Hidden pop-up cup stand

By using a hidden pop-up cup holder design, and through the cooperation of moving and driving components, stable switching and adaptive clamping of the clamping components are achieved, solving the problems of large space occupation and unstable clamping of existing cup holders, thus improving the user experience and space utilization.

CN223835487UActive Publication Date: 2026-01-27NINGBO JIFENG AUTO PARTS
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Patent Information

Application Number
CN202520211378.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-11
Publication Date
2026-01-27
Estimated Expiration
2035-02-11

AI Technical Summary

Technical Problem

Existing pop-up car cup holders take up a lot of space in the car when retracted, and the clamps have excessive and unstable adjustment force, which affects the aesthetics and user experience.

Method used

A hidden pop-up cup holder was designed. The moving component drives the driving component and the clamping component to move along the guide groove. The clamping component rotates at different guide positions in the guide groove to achieve a stable switching between the retracted and expanded states. The cup is adaptively clamped by a soft rubber sleeve, reducing the space occupied.

Benefits of technology

The clamping component occupies little space when retracted, has high clamping stability and reliability, adapts to different cup shapes, reduces shaking, and improves user experience and space utilization.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of automobile cup holders, and provides a hidden pop-up cup holder which comprises a shell. The moving part is movably arranged on the shell body; the driving part is rotationally arranged on the moving part, and the driving part is provided with a first end and a second end; the guide groove is formed in the shell, and the guide groove is provided with a first guide part and a second guide part; and the clamping piece is movably arranged on the moving piece, and the clamping piece is provided with a first clamping part and a second clamping part. The clamping device has the advantages that the moving piece drives the driving piece and the clamping piece to move, so that the first end moves along the guide groove. When the first end is located at the first guide part, the clamping piece shrinks; at the second guide part, the driving part drives the first clamping part and the second clamping part to synchronously rotate, so that the clamping part is expanded to an open state and is used for clamping a cup. The clamping piece occupies a small space when contracted, so that the width of the moving piece is reduced, and the space occupied by the cup holder in a vehicle is reduced.
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Description

Technical Field

[0001] This utility model relates to the field of automotive cup holder technology, specifically a hidden pop-out cup holder. Background Technology

[0002] Pop-up car cup holders are a cleverly designed in-car storage solution, typically integrated into the center console, dashboard, or armrest. Their key feature is their concealed design; when not in use, they retract completely, freeing up interior space and maintaining a clean and aesthetically pleasing interior. When a beverage container is needed, a simple press of a button or a light touch is all it takes for them to pop out smoothly, providing instant convenience. Existing pop-up car cup holders usually come with clips to hold the cup in place. However, when the cup holder is retracted within the car's storage space, the clips are pre-angled to prevent excessive force from being required to adjust the clip angle after the cup holder extends. This necessitates a cup holder that is wide enough to accommodate the clips, resulting in the cup holder taking up more interior space. Utility Model Content

[0003] The technical problem to be solved by this utility model is to provide a hidden pop-out cup holder in light of the current state of the technology.

[0004] The technical solution adopted by this utility model to solve the above-mentioned technical problems is as follows: a hidden pop-up cup holder is proposed, comprising:

[0005] case;

[0006] A movable component, which is movably disposed on the housing;

[0007] A driving component, which is rotatably mounted on the moving component, has a first end and a second end;

[0008] A guide groove is provided on the housing and is used to allow the first end of the drive member to move. The guide groove is provided with a first guide portion and a second guide portion that communicate with each other.

[0009] A clamping member is movably mounted on a movable member. The clamping member can switch between a retracted state and an extended state. The clamping member has a first clamping part and a second clamping part. Both the first clamping part and the second clamping part are rotatably mounted on the movable member. One end of both the first clamping part and the second clamping part movably abuts against the second end of the driving member.

[0010] When the first end moves on the first guide portion, the clamping member is in a retracted state. When the first end moves on the second guide portion, the driving member rotates to drive the first clamping portion and the second clamping portion to rotate synchronously, thereby driving the clamping portion to gradually expand and switch to an open state. When the clamping member is in an open state, there is a gap between the clamping member and the moving member. The clamping member can move under force to eliminate the gap, so that the clamping member abuts against the side wall of the moving member, thereby allowing the clamping member to expand again.

