Glove box assembly and vehicle
By setting slots and limiting components on the glove box, and utilizing the cooperation between the connecting protrusion and the slots, the problem of low assembly efficiency between the glove box and the damping mechanism is solved, enabling rapid assembly and disassembly and improving overall assembly efficiency.
Patent Information
- Application Number
- CN202520038786.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-07
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2035-01-07
AI Technical Summary
In the prior art, the assembly efficiency of the glove box hopper and the damping mechanism is low, mainly because the space between the glove box frame and the glove box hopper is narrow, making it inconvenient for operators to assemble.
A glove box assembly was designed, including a glove box frame, a glove box compartment, and a damping mechanism. By setting a slot and a limiting component on the glove box compartment, and utilizing the cooperation between the connecting protrusion and the slot, the damping mechanism is automatically fixed and connected, simplifying the assembly process.
The assembly efficiency of the glove box hopper and damping mechanism has been improved, the assembly difficulty has been reduced, and rapid assembly and disassembly have been achieved, thereby improving the overall assembly efficiency.
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Figure CN223658078U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of automobile storage devices, in particular to a glove box assembly and a vehicle. BACKGROUND
[0002] Generally, a damping mechanism is connected between the glove box frame and the glove box box to avoid the safety hazard to the passengers caused by the fast opening of the glove box box.
[0003] At present, the damping mechanism includes a sliding block and a guide rail in sliding cooperation. The sliding block of the damping mechanism is pre-installed in the glove box frame, and the installation of the damping mechanism and the glove box box needs to be installed separately.
[0004] Generally, the operator needs to open the glove box box hinged to the glove box frame, pull one end of the guide rail for connecting with the glove box box, so that the guide rail slides relative to the sliding block until one end of the guide rail reaches the installation position of the glove box box, and then the operator clamps one end of the guide rail with the glove box box, thereby realizing the connection of the glove box box and the damping mechanism.
[0005] However, due to the small space between the glove box frame and the glove box box, it is not convenient for the operator to stretch his hand into the space between the two for assembly work, thereby affecting the assembly efficiency of the glove box box and the damping mechanism.
[0006] Therefore, how to provide a glove box assembly to simplify the connection mode of the glove box box and the damping mechanism, thereby improving the assembly efficiency of the glove box box and the damping mechanism, is a technical problem to be solved by those skilled in the art. Content of the utility model
[0007] In view of the above problems, the present application provides a glove box assembly to simplify the connection mode of the glove box box and the damping mechanism, thereby improving the assembly efficiency of the glove box box and the damping mechanism. In addition, the present application also provides a vehicle with a glove box assembly.
[0008] The specific scheme is as follows:
[0009] The first aspect of the present application provides a glove box assembly, comprising: a glove box frame; a glove box box, the glove box box is rotatably connected with the glove box frame, the glove box box has a clamping groove, and a limiting piece is arranged at the slot opening of the clamping groove; a damping mechanism, the damping mechanism includes a guide rail and a sliding block, the sliding block and the guide rail are in sliding cooperation, the sliding block has a damping force during sliding relative to the guide rail in a first direction; the sliding block is limitingly hinged with the glove box frame, one end of the guide rail has a connecting protrusion, the connecting protrusion can extrude the limiting piece and insert into the clamping groove, and the limiting piece can limit the connecting protrusion from leaving the clamping groove; the first direction is the direction in which the connecting protrusion is away from the sliding block.
[0010] In one possible implementation, in the above-described glove box assembly, when the angle between the limiting member and the extending direction of the slot is a first angle, the connecting protrusion is restricted from disengaging from the slot; when the limiting member is inclined in the direction away from the opening of the slot, and the angle between the limiting member and the extending direction of the slot is a second angle, the connecting protrusion can be inserted into the slot; the second angle is smaller than the first angle.
[0011] In one possible implementation, in the above-described glove box assembly, a connecting plate is provided on the side of the glove box compartment near the damping mechanism, and the connecting plate has the slot; the limiting member is rotatably mounted on the connecting plate between the first included angle and the second included angle.
[0012] In one possible implementation, in the above-described glove box assembly, the connecting plate and the limiting member are rotatably connected via a rotating shaft and a shaft hole; the outer surface of the rotating shaft and the inner wall of the shaft hole are fitted by a concave-convex structure, and when the angle between the limiting member and the extending direction of the slot is a first angle, the rotating shaft and the shaft hole are unidirectionally limited in the circumferential direction; the rotation direction of the limiting member is such that the end of the limiting member that contacts the connecting protrusion rotates toward the bottom of the slot.
