Cup holder mechanism and automobile

The integrated cup holder mechanism solves the problem of large space occupation when ordinary cups and wine glasses are placed at the same time in a car, and realizes the synchronous sliding and stability of the modules, improving space utilization efficiency and user experience.

CN223546214UActive Publication Date: 2025-11-14宁波东昊汽车部件有限公司
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Patent Information

Application Number
CN202423207391.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-25
Publication Date
2025-11-14
Estimated Expiration
2034-12-25

AI Technical Summary

Technical Problem

Existing car cup holder designs require separate placement of regular cups and wine glasses, taking up significant interior space and failing to achieve effective integration.

Method used

Design an integrated cup holder mechanism that slides the first cup holder module and the second cup holder module together. The linkage structure enables the modules to slide synchronously and maintain their position, while the combination of magnetic adsorption and damping structure ensures stability and smoothness.

Benefits of technology

It achieves efficient space utilization within the car, simplifies installation planning, and enhances user experience and aesthetics.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides a cup saucer mechanism which comprises a shell, a first cup saucer module and a second cup saucer module, the shell is provided with a containing cavity, and the shell is provided with a shell opening; the first cup holder module and the second cup holder module are configured to allow the first cup holder module and the second cup holder module to slide towards and away from the containing cavity through the shell opening, a first cup holder unit is arranged on the first cup holder module, and the first cup holder module has a first cup holder storage working position and a first cup holder using working position in the sliding process; the second cup holder module is located above the first cup holder module, a second cup holder unit is arranged on the second cup holder module, and the second cup holder module has a second cup holder storage working position and a second cup holder using working position in the sliding process. According to the cup stand mechanism, the first cup stand module and the second cup stand module are integrated, space can be saved, and the cup stand mechanism can be conveniently installed and planned in an automobile. The utility model provides an automobile.
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Description

Technical Field

[0001] This utility model relates to the field of automotive interiors, and in particular to a cup holder mechanism and an automobile. Background Technology

[0002] With the continuous development of the automotive industry, performance is no longer the sole determining factor. Aesthetics, functionality, comfort, and other aspects are also key considerations for customers when choosing a car model. As a result, there are more and more functional components, which occupy more and more space. There are two types of existing cup holders: one for holding regular cups and the other for holding wine glasses. If it is necessary to hold both regular cups and wine glasses at the same time, two cup holder mechanisms need to be installed in the car, which will greatly increase the space occupied in the car. Utility Model Content

[0003] To overcome the shortcomings of existing technologies, this utility model provides a cup holder mechanism that integrates a first cup holder module and a second cup holder module into one unit, saving space and facilitating its installation and layout within a vehicle. This utility model provides a vehicle-specific solution.

[0004] To achieve the above objectives, the present invention employs the following technical solution:

[0005] A cup holder mechanism, comprising:

[0006] The housing has an internal cavity, and the front end of the housing has an opening that communicates with the cavity.

[0007] The first cup holder module is configured to allow sliding towards and away from the receiving cavity through the opening of the housing. The first cup holder module is provided with a first cup holder unit for placing a cup. During the sliding process, the first cup holder module has a first cup holder storage position in which it is housed in the receiving cavity and a first cup holder use position in which the first cup holder unit extends out of the opening of the housing.

[0008] And a second cup holder module, which is configured to allow sliding toward and away from the receiving cavity through the housing opening, the second cup holder module is located above the first cup holder module, the second cup holder module is provided with a second cup holder unit for placing the cup, and the second cup holder module has a second cup holder storage working position in which it is housed in the receiving cavity and a second cup holder use working position in which the second cup holder unit extends out of the housing opening during sliding.

[0009] Using the above technical solution, the user can slide the first cup holder module to the first cup holder working position, thereby causing the first cup holder unit to extend out of the housing opening, so that the user can place the cup in the first cup holder unit; the user can also slide the second cup holder module to the second cup holder working position, thereby causing the second cup holder unit to extend out of the housing opening, so that the user can place the cup holder in the second cup holder unit; the above technical solution integrates the first cup holder module and the second cup holder module into one piece, thereby saving space and facilitating its installation and planning in the car;

[0010] Specifically, the first cup holder unit is mainly used to hold cups such as insulated cups and water bottles; the second cup holder unit is mainly used to hold cups such as wine glasses and champagne glasses; the above technical solution makes the cup holder mechanism more reasonable.

[0011] Furthermore, the upper surface of the second cup holder module is provided with a second cup holder module operation part for a person to slide the second cup holder module. During the process of sliding the second cup holder module from the second cup holder storage working position to the second cup holder use working position, there is a second cup holder pre-working position in which the second cup holder module operation part extends out of the housing opening.

[0012] The first cup holder module is provided with a first linkage structure, and correspondingly, the second cup holder module is provided with a second linkage structure that cooperates with the first linkage structure. When the first cup holder module slides to the first cup holder working position, the first linkage structure and the second linkage structure cooperate to drive the second cup holder module to move to the second cup holder pre-working position. When the first cup holder module slides to the first cup holder storage position, the first linkage structure and the second linkage structure cooperate to drive the second cup holder module to slide to the second cup holder storage position.

[0013] Using the above technical solution, when the user opens the first cup holder module, that is, when the first cup holder module slides to the first cup holder working position, the cooperation of the first linkage structure and the second linkage structure can simultaneously drive the second cup holder module to slide to the second cup holder pre-working position. At this time, the second cup holder module operation part on the second cup holder module is exposed, so that the user can operate the second cup holder module. When the user closes the first cup holder module, that is, when the first cup holder module slides to the first cup holder storage working position, the cooperation of the first linkage structure and the second linkage structure can simultaneously drive the second cup holder module to slide to the second cup holder storage working position. The above technical solution is reasonably designed.

[0014] Furthermore, one of the first linkage structure and the second linkage structure is configured as a linkage groove, and the other of the first linkage structure and the second linkage structure is configured as a linkage slider. The linkage groove extends along the sliding direction of the second cup holder module, and the linkage slider is slidably disposed in the linkage groove relative to the linkage groove.

[0015] The distance the first cup holder module needs to slide from the first cup holder storage position to the first cup holder use position is denoted as D1. The distance the second cup holder module needs to slide from the second cup holder storage position to the second cup holder ready position is denoted as D2. The distance the second cup holder module needs to slide from the second cup holder ready position to the second cup holder use position is denoted as D3. The length of the linkage groove is denoted as D4. The length of the linkage slider in the extension direction of the linkage groove is denoted as D5.

[0016] The value of D4 minus D5 is equal to the value of D1 minus D2, and D3 is less than or equal to the value of D4 minus D5.

[0017] Using the above technical solution, since the value of D4 minus D5 is equal to the value of D1 minus D2, during the process of the first cup holder module sliding to the first cup holder working position, the linkage slider slides in the linkage groove, and the first cup holder module slides relative to the second cup holder module until the linkage slider slides to the end of the linkage groove and abuts against it. At this time, the cooperation between the linkage slider and the linkage groove makes the second cup holder module slide synchronously with the first cup holder module, thereby realizing that when the first cup holder module slides to the first cup holder working position, the second cup holder module slides to the second cup holder preparatory working position.

[0018] Since D3 is less than or equal to the value of D4 minus D5, when the first cup holder module is in the first cup holder working position and the second cup holder module is in the second cup holder pre-working position, the sliding range of the linkage slider in the linkage groove can satisfy the second cup holder module to slide from the second cup holder pre-working position to the second cup holder working position.

[0019] During the process of the first cup holder module sliding to the first cup holder storage position, the linkage slider will abut against the other end of the linkage groove. At this time, the cooperation between the linkage slider and the linkage groove makes the second cup holder module slide synchronously with the first cup holder module, so that when the first cup holder module slides to the first cup holder storage position, the second cup holder module slides to the second cup holder storage position.

[0020] The above technical solution is reasonably designed and has a simple structure; specifically, the first linkage structure is configured as the linkage slider, and the second linkage structure is configured as the linkage groove.

[0021] Furthermore, one of the second cup holder module and the housing is provided with a position maintaining structure, and the other of the second cup holder module and the housing is provided with a position maintaining engagement structure. The position maintaining engagement structure includes a first position maintaining engagement structure and a second position maintaining engagement structure arranged sequentially along the sliding direction of the second cup holder module. When the second cup holder module is in the second cup holder pre-working position, the position maintaining structure engages with the first position maintaining engagement structure to maintain the second cup holder module in its current position. When the second cup holder module is in the second cup holder working position, the position maintaining structure engages with the second position maintaining engagement structure to maintain the second cup holder module in its current position.

[0022] Using the above technical solution, when the second cup holder module slides to the second cup holder pre-working position, the position maintaining structure cooperates with the first position maintaining cooperation structure, which enables the second cup holder module to be maintained in the second cup holder pre-working position, preventing it from sliding accidentally. The second cup holder module can be slid when the user applies external force; the same applies when the second cup holder module slides to the second cup holder working position. Specifically, the housing is provided with the position maintaining structure, and the second cup holder module is also provided with the maintaining cooperation structure.

[0023] Furthermore, the first position maintaining engagement structure and the second position maintaining engagement structure are respectively configured as a first slot and a second slot, and the position maintaining structure is configured as an elastic snap-fit ​​member. The elastic snap-fit ​​member has a snap-fit ​​portion capable of snapping into the first slot and the second slot, and the snap-fit ​​portion has a tendency to move towards snapping into the first slot and the second slot. The first slot and / or the snap-fit ​​portion are provided with a first guide surface for guiding the snap-fit ​​portion to disengage from the first slot, and the second slot and / or the snap-fit ​​portion are provided with a second guide surface for guiding the snap-fit ​​portion to disengage from the second slot. The first guide surface and the second guide surface are configured as inclined surfaces or arc-shaped surfaces.

[0024] Using the above technical solution, the position of the second cup holder module is maintained by the snap-fit ​​part of the elastic snap-fit ​​component snapping into the first or second slot; the first guide surface is provided so that when the snap-fit ​​part is snapped into the first slot, the user applies a force in the direction of movement to the second cup holder module, the snap-fit ​​part can disengage from the first slot, thereby releasing the position maintenance of the second cup holder module, and the second guide surface is similar; specifically, the elastic snap-fit ​​component is a metal elastic component.

