Lock cylinder, clamping assembly, vehicle body floor and vehicle
By designing the lock cylinder and snap-fit components, the vehicle's internal functional modules can be easily disassembled and assembled, solving the problem of low space utilization and improving space flexibility and user experience.
Patent Information
- Application Number
- CN202410460311.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-16
- Publication Date
- 2025-10-24
AI Technical Summary
The fixed, non-removable functional modules inside the vehicle, such as tables and seats, result in an inflexible interior space layout, failing to meet the needs of various usage scenarios. Furthermore, the space occupied by the guide rails affects the layout of other functional modules, reducing the utilization rate of the interior space.
Design a lock cylinder and a snap-fit assembly. The snap-fit assembly is made easy to install and remove from the vehicle floor through sliding contact. The first and second shaft sections on the lock cylinder slide in contact with the protrusions and claws of the snap-fit assembly to achieve snap-fit and separation between the snap-fit assembly and the vehicle floor, which facilitates the installation and removal of functional modules.
It improves the flexibility and utilization of the vehicle's interior space, meets the needs of multiple usage scenarios, allows for quick assembly and disassembly of functional modules, provides a high-quality user experience, and does not take up extra space.
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Figure CN120830673A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of vehicles, in particular to a lock core, a clamping assembly, a vehicle body floor and a vehicle. BACKGROUND
[0002] In the related art, functional modules such as table plates, seats, auxiliary instrument panels and seats in vehicles are usually fixed on the vehicle body floor in a non-detachable manner, or are adjustable along the set direction position through guide rails. Among them, the former leads to insufficient flexibility in the layout of the vehicle interior, and also makes it inconvenient to newly install the functional modules purchased on the market in the vehicle body or replace the original functional modules, which cannot meet the multi-scene use requirements of the functional modules in the vehicle. The guide rails of the latter occupy the space in the vehicle, which easily affects the layout of other functional modules, resulting in low utilization rate of the space in the vehicle. SUMMARY
[0003] The present application aims to at least solve one of the technical problems in the related art to some extent.
[0004] To this end, an embodiment of the present application proposes a lock core, which makes the disassembly and assembly of the functional module in which the clamping piece is located on the vehicle body floor convenient, so as to make the utilization rate of the space in the vehicle high and meet the multi-scene use requirements of the functional modules.
[0005] An embodiment of the present application also proposes a clamping assembly, a vehicle body floor and a vehicle.
[0006] The lock core according to the embodiment of the present application comprises a first shaft section and a second shaft section connected in series, the first shaft section is adapted to be slidingly fitted in a through hole of a clamping piece, the clamping piece comprises a clamping jaw and a protrusion, the clamping jaw forms part of the wall surface of the through hole, and the protrusion is arranged on the side of the clamping jaw facing the axis of the through hole.
[0007] The first shaft section can be in sliding contact with the protrusion to facilitate the movement of the protrusion and the clamping jaw along the radial direction of the through hole, and the protrusion can be resiliently returned to the original position when the second shaft section and the protrusion are opposite in the radial direction of the through hole.
[0008] According to the lock cylinder of the embodiment of the present application, the diameter of the first shaft section is larger than that of the second shaft section, and the first shaft section is slidingly fitted in the through hole of the clamping member. When the first shaft section slides relative to the clamping member, the first shaft section can be in sliding contact with the protrusion, and then the protrusion and the pawl are moved outward in the radial direction of the through hole. At this time, the moved pawl can be clamped in the clamping groove on the inner wall surface of the clamping hole of the vehicle body floor, so as to realize the clamping of the clamping member and the clamping hole of the vehicle body floor. When the first shaft section is away from the protrusion and the second shaft section is opposite to the protrusion in the radial direction of the through hole, the second shaft section does not interfere with the protrusion, and then the protrusion and the pawl can be reset, so that the pawl is separated from the clamping groove, and the clamping member is separated from the vehicle body floor. Therefore, the clamping member can be installed and dismounted on the vehicle body floor by only sliding the lock cylinder in the through hole, and the clamping member is convenient to dismount on the vehicle body floor.
[0009] In some embodiments, the diameter of the first shaft section is d1, the diameter of the second shaft section is d2, and the minimum distance between the outer surface of the protrusion and the axis of the through hole is d0, and 0.5d1>d0>0.5d2.
[0010] The lock cylinder further comprises a third shaft section connected to one end of the second shaft section away from the first shaft section, and the diameter of the third shaft section is d3, and 0.5d3>d0.
[0011] In some embodiments, the lock cylinder further comprises a frustum section connected to one end of the first shaft section away from the second shaft section, and the maximum diameter of the frustum section is equal to the diameter of the first shaft section, and the diameter of the frustum section gradually decreases away from the first shaft section.
[0012] The clamping assembly according to the embodiment of the present application comprises a clamping member and a lock cylinder as described in the above embodiments, the lock cylinder is movably connected to the clamping member, and the clamping member can be clamped with the clamping hole on the vehicle body floor when the lock cylinder is moved to a set position relative to the clamping member, and the clamping member can be separated from the clamping hole when the lock cylinder is moved to other positions relative to the clamping member.