[0011] In the aforementioned concealed pop-out cup holder, the movable component is provided with a first fixed shaft and a second fixed shaft at intervals, and the driving component is provided with a first driving part and a second driving part. The first driving part and the second driving part each include a first end and a second end. The first driving part is provided with a first rotating sleeve and a first support block. The first support block and the second end are both connected to the first rotating sleeve. The first rotating sleeve is rotatably mounted on the first fixed shaft. The second driving part is provided with a second rotating sleeve and a second support block. The second support block and the second end are both connected to the second rotating sleeve. The second rotating sleeve is rotatably mounted on the second fixed shaft. The first support block and the second support block are both connected to the first end.

[0012] In the aforementioned concealed pop-out cup holder, the first fixed shaft is provided with a first torsion spring, which is used to drive the first driving part to reset; the second fixed shaft is provided with a second torsion spring, which is used to drive the second driving part to reset.

[0013] In the aforementioned concealed pop-out cup holder, the moving component is provided with a third fixed shaft, and the driving component is provided with a third driving part and a fourth driving part. The third driving part and the fourth driving part each include a first end and a second end. The third driving part is provided with a third rotating sleeve and a third support block. The third support block and the second end are both connected to the third rotating sleeve. The fourth driving part is provided with a fourth rotating sleeve and a fourth support block. The fourth support block and the second end are both connected to the fourth rotating sleeve. The third support block and the fourth support block are both connected to the first end. The third rotating sleeve and the fourth rotating sleeve are rotatably mounted on the third fixed shaft, and the third rotating sleeve and the fourth rotating sleeve are stacked.

[0014] In the aforementioned concealed pop-out cup holder, the third fixed shaft is provided with a third torsion spring, which is used to drive the third driving part and the fourth driving part to reset.

[0015] In the aforementioned concealed pop-out cup holder, the movable component is provided with a first sliding groove and a drive rod. The first sliding groove is used for the drive rod to move. The first clamping part and the second clamping part are stacked near the end of the drive component. The first clamping part is provided with a second sliding groove, and the second clamping part is provided with a third sliding groove. One end of the drive rod passes through the third sliding groove and the second sliding groove in sequence. The second sliding groove and the third sliding groove are used for the drive rod to move. A fourth torsion spring is provided between the first clamping part and the second clamping part and the movable component. The fourth torsion spring is used to drive the clamping part to reset.

[0016] In the aforementioned concealed pop-out cup holder, the movable component is provided with a fourth fixed axis, and both the first clamping part and the second clamping part are provided with a skeleton and a soft rubber sleeve. The skeleton is rotatably sleeved on the fourth fixed axis, and the soft rubber sleeve is sleeved on the skeleton.

[0017] In the aforementioned concealed pop-out cup holder, two guide grooves are symmetrically provided on the upper end of the housing.

[0018] In the aforementioned concealed pop-out cup holder, the movable component is equipped with a locking component, which includes:

[0019] A button, which is movably mounted on the movable component, and the button is provided with a wedge;

[0020] A movable block is movably mounted on the movable component, and the movable block movably abuts against the inclined block. The movable block is provided with an inclined groove for the inclined block to move.

[0021] A locking shaft is disposed on the housing;

[0022] A rotating block is rotatably mounted on the moving part via a first connecting shaft, and the rotating block is movably connected to the moving block;

[0023] The fifth torsion spring is sleeved on the first connecting shaft and is used to drive the rotating block to reset.

[0024] A locking block is rotatably mounted on the moving member via a second connecting shaft. The locking block movably abuts against the rotating block. The locking block is provided with a slot, which movably abuts against the locking shaft to limit the movement of the moving member.

[0025] A sixth torsion spring is sleeved on the second connecting shaft and is used to drive the locking block to reset.

[0026] The aforementioned concealed pop-out cup holder also includes a cushioning component, which comprises:

[0027] A through groove is provided on the housing;

[0028] A rack, which is disposed on the housing;

[0029] A gear, rotatably mounted on the moving part, meshing with the rack;

[0030] A rubber block is disposed on the movable part and movably abuts against the side wall of the housing.

