Cup holder structure and vehicle

By designing a flipped cover plate and avoidance groove in the cup holder structure of the vehicle, and setting limits at the bottom of the groove of the avoidance groove, the problem of small objects such as coins falling into and being difficult to remove when the cup holder is rotated and opened, and a simple and convenient withdrawal operation is achieved.

CN222886332UActive Publication Date: 2025-05-20ZHEJIANG GEELY HLDG GRP CO LTD +1
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Patent Information

Application Number
CN202422007505.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-16
Publication Date
2025-05-20
Estimated Expiration
2034-08-16

AI Technical Summary

Technical Problem

When the cup holder lid is rotated and opened, the gap between the cup holder lid and the side wall of the cup holder lid is prone to occur, causing small objects such as coins to fall into the bottom of the cup holder, making it difficult to take out, affecting the driving experience.

Method used

A cup holder structure including cup holder, cover plate and limiting parts is designed. The cover plate is flipped and arranged on the cup holder, and the cover plate is at least partially accommodated in the vacant groove when flipped and opened. The limiting member is provided at the bottom of the groove of the avoiding groove to prevent the coins from sliding into the bottom of the avoiding groove.

Benefits of technology

Through this design, small items such as coins fall into the gap between the outer side of the cover plate and the first groove wall of the avoiding groove when the cover plate is flipped and opened, and can be kept in the gap in the vertical state under the blocking action of the limiting member without sliding into the bottom of the avoiding groove, thereby facilitating removal, simplifying operation and improving efficiency.

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Abstract

The utility model provides a cup saucer structure and a vehicle, and relates to the technical field of vehicles, the cup saucer structure comprises a cup saucer, a cover plate and a limiting piece, the cover plate is arranged on the cup saucer in a turnover mode, an avoiding groove is formed in the cup saucer, and at least part of the cover plate is contained in the avoiding groove in the turnover opening state; the cover plate is provided with an outer side face, the receding groove is provided with a first groove wall, the outer side face is located in the outer space of the cup holder when the cover plate is in a closed state, the outer side face and the first groove wall are oppositely arranged to form a cavity when the cover plate is in an open state, an opening is formed in the lower end of the cavity, and the limiting piece is arranged at the opening and used for preventing coins from sliding into the bottom of the receding groove. Thus, after small articles such as coins fall into the gap between the outer side face of the cover plate and the first groove wall of the avoiding groove when the cover plate is turned over and opened, the small articles can be kept in the gap in a vertical state under the blocking effect of the limiting piece and cannot slide into the bottom of the avoiding groove, and therefore the small articles can be prevented from falling off. Therefore, the vertical coin can be conveniently taken out from the gap by using a professional tool.
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Description

Technical Field

[0001] The utility model relates to the technical field of vehicles, and more specifically, to a cup holder structure and a vehicle. Background Art

[0002] With the continuous development of the economy and the continuous improvement of people's living standards, cars have become one of the most important means of transportation for people. Moreover, with the continuous increase in the number of cars, people's requirements for the convenience of using car interiors are also getting higher and higher. Among them, in order to facilitate users to place containers such as water cups or beverage bottles, a cup holder structure with a cup holder cover is usually provided at the passenger instrument panel of the car. When in use, the cup holder cover can be opened to store the water cup or beverage bottle, and when not in use, the cup holder cover can be closed to keep the appearance beautiful.

[0003] However, when the existing cup holder cover is rotated and opened, there is a gap between the cup holder cover and the side wall of the cup holder. Small objects such as coins are likely to fall into the bottom of the cup holder through this gap and cannot be simply taken out. If it is necessary to take out, the entire passenger instrument assembly needs to be disassembled, taken out and then reassembled. The operation is cumbersome and time-consuming. If not taken out, abnormal noises will be generated, affecting the driving and riding experience. Summary of the Utility Model

[0004] The problem solved by the utility model is: how to prevent foreign objects such as coins from falling into the bottom of the cup holder.

[0005] To solve the above problems, the utility model provides a cup holder structure and a vehicle.

