Cup holder assembly and vehicle
By designing a cup holder assembly, and by incorporating a cup holder structure within a vehicle interior, and by employing a flip-up assembly between a first state and a second state, the problem of dust accumulation in existing cup holders is solved, achieving a dustproof effect in both in-use and out-of-use states.
Patent Information
- Application Number
- CN202411511053.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-28
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2044-10-28
AI Technical Summary
The existing vehicle cup holders tend to accumulate dust when not in use.
Design a cup holder assembly including a panel, a cup holder, and a flipping component. The cup holder is connected to the panel via a connecting structure and can flip between a first state and a second state. In the first state, the opening of the receiving slot faces the storage hole, and in the second state, the opening faces away from the storage hole. The flipping component drives the cup holder to switch between the two states to prevent dust from entering the receiving slot.
It effectively prevents dust from entering the cup holder through the storage hole, improving the cleanliness and user experience of the cup holder, and enhancing driving safety.
Smart Images

Figure CN119160067B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of vehicles, in particular to a cup holder assembly and a vehicle. BACKGROUND
[0002] The vehicle cup holder is a practical component in the interior design of a vehicle, mainly used for placing and fixing containers such as water cups, to avoid water spilling or sliding due to jolting. At the same time, it can be convenient for the driver and passengers to take the water cup at any time, without having to look for the water cup, thereby improving driving safety.
[0003] The existing cup holder is mostly fixed and open, that is, the cup holder is fixed in the interior of the vehicle, and the cup holder has an open structure. In the non-use state (the state in which the cup holder does not place a water cup), dust is easy to fall into the interior of the cup holder.
[0004] Therefore, how to solve or improve the problem that the cup holder is easy to fall into dust in the prior art has become an important technical problem to be solved by the person skilled in the art. SUMMARY
[0005] Therefore, the present application provides a cup holder assembly and a vehicle to solve the problem that the cup holder is easy to accumulate dust in the non-use state.
[0006] In a first aspect, the present application provides a cup holder assembly, comprising:
[0007] a panel, a storage hole being formed through the panel;
[0008] a cup holder, provided with a receiving groove, the cup holder being connected to the panel through a connecting structure, and the cup holder being movable in the direction of approaching or moving away from the panel;
[0009] a turnover assembly, connected to the panel and the cup holder respectively, the turnover assembly being adapted to drive the cup holder to turn between a first state and a second state, the opening of the receiving groove facing the storage hole when the cup holder is in the first state, and the opening of the receiving groove facing away from the storage hole when the cup holder is in the second state.
[0010] Optionally, the connecting structure comprises:
[0011] a guide column, one end of the guide column being connected to the panel;
[0012] a sliding block, the cup holder being rotatably connected to the sliding block, and the sliding block being slidingly connected to the guide column.
[0013] Optionally, further comprising:
[0014] a resilient member, the cup holder being connected to the panel through the resilient member, the resilient member being adapted to drive the cup holder to approach the panel, so that the cup holder abuts against the panel.
[0015] Optionally, the turnover assembly comprises:
[0016] an engaging part connected with the panel;
[0017] a turnover shaft connected with the cup holder, one of the turnover shaft and the engaging part is provided with a first tooth, and the other is provided with a second tooth, and the first tooth can engage with the second tooth when the cup holder is in a moving state, so as to turn the cup holder between the first state and the second state.
[0018] Optionally, the turnover assembly further comprises:
[0019] a movable part rotationally connected with the panel, the movable part is provided with a first sliding groove and a second sliding groove, the second sliding groove is provided in a curved structure, both ends of the second sliding groove are in communication with the first sliding groove, the turnover shaft is slidingly arranged in the first sliding groove and can enter the second sliding groove to slide, and the first tooth can engage with the second tooth when the turnover shaft slides along the first sliding groove or the second sliding groove.
[0020] a limiting part arranged on the movable part, and the limiting part is adapted to move between a first position and a second position, the limiting part extends into the first sliding groove when in the first position, and can form a limiting fit with the turnover shaft moving towards the panel to make the turnover shaft enter the second sliding groove.
[0021] Optionally, the turnover assembly further comprises:
[0022] a reset part connected with the movable part and the limiting part respectively, and the reset part is used to drive the limiting part to switch from the second position to the first position.
