CN215554867U - Container lid and container - Google Patents

Container lid and container Download PDF

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Publication number
CN215554867U
CN215554867U CN202120120963.0U CN202120120963U CN215554867U CN 215554867 U CN215554867 U CN 215554867U CN 202120120963 U CN202120120963 U CN 202120120963U CN 215554867 U CN215554867 U CN 215554867U
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container
pressing
elastic connecting
locking
elastic
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CN202120120963.0U
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Chinese (zh)
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程浩军
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Zhejiang Haoda Technology Co ltd
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Zhejiang Haoda Technology Co ltd
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Abstract

The present invention relates to a container lid and a container. The container cover is matched with a container body of the container and used for placing beverage bottles, the container cover comprises a cover body and an elastic locking ring, the elastic locking ring comprises an elastic connecting part, a pressing part and a locking part, the cover body is provided with a through hole for inserting the beverage bottles, the elastic connecting part is arranged on the inner wall of the cover body in a surrounding manner, the pressing part is connected to the elastic connecting part, and the locking part is fixed on the elastic connecting part and is in circumferential linkage with the elastic connecting part; the cover body is clamped on the container body through the locking part under the action of the elastic connecting part, the pressing part can drive the elastic connecting part to deform, and the locking part moves towards the direction far away from the container body so as to release the clamping state between the locking part and the container body. The container cover is mutually clamped with the container body through the elastic locking ring, so that the container cover is very convenient to detach or install to the container body, and the container cover is simple in structure and easy to manage.