[0006] In a first aspect, the utility model provides a cup holder structure, including a cup holder, a cover plate and a limiting member. The cover plate is flipably arranged on the cup holder. An avoidance groove is arranged in the cup holder, and at least part of the cover plate is received in the avoidance groove in the flipped and opened state. The cover plate has an outer side surface. The avoidance groove has a first groove wall. The outer side surface is located in the external space of the cup holder in the closed state of the cover plate, and is arranged opposite to the first groove wall in the opened state of the cover plate to form a cavity. An opening is provided at the lower end of the cavity, and the limiting member is arranged at the opening and is used to block coins from sliding into the bottom of the avoidance groove.

[0007] Optionally, the avoidance groove further has a third groove wall and a fourth groove wall which are oppositely arranged. The third groove wall and the fourth groove wall are respectively adjacent to the first groove wall. The limiting member is in a strip structure and extends along the direction from the third groove wall to the fourth groove wall.

[0008] Optionally, the opposite ends of the limiting member are respectively connected to the third groove wall and the fourth groove wall.

[0009] Optionally, the limiting member includes a plurality of limiting portions, the plurality of limiting portions are arranged at intervals along the extension direction of the limiting member, and the spacing between the limiting portion adjacent to the third groove wall and the third groove wall, the spacing between the limiting portion adjacent to the fourth groove wall and the fourth groove wall, and the spacing between two adjacent limiting portions are less than or equal to 5 mm.

[0010] Optionally, when the cover is open, the projection of the stopper on the bottom wall of the avoidance groove is located between the first groove wall and the projection of the outer side surface on the bottom wall of the avoidance groove, and the stopper is located below the outer side surface.

[0011] Optionally, the upper end of the limiting member is flush with an end of the cover plate facing the bottom of the avoidance groove in the open state.

[0012] Optionally, the limit member has a first end and a second end, and in the direction from the first end to the second end of the limit member, the first end of the limit member is spaced apart from the first groove wall, and the second end of the limit member is spaced apart from the outer side surface when the cover is opened, and the spacing between the limit member and the first groove wall and the spacing between the limit member and the outer side surface are respectively less than 1 mm, wherein the first end of the limit member is the end of the limit member facing the first groove wall, and the second end of the limit member is the end of the limit member away from the first groove wall.

[0013] Optionally, the avoidance groove further has a second groove wall arranged opposite to the first groove wall, and one end of the limiter is connected to the first groove wall, and the other end is connected to the second groove wall.

[0014] Optionally, the limiting member constitutes the bottom wall of the avoidance groove, and the vertical distance between one end of the cover plate facing the bottom wall of the avoidance groove in the open state and the bottom wall of the avoidance groove is less than or equal to 5 mm.

[0015] In a second aspect, the utility model provides a vehicle, comprising the cup holder structure as described above.

[0016] The beneficial effects of the cup holder structure of the present utility model are as follows: The cover plate can be rotatably arranged on the cup holder, facilitating the opening and closing of the cover plate by flipping; moreover, by arranging an avoidance groove in the cup holder, the cover plate can be avoided during the process of flipping and opening the cover plate, and the cover plate can be accommodated after it is completely opened. At the same time, by arranging a limiting member at the bottom of the avoidance groove and setting the limiting member below the cavity formed by the outer side surface of the opened cover plate and the first groove wall of the avoidance groove, the opening at the lower end of the cavity can be blocked by the limiting member, so that small items such as coins can fall into the gap (i.e., the cavity) between the outer side surface of the cover plate and the first groove wall of the avoidance groove when the cover plate is flipped and opened, and can be kept in an upright state in this gap under the blocking action of the limiting member without sliding into the bottom of the avoidance groove, thus facilitating the removal of the upright coin from this gap by using a professional tool. This can not only solve the problem that it is difficult to take out items such as coins that fall into the gap between the opened cover plate and the side wall of the cup holder, but also, during the removal operation, there is no need to remove the sub-instrument panel assembly, making the removal operation simple, convenient and efficient. Description of the Drawings

[0017] Figure 1 It is a schematic structural diagram of the cup holder structure in the embodiment of the present utility model when the cover plate is opened;

[0018] Figure 2 It is a schematic cross-sectional structural diagram of the cup holder structure in the embodiment of the present utility model when the cover plate is opened;

[0019] Figure 3 It is Figure 2 A partial enlarged view of the first situation at A in

[0020] Figure 4 It is Figure 2 A partial enlarged view of the second situation at A in

[0021] Figure 5 It is Figure 2 A partial enlarged view of the third situation at A in

[0022] Figure 6 It is Figure 2 A partial enlarged view of the fourth situation at A in