[0023] Optionally, the first sliding groove comprises a first groove section, a second groove section and a third groove section in sequence, the first end of the second sliding groove is in communication with the first groove section, and the second end of the second sliding groove is in communication with the third groove section, wherein,
[0024] when the limiting part is in the first position, the limiting part extends into the second groove section, the second sliding groove is in communication with the third groove section, and the second groove section is disconnected from the third groove section;
[0025] when the limiting part is in the second position, the limiting part extends into the second sliding groove, the second groove section is in communication with the third groove section, and the second sliding groove is disconnected from the third groove section.
[0026] Optionally, the second chute comprises an arc-shaped section, the engaging portion is arranged on one side of the arc-shaped section, and the first tooth or the second tooth arranged on the engaging portion is coaxial with the arc-shaped section.
[0027] Optionally, a rack is arranged on the guide column, and a gear wheel that meshes with the rack is rotatably arranged on the sliding block.
[0028] Optionally, the cup holder is in the second state, and in the state in which the cup holder abuts against the panel, the cup holder extends into the storage hole and is flush with the surface of the panel.
[0029] In a second aspect, the application further provides a vehicle comprising the cup holder assembly.
[0030] The cup holder assembly provided by the application comprises a panel and a cup holder. The panel is provided with a storage hole that penetrates the top surface and the bottom surface of the panel. The cup holder is provided with a receiving groove. The cup holder is connected to the panel through a connecting structure, so that the cup holder can move in the direction of approaching or moving away from the panel. A turnover assembly is connected to the panel and the cup holder, so that the turnover assembly can drive the cup holder to turn over between a first state and a second state. When the cup holder is in the first state, the slot opening of the receiving groove faces upward and is directed toward the storage hole. When the cup holder is in the second state, the slot opening of the receiving groove faces downward and is directed away from the storage hole. When the cup holder is used, the cup holder is in the first state and the slot opening of the receiving groove is directed toward the storage hole. The cup holder abuts against the panel, and the slot opening of the receiving groove is aligned with the storage hole. At this time, the water cup can be placed into the receiving groove from the storage hole, and the cup holder plays a role of supporting the water cup. When the cup holder is not used, the cup holder is moved away from the panel, so that the cup holder has enough turnover space away from the panel. The turnover assembly is used to turn over the cup holder from the first state to the second state, so that the slot opening of the receiving groove on the cup holder faces away from the storage hole. At the same time, the cup holder is moved close to the panel until the cup holder abuts against the panel. Since the slot opening of the receiving groove on the cup holder faces away from the storage hole at this time, dust is prevented from entering the receiving groove on the cup holder through the storage hole. BRIEF DESCRIPTION OF DRAWINGS
[0031] In order to more clearly illustrate the technical solutions in the specific embodiments or prior art of the application, the following will briefly introduce the drawings needed to be used in the specific embodiments or prior art description. Obviously, the drawings described below are some embodiments of the application, and other drawings can also be obtained by those skilled in the art without any creative effort on the basis of these drawings.
[0032] Figure 1 FIG. 1 is a structural schematic diagram of a cup holder assembly according to an embodiment of the application;
[0033] Figure 2 FIG. 1 is a structural schematic diagram of a cup holder assembly according to an embodiment of the application;
[0034] Figure 3 A cup holder structure schematic view of a cup holder assembly according to an embodiment of the present application;
[0035] Figure 4 A slider structure schematic view of a cup holder assembly according to an embodiment of the present application;
[0036] Figure 5 A partial structure schematic view of a turnover assembly of a cup holder assembly according to an embodiment of the present application;
[0037] Figure 6 A schematic view of a reset member of a cup holder assembly according to an embodiment of the present application in a first position;
[0038] Figure 7 A schematic view of a reset member of a cup holder assembly according to an embodiment of the present application in a second position.
[0039] Legend of reference signs:
[0040] 1, panel; 2, cup holder; 3, turnover assembly; 31, engagement part; 32, turnover shaft; 33, movable member; 34, limiting member; 35, reset member; 4, connecting structure; 41, guide post; 42, slider; 5, storage hole; 6, accommodating groove; 7, elastic member; 8, first sliding groove; 81, first groove section; 82, second groove section; 83, third groove section; 9, second sliding groove; 10, first tooth; 11, second tooth; 12, hook; 13, hooking post; 14, first rotating hole; 15, first rotating shaft; 16, rack; 17, gear; 18, guide groove; 19, sliding groove; 20, second rotating hole; 21, second rotating shaft; 22, mounting plate. DETAILED DESCRIPTION
[0041] To make the objectives, technical solutions and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be described below in connection with the drawings in the embodiments of the present application. Obviously, the described embodiments are only some but not all of the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.