[0013] The clamping assembly according to the embodiment of the present application can realize the installation and dismounting of the clamping member on the vehicle body floor by moving the lock cylinder relative to the clamping member, and the clamping member is convenient to dismount on the vehicle body floor.
[0014] In some embodiments, the wall surface of the clamping hole is provided with a clamping groove, the clamping member is fitted in the clamping hole and has an initial position and a pressed position, the clamping member is slidable relative to the clamping hole in the initial position, and at least part of the clamping member is fitted in the clamping groove in the pressed position.
[0015] When the clamping member is in the pressed position, the lock cylinder can prevent the clamping member from resetting to the initial position.
[0016] In some embodiments, the card hole penetrates through the floor of the vehicle body along a first direction, the clamping member has a through hole penetrating through the clamping member along the first direction, the clamping member comprises at least two clamping claws, the at least two clamping claws are arranged along the circumference of the through hole and form part of the wall of the through hole, the clamping claws have the initial position and the pressed position, and the clamping claws are fitted in the card slot at the pressed position.
[0017] The lock core is slidably fitted in the through hole, and at least part of the lock core is clamped between the at least two clamping claws when the clamping claws are at the pressed position.
[0018] In some embodiments, the lock core has a clamping position and an unlocking position, the lock core can drive the clamping claws to move radially outward along the through hole when the lock core moves from the unlocking position to the clamping position, and the clamping claws are fitted in the card slot when the lock core is at the clamping position.
[0019] In some embodiments, each clamping claw is provided with a protrusion on the side facing the axis of the through hole, the protrusion is located in the through hole when the clamping claw is at the initial position, and the lock core comprises a first shaft segment which is slidably fitted in the through hole.
[0020] The first shaft segment is clamped between the at least two protrusions when the lock core is at the clamping position, and the clamping claws are at the pressed position.
[0021] The clamping claws are at the initial position when the lock core is at the unlocking position.
[0022] In some embodiments, the peripheral surface of the first shaft segment is provided with an annular groove, and at least part of the at least two protrusions is fitted in the annular groove when the lock core is at the clamping position.
[0023] In some embodiments, the peripheral surface of the lock core is provided with an avoidance groove which is connected with the first shaft segment, and the protrusion can be fitted in the avoidance groove to reset the clamping claw to the initial position.
[0024] In some embodiments, the lock core further comprises a second shaft segment and a third shaft segment which are connected, one end of the second shaft segment away from the third shaft segment is connected with the first shaft segment, the diameter of the third shaft segment is greater than the diameter of the second shaft segment and equal to the diameter of the first shaft segment, and the end surface of the first shaft segment facing the third shaft segment, the end surface of the third shaft segment facing the first shaft segment, and the peripheral surface of the second shaft segment jointly define the avoidance groove.
[0025] In some embodiments, the lock cylinder further comprises a frustum section connected to an end of the first shaft section away from the relief groove, the frustum section has a maximum diameter equal to the diameter of the first shaft section, the diameter of the frustum section gradually decreases in a direction away from the first shaft section, and the outer circumferential surface of the frustum section is in sliding fit with the protrusion to facilitate movement of the pawl between the initial position and the pressed position.
[0026] In some embodiments, when the pawl is in the initial position, the protrusion has first and second guide inclined surfaces opposite along the axial direction of the through hole, and the first shaft section is in sliding fit with any one of the first and second guide inclined surfaces to facilitate movement of the pawl between the initial position and the pressed position.
[0027] In some embodiments, the clamping member further comprises a base plate having first and second surfaces opposite along a first direction, the through hole penetrates through the base plate, and the pawl is arranged on the first surface of the base plate.
[0028] The base plate is connected to a body of a functional module, the body has a third surface opposite and spaced apart from the second surface along the first direction, and a relief space for insertion of the lock cylinder into the through hole is formed between the third surface and the second surface.
[0029] The vehicle body floor according to the embodiment of the present application comprises a plate body, the plate body is provided with a first mounting hole and a second mounting hole, the first mounting hole and the second mounting hole can accommodate the clamping assembly as described in the above embodiment, the auxiliary instrument panel can be detachably mounted on the first mounting hole by the clamping assembly to have a first mounting position, the auxiliary instrument panel can be detachably mounted on the second mounting hole by the clamping assembly to have a second mounting position, and at least part of the auxiliary instrument panel in the first mounting position does not coincide with the auxiliary instrument panel in the second mounting position.
[0030] According to the vehicle body floor of the embodiment of the present application, the first mounting hole and the second mounting hole are arranged on the plate body, the auxiliary instrument panel can be detachably connected to the first mounting hole or the second mounting hole by the clamping assembly to be installed at different positions on the plate body, so that the auxiliary instrument panel is arranged flexibly in the vehicle interior space to meet the use requirements in multiple scenes. Moreover, when the auxiliary instrument panel is not used, the auxiliary instrument panel can be detached from the plate body, the first mounting hole and the second mounting hole vacated do not occupy the vehicle interior space, and can be connected to other functional modules, so that the utilization rate of the vehicle interior space is high.
[0031] In some embodiments, the first mounting hole and the second mounting hole each comprise at least two clamping holes for clamping the auxiliary instrument panel, wherein,
[0032] At least one of the clamping holes in the first mounting hole is the same as at least one of the clamping holes in the second mounting hole, or any of the clamping holes in the first mounting hole is arranged at intervals with any of the clamping holes in the second mounting hole.