[0025] Furthermore, the position maintaining engagement structure includes a position maintaining engagement portion extending along the sliding direction of the second cup holder module, wherein the position maintaining engagement portion is recessed on the side facing the elastic snap-fit ​​member and on the side away from the elastic snap-fit ​​member to form the first slot and the second slot.

[0026] By adopting the above technical solution, the position-maintaining fit structure is reasonably set.

[0027] Furthermore, the side of the first card slot away from the second card slot is open.

[0028] Using the above technical solution, when the second cup holder module is in the second cup holder pre-working position, the first slot facing the second slot and engaging with the snap-fit ​​part can restrict the second cup holder module from sliding towards the second cup holder working position side, and the linkage slider engaging with the end of the linkage groove can restrict the second cup holder module from sliding towards the second cup holder storage working position side.

[0029] The above technical solution makes the first slot more reasonable. Since the snap-fit ​​part of the elastic snap-fit ​​member has a smaller degree of deformation when it is snapped into the first slot compared to when it is in contact with the position maintaining mating part, the elastic snap-fit ​​member has a smaller impact on the sliding of the second cup holder module from the second cup holder storage position to the second cup holder pre-working position.

[0030] Furthermore, the housing includes a partition that divides the receiving cavity into a lower receiving cavity and an upper receiving cavity, wherein the lower receiving cavity matches the first cup holder module and the upper receiving cavity matches the second cup holder module; the partition is provided with a clearance hole, and the clearance hole extends along the sliding direction of the second cup holder module, wherein the first linkage structure and the second linkage structure cooperate through the clearance hole.

[0031] By adopting the above technical solution, the structure of the housing is made more reasonable; specifically, the housing includes a first housing, a second housing located above the first housing, and a housing cover located above the second housing. The top and side surfaces of the first housing and the second housing are in an open state. The open sides of the first housing and the second housing face the same side and form the housing opening. The bottom of the second housing forms the partition.

[0032] Furthermore, the second cup holder unit includes a second cup holder structure disposed on the second cup holder module, wherein the upper surface of the second cup holder structure is recessed inward to form a cup body placement groove for placing a cup.

[0033] Using the above technical solution, the cup holder groove makes it easy for users to place wine glasses and champagne glasses.

[0034] Furthermore, the second cup holder unit also includes a magnet disposed below the cup placement groove.

[0035] By adopting the above technical solution, when the bottom of the cup body is made of a material that can be attracted by a magnet or when a material that can be attracted by a magnet is installed at the bottom of the cup body, the magnet can magnetically attract the cup body placed in the cup body placement groove, ensuring the placement stability of the cup body and effectively preventing the cup body from tipping over.

[0036] Furthermore, the second cup holder module includes a second cup holder module housing having a second cup holder mounting cavity. The upper surface of the second cup holder module housing has a second cup holder exposure hole communicating with the second cup holder mounting cavity. The second cup holder structure is disposed in the second cup holder mounting cavity, and the side of the second cup holder structure with the cup placement groove extends out of the second cup holder exposure hole. The outer wall of the portion of the second cup holder structure located in the second cup holder mounting cavity has a radial protrusion forming a second cup holder limiting protrusion, and the distance from the outer side of the second cup holder limiting protrusion to the axis of the second cup holder structure is greater than the radius of the second cup holder exposure hole.

[0037] By adopting the above technical solution, the second cup holder module becomes more reasonable, and the second cup holder structure can be installed in the housing of the second cup holder module.

[0038] Furthermore, the side of the second cup holder mounting cavity opposite to the second cup holder exposure hole is formed as a second cup holder support surface. The second cup holder support surface protrudes towards the side of the second cup holder exposure hole to form a second cup holder structure support protrusion for supporting the second cup holder structure. The protrusion of the second cup holder support surface towards the side of the second cup holder exposure hole forms a magnet mounting enclosure, and the magnet mounting enclosure forms a magnet mounting cavity that matches the magnet for mounting the magnet.

[0039] By adopting the above technical solution, the structure of the second cup holder module housing is made more reasonable, which facilitates the installation of the second cup holder structure and the magnet.

[0040] Furthermore, the second cup holder limiting protrusion forms a positioning limiting hole, and correspondingly, the second cup holder mounting cavity protrudes at the corresponding position to form a positioning limiting protrusion that matches the positioning limiting hole.

[0041] By adopting the above technical solution, the cooperation between the positioning limiting hole and the positioning limiting protrusion can realize the positioning of the second cup holder structure during installation, and prevent the second cup holder structure from rotating after installation, thus ensuring its stability after installation.

[0042] Furthermore, the second cup holder module is provided with a second cup holder damping structure, and the housing is provided with a second cup holder damping engagement structure. One of the second cup holder damping structure and the second cup holder damping engagement structure is configured as a second cup holder damping rack, and the other of the second cup holder damping structure and the second cup holder damping engagement structure is configured as a second cup holder damper. The second cup holder damping rack extends along the sliding direction of the second cup holder module, and the second cup holder damping gear of the second cup holder damper meshes with the second cup holder damping rack.

[0043] Using the above technical solution, the second cup holder damping rack cooperates with the second cup holder damper, making the sliding of the second cup holder module more stable; specifically, the second cup holder damping structure is configured as the second cup holder damper, the second cup holder damping cooperation structure is configured as the second cup holder damping rack, and the second cup holder damping rack is disposed on the side of the partition facing the upper receiving cavity.

[0044] Furthermore, the first cup holder module includes a first cup holder module housing, the first cup holder module has a first cup holder mounting space for installing the first cup holder unit, and the side of the first cup holder module housing is provided with a first cup holder telescopic opening that communicates with the first cup holder mounting space.

[0045] The first cup holder unit includes a first cup holder fixing structure and a first cup holder sliding structure. The first cup holder fixing structure is disposed in the first cup holder installation space, and the first cup holder sliding structure can move along the direction of entering and exiting the first cup holder telescopic opening to move closer to and away from the first cup holder fixing structure.

[0046] Using the above technical solution, the first cup holder sliding structure can extend out through the first cup holder telescopic opening to move away from the first cup holder fixing structure. At this time, the first cup holder sliding structure and the first cup holder fixing structure form a first cup holder receiving space for accommodating the cup body, so as to facilitate the insertion of the cup holder.

[0047] The first cup holder sliding structure retracts through the first cup holder telescopic opening to approach the first cup holder fixing structure, thereby reducing the lateral space required and thus reducing the overall space required by the cup holder mechanism.

[0048] Furthermore, the first cup holder unit includes a claw movably disposed on the first cup holder fixing structure and / or the first cup holder sliding structure, and the claw has a tendency to move toward the central axis side of the first cup holder receiving space; specifically, the claw has a tendency to move toward the central axis side of the first cup holder receiving space through a claw elastic element.

[0049] By adopting the above technical solution, the claw can act on the cup body placed in the first cup holder's accommodating space, so that the cup holder can be placed more stably.

[0050] Furthermore, the first cup holder unit includes a first cup holder driving structure, and during the process of the first cup holder module sliding to the first cup holder storage working position, the first cup holder driving structure drives the first cup holder sliding structure to approach the first cup holder fixing structure. During the process of the first cup holder module sliding to the first cup holder use working position, the first cup holder driving structure drives the first cup holder sliding structure to move away from the first cup holder fixing structure and form a first cup holder accommodating space for accommodating the cup.

[0051] By adopting the above technical solution, the first cup holder driving structure can automatically drive the first cup holder sliding structure to unfold or retract during the sliding process of the first cup holder module, which facilitates actual use by users and enhances the user experience.

[0052] Furthermore, the first cup holder driving structure includes a driving rod, which is rotatably disposed at the bottom of the first cup holder module housing. The inner bottom surface of the housing is provided with a driving trajectory groove. The driving trajectory groove is slidable along the first cup holder module to the first cup holder storage working position. The driving trajectory groove includes a first driving trajectory groove and a second driving trajectory groove in sequence. The first driving trajectory groove extends along the sliding direction of the first cup holder module, and the second driving trajectory groove gradually tilts away from the straight line where the first driving trajectory groove is located. The two ends of the driving rod are respectively formed as a first driving end and a second driving end. The first driving end is slidably disposed in the driving trajectory groove, and the second driving end is slidably connected to the first cup holder sliding structure. The sliding direction of the second driving end relative to the first cup holder sliding structure matches the sliding direction of the first cup holder module. When the first driving end slides away from the first driving trajectory groove along the second driving trajectory groove, the driving rod rotates so that the second driving end drives the first cup holder sliding structure away from the first cup holder fixing structure. The length of the first driving trajectory groove matches the sliding of the first cup holder module housing until the first cup holder telescopic opening is fully extended from the housing opening.

[0053] Using the above technical solution, when the first cup holder module slides towards the first cup holder working position, the first driving end of the driving rod will first slide along the first driving trajectory groove. At this time, the driving rod does not rotate, causing the first cup holder sliding structure to approach the first cup holder fixing structure, until the first cup holder telescopic opening fully extends out of the housing opening. At this time, the first driving end enters the second driving trajectory groove from the first driving trajectory groove. At this time, the driving rod rotates, causing the first cup holder sliding structure to move away from the first cup holder fixing structure. The above technical solution has a reasonable structure.

[0054] Furthermore, the first cup holder module includes a first cup holder support frame disposed in the housing of the first cup holder module, the first cup holder support frame being used to support the installation of the first cup holder sliding structure and the first cup holder fixing structure;

[0055] The drive rod is located on the inner bottom surface of the first cup holder module housing;

[0056] The first cup holder module housing has a first arc-shaped guide groove at the first driving end, and the first cup holder support frame has a second arc-shaped guide groove at the second driving end. The first driving end cooperates with the driving trajectory groove through the first arc-shaped guide groove, and the second driving end is connected to the first cup holder sliding structure through the second arc-shaped guide groove.

[0057] The above technical solution makes the first cup holder module more reasonable.

