circular guide rail, and the guide groove of the lid.

5. The sliding sealing bottle cap according to claim 4, characterized in that: The sealing slider cap tapers at each end to provide a reduced area of contact between each end of the sealing slider and the channel and helps to prevent the displacement of the liquid in the channel.

6. The sliding sealing bottle cap according to claim 5, wherein: The sealing slider cap has symmetry such that the sealing slider cap can be placed in different orientations and gently pressed onto the lid.