Guiding connecting device, vehicle-mounted armrest assembly and vehicle
The guide assembly and locking assembly in the guide connection device solve the problem of non-adjustable travel of the vehicle armrest, realize flexible adjustment and stable movement of the armrest, and improve the convenience and aesthetics of use.
Patent Information
- Application Number
- CN202422944155.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-28
- Publication Date
- 2025-09-09
- Estimated Expiration
- 2034-11-28
AI Technical Summary
The moving range of the vehicle-mounted armrest is greatly limited, and the range cannot be set according to actual needs.
A guide connection device is provided, comprising a mounting member and a guide assembly. The length of the guide assembly is coupled with the length of the interior component to achieve synchronous movement of the armrest member and the interior component. The armrest member is locked or unlocked at a preset position by a locking assembly. Combined with a damping member and a reversing structure, the armrest member can be stably moved and its position maintained.
The flexible adjustment of the armrest stroke is achieved, which improves the convenience and stability of use, meets the usage scenarios with different needs, and maintains the overall aesthetics.
Smart Images

Figure CN223314887U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of vehicle technology, and in particular to a guide connection device, a vehicle-mounted armrest assembly, and a vehicle. Background Art
[0002] In the related art, the moving range of the vehicle-mounted armrest is greatly limited, and the range cannot be set according to actual needs. Utility Model Content
[0003] The embodiment of the present application provides a guide connection device, which improves the ease of use of the guide connection device, so as to at least partially solve the above-mentioned technical problems.
[0004] In order to achieve the above-mentioned object, according to a first aspect of the present application, a guide connection device is provided, comprising:
[0005] Mounting parts for connecting interior trim parts and armrest parts; and
[0006] a guide assembly for connecting the mounting member and the interior trim member;
[0007] The length of the guide assembly is coupled to the length of the interior component along the first direction. Optionally, the mounting member is configured to be movably connected to the interior component via the guide assembly, such that the armrest member and the mounting member can move synchronously relative to the interior component along the first direction within a predetermined travel range. Optionally, the interior component defines a receiving space for accommodating at least a portion of the guide assembly and an interior space communicating with the receiving space.
[0008] The opening of the interior space and the opening of the receiving space are oriented in different directions, so that the mounting member can open or close the interior space when it moves relative to the interior member in a first direction within a preset stroke.
[0009] a first guide member, configured to connect to one of the mounting member and the interior trim member;
[0010] a second guide member for connecting to the other of the mounting member and the interior trim member;
[0011] The first guide member at least surrounds a portion of the second guide member, so that the armrest member can move relative to the interior trim member along a first direction within a preset stroke.
[0012] Optionally, one of the first guide member and the second guide member is columnar, and the other is formed with a central space penetrating the guide member along the first direction.
[0013] Optionally, the guide connection device further includes:
[0014] a connecting assembly located between the mounting member and the interior trim member;
[0015] The connecting assembly enables the mounting component to move relative to the interior component along a first direction at a preset speed within a preset stroke.
[0016] Optionally, the connection component includes:
[0017] a first connecting member, configured to connect to one of the mounting member and the interior trim member;
[0018] a second connecting member, configured to connect to the other of the mounting member and the interior trim member;
[0019] The first connecting member and the second connecting member form a dynamic coupling, so that the mounting member moves relative to the interior trim member along a first direction at a preset speed within a preset stroke.
[0020] Optionally, the connection component further includes:
[0021] The damping member is located on the interior decoration member and is used to be connected to the connecting member on the interior decoration member.
[0022] Optionally, the first connecting member and the second connecting member are configured as gear racks.
[0023] Optionally, the guide connection device further includes:
[0024] a locking assembly, located between the mounting member and the interior trim member;
[0025] Wherein, within a preset stroke, the locking assembly can enable the armrest member to have a locked state at a preset position relative to the interior decoration member and an unlocked state in which the armrest member moves along a first direction relative to the interior decoration member.
