Storage box capable of preventing foreign matters from falling into storage box

By installing a sealing component on the storage box lid, the problem of foreign objects falling into the storage box due to the gap between the lid and the wall is solved, achieving reliable blocking and removal of foreign objects and improving the user experience.

CN224131777UActive Publication Date: 2026-04-17宁波东昊汽车部件有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
宁波东昊汽车部件有限公司
Filing Date
2025-05-30
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

The gap between the storage box lid and the storage box wall makes it difficult for foreign objects, such as bank cards, to fall in and be removed, affecting the user experience.

Method used

A sealing element is installed on the lid of the storage box. The sealing element abuts against the inner side of the storage box wall during the sliding of the lid, sealing the gap to prevent foreign objects from falling in. The foreign objects can be removed by rotating or sliding the sealing element.

Benefits of technology

It effectively blocks and removes foreign objects, especially cards, improving the anti-foreign object performance of the storage box. The structural design is reasonable and reliable.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a storage box capable of preventing foreign matters from falling into the storage box. The storage box comprises a storage box body, a storage box cover body and a plugging piece, wherein a taking and placing opening is formed in the first storage box wall of the storage box body; the storage box cover body can slide along the inner side of the first storage box wall to open the taking and placing opening and is contained in the storage box body, and a plugging piece installation part is arranged on the side, firstly entering the storage box body, of the storage box cover body. The plugging piece is movably arranged on the plugging piece installation part, and in the process that the storage box cover body slides along the inner side of the first storage box wall to be contained in the storage box body, the plugging piece moves towards the side making the plugging piece abut against the inner side of the first storage box wall. According to the storage box capable of preventing the foreign matter from falling into, the blocking piece is arranged, and the situation that the foreign matter falls into the storage box through the gap between the storage box cover body and the first storage box wall and cannot be taken out can be avoided.
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Description

Technical Field

[0001] This utility model relates to the field of automotive storage boxes, and in particular to a storage box that prevents foreign objects from falling in. Background Technology

[0002] With the increasing popularity of private cars, which have gradually become a daily means of transportation, storage boxes, as an interior feature of cars, are increasingly being demanded by users.

[0003] The storage box includes a storage box body and a storage box lid. The storage box lid can slide against the inner wall of the storage box body to open or close the opening of the storage box body. In the above structure, there will be a certain gap between the storage box lid and the inner wall of the storage box body. Therefore, thin objects such as bank cards can enter the gap and cannot be removed, affecting the user experience. Utility Model Content

[0004] In order to overcome the shortcomings of the existing technology, the present invention provides a storage box for preventing foreign objects from falling in. It is equipped with a sealing component to prevent foreign objects from falling in through the gap between the storage box lid and the first storage box wall and being unable to be removed.

[0005] To achieve the above objectives, the present invention employs the following technical solution:

[0006] A storage box designed to prevent foreign objects from falling in, comprising:

[0007] The storage box body has a storage cavity, and the first storage box wall of the storage box body has an opening for taking out and putting in that opening, which is connected to the storage cavity.

[0008] The storage box lid is used to close the access opening, and the storage box lid can slide along the inner side of the first storage box wall to open the access opening and be received in the storage box body. During the process of the storage box lid sliding along the inner side of the first storage box wall to be received in the storage box body, a sealing part is provided on the side of the storage box lid that first enters the storage box body.

[0009] And a sealing member, the sealing member being movably disposed on the sealing member mounting part, and during the process of the storage box cover sliding along the inner side of the first storage box wall to be received in the storage box body, the sealing member moving toward the side that abuts against the inner side of the first storage box wall.

[0010] Using the above technical solution, users can operate the storage box lid to slide it open or close the retrieval opening. When the storage box lid opens the retrieval opening, users can put objects into the storage cavity or take objects out of the storage cavity. When the storage box lid closes the retrieval opening, it can prevent external objects from entering the storage cavity and prevent objects in the storage cavity from escaping from the retrieval opening.

[0011] Since the sealing member is disposed on the sealing member mounting part of the storage box lid, and when the storage box lid slides along the inner side of the first storage box wall, the sealing member moves towards the side that abuts against the inner side of the first storage box wall. Therefore, when the storage box lid slides along the inner side of the first storage box wall, the sealing member can seal the gap between the sealing member mounting part and the first storage box wall, thereby preventing foreign objects from being brought into the gap between the storage box lid and the first storage box wall. When the storage box lid slides towards the side that closes the retrieval opening, the foreign object can slide towards the retrieval opening side under the push of the sealing member, and can finally be removed by the user. The above technical solution is reasonably designed and reliable, and can prevent foreign objects from falling in through the gap between the storage box lid and the first storage box wall and being unable to be removed, especially for card-like objects.

[0012] Furthermore, the width of the sealing member is greater than or equal to 70% of the width of the storage box lid, and the sealing member is centrally positioned relative to the storage box lid in the width direction of the storage box lid.

[0013] The direction of the sealing member perpendicular to the sliding direction of the storage box lid and parallel to the first storage box wall is denoted as the width direction of the sealing member, and the direction of the storage box lid perpendicular to the sliding direction of the storage box lid and parallel to the first storage box wall is denoted as the width direction of the storage box lid.

[0014] When the wall of the first storage box is curved, being parallel to it can be understood as: if the wall of the first storage box is flattened along the curvature direction, and it is parallel to the flattened wall of the first storage box, then it is parallel to the original wall of the first storage box.

[0015] By adopting the above technical solution, the setting of the sealing component is made more reasonable. The width of the sealing component is set so that it can cover most of the width direction of the storage box lid, thereby enabling the sealing component to better block foreign objects from entering through the gap between the storage box lid and the first storage box wall. Preferably, the distance between the outermost edge of the sealing component and the outermost edge of the storage box lid in the width direction is less than the width of a bank card. Since the size of cards is relatively fixed in real life, for example, the size of car key cards and bank cards is basically similar, the above technical solution ensures that bank card-sized cards entering through the gap between the storage box lid and the first storage box wall can be blocked by the sealing component.

