Storage mechanism and vehicle
By designing a height-adjustable storage rack in the vehicle and automatically lifting and lowering is achieved using lift brackets and drive components, the problem of fixing the height of the existing vehicle tea table is solved, and user satisfaction and operation convenience are improved.
Patent Information
- Application Number
- CN202422946327.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-29
- Publication Date
- 2025-09-02
- Estimated Expiration
- 2034-11-29
AI Technical Summary
The tea table of the existing vehicle is fixed in height and cannot meet the needs of users of different heights, resulting in low user satisfaction and inconvenient operation.
A height-adjustable storage rack is designed to automatically lift the rack through the lift bracket and drive assembly, and the sliding part and active pulling wire are used to drive the rack to lift and lower, to meet the needs of different users.
It improves user satisfaction and operation convenience, and meets the storage needs of different users through height adjustment and automatic lifting functions.
Smart Images

Figure CN223290742U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of vehicle manufacturing, in particular to a storage mechanism and a vehicle with the storage mechanism. Background Art
[0002] For the convenience of users, existing vehicles are generally equipped with a tea table for placing water cups, but the height of the tea table is generally determined during the production stage of the vehicle and cannot be changed. It cannot adapt to users of different heights, and there is room for improvement. Utility Model Content
[0003] The present invention aims to solve at least one of the technical problems existing in the prior art. To this end, the present invention provides a storage mechanism that can adjust the height of the storage rack to meet the needs of different users, thereby improving user satisfaction. In addition, the storage rack can be automatically raised and lowered, improving the convenience of operation.
[0004] According to an embodiment of the present invention, the storage mechanism includes: a lifting bracket, the lifting bracket is provided with a first sliding part; a storage rack, the storage rack is provided with a second sliding part, the second sliding part slides with the first sliding part and enables the storage rack to be lifted relative to the lifting bracket; a driving assembly, the driving assembly includes a driving member and an active pull wire, one end of the active pull wire is relatively fixed to the storage rack, and the driving member is connected to the other end of the active pull wire to drive the storage rack to rise and fall through the active pull wire.
[0005] The storage mechanism according to the embodiment of the present invention can meet the storage needs of users by providing a storage rack, and a lifting bracket is provided so that the second sliding part can slide relative to the first sliding part to drive the storage rack to be raised and lowered. A driving assembly is provided so that the driving member can pull the second sliding part through an active pull wire to drive the storage rack to be raised and lowered, so that the height of the storage rack can be adjusted to meet the needs of different users, which is conducive to improving user satisfaction. In addition, by providing a driving member, the storage rack can be automatically raised and lowered, thereby improving the convenience of operation.
[0006] According to some embodiments of the storage mechanism of the present invention, the first sliding part is configured as a slide groove, the second sliding part is configured as a slider, the slider is slidably installed in the slide groove, and the active pull wire is connected to the slider to drive the storage rack to rise and fall through the slider.
[0007] According to the storage mechanism of some embodiments of the present invention, the sliders and the slide grooves are multiple and slide-matched one-to-one; the multiple sliders are connected in series in sequence through multiple driven pull lines, and the multiple sliders slide synchronously relative to the corresponding slide grooves.
[0008] According to the placement mechanism of some embodiments of the present invention, there are two active pull wires, and one of the multiple sliders connected in series is located at the head end and is connected to one active pull wire, and one of the sliders located at the tail end is connected to another active pull wire; wherein, when the driving member rotates forward, one active pull wire is retracted and the other active pull wire is unfolded, and when the driving member is reversed, one active pull wire is unfolded and the other active pull wire is retracted.
[0009] According to the placement mechanism of some embodiments of the present invention, among the two driven pull wires connected to each slider, one driven pull wire is suitable for extending from the upper end of the slide groove to be connected to the slider, and the other driven pull wire is suitable for extending from the lower end of the slide groove to be connected to the slider.
[0010] According to the storage mechanism of some embodiments of the present invention, the plurality of sliders are distributed in a polygonal shape, and at least two of the sliders that are diagonally distributed are connected in series via one driven pull wire.
[0011] According to the placement mechanism of some embodiments of the present invention, the lifting bracket is provided with a pulley located at the end of the slide groove, the active pull wire or the driven pull wire is wound around the pulley and is suitable for extending from the pulley into the slide groove.