[0058] Furthermore, the first cup holder drive structure also includes a drive preload spring that acts on the drive rod to preload it.

[0059] Using the above technical solution, the driving preload spring can assist the rotation of the driving rod. Specifically, the driving preload spring is a torsion spring.

[0060] Furthermore, as the first cup holder module slides to the first cup holder storage position, the drive rod includes a first drive rod portion and a second drive rod portion. The second drive rod portion gradually tilts away from the straight line where the first drive rod portion is located, and the tilting direction of the second drive rod portion relative to the straight line where the first drive rod portion is located is opposite to the tilting direction of the second drive track groove relative to the straight line where the second drive track groove is located.

[0061] By adopting the above technical solution, the structure of the drive rod is made more reasonable, which facilitates its actual layout and driving.

[0062] Furthermore, there are two first cup holder units symmetrically arranged on the first cup holder module, namely the left first cup holder unit and the right first cup holder unit; correspondingly, the housing of the first cup holder module is symmetrically provided with two first cup holder installation spaces, and the two sides of the housing of the first cup holder module are provided with first cup holder telescopic openings.

[0063] By adopting the above technical solution, the design of the first cup holder module is more reasonable and convenient for users to use.

[0064] Furthermore, the first cup holder sliding structure in the left first cup holder unit is provided with a first synchronous rack extending along its sliding direction, and the first cup holder sliding structure in the right first cup holder unit is provided with a second synchronous rack extending along its sliding direction. The first synchronous rack and the second synchronous rack are arranged opposite to each other, with the tooth surface of the first synchronous rack facing the side of the second synchronous rack and the tooth surface of the second synchronous rack facing the side of the first synchronous rack. A synchronous gear is rotatably arranged between the first synchronous rack and the second synchronous rack, and the synchronous gear meshes with the tooth surfaces of the first synchronous rack and the second synchronous rack. The first cup holder driving structure acts on the first cup holder sliding structure in the left first cup holder unit or the right first cup holder unit.

[0065] Using the above technical solution, if the first cup holder driving structure drives the left first cup holder unit in an active state, the movement of the first synchronous rack will drive the synchronous gear to rotate, thereby driving the second synchronous rack to move. The movement direction of the second synchronous rack is opposite to the movement direction of the first synchronous rack. That is, the first cup holder sliding structure in the left first cup holder unit and the first cup holder sliding structure in the right first cup holder unit move synchronously to the folding side or synchronously to the unfolding side. The same applies if the first cup holder driving structure drives the right first cup holder unit in an active state.

[0066] Furthermore, the cup holder mechanism includes a door panel that matches the housing opening to close the housing opening; specifically, the door panel is connected to the first cup holder module.

[0067] By adopting the above technical solution, the cup holder mechanism becomes more reasonable and has a more aesthetically pleasing appearance.

[0068] Furthermore, the cup holder mechanism includes a locking structure for locking the door panel in a closed position.

[0069] By adopting the above technical solution, the cup holder mechanism becomes more reasonable, and the locking structure can prevent the door panel from being opened accidentally, that is, prevent the first cup holder module and the second cup holder module from being opened accidentally.

[0070] Furthermore, the locking structure includes a latch and an operating member. Correspondingly, the housing is provided with a locking block that cooperates with the latch at the housing opening. The latch is movably disposed on the door panel so that it can move closer to and away from the locking block when the door panel closes the housing opening. The operating member drives the latch to move.

[0071] The locking structure further includes a latch reset member that acts on the latch to enable it to move toward the reset side, and an operating member reset member that acts on the operating member to enable it to move toward the reset side.

[0072] The above technical solution makes the locking structure more reasonable. When the first cup holder module is in the first cup holder storage position, the door panel closes the housing opening, and the latch moves towards the locking block to achieve a locking engagement, preventing the door panel from separating from the housing. When the user needs to unlock, they only need to operate the operating component to move the latch away from the locking block to unlock. Specifically, the latch and the operating component are rotatably mounted on the door panel, and the side of the operating component facing the latch extends towards the latch to drive the latch to rotate. The above technical solution is reasonably designed, and the user only needs to press the operating component to rotate it, which is more in line with the user's usage habits.

[0073] Furthermore, the cup holder mechanism includes a drive module, which acts on the first cup holder module to move the first cup holder module toward the first cup holder working position side;

[0074] Specifically, the drive module includes a coiled spring shaft rotatably mounted on the first cup holder module, and a coiled spring wound around the coiled spring shaft, with the free end of the coiled spring connected to the housing.

[0075] By adopting the above technical solution, the cup holder mechanism becomes more reasonable. When the user operates the locking structure to unlock it, the driving module will drive the first cup holder module to open automatically, greatly enhancing the user experience and improving the product's premium feel. Specifically, when the first cup holder module is in the first cup holder storage position, the free end of the coil spring is away from the coil spring shaft. If the locking structure is unlocked, the coil spring will reset and rewind, causing the coil spring shaft to approach the free end of the coil spring, thereby driving the first cup holder module.

[0076] When the user applies force to the first cup holder module to slide it to the first cup holder storage position, the coil spring shaft moves away from the free end of the coil spring, and the coil spring unfolds in preparation for the next drive.

[0077] Furthermore, the first cup holder module is provided with a first cup holder damping structure, and the housing is provided with a first cup holder damping engagement structure. One of the first cup holder damping structure and the first cup holder damping engagement structure is configured as a first cup holder damping rack, and the other of the first cup holder damping structure and the first cup holder damping engagement structure is configured as a first cup holder damper. The first cup holder damping rack extends along the sliding direction of the first cup holder module, and the first cup holder damping gear of the first cup holder damper meshes with the first cup holder damping rack.

[0078] Using the above technical solution, the first cup holder damping rack cooperates with the first cup holder damper to make the sliding of the first cup holder module more stable; specifically, the first cup holder damping structure is configured as the first cup holder damping rack, the first cup holder damping cooperation structure is configured as the first cup holder damper, and the first cup holder damping rack is disposed on the outer bottom surface of the first cup holder module.

[0079] Furthermore, the first cup holder module includes a temperature control component for cooling / heating the liquid in the cup placed in the first cup holder unit, and the first cup holder module is provided with a control button connected to the temperature control component.

[0080] By adopting the above technical solution, the temperature control component can cool / heat the liquid in the cup in the first cup holder unit to meet the user's needs, and the control button can control the working status of the temperature control component; the above technical solution can greatly enhance the user experience.

[0081] Specifically, the control buttons include a cooling button and a heating button. When the heating button is pressed, the temperature control component is activated to heat; when the heating button is pressed again, the temperature control component stops working. Similarly, when the cooling button is pressed, the temperature control component is activated to cool; when the cooling button is pressed again, the temperature control component stops working.

[0082] Furthermore, the cup holder mechanism includes a cable chain, one end of which is connected to the first cup holder module and the other end of which is connected to the housing.

[0083] By adopting the above technical solution, the cable chain can protect the cable when the first cup holder module slides.

[0084] Furthermore, the first cup holder module is slidably disposed in the receiving cavity via a slide rail, and the second cup holder module is provided with a second cup holder slider. Correspondingly, the receiving cavity is provided with a second cup holder groove at a corresponding position that slides and engages with the second cup holder slider, and the second cup holder groove extends along the sliding direction of the second cup holder module.

[0085] By adopting the above technical solution, the first cup holder module and the second cup holder module are slidably installed and have a reasonable structure. Specifically, the slide rail is set between the outer bottom surface of the first cup holder module and the inner bottom surface of the lower receiving cavity; the inner side surface and inner bottom surface of the upper receiving cavity are provided with the second cup holder slide groove, and correspondingly, the side surface and bottom surface of the second cup holder module are provided with the second cup holder slider.

[0086] An automobile includes the aforementioned cup holder mechanism.

[0087] By adopting the above technical solution, the cup holder mechanism is more integrated, thereby saving space and facilitating its installation and planning in the car.

[0088] Compared with the prior art, the present invention has the following beneficial effects:

[0089] (1) The cup holder mechanism of this utility model integrates the first cup holder module and the second cup holder module into one piece, which can save space and facilitate its installation and planning in the car.

[0090] (2) The cup holder mechanism of this utility model has a novel and reliable structure and a reasonable design. Attached Figure Description

[0091] To more clearly illustrate the technical solutions of the embodiments of this application, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0092] Figure 1 This is a three-dimensional structural diagram of the cup holder mechanism of this utility model (the first cup holder module is in the first cup holder storage working position, and the second cup holder module is in the second cup holder storage working position).

[0093] Figure 2 This is a three-dimensional structural diagram of the cup holder mechanism of this utility model (the first cup holder module is in the first cup holder working position, and the second cup holder module is in the second cup holder pre-working position).

[0094] Figure 3 This is a three-dimensional structural diagram of the cup holder mechanism of this utility model (the first cup holder module is in the first cup holder working position, and the second cup holder module is in the second cup holder working position).

[0095] Figure 4 This is a schematic diagram showing the linkage and cooperation between the first cup holder module and the second cup holder module in this utility model;

[0096] Figure 5 This is a schematic diagram showing the cooperation between the second cup holder module and the second housing, i.e., the housing, in this utility model;

[0097] Figure 6 This is a schematic diagram of the bottom structure of the second cup holder module in this utility model;

[0098] Figure 7 This is an exploded view of the second cup holder module in this utility model;

[0099] Figure 8 This is an exploded view of the first cup holder module in this utility model;

[0100] Figure 9 This is a schematic diagram showing the cooperation between the drive rod and the first cup holder unit in this utility model;

[0101] Figure 10 This is a schematic diagram of the first cup holder unit in the stored state (the sliding structure of the first cup holder is close to the fixed structure of the first cup holder).

[0102] Figure 11 This is a schematic diagram of the first cup holder unit in the unfolded state (the sliding structure of the first cup holder is far away from the fixed structure of the first cup holder) in this utility model;

[0103] Figure 12 This is a schematic diagram of the installation structure of the locking structure and the claw in this utility model.