[0042] The embodiments of the present application will be described below in connection with Figures 1 to 7 .
[0043] According to the embodiments of the present application, in one aspect, a cup holder assembly is provided, such as Figures 1 to 4As shown, it comprises a panel 1, a cup holder 2 and a turnover assembly 3. The panel 1 is fixedly arranged, and the panel 1 is provided with a storage hole 5 which penetrates the top surface and the bottom surface of the panel 1. The cup holder 2 is provided with a receiving groove 6, and the cup holder 2 is connected with the panel 1 through a connecting structure 4 so that the cup holder 2 can move towards or away from the panel 1. The turnover assembly 3 is connected with the panel 1 and the cup holder 2, so that the turnover assembly 3 can drive the cup holder 2 to turn over, and the cup holder 2 can turn over from the first state to the second state or from the second state to the first state. When the cup holder 2 is in the first state, the slot of the receiving groove 6 faces upward and is directed to the storage hole 5, and when the cup holder 2 is in the second state, the slot of the receiving groove 6 faces downward and is directed away from the storage hole 5.
[0044] When the cup holder 2 is used, the cup holder 2 is in the first state and the slot of the receiving groove 6 is directed to the storage hole 5, and the cup holder 2 abuts against the panel 1 so that the slot of the receiving groove 6 is aligned with the storage hole 5 and communicates with the storage hole 5. At this time, the water cup can be placed from the storage hole 5 into the receiving groove 6, and the cup holder 2 serves as a support for the water cup. When the cup holder 2 is not used, the cup holder 2 is moved away from the panel 1 so that the cup holder 2 has enough space to turn over away from the panel 1. The turnover assembly 3 is used to turn over the cup holder 2 from the first state to the second state, so that the slot of the receiving groove 6 on the cup holder 2 is directed away from the storage hole 5. At the same time, the cup holder 2 is moved towards the panel 1 until the cup holder 2 abuts against the panel 1. Since the slot of the receiving groove 6 on the cup holder 2 is directed away from the storage hole 5 at this time, dust is prevented from entering the receiving groove 6 on the cup holder 2 through the storage hole 5.
[0045] When the cup holder 2 needs to be used again, the cup holder 2 is moved away from the panel 1 so that the cup holder 2 has enough space to turn over away from the panel 1. The turnover assembly 3 is used to turn over the cup holder 2 from the second state to the first state, so that the slot of the receiving groove 6 on the cup holder 2 is directed to the storage hole 5. At the same time, the cup holder 2 is moved towards the panel 1 until the cup holder 2 abuts against the panel 1.
[0046] At this time, the slot of the receiving groove 6 is directed to the storage hole 5, the cup holder 2 abuts against the panel 1 so that the slot of the receiving groove 6 is aligned with the storage hole 5 and communicates with the storage hole 5, and the water cup can be placed from the storage hole 5 into the receiving groove 6.
[0047] In an optional embodiment, as shown, Figure 2 The connecting structure 4 comprises a guide column 41 and a sliding block 42. The sliding block 42 is provided with a guide groove 18 which is sleeved on the guide column 41, so that the sliding block 42 can slide along the extension direction of the guide column 41. One end of the guide column 41 is connected with the panel 1, and the other end is arranged away from the panel 1, so that when the sliding block 42 slides along the guide column 41, the sliding block 42 can move towards or away from the panel 1. The guide column 41 can be arranged perpendicularly to the panel 1, so that when the sliding block 42 slides along the guide column 41, the sliding block 42 can move towards or away from the panel 1 in the vertical direction. The cup holder 2 is rotatably connected with the sliding block 42, and the cup holder 2 can turn over between the first state and the second state when the cup holder 2 rotates.
[0048] In this way, the guide post 41 plays a guiding role in the movement of the cup holder 2, avoiding the cup holder 2 from deviating during the movement.