[0012] According to the placement mechanism of some embodiments of the present invention, the slider is provided with a sliding guide groove, and the lifting bracket is also provided with a sliding guide part, the extension direction of the sliding guide part is parallel to the extension direction of the sliding groove, and the sliding guide part extends into the sliding guide groove and slides with the sliding guide groove.
[0013] According to the placement mechanism of some embodiments of the present invention, a wear-resistant block is provided between the sliding guide portion and the inner wall of the sliding guide groove.
[0014] The utility model also provides a vehicle.
[0015] The vehicle according to the embodiment of the present invention includes any one of the above-mentioned storage mechanisms.
[0016] The advantages of the vehicle and the above-mentioned storage mechanism over the prior art are the same and will not be described in detail here.
[0017] Additional aspects and advantages of the present invention will be given in part in the following description and will become apparent from the following description or learned through practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] The above and / or additional aspects and advantages of the present invention will become apparent and readily understood from the description of the embodiments in conjunction with the following drawings, in which:
[0019] Figure 1 This is a structural diagram of a storage mechanism according to an embodiment of the present utility model;
[0020] Figure 2 It is a partial cross-sectional view of the storage mechanism according to an embodiment of the present utility model.
[0021] Reference numerals:
[0022] The storage mechanism 100,
[0023] Lifting bracket 1, first sliding part 11, pulley 12, sliding guide part 13,
[0024] Storage rack 2, second sliding portion 21, sliding guide groove 211, table top 22, storage groove 221, mounting bracket 23,
[0025] Driving assembly 3, driving member 31, active pull wire 32, driven pull wire 33, winder 34,
[0026] Wear-resistant block 4, connecting piece 5. DETAILED DESCRIPTION
[0027] The following describes embodiments of the present invention in detail. Examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended only to explain the present invention and are not to be construed as limiting the present invention.
[0028] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings. They are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention. In addition, features defined as "first" or "second" may explicitly or implicitly include one or more of such features. In the description of the present invention, unless otherwise specified, "multiple" means two or more.
[0029] In the description of this utility model, it should be noted that, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "connected" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integral connections; mechanical connections, electrical connections; direct connections, indirect connections through an intermediate medium, and internal communication between two components. Those skilled in the art will understand the specific meanings of the above terms in this utility model based on the specific circumstances.
[0030] Reference below Figure 1-Figure 2 Description: According to the storage mechanism 100 of the embodiment of the present invention, the user's storage needs can be met by providing a storage rack 2, and a lifting bracket 1 is provided so that the second sliding part 21 can slide relative to the first sliding part 11 to drive the storage rack 2 to rise and fall. The driving component 3 is provided so that the driving member 31 can pull the second sliding part 21 through the active pull wire 32 to drive the storage rack 2 to rise and fall, so that the height of the storage rack 2 can be adjusted to meet the needs of different users, which is conducive to improving user satisfaction. In addition, by providing the driving member 31, the automatic lifting of the storage rack 2 can be realized, thereby improving the convenience of operation.
[0031] like Figure 1 As shown, a storage mechanism 100 according to an embodiment of the present invention includes: a lifting bracket 1, a storage rack 2 and a driving assembly 3.
[0032] The lifting bracket 1 is provided with a first sliding portion 11; the storage rack 2 is provided with a second sliding portion 21, which slides with the first sliding portion 11 and causes the storage rack 2 to rise and fall relative to the lifting bracket 1; the driving assembly 3 includes a driving member 31 and an active pull wire 32, one end of the active pull wire 32 is fixed relative to the storage rack 2, and the driving member 31 is connected to the other end of the active pull wire 32 to drive the storage rack 2 to rise and fall through the active pull wire 32.
[0033] Specifically, the rack 2 is used to provide a space for users to place items. The storage mechanism 100 can be set on the vehicle so that the rack 2 can be used to place items such as keys and cups. Figure 1As shown, the storage rack 2 includes a table top 22 and a mounting bracket 23. The table top 22 is provided with four storage slots 221. The four storage slots 221 can be used to place items, and the four storage slots 221 are spaced apart to avoid interference between the four storage slots 221, which makes it impossible to place items. In addition, the four storage slots 221 are recessed downward from the upper surface of the table top 22, so that the storage slots 221 have a certain depth to better accommodate items and limit the items to prevent them from sliding and falling during the driving of the vehicle. In addition, the inner diameters of the four storage slots 221 are different, that is, the four storage slots 221 can be used to place items of different sizes, which can expand the applicability of the storage rack 2. The number of storage slots 221 is not limited to that described in this embodiment, and the number and inner diameter of the storage slots 221 can be flexibly set according to specific circumstances and space size.