[0033] In some embodiments, the vehicle body floor further comprises a plug connected to the plate body and closing the unused clamping hole.
[0034] The vehicle according to the embodiments of the present application comprises the lock cylinder according to the above embodiments, or the clamping assembly according to the above embodiments, or the vehicle body floor according to the above embodiments.
[0035] The technical advantages of the vehicle according to the embodiments of the present application are the same as those of the vehicle body floor, the lock cylinder and the clamping assembly according to the above embodiments, which are not repeated here. BRIEF DESCRIPTION OF DRAWINGS
[0036] Figure 1 is a schematic view of a vehicle body floor according to an embodiment of the present application.
[0037] Figure 2 is a schematic view of a vehicle body floor and a functional module in a vehicle according to an embodiment of the present application.
[0038] Figure 3 is a schematic view of a clamping member in a functional module in a vehicle according to an embodiment of the present application.
[0039] Figure 4 is a sectional view of a functional module in a vehicle according to an embodiment of the present application at a clamping member.
[0040] Figure 5 is a sectional view of a vehicle body floor and a functional module in a vehicle according to an embodiment of the present application at a clamping hole.
[0041] Figure 6 is a schematic view of a vehicle according to an embodiment of the present application at a clamping hole, with a lock cylinder not engaged in a through hole.
[0042] Figure 7 is another schematic view of a vehicle according to an embodiment of the present application at a clamping hole, with a lock cylinder in a clamping position.
[0043] Figure 8 is still another schematic view of a vehicle according to an embodiment of the present application at a clamping hole, with a lock cylinder in an unlocking position.
[0044] REFERENCE SIGNS:
[0045] 1, plate body; 11, first mounting hole; 111, clamping hole; 1111, clamping groove; 12, second mounting hole; 2, functional module; 21, clamping piece; 211, through hole; 212, clamping jaw; 213, protrusion; 2131, first guide inclined surface; 2132, second guide inclined surface; 214, base plate; 2141, first surface; 2142, second surface; 22, body; 221, third surface; 222, avoiding space; 3, lock cylinder; 31, first shaft section; 311, annular groove; 32, second shaft section; 321, avoiding groove; 33, third shaft section; 34, frustum section. DETAILED DESCRIPTION
[0046] Embodiments of the present application are described in detail below with reference to examples shown in the attached drawings. The embodiments described below by reference to the drawings are exemplary and are intended to explain the present application, and cannot be understood as limiting the present application.
[0047] The following describes Figures 1-8 a lock cylinder 3, a clamping assembly, a vehicle body floor and a vehicle according to embodiments of the present application.
[0048] The lock cylinder 3 according to embodiments of the present application comprises a first shaft section 31 and a second shaft section 32 connected together. The first shaft section 31 is adapted to be slidingly fitted within the through hole 211 of the clamping piece 21, the clamping piece 21 comprising a clamping jaw 212 and a protrusion 213, the clamping jaw 212 shaping part of the wall surface of the through hole 211, and the protrusion 213 being disposed on the side of the clamping jaw 212 facing the axis of the through hole 211. The first shaft section 31 is capable of sliding contact with the protrusion 213 so as to push the protrusion 213 and the clamping jaw 212 to move radially outwardly along the through hole 211, and the protrusion 213 is capable of resiliently returning to the original position when the second shaft section 32 is radially opposite to the protrusion 213 in the through hole 211.
[0049] According to the lock cylinder 3, the diameter of the first shaft section 31 is greater than the diameter of the second shaft section 32, and the first shaft section 31 is slidingly fitted in the through hole 211 of the clamping piece 21. By setting 0.5d1>d0, when the first shaft section 31 slides relative to the clamping piece 21, the first shaft section 31 can be in sliding contact with the protrusion 213, and the protrusion 213 and the clamping jaw 212 can be moved outward in the radial direction of the through hole 211. At this time, the moved clamping jaw 212 can be clamped in the clamping groove 1111 on the inner wall surface of the clamping hole 111 of the vehicle body floor, so as to realize the clamping of the clamping piece 21 and the clamping hole 111 of the vehicle body floor. By setting d0>0.5d2, when the first shaft section 31 is away from the protrusion 213 and the second shaft section 32 is opposite to the protrusion 213 in the radial direction of the through hole 211, the second shaft section 32 will not interfere with the protrusion 213, and the protrusion 213 and the clamping jaw 212 can be reset, so that the clamping jaw 212 is separated from the clamping groove 1111, and the clamping piece 21 is separated from the vehicle body floor. Therefore, only by sliding the lock cylinder 3 in the through hole 211, the installation and disassembly of the clamping piece 21 on the vehicle body floor can be completed, and the disassembly of the clamping piece 21 on the vehicle body floor is convenient.
[0050] In some embodiments, as shown in FIG. 1, Figure 8 the diameter of the first shaft section 31 is d1, the diameter of the second shaft section 32 is d2, the minimum distance between the outer surface of the protrusion and the axis of the through hole 211 is d0, and 0.5d1>d0>0.5d2. The lock cylinder 3 further comprises a third shaft section 33 connected to one end of the second shaft section 32 away from the first shaft section 31, and the diameter of the third shaft section 33 is d3, and 0.5d3>d0.