[0023] Figure 7 It is a schematic structural diagram of the cup holder structure in the embodiment of the present utility model when the cover plate is closed;

[0024] Figure 8 It is a schematic cross-sectional structural diagram of the cup holder structure in the embodiment of the present utility model when the cover plate is closed;

[0025] Figure 9 It is a schematic cross-sectional structural diagram of the cup holder in the embodiment of the present utility model;

[0026] Figure 10 This is a schematic structural diagram of the first case of the distribution of the limiting member in the avoidance groove in the embodiment of the present utility model;

[0027] Figure 11 This is a schematic structural diagram of the second case of the distribution of the limiting member in the avoidance groove in the embodiment of the present utility model;

[0028] Figure 12 This is a schematic structural diagram of the third case of the distribution of the limiting member in the avoidance groove in the embodiment of the present utility model.

[0029] Explanation of reference numerals:

[0030] 1, cup holder; 11, cup slot; 12, avoidance groove; 121, first groove wall; 122, second groove wall; 123, third groove wall; 124, fourth groove wall; 125, bottom wall; 2, cover plate; 21, outer side surface; 3, limiting member; 31, limiting portion; 4, cavity; 41, opening; 100, coin. Detailed implementation manners

[0031] To make the above objects, features and advantages of the present utility model more obvious and understandable, the following detailed description of the specific embodiments of the present utility model will be given with reference to the accompanying drawings. Although some embodiments of the present utility model are shown in the drawings, it should be understood that the present utility model can be implemented in various forms and should not be construed as limited to the embodiments described herein. On the contrary, these embodiments are provided to more thoroughly and completely understand the present utility model. It should be understood that the accompanying drawings and embodiments of the present utility model are only for exemplary purposes and are not used to limit the protection scope of the present utility model.

[0032] The Z-axis in the drawings represents the vertical direction, that is, the up and down position, and the positive direction of the Z-axis represents the upper side, and the negative direction of the Z-axis represents the lower side; the X-axis in the drawings represents the horizontal direction and is specified as the front and back position, and the positive direction of the X-axis represents the front side, and the negative direction of the X-axis represents the back side; the Y-axis in the drawings represents the left and right position, and the positive direction of the Y-axis represents the left side, and the negative direction of the Y-axis represents the right side. At the same time, it should be noted that the above-mentioned meanings represented by the Z-axis, Y-axis and X-axis are only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation to the present utility model.

[0033] As used herein, the term "including" and its variations are open-ended, i.e., "including but not limited to"; the term "based on" means "at least partially based on"; the term "one embodiment" means "at least one embodiment"; the term "another embodiment" means "at least one additional embodiment"; the term "some embodiments" means "at least some embodiments"; the term "optionally" means "optional embodiments". The relevant definitions of other terms will be given in the following description. It should be noted that the concepts such as "first" and "second" mentioned in the present utility model are only used to distinguish different devices, modules or units, and are not used to limit the order or interdependence of the functions performed by these devices, modules or units.

[0034] It should be noted that the modification of "one" and "a plurality" mentioned in the present utility model is illustrative rather than restrictive. Those skilled in the art should understand that, unless otherwise clearly specified in the context, it should be understood as "one or more".

[0035] In the related art, when the cup holder cover rotates and opens, a gap will be generated between the cup holder cover and the side wall of the cup holder. When a user temporarily places small items such as coins on the cup holder cover, if the cup holder cover is accidentally opened, the coins will fall into this gap and slide to the bottom of the cup holder, causing the coins to be horizontally placed, making it impossible to simply take out the coins. If it is necessary to take them out, the entire sub-instrument assembly needs to be disassembled, the coins are taken out and then reassembled, which is cumbersome and time-consuming. And if not taken out, it will cause abnormal noises during the driving of the vehicle, affecting the driving experience.

[0036] In view of the problems existing in the above-mentioned related art, the present utility model provides a cup holder structure and a vehicle.