[0034] The lifting bracket 1 is used to realize the lifting and lowering of objects, that is, the objects can be moved in the up and down directions. The lifting bracket 1 is provided with a first sliding part 11, and the storage rack 2 is provided with a second sliding part 21. The second sliding part 21 slides with the first sliding part 11 to enable the storage rack 2 to be lifted and lowered relative to the lifting bracket 1. The first sliding part 11 can be constructed to extend in the up and down directions, and the first sliding part 11 is used to guide the movement of the second sliding part 21, so that the second sliding part 21 can drive the storage rack 2 to move in the up and down directions during the sliding process relative to the first sliding part 11, so that the lifting and lowering of the storage rack 2 can be realized, and the height of the storage rack 2 can be adjusted to meet the needs of different users, thereby increasing the scope of application of the storage rack 2 and improving user satisfaction.
[0035] It should be noted that the mounting bracket 23 and the second sliding portion 21 can be fixedly connected by the connecting member 5 to realize the connection between the storage rack 2 and the second sliding portion 21, and the lifting bracket 1 and the surrounding components can be fixedly connected by the connecting member 5 to realize the installation of the lifting bracket 1, and then the installation of the storage mechanism 100 can be realized, wherein the connecting member 5 can be a bolt, and the lifting bracket 1 can be arranged below the storage rack 2, so that the second sliding portion 21 can drive the storage rack 2 to rise and fall from the bottom of the storage rack 2, which can avoid the lifting bracket 1 affecting the storage rack 2, resulting in the inability to place items in the storage slot 221.
[0036] The driving member 31 is used to provide driving force, and the active pull wire 32 can play a connecting role. By fixing one end of the active pull wire 32 relatively to the storage rack 2, one end of the active pull wire 32 can be connected to the second sliding part 21, so that one end of the active pull wire 32 can move synchronously with the storage rack 2. At the same time, by connecting the other end of the active pull wire 32 to the driving member 31, the two ends of the active pull wire 32 can be connected to the storage rack 2 and the driving member 31 respectively, so that the driving member 31 can pull the second sliding part 21 through the active pull wire 32, so that the second sliding part 21 slides relative to the first sliding part 11 to drive the storage rack 2 to move up and down, that is, the driving member 31 can drive the storage rack 2 to move up and down through the active pull wire 32, and the driving member 31 can be a driving motor to realize automatic lifting of the storage rack 2 and improve the convenience of operation.
[0037] According to the storage mechanism 100 of the embodiment of the present invention, the user's storage needs can be met by providing a storage rack 2, and the lifting bracket 1 is provided so that the second sliding part 21 can slide relative to the first sliding part 11 to drive the storage rack 2 to be raised and lowered. The driving assembly 3 is provided so that the driving member 31 can pull the second sliding part 21 through the active pull wire 32 to drive the storage rack 2 to be raised and lowered, so that the height of the storage rack 2 can be adjusted to meet the needs of different users, which is conducive to improving user satisfaction. In addition, by providing the driving member 31, the storage rack 2 can be automatically raised and lowered, thereby improving the convenience of operation.
[0038] In some embodiments, the first sliding portion 11 is configured as a slide groove, and the second sliding portion 21 is configured as a slider. The slider is slidably installed in the slide groove, and the active pull wire 32 is connected to the slider to drive the storage rack 2 to move up and down through the slider.