[0031] Compared with the prior art, the advantages of this utility model are:

[0032] 1. The moving part drives the driving part and the clamping part to move relative to the housing, so that the first end moves along the guide groove. When the first end moves on the first guide part, the clamping part is in a retracted state. When the first end moves on the second guide part, the driving part rotates and drives the first clamping part and the second clamping part to rotate synchronously, so that the clamping part gradually expands and switches from the retracted state to the open state. When the clamping part is in the open state, it can stably clamp the cup. When the clamping part does not extend out of the housing, it is in a retracted state, which occupies less space, so that the width of the moving part can be set smaller, thereby reducing the space occupied by the cup holder in the car.

[0033] 2. By rotating the drive component, the first clamping part and the second clamping part rotate synchronously, making the clamping part gradually expand. The process of changing from the contracted state to the open state is more stable, smooth and aesthetically pleasing.

[0034] 3. By setting up a soft rubber sleeve, it can better fit cups of different shapes and sizes and adaptively wrap around the cup, achieving more precise clamping. It can also increase the contact area and friction between the claw and the cup, thereby improving the stability and reliability of clamping and reducing the shaking of the cup during car driving. Attached Figure Description

[0035] Figure 1 This is a perspective view of a concealed pop-out cup holder when the clamping member is in a retracted state in Embodiment 1 of this utility model;

[0036] Figure 2 This is a perspective view of a hidden pop-out cup holder when the clamping member is in the open state in Embodiment 1 of this utility model;

[0037] Figure 3 This is a schematic diagram showing the positional relationship between the driving component and the clamping component in Embodiment 1 of this utility model;

[0038] Figure 4 This is a perspective view of the clamping and moving parts of this utility model;

[0039] Figure 5This is a cross-sectional view of a hidden pop-out cup holder according to the present invention;

[0040] Figure 6 This is a perspective view of the locking component of this utility model;

[0041] Figure 7 This is a plan view of a concealed pop-out cup holder according to the present invention;

[0042] Figure 8 This is a schematic diagram showing the positional relationship between the driving component and the clamping component in Embodiment 2 of this utility model.

[0043] In the diagram, 1. Housing; 2. Moving part; 21. First fixed shaft; 22. Second fixed shaft; 23. Third fixed shaft; 24. First sliding groove; 25. Drive rod; 26. Fourth torsion spring; 27. Fourth fixed shaft; 3. Drive component; 31. First end; 32. Second end; 33. First drive part; 331. First rotating sleeve; 332. First support block; 34. Second drive part; 341. Second rotating sleeve; 342. Second support block; 35. Third drive part; 351. Third rotating sleeve; 352. Third support block; 36. Fourth drive part; 361. Fourth rotating sleeve; 362. Fourth support block; 4. Guide groove; 41. First guide part; 42. Second guide part. 5. Clamping part; 51. First clamping part; 511. Second slide groove; 52. Second clamping part; 521. Third slide groove; 53. Frame; 54. Soft rubber sleeve; 6. Locking part; 61. Button; 611. Inclined block; 62. Moving block; 621. Inclined groove; 63. Locking shaft; 64. Rotating block; 641. First connecting shaft; 65. Fifth torsion spring; 66. Locking block; 661. Second connecting shaft; 662. Slot; 67. Sixth torsion spring; 7. Buffer; 71. Through groove; 72. Rack; 73. Gear; 74. Rubber block. Detailed Implementation

[0044] The following are specific embodiments of the present invention, which are described in conjunction with the accompanying drawings. However, the present invention is not limited to these embodiments. Example

[0045] like Figures 1 to 7 As shown, the present invention provides a hidden pop-out cup holder, comprising:

[0046] Housing 1; Movable component 2, movably mounted on housing 1; Drive component 3, rotatably mounted on movable component 2, drive component 3 having a first end 31 and a second end 32; Guide groove 4, mounted on housing 1, guide groove 4 for moving the first end 31 of drive component 3, guide groove 4 having a communicating first guide portion 41 and second guide portion 42; Clamping component 5, movably mounted on movable component 2, clamping component 5 can switch between a retracted state and an extended state, clamping portion having a first clamping portion 51 and a second clamping portion 52, both the first clamping portion 51 and the second clamping portion 52 being rotatably mounted on movable component 2, one end of the first clamping portion 51 and the second clamping portion 52 being movably abutting against the second end 32 of drive component 3.