[0016] Furthermore, one end of the sealing member is formed as a rotating connection part of the sealing member, and the other end is formed as a free end of the sealing member. The rotating connection part of the sealing member is rotatably connected to the mounting part of the sealing member, and the axis of rotation of the sealing member relative to the mounting part of the sealing member is perpendicular to the sliding direction of the storage box cover and parallel to the first storage box wall. During the process of the storage box cover sliding along the inner side of the first storage box wall to be accommodated in the storage box body, the sealing member rotates towards the side where the free end of the sealing member abuts against the inner side of the first storage box wall.

[0017] By adopting the above technical solution, the setting of the sealing member is more reasonable, and the sealing member can be rotated to make the free end of the sealing member abut against the inner side of the first storage box wall; of course, in some embodiments, the sealing member abuts against the inner side of the first storage box wall by sliding.

[0018] Furthermore, during the process of the storage box lid sliding along the inner side of the first storage box wall to be housed within the storage box body, the maximum gap between the sealing member mounting part and the inner side of the first storage box wall is denoted as M, and the distance between the sealing member rotating connection part and the free end of the sealing member is greater than M.

[0019] By adopting the above technical solution, since the distance between the rotating connection part of the sealing member and the free end of the sealing member is greater than M, it can be ensured that the free end of the sealing member can abut against the inner side of the first storage box wall during the sliding process of the storage box cover.

[0020] Furthermore, the storage box for preventing foreign objects from falling in includes a sealing component mounting shaft. The sealing component mounting portion on the storage box cover includes a first rotating bracket. The first rotating bracket is provided with a first rotating shaft through hole that matches the sealing component mounting shaft for passage, and the axis of the first rotating shaft through hole is parallel to the width direction of the storage box cover. The sealing component rotating connection portion on the sealing component includes a second rotating bracket. The second rotating bracket is provided with a second rotating shaft through hole that matches the sealing component mounting shaft for passage, and the axis of the second rotating shaft through hole is parallel to the width direction of the sealing component. The first rotating shaft through hole and the second rotating shaft through hole are coaxially arranged, and the sealing component mounting shaft passes through the first rotating shaft through hole and the second rotating shaft through hole.

[0021] By adopting the above technical solution, a rotatable connection is achieved between the rotatable connection part of the sealing component and the mounting part of the sealing component, and the mounting structure facilitates actual production and installation.

[0022] Furthermore, multiple first rotating brackets are provided, and the multiple first rotating brackets are spaced apart along the width direction of the storage box cover; multiple second rotating brackets are provided, and the multiple second rotating brackets are spaced apart along the width direction of the sealing member; and the first rotating brackets and the second rotating brackets are arranged alternately.

[0023] By adopting the above technical solution, multiple first rotating brackets and second rotating brackets are provided, which makes the rotating connection between the rotating connection part of the sealing component and the mounting part of the sealing component more stable and reliable.

[0024] Furthermore, the storage box for preventing foreign objects from falling in includes a sealing elastic element, which acts on the sealing member to move the sealing member toward the side that abuts against the inner side of the first storage box wall.

[0025] By adopting the above technical solution, the storage box for preventing foreign objects from falling in is made more reasonable. The sealing elastic member acts on the sealing member through its deformation, thereby causing the sealing member to move towards the side that abuts against the inner side of the first storage box wall. Specifically, the sealing elastic member acts on the sealing member through its deformation, thereby causing the sealing member to rotate towards the side where the free end of the sealing member abuts against the inner side of the first storage box wall.

[0026] Furthermore, the sealing elastic element is a torsion spring, and the sealing elastic element is sleeved on the sealing element mounting shaft. When the direction of the storage box lid sliding from closing the access opening to opening the access opening is in the same direction as the rotation direction of the sealing element so that the free end of the sealing element abuts against the inner side of the first storage box wall, one end of the sealing elastic element abuts against the side of the sealing element facing the first storage box wall, and the other end abuts against the sealing element mounting part or against the storage box lid. When the direction of the storage box lid sliding from closing the access opening to opening the access opening is in the opposite direction to the rotation direction of the sealing element so that the free end of the sealing element abuts against the inner side of the first storage box wall, one end of the sealing elastic element abuts against the side of the sealing element facing away from the first storage box wall, and the other end abuts against the sealing element mounting part or against the storage box lid.

[0027] The direction in which the storage box lid slides from closing the access opening to opening the access opening is the same as the direction of rotation of the sealing member so that the free end of the sealing member abuts against the inner side of the first storage box wall. This can be understood as: the tangential projection component of the direction of rotation of the sealing member so that the free end of the sealing member abuts against the inner side of the first storage box wall is in the same direction as the direction in which the storage box lid slides from closing the access opening to opening the access opening;

[0028] The direction in which the storage box lid slides from closing the access opening to opening the access opening is opposite to the direction of rotation of the sealing member so that its free end abuts against the inner side of the first storage box wall. This can be understood as: the tangential projection component of the rotation direction of the sealing member so that its free end abuts against the inner side of the first storage box wall is opposite to the direction in which the storage box lid slides from closing the access opening to opening the access opening.

[0029] By adopting the above technical solution, the sealing elastic element is made more reasonable. One end of the sealing elastic element abuts against the sealing element, and the other end abuts against the mounting part of the sealing element or the storage box cover. The sealing elastic element is in a deformed state, so that the sealing elastic element can act on the sealing element to make the free end of the sealing element on it abut against the inner side of the first storage box wall.

[0030] Furthermore, since the sealing elastic element is sleeved on the sealing element mounting shaft, it can not only restrict its position but also prevent abnormal twisting, ensuring its stable and reliable operation. Specifically, the sealing elastic element is located between two adjacent first rotating brackets and second rotating brackets, which can restrict the axial movement of the sealing elastic element to a certain extent, ensuring the overall stability and reliability of operation.

[0031] Furthermore, the inner side of the first storage box wall is recessed to form a limiting guide groove, and the limiting guide groove extends along the sliding direction of the storage box cover; correspondingly, the end of the sealing member that abuts against the inner side of the first storage box wall is provided with a limiting guide protrusion that matches the limiting guide groove.