Description

Container lid and container
Technical Field
The utility model relates to daily necessities, in particular to a container cover and a container.
Background
The heat preservation (cold) container is a common daily article in daily life. Taking summer as an example, a common user likes a cold canned or bottled beer beverage, whether the beverage is poured into a cup or the beverage is taken up integrally to be drunk in a religious way, the hand of the user inevitably needs to be in direct contact with the bottle body or the tank body, so that the body temperature of the hand can be directly transferred to the bottle body, and the hand is easily wetted or feels cold. Thus, the use feeling of the drinker is affected.
At present, the heat preservation (cold) container is introduced in the market to directly accommodate the beverage bottle body so as to prevent the above problems, but the connection structure between the container body and the cover body of the existing heat preservation (cold) container is complex, and the disassembly and the installation between the container body and the cover body are inconvenient.
SUMMERY OF THE UTILITY MODEL
In view of the foregoing, there is a need for an improved container lid and container that addresses the above-mentioned problems.
A container cover is matched with a container body of a container and used for placing beverage bottles, and comprises a cover body and an elastic locking ring, wherein the cover body is provided with a through hole for inserting the beverage bottles, the elastic locking ring comprises an elastic connecting part, a pressing part and a locking part, the elastic connecting part is arranged on the inner wall of the cover body in a surrounding manner, the pressing part is connected to the elastic connecting part, and the locking part is fixed on the elastic connecting part and is in circumferential linkage with the elastic connecting part;
the cover body is clamped on the container body through the locking part under the action of the elastic connecting part, and the pressing part can drive the elastic connecting part to deform and enable the locking part to move towards the direction far away from the container body so as to release the clamping state between the locking part and the container body.
Furthermore, the number of the pressing parts and the number of the locking parts are two, the pressing parts are fixed on two opposite sides of the elastic connecting parts, and the two locking parts are arranged between the two elastic connecting parts at intervals.
Furthermore, the pressing part is connected to the periphery of the elastic connecting part, and the inner wall of the elastic connecting part at least partially contracts along the radial direction to form the locking part; and/or the presence of a catalyst in the reaction mixture,
the pressing part and the locking part are arranged at intervals, and the pressing part and the locking part are uniformly distributed along the circumferential direction of the elastic connecting part.
Furthermore, the opposite two sides of the cover body are respectively provided with a mounting groove which penetrates through the cover body, the pressing part extends to the outer side of the cover body from the mounting groove, and the elastic connecting part acts on the pressing part and enables the pressing part to be elastically abutted to the mounting groove.
Further, the part of the pressing part extending to the outer side of the cover body is raised and forms a pressing flange; and/or the presence of a catalyst in the reaction mixture,
the wall thickness of the elastic connecting part connected with the pressing part is larger than that of the elastic connecting part connected with the locking part.
Furthermore, the inner wall of the cover body at least partially extends along the axial direction and forms a stopping portion, an installation space of the elastic connecting portion is formed between the stopping portion and the inner wall of the cover body, the stopping portion and the pressing portion are correspondingly arranged, and the stopping portion limits a pressing space of the pressing portion in the cover body.
Further, at least part of the inner wall of the cover body is contracted along the radial direction to form a reinforcing part, the reinforcing part is connected with the stopping part and the inner wall of the cover body, and the elastic locking ring is abutted against the reinforcing part.
Further, the elastic locking ring is integrally formed.
Further, the inner edge of the through hole is provided with an anti-slip liner.
An embodiment of the present invention further provides a container for accommodating a beverage bottle, the container including a container body and a container lid covering the container body, wherein the container lid is any one of the container lids described above.
An embodiment of the present invention further provides a container for containing beverage bottles, the container including a container body and a container lid covering the container body, wherein the container lid is any one of the container lids described above.
An embodiment of the present invention provides a container including the container lid. The container cover is mutually clamped with the container body through the elastic locking ring, so that the container cover is very convenient to detach or install to the container body, and the container cover is simple in structure and easy to manage.
Drawings
FIG. 1 is a schematic diagram of a container according to an embodiment of the present invention;
FIG. 2 is a schematic structural view of the container body shown in FIG. 1;
FIG. 3 is a schematic structural view of the container lid of FIG. 2;
FIG. 4 is a schematic view of the container lid of FIG. 3 from another perspective;
FIG. 5 is a schematic view of the lid of the container lid of FIG. 3;