[0013] In one possible implementation, in the above-described glove box assembly, the limiting member is a wedge-shaped structure, and the side of the wedge-shaped structure facing the slot opening is an inclined surface; the inclined surface is an inclined surface that guides the groove opening towards the bottom of the groove.
[0014] In one possible implementation, the glove box assembly described above further includes a handle portion, one end of which is exposed outside the slot, and the other end of which is fixedly connected to the limiting member for driving the limiting member to rotate.
[0015] In one possible implementation, in the above-described glove box assembly, the slider is rotatably connected to the glove box frame, and the glove box frame is provided with a limiting block for limiting the rotation angle of the slider relative to the glove box frame; and when the slider abuts against the limiting block, the connecting protrusion can be inserted into the slot.
[0016] In one possible implementation, in the above-described glove box assembly, the slot opening has a guide surface that guides the interior of the slot.
[0017] In one possible implementation, in the glove box assembly described above, the connecting protrusion is a stepped post, and the diameter of the section connected to the guide rail is smaller than the diameter of the section away from the guide rail.
[0018] The second aspect of the present application provides a vehicle comprising the glove box assembly.
[0019] By means of the above technical scheme, the glove box bucket in the glove box assembly provided by the present application is provided with a clamping groove with a notch facing the damping mechanism, so that during the buckling process of the glove box bucket to the glove box frame, the connecting protrusion of the damping mechanism directly enters the clamping groove and is limited by the limiting piece, preventing the connecting protrusion from disengaging from the clamping groove, thereby realizing the fixed connection of the damping mechanism and the glove box bucket. Using this connection method, the operator does not need to put his hand between the glove box frame and the glove box bucket, but only needs to push the glove box bucket to buckle the glove box frame, so as to realize the self-assembly of the damping mechanism and the glove box bucket, simplify the assembly process of the damping mechanism and the glove box bucket, reduce the assembly difficulty of the damping mechanism and the glove box bucket, and greatly improve the assembly efficiency of the damping mechanism and the glove box bucket. BRIEF DESCRIPTION OF DRAWINGS
[0020] The above and other features, advantages, and aspects of the present disclosure will become more apparent by referring to the following detailed description in conjunction with the accompanying drawings. Throughout the drawings, the same or similar reference numerals indicate the same or similar elements. It should be understood that the drawings are schematic, and the original and elements are not necessarily drawn according to the scale.
[0021] Figure 1 A structural diagram of the glove box assembly provided by the prior art;
[0022] Figure 2 A side view of the glove box assembly provided by the prior art;
[0023] Figure 3 A back-to-axis side view of the glove box assembly provided by the prior art;
[0024] Figure 4 A side view of the glove box assembly provided by the present application;
[0025] Figure 5 A structural diagram of the damping mechanism provided by the present application;
[0026] Figure 6 Another direction of the structural diagram of the damping mechanism provided by the present application;
[0027] Figure 7 A structural diagram of the glove box bucket provided by the present application;
[0028] Figure 8 An assembly relationship diagram of the glove box bucket and the damping mechanism provided by the present application;
[0029] Figure 9 A structural diagram of the glove box frame provided by the present application;
[0030] Figure 10 The assembly relationship diagram of the glove box frame and the damping mechanism provided by the embodiment of the application is shown in the figure;
[0031] Figure 11 For Figure 10 The local enlarged view of the A in the middle. DETAILED DESCRIPTION
[0032] The embodiments of the application are described below in conjunction with the drawings in the embodiments of the application. The terms used in the embodiment part of the application are only used to explain the specific embodiments of the application, and are not intended to limit the application.
[0033] The embodiments of the application are described below in conjunction with the drawings. It is known to those of ordinary skill in the art that as technology develops and new scenarios appear, the technical solutions provided by the embodiments of the application are also applicable to similar technical problems.
[0034] The terms "first", "second", and the like in the specification and claims of the application and the above-mentioned drawings are used to distinguish similar objects, and do not necessarily describe a specific order or sequence. It should be understood that the terms used in this way can be interchanged under appropriate circumstances, and this is only a distinguishing way used in the description of the embodiments of the application to describe the objects with the same attributes. In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion, so that the process, method, system, product or equipment including a series of units does not have to be limited to those units, but can include other units not clearly listed or inherent to these processes, methods, products or equipment.