[0039] The second sliding portion 21 can be connected to the first sliding portion 11, and the second sliding portion 21 can be connected to the second sliding portion 21. The second sliding portion 21 can slide relative to the first sliding portion 11. The first sliding portion 11 can be constructed as a slide groove, and the second sliding portion 21 can be constructed as a slider, and the slider can be slidably installed in the slide groove, so that the slider can slide in the slide groove along the extension track of the slide groove to drive the rack 2 to move up and down. The slide groove can guide the movement of the slider to improve the accuracy of the movement direction of the slider, ensuring that the rack 2 can move in the up and down directions to achieve lifting. At the same time, the two ends of the active pull wire 32 are respectively connected to the driving member 31 and the second sliding portion 21, and the active pull wire 32 can be connected to the slider so that one end of the active pull wire 32 is fixed relatively to the rack 2. Even if the driving member 31 can pull the slider to move through the active pull wire 32, the driving member 31 can drive the rack 2 to move up and down through the active pull wire 32 and the slider.
[0040] In some embodiments, there are multiple sliders and sliding grooves that are slidably matched one by one; the multiple sliders are connected in series in sequence through multiple driven pull wires 33, and the multiple sliders slide synchronously relative to the corresponding sliding grooves.
[0041] Specifically, the slider can slide relative to the slide groove to drive the storage rack 2 to move up and down, and the slider and the slide groove can be set to multiple, that is, the number of sliders and the slide groove can be two, three or more respectively, and the multiple sliders are slidably matched with the multiple slide grooves in a one-to-one correspondence, that is, for each slider, there is a slide groove to cooperate with it, which can make the number of sliders and slide grooves the same, so that the slider can cooperate with the corresponding slide groove and slide relative to the corresponding slide groove to drive the storage rack 2 to move up and down, which can improve the reliability of the slider driving the storage rack 2 to move up and down, and as Figure 1 As shown, the multiple sliders and the multiple sliding grooves are spaced apart and distributed, so that the multiple sliders can drive the rack 2 to move up and down at multiple positions of the rack 2 at the same time, which can improve the stability of the sliders driving the rack 2 to move up and down.
[0042] In addition, multiple sliders can be connected in series through multiple driven wires 33, that is, multiple sliders can be connected end to end through the driven wires 33, so that multiple sliders can move one by one, and then multiple sliders can slide synchronously relative to corresponding slide grooves to drive the storage rack 2 to rise and fall smoothly, and only one driving member 31 can be set, and the driving member 31 is connected to one of the sliders, so that the driving member 31 can drive multiple sliders to slide at the same time, which can reduce the number of driving members 31 and reduce the setting cost.
[0043] In some embodiments, there are two active pull wires 32, and one slider at the head end of multiple sliders connected in series is connected to one active pull wire 32, and one slider at the tail end is connected to another active pull wire 32; wherein, when the driving member 31 rotates forward, one active pull wire 32 is reeled in and the other active pull wire 32 is unrolled, and when the driving member 31 reverses, one active pull wire 32 is unrolled and the other active pull wire 32 is reeled in.
[0044] Specifically, the two ends of the active pull wire 32 are respectively connected to the driving member 31 and the slider. By setting two active pull wires 32, the driving member 31 can be connected to the two sliders at the same time through the two active pull wires 32. The driving member 31 is connected to a slider located at the head end of multiple sliders connected in series through one active pull wire 32, and the driving member 31 is connected to a slider located at the tail end of multiple sliders connected in series through another active pull wire 32. Multiple sliders can be connected between the two active pull wires 32, and then multiple sliders can be connected to the driving member 31 at the same time, so that the driving member 31 can drive the multiple sliders to slide synchronously, and then the driving member 31 can drive the storage rack 2 to rise and fall smoothly through the multiple sliders.
[0045] Among them, the driving member 31 can rotate forward or reverse, and the forward and reverse rotations can respectively drive the storage rack 2 to rise or fall. When the driving member 31 rotates forward, one active pull wire 32 can be retracted and the other can be unfolded. The retracted active pull wire 32 can pull the slider directly connected thereto to move, so that the slider can drive other sliders to slide synchronously in turn, so that multiple sliders can simultaneously drive the storage rack 2 to rise. When the driving member 31 reverses, one active pull wire 32 can be unfolded and the other can be retracted. The retracted active pull wire 32 can pull the slider directly connected thereto to move, so that the slider can drive other sliders to slide synchronously in turn, so that multiple sliders can simultaneously drive the storage rack 2 to fall.
[0046] It should be noted that, in actual design, the driving member 31 may also drive the rack 2 downward when rotating forward, and drive the rack 2 upward when rotating reverse, thereby achieving reliable lifting and lowering of the rack 2.