[0104] The component names corresponding to the various reference numerals in the figure are as follows: 1. Housing; 101. Receiving cavity; 1011. Lower receiving cavity; 1012. Upper receiving cavity; 102. Housing opening; 103. Separator; 1031. Clearance hole; 104. Second cup holder damping engagement structure; 105. Drive track groove; 1051. First drive track groove; 1052. Second drive track groove; 106. Locking block; 107. First cup holder damping engagement structure; 108. Second cup holder sliding groove; 109. First housing; 10A. Second housing; 10B. Housing cover; 2. First cup holder module; 201. First cup holder unit; 2011. First cup holder fixing structure; 2012. First cup holder sliding structure; 2013. First cup holder driving structure ; 2013a, Drive rod; 2013a1, First drive end; 2013a2, Second drive end; 2013a3, First drive rod part; 2013a4, Second drive rod part; 2013b, Drive preload spring; 2014, First cup holder accommodating space; 2015, Left first cup holder unit; 2015a, First synchronous rack; 2016, Right first cup holder unit; 2016a, Second synchronous rack; 2017, Synchronous gear; 202, First linkage structure; 203, First cup holder module housing; 2031, First cup holder mounting space; 2032, First cup holder telescopic opening; 2033, First arc-shaped guide slot; 204, First cup holder damping structure; 205, First cup holder support frame; 20 51. Second arc-shaped guide slot; 3. Second cup holder module; 301. Second cup holder unit; 3011. Second cup holder structure; 3011a. Cup body placement groove; 3011b. Second cup holder limiting protrusion; 3011c. Positioning limiting hole; 3012. Magnet; 302. Second cup holder module operating part; 303. Second linkage structure; 304. Second cup holder mounting cavity; 3041. Second cup holder support surface; 305. Second cup holder module housing; 3051. Second cup holder exposure hole; 306. Second cup holder structure support protrusion; 307. Magnet mounting enclosure; 308. Magnet mounting cavity; 309. Positioning limiting protrusion; 30A. Second cup holder damping structure; 30B. Second cup holder slider; 4. Linkage groove; 5. 6. Linkage slider; 6. Position maintaining structure; 601. Elastic snap-fit ​​component; 6011. Snap-fit ​​part; 7. Position maintaining fit structure; 701. First position maintaining fit structure; 702. Second position maintaining fit structure; 703. First slot; 704. Second slot; 705. Position maintaining fit part; 8. First guide surface; 9. Second guide surface; 10. Second cup holder damping rack; 11. Second cup holder damper; 1101. Second cup holder damping gear; 12. Door panel; 13. Locking structure; 1301. Lock; 1302. Operating component; 1303. Lock reset component; 1304. Operating component reset component; 14. Drive module; 1401. Coil spring shaft; 1402. Coil spring; 15. First cup holder damping rack;16. First cup damper; 1601. First cup damper gear; 17. Temperature control assembly; 18. Control button; 1801. Cooling button; 1802. Cooling button; 19. Slide rail; 20. Clamp; 21. Clamp elastic element; 22. Cable drag chain. Detailed Implementation

[0105] The present application will now be described in detail with reference to the accompanying drawings and specific embodiments.

[0106] The following specific examples illustrate the implementation of this application. Those skilled in the art can easily understand other advantages and effects of this application from the content disclosed in this specification. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of them. This application can also be implemented or applied through other different specific embodiments, and the details in this specification can also be modified or changed based on different viewpoints and applications without departing from the spirit of this application. It should be noted that, in the absence of conflict, the following embodiments and features in the embodiments can be combined with each other. Based on the embodiments in this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0107] It should be noted that various aspects of embodiments within the scope of the appended claims are described below. It will be apparent that the aspects described herein can be embodied in a wide variety of forms, and any particular structure and / or function described herein is merely illustrative. Based on this application, those skilled in the art will understand that one aspect described herein can be implemented independently of any other aspect, and two or more of these aspects can be combined in various ways. For example, any number and aspects set forth herein can be used to implement the device and / or practice the method. Additionally, this device and / or method can be implemented using structures and / or functionalities other than one or more of the aspects set forth herein.

[0108] It should also be noted that the illustrations provided in the following embodiments are only schematic representations of the basic concept of this application. The drawings only show the components related to this application and are not drawn according to the actual number, shape and size of the components in the actual implementation. In the actual implementation, the form, quantity and proportion of each component can be arbitrarily changed, and the layout of the components may also be more complex.

[0109] Additionally, specific details are provided in the following description to facilitate a thorough understanding of the examples. However, those skilled in the art will understand that practice can be carried out without these specific details.

[0110] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0111] The technical solutions provided by the various embodiments of this application are described below with reference to the accompanying drawings.

[0112] See Figures 1 to 12 This utility model provides a cup holder mechanism, comprising:

[0113] The housing 1 has an internal cavity 101 and a housing opening 102 at the front end that communicates with the cavity 101.

[0114] The first cup holder module 2 is configured to allow sliding towards and away from the receiving cavity 101 through the housing opening 102. The first cup holder module 2 is provided with a first cup holder unit 201 for placing a cup. During the sliding process, the first cup holder module 2 has a first cup holder storage working position in which it is housed in the receiving cavity 101, and a first cup holder use working position in which the first cup holder unit 201 extends out of the housing opening 102.

[0115] And a second cup holder module 3, which is configured to allow sliding toward and away from the receiving cavity 101 through the housing opening 102. The second cup holder module 3 is located above the first cup holder module 2. The second cup holder module 3 is provided with a second cup holder unit 301 for placing a cup. During the sliding process, the second cup holder module 3 has a second cup holder storage working position in which it is housed in the receiving cavity 101, and a second cup holder use working position in which the second cup holder unit 301 extends out of the housing opening 102.

[0116] Using the above technical solution, the user can slide the first cup holder module 2 to the first cup holder working position, thereby causing the first cup holder unit 201 to extend out of the housing opening 102, so that the user can place the cup in the first cup holder unit 201; the user can also slide the second cup holder module 3 to the second cup holder working position, thereby causing the second cup holder unit 301 to extend out of the housing opening 102, so that the user can place the cup holder in the second cup holder unit 301; the above technical solution integrates the first cup holder module 2 and the second cup holder module 3 into one piece, thereby saving space and facilitating its installation and planning in the car;

[0117] Specifically, the first cup holder unit 201 is mainly used to hold cups such as thermos cups and water bottles; the second cup holder unit 301 is mainly used to hold cups such as wine glasses and champagne glasses; the above technical solution makes the cup holder mechanism more reasonable.

[0118] See Figures 2 to 4 Furthermore, the upper surface of the second cup holder module 3 is provided with a second cup holder module operation part 302 for a person to slide the second cup holder module 3. During the process of sliding the second cup holder module 3 from the second cup holder storage working position to the second cup holder use working position, there is a second cup holder pre-working position where the second cup holder module operation part 302 extends out of the housing opening 102.

[0119] The first cup holder module 2 is provided with a first linkage structure 202, and correspondingly, the second cup holder module 3 is provided with a second linkage structure 303 that cooperates with the first linkage structure 202. When the first cup holder module 2 slides to the first cup holder working position, the first linkage structure 202 and the second linkage structure 303 cooperate to drive the second cup holder module 3 to the second cup holder pre-working position. When the first cup holder module 2 slides to the first cup holder storage position, the first linkage structure 202 and the second linkage structure 303 cooperate to drive the second cup holder module 3 to slide to the second cup holder storage position.

[0120] By adopting the above technical solution, when the user opens the first cup holder module 2, that is, when the first cup holder module 2 slides to the first cup holder working position, the cooperation of the first linkage structure 202 and the second linkage structure 303 can simultaneously drive the second cup holder module 3 to slide to the second cup holder pre-working position. At this time, the second cup holder module operation part 302 on the second cup holder module 3 is exposed, so that the user can operate the second cup holder module 3. When the user closes the first cup holder module 2, that is, when the first cup holder module 2 slides to the first cup holder storage working position, the cooperation of the first linkage structure 202 and the second linkage structure 303 can simultaneously drive the second cup holder module 3 to slide to the second cup holder storage working position. The above technical solution is reasonably designed.

[0121] Furthermore, one of the first linkage structure 202 and the second linkage structure 303 is configured as a linkage groove 4, and the other of the first linkage structure 202 and the second linkage structure 303 is configured as a linkage slider 5. The linkage groove 4 extends along the sliding direction of the second cup holder module 3, and the linkage slider 5 is slidably disposed in the linkage groove 4 relative to the linkage groove 4.

[0122] The distance that the first cup holder module 2 needs to slide from the first cup holder storage position to the first cup holder use position is denoted as D1. The distance that the second cup holder module 3 needs to slide from the second cup holder storage position to the second cup holder pre-work position is denoted as D2. The distance that the second cup holder module 3 needs to slide from the second cup holder pre-work position to the second cup holder use position is denoted as D3. The length of the linkage groove 4 is denoted as D4. The length of the linkage slider 5 in the extension direction of the linkage groove 4 is denoted as D5.

[0123] The value of D4 minus D5 is equal to the value of D1 minus D2, and D3 is less than or equal to the value of D4 minus D5.

[0124] Using the above technical solution, since the value of D4 minus D5 is equal to the value of D1 minus D2, during the process of the first cup holder module 2 sliding to the first cup holder working position, the linkage slider 5 slides in the linkage groove 4, and the first cup holder module 2 slides relative to the second cup holder module 3 until the linkage slider 5 slides to the end of the linkage groove 4 and abuts against it. At this time, the cooperation between the linkage slider 5 and the linkage groove 4 makes the second cup holder module 3 slide synchronously with the first cup holder module 2, thereby realizing that when the first cup holder module 2 slides to the first cup holder working position, the second cup holder module 3 slides to the second cup holder preparatory working position.

[0125] Since D3 is less than or equal to the value of D4 minus D5, when the first cup holder module 2 is in the first cup holder working position and the second cup holder module 3 is in the second cup holder pre-working position, the sliding range of the linkage slider 5 in the linkage groove 4 can satisfy the second cup holder module 3 sliding from the second cup holder pre-working position to the second cup holder working position.