[0035] As Figure 1 The glove box assembly 1000 of the automobile is usually located in front of the co-driver position, specifically in the position of the co-driver side of the instrument panel. The glove box assembly 1000 usually includes a glove box frame 100 and a glove box bin 200. The glove box frame 100 is fixed to the instrument panel of the vehicle and forms a containing space; the glove box bin 200 is hinged to the glove box frame 100, and during the rotation of the glove box bin 200 relative to the glove box frame 100, the glove box bin 200 can be stored in the containing space or exposed to the containing space, i.e. the closing and opening of the glove box bin 200 is realized.
[0036] During the opening of the glove box bin 200 relative to the glove box frame 100, the glove box bin 200 rotates at a relatively fast speed under the action of its own gravity, so that a relatively large impact force is generated when the glove box bin 200 rotates to the lowest point, which is easy to injure the passenger on the co-driver side, thus there is a safety hazard. Based on this, Figure 2 The glove box assembly 1000 in the embodiment shown further includes a damping mechanism 300.
[0037] Figure 2 The damping mechanism 300 of the glove box composition 1000 connects the glove box frame 100 and the glove box bin 200, so that a damping force is generated during the opening of the glove box bin 200 relative to the glove box frame 100, the rotation speed of the glove box bin 200 is reduced, the impact force of the glove box bin 200 is reduced, and the safety hazard is reduced.
[0038] Figure 2 And Figure 3 The damping mechanism 300 is installed between the glove box frame 100 and the glove box bin 200, and the damping mechanism 300 includes a guide rail 301 and a sliding block 302 in sliding fit. During assembly of the damping mechanism 300 and the glove box frame 100 and the glove box bin 200, the sliding block 302 is usually pre-installed in the glove box frame 100, and then the glove box frame 100 and the glove box bin 200 are hingedly connected. The installation of the damping mechanism 300 and the glove box bin 200 needs to be installed separately, usually: the operator opens the glove box bin 200, pulls one end of the guide rail 301 for connecting with the glove box bin 200, so that the guide rail 301 generates relative sliding relative to the sliding block 302, until one end of the guide rail 301 reaches the installation position of the glove box bin 200, then the operator clamps one end of the guide rail 301 of the damping mechanism 300 with the glove box bin 200, thereby realizing the connection between the glove box bin 200 and the damping mechanism 300.
[0039] However, due to the small space between the glove box frame 100 and the glove box bin 200, it is not convenient for the operator to stretch into the space between the two for assembly work, thus affecting the assembly efficiency of the glove box bin 200 and the damping mechanism 300.
[0040] Therefore, based on this, the embodiment of the present application discloses a structure of a glove box composition 1000, which simplifies the assembly mode of the glove box bin 200 and the damping mechanism 300, thereby improving the assembly efficiency of the glove box bin 200 and the damping mechanism 300.
[0041] As shown in the embodiment shown in Figure 4 to Figure 11 The glove box composition 1000 includes: a glove box frame 100, a glove box bin 200, and a damping mechanism 300.
[0042] The glove box frame 100 is used to be fixed to the instrument desk of the vehicle and forms a containing space; the glove box bin 200 is rotationally connected with the glove box frame 100, and the glove box bin 200 is hingedly connected with the glove box frame 100, for example. During the rotation of the glove box bin 200 relative to the glove box frame 100, the glove box bin 200 can be accommodated in the containing space or exposed to the containing space, that is, the closing and opening of the glove box bin 200 are realized.
[0043] As shown in Figure 5 andFigure 6 As shown, the damping mechanism 300 comprises a guide rail 301 and a sliding block 302, and the guide rail 301 is provided with a connecting protrusion 3013 near one end of the glove box box 200. Wherein, the guide rail 301 and the sliding block 302 are in sliding fit, and the damping force generated during the relative movement of the guide rail 301 and the sliding block 302 in the first direction is less than the damping force generated during the movement of the two in the opposite direction.
[0044] It should be noted that the first direction herein is the direction in which the sliding block 302 and the connecting protrusion 3013 move away from each other, and when the guide rail 301 moves in the first direction relative to the sliding block 302, the glove box box 200 can be unfolded relative to the glove box frame 100.