[0047] The housing 1 is fixedly mounted on the car. The moving part 2 moves and drives the driving part 3 and the clamping part 5 to move relative to the housing 1. The first end 31 of the driving part 3 moves along the guide groove 4. When the first end 31 moves on the first guide part 41, the clamping part 5 is in a retracted state. The second guide part 42 is inclined on the housing 1 relative to the movement direction of the moving part 2. When the first end 31 moves inclined under the guidance of the second guide part 42, the driving part 3 rotates relative to the moving part 2, driving its second end 32 to move. The second end 32 pushes the first clamping part 51 and the second clamping part 52 to rotate synchronously, so that the clamping part 5 gradually expands and switches from the retracted state to the open state. When the clamping part 5 is in the open state, the clamping part 5 extends out of the housing 1 and can stably clamp the cup. At this time, there is a gap between the clamping part 5 and the moving part 2. When the clamping part 5 is under force, it can move to eliminate the gap and press against the side wall of the moving part 2, allowing the clamping part 5 to expand again, thereby adapting to cups of different sizes.

[0048] In this embodiment, the movable component 2 is provided with a first fixed shaft 21 and a second fixed shaft 22 spaced apart. The driving component 3 is provided with a first driving part 33 and a second driving part 34. Both the first driving part 33 and the second driving part 34 include a first end 31 and a second end 32. The first driving part 33 is provided with a first rotating sleeve 331 and a first support block 332. The first support block 332 and the second end 32 are both connected to the first rotating sleeve 331. The first rotating sleeve 331 is rotatably mounted on the first fixed shaft 21. The second driving part 34 is provided with a second rotating sleeve 341 and a second support block 342. The second support block 342 and the second end 32 are both connected to the second rotating sleeve 341. The second rotating sleeve 341 is rotatably mounted on the second fixed shaft 22. The first support block 332 and the second support block 342 are both connected to the first end 31. Two guide grooves 4 are symmetrically provided on the upper end of the housing 1.

[0049] like Figure 1 and Figure 3As shown, the first end 31 of the first driving part 33 and the first end 31 of the second driving part 34 are respectively slidably disposed on the corresponding guide grooves 4. When the moving member 2 drives the first end 31 of the first driving part 33 to move on its corresponding second guide part 42, the first end 31 of the first driving part 33 abuts against the second guide part 42 and applies a thrust to the second guide part 42. Since the housing 1 is fixed on the car and the second guide part 42 is fixedly disposed on the housing 1, the second guide part 42 will apply a reaction force to the first end 31 of the first driving part 33. Under the combined action of the second guide part 42 and the moving member 2, the first end 31 of the first driving part 33 moves along the second guide part 42, thereby driving the first support block 332 to move. The first support block 332 drives the first rotating sleeve 331 to move along the second guide part 42. Figure 3 Rotating clockwise, the first rotating sleeve 331 drives the second end 32 of the first driving part 33 to move, and finally the second end 32 of the first driving part 33 drives the first clamping part 51 to move. Figure 3 Rotate counterclockwise.

[0050] Similarly, the first end 31 of the second drive unit 34 drives the second support block 342 to move, and the second support block 342 drives the second rotating sleeve 341 to move. Figure 3 Rotating counterclockwise, the second rotating sleeve 341 drives the second end 32 of the second driving part 34 to move, and the second end 32 of the second driving part 34 drives the second clamping part 52 to move. Figure 3 Rotating clockwise causes the first clamping part 51 and the second clamping part 52 to rotate synchronously, thereby making the clamping part 5 gradually expand. The process of switching from the contracted state to the open state is more stable, smooth and aesthetically pleasing.

[0051] In this embodiment, the first fixed shaft 21 is provided with a first torsion spring, which is used to drive the first drive part 33 to reset. The second fixed shaft 22 is provided with a second torsion spring, which is used to drive the second drive part 34 to reset. When the user pushes the moving part 2 to move towards the housing 1, the first torsion spring drives the first drive part 33 to reset, and the second torsion spring drives the second drive part 34 to reset, thereby facilitating the clamping part 5 to switch from the retracted state to the open state.