[0126] During the process of the first cup holder module 2 sliding to the first cup holder storage position, the linkage slider 5 will abut against the other end of the linkage groove 4. At this time, the cooperation between the linkage slider 5 and the linkage groove 4 makes the second cup holder module 3 slide synchronously with the first cup holder module 2, so that when the first cup holder module 2 slides to the first cup holder storage position, the second cup holder module 3 slides to the second cup holder storage position.

[0127] The above technical solution is reasonably designed and has a simple structure; specifically, the first linkage structure 202 is configured as the linkage slider 5, and the second linkage structure 303 is configured as the linkage groove 4.

[0128] See Figure 5 Furthermore, one of the second cup holder module 3 and the housing 1 is provided with a position maintaining structure 6, and the other of the second cup holder module 3 and the housing 1 is provided with a position maintaining engagement structure 7. The position maintaining engagement structure 7 includes a first position maintaining engagement structure 701 and a second position maintaining engagement structure 702 arranged sequentially along the sliding direction of the second cup holder module 3. When the second cup holder module 3 is in the second cup holder pre-working position, the position maintaining structure 6 engages with the first position maintaining engagement structure 701 to maintain the second cup holder module 3 in its current position. When the second cup holder module 3 is in the second cup holder working position, the position maintaining structure 6 engages with the second position maintaining engagement structure 702 to maintain the second cup holder module 3 in its current position.

[0129] Using the above technical solution, when the second cup holder module 3 slides to the second cup holder pre-working position, the position maintaining structure 6 cooperates with the first position maintaining cooperation structure 701, which enables the second cup holder module 3 to be maintained in the second cup holder pre-working position, preventing it from sliding accidentally. The second cup holder module 3 can be slid when the user applies external force. The same applies when the second cup holder module 3 slides to the second cup holder working position. Specifically, the housing 1 is provided with the position maintaining structure 6, and the second cup holder module 3 is also provided with the maintaining cooperation structure.

[0130] Further, the first position maintaining engagement structure 701 and the second position maintaining engagement structure 702 are respectively configured as a first slot 703 and a second slot 704, and the position maintaining structure 6 is configured as an elastic snap-fit ​​member 601. The elastic snap-fit ​​member 601 has a snap-fit ​​portion 6011 capable of snapping into the first slot 703 and the second slot 704, and the snap-fit ​​portion 6011 has a tendency to move towards snapping into the first slot 703 and the second slot 704. The first slot 703 and / or the snap-fit ​​portion 6011 are provided with a first guide surface 8 for guiding the snap-fit ​​portion 6011 to disengage from the first slot 703, and the second slot 704 and / or the snap-fit ​​portion 6011 are provided with a second guide surface 9 for guiding the snap-fit ​​portion 6011 to disengage from the second slot 704. The first guide surface 8 and the second guide surface 9 are configured as inclined surfaces or arc-shaped surfaces.

[0131] Using the above technical solution, the position of the second cup holder module 3 is maintained by the snap-fit ​​part 6011 in the elastic snap-fit ​​member 601 snapping into the first slot 703 or the second slot 704; the first guide surface 8 is provided so that when the user applies a force in the moving direction to the second cup holder module 3 while the snap-fit ​​part 6011 is snapped into the first slot 703, the snap-fit ​​part 6011 can disengage from the first slot 703, thereby releasing the position maintenance of the second cup holder module 3, and the second guide surface 9 works in the same way; specifically, the elastic snap-fit ​​member 601 is a metal elastic member.

[0132] Furthermore, the position maintaining engagement structure 7 includes a position maintaining engagement portion 705 extending along the sliding direction of the second cup holder module 3. The position maintaining engagement portion 705 is recessed on the side facing the elastic snap fastener 601 and on the side away from the elastic snap fastener 601 to form the first slot 703 and the second slot 704.

[0133] By adopting the above technical solution, the position maintaining fit structure 7 is set in a reasonable manner.

[0134] Furthermore, the side of the first card slot 703 away from the second card slot 704 is open.

[0135] Using the above technical solution, when the second cup holder module 3 is in the second cup holder pre-working position, the first slot 703 facing the second slot 704 cooperates with the snap-fit ​​part 6011 to restrict the second cup holder module 3 from sliding to the second cup holder working position side, and the linkage slider 5 cooperates with the end of the linkage groove 4 to restrict the second cup holder module 3 from sliding to the second cup holder storage working position side.

[0136] The above technical solution makes the first card slot 703 more reasonable. Since the carding part 6011 of the elastic carding member 601 has a small degree of deformation when it is inserted into the first card slot 703 compared with when it is in contact with the position maintaining mating part 705, the elastic carding member 601 has a smaller impact on the sliding of the second cup holder module 3 from the second cup holder storage position to the second cup holder pre-working position.

[0137] Furthermore, the housing 1 includes a partition 103 that divides the receiving cavity 101 into a lower receiving cavity 1011 and an upper receiving cavity 1012, and the lower receiving cavity 1011 matches the first cup holder module 2, and the upper receiving cavity 1012 matches the second cup holder module 3; the partition 103 is provided with a clearance hole 1031, and the clearance hole 1031 extends along the sliding direction of the second cup holder module 3, and the first linkage structure 202 and the second linkage structure 303 cooperate through the clearance hole 1031.

[0138] By adopting the above technical solution, the structure of the housing 1 is made more reasonable. Specifically, the housing 1 includes a first housing 109, a second housing 10A located above the first housing 109, and a housing cover 10B located above the second housing 10A. The top and side surfaces of the first housing 109 and the second housing 10A are in an open state. The open sides of the first housing 109 and the second housing 10A face the same side and form the housing opening 102. The bottom of the second housing 10A forms the partition 103.

[0139] See Figure 7 Furthermore, the second cup holder unit 301 includes a second cup holder structure 3011 disposed on the second cup holder module 3, wherein the upper surface of the second cup holder structure 3011 is recessed inward to form a cup body placement groove 3011a for placing a cup.

[0140] Using the above technical solution, the cup holder groove makes it easy for users to place wine glasses and champagne glasses.

[0141] Furthermore, the second cup holder unit 301 also includes a magnet 3012 disposed below the cup body placement groove 3011a.

[0142] By adopting the above technical solution, when the bottom of the cup body is made of a material that can be attracted by the magnet 3012 or when a material that can be attracted by the magnet 3012 is installed at the bottom of the cup body, the magnet 3012 can magnetically attract the cup body placed in the cup body placement groove 3011a, ensuring the placement stability of the cup body and effectively preventing the cup body from tipping over.

[0143] Further, the second cup holder module 3 includes a second cup holder module housing 305 having a second cup holder mounting cavity 304. The upper surface of the second cup holder module housing 305 has a second cup holder exposure hole 3051 communicating with the second cup holder mounting cavity 304. The second cup holder structure 3011 is disposed in the second cup holder mounting cavity 304, and one side of the second cup holder structure 3011 having the cup body placement groove 3011a extends out of the second cup holder exposure hole 3051. The outer wall of the portion of the second cup holder structure 3011 located in the second cup holder mounting cavity 304 has a radially protruding second cup holder limiting protrusion 3011b, and the distance from the outer side of the second cup holder limiting protrusion 3011b to the axis of the second cup holder structure 3011 is greater than the radius of the second cup holder exposure hole 3051.

[0144] By adopting the above technical solution, the second cup holder module 3 becomes more reasonable, and the second cup holder structure 3011 can be confined and installed in the housing 305 of the second cup holder module.

[0145] Furthermore, the side of the second cup holder mounting cavity 304 opposite to the second cup holder exposure hole 3051 is formed as a second cup holder support surface 3041. The second cup holder support surface 3041 protrudes towards the second cup holder exposure hole 3051 to form a second cup holder structure support protrusion 306 for supporting the second cup holder structure 3011. The second cup holder support surface 3041 protrudes towards the second cup holder exposure hole 3051 to form a magnet mounting enclosure 307, and the magnet mounting enclosure 307 encloses to form a magnet mounting cavity 308 that matches the magnet 3012 for mounting the magnet 3012.

[0146] By adopting the above technical solution, the structure of the second cup holder module housing 305 is more reasonable, which facilitates the installation of the second cup holder structure 3011 and the magnet 3012.

[0147] Furthermore, the second cup holder limiting protrusion 3011b forms a positioning limiting hole 3011c, and correspondingly, the second cup holder mounting cavity 304 protrudes at the corresponding position to form a positioning limiting protrusion 309 that matches the positioning limiting hole 3011c.

[0148] By adopting the above technical solution, the cooperation between the positioning limiting hole 3011c and the positioning limiting protrusion 309 can realize the positioning of the second cup holder structure 3011 during installation, and after the second cup holder structure 3011 is installed, it prevents the second cup holder structure 3011 from rotating, thus ensuring its stability after installation.

[0149] See Figures 5 to 6Furthermore, the second cup holder module 3 is provided with a second cup holder damping structure 30A, and the housing 1 is provided with a second cup holder damping engagement structure 104. One of the second cup holder damping structure 30A and the second cup holder damping engagement structure 104 is configured as a second cup holder damping rack 10, and the other of the second cup holder damping structure 30A and the second cup holder damping engagement structure 104 is configured as a second cup holder damper 11. The second cup holder damping rack 10 extends along the sliding direction of the second cup holder module 3, and the second cup holder damping gear 1101 of the second cup holder damper 11 meshes with the second cup holder damping rack 10.

[0150] Using the above technical solution, the second cup holder damping rack 10 cooperates with the second cup holder damper 11, making the sliding of the second cup holder module 3 more stable; specifically, the second cup holder damping structure 30A is configured as the second cup holder damper 11, the second cup holder damping cooperation structure 104 is configured as the second cup holder damping rack 10, and the second cup holder damping rack 10 is disposed on the side of the partition 103 facing the upper receiving cavity 1012.

[0151] See Figures 8 to 11 Furthermore, the first cup holder module 2 includes a first cup holder module housing 203, the first cup holder module 2 has a first cup holder mounting space 2031 for mounting the first cup holder unit 201, and the side of the first cup holder module housing 203 is provided with a first cup holder telescopic opening 2032 that communicates with the first cup holder mounting space 2031.