FIG. 6 is a schematic view of the configuration of the resilient locking ring in the container lid of FIG. 3;
FIG. 7 is a schematic view of the container of FIG. 1 from another perspective;
FIG. 8 is a schematic cross-sectional view of the container of FIG. 7 taken along line A-A;
fig. 9 is a schematic cross-sectional view of the container of fig. 7 taken along line B-B.
Description of the element reference numerals
200. A container; 201. a container body; 2011. a connecting section; 2021. a card slot; 2012. a housing section; 100. a container cover; 10. a cover body; 11. a top portion; 111. an anti-slip liner; 12. a side portion; 121. mounting grooves; 122. a stopper portion; 1221. an installation space; 123. a reinforcing portion; 20. an elastic locking ring; 21. an elastic connection portion; 22. a pressing part; 221. pressing the flange; 23. a locking part; 231. a clearance for movement; 300. beverage bottle body.
The present invention is described in further detail with reference to the drawings and the detailed description.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention is further described in detail below with reference to the accompanying drawings and the detailed description. It should be understood that the detailed description and specific examples, while indicating the scope of the utility model, are intended for purposes of illustration only and are not intended to limit the scope of the utility model.
It will be understood that when an element is referred to as being "mounted on" another element, it can be directly on the other element or intervening elements may also be present. When a component is referred to as being "disposed on" another component, it can be directly on the other component or intervening components may also be present. When an element is referred to as being "secured to" another element, it can be directly secured to the other element or intervening elements may also be present. The terms "vertical," "horizontal," "left," "right," and the like as used herein are for illustrative purposes only and do not represent the only embodiments.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. The terminology used herein in the description of the utility model is for the purpose of describing particular embodiments only and is not intended to be limiting of the utility model. As used herein, the term "or/and" includes any and all combinations of one or more of the associated listed items.
One embodiment of the present invention provides a container 200 for holding a beverage bottle 300. The beverage bottle body 300 may include any vessel that can be used to contain a liquid, such as a cola can, a beer bottle, or a cup.
Referring to fig. 1, fig. 1 is a schematic structural diagram of a container 200 according to an embodiment of the present invention.
The container 200 includes a container body 201 and a container cover 100. The container body 201 has a receiving cavity (not numbered) and an opening (not numbered) communicating with the receiving cavity. The container cover 100 covers the opening of the container body 201. The container lid 100 and the container body 201 are engaged with each other to hold the beverage bottle 300, so that a user can drink the liquid contained in the beverage bottle 300. When the beverage bottle 300 is placed in the container body 201, the container cap 100 can support the beverage bottle 300 and prevent the beverage bottle 300 from shaking in the container body 201.
Of course, the container body 201 itself can also contain the liquid and can be used alone or in combination with the container lid 100.
Referring to fig. 2, fig. 2 is a schematic structural view of the container body 201 shown in fig. 1.
In one embodiment, the container body 201 is a double-layered insulating cup. With such an arrangement, the original temperature of the liquid or beverage bottle 300 accommodated in the container body 201 can be correspondingly increased, that is, the container body 201 has a heat preservation or cold preservation function. In the present embodiment, the vessel body 201 is made of a stainless material. It is understood that in other embodiments, the container body 201 may also be a single-layered cup structure as long as the function of containing the beverage bottle 300 or liquid is achieved; the container body 201 may be made of other materials such as ceramics, and is not limited in detail.
The double-layer heat-insulating cup body of the container body 201 is formed by welding an inner shell and an outer shell, and the top edge of the container body 201 is connected smoothly, so that the use safety of the container body 201 is ensured.
In one embodiment, as shown in fig. 2, container body 201 includes a connecting section 2011 and a shell section 2012. At a location of connection 2011 relatively near the opening, an outer diameter of connection 2011 is less than an outer diameter of housing section 2012. The connection segment 2011 is used to connect to the container cap 100. With such an arrangement, when the container cover 100 is covered on the container body 201, the entire outer peripheral surface of the container 200 is smooth and beautiful, and is convenient to carry and use. It will be appreciated that in other embodiments, the connecting section 2011 and the shell section 2012 may be sized accordingly to the shape requirements of the container body 201.
Referring to fig. 3 and 4, fig. 3 is a schematic structural view of the container lid 100 shown in fig. 2; fig. 4 is a schematic view of the container cover 100 shown in fig. 3 from another perspective.
