Linkage type vehicle-mounted cup holder assembly and vehicle with linkage type vehicle-mounted cup holder assembly
By designing a linkage vehicle-mounted cup holder assembly and using the base and clamping mechanism, the problem that the existing vehicle-mounted cup holder cannot adapt to water cups of different sizes and shapes is solved, and the stable placement and safe fixation of the water cup is achieved.
Patent Information
- Application Number
- CN202510250049.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-04
- Publication Date
- 2025-05-13
AI Technical Summary
The existing car-mounted cup holders cannot adapt to water cups of different sizes and shapes, which leads to the water cups being easily shaken or dumped during driving, posing safety risks.
A linkage vehicle-mounted cup holder assembly is designed, which adopts the cooperation of the base and the clamping mechanism. The clamping mechanism includes a swinging rod and a clamping plate. The automatic adjustment of the clamping mechanism is achieved through the control mechanism, which is suitable for water cups of different sizes.
The stable placement of the water cup in the car is achieved, and is suitable for water cups of different sizes, reducing the risk of shaking and pouring, and improving the flexibility and safety of use.
Smart Images

Figure CN119975151A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the field of vehicle-mounted cup holders, in particular to a linked vehicle-mounted cup holder assembly and a vehicle having the linked vehicle-mounted cup holder assembly. Background Art
[0002] A car cup holder, as the name suggests, is a device installed inside a car specifically for placing cups or other beverage containers.
[0003] It is designed to be both practical and convenient, allowing drivers and passengers to easily store and retrieve water cups while driving without having to worry about spillage caused by the cups sliding or tipping over. Car cup holders are usually located near the car's center console, door side panels or center armrest boxes. The specific location may vary depending on the model and interior design.
[0004] These locations were chosen to ensure that the cup holders are easily accessible while not interfering with driving operation or passenger comfort.
[0005] Usually, there is no fixing mechanism inside the car cup holder, which causes shaking during driving when cups of different sizes are placed in them, which may cause safety hazards such as accidental splashing or scalding due to the cup tipping over.
[0006] Traditional car cup holders usually use cup holders of fixed sizes, which cannot adapt to water cups of different diameters and shapes, causing the water cups to shake or even fall over during driving, posing a safety hazard.
[0007] The existing patent 202321786228.9 - Car cup holder and vehicle does not clearly disclose the technical content for solving the above technical problems.
[0008] Therefore, in order to improve or solve at least one of the above problems, it is necessary to optimize the design of the existing vehicle-mounted cup holder structure. Summary of the invention
[0009] The purpose of the present invention is to provide a vehicle-mounted cup holder assembly which has a wide application range and can be suitable for water cups of various sizes.
[0010] In order to achieve the above object, the technical solution adopted by the present invention is:
[0011] A linkage type vehicle-mounted cup holder assembly comprises a cup holder base block, the cup holder base block is provided with a storage cavity; a cup holder structure is provided in the storage cavity;
[0012] The cup holder structure comprises a base; the base is connected with a clamping mechanism for limiting the position of the cup body;
[0013] Each of the clamping mechanisms comprises a swing rod, and the base is connected to the swing rod via a control mechanism;
[0014] The base can drive the swing rod to swing through a control mechanism; the base can reciprocate in the storage cavity.
[0015] The base is connected to the bottom of the storage cavity through an elastic unit; the elastic unit includes a supporting spring, and the base is connected to the bottom of the storage cavity through the supporting spring.
[0016] The swing rod is provided with a clamping plate; the clamping plate is an arc-shaped plate; the clamping plate is connected to the swing rod through a connecting piece.
[0017] The control mechanism includes a second folding rod and a first folding rod, one end of the second folding rod is rotatably connected to the bottom inner wall of the storage cavity, and the other end is rotatably connected to the first folding rod; one end of the first folding rod is connected to the second folding rod, and the other end is rotatably connected to the base.
[0018] The swing lever is connected to the inner wall of the storage cavity via a rotating part, the rotating part includes a rotating pin, the swing lever is rotatably connected to the inner wall of the storage cavity via the rotating pin, and the central axis of the rotating pin is parallel to the base.
[0019] A counterweight block is arranged on the swing rod.
[0020] The control mechanism further comprises a pressing component, and the pressing component comprises a pressing roller arranged on the second folding rod.
[0021] The storage cavity comprises a central cavity; a lateral cavity is arranged on the side of the central cavity; and the vertical cross section of the storage cavity is in a convex shape.
[0022] Each base is connected to at least two clamping mechanisms; the clamping mechanisms are symmetrically distributed at intervals on the periphery of the base.
[0023] A vehicle comprises a vehicle body, wherein the vehicle body is provided with the linkage type vehicle-mounted cup holder assembly; the linkage type vehicle-mounted cup holder assembly is connected to the vehicle body in a detachable connection manner.
[0024] The advantages of the present invention are:
[0025] The invention discloses a linkage type vehicle-mounted cup holder assembly and a vehicle having the linkage type vehicle-mounted cup holder assembly.