[0032] By adopting the above technical solution, the limiting guide groove and the limiting guide protrusion can cooperate with each other, so that when the sealing member slides with the storage box cover, it can guide the sliding of the sealing member to a certain extent, and can limit the movement of the sealing member in its width direction, making the movement of the sealing member more reliable and stable.

[0033] Furthermore, multiple limiting guide protrusions are provided, and the multiple limiting guide protrusions are spaced apart along the width direction of the sealing member. Correspondingly, the number of limiting guide grooves matches the number of limiting guide protrusions, and the positions of the multiple limiting guide grooves correspond one-to-one with the positions of the limiting guide protrusions.

[0034] By adopting the above technical solution, the setting of the limiting guide protrusion and the limiting guide groove is more reasonable. The cooperation of multiple limiting guide protrusions and multiple limiting guide grooves can better guide and limit the sealing member, making the movement of the sealing member more reliable and stable.

[0035] Furthermore, the sealing member includes a first sealing member segment and a second sealing member segment. One end of the first sealing member segment is formed as a rotating connection part of the sealing member, and the other end is connected to one end of the second sealing member segment. The other end of the second sealing member segment is formed as a free end of the sealing member. The connection point between the second sealing member segment and the first sealing member segment is formed as a turning connection point so that a bending angle is formed between the second sealing member segment and the first sealing member segment. The second sealing member segment is inclined toward the side facing the inner side of the first storage box wall.

[0036] By adopting the above technical solution, the sealing component is more reasonable, so that the sealing component can not only more stably abut against the inner side of the first storage box wall when it is stationary; but also when the sealing component slides with the storage box lid, the sealing component can also more stably abut against the inner side of the first storage box wall.

[0037] Furthermore, the inner wall of the storage box body adjacent to the first storage box wall is provided with a slide rail for guiding the storage box lid to slide, and the side wall of the storage box lid is provided with a sliding post that matches the slide rail.

[0038] By adopting the above technical solution, the cooperation between the sliding column and the sliding rail can guide the sliding of the storage box lid, thereby making the sliding of the storage box lid more stable and smooth, and its operation reliable and stable.

[0039] Furthermore, the sliding column includes a head sliding column disposed near the head of the storage box lid and a tail sliding column disposed near the tail of the storage box lid. Correspondingly, the slide rail includes a head slide rail that cooperates with the head sliding column and a tail slide rail that matches the tail sliding column. Along the direction of sliding along the storage box lid from the closed access opening state to the open access opening state, the head slide rail extends towards the bottom surface of the storage box body, and the tail slide rail extends towards the bottom surface of the storage box body.

[0040] Using the above technical solution, when the storage box lid slides from the closed access opening state to the open access opening state, the storage box lid will slide downwards, that is, it will move closer to the bottom side of the storage box body so that the storage box lid can be stored and hidden inside the storage box body; when the storage box lid slides from the open access opening state to the closed access opening state, the storage box lid will rise so that when the storage box lid completely closes the access opening, the storage box lid can be flush with the surface, which is more aesthetically pleasing.

[0041] Furthermore, the tail slide rail includes a first tail slide rail segment and a second tail slide rail segment that is connected to and smoothly transitions with the first tail slide rail segment. The first tail slide rail segment is closer to the retrieval opening than the second tail slide rail segment. Along the direction from the end of the first tail slide rail segment away from the second tail slide rail segment to the end of the first tail slide rail segment near the second tail slide rail segment, the first tail slide rail segment is inclined towards the bottom surface of the storage box body. Along the direction from the end of the second tail slide rail segment near the first tail slide rail segment to the end of the second tail slide rail segment away from the first tail slide rail segment, the second tail slide rail segment is inclined towards the bottom surface of the storage box body, and the inclination slope of the first tail slide rail segment is greater than the inclination slope of the second tail slide rail segment.

[0042] By adopting the above technical solution, the tail slide rail is made more reasonable, the storage box lid slides in a more reasonable and smooth manner.

[0043] Furthermore, the limiting guide groove includes a first limiting guide groove segment and a second limiting guide groove segment connected to the first limiting guide groove segment. The first limiting guide groove segment is closer to the pick-and-place opening than the second limiting guide groove segment. When the tail slide column slides along the first tail slide rail segment, the limiting guide protrusion is located in the first limiting guide groove segment and slides therein. When the tail slide column slides along the second tail slide rail segment, the limiting guide protrusion is located in the second limiting guide groove segment and slides therein. The depth of the second limiting guide groove segment is less than the depth of the first limiting guide groove segment, and the connection between the bottom of the first limiting guide groove segment and the bottom of the second limiting guide groove segment is a smooth transition.

[0044] By adopting the above technical solution, the setting of the limiting guide groove is more reasonable. Since the inclination slope of the first tail slide rail section is greater than that of the second tail slide rail section, when the storage box cover slides to the side where the opening is open, the tail slide column slides from the first tail slide rail section to the second tail slide rail section. The sealing member installation part may move away from the first storage box wall, that is, the limiting guide protrusion may move away from the bottom of the limiting guide groove. The depth of the second limiting guide groove section is less than the depth of the first limiting guide groove section, which allows the limiting guide protrusion on the sealing member to move better in the limiting guide groove.

[0045] Compared with the prior art, the present invention has the following beneficial effects:

[0046] (1) The storage box of this utility model for preventing foreign objects from falling in is provided with a sealing component, which can prevent foreign objects from falling in through the gap between the storage box cover and the first storage box wall and being unable to be taken out.

[0047] (2) The storage box of this utility model for preventing foreign objects from falling in has a reasonable structural design. Attached Figure Description

[0048] To more clearly illustrate the technical solutions of the embodiments of this application, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0049] Figure 1This is a three-dimensional structural diagram of the storage box of this utility model in the closed state, which prevents foreign objects from falling in.