[0045] The specific structure of the damping mechanism 300 can be set according to different needs, and any structure that can achieve the above functions is within the protection scope.
[0046] As shown in Figure 7 The glove box box 200 has a clamping groove 2021, one end of the clamping groove 2021 has an opening along the extension direction, and is formed as a slot, and the slot of the clamping groove 2021 is provided with a limiting piece 203, which is a structure that can be elastically deformed.
[0047] As shown in Figure 8 During the assembly of the glove box box 200 and the damping mechanism 300, when the glove box box 200 is buckled to the glove box frame 100, the connecting protrusion 3013 of the guide rail 301 can extrude the limiting piece 203 and insert into the clamping groove 2021, and the limiting piece 203 after reset can limit the connecting protrusion 3013 inserted into the clamping groove 2021 from leaving the clamping groove 2021.
[0048] During the assembly of the above damping mechanism 300 and glove box box 200, the damping mechanism 300 is pre-fixed to the glove box frame 100, and the position of the damping mechanism 300 is ensured to be stable, and the connecting protrusion 3013 of the guide rail 301 of the damping mechanism 300 is close to the glove box box 200. The operator pushes the glove box box 200 to buckle to the glove box frame 100, so that the connecting protrusion 3013 is aligned with the clamping groove 2021, and during the continuous buckling of the glove box box 200, the connecting protrusion 3013 extrudes the limiting piece 203, so that the connecting protrusion 3013 enters the clamping groove 2021, and after the connecting protrusion 3013 is assembled in place, the limiting piece 203 loses the extrusion force of the connecting protrusion 3013, the limiting piece 203 resets, and limits the connecting protrusion 3013 from leaving the clamping groove 2021.
[0049] It can be understood that: the limiting piece 203 has two states, wherein, when the limiting piece 203 is in the first state, the angle between the limiting piece 203 and the extension direction of the clamping groove 2021 is a first angle, the limiting piece 203 limits the connecting protrusion 3013 from leaving the clamping groove 2021, and the first angle is perpendicular to the extension direction of the clamping groove 2021. When the limiting piece 203 is in the second state, the limiting piece 203 is inclined to the direction away from the notch of the clamping groove 2021, that is, the limiting piece 203 is inclined to the direction of the groove bottom of the clamping groove 2021, and when the angle between the limiting piece 203 and the extension direction of the clamping groove 2021 is a second angle, the connecting protrusion 3013 enters the clamping groove 2021, and the second angle includes but is not limited to 10°-30°. It should be noted that the first angle is greater than the second angle, and the specific values of the first angle and the second angle can be set according to different needs, and are within the protection scope.
[0050] In some embodiments, the limiting piece 203 is inclined during being extruded by the connecting protrusion 3013, so as to realize that the limiting piece 203 avoids the connecting protrusion 3013 to make the connecting protrusion 3013 enter the clamping groove 2021, and after resetting, the limiting piece 203 can limit the connecting protrusion 3013 from leaving the clamping groove 2021.
[0051] It can be understood that: the limiting piece 203 has two states, wherein, when the limiting piece 203 is in the first state, the angle between the limiting piece 203 and the extension direction of the clamping groove 2021 is a first angle, the limiting piece 203 limits the connecting protrusion 3013 from leaving the clamping groove 2021, and the first angle is perpendicular to the extension direction of the clamping groove 2021. When the limiting piece 203 is in the second state, the limiting piece 203 is inclined to the direction away from the notch of the clamping groove 2021, that is, the limiting piece 203 is inclined to the direction of the groove bottom of the clamping groove 2021, and when the angle between the limiting piece 203 and the extension direction of the clamping groove 2021 is a second angle, the connecting protrusion 3013 enters the clamping groove 2021, and the second angle includes but is not limited to 10°-30°. It should be noted that the first angle is greater than the second angle, and the specific values of the first angle and the second angle can be set according to different needs, and are within the protection scope.
[0052] In combination with Figure 7 and Figure 8 The side of the glove box hopper 200 close to the damping mechanism 300 is provided with a connecting plate 201. The clamping groove 2021 described above is arranged on the connecting plate 201, and the notch of the clamping groove 2021 faces the damping mechanism 300. The shape, size and specific position of the connecting plate 201 can be set according to different needs, and are within the protection scope.