[0026] The present invention can realize the stable placement of the water cup in the car through the coordinated use of the base and the clamping mechanism. At the same time, the swing rod as a clamping member has a certain swing range, so the vehicle-mounted cup holder assembly disclosed in the present invention can be suitable for the placement and fixation of water cups of different sizes. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] The following is a brief description of the contents expressed in the drawings of the present invention and the symbols in the drawings:
[0028] Figure 1 It is a schematic diagram of the fixing structure of the water cup of the present invention;
[0029] Figure 2 It is a schematic diagram of the vehicle cup holder of the present invention;
[0030] Figure 3 It is an internal cross-sectional view of the vehicle cup holder of the present invention;
[0031] The marks in the above figure are:
[0032] 1. Cup holder base block; 2. Central cavity; 3. Lateral cavity; 4. Base; 5. First folding rod; 6. Second folding rod; 7. First rotating seat; 8. Pressing roller; 9. Swing rod; 10. Counterweight; 11. Rotating pin; 12. Connecting piece; 13. Clamping plate; 14. Second rotating seat; 15. Support spring; 16. Anti-slip sticker. DETAILED DESCRIPTION
[0033] The specific implementation of the present invention will be further explained in detail below by describing the optimal embodiment with reference to the accompanying drawings.
[0034] A linkage-type vehicle-mounted cup holder assembly comprises a cup holder base block 1, on which a storage cavity is provided; a cup holder structure is provided in the storage cavity; the cup holder structure comprises a base 4; the base 4 is connected to a clamping mechanism for limiting the position of the cup body; each of the clamping mechanisms comprises a swing rod 9, and the base 4 is connected to the swing rod 9 through a control mechanism; the base 4 can drive the swing rod 9 to swing through the control mechanism; the base 4 can reciprocate in the storage cavity; the present invention can achieve stable placement of water cups in the vehicle through the coordinated use of the base 4 and the clamping mechanism, and at the same time, the swing rod 9 as a clamping member has a certain swinging range, so the vehicle-mounted cup holder assembly disclosed in the present invention can be suitable for the placement and fixation of water cups of different sizes.
[0035] The cup holder base block 1 disclosed in the present invention serves as the basic structure of the entire vehicle cup holder assembly, providing a support and installation platform.
[0036] At the same time, the vehicle-mounted cup holder assembly of the present invention is an integral structure, which facilitates the integrated assembly and installation of the vehicle-mounted cup holder assembly on the whole vehicle; and also facilitates subsequent disassembly and cleaning.
[0037] In addition, in the present invention, the storage cavity is arranged inside the cup holder base block 1 to accommodate the cup holder structure and the water cup.
[0038] The shape and size of the storage cavity are designed according to the cup holder structure and usage requirements.
[0039] In the present invention, the cup holder structure mainly includes a base 4, which is installed in the storage cavity and is used to hold the water cup.
[0040] The impeller can move back and forth in the storage cavity, and usually achieves buffering and resetting functions through an elastic unit (such as a spring).
[0041] The design of the base 4 needs to take into account its load-bearing capacity and stability to ensure that the water cup does not slide or tip over during the driving of the vehicle.
[0042] The clamping mechanism is mainly used to limit and fix the water cup to prevent the water cup from shaking during driving.
[0043] Each clamping mechanism comprises a swing rod 9, which is connected to the inner wall of the storage cavity through a rotating part (such as a rotating pin 11) and can swing around the pin.
[0044] The swing range and angle of the swing rod 9 can be adjusted according to the size of the water cup to adapt to water cups of different sizes.
[0045] The end of the swing rod 9 is usually equipped with a clamping component (such as a clamping plate 13 or an arc-shaped clamping piece) for directly contacting the water cup and applying a clamping force.
[0046] The surface of the clamping component can be designed to be a non-slip material to improve the stability of the clamping.
[0047] The control mechanism is mainly used to connect the base 4 and the swing rod 9, and the swing of the swing rod 9 is controlled by the movement of the base 4, so as to realize the automatic adjustment of the clamping mechanism.
[0048] In the present invention, the second folding rod 6 has one end rotatably connected to the inner wall of the bottom of the storage cavity, and the other end rotatably connected to the first folding rod 5 ; the first folding rod 5 has one end connected to the second folding rod 6 , and the other end rotatably connected to the base 4 .
[0049] The pressing component usually includes a pressing roller 8 , which is arranged on the second folding rod 6 and is used for linkage with the swing rod 9 .
[0050] Furthermore, in the present invention, the base 4 is connected to the bottom of the storage cavity through an elastic unit; the elastic unit includes a support spring 15, and the base 4 is connected to the bottom of the storage cavity through the support spring 15; the elastic unit is a key component connecting the base 4 and the bottom of the storage cavity, and its main functions include: Buffering effect: when a water cup is placed on the base 4, the elastic unit can absorb the gravity impact of the water cup to prevent the base 4 and the clamping mechanism from being damaged due to sudden force.
[0051] Reset function: When the water cup is taken out, the elastic unit can pull the base 4 back to the original position for the next use.
[0052] Stability: With the support of the elastic unit, the base 4 can move smoothly in the storage cavity to reduce shaking.
[0053] The elastic unit comprises a supporting spring 15, which is a common elastic element and has the following characteristics.
[0054] The support spring 15 can be a coil spring (such as a cylindrical spring) or other forms of elastic elements, and the specific design depends on the size of the storage cavity and usage requirements.
[0055] One end of the support spring 15 is fixed on the base 4, and the other end is fixed on the bottom of the storage cavity. This connection mode ensures that the base 4 can reciprocate in the storage cavity.
[0056] When the water cup is placed on the base 4, the base 4 moves downward due to gravity, and the swing rod 9 swings inward through the control mechanism (driven by the folding rod), so that the clamping component clamps the water cup; when the water cup is taken out, the base 4 moves upward under the action of the elastic unit (such as a spring), and the swing rod 9 swings outward under the action of the counterweight 10 or other mechanisms to release the clamping component.