[0152] The first cup holder unit 201 includes a first cup holder fixing structure 2011 and a first cup holder sliding structure 2012. The first cup holder fixing structure 2011 is disposed in the first cup holder installation space 2031. The first cup holder sliding structure 2012 can move along the direction of entering and exiting the first cup holder telescopic opening 2032 to move closer to and away from the first cup holder fixing structure 2011.

[0153] Using the above technical solution, the first cup holder sliding structure 2012 can extend out through the first cup holder telescopic opening 2032 to move away from the first cup holder fixing structure 2011. At this time, the first cup holder sliding structure 2012 and the first cup holder fixing structure 2011 form a first cup holder accommodating space 2014 for accommodating the cup body, so as to facilitate the insertion of the cup holder.

[0154] The first cup holder sliding structure 2012 retracts through the first cup holder telescopic opening 2032 to approach the first cup holder fixing structure 2011, thereby reducing the lateral space required and thus reducing the overall space required by the cup holder mechanism.

[0155] Furthermore, the first cup holder unit 201 includes a claw 20 movably disposed on the first cup holder fixing structure 2011 and / or the first cup holder sliding structure 2012, and the claw 20 has a tendency to move toward the central axis side of the first cup holder receiving space 2014; specifically, the claw 20 has a tendency to move toward the central axis side of the first cup holder receiving space 2014 through the claw elastic member 21.

[0156] By adopting the above technical solution, the claw 20 can act on the cup body placed in the first cup holder accommodating space 2014, so that the cup holder can be placed more stably.

[0157] See Figures 9 to 11 Furthermore, the first cup holder unit 201 includes a first cup holder driving structure 2013. During the process of the first cup holder module 2 sliding to the first cup holder storage working position, the first cup holder driving structure 2013 drives the first cup holder sliding structure 2012 to approach the first cup holder fixing structure 2011. During the process of the first cup holder module 2 sliding to the first cup holder use working position, the first cup holder driving structure 2013 drives the first cup holder sliding structure 2012 away from the first cup holder fixing structure 2011 and forms a first cup holder accommodating space 2014 for accommodating the cup.

[0158] By adopting the above technical solution, the first cup holder driving structure 2013 can automatically drive the first cup holder sliding structure 2012 to move to unfold or retract during the sliding process of the first cup holder module 2, which facilitates actual use by users and increases the user experience.

[0159] Further, the first cup holder driving structure 2013 includes a driving rod 2013a, which is rotatably disposed at the bottom of the first cup holder module housing 203. The inner bottom surface of the housing 1 is provided with a driving trajectory groove 105, which slides along the first cup holder module 2 to the first cup holder storage working position. The driving trajectory groove 105 sequentially includes a first driving trajectory groove 1051 and a second driving trajectory groove 1052. The first driving trajectory groove 1051 extends along the sliding direction of the first cup holder module 2, and the second driving trajectory groove 1052 gradually tilts away from the straight line where the first driving trajectory groove 1051 is located. The two ends of the driving rod 2013a are respectively formed as a first driving end 2013a1 and a second driving end 2013a2. The first driving end 2013a... 1. The first cup holder module 2 is slidably disposed in the drive track groove 105. The second drive end 2013a2 is slidably connected to the first cup holder sliding structure 2012. The sliding direction of the second drive end 2013a2 relative to the first cup holder sliding structure 2012 matches the sliding direction of the first cup holder module 2. When the first drive end 2013a1 slides along the second drive track groove 1052 away from the first drive track groove 1051, the drive rod 2013a rotates so that the second drive end 2013a2 drives the first cup holder sliding structure 2012 away from the first cup holder fixing structure 2011. The length of the first drive track groove 1051 matches the length of the first cup holder module housing 203 when it slides until the first cup holder telescopic opening 2032 is fully extended from the housing opening 102.

[0160] Using the above technical solution, when the first cup holder module 2 slides towards the first cup holder working position, the first driving end 2013a1 of the driving rod 2013a will first slide along the first driving track groove 1051. At this time, the driving rod 2013a does not rotate, causing the first cup holder sliding structure 2012 to approach the first cup holder fixing structure 2011, until the first cup holder telescopic opening 2032 fully extends out of the housing opening 102. At this time, the first driving end 2013a1 enters the second driving track groove 1052 from the first driving track groove 1051. At this time, the driving rod 2013a rotates, causing the first cup holder sliding structure 2012 to move away from the first cup holder fixing structure 2011. The above technical solution has a reasonable structure.

[0161] Furthermore, the first cup holder module 2 includes a first cup holder support frame 205 disposed in the first cup holder module housing 203, the first cup holder support frame 205 being used to support and install the first cup holder sliding structure 2012 and the first cup holder fixing structure 2011;

[0162] The drive rod 2013a is disposed on the inner bottom surface of the first cup holder module housing 203;

[0163] The first cup holder module housing 203 is provided with a first arc-shaped guide slot 2033 at the first driving end 2013a1, and the first cup holder support frame 205 is provided with a second arc-shaped guide slot 2051 at the second driving end 2013a2. The first driving end 2013a1 cooperates with the driving trajectory groove 105 through the first arc-shaped guide slot 2033, and the second driving end 2013a2 is connected to the first cup holder sliding structure 2012 through the second arc-shaped guide slot 2051.

[0164] The above technical solution makes the first cup holder module 2 more reasonable.

[0165] Furthermore, the first cup holder drive structure 2013 also includes a drive preload spring 2013b that acts on the drive rod 2013a to preload it.

[0166] Using the above technical solution, the driving preload spring 2013b can assist the rotation of the driving rod 2013a. Specifically, the driving preload spring 2013b is a torsion spring.

[0167] Furthermore, as the first cup holder module 2 slides to the first cup holder storage position, the drive rod 2013a includes a first drive rod portion 2013a3 and a second drive rod portion 2013a4. The second drive rod portion 2013a4 gradually tilts away from the straight line where the first drive rod portion 2013a3 is located, and the tilting direction of the second drive rod portion 2013a4 relative to the straight line where the first drive rod portion 2013a3 is located is opposite to the tilting direction of the second drive track groove 1052 relative to the straight line where the second drive track groove 1052 is located.

[0168] By adopting the above technical solution, the structure of the drive rod 2013a is made more reasonable, which facilitates its actual layout and driving.

[0169] See Figure 9 Furthermore, there are two first cup holder units 201 symmetrically arranged on the first cup holder module 2, namely the left first cup holder unit 2015 and the right first cup holder unit 2016; correspondingly, the first cup holder module housing 203 is symmetrically provided with two first cup holder installation spaces 2031, and the first cup holder module housing 203 is provided with first cup holder telescopic openings 2032 on both sides.

[0170] By adopting the above technical solution, the design of the first cup holder module 2 is more reasonable and convenient for users to use.

[0171] Furthermore, the first cup holder sliding structure 2012 in the left first cup holder unit 2015 is provided with a first synchronous rack 2015a extending along its sliding direction, and the first cup holder sliding structure 2012 in the right first cup holder unit 2016 is provided with a second synchronous rack 2016a extending along its sliding direction. The first synchronous rack 2015a and the second synchronous rack 2016a are arranged opposite to each other, and the tooth surface of the first synchronous rack 2015a faces the side of the second synchronous rack 2016a. The tooth surface of the second synchronous rack 2016a is disposed facing the first synchronous rack 2015a. A synchronous gear 2017 is rotatably disposed between the first synchronous rack 2015a and the second synchronous rack 2016a. The synchronous gear 2017 meshes with the tooth surfaces of the first synchronous rack 2015a and the second synchronous rack 2016a. The first cup holder driving structure 2013 acts on the first cup holder sliding structure 2012 in the left first cup holder unit 2015 or the right first cup holder unit 2016.

[0172] Using the above technical solution, if the first cup holder driving structure 2013 drives the left first cup holder unit 2015 to be active, the movement of the first synchronous rack 2015a will drive the synchronous gear 2017 to rotate, thereby driving the second synchronous rack 2016a to move. The movement direction of the second synchronous rack 2016a is opposite to the movement direction of the first synchronous rack 2015a. That is, the first cup holder sliding structure 2012 in the left first cup holder unit 2015 and the first cup holder sliding structure 2012 in the right first cup holder unit 2016 move synchronously to the folding side or synchronously to the unfolding side. The same applies if the first cup holder driving structure 2013 drives the right first cup holder unit 2016 to be active.

[0173] See Figures 1 to 3 ,as well as Figure 12 Furthermore, the cup holder mechanism includes a door panel 12 that matches the housing opening 102 to close the housing opening 102. Specifically, the door panel 12 is connected to the first cup holder module 2.

[0174] By adopting the above technical solution, the cup holder mechanism becomes more reasonable and has a more aesthetically pleasing appearance.

[0175] Furthermore, the cup holder mechanism includes a locking structure 13 for locking the door panel 12 in a closed position of the housing opening 102.

[0176] By adopting the above technical solution, the cup holder mechanism is made more reasonable, and the locking structure 13 can prevent the door panel 12 from being opened accidentally, that is, prevent the first cup holder module 2 and the second cup holder module 3 from being opened accidentally.

[0177] Furthermore, the locking structure 13 includes a latch 1301 and an operating member 1302. Correspondingly, the housing 1 is provided with a locking block 106 at the housing opening 102 that cooperates with the latch 1301. The latch 1301 is movably disposed on the door panel 12 so that it can move closer to and away from the locking block 106 when the door panel 12 closes the housing opening 102. The operating member 1302 drives the latch 1301 to move.

[0178] The locking structure 13 further includes a latch reset member 1303 that acts on the latch 1301 to make it movable toward the reset side, and an operation member reset member 1304 that acts on the operation member 1302 to make it movable toward the reset side.

[0179] By adopting the above technical solution, the locking structure 13 becomes more reasonable. When the first cup holder module 2 is in the first cup holder storage position, the door panel 12 closes the housing opening 102, and the latch 1301 moves towards the locking block 106 to achieve a locking engagement, preventing the door panel 12 from separating from the housing 1. When the user needs to unlock, they only need to operate the operating member 1302 to move the latch 1301 away from the locking block 106 to unlock. Specifically, the latch 1301 and the operating member 1302 are rotatably mounted on the door panel 12, and the side of the operating member 1302 facing the latch 1301 extends towards the latch 1301 to drive the latch 1301 to rotate. The above technical solution is reasonably designed, and the user only needs to press the operating member 1302 to rotate it, which is more in line with the user's usage habits.