[0026] Optionally, the interior trim has a preset space;
[0027] The locking assembly comprises:
[0028] a locking member movably connected to the interior component so that the locking member has at least a locked position and an unlocked position relative to the interior component;
[0029] Wherein, when the locking member is in a locked position relative to the interior trim member, the locking member interferes with the preset space, so that the armrest member is in a locked state at the preset position;
[0030] When the locking member is in an unlocked position relative to the interior component, the locking member eliminates interference with the preset space, so that the armrest member is in an unlocked state moving relative to the interior component along the first direction.
[0031] Optionally, the locking member forms a sliding connection with respect to the mounting member along the second direction;
[0032] The locking member is adapted to slide relative to the mounting member along the second direction so that a portion of the locking member interferes with the preset space or eliminates interference with the preset space;
[0033] The first direction is perpendicular or inclined to the second direction.
[0034] Optionally, the locking assembly further includes:
[0035] an unlocking member, connected to the mounting member and the locking member respectively;
[0036] The unlocking member applies a force to the locking member so that the locking member can move from the unlocking position to the locking position along a second direction.
[0037] Optionally, the locking assembly includes at least two locking members, and the two locking members are located on opposite sides in the second direction;
[0038] In the process in which the locking member is able to move from the locking position to the unlocking position along the second direction, the two locking members arranged in opposite directions approach each other.
[0039] Optionally, the unlocking member is adapted to apply a force to the locking member along a third direction;
[0040] The third direction is arranged to intersect with a plane formed by the second direction and the first direction.
[0041] Optionally, the locking assembly further includes:
[0042] a reversing structure, located between the unlocking member and the locking member;
[0043] The force applied by the reversing structure to the locking member along the third direction by the unlocking member can have a force component in the second direction, so that the locking member can slide relative to the mounting member along the second direction to the unlocking position.
[0044] Optionally, the switching structure includes:
[0045] an active reversing portion, formed to the unlocking member;
[0046] A driven reversing portion formed to the locking member;
[0047] The unlocking member applies an action force to the driven reversing portion through the active reversing portion along the third direction, and the driven reversing portion causes the action force to have a force component along the second direction.
[0048] Optionally, the active reversing portion and the driven reversing portion are both constructed as planes;
[0049] The plane is arranged to intersect obliquely with a plane formed by the second direction and the first direction.
[0050] Optionally, the unlocking member forms a rotational connection relative to the mounting member around a second direction.
[0051] Optionally, the locking assembly further includes:
[0052] A mounting bracket, fixedly connected to the mounting member;
[0053] The locking member is connected to the mounting bracket, and the mounting bracket can prevent the locking member from moving along the third direction.
[0054] Optionally, the guide connection device further includes:
[0055] The first reset member is partially connected to the mounting bracket and partially adapted to act on the unlocking member so that the unlocking member has a tendency to drive the active reversing portion away from the driven reversing portion so that the locking member can switch from the unlocking position to the locking position.
[0056] Optionally, the guide connection device further includes:
[0057] a second restoring member, partially connected to the locking member and partially connected to the interior trim member;
[0058] The second reset member is adapted to act on the locking member so that the locking member has a tendency to interfere with the preset space, so that the locking member can move from the unlocking position to the locking position and remain in the locking position.
[0059] According to a second aspect of the present application, a vehicle-mounted armrest assembly is provided, comprising the guide connection device as described above.
[0060] According to a third aspect of the present application, a vehicle is also provided, comprising the guide connection device as described above or the vehicle-mounted armrest assembly as described above.
[0061] The beneficial effect of the present application is that it provides a guide connection device that can adjust the stroke of the armrest according to actual needs.