[0052] In this embodiment, the movable member 2 is provided with a first sliding groove 24 and a drive rod 25. The first sliding groove 24 is used to allow the drive rod 25 to move. The first clamping part 51 and the second clamping part 52 are stacked near the end of the drive member 3. The first clamping part 51 is provided with a second sliding groove 511, and the second clamping part 52 is provided with a third sliding groove 521. One end of the drive rod 25 passes through the third sliding groove 521 and the second sliding groove 511 in sequence. The second sliding groove 511 and the third sliding groove 521 are used to allow the drive rod 25 to move. A fourth torsion spring 26 is provided between the first clamping part 51 and the second clamping part 52 and the movable member 2. The fourth torsion spring 26 is used to drive the clamping member 5 to reset.

[0053] like Figure 3 and Figure 4 As shown, when the second end 32 of the first driving part 33 pushes the first clamping part 51 to rotate, and the second end 32 of the second driving part 34 pushes the second clamping part 52 to rotate, the driving rod 25 abuts against the side wall of the second slide groove 511 and the side wall of the third slide groove 521. Under the push of the second slide groove 511 and the third slide groove 521, the driving rod 25 moves on the first slide groove 24. Since the driving rod 25 abuts against the side wall of the second slide groove 511 and the side wall of the third slide groove 521, under the action of the driving rod 25, the movement of the second slide groove 511 and the third slide groove 521 is always kept synchronized, thereby ensuring that the first clamping part 51 and the second clamping part 52 can rotate synchronously. When the user pushes the moving part 2 to move towards the housing 1, the fourth torsion spring 26 drives the first clamping part 51 and the second clamping part 52 to reset, so that the clamping part 5 switches from the open state to the retracted state.

[0054] In this embodiment, the movable component 2 is provided with a fourth fixed shaft 27. Both the first clamping part 51 and the second clamping part 52 are provided with a skeleton 53 and a soft rubber sleeve 54. The skeleton 53 is rotatably sleeved on the fourth fixed shaft 27, and the soft rubber sleeve 54 is sleeved on the skeleton 53. The soft rubber sleeve 54 has good flexibility and elasticity, which can better fit cups of different shapes and sizes, and adaptively wrap the cup to achieve more precise clamping. The soft rubber sleeve 54 can also increase the contact area and friction between the clamp and the cup, thereby improving the stability and reliability of clamping and reducing the shaking of the cup during the car's movement.

[0055] In this embodiment, the movable component 2 is provided with a locking component 6, which includes: a button 61, which is movably disposed on the movable component 2 and has a wedge 611; a movable block 62, which is movably disposed on the movable component 2 and movably abuts against the wedge 611, and has a wedge groove 621 for allowing the wedge 611 to move; a locking shaft 63, which is disposed on the housing 1; and a rotating block 64, which is rotatably disposed on the movable component 2 via a first connecting shaft 641. 4. Connected movably to the moving block 62; a fifth torsion spring 65, which is sleeved on the first connecting shaft 641 and used to drive the rotating block 64 to reset; a locking block 66, which is rotatably mounted on the moving part 2 via the second connecting shaft 661, and the locking block 66 abuts against the rotating block 64. The locking block 66 is provided with a slot 662, which abuts against the locking shaft 63 and is used to limit the moving part 2; a sixth torsion spring 67, which is sleeved on the second connecting shaft 661 and used to drive the locking block 66 to reset.

[0056] like Figure 5 and Figure 6 As shown, when card slot 662 is in Figure 5When the center is facing upward to the left, the slot 662 abuts against the locking shaft 63, limiting the movement of the moving part 2. After the user presses the button 61, the button 61 drives the inclined block 611 to move on the inclined groove 621, thereby pushing the moving block 62 in... Figure 5 Moving downwards, the moving block 62 drives the rotating block 64 to move downwards. Figure 5 Rotating counterclockwise, the rotating block 64 then pushes the locking block 66. Figure 5 Rotating clockwise changes the orientation of the slot 662. Figure 5 When the center is turned to the right, the locking shaft 63 separates from the slot 662, thereby unlocking the limit on the moving part 2, allowing the moving part 2 to move away from the housing 1.