The container cap 100 includes a cap body 10 and an elastic locking ring 20. The cover body 10 covers the opening of the container body 201, and a through hole (not numbered) is formed in the center of the cover body 10; the elastic locking ring 20 is enclosed in the inner wall of the cover 10. The cover body 10 is used for covering the container body 201; the through-hole of the cap body 10 is used to insert the beverage bottle body 300. The elastic locking ring 20 is used to clamp the cover 10 into the locking groove 2021 of the container body 201. Correspondingly, a clamping groove 2021 is formed in the periphery of the connecting section 2011; the locking groove 2021 is used for locking the container cover 100 to the connecting section 2011. The elastic lock ring 20 can be elastically deformed by an external force, so that the elastic lock ring 20 can be released from the engagement with the connection section 2011.
It is understood that in other embodiments, the through-hole may be formed at other positions, such as a position offset from the center of the cap body 10, as long as it is possible to achieve a position for inserting the beverage bottle body 300.
In the present embodiment, as shown in fig. 3, the lid body 10 includes a top portion 11 and a side portion 12. The top 11 is located at a position of the cover 10 relatively far away from the container body 201; the side part 12 is arranged around the top part 11 and forms a cap-like structure together with the top part 11. The top 11 is a substantially annular sheet-like structure, and the center of the top 11 is provided with the through hole.
In one embodiment, as shown in fig. 3, the container lid 100 further comprises a non-slip liner 111. The anti-slip gasket 111 is disposed at the inner edge of the through hole and fixed to the top 11 of the cover 10. The non-slip liner 111 serves to further secure the beverage bottle body 300 and prevent the beverage bottle body 300 from sliding out of the container 200. When the beverage bottle body 300 is inserted into the through hole, the non-slip gasket 111 abuts against the outer circumference of the beverage bottle body 300.
The anti-slip liner 111 may be made of an anti-slip material such as silicone. Of course, the non-slip liner 111 may be made of other materials that can be used to increase the friction between the cap 10 and the beverage bottle 300.
Further, the diameter of the through hole of the top 11 with the anti-slip pad 111 is slightly smaller than the outer diameter of the body of the beverage bottle 300. The beverage bottle 300 is inserted into the container body 201, and then the beverage bottle 300 is inserted into the container cover 100 and covers the container body 201. The size of the non-slip liner 111 is adapted to the outer diameter of the beverage bottle 300. So configured, the non-slip gasket 111 can further prevent the beverage bottle body 300 from slipping out of the through hole.
It is understood that in other embodiments, the size of the hole of the anti-slip liner 111 for sleeving the beverage bottle body 300 may be substantially the same as the outer circumference of the beverage bottle body 300, as long as the anti-slip liner can be attached to the outer circumference of the beverage bottle body 300 and achieve the anti-slip purpose.
Referring to fig. 5, fig. 5 is a schematic view illustrating the structure of the cover 10 of the container cover 100 shown in fig. 3.
In one embodiment, the side portion 12 is a substantially annular side wall secured to the outer periphery of the top portion 11. The opposite two sides of the side part 12 are provided with mounting grooves 121; the inner wall of the top part 11 of the cap body 10 extends at least partially in the axial direction and forms a stopper 122, and a mounting space 1221 of the elastic locking ring 20 is formed between the stopper 122 and the inner wall of the cap body 10. The mounting groove 121 is used for mounting the elastic locking ring 20 therein; the stopper 122 is used to limit the pressing and deformation space of the elastic locking ring 20.
Preferably, the mounting groove 121 is a substantially oval slot structure for receiving a portion of the elastic locking ring 20 adapted thereto, so that the elastic locking ring 20 can be snapped onto the cover 10. It is understood that in other embodiments, the number of the mounting slots 121 may be one or more than three; and the mounting groove 121 may be provided in other shapes such as a circle or a square as long as it is possible to realize a structure for mounting the elastic locking ring 20.
In one embodiment, as shown in fig. 4 and 5, the stopping portion 122 is a substantially sheet-like structure having a certain curvature, and is fixed on the side of the cover 10 facing the container body 201. The curvature of the stopper portion 122 is adapted to the curvature of the cover body 10 and serves to avoid the beverage bottle body 300 inserted into the container 200. The installation space 1221 formed between the stopper portion 122 and the inner wall of the cover body 10 is used to set the elastic locking ring 20. So configured, the installation and removal of the resilient locking ring 20, and thus the removal and cleaning of the container lid 100, is facilitated.
It will be appreciated that in other embodiments, the shape of the stopping portion 122 may be set according to actual requirements, as long as the function of mounting the elastic locking ring 20 is achieved.
Preferably, the number of the stoppers 122 is four. The four stoppers 122 are uniformly arranged in the circumferential direction of the side portion 12, so that the elastic locking ring 20 can be stably disposed inside the cover body 10.
Further, two of the stopping portions 122 located at two opposite sides of the stopping portion 122 are disposed corresponding to the positions of the mounting groove 121, that is, the stopping portions 122 can be at least partially projected into the space surrounded by the mounting groove 121. At this time, the stopper portion 122 can limit a deformation space of the elastic locking ring 20 to prevent the portion of the elastic locking ring 20 installed in the installation groove 121 from falling out of or sliding off the installation groove 121 under the condition of deformation, thereby affecting the use of the container cover 100.