[0051] At this time, when the lock cylinder 3 moves to the position where the second shaft section 32 is opposite to the protrusion 213 in the radial direction of the through hole 211, under the interference of the protrusion 213, the first shaft section 31 and the third shaft section 33 of the lock cylinder 3 will not be pulled out of the through hole 211 without external force, thereby effectively avoiding the lock cylinder 3 from being completely separated from the clamping piece 21 and causing the loss of the clamping piece 21.
[0052] Specifically, the diameter of the first shaft section 31 is equal to the diameter of the third shaft section 33.
[0053] In some embodiments, as shown in FIG. 1, Figures 6-8 the lock cylinder 3 further comprises a frustum section 34 connected to one end of the first shaft section 31 away from the second shaft section 32, the maximum diameter of the frustum section 34 is equal to the diameter of the first shaft section 31, and the diameter of the frustum section 34 gradually decreases away from the first shaft section 31.
[0054] At this time, the minimum diameter of the frustum segment 34 is smaller than the diameter of the through hole 211, and the insertion operation of the lock core 3 into the through hole 211 by the frustum segment 34 is convenient. Meanwhile, when the first shaft segment 31 moves towards the direction close to the protrusion 213, the outer peripheral surface of the frustum segment 34 first slides with the protrusion 213, and under the transition of the frustum segment 34, the pawl 212 can be more reliably pressed to move radially outward of the through hole 211.
[0055] The clamping assembly according to the embodiment of the present application comprises the clamping piece 21 and the lock core 3 as described above, the lock core 3 is movably connected with the clamping piece 21, and the clamping piece 21 can be clamped with the clamping hole 111 on the vehicle body floor when the lock core 3 moves to a set position relative to the clamping piece 21, and the clamping piece 21 can be disengaged from the clamping hole 111 when the lock core 3 moves to other positions relative to the clamping piece 21.
[0056] According to the clamping assembly of the embodiment of the present application, the installation and disassembly of the clamping piece 21 on the vehicle body floor can be completed by moving the lock core 3 relative to the clamping piece 21, and the disassembly of the clamping piece 21 on the vehicle body floor is convenient.
[0057] In some embodiments, as shown in Figure 6 and Figure 7 , the wall surface of the clamping hole 111 is provided with a clamping groove 1111. The clamping piece 21 is fitted in the clamping hole 111 and has an initial position and a pressed position, the clamping piece 21 is slidable relative to the clamping hole 111 in the initial position, and at least part of the clamping piece 21 is fitted in the clamping groove 1111 in the pressed position. When the clamping piece 21 is in the pressed position, the lock core 3 can prevent the clamping piece 21 from resetting to the initial position.
[0058] That is, the clamping piece 21 is connected with the lock core 3 to make at least part of the clamping piece 21 fit in the clamping groove 1111, so as to realize the clamping of the clamping piece 21 with the corresponding clamping hole 111. When it is necessary to remove the clamping piece 21, the lock core 3 is only needed to be disengaged from the clamping piece 21, so that the lock core 3 releases the compression on at least part of the clamping piece 21, and at least part of the clamping piece 21 is disengaged from the clamping groove 1111, so as to facilitate the clamping piece 21 to be disengaged from the clamping hole 111 as a whole, and the disassembly of the functional module 2 where the clamping piece 21 is located is rapid, and the user experience is high.
[0059] Specifically, as shown in Figure 2 , the first mounting hole 11 and the second mounting hole 12 each comprise two clamping holes 111, and the functional module 2 comprises two clamping pieces 21, and the two clamping pieces 21 are clamped with the two clamping holes 111 respectively.
[0060] In some embodiments, as shown in Figures 3-8As shown, the clamping hole 111 penetrates the plate body 1 of the vehicle body floor in the first direction, the clamping piece 21 has a through hole 211 penetrating the clamping piece 21 in the first direction, the clamping piece 21 includes at least two clamping claws 212, the at least two clamping claws 212 are arranged at intervals along the circumference of the through hole 211 and form part of the wall surface of the through hole 211, the clamping claw 212 has an initial position and a pressed position, and the clamping claw 212 is fitted in the clamping groove 1111 in the pressed position. The lock core 3 is slidably fitted in the through hole 211, and at least part of the lock core 3 is clamped between the at least two clamping claws 212 when the clamping claw 212 is in the pressed position.
[0061] That is, when the at least two clamping claws 212 of the clamping piece 21 are fitted in the clamping hole 111, the clamping piece 21 is clamped in the clamping hole 111 by inserting the lock core 3 into the through hole 211 and pressing the clamping claw 212, so that the clamping claw 212 is at least partially deformed and pressed into the clamping groove 1111, thereby achieving the clamping of the clamping claw 212 and the clamping hole 111. At this time, when it is necessary to remove the clamping piece 21, the lock core 3 is only needed to be moved so that the lock core 3 releases the pressure on the clamping claw 212, and the clamping claw 212 will rebound to the initial position, and the clamping claw 212 can be directly pulled out of the clamping hole 111, so that the disassembly of the functional module 2 where the clamping piece 21 is located is rapid, and the user experience is high.