[0053] In some embodiments, the limiting member 203 is rotatably mounted on the connecting plate 201, and the rotation range of the limiting member 203 is between the first clamping angle and the second clamping angle. In optional embodiments, the limiting member 203 and the connecting plate 201 are connected through a rotating shaft (not shown in the figure) and a shaft hole (not shown in the figure) in rotation matching, and the concave-convex structure (not shown in the figure) can be arranged on the outer surface of the rotating shaft and the inner wall of the shaft hole to limit the rotation angle and the rotation range of the rotating shaft. For example, the outer surface of the rotating shaft has a limiting protrusion, and the inner wall of the shaft hole has a limiting groove extending along the circumference of the shaft hole, and the limiting protrusion and the limiting groove are limited in matching. It should be noted that when the limiting member 203 is in the first state, the rotating shaft and the shaft hole are unidirectionally limited, so that the end of the limiting member 203 used for contacting the connecting protrusion 3013 cannot be rotated towards the direction of the slot opening, but only can be rotated towards the direction of the slot bottom. The rotating shaft and the shaft hole can be arranged according to different needs, and optionally, the connecting plate 201 is provided with the rotating shaft, and the limiting member 203 is provided with the shaft hole.
[0054] In order to realize the automatic reset of the limiting member 203 after rotation relative to the connecting plate 201, in optional embodiments, a reset spring (not shown in the figure) is arranged between the rotating shaft and the shaft hole, and one end of the reset spring is fixedly connected with the rotating shaft, and the other end is fixedly connected with the shaft hole.
[0055] In other embodiments, the limiting member 203 can also be fixed on the connecting plate 201, and the state switching of the limiting member 203 can be realized by the elastic deformation of the limiting member 203.
[0056] Figure 7 The limiting member 203 in the card slot 2021 is in a wedge-shaped structure, and the side of the wedge-shaped structure facing the slot opening of the card slot 2021 is a slope, specifically, the slope is a slope directed from the slot opening to the slot bottom of the card slot 2021; the side of the wedge-shaped structure facing the slot bottom of the card slot 2021 is a plane.
[0057] Through the above arrangement, the slope can be used to guide the process of the connecting protrusion 3013 entering the card slot 2021, and facilitate the connecting protrusion 3013 to enter the card slot 2021; the plane can reduce the distance from the limiting member 203 to the slot bottom of the card slot 2021, which is beneficial to prevent the connecting protrusion 3013 from shaking in the card slot 2021.
[0058] The inclination angle of the slope can be set according to different needs, and is within the protection scope.
[0059] The connecting plate 201 of the glove box bucket 200 disclosed in some embodiments is further provided with a handle portion 204. One end of the handle portion 204 is exposed outside the clamping groove 2021, and the other end of the handle portion 204 is fixedly connected with the limiting piece 203. Exemplarily, the handle portion 204 and the limiting piece 203 are integrally formed. By increasing the handle portion 204, the limiting piece 203 can be driven to rotate by applying external force to the handle portion 204.
[0060] By providing the handle portion 204, when the glove box bucket 200 and the damping mechanism 300 are separated, a tool can be used to press against the handle portion 204, so that the limiting piece 203 is tilted towards the direction of the groove bottom, the slot of the clamping groove 2021 is released, and the connecting protrusion 3013 is separated from the clamping groove 2021, thereby realizing the separation of the glove box bucket 200 and the damping mechanism 300, so as to facilitate the maintenance and replacement of the operator, that is, the convenience of disassembling the damping mechanism 300 is improved.
[0061] It can be understood that the glove box assembly 1000 in the application utilizes the assembly relationship of the connecting protrusion 3013, the clamping groove 2021 and the limiting piece 203, so that the glove box bucket 200 and the damping mechanism 300 can be quickly assembled and also quickly disassembled, that is, the disassembly efficiency of the glove box bucket 200 and the damping mechanism 300 is improved.
[0062] On the basis of the above technical solutions, the slot of the clamping groove 2021 has a guide surface 2022 that guides the inside of the clamping groove 2021. The guide surface 2022 can guide the process of the connecting protrusion 3013 entering the clamping groove 2021. Exemplarily, the guide surface 2022 is an arc surface, so as to avoid the collision between the top corner of the slot of the clamping groove 2021 and the connecting protrusion 3013, and reduce the wear of the connecting protrusion 3013.