[0049] In one embodiment, as shown in Figure 1 and Figure 2 The elastic member 7 can be a spring, one end of the elastic member 7 is connected with the cup holder 2, and the other end is connected with the panel 1. The elastic member 7 is pulled tight and the cup holder 2 is tightly pressed against the panel 1. When the cup holder 2 is moved away from the panel 1 by the force, the elastic member 7 is elongated. After the force on the cup holder 2 is removed, the elastic member 7 rebounds, causing the cup holder 2 to move close to the panel 1 until it is tightly pressed against the panel 1. Thus, the cup holder 2 is automatically reset.
[0050] In the combined example, one end of the elastic member 7 is connected with the sliding block 42, and the other end is connected with the panel 1. When the cup holder 2 is used, the cup holder 2 is in the first state and the slot opening of the accommodation groove 6 faces the storage hole 5. Under the tightening action of the elastic member 7, the cup holder 2 is tightly pressed against the panel 1, and the slot opening of the accommodation groove 6 is aligned and communicated with the storage hole 5. At this time, the water cup can be placed from the storage hole 5 into the accommodation groove 6, and the cup holder 2 plays a supporting role for the water cup. When the cup holder 2 is not used, press the cup holder 2 downward, so that the cup holder 2 moves away from the panel 1, to ensure that the cup holder 2 can be flipped relative to the sliding block 42. Remove the downward force on the cup holder 2, and use the flipping assembly 3 to flip the cup holder 2 to the second state, so that the slot opening of the accommodation groove 6 faces away from the storage hole 5. Under the rebounding action of the elastic member 7, the sliding block 42 slides close to the panel 1, and the cup holder 2 moves upward to be tightly pressed against the panel 1. At this time, since the slot opening of the accommodation groove 6 on the cup holder 2 faces downward, it avoids dust from entering the accommodation groove 6 from the storage hole 5.
[0051] For the rotatable connection of the cup holder 2 and the sliding block 42, a first rotating hole 14 is arranged on the cup holder 2, and a first rotating shaft 15 is arranged on the sliding block 42. The first rotating shaft 15 is inserted into the first rotating hole 14, so that the cup holder 2 and the sliding block 42 are rotatably connected, and the cup holder 2 can be flipped relative to the sliding block 42.
[0052] For the connection of the sliding block 42 and the panel 1 through the elastic member 7, two elastic members 7 can be arranged. Two hooks 12 are arranged on the bottom surface of the panel 1, and one hooking column 13 is arranged on each side of the sliding block 42. The first end of the elastic member 7 is correspondingly hooked on one hook 12, and the second end of the elastic member 7 is correspondingly hooked on one hooking column 13, so that the sliding block 42 is connected with the panel 1 through the elastic member 7. The number of elastic members 7 can be more than two according to the needs.
[0053] So that the sliding block 42 slides upward along the guide post 41 to close to the panel 1, and the cup holder 2 moves upward to close to and tightly press against the panel 1.
[0054] In optional embodiments, as shown in Figure 3 and Figure 4 The turnover assembly 3 comprises a meshing part 31 and a turnover shaft 32. The meshing part 31 is connected to the panel 1, and the first teeth 10 are arranged on the meshing part 31. The turnover shaft 32 is connected to the cup holder 2 on the side away from the slider 42, and the axis of the turnover shaft 32 is coaxial with the rotation center of the cup holder 2. The second teeth 11 are arranged on the turnover shaft 32. In a distance during the movement of the cup holder 2, the second teeth 11 on the turnover shaft 32 can engage with the first teeth 10 on the meshing part 31. During the engagement of the second teeth 11 and the first teeth 10, with the movement of the cup holder 2, the cup holder 2 rotates 180° around the axis of the turnover shaft 32 to turn from the first state to the second state or from the second state to the first state.
[0055] The engagement of the second teeth 11 and the first teeth 10 can occur during the movement of the cup holder 2 towards the panel 1, or during the movement of the cup holder 2 away from the panel 1.
[0056] It is worth noting that the first teeth 10 can also be arranged on the turnover shaft 32, and correspondingly, the second teeth 11 are arranged on the meshing part 31, as long as the first teeth 10 and the second teeth 11 can engage during the movement of the cup holder 2.
[0057] In further embodiments, as shown in Figure 3 and Figure 4 The turnover assembly 3 further comprises a movable part 33 and a limiting part 34. The movable part 33 can be plate-shaped. The bottom surface of the panel 1 is connected with a mounting plate 22, the movable part 33 is provided with a second rotating shaft 21, and the mounting plate 22 is provided with a second rotating hole 20. The second rotating shaft 21 is rotatably inserted into the second rotating hole 20. Thus, the movable part 33 is rotatably connected to the mounting plate 22, so that the movable part 33 is rotatably connected to the panel 1. The movable part 33 can rotate around the connection between the movable part 33 and the mounting plate 22, and the rotation direction of the movable part 33 is consistent with the turnover direction of the cup holder 2.