[0062] Specifically, the clamping claw 212 can have two, three or four, and when the clamping claw 212 has four, the four clamping claws 212 are arranged at equal intervals along the circumference of the through hole 211. The opening of the clamping groove 1111 is formed on the bottom surface of the plate body 1, the clamping groove 1111 is a ring-shaped groove 311, and the bottom surface of the clamping groove 1111 is a limiting surface for preventing the clamping claw 212 from being pulled out of the clamping groove 1111. When the clamping claw 212 is clamped with the clamping hole 111, part of the functional module 2 where the clamping piece 21 is located abuts against the top surface of the plate body 1.
[0063] In some embodiments, as shown, Figure 7 The lock core 3 has a clamping position and an unlocking position, and the lock core 3 can drive the clamping claw 212 to move outward along the radial direction of the through hole 211 when the lock core 3 moves from the unlocking position to the clamping position, and the clamping claw 212 is fitted in the clamping groove 1111 when the lock core 3 is in the clamping position.
[0064] That is, when the lock core 3 slides along the axial direction of the through hole 211 from the unlocking position to the clamping position, the lock core 3 and the clamping claw 212 slide relative to each other, the clamping claw 212 deforms outward along the radial direction of the through hole 211 under the pressure of the lock core 3, and part of the clamping claw 212 is fitted in the clamping groove 1111 when the lock core 3 is in the clamping position, so as to complete the clamping of the clamping claw 212 and the clamping hole 111. That is, the clamping and unlocking of the clamping piece 21 and the clamping hole 111 can be achieved only by sliding the lock core 3 in the through hole 211, and the disassembly of the functional module 2 on the plate body 1 is convenient.
[0065] In some embodiments, as shown, Figures 6-8As shown, each claw 212 is provided with a protrusion 213 on the side facing the axis of the through hole 211, and the protrusion 213 is located in the through hole 211 when the claw 212 is in the initial position. The lock core 3 comprises a first shaft section 31 which is slidingly fitted in the through hole 211. When the lock core 3 is in the clamping position, the first shaft section 31 is clamped between the at least two protrusions 213, and the claw 212 is in the pressed position. When the lock core 3 is in the unlocking position, the claw 212 is in the initial position.
[0066] When the first shaft section 31 slides in the through hole 211 to the unlocking position, the first shaft section 31 is arranged in the first direction with the protrusions 213 and the claws 212, and the claws 212 remain in the initial position. When the first shaft section 31 moves from the unlocking position to the clamping position, the first shaft section 31 slidingly cooperates with the protrusions 213, and the first shaft section 31 pushes the protrusions 213 to move outward along the radial direction of the through hole 211 until the first shaft section 31 moves to the clamping position, and the part of the claw 212 connected with the protrusion 213 extends into the clamping groove 111 under the pressure of the protrusion 213, thereby completing the clamping of the claw 212 with the clamping hole 111 and the installation of the functional module 2 on the plate body 1. At this time, the functional module 2 can be detached only by moving the first shaft section 31 to the unlocking position in the opposite direction.
[0067] In some embodiments, as shown in Figure 6 and Figure 7 The peripheral surface of the first shaft section 31 is provided with an annular groove 311, and at least part of the at least two protrusions 213 cooperates in the annular groove 311 when the lock core 3 is in the clamping position.
[0068] The cooperation of at least part of the protrusions 213 with the annular groove 311 makes the force required for the first shaft section 31 to move from the clamping position to the unlocking position greater, thereby effectively avoiding the functional module 2 from being mistakenly detached from the plate body 1 due to the mistaken switching of the first shaft section 31 to the unlocking position, and the installation reliability of the functional module 2 on the plate body 1 is higher.
[0069] In some embodiments, as shown in Figure 8 The outer peripheral surface of the lock core 3 is provided with an avoiding groove 321 which is engaged with the first shaft section 31, and the protrusion 213 can be cooperated in the avoiding groove 321 to facilitate the reset of the claw 212 to the initial position.
[0070] That is, when the lock core 3 slides to the position where the avoiding groove 321 is opposite to the protrusion 213, the protrusion 213 cooperates in the avoiding groove 321, and the claw 212 rebounds to the initial position. At this time, the claw 212 can be directly pulled out of the clamping hole 111, and the functional module 2 can be detached.
[0071] In some embodiments, as shown in Figure 8As shown, the lock core 3 also includes a second shaft segment 32 and a third shaft segment 33 connected to each other. The end of the second shaft segment 32 facing away from the third shaft segment 33 is connected to the first shaft segment 31. The diameter of the third shaft segment 33 is greater than the diameter of the second shaft segment 32 and equal to the diameter of the first shaft segment 31. The end surface of the first shaft segment 31 facing the third shaft segment 33, the end surface of the third shaft segment 33 facing the first shaft segment 31 and the outer peripheral surface of the second shaft segment 32 jointly define an avoidance groove 321.
[0072] That is, when the first shaft segment 31 is in the unlocked position, the protrusion 213 is located in the avoidance groove 321 between the first shaft segment 31 and the third shaft segment 33. Under the limitation of the first shaft segment 31 and the third shaft segment 33, when the functional module 2 is detached, the lock core 3 will not disengage from the through hole 211, thereby effectively reducing the risk of losing the lock core 3.