[0057] In addition, the elastic unit disclosed in the present invention mainly provides buffering and resetting functions for the base 4; it usually includes a support spring 15, which is connected between the base 4 and the bottom of the storage cavity; when the water cup is placed, it buffers the impact of gravity to prevent the clamping mechanism from being damaged due to sudden force; when the water cup is taken out, it helps the base 4 to reset for easy use next time.
[0058] How it works
[0059] Put in the cup:
[0060] The water cup is placed on the base 4, and the base 4 moves downward due to the gravity of the water cup.
[0061] The movement of the base 4 drives the swing rod 9 to swing inwards through the control mechanism (folding rod).
[0062] The clamping part at the end of the swing rod 9 moves inward to clamp the water cup to achieve fixation.
[0063] Take out the water cup:
[0064] When the water cup is taken out, the base 4 moves upward under the action of the elastic unit (spring);
[0065] The swing rod 9 swings outwards under the action of the counterweight 10 or other mechanisms, the clamping part is loosened, and the water cup is released.
[0066] The vehicle-mounted cup holder assembly disclosed in the present invention has excellent adaptability: through the design of the swing rod 9 and the control mechanism, the clamping mechanism can automatically adjust the clamping position according to the size of the water cup, and is suitable for water cups of different sizes.
[0067] The design of the clamping component and the buffering function of the elastic unit ensure that the water cup remains stable and reduces shaking during driving.
[0068] The base 4 can move in the storage cavity, and the angle and position of the clamping mechanism can be adjusted as needed, so it is flexible to use.
[0069] The entire design utilizes a simple mechanical structure to achieve its functions, does not require an additional power device, has a compact structure and is low in cost.
[0070] The linked vehicle-mounted cup holder assembly disclosed in the present invention realizes automatic fixing and releasing of the water cup through the ingenious cooperation of the base 4, the clamping mechanism and the control mechanism, and has high stability and adaptability.
[0071] Furthermore, in the present invention, a clamping plate 13 is provided on the swing rod 9; the clamping plate 13 is an arc-shaped plate; the clamping plate 13 of the present invention has various shapes, and can be a straight plate structure or an arc-shaped plate structure, and can be selected according to needs. Generally, in the present invention, the clamping plate 13 adopts the shape of an arc-shaped plate. This design matches the round or oval surface of the water cup and can better fit the outer wall of the water cup.
[0072] The curved plate can evenly apply the clamping force to avoid damage to the water cup due to excessive local pressure.
[0073] The arc-shaped design can adapt to water cups of different diameters, increasing the versatility of the clamping mechanism.
[0074] In addition, in the present invention, the clamping plate 13 is connected to the swing rod 9 via a connecting member 12; the connecting member 12 can be a bolt, a hinge or other mechanical connecting device; it is mainly to facilitate the connection between the clamping plate 13 and the swing rod 9.
[0075] The connecting piece 12 ensures the firmness of the clamping plate 13 on the swing rod 9 to prevent it from loosening during use.
[0076] Through the design of the connecting member 12, the angle or position of the clamping plate 13 can be fine-tuned as needed to better adapt to water cups of different shapes.
[0077] The design of the connecting member 12 allows the clamping plate 13 to be easily replaced or repaired when damaged.
[0078] The clamping plate 13 is a key component of the clamping mechanism, and its main function is to directly contact the water cup and apply a clamping force to prevent the water cup from shaking during driving.
[0079] When the water cup is placed on the base 4, the movement of the base 4 drives the swing rod 9 to swing inwards through the control mechanism.
[0080] The swing of the swing rod 9 causes the clamping plate 13 to move inward, and the arc surface of the clamping plate 13 closely fits the outer wall of the water cup to achieve clamping and fixing.
[0081] When the water cup is taken out, the swing rod 9 swings outwards and the clamping plate 13 releases the water cup.
[0082] The inner surface of the clamping plate 13 can be designed to be a non-slip material (such as rubber, silicone or non-slip texture) to further improve the clamping stability and prevent the water cup from sliding.
[0083] A buffer element (such as a small spring or an elastic pad) can be added between the clamping plate 13 and the swing rod 9 to reduce the impact force on the water cup during clamping.
[0084] The connecting member 12 can be designed as an adjustable hinge structure, allowing the angle of the clamping plate 13 to be adjusted within a certain range to better adapt to water cups of different shapes.
[0085] The clamping plate 13 is a key component in the linkage-type vehicle-mounted cup holder assembly. Its arc-shaped design and connection method provide important guarantees for the stable clamping of the water cup.
[0086] Through the reasonable design of the connecting piece 12, the clamping plate 13 can not only be firmly fixed on the swing rod 9, but also be adjusted as needed, thereby enhancing the adaptability and flexibility of the clamping mechanism. This design enables the vehicle-mounted cup holder to better handle water cups of different sizes and shapes, thereby improving the user experience and safety.
[0087] Furthermore, in the present invention, the control mechanism includes a second folding rod 6 and a first folding rod 5, one end of the second folding rod 6 is rotatably connected to the bottom inner wall of the storage cavity, and the other end is rotatably connected to the first folding rod 5; one end of the first folding rod 5 is connected to the second folding rod 6, and the other end is rotatably connected to the base 4; in the present invention, the control mechanism mainly includes the second folding rod 6 and the first folding rod 5, and these two folding rods cooperate with each other through a rotatable connection to form a linkage system.