It is understood that in other embodiments, the number of the stopping portions 122 may be one, two, three or more than five, as long as the function of installing the elastic-locking ring 20 and limiting the deformation space of the elastic-locking ring 20 can be achieved.
In one embodiment, to avoid the breaking of the stopping portion 122, the inner wall of the side portion 12 is radially contracted corresponding to the position of the stopping portion 122 to form a reinforcing portion 123, as shown in fig. 4 and 5. The reinforcement portion 123 is used to reinforce the side wall connecting the stopper portion 122 and the cover 10. The wall thickness between the stopper portion 122 and the inner wall of the cover 10 is increased, so that the stopper portion 122 can be firmly connected to the cover 10. And the reinforcement portion 123 can further restrict the installation position of the elastic locking ring 20 and restrict the installation position of the elastic locking ring 20 in the axial direction of the cover body 10 to prevent the elastic locking ring 20 from being separated from the installation groove 121. When the elastic locking ring 20 is mounted to the cover body 10, a portion of the elastic locking ring 20 extends into the mounting groove 121 and the mounting depth of the elastic locking ring 20 in the cover body 10 is limited in the axial direction of the cover body 10 by the reinforcing part 123.
Preferably, the number of the reinforcing parts 123 is four, and the four reinforcing parts 123 are uniformly arranged along the inner wall of the side part 12. The two reinforcing parts 123 are correspondingly disposed at positions relatively close to the mounting groove 121. With this arrangement, the abutting force between the elastic locking ring 20 and the cover body 10 can be uniformly distributed, so that the elastic locking ring 20 can stably abut against the cover body 10. It is understood that in other embodiments, the number of the reinforcement portions 123 may be one, two, three or more than five, or an annular step formed by radially shrinking the inner wall of the side portion 12, as long as the connection strength between the reinforcement stopper portion 122 and the cover body 10 can be achieved.
In one embodiment, the cover 10 is integrally formed. With this arrangement, not only the mounting of the lid body 10 is facilitated, but also the connection strength between the respective components can be further enhanced. It is understood that in other embodiments, the components of the cover 10 may be provided separately.
Referring to fig. 6 and 9, fig. 6 is a schematic view illustrating the structure of the elastic locking ring 20 of the container lid 100 shown in fig. 3; FIG. 7 is a schematic view of the container 200 of FIG. 1 from another perspective; FIG. 8 is a schematic cross-sectional view of the container 200 of FIG. 7 taken along line A-A; fig. 9 is a schematic cross-sectional view of the container 200 of fig. 7 taken along line B-B.
The elastic locking ring 20 is a substantially annular elastic structure, and is provided around the side portion 12 of the cap body 10. The relative position between the elastic locking ring 20 and the cover body 10 is not changed, but part of the elastic locking ring 20 can move relative to the cover body 10, so that the elastic locking ring 20 can be deformed under the action of external force, and the clamping state between the elastic locking ring 20 and the container body 201 is changed.
Specifically, as shown in fig. 6, the elastic locking ring 20 includes an elastic connecting portion 21, a pressing portion 22, and a locking portion 23. The elastic connection portion 21 is annularly provided to the side portion 12 of the lid body 10. The pressing portion 22 is connected to the outer periphery of the elastic connecting portion 21; the pressing portion 22 is movable relative to the lid body 10 to press and deform the elastic connecting portion 21. The inner wall of the elastic connecting part 21 is at least partially contracted to form a locking part 23; the locking portions 23 can be interlocked with the elastic connecting portion 21.
It is understood that, in other embodiments, the pressing portion 22 may also be formed on the inner wall of the elastic connection portion 21; the locking portion 23 is correspondingly connected to the outer periphery or the inner wall of the elastic connecting portion 21, so long as the pressing portion 22 can drive the locking portion 23 to move in a linked manner, and the locking portion 23 can be correspondingly released from the engagement with the container body 201.
In the present embodiment, the elastic connection portion 21 has an elastic force capable of maintaining its own shape. Under the action of external force, the elastic connecting part 21 deforms; when the external force is removed, the elastic connection portion 21 can return to its original shape.
The elastic connecting portion 21 is used to connect the pressing portion 22 and the locking portion 23 so as to enable the pressing portion and the locking portion to be interlocked. The elastic connecting portion 21 provides an elastic force for resetting or unlocking the pressing portion 22 and the locking portion 23; and the elastic force of the elastic connection part 21 can make the elastic locking ring 20 abut against the cover body 10 and keep the clamping state. The pressing portion 22 is pressed by a user and drives the elastic connecting portion 21 to deform. The locking portions 23 are elastically engaged with the engaging grooves 2021 of the container body 201 by the elastic connecting portions 21.