[0058] As shown in Figure 6 and Figure 7 The first sliding groove 8 and the second sliding groove 9 are formed in the movable part 33. The width of the first sliding groove 8 and the second sliding groove 9 is the same as the diameter of the turnover shaft 32, and the first end and the second end of the second sliding groove 9 are in communication with the first sliding groove 8. The turnover shaft 32 is inserted into the first sliding groove 8 and can slide along the first sliding groove 8. Since the first end and the second end of the second sliding groove 9 are in communication with the first sliding groove 8, the turnover shaft 32 can slide from the first sliding groove 8 into the second sliding groove 9 through the second end of the second sliding groove 9, and return to the first sliding groove 8 through the first end of the second sliding groove 9. The second sliding groove 9 is arranged in a curved structure to avoid interference between the second sliding groove 9 and the first sliding groove 8.
[0059] The limiting member 34 is movably arranged on the movable member 33, so that the turnover shaft 32 can move between the first position and the second position. When the cup holder 2 moves away from the panel 1, the turnover shaft 32 slides along the first sliding groove 8, and the limiting member 34 is switched from the first position to the second position during the sliding process, so as to ensure that the limiting member 34 does not interfere with the sliding of the turnover shaft 32 away from the panel 1 along the first sliding groove 8. When the cup holder 2 moves close to the panel 1, the turnover shaft 32 slides along the first sliding groove 8 close to the panel 1, and at this time, the limiting member 34 in the first position is limited with the turnover shaft 32, so that the turnover shaft 32 cannot slide along the first sliding groove 8 to enter the second sliding groove 9 through the second end of the second sliding groove 9, and then the turnover shaft 32 slides along the second sliding groove 9 to ensure that the cup holder 2 moves close to the panel 1, until the cup holder 2 moves to abut against the panel 1, and the turnover shaft 32 enters the first sliding groove 8 through the first end of the second sliding groove 9.
[0060] In this way, when the cup holder 2 is not used, the cup holder 2 is pressed downward, so that the cup holder 2 moves away from the panel 1 to move away from the panel 1, and the turnover shaft 32 slides away from the panel 1 along the first sliding groove 8. The downward force on the cup holder 2 is removed, and under the rebounding action of the elastic member 7 and the limiting action of the limiting member 34, the turnover shaft 32 enters the second sliding groove 9 close to the panel 1 through the second end of the second sliding groove 9. During the sliding process of the turnover shaft 32 along the second sliding groove 9, the second teeth 11 on the turnover shaft 32 are engaged with the first teeth 10 on the meshing part 31, so that the cup holder 2 rotates 180° around the axis of the turnover shaft 32 to flip from the first state to the second state. As the turnover shaft 32 slides along the second sliding groove 9 and enters the first sliding groove 8, the cup holder 2 moves to abut against the panel 1. At this time, the slot opening of the accommodating groove 6 on the cup holder 2 is downward, so as to avoid dust from entering the accommodating groove 6 through the storage hole 5.
[0061] When the cup holder 2 needs to be used continuously, the above-mentioned operation is repeated, and during the sliding process of the turnover shaft 32 along the second sliding groove 9, the second teeth 11 on the turnover shaft 32 are engaged with the first teeth 10 on the meshing part 31, so that the cup holder 2 rotates 180° around the axis of the turnover shaft 32 to flip from the second state to the first state. At this time, the slot opening of the accommodating groove 6 is aligned and communicated with the storage hole 5, so that the water cup can be placed from the storage hole 5 into the accommodating groove 6.
[0062] The limiting member 34 can be a lever, and a fixed rotating shaft is arranged on the movable member 33, and the first end of the lever is sleeved on the fixed rotating shaft, so that the second end of the lever can rotate around the fixed rotating shaft to rotate between the first position and the second position. When the lever rotates to the first position, the second end of the lever extends into the first sliding groove 8, and at this time, the turnover shaft 32 close to the panel 1 can contact the lever to form a limiting fit, so as to guide the turnover shaft 32 to slide into the second sliding groove 9. When the limiting member 34 rotates to the second position, the second end of the lever is away from the first sliding groove 8 and extends into the second sliding groove 9, so as to avoid interference with the sliding of the turnover shaft 32 along the first sliding groove 8.