[0088] One end of the second folding rod 6 is rotatably connected to the bottom inner wall of the storage cavity, usually through a fixed point (such as a rotating pin 11).
[0089] The other end is rotatably connected to the first folding rod 5 to form a movable joint.
[0090] One end of the first folding rod 5 is connected to the second folding rod 6 (as described above); the other end is rotatably connected to the base 4, usually through another rotating pin 11; this connection method enables the second folding rod 6 and the first folding rod 5 to rotate around their respective rotation points, thereby realizing mechanical linkage.
[0091] How it works
[0092] When putting the cup in:
[0093] When a water cup is placed on the base 4 , the gravity of the water cup will cause the base 4 to move downward.
[0094] The movement of the base 4 is transmitted to the second folding rod 6 via the first folding rod 5 .
[0095] The other end of the second folding rod 6 (the end connected to the bottom of the storage cavity) remains fixed, so the movement of the first folding rod 5 will drive the second folding rod 6 to rotate around its fixed point.
[0096] This rotational movement is transmitted to the swing lever 9 through the control mechanism, causing the swing lever 9 to swing inward.
[0097] The swing of the swing rod 9 drives the clamping plate 13 to move inward, thereby clamping the water cup.
[0098] When taking out the water cup:
[0099] When the water cup is taken out, the base 4 moves upward under the action of the elastic unit (such as the support spring 15).
[0100] The linkage between the first folding rod 5 and the second folding rod 6 causes the swing rod 9 to swing outward.
[0101] The outward swing of the swing rod 9 causes the clamping plate 13 to release the water cup, completing the release action.
[0102] Through the mechanical linkage of the first folding rod 5 and the second folding rod 6, the movement of the base 4 can be directly converted into the swing of the swing rod 9, thereby realizing the automation of clamping and releasing.
[0103] The control mechanism consists of only two folding rods, with simple structure, low cost and high reliability.
[0104] This linkage design can adapt to water cups of different weights, and no matter the size of the water cup, it can be clamped by moving the base 4.
[0105] The design of the folding rod allows the entire control mechanism to be compactly arranged in the storage cavity without taking up additional space.
[0106] In actual arrangement, the control mechanism is pressed against the swing rod 9 , and the control mechanism can cooperate with the counterweight 10 to ensure that the swing rod 9 and the control mechanism are in a constant contact state.
[0107] Furthermore, in the present invention, the swing rod 9 is connected to the inner wall of the storage cavity through a rotating part, and the rotating part includes a rotating pin 11. The swing rod 9 is rotatably connected to the inner wall of the storage cavity through the rotating pin 11, and the central axis of the rotating pin 11 is arranged parallel to the base 4; the rotating part is a connecting component between the swing rod 9 and the inner wall of the storage cavity, and mainly includes the rotating pin 11.
[0108] The rotating pin 11 is a key component for realizing the swing of the swing lever 9 , and its design and layout directly affect the motion characteristics and stability of the swing lever 9 ; the swing lever 9 is rotatably connected to the inner wall of the storage cavity via the rotating pin 11 .
[0109] The central axis of the rotating pin 11 is arranged parallel to the base 4. This layout ensures that the swing direction of the swing rod 9 is coordinated with the moving direction of the base 4, so that the clamping mechanism can efficiently complete the clamping and releasing actions.
[0110] In addition, in actual arrangement, the rotating pin 11 is connected to the inner wall of the lateral cavity 3 .
[0111] In the present invention, when the base 4 moves downward due to the gravity of the water cup, the control mechanism drives the swing rod 9 to swing inward around the rotating pin 11.
[0112] The swing of the swing lever 9 causes the clamping plate 13 to move inward, thereby clamping the water cup.
[0113] When the water cup is taken out, the base 4 moves upward under the action of the elastic unit (such as a spring), the control mechanism drives the swing rod 9 to swing outward, and the clamping plate 13 releases the water cup.
[0114] Advantages of parallel layout:
[0115] The central axis of the rotating pin 11 is parallel to the base 4, which ensures that the swing direction of the swing rod 9 is consistent with the moving direction of the base 4, making the movement of the entire mechanism more stable and coordinated.
[0116] This layout can ensure that the clamping plate 13 always keeps in contact with the surface of the water cup during the clamping process, thereby improving the stability and reliability of the clamping.
[0117] The parallel arrangement of the rotating pins 11 can ensure the accurate movement direction of the swing rod 9 and reduce the stagnation or deviation during the movement.
[0118] This connection mode enables the swing rod 9 to be compactly arranged in the storage cavity without occupying additional space, thereby improving the space utilization of the entire cup holder assembly.
[0119] Furthermore, in the present invention, a counterweight 10 is provided on the swing rod 9; in the present invention, the counterweight 10 can balance the movement of the swing rod 9; the main function of the counterweight 10 is to increase the inertia of the swing rod 9, so that it is more stable during the swing process. This design helps to reduce the shaking of the swing rod 9 when clamping or releasing the water cup, thereby improving the stability and reliability of clamping.
[0120] When the water cup is taken out, the gravity of the counterweight 10 can help the swing rod 9 return to the initial position faster.
[0121] This design reduces reliance on elastic elements (such as springs) and reduces the risk of failure due to elastic element fatigue.
[0122] The setting of the counterweight 10 can optimize the dynamic performance of the clamping mechanism, so that it can better adapt to water cups of different sizes and weights; this design not only improves the flexibility of clamping, but also reduces the shaking of the water cup during vehicle driving.