[0047] Furthermore, a wire winder 34 may be provided in the driving assembly 3 to wind the active wire 32 around the periphery of the wire winder 34 , and the wire winder 34 may be constructed as a worm gear, and the motor shaft of the driving member 31 may be connected to the worm, so that the driving member 31 can drive the active wire 32 to move through the worm gear structure, thereby achieving mechanical self-locking, so that the storage rack 2 can remain stable after rising, and prevent the storage rack 2 from falling by itself after the items are placed.
[0048] In some embodiments, among the two driven wires 33 connected to each slider, one driven wire 33 is adapted to extend from the upper end of the slide groove to connect with the slider, and the other driven wire 33 is adapted to extend from the lower end of the slide groove to connect with the slider.
[0049] Specifically, except for the two sliders located at the head and tail ends, the other sliders are simultaneously connected to two driven wires 33, one of which can be extended from the upper end of the slide to connect with the slider, and the other driven wire 33 can be extended from the lower end of the slide to connect with the slider, so that the two driven wires 33 can be connected to the upper and lower ends of the slider respectively, thereby realizing the series connection of multiple sliders.
[0050] Among them, the two sliders located at the head end and the tail end are connected to the active pull wire 32 at one end and the driven pull wire 33 at the other end. The active pull wire 32 can be extended from the upper end of the slide groove to be connected to a slider located at the head end, and the driven pull wire 33 can be extended from the lower end of the slide groove to be connected to a slider located at the head end. At the same time, another active pull wire 32 is extended from the lower end of the slide groove to be connected to a slider located at the tail end, and the driven pull wire 33 is extended from the upper end of the slide groove to be connected to a slider located at the tail end, so that the two active pull wires 32 can be connected to the two sliders located at the head end and the tail end respectively.
[0051] Thus, the driving member 31 can be connected to the slider at the head end through an active pull wire 32, multiple sliders can be connected in series in sequence through multiple driven pull wires 33, and a slider at the tail end can be connected to the driving member 31 through another active pull wire 32, so that the driving member 31 can drive multiple sliders to slide synchronously, thereby driving the storage rack 2 to rise and fall smoothly.
[0052] In some embodiments, the plurality of sliders are distributed in a polygonal shape, and at least two sliders that are diagonally distributed are connected in series via a driven wire 33 .
[0053] Specifically, the multiple sliders are distributed in a polygonal shape, that is, the multiple sliders are spaced apart and distributed, so that the multiple sliders can drive the storage rack 2 to rise and fall smoothly, and at least two of the diagonally distributed sliders are connected in series through a driven pull wire 33, so that at least two of the multiple sliders can be cross-connected, that is, the number of cross-connected sliders can be two, four or six, etc., to ensure that the multiple sliders can slide synchronously under the drive of the driving member 31, thereby effectively ensuring the smooth lifting and lowering of the storage rack 2.
[0054] Among them, Figure 1 As shown, there are four sliders and four slide grooves, and the four sliders and four slide grooves are spaced apart, that is, the four sliders can slide relative to the corresponding slide grooves to drive the storage rack 2 to move up and down, which can improve the reliability and stability of the sliders driving the storage rack 2 to move up and down. In addition, the number of sliders and slide grooves is not limited to that described in this embodiment, and can be flexibly set according to specific circumstances and space size.
[0055] In addition, the four sliders can be arranged in the counterclockwise direction as the first slider, the second slider, the third slider and the fourth slider, and the driving member 31 is connected to the upper end of the first slider through an active pull wire 32, the lower end of the first slider is connected to the upper end of the third slider, the lower end of the third slider is connected to the upper end of the second slider, the lower end of the second slider is connected to the upper end of the fourth slider, and the lower end of the fourth slider is connected to the driving member 31 through another active pull wire 32. The first slider and the third slider can be cross-connected, and the second slider and the fourth slider can be cross-connected, so that the driving member 31 can simultaneously drive the four sliders to rise and fall synchronously, ensuring the smooth lifting and lowering of the storage rack 2.
[0056] In some embodiments, the lifting bracket 1 is provided with a pulley 12 at the end of the slide groove, and the active pull wire 32 or the driven pull wire 33 is wound around the pulley 12 and is adapted to extend from the pulley 12 into the slide groove.