[0037] Combined Figure 1 、 Figure 2 、 Figure 7 and Figure 8 As shown in

[0038] Specifically, the cup holder 1 of the cup holder structure is usually a hollow structure, and an opening is provided at the upper end of the hollow structure. The cover plate 2 is rotatably arranged at the opening of the cup holder 1. A turning mechanism is usually adopted to connect the cup holder 1 and the cover plate 2, so that the cover plate 2 can rotate relative to the cup holder 1 to achieve opening and closing. Usually, a cup groove 11 and an avoidance groove 12 are provided in the cup holder 1. The cup groove 11 is usually located on one side of the avoidance groove 12 along the front-rear direction (i.e., Figure 1 the X-axis direction in Figure 1 ), for example, Figure 2 as shown in and, located at the rear side of the avoidance groove 12. The cup groove 11 is used to place containers such as water cups or beverage bottles. The avoidance groove 12 is used to avoid the cover plate 2 when the cover plate 2 is turned open and accommodate the cover plate 2 after the cover plate 2 is opened. When the cover plate 2 is closed, as Figure 7 and Figure 8 shown, the cover plate 2 covers the opening of the cup holder 1, and the outer side surface 21 of the cover plate 2 is located in the external space of the cup holder 1. At this time, the cover plate 2 is substantially in a horizontal state, so that the cover plate 2 can be used as a storage plate to temporarily place some items such as coins. When the cover plate 2 is turned open, as Figures 1 to 6 shown, at least part of the cover plate 2 is accommodated in the avoidance groove 12, and the opening of the cup holder 1 is exposed. At this time, the cover plate 2 is substantially in a vertical state. The outer side surface 21 of the cover plate 2 is opposite to and spaced from the first groove wall 121 of the avoidance groove 12. And a cavity 4 with both upper and lower ends open is formed between the outer side surface 21 of the cover plate 2 and the first groove wall 121 of the avoidance groove 12. Among them, the outer side surface 21 of the cover plate 2 refers to the side surface of the cover plate 2 located outside the cup holder 1 in the closed state, and is also the upper end surface of the cover plate 2 in the closed state. The first groove wall 121 of the avoidance groove 12 is the groove wall of the avoidance groove 12 on the side away from the cup groove 11. At the same time, a limiting member 3 is provided at the bottom of the avoidance groove 12. The limiting member 3 can extend along the lower edge of the first groove wall 121 (the side edge where the first groove wall 121 is connected to the bottom wall 125). The limiting member 3 can be integrally formed with the cup holder 1, or can be fixed to the bottom of the avoidance groove 12 by welding or bonding. Moreover, the limiting member 3 is located below the cavity 4 and is used to block the open end 41 at the lower end of the cavity 4 to prevent small items such as coins 100 from sliding into the bottom of the avoidance groove 12. Among them, the limiting member 3 can completely block the open end 41, or can partially block the open end 41, that is, the orthographic projection of the open end 41 at the lower end of the cavity 4 on the bottom wall 125 of the avoidance groove 12 and the orthographic projection of the limiting member 3 on the bottom wall 125 of the avoidance groove 12 at least partially overlap. However, no matter which blocking form, it is necessary to make small items such as coins 100 fall into the gap (i.e., the cavity 4) between the outer side surface 21 of the cover plate 2 and the first groove wall 121 of the avoidance groove 12 when the cover plate 2 is turned open, and can be kept upright in the gap under the blocking action of the limiting member 3 and will not slide into the bottom of the avoidance groove 12.

[0039] In this embodiment, the cup holder structure can be configured such that the cover plate 2 is rotatably disposed on the cup holder 1 to facilitate the opening and closing of the cover plate 2 by flipping. Moreover, a relief groove 12 is provided in the cup holder 1 to provide clearance for the cover plate 2 during the opening process of flipping the cover plate 2 and to accommodate the cover plate 2 after it is fully opened. Meanwhile, a limiting member 3 is provided at the bottom of the relief groove 12 and is disposed below the cavity 4 formed by the outer side surface 21 of the opened cover plate 2 and the first groove wall 121 of the relief groove 12, so as to block the open end 41 at the lower end of the cavity 4. This enables small items such as a coin 100 to fall into the gap (i.e., the cavity 4) between the outer side surface 21 of the cover plate 2 and the first groove wall 121 of the relief groove 12 when the cover plate 2 is flipped open, and then be held upright in this gap under the blocking action of the limiting member 3 without slipping into the bottom of the relief groove 12. This facilitates the removal of the upright coin 100 from this gap using a professional tool. It can not only solve the problem that it is difficult to remove items such as a coin 100 that have fallen into the gap between the opened cover plate 2 and the side wall of the cup holder 1, but also, when performing the removal operation, there is no need to remove the sub-instrument panel assembly, making the removal operation simple, convenient, and efficient.