When the container cover 100 needs to be taken out from the container body 201, the pressing portion 22 is firstly pressed down along the arrow F1 shown in fig. 6, the pressing portion 22 moves towards the center of the cover body 10 along the inner wall of the mounting groove 121, and the elastic connecting portion 21 is deformed; the elastic connecting portion 21 carries the locking portions 23 to move away from the container body 201, as shown by the arrow F2 in fig. 6; when the locking portions 23 are separated from the locking grooves 2021, the container cover 100 can be removed from the connecting section 2011 of the container body 201. After releasing the pressing portion 22, the pressing portion 22 automatically rebounds to the original position of the mounting groove 121 under the action of the elastic connecting portion 21.
In one embodiment, as shown in fig. 3 and 6, the elastic connection portion 21 is substantially annular and has a substantially elliptical cross section. The two sides of the elastic connecting part 21 along the long axis direction are respectively fixedly connected with the pressing parts 22; the elastic connecting portion 21 is fixedly connected with the locking portions 23 at both sides in the short axis direction. Correspondingly, the number of the pressing portions 22 and the number of the locking portions 23 are two, and the pressing portions 22 are spaced apart from the locking portions 23. When the elastic locking ring 20 is mounted on the cover body 10, the pressing portions 22 on both sides are respectively mounted in the mounting grooves 121, and the elastic connecting portion 21 is in a slightly retracted deformation state; the pressing portions 22 arranged along the major axis of the elastic connecting portion 21 have a tendency to expand away from the center of the cover 10 after installation, while the locking portions 23 arranged along the minor axis of the elastic connecting portion 21 have a tendency to contract toward the center of the cover 10.
With this arrangement, not only the elastic locking ring 20 can be stably mounted in the lid 10, but also the locking portion 23 can be firmly engaged with the connecting section 2011 of the container body 201. In addition, the oval shape of the elastic connection portion 21 also enables the pressing portion 22 to correspondingly extend to the outer circumference of the circular cover 10, and meanwhile, the locking portion 23 is still located in the cover 10 and used for locking the connection section 2011 with a smaller diameter.
It is understood that in other embodiments, the elastic connection portion 21 may be provided with other shapes, such as a circular ring shape, as long as the elastic connection portion 21 can drive the locking portion 23 to release the engaging state when the pressing portion 22 is pressed down; the number of the pressing portion 22 and the locking portion 23 can be one or more than three, the mounting positions of the pressing portion 22 and the locking portion 23 can be correspondingly arranged along the circumference of the elastic connecting portion 21, as long as the pressing portion 22 can drive the locking portion 23 to contact the engaging state with the container body 201.
In one embodiment, the wall thickness of the portion of the elastic connecting portion 21 for connecting the pressing portion 22 is greater than that of the portion of the elastic connecting portion 21 for connecting the locking portion 23, that is, the wall thickness of the elastic connecting portion 21 is not uniform, and the wall surface of the elastic connecting portion connected with the pressing portion 22 is thicker, so as to enhance the connection strength between the two; on the other hand, the wall thickness of the elastic connecting portion 21 for connecting the locking portions 23 is relatively thin, so that the elastic connecting portion 21 is easily deformed, so that the portion of the elastic connecting portion 21 to which the locking portions 23 are connected is preferentially deformed in a state of being pressed by an external force, and thus the locking portions 23 can be moved toward a position away from the center of the cover 10.
In one embodiment, as shown in fig. 6 and 9, the pressing portion 22 has a substantially elliptical sheet-like structure, is fixed to both sides of the elastic connection portion 21 in the longitudinal direction, and is connected to the elastic connection portion 21 to form a single ring-shaped structure. The pressing portion 22 extends from the elastic connection portion 21 in a direction away from the center of the cover 10, and extends to the outside of the cover 10 through the mounting groove 121. This arrangement facilitates the user to apply force to the pressing portion 22 from the outside of the lid body 10. It is understood that in other embodiments, the shape of the pressing portion 22 may be set according to actual requirements, and is not particularly limited herein, as long as the pressing function can be achieved in the mounting groove 121.
In the present embodiment, the shape of the pressing portion 22 is adapted to the shape of the mounting groove 121. The pressing limit of the pressing portion 22 is a position abutting against the stopping portion 122; at this time, a part of the pressing portion 22 is still in the mounting groove 121. The stopper portion 122 can accordingly limit the pressing space of the pressing portion 22 to prevent the pressing portion 22 from being separated from the mounting groove 121, and the elastic locking ring 20 is integrally separated from the cover 10.
It is understood that in other embodiments, the portion of the pressing portion 22 extending beyond the cover 10 extends along its own circumference; correspondingly, the mounting groove 121 is respectively provided with a sliding section and a mounting section, and a certain moving space is formed between the pressing part 22 and the bottom of the mounting section. With this arrangement, the pressing portion 22 can be effectively prevented from moving toward the center of the lid body 10 and being detached from the mounting groove 121.