[0057] After the force of pressing button 61 is released, during the movement of moving part 2, the fifth torsion spring 65 drives the rotating block 64 to move. Figure 5 Rotate clockwise until reset, the sixth torsion spring 67 drives the locking block 66 in Figure 5 Rotate counterclockwise until reset. When the user needs to store the cup holder, push the moving part 2 towards the housing 1, so that the locking shaft 63 abuts against the outer wall of the locking block 66. Then, the user continues to push the moving part 2, and the locking shaft 63 applies a pushing force to the locking block 66, thereby causing the locking block 66 to... Figure 5 During the counterclockwise rotation, the locking shaft 63 slides along the outer wall of the locking block 66 until it moves into the slot 662. At this time, the fourth torsion spring 26 drives the locking block 66 to rotate counterclockwise. Figure 5 Rotate clockwise to make the card slot 662 in Figure 5 The center is oriented to the upper left, so that the slot 662 abuts against the locking shaft 63, thereby limiting the movement of the moving part 2.

[0058] This embodiment also includes a buffer component 7, which includes: a through groove 71, which is disposed on the housing 1; a rack 72, which is disposed on the housing 1; a gear 73, which is rotatably disposed on the moving part 2 and meshes with the rack 72; and a rubber block 74, which is disposed on the moving part 2 and moves against the side wall of the housing 1.

[0059] like Figure 7 As shown, gear 73 is rotatably mounted on moving part 2, and the friction between gear 73 and moving part 2 is intentionally increased in the design. When moving part 2 drives gear 73 along through groove 71... Figure 7When moving from center to left, gear 73 meshes with rack 72, and gear 73 will rotate during the movement. Due to the large friction between gear 73 and moving part 2, the rotation speed of gear 73 is relatively slow. Under the combined action of gear 73 and rack 72, the moving speed of moving part 2 is reduced, preventing moving part 2 from hitting the user due to excessive movement, thereby avoiding potential safety hazards.

[0060] like Figure 7 As shown, when the moving part 2 moves, it will drive the rubber block 74 to... Figure 7 Move to the left until the rubber block 74 abuts against the side wall of the housing 1. The rubber block 74 can reduce the impact of the housing 1 on the moving part 2, thereby protecting the moving part 2 and the housing 1 and preventing damage to the moving part 2 and the housing 1. Example

[0061] This embodiment is basically the same as embodiment 1, except that:

[0062] In this embodiment, the moving part 2 is provided with a third fixed shaft 23, and the driving part 3 is provided with a third driving part 35 and a fourth driving part 36. Both the third driving part 35 and the fourth driving part 36 include a first end 31 and a second end 32. The third driving part 35 is provided with a third rotating sleeve 351 and a third support block 352. The third support block 352 and the second end 32 are both connected to the third rotating sleeve 351. The fourth driving part 36 is provided with a fourth rotating sleeve 361 and a fourth support block 362. The fourth support block 362 and the second end 32 are both connected to the fourth rotating sleeve 361. The third support block 352 and the fourth support block 362 are both connected to the first end 31. The third rotating sleeve 351 and the fourth rotating sleeve 361 are rotatably mounted on the third fixed shaft 23 and are stacked. The upper end of the housing 1 is symmetrically provided with two guide grooves 4. The third fixed shaft 23 is provided with a third torsion spring, which is used to drive the third driving part 35 and the fourth driving part 36 to reset.

[0063] like Figure 8 As shown, the first end 31 of the third drive unit 35 and the first end 31 of the fourth drive unit 36 ​​are respectively slidably disposed on the corresponding guide grooves 4. When the moving member 2 drives the first end 31 of the third drive unit 35 to move on its corresponding second guide part 42, the first end 31 of the third drive unit 35 abuts against the second guide part 42 and applies a thrust to the second guide part 42. Since the housing 1 is fixed on the car and the second guide part 42 is fixedly disposed on the housing 1, the second guide part 42 will apply a reaction force to the first end 31 of the third drive unit 35. Under the combined action of the second guide part 42 and the moving member 2, the first end 31 of the third drive unit 35 moves along the second guide part 42, thereby driving the third support block 352 to move. The third support block 352 drives the third rotating sleeve 351 to move along the second guide part 42. Figure 8Rotating clockwise, the third rotating sleeve 351 drives the second end 32 of the third driving part 35 to move, and finally the second end 32 of the third driving part 35 drives the first clamping part 51 to move. Figure 8 Rotate counterclockwise.