[0050] Figure 2 This is a cross-sectional view of the storage box of the present invention, which prevents foreign objects from falling in, in the closed state.

[0051] Figure 3 This is a three-dimensional structural diagram of the storage box of this utility model for preventing foreign objects from falling in, in the open state.

[0052] Figure 4 This is a cross-sectional view of the storage box of the present invention, which prevents foreign objects from falling in, in the open state.

[0053] Figure 5 This is a schematic diagram showing the sealing component in the storage box of this utility model for preventing foreign objects from falling in, and its contact with the wall of the first storage box.

[0054] Figure 6 This is a schematic diagram of the installation structure of the sealing component in the storage box for preventing foreign objects from falling in, as per this utility model.

[0055] Figure 7 This is a schematic diagram of the sliding rail structure in the storage box of this utility model to prevent foreign objects from falling in;

[0056] The component names corresponding to the various reference numerals in the figure are as follows: 1. Storage box body; 101. Storage cavity; 102. First storage box wall; 102-1. Restriction guide groove; 102-11. First restriction guide groove section; 102-12. Second restriction guide groove section; 103. Retrieval opening; 104. Slide rail; 104-1. Head slide rail; 104-2. Tail slide rail; 104-21. First tail slide rail section; 104-22. Second tail slide rail section; 2. Storage box lid; 201. Sealing 201-1, First rotating bracket; 201-11, First rotating shaft through hole; 202, Sliding column; 202-1, Head sliding column; 202-2, Tail sliding column; 3, Sealing component; 301, Sealing component rotating connection part; 301-1, Second rotating bracket; 301-11, Second rotating shaft through hole; 302, Free end of sealing component; 303, Restricting guide protrusion; 304, First sealing component section; 305, Second sealing component section; 4, Sealing component mounting shaft; 5, Sealing elastic component. Detailed Implementation

[0057] The present application will now be described in detail with reference to the accompanying drawings and specific embodiments.

[0058] The following specific examples illustrate the implementation of this application. Those skilled in the art can easily understand other advantages and effects of this application from the content disclosed in this specification. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of them. This application can also be implemented or applied through other different specific embodiments, and the details in this specification can also be modified or changed based on different viewpoints and applications without departing from the spirit of this application. It should be noted that, in the absence of conflict, the following embodiments and features in the embodiments can be combined with each other. Based on the embodiments in this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0059] It should be noted that various aspects of embodiments within the scope of the appended claims are described below. It will be apparent that the aspects described herein can be embodied in a wide variety of forms, and any particular structure and / or function described herein is merely illustrative. Based on this application, those skilled in the art will understand that one aspect described herein can be implemented independently of any other aspect, and two or more of these aspects can be combined in various ways. For example, any number and aspects set forth herein can be used to implement the device and / or practice the method. Additionally, this device and / or method can be implemented using structures and / or functionalities other than one or more of the aspects set forth herein.

[0060] It should also be noted that the illustrations provided in the following embodiments are only schematic representations of the basic concept of this application. The drawings only show the components related to this application and are not drawn according to the actual number, shape and size of the components in the actual implementation. In the actual implementation, the form, quantity and proportion of each component can be arbitrarily changed, and the layout of the components may also be more complex.

[0061] Additionally, specific details are provided in the following description to facilitate a thorough understanding of the examples. However, those skilled in the art will understand that practice can be carried out without these specific details.

[0062] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0063] The technical solutions provided by the various embodiments of this application are described below with reference to the accompanying drawings.

[0064] See Figures 1 to 7 This utility model provides a storage box to prevent foreign objects from falling in, comprising:

[0065] The storage box body 1 has a storage cavity 101, and the first storage box wall 102 of the storage box body 1 has an opening 103 that communicates with the storage cavity 101.

[0066] Storage box cover 2, the storage box cover 2 is used to close the access opening 103, and the storage box cover 2 can slide along the inner side of the first storage box wall 102 to open the access opening 103 and be received in the storage box body 1. During the process of the storage box cover 2 sliding along the inner side of the first storage box wall 102 to be received in the storage box body 1, the side of the storage box cover 2 that first enters the storage box body 1 is provided with a sealing part installation part 201.

[0067] And a sealing member 3, which is movably disposed on the sealing member mounting part 201, and during the process of the storage box cover 2 sliding along the inner side of the first storage box wall 102 to be received in the storage box body 1, the sealing member 3 moves toward the side that abuts against the inner side of the first storage box wall 102.

[0068] Using the above technical solution, the user can operate the storage box lid 2 to slide it open or close the retrieval opening 103. When the storage box lid 2 opens the retrieval opening 103, the user can put objects into the storage cavity 101 or take objects out of the storage cavity 101. When the storage box lid 2 closes the retrieval opening 103, it can prevent external objects from entering the storage cavity 101 and prevent objects in the storage cavity 101 from escaping from the retrieval opening 103.

[0069] Since the sealing member 3 is disposed on the sealing member mounting part 201 of the storage box cover 2, and when the storage box cover 2 slides along the inner side of the first storage box wall 102, the sealing member 3 moves toward the side that abuts against the inner side of the first storage box wall 102. Therefore, when the storage box cover 2 slides along the inner side of the first storage box wall 102, the sealing member 3 can seal the gap between the sealing member mounting part 201 and the first storage box wall 102, thereby... The design prevents foreign objects from entering between the storage box lid 2 and the first storage box wall 102. When the storage box lid 2 slides towards the side that closes the access opening 103, the foreign object can slide towards the access opening 103 under the push of the sealing member 3, and can eventually be removed by the user. The above technical solution is reasonable and reliable, and can prevent foreign objects from falling into the gap between the storage box lid 2 and the first storage box wall 102 and being unable to be removed, especially for card-like objects.

[0070] Furthermore, the width of the sealing member 3 is greater than or equal to 70% of the width of the storage box cover 2, and the sealing member 3 is centrally positioned relative to the storage box cover 2 in the width direction of the storage box cover 2.