[0123] The counterweight 10 reduces the friction and impact between mechanical parts by balancing the movement of the swing rod 9, thereby reducing the noise during use.
[0124] Furthermore, in the present invention, the control mechanism also includes a pressing component, which includes a pressing roller 8 arranged on the second folding rod 6; the pressing roller 8 can rotate on the second folding rod 6 to reduce the friction between the swing rod 9 and the second folding rod 6.
[0125] In the present invention, the pressing roller 8 can provide a stable pressing force for the clamping mechanism by cooperating with the swing rod 9 or the second folding rod 6 .
[0126] The pressing roller 8 has the ability to rotate, so that it can rotate freely during the clamping process.
[0127] This design can reduce the friction between the second folding rod 6 and the swing rod 9 .
[0128] The pressure roller 8 is installed on the second folding rod 6; the pressure roller is installed on the second folding rod 6, and the movement of the second folding rod 6 drives the roller to press the swing rod 9; this design enables the clamping mechanism to automatically adjust the clamping force according to the movement of the base 4.
[0129] Furthermore, in the present invention, the storage cavity includes a central cavity 2; a lateral cavity 3 is provided on the side of the central cavity 2; the vertical cross-section of the storage cavity is convex; the central cavity 2 is the main part of the storage cavity, which is used to accommodate the cup holder structure; the central cavity 2 provides sufficient space for storing the water cup, so that it can reciprocate in the vertical direction.
[0130] The central cavity 2 is usually in the shape of a cuboid or a cylinder, and the specific shape depends on design requirements.
[0131] The lateral cavity 3 is located on the side of the central cavity 2 and is used to accommodate a control mechanism (the second folding lever 6 , the first folding lever 5 or the swing lever 9 ) and other auxiliary components.
[0132] The lateral cavity 3 provides space for the control mechanism, so that it can swing freely when the base 4 moves, thereby realizing the functions of clamping and releasing.
[0133] In the present invention, the lateral cavities 3 are usually symmetrically distributed on both sides of the central cavity 2 to ensure that the movement of the control mechanism is not restricted.
[0134] The height of the lateral cavity 3 is lower than that of the central cavity 2, thereby forming a convex U-shaped structure in cross section.
[0135] Furthermore, in the present invention, each base 4 is connected to at least two clamping mechanisms; each clamping mechanism is symmetrically distributed at intervals around the base 4;
[0136] There are at least two clamping mechanisms, and each base 4 is connected to at least two clamping mechanisms; this design ensures that the water cup is subjected to uniform clamping force in multiple directions, thereby improving the stability and reliability of the clamping.
[0137] Multiple clamping mechanisms can better disperse the clamping force and reduce the risk of the water cup shaking due to bumps or sudden braking during vehicle driving; they can better adapt to water cups of different shapes and sizes, especially non-circular water cups (such as square or oval water cups).
[0138] The multiple clamping mechanisms of the present invention are symmetrically distributed at intervals: the clamping mechanisms are symmetrically distributed around the base 4; this layout ensures uniform distribution of the clamping force, avoiding tilting or damage of the water cup due to uneven clamping force.
[0139] The symmetrically distributed clamping mechanism can ensure that the water cup is subjected to uniform clamping force in all directions, thereby improving the clamping stability.
[0140] The symmetrical layout enables the clamping mechanism to better adapt to water cups of different sizes and shapes, thereby enhancing the versatility of the cup holder.
[0141] A certain distance is maintained between the clamping mechanisms. This design can avoid mutual interference between the clamping mechanisms and provide sufficient space for putting in and taking out the water cup; the interval distribution makes it easier to put in and take out the water cup, and will not cause difficulty in operation due to the clamping mechanisms being too dense.
[0142] Assuming that the base 4 is circular or square, the clamping mechanism can be arranged in the following manner:
[0143] Circular base 4: The clamping mechanisms may be evenly distributed on the circumference of the base 4, for example, a clamping mechanism is provided every 90° or 120°.
[0144] Square base 4: The clamping mechanism can be set on the four corners or four sides of the base 4 to ensure that the water cup can be stably clamped in all directions.
[0145] A vehicle comprises a vehicle body, on which the linkage-type vehicle-mounted cup holder assembly is arranged; the linkage-type vehicle-mounted cup holder assembly is connected to the vehicle body in a detachable connection manner; the vehicle body is the main structural part of the vehicle, and is used for carrying passengers and various equipment.
[0146] The vehicle body mainly includes a central channel or a sub-instrument panel structure. The present invention provides a sink structure on the sub-instrument panel. During subsequent installation, the linked vehicle cup holder assembly is plugged into the sink structure of the sub-instrument panel structure. The two can be directly connected by interference fit. A rubber layer is provided on the outer side of the cup holder base block 1 to ensure the stability of the linked vehicle cup holder assembly when plugged into the sub-instrument panel structure.
[0147] In the present invention, the linked vehicle cup holder assembly is a device for fixing and accommodating a water cup and is designed to be used inside a vehicle to improve the convenience and safety of use.
[0148] The connection between the cup holder assembly and the auxiliary instrument panel is generally a detachable connection.
[0149] The cup holder assembly is installed on the vehicle body in a detachable manner; this design allows the user to easily install or remove the cup holder as needed, increasing flexibility of use.
[0150] The detachable connection method has the following advantages and is extremely flexible: users can choose whether to install the cup holder according to different usage scenarios or personal preferences.