[0064] Similarly, the first end 31 of the fourth drive unit 36 ​​drives the fourth support block 362 to move, and the fourth support block 362 drives the fourth rotating sleeve 361 to move. Figure 8 Rotating counterclockwise, the fourth rotating sleeve 361 drives the second end 32 of the fourth driving part 36 to move, and the second end 32 of the fourth driving part 36 drives the second clamping part 52 to move. Figure 8 Rotating clockwise causes the first clamping part 51 and the second clamping part 52 to rotate synchronously, thereby making the clamping part 5 gradually expand. The process of switching from the contracted state to the open state is more stable, smooth and aesthetically pleasing.

[0065] Both the third rotating sleeve 351 and the fourth rotating sleeve 361 are provided with square slots. The third torsion spring has two torsion arms. One torsion arm abuts against the side wall of the square slot of the third rotating sleeve 351, and the other torsion arm abuts against the side wall of the square slot of the fourth rotating sleeve 361. When the third driving part 35 and the fourth driving part 36 rotate, the clamping member 5 gradually expands and switches from the contracted state to the open state. The square slots of the third driving part 35 and the fourth driving part 36 drive the two torsion arms of the third torsion spring to move, thereby compressing the third torsion spring. When the user pushes the moving member 2 to move towards the housing 1, under the action of elastic potential energy, the third torsion spring drives the third driving part 35 and the fourth driving part 36 to reset.

[0066] By moving the movable part 2, the driving part 3 and the clamping part 5 move relative to the housing 1, so that the first end 31 moves along the guide groove 4. When the first end 31 moves on the first guide part 41, the clamping part 5 is in a retracted state. When the first end 31 moves on the second guide part 42, the driving part 3 rotates, causing the first clamping part 51 and the second clamping part 52 to rotate synchronously, so that the clamping part 5 gradually expands and switches from the retracted state to the open state. When the clamping part 5 is in the open state, it can stably clamp the cup. When the clamping part 5 does not extend out of the housing 1, it is in a retracted state, which occupies less space, so that the width of the movable part 2 can be set to be smaller, thereby reducing the space occupied by the cup holder in the car.

[0067] It should be noted that all directional indicators (such as up, down, left, right, front, back, etc.) in this utility model embodiment are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indicator will also change accordingly.

[0068] Furthermore, in this utility model, the use of terms such as "first," "second," and "a" is for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this utility model, "multiple" means at least two, such as two, three, etc., unless otherwise explicitly specified.

[0069] In this utility model, unless otherwise explicitly specified and limited, the terms "connection," "fixing," etc., should be interpreted broadly. For example, "fixing" can mean a fixed connection, a detachable connection, or an integral part; it can mean a mechanical connection or an electrical connection; it can mean a direct connection or an indirect connection through an intermediate medium; it can mean the internal communication of two components or the interaction between two components, unless otherwise explicitly limited. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0070] Furthermore, the technical solutions of the various embodiments of this utility model can be combined with each other, but only if they are based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or cannot be implemented, it should be considered that such combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.

[0071] The specific embodiments described herein are merely illustrative examples illustrating the spirit of this utility model. Those skilled in the art to which this utility model pertains may make various modifications or additions to the described specific embodiments or use similar methods to replace them, without departing from the scope defined by the spirit of this utility model.

Claims

1. A concealed pop-out cup holder, characterized in that, include: case; A movable component, which is movably disposed on the housing; A driving component, which is rotatably mounted on the moving component, has a first end and a second end; A guide groove is provided on the housing and is used to allow the first end of the drive member to move. The guide groove is provided with a first guide portion and a second guide portion that communicate with each other. A clamping member is movably mounted on a movable member. The clamping member can switch between a retracted state and an extended state. The clamping member has a first clamping part and a second clamping part. Both the first clamping part and the second clamping part are rotatably mounted on the movable member. One end of both the first clamping part and the second clamping part movably abuts against the second end of the driving member. When the first end moves on the first guide portion, the clamping member is in a retracted state. When the first end moves on the second guide portion, the driving member rotates to drive the first clamping portion and the second clamping portion to rotate synchronously, thereby driving the clamping portion to gradually expand and switch to an open state. When the clamping member is in an open state, there is a gap between the clamping member and the moving member. The clamping member can move under force to eliminate the gap, so that the clamping member abuts against the side wall of the moving member, thereby allowing the clamping member to expand again.