[0073] In some embodiments, as Figure 6 As shown, the lock core 3 also includes a conical section 34, which is connected to the end of the first shaft section 31 away from the avoidance groove 321. The maximum diameter of the conical section 34 is equal to the diameter of the first shaft section 31. The diameter of the conical section 34 gradually decreases in the direction away from the first shaft section 31. The outer peripheral surface of the conical section 34 slides with the protrusion 213 to facilitate the movement of the claw 212 between the initial position and the compressed position.
[0074] At this point, the minimum diameter of the frustum section 34 is smaller than the diameter of the through hole 211, making it easier to insert the lock cylinder 3 into the through hole 211 via the frustum section 34. Furthermore, when the first shaft section 31 moves toward the clamping position, the outer circumference of the frustum section 34 more easily slides with the protrusion 213, thereby more reliably pressing the claw 212 toward the compressed position.
[0075] like Figure 8 As shown, when the claw 212 is in the initial position, the protrusion 213 has a first guiding bevel 2131 and a second guiding bevel 2132 that are opposite to each other along the axial direction of the through hole 211. The first shaft section 31 slides with either the first guiding bevel 2131 or the second guiding bevel 2132 to facilitate movement of the claw 212 between the initial position and the compressed position. This ensures that when the first shaft section 31 moves between the clamping position and the unlocking position, the switching of the claw 212 between the initial position and the compressed position is more reliably achieved.
[0076] In some embodiments, as Figure 4As shown, the clamping piece 21 further comprises a base plate 214 having a first surface 2141 and a second surface 2142 opposite to each other in the first direction, the through hole 211 penetrates the base plate 214, and the clamping jaw 212 is arranged on the first surface 2141 of the base plate 214. The base plate 214 is connected with the body 22 of the functional module 2, and the body 22 has a third surface 221 opposite to the second surface 2142 in the first direction and spaced apart from the second surface 2142, and the third surface 221 and the second surface 2142 form a relief space 222 for inserting the lock cylinder 3 into the through hole 211.
[0077] The design of the relief space 222 facilitates the user to insert the lock cylinder 3 into the through hole 211 from the second surface 2142. Meanwhile, the design of the third surface 221 also avoids the direct exposure of the through hole 211 to the outside, thereby effectively avoiding the lock cylinder 3 in the through hole 211 from being mistakenly touched to cause the clamping jaw 212 to release the clamping with the clamping hole 111, and further ensuring the installation reliability of the functional module 2 on the panel body 1.
[0078] The panel body 1 is provided with the first mounting hole 11 and the second mounting hole 12, the clamping assembly as described in the above embodiment can be accommodated in the first mounting hole 11 and the second mounting hole 12, the auxiliary instrument panel can be detachably installed in the first mounting hole 11 by the clamping assembly to have a first installation position, the auxiliary instrument panel can be detachably installed in the second mounting hole 12 by the clamping assembly to have a second installation position, and at least part of the auxiliary instrument panel in the first installation position does not coincide with the auxiliary instrument panel in the second installation position.
[0079] According to the panel body 1 of the embodiment of the present application, the first mounting hole 11 and the second mounting hole 12 are arranged on the panel body 1, the auxiliary instrument panel can be detachably connected with the first mounting hole 11 or the second mounting hole 12 by the clamping assembly to be installed at different positions on the panel body 1, so that the auxiliary instrument panel is arranged flexibly in the vehicle interior space and meets the use requirements in multiple scenes. Moreover, when the auxiliary instrument panel is not used, the auxiliary instrument panel can be detached from the panel body 1, and the first mounting hole 11 and the second mounting hole 12 vacated will not occupy the vehicle interior space and can be connected with other functional modules 2, so that the utilization rate of the vehicle interior space is high.
[0080] It should be noted that the number of the first mounting hole 11 and the second mounting hole 12 is not limited in the embodiment and can be one or more. In addition, the above-mentioned multiple scenes refer to different positions of the auxiliary instrument panel installed on the panel body 1, which can play different functions to meet different scene requirements.
[0081] In addition, the user can install other functional modules 2 such as a table board and a refrigerator at the first mounting hole 11 and the second mounting hole 12 after detaching the auxiliary instrument panel.
[0082] In some embodiments, the first mounting hole 11 and the second mounting hole 12 each include at least two clamping holes 111 for clamping with the sub-instrument panel. Among them, at least one clamping hole 111 in the first mounting hole 11 is the same as at least one clamping hole 111 in the second mounting hole 12.
[0083] That is, the sub-instrument panel can be clamped with at least two clamping holes 111 to achieve installation on the panel body 1, thereby making the disassembly of the sub-instrument panel and the panel body 1 convenient and improving the user experience. Among them, at least one clamping hole 111 in the first mounting hole 11 is the same as at least one clamping hole 111 in the second mounting hole 12, at this time, on the basis that the total number of the first mounting hole 11 and the second mounting hole 12 is certain and the number of clamping holes 111 included in each of the first mounting hole 11 and the second mounting hole 12 is certain, the number of clamping holes 111 on the panel body 1 can be designed to be less, and the manufacturing cost of the panel body 1 is lower. In other words, on the basis that the number of clamping holes 111 is certain, the total number of the first mounting hole 11 and the second mounting hole 12 is more, and the space utilization rate in the vehicle body is higher.