[0057] Specifically, a pulley 12 is provided at the end of the slide groove, that is, a pulley 12 is provided at the upper end and the lower end of the slide groove. The pulley 12 is used to change the extension direction of the active pull wire 32 or the driven pull wire 33. The active pull wire 32 or the driven pull wire 33 is wound around the pulley 12 and extended from the pulley 12 into the slide groove. The extension direction of the active pull wire 32 or the driven pull wire 33 can be guided by the pulley 12, so that the extension directions of the active pull wire 32 or the driven pull wire 33 on both sides of the pulley 12 are different, so that the active pull wire 32 or the driven pull wire 33 can be extended in the required direction, such as extending to the inside of the slide groove and connecting with the slider, and the active pull wire 32 or the driven pull wire 33 can be avoided from bending due to the change of direction, and the bending part is prone to breakage and failure, so the active pull wire 32 or the driven pull wire 33 can be avoided from bending and breaking, thereby extending the service life of the active pull wire 32 and the driven pull wire 33.
[0058] In some embodiments, the slider is provided with a sliding guide groove 211, and the lifting bracket 1 is also provided with a sliding guide portion 13, the extension direction of the sliding guide portion 13 is parallel to the extension direction of the sliding groove, and the sliding guide portion 13 extends into the sliding guide groove 211 and slides with the sliding guide groove 211.
[0059] Specifically, if Figure 2 As shown, a sliding guide groove 211 is provided on the slider, and a sliding guide portion 13 is provided on the lifting bracket 1. The sliding guide groove 211 can be constructed as a U-shaped groove, and the lifting bracket 1 can be constructed into an "X" shape, so that the sliding guide portion 13 can extend into the sliding guide groove 211 to realize the connection between the slider and the lifting bracket 1, and the sliding guide portion 13 and the sliding guide groove 211 can slidably cooperate, that is, the sliding guide groove 211 can slide along the sliding guide portion 13, and then the lifting bracket 1 and the slider can be matched through the sliding guide portion 13 and the sliding guide groove 211, and the sliding guide portion 13 can guide the sliding of the sliding guide groove 211, that is, guide the movement of the slider, and improve the accuracy of the movement direction of the slider, and the extending direction of the sliding guide portion 13 is parallel to the extending direction of the slide groove, even when the slider slides relative to the slide groove, the sliding guide portion 13 can guide the movement of the slider, ensuring that the storage rack 2 can be lifted and lowered in the up and down directions.
[0060] It should be noted that, Figure 1 As shown, the slider is connected to the mounting bracket 23, and the sliding guide grooves 211 on the two sliders on the same side can be set in a direction close to each other, or in a direction away from each other. For example, the two sliding guide grooves 211 on the first slider and the second slider can be set in a direction close to each other, or in a direction away from each other, so that the mounting bracket 23 can be clamped on both sides or between the two lifting brackets 1, which can achieve the limitation of the mounting bracket 23, that is, the limitation of the storage rack 2, and improve the accuracy of the installation position of the storage rack 2.
[0061] In some embodiments, a wear-resistant block 4 is provided between the sliding guide portion 13 and the inner wall of the sliding guide groove 211 .
[0062] Specifically, the sliding guide groove 211 can slide along the sliding guide portion 13. Figure 2 As shown, a wear-resistant block 4 is provided between the sliding guide portion 13 and the inner wall of the sliding guide groove 211. The wear-resistant block 4 is used to reduce the friction between the sliding guide groove 211 and the sliding guide portion 13, thereby extending the service life of the sliding guide groove 211, that is, extending the service life of the slider. The wear-resistant block 4 can be fixedly connected to the slider so that the slider can drive the wear-resistant block 4 to move relative to the lifting bracket 1, which can reduce the setting length of the wear-resistant block 4 and reduce the setting cost.
[0063] The setting length of the wear-resistant block 4 can be constructed to be the same as the setting length of the slider, so as to improve the reliability of the wear-resistant block 4 in protecting the slider.