2. The concealed pop-out cup holder as described in claim 1, characterized in that, The moving component is provided with a first fixed shaft and a second fixed shaft at intervals. The driving component is provided with a first driving part and a second driving part. The first driving part and the second driving part each include a first end and a second end. The first driving part is provided with a first rotating sleeve and a first support block. The first support block and the second end are both connected to the first rotating sleeve. The first rotating sleeve is rotatably mounted on the first fixed shaft. The second driving part is provided with a second rotating sleeve and a second support block. The second support block and the second end are both connected to the second rotating sleeve. The second rotating sleeve is rotatably mounted on the second fixed shaft. The first support block and the second support block are both connected to the first end.

3. A concealed pop-out cup holder as described in claim 2, characterized in that, The first fixed shaft is provided with a first torsion spring, which is used to drive the first driving part to reset. The second fixed shaft is provided with a second torsion spring, which is used to drive the second driving part to reset.

4. A concealed pop-out cup holder as described in claim 1, characterized in that, The moving component is provided with a third fixed shaft, and the driving component is provided with a third driving part and a fourth driving part. The third driving part and the fourth driving part each include a first end and a second end. The third driving part is provided with a third rotating sleeve and a third support block. The third support block and the second end are both connected to the third rotating sleeve. The fourth driving part is provided with a fourth rotating sleeve and a fourth support block. The fourth support block and the second end are both connected to the fourth rotating sleeve. The third support block and the fourth support block are both connected to the first end. The third rotating sleeve and the fourth rotating sleeve are rotatably mounted on the third fixed shaft and are stacked on top of each other.

5. A concealed pop-out cup holder as described in claim 4, characterized in that, The third fixed shaft is provided with a third torsion spring, which is used to drive the third driving part and the fourth driving part to reset.

6. A concealed pop-out cup holder as described in claim 1, characterized in that, The movable component is provided with a first sliding groove and a drive rod. The first sliding groove is used for the drive rod to move. The first clamping part and the second clamping part are stacked near the end of the drive component. The first clamping part is provided with a second sliding groove, and the second clamping part is provided with a third sliding groove. One end of the drive rod passes through the third sliding groove and the second sliding groove in sequence. The second sliding groove and the third sliding groove are used for the drive rod to move. A fourth torsion spring is provided between the first clamping part and the second clamping part and the movable component. The fourth torsion spring is used to drive the clamping component to reset.

7. A concealed pop-out cup holder as described in claim 6, characterized in that, The moving part is provided with a fourth fixed shaft. Both the first clamping part and the second clamping part are provided with a skeleton and a soft rubber sleeve. The skeleton is rotatably sleeved on the fourth fixed shaft, and the soft rubber sleeve is sleeved on the skeleton.

8. A concealed pop-out cup holder as described in claim 1, characterized in that, The upper end of the housing is provided with two guide grooves symmetrically.

9. A concealed pop-out cup holder as described in claim 1, characterized in that, The movable component is provided with a locking element, the locking element comprising: A button, which is movably mounted on the movable component, and the button is provided with a wedge; A movable block is movably mounted on the movable component, and the movable block movably abuts against the inclined block. The movable block is provided with an inclined groove for the inclined block to move. A locking shaft is disposed on the housing; A rotating block is rotatably mounted on the moving part via a first connecting shaft, and the rotating block is movably connected to the moving block; The fifth torsion spring is sleeved on the first connecting shaft and is used to drive the rotating block to reset. A locking block is rotatably mounted on the moving member via a second connecting shaft. The locking block movably abuts against the rotating block. The locking block is provided with a slot, which movably abuts against the locking shaft to limit the movement of the moving member. A sixth torsion spring is sleeved on the second connecting shaft and is used to drive the locking block to reset.

10. A concealed pop-out cup holder as described in claim 1, characterized in that, It also includes a buffer component, which comprises: A through groove is provided on the housing; A rack, which is disposed on the housing; A gear, rotatably mounted on the moving part, meshing with the rack; A rubber block is disposed on the movable part and movably abuts against the side wall of the housing.