[0040] Optionally, as shown in combination with Figure 3 FIG. [not provided], the relief groove 12 further has a second groove wall 122 disposed opposite to the first groove wall 121, and one end of the limiting member 3 is connected to the first groove wall 121 and the other end is connected to the second groove wall 122.

[0041] In this alternative embodiment, the relief groove 12 is generally surrounded by four side walls and a bottom wall 125. Among them, as Figure 9As shown in the figure, the four side walls are respectively the first groove wall 121, the third groove wall 123, the second groove wall 122, and the fourth groove wall 124 that are connected end to end in sequence. The first groove wall 121, the third groove wall 123, and the fourth groove wall 124 are usually flat surfaces, and the second groove wall 122 is usually a wall surface combined with a flat surface and an arc surface. Moreover, the first groove wall 121 and the second groove wall 122 are arranged opposite to each other, and the third groove wall 123 and the fourth groove wall 124 are arranged opposite to each other. The limiting member 3 can be arranged on the bottom wall 125. The limiting member 3 is usually a flat plate-like structure parallel to the bottom wall 125 of the avoidance groove 12. Moreover, one end of this flat plate-like structure is connected to the first groove wall 121, and the other end is connected to the second groove wall 122. Among them, the limiting member 3 can be a whole plate-like structure. At this time, the shape of the limiting member 3 is adapted to the shape of the bottom wall 125 of the avoidance groove 12. The limiting member 3 can also be formed by a plurality of limiting plates arranged at intervals along the extending direction parallel to the lower edge of the first groove wall 121, and no specific limitation is made here. In this way, by connecting one end of the limiting member 3 to the first groove wall 121 and the other end to the second groove wall 122, on the one hand, the installation stability of the limiting member 3 in the avoidance groove 12 can be ensured. On the other hand, the limiting member 3 can be made into a flat plate-like structure approximately parallel to the bottom wall 125 of the avoidance groove 12, so that the structure of the limiting member 3 can be simplified, which is convenient for processing and manufacturing. Moreover, the flat plate-like limiting member 3 can effectively occupy the bottom space of the avoidance groove 12, further preventing foreign objects from entering the bottom of the avoidance groove 12.

[0042] Further, when the limiting member 3 is a whole plate-like structure, the limiting member 3 can be an independent component adapted to the shape of the bottom wall 125 of the avoidance groove 12. At this time, the original production mold of the cup holder 1 does not need to be changed. The limiting member 3 can also be the bottom wall 125 constituting the avoidance groove 12. At this time, it is equivalent to moving up the bottom wall 125 of the avoidance groove 12 to reduce the vertical distance between the cover plate 2 and the bottom wall 125 of the avoidance groove 12. Therefore, the original production mold of the cup holder 1 needs to be changed. In practical applications, for the newly developed cup holder 1, the bottom wall 125 of the avoidance groove 12 can be used as the limiting member 3. For the cup holder 1 that has been mass-produced, in order to reduce the design difficulty and design cost, the limiting member 3 is usually used as an independent component.

[0043] Optionally, as shown in the figure Figure 6 The limiting member 3 constitutes the bottom wall 125 of the avoidance groove 12, and the vertical distance c between the end of the cover plate 2 facing the bottom wall 125 of the avoidance groove 12 in the open state and the bottom wall 125 of the avoidance groove 12 is c ≤ 5 mm.

[0044] In this alternative embodiment, the limiting member 3 is a monolithic plate-like structure and is connected to the peripheral side walls of the avoidance groove 12, thereby forming the bottom wall 125 of the avoidance groove 12. In actual processes, the limiting member 3 can be a structure integrally formed during the production of the cup holder 1. In this way, for a newly developed cup holder 1, the vertical distance c between the cover plate 2 and the bottom wall 125 of the avoidance groove 12 can be reduced by redesigning the production mold of the cup holder 1 to achieve the limiting effect and enable mass production, thereby improving production efficiency. Moreover, considering that the diameter of the coin 100 with the smallest denomination (i.e., the one-cent coin 100) is approximately 18 mm, the vertical distance c between one end of the cover plate 2 facing the bottom wall 125 of the avoidance groove 12 in the open state and the bottom wall 125 of the avoidance groove 12 is set to be less than or equal to 5 mm to ensure that even if the coin 100 with the smallest denomination falls into the cavity 4, it will not slide into the gap between the cover plate 2 and the limiting member 3. Furthermore, the coin 100 can always be kept in an upright state in the cavity 4, thus facilitating the removal using a professional tool.