In one embodiment, a portion of the pressing portion 22 extending to the outside of the cap body 10 is protruded and forms a pressing flange 221. This arrangement facilitates the user to easily recognize the pressing portion 22 on the outer periphery of the lid body 10 by the raised pressing flange 221, thereby facilitating the user to press the same. It is understood that in other embodiments, the pressing portion 22 may be provided with other structures to remind the user to recognize and press the pressing portion 22, for example, a plurality of protruding points or pressing flanges 221 with different materials, so long as the pressing portion 22 can be recognized and pressed by the user conveniently.
As shown in fig. 6 and 8, the locking portions 23 are formed by contracting in the radial direction of the elastic connecting portion 21, and a clearance 231 is provided between the locking portions 23 and the inner wall of the cover 10 in the engaged state. The arrangement is such that there is a certain space for movement between the locking portions 23 and the cover 10, so that the locking portions 23 can move in a direction away from the center of the cover 10.
Preferably, the side of the locking portion 23 facing the center of the cap 10 is a curved surface to fit the container body 201 with a circular periphery. Further, a guiding inclined surface may be provided on a surface of the locking portion 23 facing the cover 10, so that the locking portion 23 is locked into the container body 201.
In the present embodiment, the two locking portions 23 are engaged with the opposite sides of the container main body 201, respectively, so that the locking portions 23 can be locked in the locking grooves 2021 of the container main body 201 like claws. It is to be understood that in other embodiments, the number of the locking portions 23 may be one or three or more, as long as the engagement with the container body 201 can be achieved.
In the present embodiment, the dimension of the two stopper portions 122 corresponding to the locking portions 23 in the circumferential direction of the cover 10 is substantially the same as the length of the locking portions 23 so that they can be fitted to each other. The two stopping portions 122 corresponding to the mounting groove 121 are shorter in the circumferential direction of the cover 10 than the stopping portions 122 corresponding to the locking portions 23, so that the stopping portions 122 can escape from the elastic connecting portion 21 when the pressing portion 22 drives the elastic connecting portion 21 to move toward the center of the cover 10.
In the present embodiment, in order to secure the coupling strength between the respective components of the elastic locking ring 20, the elastic locking ring 20 is integrally molded. In order to facilitate the deformation and recovery of the elastic locking ring 20, the elastic locking ring 20 is made of elastic material such as soft plastic, for example, polypropylene, so long as it can adapt to the pressing force of the user. It will be appreciated that in other embodiments, the resilient locking ring 20 may be made of other resilient materials, such as resilient silicone material.
The working principle of the container 200 is explained in detail below:
when the container cover 100 needs to be taken out from the container body 201, the pressing portion 22 is firstly pressed down along the arrow F1 shown in fig. 6, the pressing portion 22 moves towards the center of the cover body 10 along the inner wall of the mounting groove 121, and the elastic connecting portion 21 is deformed; the elastic connecting portion 21 carries the locking portions 23 to move away from the container body 201, as shown by the arrow F2 in fig. 6; when the locking portions 23 are separated from the locking grooves 2021, the container cover 100 can be removed from the connecting section 2011 of the container body 201. After releasing the pressing portion 22, the pressing portion 22 automatically rebounds to the original position of the mounting groove 121 under the action of the elastic connecting portion 21.
When the elastic locking ring 20 is mounted on the cover body 10, the pressing portions 22 on both sides are respectively mounted in the mounting grooves 121, and the elastic connecting portion 21 is in a slightly retracted deformation state; the pressing portions 22 arranged along the major axis of the elastic connecting portion 21 have a tendency to expand away from the center of the cover 10 after installation, while the locking portions 23 arranged along the minor axis of the elastic connecting portion 21 have a tendency to contract toward the center of the cover 10.
An embodiment of the present invention provides a container having the container lid described above. The container cover is mutually clamped with the container body through the elastic locking ring, so that the container cover is very convenient to detach or install to the container body, and the container cover is simple in structure and easy to manage.
The technical features of the embodiments described above may be arbitrarily combined, and for the sake of brevity, all possible combinations of the technical features in the embodiments described above are not described, but should be considered as being within the scope of the present specification as long as there is no contradiction between the combinations of the technical features.
The above-mentioned embodiments only express several embodiments of the present invention, and the description thereof is more specific and detailed, but not construed as limiting the scope of the utility model. It should be noted that, for a person skilled in the art, several variations and modifications can be made without departing from the inventive concept, which falls within the scope of the present invention. Therefore, the protection scope of the present patent shall be subject to the appended claims.