[0071] The width direction of the sealing member 3 is defined as the direction perpendicular to the sliding direction of the storage box cover 2 and parallel to the first storage box wall 102. The width direction of the storage box cover 2 is defined as the direction perpendicular to the sliding direction of the storage box cover 2 and parallel to the first storage box wall 102.

[0072] When the first storage box wall 102 is arc-shaped, parallel to it can be understood as: if the first storage box wall 102 is flattened along the curvature direction and is parallel to the flattened first storage box wall 102, then it is parallel to the original first storage box wall 102.

[0073] By adopting the above technical solution, the setting of the sealing member 3 is more reasonable. The width of the sealing member 3 is set so that it can cover most of the width direction of the storage box cover 2, thereby enabling the sealing member 3 to better block foreign objects from entering through the gap between the storage box cover 2 and the first storage box wall 102. Preferably, the distance between the outermost edge of the sealing member 3 and the outermost edge of the storage box cover 2 in the width direction is less than the width of a bank card. Since the size of cards is relatively fixed in real life, for example, the size of car key cards and bank cards is basically similar, the above technical solution ensures that bank card-sized cards entering through the gap between the storage box cover 2 and the first storage box wall 102 can be blocked by the sealing member 3.

[0074] Furthermore, one end of the sealing member 3 is formed as a sealing member rotating connection part 301 and the other end is formed as a sealing member free end 302. The sealing member rotating connection part 301 of the sealing member 3 is rotatably connected to the sealing member mounting part 201. The rotation axis of the sealing member 3 relative to the sealing member mounting part 201 is perpendicular to the sliding direction of the storage box cover 2 and parallel to the first storage box wall 102. During the process of the storage box cover 2 sliding along the inner side of the first storage box wall 102 to be housed in the storage box body 1, the sealing member 3 rotates toward the side where the sealing member free end 302 abuts against the inner side of the first storage box wall 102.

[0075] By adopting the above technical solution, the setting of the sealing member 3 is more reasonable, so that the sealing member 3 can rotate to make the free end 302 of the sealing member abut against the inner side of the first storage box wall 102; of course, in some embodiments, the sealing member 3 achieves abutment against the inner side of the first storage box wall 102 by sliding.

[0076] Furthermore, during the process of the storage box cover 2 sliding along the inner side of the first storage box wall 102 to be housed in the storage box body 1, the maximum gap between the sealing member mounting part 201 and the inner side of the first storage box wall 102 is denoted as M, and the distance between the sealing member rotating connection part 301 and the sealing member free end 302 is greater than M.

[0077] By adopting the above technical solution, since the distance between the rotating connection part 301 of the sealing member and the free end 302 of the sealing member is greater than M, it can be ensured that the free end 302 of the sealing member 3 can abut against the inner side of the first storage box wall 102 during the sliding process of the storage box cover 2.

[0078] Furthermore, the storage box for preventing foreign objects from falling in includes a sealing component mounting shaft 4. The sealing component mounting portion 201 on the storage box cover 2 includes a first rotating bracket 201-1. The first rotating bracket 201-1 is provided with a first rotating shaft through hole 201-11 that matches the sealing component mounting shaft 4 for it to pass through, and the axis of the first rotating shaft through hole 201-11 is parallel to the width direction of the storage box cover 2. The sealing component rotating connection portion 301 on the sealing component 3 includes a first rotating shaft mounting shaft 4. The second rotating bracket 301-1 has a second rotating shaft through hole 301-11 that matches the mounting shaft 4 of the sealing component and allows it to pass through. The axis of the second rotating shaft through hole 301-11 is parallel to the width direction of the sealing component 3. The first rotating shaft through hole 201-11 and the second rotating shaft through hole 301-11 are coaxially arranged, and the mounting shaft 4 of the sealing component passes through the first rotating shaft through hole 201-11 and the second rotating shaft through hole 301-11.

[0079] By adopting the above technical solution, the rotatable connection between the sealing component 301 and the sealing component mounting part 201 of the sealing component 3 is realized, and the mounting structure is convenient for actual production and installation.

[0080] Furthermore, multiple first rotating brackets 201-1 are provided, and the multiple first rotating brackets 201-1 are spaced apart along the width direction of the storage box cover 2; multiple second rotating brackets 301-1 are provided, and the multiple second rotating brackets 301-1 are spaced apart along the width direction of the sealing member 3; and the first rotating brackets 201-1 and the second rotating brackets 301-1 are arranged alternately.

[0081] By adopting the above technical solution, multiple first rotating brackets 201-1 and second rotating brackets 301-1 are provided, which makes the rotating connection between the sealing component rotating connection part 301 and the sealing component mounting part 201 more stable and reliable.

[0082] Furthermore, the storage box for preventing foreign objects from falling in includes a sealing elastic member 5, which acts on the sealing member 3 to move the sealing member 3 toward the side that abuts against the inner side of the first storage box wall 102.

[0083] By adopting the above technical solution, the storage box for preventing foreign objects from falling in is made more reasonable. The sealing elastic member 5 acts on the sealing member 3 through its deformation, thereby causing the sealing member 3 to move towards the side that abuts against the inner side of the first storage box wall 102. Specifically, the sealing elastic member 5 acts on the sealing member 3 through its deformation, thereby causing the sealing member 3 to rotate towards the side where the free end 302 of the sealing member abuts against the inner side of the first storage box wall 102.

[0084] Furthermore, the sealing elastic element 5 is a torsion spring, and the sealing elastic element 5 is sleeved on the sealing element mounting shaft 4. When the direction of the storage box lid 2 from closing the access opening 103 to opening the access opening 103 is in the same direction as the rotation direction of the sealing element 3 such that the free end 302 of the sealing element abuts against the inner side of the first storage box wall 102, one end of the sealing elastic element 5 abuts against the side of the sealing element 3 facing the first storage box wall 102, and the other end abuts against the side of the sealing element mounting shaft 4. The mounting part 201 or abuts against the storage box cover 2; when the direction of the storage box cover 2 from closing the access opening 103 to opening the access opening 103 is opposite to the rotation direction of the sealing member 3 such that the free end 302 of the sealing member abuts against the inner side of the first storage box wall 102, one end of the sealing elastic member 5 abuts against the side of the sealing member 3 facing away from the first storage box wall 102, and the other end abuts against the sealing member mounting part 201 or against the storage box cover 2.