[0045] Optionally, as shown in combination with Figure 9 、 Figure 10 、 Figure 11 and Figure 12 the avoidance groove 12 further has a third groove wall 123 and a fourth groove wall 124 which are oppositely arranged. The third groove wall 123 and the fourth groove wall 124 are respectively adjacent to the first groove wall 121. The limiting member 3 is in a strip-like structure and extends along the direction from the third groove wall 123 to the fourth groove wall 124.

[0046] In this alternative embodiment, the limiting member 3 is generally in a strip-like structure and extends along the direction from the third groove wall 123 to the fourth groove wall 124, that is, the limiting member 3 extends along the lower edge of the first groove wall 121. Additionally, the limiting member 3 can be an entire long strip-like structure, as shown in Figure 10 and Figure 11 or can be formed by a plurality of shorter strip-like structures arranged at intervals along the direction from the third groove wall 123 to the fourth groove wall 124, as shown in Figure 12 This is not specifically limited here. Moreover, the opening 41 of the cavity 4 also extends along the direction from the third groove wall 123 to the fourth groove wall 124. Therefore, setting the limiting member 3 as a strip-like structure extending along the third groove wall 123 to the fourth groove wall 124 of the avoidance groove 12 can not only simplify the structure of the limiting member 3 for convenient processing and manufacturing, but also, compared with the plate-like limiting member 3, the strip-like limiting member 3 can reduce the consumption of materials for the limiting member 3 while ensuring that the limiting member 3 blocks the lower opening 41 of the cavity 4, thereby reducing production costs.

[0047] Optionally, as shown in combination with Figure 10 the opposite ends of the limiting member 3 are respectively connected to the third groove wall 123 and the fourth groove wall 124.

[0048] In this alternative embodiment, the limiting member 3 is an integral long strip-shaped structure, that is, the limiting member 3 is a long strip-shaped structure. Moreover, the opposite ends of the long strip-shaped structure are respectively connected to the third groove wall 123 and the fourth groove wall 124, that is, the long strip-shaped structure extends from the third groove wall 123 of the avoidance groove 12 to the fourth groove wall 124. Thus, in the extending direction of the opening 41 of the cavity 4, the shielding range and area of the opening 41 by the limiting member 3 are increased, so that no matter which part of the outer side surface 21 of the cover plate 2 the coin 100 falls into the cavity 4, it can be limited in the cavity 4 by the limiting member 3 and maintained in an upright state, effectively improving the limiting effect of the limiting member 3.

[0049] In other embodiments, the opposite ends of the limiting member 3 may be respectively spaced from the third groove wall 123 and the fourth groove wall 124, or one end of the limiting member 3 may be spaced from the third groove wall 123 and the other end may be connected to the fourth groove wall 124, or one end of the limiting member 3 may be connected to the third groove wall 123 and the other end may be spaced from the fourth groove wall 124. Moreover, considering that the diameter of the coin 100 with the smallest denomination (i.e., the one-cent coin 100) is about 18 mm, the distance between the limiting member 3 and the third groove wall 123 and / or the distance between the limiting member 3 and the fourth groove wall 124 are set to be less than 5 mm, so as to ensure that even if the coin 100 with the smallest denomination falls into the cavity 4 and rolls along the direction from the third groove wall 123 to the fourth groove wall 124 to the gap between the end of the limiting member 3 and the third groove wall 123 or the fourth groove wall 124 of the avoidance groove 12, the coin 100 can also be maintained in an upright state in the cavity 4, thus facilitating the removal by a professional tool.

[0050] Optionally, as shown in Figure 12 the limiting member 3 includes a plurality of limiting portions 31, the plurality of limiting portions 31 are spaced at intervals along the extending direction of the limiting member 3, and the distances between the limiting portion 31 adjacent to the third groove wall 123 and the third groove wall 123, between the limiting portion 31 adjacent to the fourth groove wall 124 and the fourth groove wall 124, and between two adjacent limiting portions 31 are respectively less than or equal to 5 mm.