[0063] The above content discloses the assembly mode of the glove box bucket 200 and the damping mechanism 300. The connection mode of the damping mechanism 300 and the glove box frame 100 is described below. Figure 5 、 Figure 6 and Figure 9 to Figure 11 .
[0064] Specifically, Figure 5 and Figure 6 disclose a specific structure of the damping mechanism 300, which comprises a guide rail 301 and a sliding block 302. The guide rail 301 comprises a guide rail main body 3011, a connecting end 3012 and a connecting protrusion 3013. The sliding block 302 comprises a mounting end 3021, an engaging end 3022, a connecting disc 3023 and a connecting rib 3024.
[0065] Specifically, the guide rail body 3011 is provided with a ratchet along the extension direction, and the meshing end 3022 is provided with a pawl matched with the ratchet. The ratchet guides in the reverse direction of the first direction, so that the slider 302 has a damping force during movement in the first direction relative to the guide rail 301.
[0066] The connecting end 3012 is integrally formed with the guide rail body 3011, and the connecting protrusion 3013 protrudes from the plane where the connecting end 3012 is located. In some embodiments, the connecting protrusion 3013 is a stepped column, and the diameter of the section connected with the connecting end 3012 is smaller than the diameter of the section away from the connecting end 3012. The stepped column structure of the connecting protrusion 3013 forms a recessed position at the position where the connecting protrusion 3013 is connected with the connecting end 3012, and the recessed position is clamped into the clamping groove 2021, and the large-diameter part of the connecting protrusion 3013 and the connecting end 3012 are used to simultaneously fit the upper surface and the lower surface of the clamping groove 2021, so as to realize axial positioning of the connecting protrusion 3013 and prevent the connecting protrusion 3013 from being separated from the clamping groove 2021 in the axial direction.
[0067] The mounting end 3021 and the meshing end 3022 are integrally formed and surround the outside of the guide rail body 3011. The mounting end 3021 is used to connect with the glove box frame 100. Specifically, the mounting end 3021 is provided with a connecting disc 3023, and the connecting disc 3023 is provided with a connecting rib 3024. The connecting rib 3024 is in the form of a character, for example.
[0068] In optional embodiments, the guide rail 301 and the slider 302 are integrally formed as structural members, so as to reduce the assembly cost.
[0069] As shown in Figure 9 and Figure 11 The glove box frame 100 is provided with a mounting hole 101 and a limiting block 102.
[0070] The mounting hole 101 is used for the connecting rib 3024 to pass through, and the connecting disc 3023 is rotationally connected with the middle position of the mounting hole 101. During rotation of the connecting disc 3023 and the mounting hole 101, the connecting rib 3024 will be misaligned with the mounting hole 101, so as to realize fixed connection of the mounting end 3021 and the glove box frame 100.
[0071] The limiting block 102 is fixed on the glove box frame 100 and is used to limit the rotation angle of the slider 302 relative to the mounting hole 101. After the glove box frame 100 is connected with the damping mechanism 300, the connecting rib 3024 abuts against the limiting block 102 under the self-weight of the damping mechanism 300, so that the glove box frame 100 is relatively fixed with the damping mechanism 300.
[0072] It should be noted that when the damping mechanism 300 is preassembled on the glove box frame 100, the sliding block 302 is located at one end of the guide rail 301 close to the connecting end 3012, so the weight of this end of the damping mechanism 300 is greater than that of the other end, and the heavy end (the right end of the damping mechanism 300) of the damping mechanism 300 will move downward under the action of gravity until it is limited by the limiting block 102. It can be understood that the damping mechanism 300 is assembled in place on the glove box frame 100 under the action of gravity. Figure 10
[0073] After the damping mechanism 300 is assembled in place on the glove box frame 100, the damping mechanism 300 and the glove box bin 200 can be assembled, and during the assembly of the damping mechanism 300 and the glove box bin 200, the connecting protrusion 3013 of the damping mechanism 300 will not be offset in position due to reverse rotation under the action of gravity during extrusion of the limiting piece 203, so as to ensure that the connecting protrusion 3013 can smoothly enter the clamping groove 2021.
[0074] In an optional embodiment, the glove box frame 100 and the glove box bin 200 in the present application are respectively one-piece structural members, so as to reduce the assembly cost.