[0085] The direction in which the storage box lid 2 slides from closing the access opening 103 to opening the access opening 103 is in the same direction as the rotation direction of the sealing member 3 such that the free end 302 of the sealing member 3 abuts against the inner side of the first storage box wall 102. This can be understood as: the tangential projection component of the rotation direction of the sealing member 3 such that the free end 302 of the sealing member 3 abuts against the inner side of the first storage box wall 102 is in the same direction as the direction in which the storage box lid 2 slides from closing the access opening 103 to opening the access opening 103.

[0086] The direction in which the storage box lid 2 slides from closing the access opening 103 to opening the access opening 103 is opposite to the rotation direction of the sealing member 3 so that the free end 302 of the sealing member 3 abuts against the inner side of the first storage box wall 102. This can be understood as: the tangential projection component of the rotation direction of the sealing member 3 so that the free end 302 of the sealing member 3 abuts against the inner side of the first storage box wall 102 is opposite to the direction in which the storage box lid 2 slides from closing the access opening 103 to opening the access opening 103.

[0087] By adopting the above technical solution, the sealing elastic member 5 is made more reasonable. One end of the sealing elastic member 5 abuts against the sealing member 3, and the other end abuts against the sealing member mounting part 201 or the storage box cover 2. The sealing elastic member 5 is in a deformed state, so that the sealing elastic member 5 can act on the sealing member 3 to make the free end 302 of the sealing member on it abut against the inner side of the first storage box wall 102.

[0088] Furthermore, since the sealing elastic element 5 is sleeved on the sealing element mounting shaft 4, it can not only restrict its position but also prevent abnormal twisting, thus ensuring its stable and reliable operation. Specifically, the sealing elastic element 5 is located between two adjacent first rotating brackets 201-1 and second rotating brackets 301-1, which can restrict the axial movement of the sealing elastic element 5 to a certain extent, ensuring the overall stability and reliability of operation.

[0089] Furthermore, the inner side of the first storage box wall 102 is recessed to form a limiting guide groove 102-1, and the limiting guide groove 102-1 extends along the sliding direction of the storage box cover 2; correspondingly, the end of the sealing member 3 that abuts against the inner side of the first storage box wall 102 is provided with a limiting guide protrusion 303 that matches the limiting guide groove 102-1.

[0090] By adopting the above technical solution, the limiting guide groove 102-1 and the limiting guide protrusion 303 can cooperate with each other, so that when the sealing member 3 slides with the storage box cover 2, it can guide the sliding of the sealing member 3 to a certain extent, and can limit the movement of the sealing member 3 in its width direction, making the movement of the sealing member 3 more reliable and stable.

[0091] Furthermore, multiple limiting guide protrusions 303 are provided, and the multiple limiting guide protrusions 303 are spaced apart along the width direction of the sealing member 3. Correspondingly, the number of limiting guide grooves 102-1 matches the number of limiting guide protrusions 303, and the positions of the multiple limiting guide grooves 102-1 correspond one-to-one with the positions of the limiting guide protrusions 303.

[0092] By adopting the above technical solution, the setting of the limiting guide protrusion 303 and the limiting guide groove 102-1 is more reasonable. The cooperation of multiple limiting guide protrusions 303 and multiple limiting guide grooves 102-1 can better guide and limit the sealing member 3, making the movement of the sealing member 3 more reliable and stable.

[0093] Furthermore, the sealing member 3 includes a first sealing member segment 304 and a second sealing member segment 305. One end of the first sealing member segment 304 is formed as the rotating connection part 301 of the sealing member, and the other end is connected to one end of the second sealing member segment 305. The other end of the second sealing member segment 305 is formed as the free end 302 of the sealing member. The connection point between the second sealing member segment 305 and the first sealing member segment 304 is formed as a turning connection point so that a bending angle is formed between the second sealing member segment 305 and the first sealing member segment 304, and the second sealing member segment 305 is inclined toward the side facing the inside of the first storage box wall 102.

[0094] By adopting the above technical solution, the sealing member 3 is more reasonable, so that the sealing member 3 can not only more stably abut against the inner side of the first storage box wall 102 when it is stationary; but also when the sealing member 3 slides with the storage box cover 2, the sealing member 3 can also more stably abut against the inner side of the first storage box wall 102.

[0095] Furthermore, the inner wall of the storage box body 1 adjacent to the first storage box wall 102 is provided with a slide rail 104 for guiding the storage box cover 2 to slide, and the side wall of the storage box cover 2 is provided with a sliding column 202 that matches the slide rail 104.

[0096] By adopting the above technical solution, the cooperation between the sliding column 202 and the sliding rail 104 can guide the sliding of the storage box cover 2, thereby making the sliding of the storage box cover 2 more stable and smooth, and its operation reliable and stable.

[0097] Furthermore, the sliding column 202 includes a head sliding column 202-1 disposed near the head of the storage box cover 2 and a tail sliding column 202-2 disposed near the tail of the storage box cover 2. Correspondingly, the slide rail 104 includes a head slide rail 104-1 that cooperates with the head sliding column 202-1 and a tail slide rail 104-2 that matches the tail sliding column 202-2. Along the direction of sliding the storage box cover 2 from the closed state to the open state, the head slide rail 104-1 extends towards the bottom surface of the storage box body 1, and the tail slide rail 104-2 extends towards the bottom surface of the storage box body 1.

[0098] Using the above technical solution, when the storage box lid 2 slides from the closed state to the open state of the opening 103, the storage box lid 2 will slide downwards, that is, it will move closer to the bottom side of the storage box body 1 so that the storage box lid 2 can be stored and hidden inside the storage box body 1; when the storage box lid 2 slides from the open state to the closed state of the opening 103, the storage box lid 2 will rise so that when the storage box lid 2 completely closes the opening 103, the storage box lid 2 can be flush with the surface, which is more aesthetically pleasing.