[0051] In this alternative embodiment, the limiting member 3 is formed by a plurality of shorter strip-like structures (i.e., the limiting portions 31) arranged at intervals in the direction from the third groove wall 123 to the fourth groove wall 124. Among them, the limiting portions 31 at both ends of the limiting member 3 can be respectively connected to the third groove wall 123 and the fourth groove wall 124. At this time, the distance between the limiting portion 31 adjacent to the third groove wall 123 and the third groove wall 123 and the distance between the limiting portion 31 adjacent to the fourth groove wall 124 and the fourth groove wall 124 are both zero. The limiting portions 31 at both ends of the limiting member 3 can also be respectively arranged at intervals with the third groove wall 123 and the fourth groove wall 124. At this time, the distance between the limiting portion 31 adjacent to the third groove wall 123 and the third groove wall 123 and the distance between the limiting portion 31 adjacent to the fourth groove wall 124 and the fourth groove wall 124 are d. At the same time, the distance between two adjacent limiting portions 31 is also d, and d ≤ 5 mm. With such a setting, while ensuring that even the smallest-denomination coin 100 can fall into the cavity 4 and remain in an upright state in the cavity 4, the consumption of materials for the limiting member 3 can be saved, and the production cost can be reduced.

[0052] Optionally, as shown in combination with Figure 4 and Figure 5 , when the cover plate 2 is in the open state, the projection of the limiting member 3 on the bottom wall 125 of the avoidance groove 12 is located between the projection of the first groove wall 121 and the outer side surface 21 on the bottom wall 125 of the avoidance groove 12, and the limiting member 3 is located below the outer side surface 21.

[0053] In this alternative embodiment, when the cover plate 2 is opened, the cover plate 2, the limiting member 3, and the first groove wall 121 are arranged in sequence in the front-rear direction (i.e., the X-axis direction in Figure 2 ). Moreover, there may be a distance (as shown in Figure 5 ) or no distance (as shown in Figure 4 ) between the three in the front-rear direction, which is not specifically limited here. In this way, the size of the limiting member 3 in the front-rear direction can be reduced while ensuring that the limiting member 3 plays a limiting role on the coin 100, thereby saving the consumption of materials for the limiting member 3 and reducing the production cost.

[0054] Optionally, the upper end of the limiting member 3 is flush with the end of the cover plate 2 facing the bottom wall 125 of the avoidance groove 12 in the open state.

[0055] In this alternative embodiment, the end of the cover plate 2 facing the bottom wall 125 of the avoidance groove 12 when it is opened is the lower end of the cover plate 2 in the open state. By setting the upper end of the limiting member 3 to be flush with the lower end of the cover plate 2 in the open state, the gap between the limiting member 3 and the opening 41 of the cavity 4 in the up-down direction can be reduced, preventing the coin 100 from getting stuck in this gap in an inclined state.

[0056] Optionally, as shown in combination with Figure 5As shown, the limiting member 3 has a first end and a second end. In the direction from the first end to the second end of the limiting member 3, the first end of the limiting member 3 is spaced apart from the first groove wall 121, and the second end of the limiting member 3 is spaced apart from the outer side surface 21 when the cover plate 2 is opened, and the spacing between the limiting member 3 and the first groove wall 121 and the spacing between the limiting member 3 and the outer side surface 21 are respectively less than 1 mm, wherein the first end of the limiting member 3 is the end of the limiting member 3 facing the first groove wall 121, and the second end of the limiting member 3 is the end of the limiting member 3 away from the first groove wall 121.

[0057] In this optional embodiment, the cover plate 2, the stopper 3 and the first groove wall 121 are sequentially arranged in intervals along the front-to-back direction, that is, the front end of the stopper 3 and the first groove wall 121 of the avoidance groove 12 have a spacing b in the front-to-back direction, and the rear end of the stopper 3 and the outer side surface 21 of the cover plate 2 have a spacing a in the front-to-back direction. Moreover, considering that the thickness of the smallest denomination coin 100 is about 1.25 mm, the spacing a and the spacing b are set to be less than 1 mm, which can not only ensure that even the smallest denomination coin 100 falls into the cavity 4 and is located in the gap between the stopper 3 and the first groove wall 121 or in the gap between the stopper 3 and the cover plate 2, but also can be kept in the cavity 4 in an upright state, so as to facilitate removal with professional tools, and can further reduce the consumables of the stopper 3, thereby further reducing the production cost.