[0151] Maintenance convenience: If the cup holder assembly needs cleaning or repair, the detachable design makes the operation more convenient.
[0152] The detachable design allows the cup holder assembly to adapt to different models of vehicles, enhancing the versatility of the product.
[0153] Buckle connection: The cup holder assembly is fixed to the designated position of the vehicle body through the buckle structure. This connection method is simple, fast and easy to operate.
[0154] Screw connection: Use screws to fix the cup holder assembly to the vehicle body. This connection method is more secure, but tools may be required for installation and removal.
[0155] Magnetic connection: If the vehicle body material allows, the cup holder assembly can be fixed to the vehicle body using magnetic devices.
[0156] The installation position of the linkage-type vehicle-mounted cup holder assembly on the vehicle body can be designed as needed, and can be the center console: The linkage-type vehicle-mounted cup holder assembly is usually installed on the top of the vehicle's center console for easy use by the driver and passengers.
[0157] Doors: Some vehicle designs install the cup holders on the inside of the doors, which saves space and is easy to use.
[0158] Seat armrests: Cup holders can also be installed in the seat armrests to provide convenience for rear passengers.
[0159] Assembly method of linkage type vehicle cup holder assembly:
[0160] Preparation of cup holder base block;
[0161] The cup holder base block 1 is the basic structure of the entire cup holder assembly, and a storage cavity is integrally formed inside the cup holder. The top of the storage cavity is open to facilitate the placement and removal of water cups.
[0162] The storage cavity includes a central cavity 2 and a lateral cavity 3. The lateral cavities 3 are symmetrically arranged on both sides of the central cavity 2 and communicated with the central cavity 2 for accommodating the control mechanism and other components.
[0163] Assembly of the base;
[0164] The base 4 is movably arranged inside the storage cavity, and second rotating seats 14 are symmetrically arranged on both sides of the bottom.
[0165] A support spring 15 is installed at the bottom of the base 4, and the other end of the support spring 15 is fixed to the inner bottom end of the storage cavity to provide buffering and resetting functions.
[0166] Assembly of control mechanisms;
[0167] A first rotating seat 7 is symmetrically arranged at the inner bottom end of the storage cavity, and its position is aligned with the second rotating seat 14 of the base 4.
[0168] One end of the first folding rod 5 is connected to the second rotating seat 14 of the base 4 , and the other end is movably connected to one end of the second folding rod 6 .
[0169] One end of the second folding rod 6 is connected to the first rotating seat 7 at the bottom of the storage cavity, and the other end is movably connected to the other end of the first folding rod 5 .
[0170] A pressing roller 8 is installed at the connection between the first folding rod 5 and the second folding rod 6 , and the pressing roller 8 is used for linkage with the swing rod 9 .
[0171] Assembly of the clamping mechanism
[0172] A swing rod 9 is installed inside the lateral cavity 3 , and the middle part of the swing rod 9 is fixed to the inner wall of the lateral cavity 3 through a rotating pin 11 , and the central axis of the rotating pin 11 is arranged parallel to the base 4 .
[0173] A clamping plate 13 is installed at the upper end of the swing rod 9 , and the clamping plate 13 is connected to the swing rod 9 through a connecting member 12 (such as a bolt, a hinge, etc.) to facilitate adjusting the angle of the clamping plate 13 .
[0174] An anti-slip sticker 16 is pasted on the inner side of the clamping plate 13 to improve the clamping stability.
[0175] A counterweight 10 is installed at the other end of the swing rod 9. The counterweight 10 is located inside the lateral cavity 3 and is used to balance the movement of the swing rod 9. In the present invention, in order to facilitate assembly, an assembly side hole can be set on the side of the cup holder base, and the assembly side hole is connected to the lateral cavity; the rotating pin can be inserted into the assembly side hole.
[0176] In addition, in the present invention, the cup holder base block 1 can be made into two symmetrical structures, which are matched and connected.
[0177] In the present invention, the control mechanism is required to be connected to the base and the elastic unit to the cup holder base block, and then the clamping mechanism is connected to the lateral cavity; during actual installation, the swing arm is connected to the clamping plate and the counterweight block, and then assembled together into the lateral cavity.
[0178] In the present invention, it is required that the base 4 can move freely in the storage cavity, and the swing rod 9 can swing normally around the rotating pin 11.
[0179] Check whether the anti-skid sticker on the inner side of the clamping plate 13 is firm and whether the angle adjustment of the clamping plate 13 is smooth.
[0180] How to use:
[0181] Place the water cup on the base 4 of the storage cavity.
[0182] The gravity of the water cup will cause the base 4 to move downward, compressing the support spring 15 .
[0183] The descent of the base 4 is linked with the first folding rod 5 and the second folding rod 6 , so that the pressing roller 8 presses against the inner side of the swing rod 9 .
[0184] The swing rod 9 swings inwards under the action of the pressing roller 8, and the clamping plate 13 moves inwards accordingly to clamp the water cup and fix it.
[0185] Removal of water cup
[0186] When the water cup is taken out, the base 4 moves upward under the action of the supporting spring 15 .
[0187] The linkage between the first folding rod 5 and the second folding rod 6 enables the pressing roller 8 to move away from the inner side of the swing rod 9 .
[0188] The swing rod 9 swings outward under the action of the counterweight 10, and the clamping plate 13 releases the water cup to complete the release action.