[0180] See Figure 8 Furthermore, the cup holder mechanism includes a drive module 14, which acts on the first cup holder module 2 to move the first cup holder module 2 toward the first cup holder working position side.

[0181] Specifically, the drive module 14 includes a coil spring shaft 1401 rotatably mounted on the first cup holder module 2, and a coil spring 1402 wound around the coil spring shaft 1401, with the free end of the coil spring 1402 connected to the housing 1.

[0182] By adopting the above technical solution, the cup holder mechanism becomes more reasonable. When the user operates the locking structure 13 to unlock it, the driving module 14 will drive the first cup holder module 2 to open automatically, greatly enhancing the user experience and improving the product's premium feel. Specifically, when the first cup holder module 2 is in the first cup holder storage position, the free end of the coil spring 1402 is away from the coil spring shaft 1401. If the locking structure 13 is unlocked, the coil spring 1402 resets and coils back, causing the coil spring shaft 1401 to approach the free end of the coil spring 1402, thereby driving the first cup holder module 2.

[0183] When the user applies force to the first cup holder module 2 to slide it to the first cup holder storage position, the coil spring shaft 1401 moves away from the free end of the coil spring 1402, and the coil spring 1402 unfolds to prepare for the next drive.

[0184] See Figure 8 Furthermore, the first cup holder module 2 is provided with a first cup holder damping structure 204, and the housing 1 is provided with a first cup holder damping engagement structure 107. One of the first cup holder damping structure 204 and the first cup holder damping engagement structure 107 is configured as a first cup holder damping rack 15, and the other of the first cup holder damping structure 204 and the first cup holder damping engagement structure 107 is configured as a first cup holder damper 16. The first cup holder damping rack 15 extends along the sliding direction of the first cup holder module 2, and the first cup holder damping gear 1601 of the first cup holder damper 16 meshes with the first cup holder damping rack 15.

[0185] Using the above technical solution, the first cup holder damping rack 15 cooperates with the first cup holder damper 16, making the sliding of the first cup holder module 2 more stable; specifically, the first cup holder damping structure 204 is configured as the first cup holder damping rack 15, the first cup holder damping cooperation structure 107 is configured as the first cup holder damper 16, and the first cup holder damping rack 15 is disposed on the outer bottom surface of the first cup holder module 2.

[0186] See Figure 2 , Figure 8 Furthermore, the first cup holder module 2 includes a temperature control component 17 for cooling / heating the liquid in the cup placed in the first cup holder unit 201, and the first cup holder module 2 is provided with a control button 18 connected to the temperature control component 17.

[0187] By adopting the above technical solution, the temperature control component 17 can cool / heat the liquid in the cup in the first cup holder unit 201 to meet the user's needs, and the control button 18 can control the working status of the temperature control component 17; the above technical solution can greatly enhance the user experience.

[0188] Specifically, the control button 18 includes a cooling button 1802 and a heating button. When the heating button is pressed, the temperature control component 17 is activated to heat; when the heating button is pressed again, the temperature control component 17 stops working. Similarly, when the cooling button 1802 is pressed, the temperature control component 17 is activated to cool; when the cooling button 1802 is pressed again, the temperature control component 17 stops working.

[0189] See Figure 8 Furthermore, the cup holder mechanism includes a drag chain 22, one end of which is connected to the first cup holder module 2 and the other end is connected to the housing 1.

[0190] By adopting the above technical solution, the cable chain 22 can protect the cable when the first cup holder module 2 slides.

[0191] See Figure 8 , Figure 12 Furthermore, the first cup holder module 2 is slidably disposed in the receiving cavity 101 via the slide rail 19, and the second cup holder module 3 is provided with a second cup holder slider 30B. Correspondingly, the receiving cavity 101 is provided with a second cup holder groove 108 at a corresponding position that slides and engages with the second cup holder slider 30B, and the second cup holder groove 108 extends along the sliding direction of the second cup holder module 3.

[0192] By adopting the above technical solution, the first cup holder module 2 and the second cup holder module 3 are slidably installed and have a reasonable structure. Specifically, the slide rail 19 is disposed between the outer bottom surface of the first cup holder module 2 and the inner bottom surface of the lower receiving cavity 1011; the inner side surface and the inner bottom surface of the upper receiving cavity 1012 are provided with the second cup holder slide groove 108, and correspondingly, the side surface and the bottom surface of the second cup holder module 3 are provided with the second cup holder slider 30B.

[0193] See Figures 1 to 12 A type of automobile, including the aforementioned cup holder mechanism.

[0194] By adopting the above technical solution, the cup holder mechanism is more integrated, thereby saving space and facilitating its installation and planning in the car.

[0195] The same or similar parts between the various embodiments in this specification can be referred to mutually. Each embodiment focuses on describing the differences from other embodiments.

[0196] The above description is merely a specific embodiment of this application, but the scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.

Claims

1. A cup holder mechanism, characterized in that, include: The housing (1) has an internal cavity (101) and a housing opening (102) that communicates with the cavity (101) at the front end of the housing (1). The first cup holder module (2) is configured to allow sliding toward and away from the receiving cavity (101) through the housing opening (102). The first cup holder module (2) is provided with a first cup holder unit (201) for placing a cup. During the sliding process, the first cup holder module (2) has a first cup holder storage working position in which it is housed in the receiving cavity (101) and a first cup holder use working position in which the first cup holder unit (201) extends out of the housing opening (102). And a second cup holder module (3), which is configured to allow sliding toward and away from the receiving cavity (101) through the housing opening (102), the second cup holder module (3) is located above the first cup holder module (2), the second cup holder module (3) is provided with a second cup holder unit (301) for placing the cup, and the second cup holder module (3) has a second cup holder storage working position in which it is housed in the receiving cavity (101) and a second cup holder use working position in which the second cup holder unit (301) extends out of the housing opening (102) during sliding.

2. The cup holder mechanism according to claim 1, characterized in that: The upper surface of the second cup holder module (3) is provided with a second cup holder module operation part (302) for a person to slide the second cup holder module (3). During the process of sliding the second cup holder module (3) from the second cup holder storage working position to the second cup holder use working position, there is a second cup holder preparation working position in which the second cup holder module operation part (302) extends out of the housing opening (102). The first cup holder module (2) is provided with a first linkage structure (202), and the second cup holder module (3) is provided with a second linkage structure (303) that cooperates with the first linkage structure (202). When the first cup holder module (2) slides to the first cup holder working position, the first linkage structure (202) and the second linkage structure (303) cooperate to drive the second cup holder module (3) to move to the second cup holder preparatory working position. When the first cup holder module (2) slides to the first cup holder storage working position, the first linkage structure (202) and the second linkage structure (303) cooperate to drive the second cup holder module (3) to slide to the second cup holder storage working position.

3. The cup holder mechanism according to claim 2, characterized in that: One of the first linkage structure (202) and the second linkage structure (303) is configured as a linkage groove (4), and the other of the first linkage structure (202) and the second linkage structure (303) is configured as a linkage slider (5). The linkage groove (4) extends along the sliding direction of the second cup holder module (3), and the linkage slider (5) is slidably disposed in the linkage groove (4) relative to the linkage groove (4). The distance that the first cup holder module (2) needs to slide from the first cup holder storage working position to the first cup holder use working position is denoted as D1. The distance that the second cup holder module (3) needs to slide from the second cup holder storage working position to the second cup holder pre-working position is denoted as D2. The distance that the second cup holder module (3) needs to slide from the second cup holder pre-working position to the second cup holder use working position is denoted as D3. The length of the linkage groove (4) is denoted as D4. The length of the linkage slider (5) in the extension direction of the linkage groove (4) is denoted as D5. The value of D4 minus D5 is equal to the value of D1 minus D2, and D3 is less than or equal to the value of D4 minus D5.

4. The cup holder mechanism according to claim 3, characterized in that: One of the second cup holder module (3) and the housing (1) is provided with a position maintaining structure (6), and the other of the second cup holder module (3) and the housing (1) is provided with a position maintaining engagement structure (7). The position maintaining engagement structure (7) includes a first position maintaining engagement structure (701) and a second position maintaining engagement structure (702) arranged sequentially along the sliding direction of the second cup holder module (3). When the second cup holder module (3) is in the second cup holder pre-working position, the position maintaining structure (6) engages with the first position maintaining engagement structure (701) to maintain the second cup holder module (3) in its current position. When the second cup holder module (3) is in the second cup holder working position, the position maintaining structure (6) engages with the second position maintaining engagement structure (702) to maintain the second cup holder module (3) in its current position. The first position maintaining engagement structure (701) and the second position maintaining engagement structure (702) are respectively configured as a first slot (703) and a second slot (704). The position maintaining structure (6) is configured as a resilient snap-fit ​​member (601). The resilient snap-fit ​​member (601) has a snap-fit ​​portion (6011) capable of snapping into the first slot (703) and the second slot (704), and the snap-fit ​​portion (6011) has a snap-fit ​​portion that snaps into the first slot (703) and the second slot (704). The first slot (703) and / or the latching part (6011) are provided with a first guide surface (8) for guiding the latching part (6011) to disengage from the first slot (703), and the second slot (704) and / or the latching part (6011) are provided with a second guide surface (9) for guiding the latching part (6011) to disengage from the second slot (704); the first guide surface (8) and the second guide surface (9) are configured as inclined surfaces or arc-shaped surfaces; The position maintaining fit structure (7) includes a position maintaining fit part (705) extending along the sliding direction of the second cup holder module (3). The position maintaining fit part (705) is recessed on the side facing the elastic snap fastener (601) and on the side away from the elastic snap fastener (601) to form the first slot (703) and the second slot (704). The side of the first card slot (703) away from the second card slot (704) is open; The housing (1) includes a partition (103) that divides the receiving cavity (101) into a lower receiving cavity (1011) and an upper receiving cavity (1012). The lower receiving cavity (1011) matches the first cup holder module (2), and the upper receiving cavity (1012) matches the second cup holder module (3). The partition (103) is provided with a clearance hole (1031), and the clearance hole (1031) extends along the sliding direction of the second cup holder module (3). The first linkage structure (202) and the second linkage structure (303) cooperate through the clearance hole (1031).