[0084] Alternatively, any clamping hole 111 in the first mounting hole 11 and any clamping hole 111 in the second mounting hole 12 are arranged at intervals. That is, the first mounting hole 11 and the second mounting hole 12 are independently provided and do not share the clamping hole 111, the independence of the first mounting hole 11 and the second mounting hole 12 is stronger, and the first mounting hole 11 and the second mounting hole 12 can be respectively processed and formed and respectively connected with different sub-instrument panels, and the processing difficulty of the first mounting hole 11 and the second mounting hole 12 is lower.
[0085] In some embodiments, the vehicle body floor further includes a plug, which is connected with the panel body 1 and closes the unused clamping hole 111.
[0086] The plug plugs the unused clamping hole 111 to avoid the clamping hole 111 exposed, which improves the appearance of the interior of the vehicle body and improves the structural strength of the vehicle body at the clamping hole 111.
[0087] The vehicle according to the embodiment of the application includes the lock cylinder according to the above-mentioned embodiment or the clamping assembly according to the above-mentioned embodiment or the vehicle body floor according to the above-mentioned embodiment.
[0088] The technical advantages of the vehicle according to the embodiment of the application are the same as those of the vehicle body floor, the lock cylinder and the clamping assembly according to the above-mentioned embodiments, which will not be repeated here.
[0089] In the description of the application, it is to be understood that the orientations or positional relationships indicated by the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like are based on the orientations or positional relationships shown in the drawings, and are only for the convenience of describing the application and simplifying the description, and do not indicate or imply that the devices or elements indicated thereby must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the application.
[0090] In addition, the terms "first", "second" are only for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the technical features indicated thereby. Therefore, the features defined with "first", "second" can explicitly or implicitly include at least one of the features. In the description of the application, the meaning of "a plurality of" is at least two, such as two, three, etc., unless otherwise explicitly specified and limited.
[0091] In the present application, unless otherwise explicitly specified and limited, the terms "mounting", "connecting", "connecting", "fixing" and the like should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or it can be integrated; it can be mechanically connected, or it can be electrically connected or in communication with each other; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the internal communication or interaction relationship of two elements, unless otherwise explicitly limited. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0092] In the present application, unless otherwise explicitly specified and limited, the first feature is "on" or "under" the second feature, which can be direct contact between the first and second features, or indirect contact between the first and second features through an intermediate medium. Moreover, the first feature "above", "above" and "above" the second feature can be directly above or obliquely above the first feature, or only indicate that the horizontal height of the first feature is higher than that of the second feature. The first feature "below", "below" and "below" the second feature can be directly below or obliquely below the first feature, or only indicate that the horizontal height of the first feature is less than that of the second feature.
[0093] In this disclosure, the terms "one embodiment", "some embodiments", "an example", "a specific example", or "some examples" mean that a particular feature, structure, material, or characteristic is included in at least one embodiment or example of the present disclosure. The illustrative appearances of the above-mentioned terms in various places in the specification are not necessarily referred to the same embodiment or example. Moreover, the particular features, structures, materials, or characteristics can be combined in any suitable manner in one or more embodiments or examples. Furthermore, the terms "comprising", "containing", "having" or "including" and their derivatives, mean "including but not limited to". The terms "coupled" and "connected", along with their derivatives, mean "directly or indirectly connected".
[0094] Although the above-mentioned embodiments have been shown and described, it is to be understood that the above-mentioned embodiments are exemplary, and are not to be construed as limiting the present disclosure, and the changes, modifications, replacements and variations made by those skilled in the art to the above-mentioned embodiments are within the protection scope of the present disclosure.
Claims
1. A lock cylinder, characterized in that The lock cylinder comprises a first shaft section and a second shaft section connected to each other, the first shaft section is adapted to be slidingly fitted in a through hole of a clamping member, the clamping member comprises a clamping jaw and a protrusion, the clamping jaw is shaped to form part of the wall of the through hole, and the protrusion is arranged on the side of the clamping jaw facing the axis of the through hole; The first shaft section is in sliding contact with the protrusion to facilitate the protrusion and the clamping jaw to move radially outward along the through hole, and the protrusion can be resiliently returned when the second shaft section is radially opposite to the protrusion in the through hole.
2. The lock cylinder of claim 1, wherein The diameter of the first shaft section is d1, the diameter of the second shaft section is d2, and the minimum distance between the outer surface of the protrusion and the axis of the through hole is d0, 0.5d1>d0>0.5d2; The lock cylinder further comprises a third shaft section connected to the end of the second shaft section away from the first shaft section, and the diameter of the third shaft section is d3, 0.5d3>d0.
3. The lock cylinder of claim 1, wherein, The lock cylinder further comprises a frustum section connected to the end of the first shaft section away from the second shaft section, the maximum diameter of the frustum section is equal to the diameter of the first shaft section, and the diameter of the frustum section gradually decreases away from the first shaft section.
4. A snap-fit assembly, characterized by The lock cylinder comprises a clamping member and a lock cylinder according to any one of claims 1-3, the lock cylinder is movably connected to the clamping member, the clamping member can be clamped with a clamping hole on the floor of the vehicle body when the lock cylinder moves to a set position relative to the clamping member, and the clamping member can be separated from the clamping hole when the lock cylinder moves to other positions relative to the clamping member.