[0189] Cleaning and Maintenance
[0190] If the cup holder assembly needs to be cleaned or serviced, the entire unit can be removed from the vehicle.
[0191] When cleaning, be careful not to damage the anti-skid stickers of the clamping plate 13 and the rotating parts.
[0192] During maintenance, check whether the elasticity of the support spring 15 is normal, whether the rotating pin 11 is flexible, and whether the clamping plate 13 is damaged.
[0193] Install the linked vehicle cup holder assembly to a designated location of the vehicle (such as a center console, a door, or a seat armrest) through a detachable connection method (such as a buckle, a screw, or a magnetic connection).
[0194] Make sure it is installed securely to prevent it from coming loose while the vehicle is moving.
[0195] specific:
[0196] The present invention discloses a linkage type vehicle-mounted cup holder assembly which mainly comprises a cup holder base block 1 and a storage cavity. The storage cavity is integrally formed and arranged inside the cup holder base block 1, and the upper part of the storage cavity is open.
[0197] The storage cavity disclosed in the present invention comprises a central cavity 2 ; a lateral cavity 3 is provided on the side of the central cavity 2 .
[0198] The lateral cavity 3 is arranged inside the cup holder base block 1, and the lateral cavity 3 is symmetrically arranged on both sides of the central cavity 2, and the lateral cavity 3 is connected to the central cavity 2. The storage cavity is movably provided with a placement base 4, and the bottom of the base 4 is symmetrically provided with a second rotating seat, and the bottom of the second rotating seat is connected to a first folding rod 5. The first rotating seat is symmetrically arranged at the bottom end of the storage cavity, and the first rotating seat is aligned with the second rotating seat. The upper end of the first rotating seat is connected to a second folding rod 6, and the other end of the second folding rod 6 It is movably connected to the other end of the first folding rod 5, and a pressing roller 8 is provided at the connection between the other end of the second folding rod 6 and the other end of the first folding rod 5. A swing rod 9 is provided inside the lateral cavity 3, and the roller is fitted with the inner side of the swing rod 9, and the upper end of the swing rod 9 extends out of the lateral cavity 3. A rotating pin 11 is connected to the middle part of the swing rod 9, and the rotating pin 11 is fixed inside the lateral cavity 3. The swing rod 9 swings inside the lateral cavity 3 through the rotating pin 11, and a clamping plate 13 is provided at the upper end of the swing rod 9.
[0199] Preferably, a support spring 15 is provided at the bottom of the base 4, and the support spring 15 is fixed to the inner bottom end of the storage cavity.
[0200] Preferably, a counterweight 10 is provided at the other end of the swing rod 9 , and the counterweight 10 is located inside the lateral cavity 3 .
[0201] Preferably, the clamping plate 13 and the swing rod 9 are connected via a connecting member 12 .
[0202] Preferably, an anti-slip sticker is adhered to the inner side of the clamping plate 13 .
[0203] The beneficial effects of the present invention are:
[0204] By setting lateral cavities 3 on both sides of the central cavity 2, a swinging rod 9 is set inside the lateral cavity 3, the swinging rod 9 swings through the rotating shaft, and a clamping plate 13 is set on the upper end of the swinging rod 9. A base 4 is set at the bottom of the storage cavity, and a control mechanism is set at the bottom of the base 4. The first folding rod 5 and the second folding rod 6 are bent according to the height of the base 4. A pressing roller 8 is set at the connection between the first folding rod 5 and the second folding rod 6. When the water cup is placed on the surface of the base 4, the base 4 is lowered due to gravity, so that the control mechanisms on both sides The water cup holder 10 can be clamped on both ends of the water cup by extending the pressure roller 8 to the outside so that the pressure roller 8 presses against the inner side of the swing rod 9 and swings the swing rod 9 to the inside, so that the clamping plate 13 can be clamped on the two ends of the water cup to fix the water cup. The water cup can be clamped according to water cups of different sizes and can adapt to water cups of different sizes and shapes, thereby increasing the flexibility and convenience of use. During the driving process of the vehicle, especially when braking, turning or driving on uneven roads, the fixing mechanism in the water cup holder can effectively prevent the water cup from shaking, thereby avoiding safety hazards such as accidental splashing or scalding caused by the tipping of the water cup.
[0205] Example:
[0206] See also Figure 1-3 The present invention provides an embodiment: a vehicle-mounted cup holder fixing mechanism, comprising a cup holder base block 1 and a storage cavity, wherein the storage cavity is integrally formed and arranged inside the cup holder base block 1, and the top of the storage cavity is open.
[0207] The lateral cavity 3 is arranged inside the cup holder base block 1, and the lateral cavity 3 is symmetrically arranged on both sides of the central cavity 2, and the lateral cavity 3 is connected to the central cavity 2. A base 4 is movably arranged inside the storage cavity, and a second rotating seat 14 is symmetrically arranged on both sides of the bottom of the base 4. The bottom of the second rotating seat 14 is connected to a first folding rod 5. The first rotating seat 7 is symmetrically arranged at the bottom end of the storage cavity, and the first rotating seat 7 is aligned with the second rotating seat 14. The upper end of the first rotating seat 7 is connected to a second folding rod 6, and the second folding rod The other end of 6 is movably connected with the other end of the first folding rod 5, and a pressing roller 8 is provided at the connection between the other end of the second folding rod 6 and the other end of the first folding rod 5. A swing rod 9 is provided inside the lateral cavity 3, and the pressing roller 8 is fitted with the inner side of the swing rod 9, and the upper end of the swing rod 9 extends out of the lateral cavity 3. A rotating pin 11 is connected to the middle part of the swing rod 9, and the rotating shaft is fixed inside the lateral cavity 3, and the swing rod 9 swings inside the lateral cavity 3 through the rotating shaft, and a clamping plate 13 is provided at the upper end of the swing rod 9.