[0063] In a further embodiment, as shown in Figures 5 to 7 Fig. 4, the flipping assembly 3 further comprises a reset member 35, which can be a torsion spring, connecting the movable member 33 and the push rod respectively. Under the elastic force of the torsion spring, the limiting member 34 rotates to the first position. When the force driving the limiting member 34 to rotate to the second position is removed, the limiting member 34 is pushed back to the first position by the elastic force of the torsion spring.
[0064] In this way, when the cup holder 2 moves away from the panel 1, the flipping shaft 32 slides along the first sliding groove 8, and the limiting member 34 is pushed by the flipping shaft 32 to rotate from the first position to the second position, and the torsion spring is compressed. When the flipping shaft 32 continues to slide away from the panel 1 and leaves the limiting member 34, the limiting member 34 is driven by the elastic force of the torsion spring to rotate from the second position to the first position.
[0065] In other embodiments, as shown in Figure 6 and Figure 7 Fig. 5, the first sliding groove 8 comprises a first groove section 81, a second groove section 82 and a third groove section 83. The first groove section 81, the second groove section 82 and the third groove section 83 are sequentially communicated, i.e. the first end of the second groove section 82 communicates with the first groove section 81, and the second end of the second groove section 82 communicates with the third groove section 83. The first end of the second sliding groove 9 communicates with the first groove section 81, and the second end of the second sliding groove 9 communicates with the third groove section 83.
[0066] Under the elastic force of the torsion spring, the limiting member 34 rotates to the first position and extends into the second groove section 82, so that the second sliding groove 9 communicates with the third groove section 83, and the second groove section 82 is disconnected from the third groove section 83. When the flipping shaft 32 slides away from the panel 1, the flipping shaft 32 slides along the first groove section 81, the second groove section 82 and the third groove section 83 in sequence. When the flipping shaft 32 slides and pushes the limiting member 34 to rotate to the second position and leaves the second groove section 82, the second groove section 82 communicates with the third groove section 83, the second sliding groove 9 is disconnected from the third groove section 83, and the flipping shaft 32 can slide from the first groove section 81 to the third groove section 83 through the second groove section 82. When the flipping shaft 32 slides to the third groove section 83, the flipping shaft 32 leaves the limiting member 34, and under the elastic force of the torsion spring, the limiting member 34 returns to the first position and extends into the second groove section 82, so that the second sliding groove 9 communicates with the third groove section 83, and the second groove section 82 is disconnected from the third groove section 83. Thereafter, when the flipping shaft 32 slides away from the panel 1, the flipping shaft 32 slides from the third groove section 83 into the second sliding groove 9 under the limiting action of the limiting member 34, so that the flipping shaft 32 can slide through the second sliding groove 9 and return to the first groove section 81 from the first end of the second sliding groove 9.
[0067] In other embodiments, as shown inFigure 6 and Figure 7 As shown in the figure, the second sliding groove 9 comprises an arc segment, and the engaging part 31 is arranged at one side of the arc segment between the arc segment and the second groove segment 82. The first tooth 10 is arranged at the side of the engaging part 31 close to the arc segment, and the first tooth 10 is coaxially arranged with the arc segment. At this time, the second tooth 11 is arranged on the turnover shaft 32. When the turnover shaft 32 slides along the arc segment of the second sliding groove 9, the second tooth 11 on the turnover shaft 32 engages with the first tooth 10 on the arc segment, so that the turnover shaft 32 rotates 180° and the cup holder 2 rotates 180° around the axis of the turnover shaft 32 with the sliding of the turnover shaft 32.