[0075] In addition, the present application also discloses a vehicle comprising the glove box assembly 1000, wherein the glove box assembly 1000 is the glove box assembly 1000 disclosed in the above embodiments, so the vehicle with the glove box assembly 1000 also has all the technical effects described above, which will not be repeated here.
[0076] The embodiments in the specification are described in a progressive manner, and each embodiment focuses on the differences from other embodiments. The same or similar parts between the embodiments can be referred to each other.
[0077] The above description of the disclosed embodiments enables a person skilled in the art to implement or use the present application. Various modifications to these embodiments will be apparent to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present application. Therefore, the present application should not be limited to the embodiments shown herein, but should be consistent with the widest scope of principles and novel features disclosed herein.
Claims
1. A glove box assembly, characterized in that, include: Glove box frame (100); A glove box hopper (200) is rotatably connected to the glove box frame (100). The glove box hopper (200) has a slot (2021), and a limiting member (203) is provided at the opening of the slot (2021). A damping mechanism (300) includes a guide rail (301) and a slider (302). The slider (302) is slidably engaged with the guide rail (301). The slider (302) has a damping force during sliding relative to the guide rail (301) in a first direction. The slider (302) is hinged to the glove box frame (100). One end of the guide rail (301) has a connecting protrusion (3013). The connecting protrusion (3013) can press the limiting member (203) and insert it into the slot (2021). The limiting member (203) can prevent the connecting protrusion (3013) from disengaging from the slot (2021). The first direction is the direction in which the connecting protrusion (3013) moves away from the slider (302).
2. The glove box assembly according to claim 1, characterized in that, When the angle between the limiting member (203) and the extending direction of the slot (2021) is the first angle, the connecting protrusion (3013) is restricted from disengaging from the slot (2021); when the limiting member (203) is inclined away from the opening of the slot (2021) and the angle between the limiting member (203) and the extending direction of the slot (2021) is the second angle, the connecting protrusion (3013) can be inserted into the slot (2021); The second included angle is smaller than the first included angle.
3. The glove box assembly according to claim 2, characterized in that, A connecting plate (201) is provided on the side of the glove box (200) near the damping mechanism (300), and the connecting plate (201) has the slot (2021). The limiting member (203) is rotatably mounted on the connecting plate (201) between the first included angle and the second included angle.
4. The glove box assembly according to claim 3, characterized in that, The connecting plate (201) and the limiting member (203) are rotatably connected through a rotating shaft and a shaft hole; The outer surface of the rotating shaft and the inner wall of the shaft hole are fitted by a concave-convex structure, and when the angle between the limiting member (203) and the extension direction of the slot (2021) is the first angle, the rotating shaft and the shaft hole are unidirectionally limited in the circumferential direction. The rotation direction of the limiting member (203) is such that the end of the limiting member (203) that contacts the connecting protrusion (3013) rotates toward the bottom of the slot (2021).
5. The glove box assembly according to any one of claims 1 to 4, characterized in that, The limiting member (203) is a wedge-shaped structure, and the side of the wedge-shaped structure facing the slot (2021) is an inclined surface; The inclined surface is a slope that guides the card slot (2021) from the opening to the bottom of the slot.
6. The glove box assembly according to claim 5, characterized in that, Also includes: The handle (204) has one end exposed in the slot (2021) and the other end fixedly connected to the limiting member (203) for driving the limiting member (203) to rotate.
7. The glove box assembly according to any one of claims 1 to 4, characterized in that, The slider (302) is rotatably connected to the glove box frame (100), and the glove box frame (100) is provided with a limiting block (102) for limiting the rotation angle of the slider (302) relative to the glove box frame (100). When the slider (302) abuts against the limiting block (102), the connecting protrusion (3013) can be inserted into the slot (2021).
8. The glove box assembly according to any one of claims 1 to 4, characterized in that, The slot (2021) has a guide surface at the opening to guide the interior of the slot (2021).
9. The glove box assembly according to any one of claims 1 to 4, characterized in that, The connecting protrusion (3013) is a stepped column, and the diameter of the section connected to the guide rail (301) is smaller than the diameter of the section away from the guide rail (301).
10. A vehicle comprising a glove box assembly (1000), characterized in that, The glove box assembly (1000) is the glove box assembly (1000) as described in any one of claims 1 to 9.