5. The card interface assembly of claim 4, wherein, The wall of the clamping hole is provided with a clamping groove, the clamping member is fitted in the clamping hole and has an initial position and a pressed position, the clamping member is slidable relative to the clamping hole in the initial position, and at least part of the clamping member is fitted in the clamping groove in the pressed position; When the clamping member is in the pressed position, the lock cylinder can prevent the clamping member from returning to the initial position.
6. The card interface assembly of claim 5, wherein, The clamping hole penetrates the floor of the vehicle body in a first direction, the clamping member has a through hole penetrating the clamping member in the first direction, the clamping member comprises at least two clamping jaws, the at least two clamping jaws are arranged at intervals along the circumference of the through hole and form part of the wall of the through hole, the clamping jaws have the initial position and the pressed position, and the clamping jaws are fitted in the clamping groove in the pressed position; The lock cylinder is slidingly fitted in the through hole, and at least part of the lock cylinder is clamped between the at least two clamping jaws when the clamping jaws are in the pressed position.
7. The card interface assembly of claim 6, wherein, The lock cylinder has a clamping position and an unlocking position, the lock cylinder can drive the clamping jaws to move radially outward along the through hole when the lock cylinder moves from the unlocking position to the clamping position, and the clamping jaws are fitted in the clamping groove when the lock cylinder is in the clamping position.
8. The card interface assembly of claim 7, wherein, Each clamping jaw is provided with a protrusion on the side facing the axis of the through hole, the protrusion is located in the through hole when the clamping jaw is in the initial position, and the lock cylinder comprises a first shaft section slidingly fitted in the through hole. When the lock core is in the clamping position, the first shaft segment is clamped between the at least two protrusions, and the pawl is in the pressed position. When the lock core is in the unlocking position, the pawl is in the initial position.
9. The card interface assembly of claim 8, wherein, The first shaft segment is provided with an annular groove on its circumferential surface, and when the lock core is in the clamping position, at least part of the at least two protrusions is fitted in the annular groove.
10. The card interface assembly of claim 8, wherein, The lock core is provided with an avoiding groove on its circumferential surface, which is connected with the first shaft segment, and the protrusions can be fitted in the avoiding groove to facilitate the pawl to reset to the initial position.
11. The card interface assembly of claim 10, wherein, The lock core further comprises a second shaft segment and a third shaft segment connected in sequence, one end of the second shaft segment away from the third shaft segment is connected with the first shaft segment, the diameter of the third shaft segment is greater than that of the second shaft segment and equal to that of the first shaft segment, and the end surface of the first shaft segment towards the third shaft segment, the end surface of the third shaft segment towards the first shaft segment and the circumferential surface of the second shaft segment jointly define the avoiding groove.
12. The card interface assembly of claim 10, wherein, The lock core further comprises a frustum segment, the frustum segment is connected with one end of the first shaft segment away from the avoiding groove, the maximum diameter of the frustum segment is equal to that of the first shaft segment, the diameter of the frustum segment gradually decreases in the direction away from the first shaft segment, and the circumferential surface of the frustum segment is in sliding fit with the protrusions to facilitate the pawl to move between the initial position and the pressed position.
13. The card interface assembly of claim 8, wherein, When the pawl is in the initial position, the protrusions have first and second guide inclined surfaces opposite along the axial direction of the through hole, and the first shaft segment is in sliding fit with any one of the first and second guide inclined surfaces to facilitate the pawl to move between the initial position and the pressed position.
14. The card coupling assembly of claim 6, wherein, The clamping component further comprises a base plate, the base plate has first and second surfaces opposite along a first direction, the through hole penetrates through the base plate, and the pawl is arranged on the first surface of the base plate. The base plate is connected with a body of a functional module, the body has a third surface opposite and spaced apart from the second surface along the first direction, and the third surface and the second surface form an avoiding space for the lock core to be inserted into the through hole.
15. A vehicle body floor, characterised in that, The clamping component comprises: a plate body provided with a first mounting hole and a second mounting hole, the first mounting hole and the second mounting hole can accommodate the clamping assembly according to any one of claims 4-14; a sub-instrument panel can be detachably mounted in the first mounting hole by the clamping assembly to have a first mounting position, and the sub-instrument panel can be detachably mounted in the second mounting hole by the clamping assembly to have a second mounting position, at least part of the sub-instrument panel in the first mounting position does not coincide with the sub-instrument panel in the second mounting position.
16. The vehicle body floor of claim 15, wherein, The first mounting hole and the second mounting hole each comprise at least two clamping holes for clamping the sub-instrument panel, wherein at least one clamping hole in the first mounting hole is the same hole as at least one clamping hole in the second mounting hole, or any clamping hole in the first mounting hole is arranged in space with any clamping hole in the second mounting hole.
17. The vehicle body floor of claim 16, wherein, The vehicle floor further comprises a plug connected to the plate body and closing the unused card hole.
18. A vehicle characterized by comprising: A lock cylinder as claimed in any one of claims 1 to 3 or a card interface assembly as claimed in any one of claims 4 to 14 or a vehicle floor as claimed in any one of claims 15 to 17.