[0099] Further, the tail slide rail 104-2 includes a first tail slide rail segment 104-21 and a second tail slide rail segment 104-22 that is connected to and smoothly transitions from the first tail slide rail segment 104-21. The first tail slide rail segment 104-21 is closer to the pick-up and put-away opening 103 than the second tail slide rail segment 104-22. The first tail slide rail segment 104-21 extends from one end away from the second tail slide rail segment 104-22 to the end near the second tail slide rail segment 104-22. In one direction, the first tail slide rail segment 104-21 is inclined towards the bottom surface of the storage box body 1. Along the direction from the end of the second tail slide rail segment 104-22 near the first tail slide rail segment 104-21 to the end away from the first tail slide rail segment 104-21, the second tail slide rail segment 104-22 is inclined towards the bottom surface of the storage box body 1, and the inclination slope of the first tail slide rail segment 104-21 is greater than the inclination slope of the second tail slide rail segment 104-22.

[0100] By adopting the above technical solution, the tail slide rail 104-2 is more reasonable, the storage box cover 2 slides in a more reasonable and smooth manner.

[0101] Furthermore, the limiting guide groove 102-1 includes a first limiting guide groove segment 102-11 and a second limiting guide groove segment 102-12 connected to the first limiting guide groove segment 102-11. The first limiting guide groove segment 102-11 is closer to the pick-and-place opening 103 than the second limiting guide groove segment 102-12. When the tail slide post 202-2 slides along the first tail slide rail segment 104-21, the limiting guide protrusion 303 is located in the first limiting guide groove. The tail slide column 202-2 slides along the second tail slide rail segment 104-22 and slides within the second limiting guide groove segment 102-12. The depth of the second limiting guide groove segment 102-12 is less than the depth of the first limiting guide groove segment 102-11, and the connection between the bottom of the first limiting guide groove segment 102-11 and the bottom of the second limiting guide groove segment 102-12 is a smooth transition.

[0102] By adopting the above technical solution, the setting of the limiting guide groove 102-1 is more reasonable. Since the inclination slope of the first tail slide rail section 104-21 is greater than that of the second tail slide rail section 104-22, when the storage box cover 2 slides towards the open access opening 103, when the tail slide column 202-2 slides from the first tail slide rail section 104-21 to the second tail slide rail section 104-22, the sealing member mounting part 201 may move away from the first storage box wall 102, that is, the limiting guide protrusion 303 may move away from the bottom of the limiting guide groove 102-1. The depth of the second limiting guide groove section 102-12 is less than the depth of the first limiting guide groove section 102-11, which allows the limiting guide protrusion 303 on the sealing member 3 to move better in the limiting guide groove 102-1.

[0103] The same or similar parts between the various embodiments in this specification can be referred to mutually. Each embodiment focuses on describing the differences from other embodiments.

[0104] The above description is merely a specific embodiment of this application, but the scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.

Claims

1. A storage box for preventing foreign matter from falling in, characterized by comprising: include: The storage box body (1) has a storage cavity (101), and the first storage box wall (102) of the storage box body (1) is provided with a take-out opening (103) that communicates with the storage cavity (101). Storage box cover (2), the storage box cover (2) is used to close the take-out opening (103), and the storage box cover (2) can slide along the inner side of the first storage box wall (102) to open the take-out opening (103) and be housed in the storage box body (1), and during the process of the storage box cover (2) sliding along the inner side of the first storage box wall (102) to be housed in the storage box body (1), the side of the storage box cover (2) that first enters the storage box body (1) is provided with a sealing part mounting part (201); And a sealing member (3), which is movably disposed on the sealing member mounting part (201), and as the storage box cover (2) slides along the inner side of the first storage box wall (102) to be housed in the storage box body (1), the sealing member (3) moves toward the side that abuts against the inner side of the first storage box wall (102).

2. The drop-in foreign object prevention storage box according to claim 1, wherein: The width of the sealing member (3) is greater than or equal to 70% of the width of the storage box cover (2), and the sealing member (3) is centered relative to the storage box cover (2) in the width direction of the storage box cover (2).

3. The drop-in foreign object prevention storage box according to claim 2, characterized by: One end of the sealing member (3) is formed as a sealing member rotating connection part (301), and the other end is formed as a sealing member free end (302). The sealing member rotating connection part (301) of the sealing member (3) is rotatably connected to the sealing member mounting part (201). The rotation axis of the sealing member (3) relative to the sealing member mounting part (201) is perpendicular to the sliding direction of the storage box cover (2) and parallel to the first storage box wall (102). During the process of the storage box cover (2) sliding along the inner side of the first storage box wall (102) to be housed in the storage box body (1), the sealing member (3) rotates toward the side where the sealing member free end (302) abuts against the inner side of the first storage box wall (102). During the process of the storage box cover (2) sliding along the inner side of the first storage box wall (102) to be housed in the storage box body (1), the maximum gap between the sealing member mounting part (201) and the inner side of the first storage box wall (102) is denoted as M, and the distance between the sealing member rotating connection part (301) and the sealing member free end (302) is greater than M.

4. The drop-in foreign object prevention storage box according to claim 3, characterized by: The storage box cover (2) includes a sealing component mounting shaft (4), and the sealing component mounting part (201) on the storage box cover (2) includes a first rotating bracket (201-1). The first rotating bracket (201-1) is provided with a first rotating shaft through hole (201-11) that matches the sealing component mounting shaft (4) for it to pass through, and the axis of the first rotating shaft through hole (201-11) is parallel to the width direction of the storage box cover (2); the sealing component rotating connection part (301) on the sealing component (3) includes a second rotating bracket (301). 01-1), the second rotating bracket (301-1) is provided with a second rotating shaft through hole (301-11) that matches the sealing component mounting shaft (4) for it to pass through, and the axis of the second rotating shaft through hole (301-11) is parallel to the width direction of the sealing component (3); the first rotating shaft through hole (201-11) and the second rotating shaft through hole (301-11) are coaxially arranged, and the sealing component mounting shaft (4) passes through the first rotating shaft through hole (201-11) and the second rotating shaft through hole (301-11); Multiple first rotating brackets (201-1) are provided, and the multiple first rotating brackets (201-1) are spaced apart along the width direction of the storage box cover (2); multiple second rotating brackets (301-1) are provided, and the multiple second rotating brackets (301-1) are spaced apart along the width direction of the sealing member (3); and the first rotating brackets (201-1) and the second rotating brackets (301-1) are arranged alternately.