[0208] When a water cup is placed on the surface of the base 4, the base 4 descends due to gravity, causing the folding rods on both sides to extend outward, so that the pressing roller 8 presses against the inner side of the swing rod 9 and swings the swing rod 9 inward, so that the clamping plate 13 can be clamped at both ends of the water cup to fix the water cup. The clamping can be performed according to water cups of different sizes and can adapt to water cups of different sizes and shapes.
[0209] See also Figure 3 A support spring 15 is provided at the bottom of the base 4, and the support spring 15 is fixed to the inner bottom end of the storage cavity, so that the base 4 is lifted when the water cup is picked up.
[0210] See also Figure 1 A counterweight 10 is provided at the other end of the swing rod 9, and the counterweight 10 is located inside the lateral cavity 3. After picking up the water cup, the swing rod 9 can move inward under the action of the counterweight 10 to keep the clamping plate 13 away from the surface of the water cup.
[0211] See also Figure 1 The clamping plate 13 is connected to the swing rod 9 by a connecting piece 12, so that the clamping plate 13 can swing, which makes it easy to adjust the angle of the clamping plate 13 to adapt to water cups of different sizes, so that the clamping plate 13 can fit the surface of the water cup at different heights.
[0212] See also Figure 1 The inner side of the clamping plate 13 is adhered with an anti-slip sticker 16 to increase the friction force on the inner side of the clamping plate 13.
[0213] Working principle: put the water cup into the storage cavity, and use the water cup's own gravity to lower the base 4. The lowering of the base 4 causes the folding rods on both sides of the bottom to extend outward, so that the pressure roller 8 presses against the inner side of the swing rod 9 to swing the swing rod 9 inward, and the swing rod 9 moves the clamping plate 13 inward under the action of the rotating shaft, so that the clamping plate 13 can clamp and fix the water cup. When the water cup is picked up, the base 4 is lifted up under the action of the supporting spring 15, and the folding rods on both sides are retracted inward, so that the pressure roller 8 is away from the inner side of the swing rod 9, and the swing rod 9 moves inward under the action of the counterweight 10, so that the clamping plate 13 is away from the surface of the water cup.
[0214] Obviously, the specific implementation of the present invention is not limited to the above-mentioned methods. As long as various non-substantial improvements are made using the method concept and technical solution of the present invention, they are all within the protection scope of the present invention.
Claims
1. A linkage type vehicle-mounted cup holder assembly, characterized in that: It comprises a cup holder base block, the cup holder base block is provided with a storage cavity; the storage cavity is provided with a cup holder structure; The cup holder structure comprises a base; the base is connected with a clamping mechanism for limiting the position of the cup body; Each of the clamping mechanisms comprises a swing rod, and the base is connected to the swing rod through a control mechanism; the base can drive the swing rod to swing through the control mechanism; and the base can reciprocate in the storage cavity.
2. The linkage type vehicle-mounted cup holder assembly according to claim 1, characterized in that: The base is connected to the bottom of the storage cavity through an elastic unit; the elastic unit includes a supporting spring, and the base is connected to the bottom of the storage cavity through the supporting spring.
3. The linkage type vehicle-mounted cup holder assembly according to claim 1, characterized in that: The swing rod is provided with a clamping plate; the clamping plate is an arc-shaped plate; the clamping plate is connected to the swing rod through a connecting piece.
4. The linkage type vehicle-mounted cup holder assembly according to claim 1, characterized in that: The control mechanism includes a second folding rod and a first folding rod, one end of the second folding rod is rotatably connected to the bottom inner wall of the storage cavity, and the other end is rotatably connected to the first folding rod; one end of the first folding rod is connected to the second folding rod, and the other end is rotatably connected to the base.
5. The linkage type vehicle-mounted cup holder assembly according to claim 1, characterized in that: The swing lever is connected to the inner wall of the storage cavity via a rotating part, the rotating part includes a rotating pin, the swing lever is rotatably connected to the inner wall of the storage cavity via the rotating pin, and the central axis of the rotating pin is parallel to the base.
6. The linkage type vehicle-mounted cup holder assembly according to claim 3, characterized in that: A counterweight block is arranged on the swing rod.
7. The linkage type vehicle-mounted cup holder assembly according to claim 4, characterized in that: The control mechanism further comprises a pressing component, and the pressing component comprises a pressing roller arranged on the second folding rod.
8. The linkage type vehicle-mounted cup holder assembly according to claim 1, characterized in that: The storage cavity comprises a central cavity; a lateral cavity is arranged on the side of the central cavity; and the vertical cross section of the storage cavity is in a convex shape.
9. The linkage type vehicle-mounted cup holder assembly according to claim 8, characterized in that: Each base is connected to at least two clamping mechanisms; the clamping mechanisms are symmetrically distributed at intervals on the periphery of the base.
10. A vehicle, characterized in that: It comprises a vehicle body, on which is provided a linkage-type vehicle-mounted cup holder assembly as claimed in any one of claims 1 to 9; the linkage-type vehicle-mounted cup holder assembly is connected to the vehicle body in a detachable connection manner.
Citation Information
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