[0068] In the overall embodiment, when the cup holder 2 is not used, the cup holder 2 is pressed downward so as to move away from the panel 1. At this time, the sliding block 42 slides along the guide column 41 away from the panel 1 to elongate the elastic member 7, and the turnover shaft 32 successively slides along the first groove segment 81, the second groove segment 82 and the third groove segment 83 of the first sliding groove 8. When the turnover shaft 32 passes through the second groove segment 82, the limiting part 34 is first pushed to the second position, and then is pushed back to the first position by the torsion spring. Until the turnover column enters the third groove segment 83, the cup holder 2 is not pressed downward any more. Under the elastic recovery of the elastic member 7, the turnover shaft 32 moves close to the panel 1. Under the limiting action of the limiting part 34, the turnover shaft 32 enters the second sliding groove 9 to slide and move close to the panel 1. When the turnover shaft 32 slides in the arc segment of the second sliding groove 9, the first tooth 10 engages with the second tooth 11, so that the cup holder 2 rotates 180° around the axis of the turnover shaft 32 to turn from the first state to the second state, and at this time, the slot opening of the accommodating groove 6 faces the storage hole 5. After the turnover shaft 32 slides through the arc segment, the turnover shaft 32 continues to slide along the second sliding groove 9 to enter the first groove segment 81, and at this time, the cup holder 2 abuts against the panel 1, the slot opening of the accommodating groove 6 on the cup holder 2 faces the storage hole 5, and dust is prevented from entering the accommodating groove 6 from the storage hole 5.
[0069] When the cup holder 2 needs to be used again, the cup holder 2 is pressed downwardly so as to move away from the panel 1. At this time, the slider 42 slides along the guide column 41 to stretch the elastic member 7, and the turning shaft 32 slides along the first slot segment 81, the second slot segment 82 and the third slot segment 83 of the first sliding groove 8 in sequence. When the turning shaft 32 passes through the second slot segment 82, the limiting member 34 is first pushed to the second position and then pushed back to the first position by the torsion spring. Until the turning shaft 32 enters the third slot segment 83, the cup holder 2 is not pressed downwardly any more. Under the elastic recovery of the elastic member 7, the turning shaft 32 moves close to the panel 1. Under the limiting action of the limiting member 34, the turning shaft 32 enters the second sliding groove 9 to move close to the panel 1. When the turning shaft 32 slides in the arc segment of the second sliding groove 9, the first tooth 10 engages with the second tooth 11, so that the cup holder 2 rotates 180° around the axis of the turning shaft 32 to turn from the second state to the first state, at which time the slot opening of the accommodating groove 6 faces away from the placement hole 5. After the turning shaft 32 slides through the arc segment and continues to slide along the second sliding groove 9 to enter the first slot segment 81, the cup holder 2 abuts against the panel 1, the accommodating groove 6 on the cup holder 2 is aligned with and communicates with the placement hole 5, and the water cup can be placed from the placement hole 5 into the accommodating groove 6.
[0070] In optional embodiments, as shown in Figs. 1 and 2, a rack 16 is arranged on the guide column 41, and the extending direction of the rack 16 is consistent with the extending direction of the guide column 41. A sliding groove 19 for accommodating the rack 16 is formed in the inner side wall of a guide groove 18 on the slider 42. A gear 17 is rotatably arranged on the slider 42, so that the gear 17 can extend into the accommodating groove 6 and engage with the rack 16. Figure 2 Figure 4 In optional embodiments, as shown in Figs. 1 and 2, a rack 16 is arranged on the guide column 41, and the extending direction of the rack 16 is consistent with the extending direction of the guide column 41. A sliding groove 19 for accommodating the rack 16 is formed in the inner side wall of a guide groove 18 on the slider 42. A gear 17 is rotatably arranged on the slider 42, so that the gear 17 can extend into the accommodating groove 6 and engage with the rack 16.
[0071] In this way, when the slider 42 slides along the guide column 41, the rack 16 drives the gear 17 to rotate, thereby slowing down the moving speed of the slider 42 and further slowing down the moving speed of the cup holder 2.
[0072] In optional embodiments, after the cup holder 2 is turned from the first state to the second state, the cup holder 2 moves close to the panel 1 to abut against the panel 1, at which time the cup holder 2 extends into the placement hole 5 and is flush with the surface of the panel 1. Since the cup holder 2 is in the second state at this time, the slot opening of the accommodating groove 6 on the cup holder 2 faces away from the panel 1, the top of the cup holder 2 is a flat surface and is flush with the surface of the panel 1 at this time, and the top of the cup holder 2 and the surface of the panel 1 form a flat surface.
[0073] According to the embodiments of the present application, in another aspect, a vehicle is also provided, which comprises any of the cup holder assemblies. The technical effects of the vehicle are consistent with those of the cup holder assembly, and thus will not be described again.