5. The drop-in foreign object prevention storage box according to claim 4, characterized by: Includes a sealing elastic element (5), which acts on the sealing element (3) to cause the sealing element (3) to move toward the side that abuts against the inner side of the first storage box wall (102); The sealing elastic element (5) is a torsion spring. The sealing elastic element (5) is sleeved on the sealing element mounting shaft (4). When the storage box cover (2) slides from closing the access opening (103) to opening the access opening (103) in the same direction as the rotation direction of the sealing element (3) so that the free end (302) of the sealing element abuts against the inner side of the first storage box wall (102), one end of the sealing elastic element (5) abuts against the side of the sealing element (3) facing the first storage box wall (102), and the other end abuts against the sealing element mounting part (4). 201) or abut against the storage box cover (2); when the direction of the storage box cover (2) from closing the take-out opening (103) to opening the take-out opening (103) is opposite to the rotation direction of the sealing member (3) so that the free end (302) of the sealing member abuts against the inner side of the first storage box wall (102), one end of the sealing elastic member (5) abuts against the side of the sealing member (3) facing away from the first storage box wall (102), and the other end abuts against the sealing member mounting part (201) or abuts against the storage box cover (2).

6. The drop-in foreign object prevention storage box according to any one of claims 2 to 5, characterized by: The inner side of the first storage box wall (102) is recessed to form a limiting guide groove (102-1), and the limiting guide groove (102-1) extends along the sliding direction of the storage box cover (2); correspondingly, the sealing member (3) is provided with a limiting guide protrusion (303) that matches the limiting guide groove (102-1) at one end that abuts against the inner side of the first storage box wall (102); The limiting guide protrusions (303) are provided in multiple ways, and the multiple limiting guide protrusions (303) are spaced apart along the width direction of the sealing member (3). Correspondingly, the number of limiting guide grooves (102-1) matches the number of limiting guide protrusions (303), and the positions of the multiple limiting guide grooves (102-1) correspond one-to-one with the positions of the limiting guide protrusions (303).

7. The drop-in foreign object prevention storage box according to any one of claims 3 to 5, characterized by: The sealing member (3) includes a first sealing member segment (304) and a second sealing member segment (305). One end of the first sealing member segment (304) is formed as the rotating connection part (301) of the sealing member, and the other end is connected to one end of the second sealing member segment (305). The other end of the second sealing member segment (305) is formed as the free end (302) of the sealing member. The connection point between the second sealing member segment (305) and the first sealing member segment (304) is formed as a turning connection point so that a bending angle is formed between the second sealing member segment (305) and the first sealing member segment (304), and the second sealing member segment (305) is inclined toward the side facing the inside of the first storage box wall (102).

8. The drop-in foreign object prevention storage box according to claim 6, wherein: The inner wall of the storage box body (1) adjacent to the first storage box wall (102) is provided with a slide rail (104) for guiding the storage box cover (2) to slide. The side wall of the storage box cover (2) is provided with a sliding column (202) that matches the slide rail (104). The slide column (202) includes a head slide column (202-1) disposed near the head of the storage box cover (2) and a tail slide column (202-2) disposed near the tail of the storage box cover (2). Correspondingly, the slide rail (104) includes a head slide rail (104-1) that cooperates with the head slide column (202-1) and a tail slide rail (104-2) that matches the tail slide column (202-2). Along the direction of sliding the storage box cover (2) from the closed state to the open state, the head slide rail (104-1) extends towards the bottom surface of the storage box body (1) and the tail slide rail (104-2) extends towards the bottom surface of the storage box body (1).

9. The drop-in foreign object prevention storage box according to claim 8, characterized by: The tail slide rail (104-2) includes a first tail slide rail segment (104-21) and a second tail slide rail segment (104-22) that is connected to and smoothly transitions from the first tail slide rail segment (104-21). The first tail slide rail segment (104-21) is closer to the pick-and-place opening (103) than the second tail slide rail segment (104-22). The first tail slide rail segment (104-21) extends from one end away from the second tail slide rail segment (104-22) to the other end near the second tail slide rail segment (104-22). In the direction, the first tail slide section (104-21) is inclined towards the bottom surface of the storage box body (1), and along the direction from the end of the second tail slide section (104-22) near the first tail slide section (104-21) to the end away from the first tail slide section (104-21), the second tail slide section (104-22) is inclined towards the bottom surface of the storage box body (1), and the inclination slope of the first tail slide section (104-21) is greater than the inclination slope of the second tail slide section (104-22).

10. The drop-in foreign object prevention storage box according to claim 9, wherein: The limiting guide groove (102-1) includes a first limiting guide groove section (102-11) and a second limiting guide groove section (102-12) connected to the first limiting guide groove section (102-11). The first limiting guide groove section (102-11) is closer to the pick-and-place opening (103) than the second limiting guide groove section (102-12). When the tail slide column (202-2) slides along the first tail slide rail section (104-21), the limiting guide protrusion (303) is located in the first limiting guide groove section (102-11). The tail slide column (202-2) slides within the second tail slide rail section (104-22). When the tail slide column (202-2) slides along the second tail slide rail section (104-22), the limiting guide protrusion (303) is located in the second limiting guide groove section (102-12) and slides within it. The depth of the second limiting guide groove section (102-12) is less than the depth of the first limiting guide groove section (102-11), and the connection between the bottom of the first limiting guide groove section (102-11) and the bottom of the second limiting guide groove section (102-12) is smoothly transitioned.