5. The cup holder mechanism according to claim 1, characterized in that: The second cup holder unit (301) includes a second cup holder structure (3011) disposed on the second cup holder module (3), and the upper surface of the second cup holder structure (3011) is recessed inward to form a cup body placement groove (3011a) for placing a cup. The second cup holder unit (301) also includes a magnet (3012) disposed below the cup body placement groove (3011a). The second cup holder module (3) includes a second cup holder module housing (305) having a second cup holder mounting cavity (304). The upper surface of the second cup holder module housing (305) is provided with a second cup holder exposure hole (3051) communicating with the second cup holder mounting cavity (304). The second cup holder structure (3011) is disposed in the second cup holder mounting cavity (304), and the side of the second cup holder structure (3011) with the cup body placement groove (3011a) extends out of the second cup holder exposure hole (3051). The outer wall of the portion of the second cup holder structure (3011) located in the second cup holder mounting cavity (304) has a radial protrusion forming a second cup holder limiting protrusion (3011b), and the distance from the outer side of the second cup holder limiting protrusion (3011b) to the axis of the second cup holder structure (3011) is greater than the radius of the second cup holder exposure hole (3051). The side of the second cup holder mounting cavity (304) opposite to the second cup holder exposure hole (3051) is formed as a second cup holder support surface (3041). The second cup holder support surface (3041) protrudes towards the second cup holder exposure hole (3051) to form a second cup holder structure support protrusion (306) for supporting the second cup holder structure (3011). The second cup holder support surface (3041) protrudes towards the second cup holder exposure hole (3051) to form a magnet mounting enclosure (307), and the magnet mounting enclosure (307) encloses to form a magnet mounting cavity (308) that matches the magnet (3012) for mounting the magnet (3012). The second cup holder limiting protrusion (3011b) forms a positioning limiting hole (3011c), and correspondingly, the second cup holder mounting cavity (304) protrudes at the corresponding position to form a positioning limiting protrusion (309) that matches the positioning limiting hole (3011c). The second cup holder module (3) is provided with a second cup holder damping structure (30A), and the housing (1) is provided with a second cup holder damping engagement structure (104). One of the second cup holder damping structure (30A) and the second cup holder damping engagement structure (104) is configured as a second cup holder damping rack (10), and the other of the second cup holder damping structure (30A) and the second cup holder damping engagement structure (104) is configured as a second cup holder damper (11). The second cup holder damping rack (10) extends along the sliding direction of the second cup holder module (3), and the second cup holder damping gear (1101) of the second cup holder damper (11) meshes with the second cup holder damping rack (10).

6. The cup holder mechanism according to claim 1, characterized in that: The first cup holder module (2) includes a first cup holder module housing (203), the first cup holder module (2) has a first cup holder installation space (2031) for installing the first cup holder unit (201), and the side of the first cup holder module housing (203) is provided with a first cup holder telescopic opening (2032) that communicates with the first cup holder installation space (2031). The first cup holder unit (201) includes a first cup holder fixing structure (2011) and a first cup holder sliding structure (2012). The first cup holder fixing structure (2011) is disposed in the first cup holder installation space (2031), and the first cup holder sliding structure (2012) can move along the direction of entering and exiting the first cup holder telescopic opening (2032) to move closer to and away from the first cup holder fixing structure (2011). The first cup holder unit (201) includes a first cup holder driving structure (2013). During the process of the first cup holder module (2) sliding to the first cup holder storage working position, the first cup holder driving structure (2013) drives the first cup holder sliding structure (2012) to approach the first cup holder fixing structure (2011). During the process of the first cup holder module (2) sliding to the first cup holder use working position, the first cup holder driving structure (2013) drives the first cup holder sliding structure (2012) to move away from the first cup holder fixing structure (2011) and forms a first cup holder accommodating space (2014) for accommodating the cup.

7. The cup holder mechanism according to claim 6, characterized in that: The first cup holder driving structure (2013) includes a driving rod (2013a), which is rotatably disposed at the bottom of the first cup holder module housing (203). The inner bottom surface of the housing (1) is provided with a driving trajectory groove (105), which slides along the first cup holder module (2) to the first cup holder storage working position. The driving trajectory groove (105) includes a first driving trajectory groove (1051) and a second driving trajectory groove (1052) in sequence. The first driving trajectory groove (1051) extends along the sliding direction of the first cup holder module (2), and the second driving trajectory groove (1052) gradually tilts away from the straight line where the first driving trajectory groove (1051) is located. The two ends of the driving rod (2013a) are respectively formed as a first driving end (2013a1) and a second driving end (2013a2). The first driving end (2013a1) slides... The second drive end (2013a2) is slidably connected to the first cup holder sliding structure (2012) in the drive track groove (105). The sliding direction of the second drive end (2013a2) relative to the first cup holder sliding structure (2012) matches the sliding direction of the first cup holder module (2). When the first drive end (2013a1) slides along the second drive track groove (1052) away from the first drive track groove (1051), the drive rod (2013a) rotates so that the second drive end (2013a2) drives the first cup holder sliding structure (2012) away from the first cup holder fixing structure (2011). The length of the first drive track groove (1051) matches the length of the first cup holder module housing (203) when it slides until the first cup holder telescopic port (2032) is fully extended from the housing opening (102). The first cup holder drive structure (2013) also includes a drive preload spring (2013b) that acts on the drive rod (2013a) to preload it. Sliding along the first cup holder module (2) to the first cup holder storage working position, the drive rod (2013a) includes a first drive rod part (2013a3) and a second drive rod part (2013a4). The second drive rod part (2013a4) gradually tilts away from the straight line where the first drive rod part (2013a3) is located, and the tilting direction of the second drive rod part (2013a4) relative to the straight line where the first drive rod part (2013a3) is located is opposite to the tilting direction of the second drive track groove (1052) relative to the straight line where the second drive track groove (1052) is located.

8. The cup holder mechanism according to claim 6, characterized in that: Two first cup holder units (201) are provided and symmetrically arranged on the first cup holder module (2). The two first cup holder units (201) are the left first cup holder unit (2015) and the right first cup holder unit (2016). Correspondingly, the first cup holder module housing (203) is symmetrically provided with two first cup holder installation spaces (2031), and the first cup holder module housing (203) is provided with first cup holder telescopic openings (2032) on both sides. The first cup holder sliding structure (2012) in the left first cup holder unit (2015) is provided with a first synchronous rack (2015a) extending along its sliding direction. The first cup holder sliding structure (2012) in the right first cup holder unit (2016) is provided with a second synchronous rack (2016a) extending along its sliding direction. The first synchronous rack (2015a) and the second synchronous rack (2016a) are arranged opposite to each other, and the tooth surface of the first synchronous rack (2015a) faces the side of the second synchronous rack (2016a). The tooth surface of the rack (2016a) is disposed facing the first synchronous rack (2015a). A synchronous gear (2017) is rotatably disposed between the first synchronous rack (2015a) and the second synchronous rack (2016a). The synchronous gear (2017) meshes with the tooth surface of the first synchronous rack (2015a) and the tooth surface of the second synchronous rack (2016a). The first cup holder drive structure (2013) acts on the first cup holder sliding structure (2012) in the left first cup holder unit (2015) or the right first cup holder unit (2016).

9. The cup holder mechanism according to claim 1, characterized in that: Includes a door panel (12) that matches the housing opening (102) to be able to close the housing opening (102), the door panel (12) being connected to the first cup holder module (2); The cup holder mechanism includes a locking structure (13) for locking the door panel (12) in a closed position of the housing opening (102). The locking structure (13) includes a latch (1301) and an operating member (1302). Correspondingly, the housing (1) is provided with a locking block (106) that cooperates with the latch (1301) at the housing opening (102). The latch (1301) is movably disposed on the door panel (12) so that it can move closer to and away from the locking block (106) when the door panel (12) closes the housing opening (102). The operating member (1302) drives the latch (1301) to move. The locking structure (13) further includes a latch reset member (1303) that acts on the latch (1301) to make it movable toward the reset side, and an operation member reset member (1304) that acts on the operation member (1302) to make it movable toward the reset side. The cup holder mechanism includes a drive module (14), which acts on the first cup holder module (2) to move the first cup holder module (2) toward the first cup holder working position side; the drive module (14) includes a coil spring shaft (1401) rotatably disposed on the first cup holder module (2) and a coil spring (1402) wound on the coil spring shaft (1401), and the free end of the coil spring (1402) is connected to the housing (1); The first cup holder module (2) is provided with a first cup holder damping structure (204), and the housing (1) is provided with a first cup holder damping engagement structure (107). One of the first cup holder damping structure (204) and the first cup holder damping engagement structure (107) is configured as a first cup holder damping rack (15), and the other of the first cup holder damping structure (204) and the first cup holder damping engagement structure (107) is configured as a first cup holder damper (16). The first cup holder damping rack (15) extends along the sliding direction of the first cup holder module (2), and the first cup holder damping gear (1601) of the first cup holder damper (16) meshes with the first cup holder damping rack (15). The first cup holder module (2) includes a temperature control component (17) for cooling / heating the liquid in the cup placed in the first cup holder unit (201), and the first cup holder module (2) is provided with a control button (18) connected to the temperature control component (17). The first cup holder module (2) is slidably disposed in the receiving cavity (101) via a slide rail (19). The second cup holder module (3) is provided with a second cup holder slider (30B). Correspondingly, the receiving cavity (101) is provided with a second cup holder groove (108) at a corresponding position that slides and engages with the second cup holder slider (30B). The second cup holder groove (108) extends along the sliding direction of the second cup holder module (3).

10. A car, characterized in that: Includes the cup holder mechanism as described in any one of claims 1 to 9.