[0074] Although the embodiments of the present application have been described with reference to the accompanying drawings, it will be understood that various modifications and changes can be made by those skilled in the art without departing from the spirit and scope of the present application, and such modifications and changes are intended to fall within the scope of the present application.
Claims
1. A cup saucer assembly, characterized by The utility model relates to a cup holder, and particularly relates to a cup holder with a turnover assembly. The cup holder comprises: a panel (1) provided with a storage hole (5); a cup holder (2) provided with a receiving groove (6), the cup holder (2) is connected with the panel (1) through a connecting structure (4), and the cup holder (2) can move in the direction of approaching or moving away from the panel (1); a turnover assembly (3) comprising: an engaging part (31) connected with the panel (1); a turnover shaft (32) connected with the cup holder (2), one of the turnover shaft (32) and the engaging part (31) is provided with a first tooth (10), and the other is provided with a second tooth (11), in the state that the cup holder (2) moves, the first tooth (10) can engage with the second tooth (11) to make the cup holder (2) turn over between a first state and a second state, when the cup holder (2) is in the first state, the opening of the receiving groove (6) faces the storage hole (5), when the cup holder (2) is in the second state, the opening of the receiving groove (6) faces away from the storage hole (5); a movable element (33) rotationally connected with the panel (1), the movable element (33) is provided with a first sliding groove (8) and a second sliding groove (9), the second sliding groove (9) is provided in a curved structure, both ends of the second sliding groove (9) are communicated with the first sliding groove (8), the turnover shaft (32) is slidably arranged in the first sliding groove (8) and can slide into the second sliding groove (9), in the state that the turnover shaft (32) slides along the first sliding groove (8) or the second sliding groove (9), the first tooth (10) can engage with the second tooth (11); 2. The cup saucer assembly of claim 1, wherein, a limiting element (34) arranged on the movable element (33), and the limiting element (34) is adapted to move between a first position and a second position, the limiting element (34) extends into the first sliding groove (8) in the state of being in the first position, and can form a limiting fit with the turnover shaft (32) moving towards the panel (1) to make the turnover shaft (32) enter the second sliding groove (9). The connecting structure (4) comprises: a guide column (41) connected with the panel (1) at one end; 3. The cup saucer assembly of claim 1, wherein, a sliding block (42), the cup holder (2) is rotationally connected on the sliding block (42), and the sliding block (42) is slidably connected with the guide column (41). Further comprising:
4. The cup saucer assembly of claim 1, wherein, a resilient element (7), the cup holder (2) is connected with the panel (1) through the resilient element (7), and the resilient element (7) is adapted to drive the cup holder (2) to approach the panel (1) to make the cup holder (2) abut against the panel (1). The turnover assembly (3) further comprises: a reset element (35) connected with the movable element (33) and the limiting element (34) respectively, and the reset element (35) is used for driving the limiting element (34) to switch from the second position to the first position.
5. The cup saucer assembly of claim 1, wherein, The first chute (8) comprises a first groove section (81), a second groove section (82) and a third groove section (83) which are sequentially communicated, a first end of the second chute (9) is communicated with the first groove section (81), and a second end of the second chute (9) is communicated with the third groove section (83), wherein In the state that the limiting piece (34) is in the first position, the limiting piece (34) extends into the second groove section (82), the second chute (9) is communicated with the third groove section (83), and the second groove section (82) is disconnected with the third groove section (83); In the state that the limiting piece (34) is in the second position, the limiting piece (34) extends into the second chute (9), the second groove section (82) is communicated with the third groove section (83), and the second chute (9) is disconnected with the third groove section (83).
6. The cup saucer assembly of claim 1, wherein, The second chute (9) comprises an arc-shaped section, the engaging part (31) is arranged on one side of the arc-shaped section, and the first tooth (10) or the second tooth (11) arranged on the engaging part (31) is coaxial with the arc-shaped section.
7. The cup saucer assembly of claim 2, wherein, A rack (16) is arranged on the guide column (41), and a gear (17) which is engaged with the rack (16) is rotatably arranged on the sliding block (42).
8. A vehicle characterized by comprising: The cup holder assembly of any one of claims 1-7. The cup holder assembly of any one of claims 1-7.
Citation Information
Patent Citations
Turnover type saucer structure capable of containing water cups of multiple specifications
CN110861557A
Novel multifunctional turnover type storage box
CN211001146U
Pressing pop-up type turnover cup stand
CN214189430U