[0064] Also, it should be noted that a wire tube can be set around the active pull wire 32 and the driven pull wire 33 exposed to the outside, and the active pull wire 32 or the driven pull wire 33 can be passed through the wire tube so that the wire tube can protect the active pull wire 32 or the driven pull wire 33 to reduce the possibility of wear and failure of the active pull wire 32 or the driven pull wire 33, and make the active pull wire 32 or the driven pull wire 33 movable inside the wire tube to drive the slider to slide under the action of the driving member 31.
[0065] The utility model also provides a vehicle.
[0066] A vehicle according to an embodiment of the present invention includes the storage mechanism 100 described in any of the above-described embodiments. The provision of a storage rack 2 can meet the user's storage needs. A lifting bracket 1 is provided so that the second sliding portion 21 can slide relative to the first sliding portion 11 to drive the storage rack 2 up and down. A drive assembly 3 is provided so that a drive member 31 can pull the second sliding portion 21 via an active pull wire 32 to drive the storage rack 2 up and down. This allows the height of the storage rack 2 to be adjusted to suit different user needs, thereby improving user satisfaction. Furthermore, the provision of the drive member 31 enables automatic raising and lowering of the storage rack 2, thereby enhancing operational convenience.
[0067] Throughout this specification, reference to terms such as "one embodiment," "some embodiments," "illustrative embodiments," "examples," "specific examples," or "some examples" means that the specific features, structures, materials, or characteristics described in conjunction with that embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the illustrative use of the above terms does not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
[0068] Although the embodiments of the present invention have been shown and described, those skilled in the art will appreciate that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and purpose of the present invention, and that the scope of the present invention is defined by the claims and their equivalents.
Claims
1. A storage mechanism, characterized in that: include: A lifting bracket, wherein the lifting bracket is provided with a first sliding portion; a storage rack, the storage rack being provided with a second sliding portion, the second sliding portion being in sliding engagement with the first sliding portion and enabling the storage rack to be raised and lowered relative to the lifting bracket; The driving assembly includes a driving member and an active pull wire, one end of the active pull wire is relatively fixed to the shelf, and the driving member is connected to the other end of the active pull wire to drive the shelf to move up and down through the active pull wire.
2. The storage mechanism according to claim 1, characterized in that: The first sliding portion is configured as a sliding groove, the second sliding portion is configured as a slider, the slider is slidably installed in the sliding groove, and the active pull wire is connected to the slider to drive the storage rack to move up and down through the slider.
3. The storage mechanism according to claim 2, characterized in that: The sliders and the sliding grooves are multiple and slide-fitted in a one-to-one correspondence; The plurality of sliders are sequentially connected in series through a plurality of driven pull lines, and the plurality of sliders are caused to slide synchronously relative to the corresponding sliding grooves.
4. The storage mechanism according to claim 3, characterized in that: There are two active pull wires, and one of the sliders at the head end of the plurality of sliders connected in series is connected to one active pull wire, and one of the sliders at the tail end is connected to another active pull wire; Wherein, when the driving member rotates forward, one of the active pull wires is retracted and the other active pull wire is unrolled, and when the driving member rotates reversely, one of the active pull wires is unrolled and the other active pull wire is retracted.
5. The storage mechanism according to claim 3, characterized in that: Of the two driven wires connected to each slider, one driven wire is suitable for extending from the upper end of the slide groove to connect with the slider, and the other driven wire is suitable for extending from the lower end of the slide groove to connect with the slider.
6. The storage mechanism according to claim 3, characterized in that: The plurality of sliders are distributed in a polygonal shape, and at least two of the sliders that are diagonally distributed are connected in series via one driven pull wire.
7. The storage mechanism according to claim 3, characterized in that: The lifting bracket is provided with a pulley located at the end of the chute, and the active pull wire or the driven pull wire is wound around the pulley and is suitable for extending from the pulley into the chute.
8. The storage mechanism according to claim 2, characterized in that: The slider is provided with a sliding guide groove, and the lifting bracket is further provided with a sliding guide portion, the extension direction of the sliding guide portion is parallel to the extension direction of the sliding groove, and the sliding guide portion extends into the sliding guide groove and slides with the sliding guide groove.
9. The storage mechanism according to claim 8, characterized in that: A wear-resistant block is provided between the sliding guide portion and the inner wall of the sliding guide groove.
10. A vehicle, characterized in that: The utility model comprises the storage mechanism according to any one of claims 1 to 9.