[0058] The embodiment of the utility model provides a vehicle, including the cup holder structure as described above.

[0059] The beneficial effects of the vehicle of this embodiment relative to the prior art are the same as those of the above-mentioned cup holder structure, and will not be described in detail here.

[0060] Although the utility model is disclosed as above, the protection scope of the utility model is not limited thereto. Those skilled in the art may make various changes and modifications without departing from the spirit and scope of the utility model, and these changes and modifications will fall within the protection scope of the utility model.

Claims

1. A cup holder structure, characterized in that: The invention comprises a cup holder (1), a cover plate (2) and a stopper (3); the cover plate (2) can be turned over and arranged on the cup holder (1); an escape groove (12) is arranged inside the cup holder (1); the cover plate (2) is at least partially accommodated in the escape groove (12) when turned over and opened; the cover plate (2) is provided with an outer side surface (21); the escape groove (12) has a first groove wall (121); the outer side surface (21) is located in the outer space of the cup holder (1) when the cover plate (2) is in a closed state, and is arranged opposite to the first groove wall (121) to form a cavity (4) when the cover plate (2) is in an open state; and an opening (41) is arranged at the lower end of the cavity (4); the stopper (3) is arranged at the opening (41) and is used to prevent a coin (100) from sliding into the bottom of the escape groove (12).

2. The cup holder structure according to claim 1, characterized in that: The avoidance groove (12) further comprises a third groove wall (123) and a fourth groove wall (124) which are arranged opposite to each other, the third groove wall (123) and the fourth groove wall (124) being arranged adjacent to the first groove wall (121) respectively, and the limiting member (3) is in a strip-shaped structure and is extended in a direction from the third groove wall (123) to the fourth groove wall (124).

3. The cup holder structure according to claim 2, characterized in that: The opposite ends of the limiting member (3) are respectively connected to the third groove wall (123) and the fourth groove wall (124).

4. The cup holder structure according to claim 2, characterized in that: The limiting member (3) comprises a plurality of limiting portions (31), and the plurality of limiting portions (31) are arranged at intervals along the extension direction of the limiting member (3), and the spacing between the limiting portion (31) adjacent to the third groove wall (123) and the third groove wall (123), the spacing between the limiting portion (31) adjacent to the fourth groove wall (124) and the fourth groove wall (124), and the spacing between two adjacent limiting portions (31) are respectively less than or equal to 5 mm.

5. The cup holder structure according to claim 1, characterized in that: When the cover plate (2) is in an open state, the projection of the limiting member (3) on the bottom wall (125) of the avoidance groove (12) is located between the first groove wall (121) and the projection of the outer side surface (21) on the bottom wall (125) of the avoidance groove (12), and the limiting member (3) is located below the outer side surface (21).

6. The cup holder structure according to claim 5, characterized in that: The upper end of the limiting member (3) is flush with one end of the cover plate (2) facing the bottom wall (125) of the avoidance groove (12) in the open state.

7. The cup holder structure according to claim 5, characterized in that: The limiting member (3) has a first end and a second end. In the direction from the first end to the second end of the limiting member (3), the first end of the limiting member (3) is spaced apart from the first groove wall (121), and the second end of the limiting member (3) is spaced apart from the outer side surface (21) when the cover plate (2) is in the open state. The spacing between the limiting member (3) and the first groove wall (121) and the spacing between the limiting member (3) and the outer side surface (21) are both less than 1 mm, wherein the first end of the limiting member (3) is the end of the limiting member (3) facing the first groove wall (121), and the second end of the limiting member (3) is the end of the limiting member (3) facing away from the first groove wall (121).

8. The cup holder structure according to claim 1, characterized in that: The avoidance groove (12) further comprises a second groove wall (122) arranged opposite to the first groove wall (121); one end of the limiting member (3) is connected to the first groove wall (121), and the other end is connected to the second groove wall (122).

9. The cup holder structure according to claim 8, characterized in that: The limiting member (3) constitutes the bottom wall (125) of the avoidance groove (12), and the vertical distance between one end of the cover plate (2) facing the bottom wall (125) of the avoidance groove (12) in the open state and the bottom wall (125) of the avoidance groove (12) is less than or equal to 5 mm.

10. A vehicle, characterized in that: The invention comprises the cup holder structure as claimed in any one of claims 1 to 9.