Claims (10)

1. A container cover is matched with a container body of a container and used for placing beverage bottles, and is characterized by comprising a cover body and an elastic locking ring, wherein the cover body is provided with a through hole for inserting the beverage bottles, the elastic locking ring comprises an elastic connecting part, a pressing part and a locking part, the elastic connecting part is arranged on the inner wall of the cover body in a surrounding manner, the pressing part is connected to the elastic connecting part, and the locking part is fixed on the elastic connecting part and is in circumferential linkage with the elastic connecting part;
the cover body is clamped on the container body through the locking part under the action of the elastic connecting part, and the pressing part can drive the elastic connecting part to deform and enable the locking part to move towards the direction far away from the container body so as to release the clamping state between the locking part and the container body.
2. The container lid according to claim 1, wherein the number of the pressing portions and the locking portions is two, two of the pressing portions are fixed to opposite sides of the elastic connecting portion, and two of the locking portions are disposed between the two elastic connecting portions at an interval.
3. The container cap according to claim 2, wherein the pressing portion is connected to an outer circumference of the elastic connection portion, an inner wall of the elastic connection portion is at least partially contracted in a radial direction and forms the locking portion; and/or the presence of a catalyst in the reaction mixture,
the pressing part and the locking part are arranged at intervals, and the pressing part and the locking part are uniformly distributed along the circumferential direction of the elastic connecting part.
4. The container cover according to claim 2, wherein the cover body has mounting grooves formed on opposite sides thereof, the pressing portion extends from the mounting grooves to an outer side of the cover body, and the elastic connecting portion acts on the pressing portion to elastically support the pressing portion in the mounting grooves.
5. The container lid according to claim 2, wherein a portion of the pressing portion extending to the outside of the lid body is protruded and forms a pressing flange; and/or the presence of a catalyst in the reaction mixture,
the wall thickness of the elastic connecting part connected with the pressing part is larger than that of the elastic connecting part connected with the locking part.
6. The container cap according to claim 1, wherein the inner wall of the cap body extends at least partially in the axial direction and forms a stopper portion, a mounting space of the elastic connecting portion is formed between the stopper portion and the inner wall of the cap body, the stopper portion is disposed corresponding to the pressing portion, and the stopper portion limits a pressing space of the pressing portion in the cap body.
7. The container cap of claim 6, wherein the inner wall of the cap body is at least partially radially constricted and forms a reinforcement portion that connects the stop portion with the inner wall of the cap body, and the resilient locking ring abuts against the reinforcement portion.
8. The container cap of claim 1, wherein the resilient locking ring is integrally formed.
9. The container cap according to claim 1, wherein an inner edge of the through-hole is provided with a slip-proof packing.
10. A container for receiving a beverage bottle body, the container comprising a container body and a container lid provided to the container body, wherein the container lid is according to any one of claims 1 to 9.
CN202120120963.0U 2021-01-15 2021-01-15 Container lid and container Active CN215554867U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120120963.0U CN215554867U (en) 2021-01-15 2021-01-15 Container lid and container

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120120963.0U CN215554867U (en) 2021-01-15 2021-01-15 Container lid and container

Publications (1)

Publication Number Publication Date
CN215554867U true CN215554867U (en) 2022-01-18

Family

ID=79837199

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120120963.0U Active CN215554867U (en) 2021-01-15 2021-01-15 Container lid and container

Country Status (1)

Country Link
CN (1) CN215554867U (en)

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