[0062] More specifically, some embodiments of the present application may produce the following specific beneficial effects:
[0063] The guide connection device of an embodiment of the present application includes a mounting member and a guide assembly, wherein the mounting member is used to connect an interior trim component and an armrest component, and the guide assembly is used to connect the mounting member and the interior trim component. The length of the guide assembly is coupled to the length of the interior trim component along a first direction. Through the above technical solution, the guide assembly is positioned between the interior trim component and the mounting member, and the length of the guide assembly is coupled to the length of the interior trim component. This allows the length of the guide assembly to be matched to the length of the interior trim component as needed, thereby improving the travel distance of the armrest component.
[0064] Other features and advantages of the present application will be described in detail in the subsequent detailed description. BRIEF DESCRIPTION OF THE DRAWINGS
[0065] To more clearly illustrate the technical solutions in the embodiments of the present application, the following briefly introduces the drawings required for describing the embodiments. Obviously, the drawings described below are only some embodiments of the present application. Those skilled in the art can also derive other drawings based on these drawings without inventive effort.
[0066] In order to more completely understand the present application and its beneficial effects, the following description will be given in conjunction with the accompanying drawings, wherein the same drawing numbers represent the same parts in the following description.
[0067] Figure 1 1 is a schematic structural diagram of an armrest member of a vehicle armrest assembly provided in an exemplary embodiment of the present application, in an initial position relative to an interior trim member;
[0068] Figure 2 2. It is a schematic structural diagram of an armrest component of a vehicle armrest assembly provided in an exemplary embodiment of the present application, in which the armrest component is located at a first preset position relative to an interior trim component;
[0069] Figure 3 2 is a schematic structural diagram of an armrest member of a vehicle armrest assembly provided in an exemplary embodiment of the present application, in which the armrest member is located at a second preset position relative to the interior trim member;
[0070] Figure 4 is a schematic diagram of an exploded structure of a vehicle armrest assembly provided in an exemplary embodiment of the present application;
[0071] Figure 5 is a schematic diagram of the overall structure of an interior trim provided in an exemplary embodiment of the present application;
[0072] Figure 6 is a schematic diagram of the connection structure between the locking assembly and the mounting member provided in an exemplary embodiment of the present application;
[0073] Figure 7is an exploded structural diagram of a locking assembly and a mounting member provided in an exemplary embodiment of the present application;
[0074] Figure 8 is a schematic diagram of the connection structure between the locking assembly and the mounting member provided in an exemplary embodiment of the present application from another angle;
[0075] Figure 9 is a schematic structural diagram of a rear end of an interior trim component provided in an exemplary embodiment of the present application;
[0076] Figure 10 is a schematic diagram of the connection structure between the unlocking member and the locking assembly provided in an exemplary embodiment of the present application;
[0077] Figure 11 2. It is a structural schematic diagram of a driven reversing portion provided on a locking member in an exemplary embodiment of the present application;
[0078] Figure 12 This is a schematic structural diagram of an unlocking member provided in an exemplary embodiment of the present application in which an active reversing portion is provided;
[0079] Figure 13 Schematic diagram of the connection structure of the second connecting member, the interior trim member and the damping member provided in an exemplary embodiment of the present application;
[0080] Figure 14 is a schematic diagram of a vehicle provided in an exemplary embodiment of the present application;
[0081] Description of reference numerals:
[0082] 100. Guide connection device;
[0083] 110. Mounting parts;
[0084] 120. Guide assembly;
[0085] 121, first guide member; 122, second guide member; 120a, central space;
[0086] 130. Connecting components;
[0087] 131. First connecting member; 132. Second connecting member; 133. Damping member;
[0088] 140. Locking assembly; 141. Locking member; 1411. Locking portion;
[0089] 142. Unlocking parts;
[0090] 143. Reversing structure; 1431. Active reversing unit; 1432. Driven reversing unit;
[0091] 144. Mounting bracket; 1441. Limiting portion; 145. Guide member;
[0092] 150. First reset member;
[0093] 200, interior parts; 200a, storage space; 200b, interior space; 200c, preset space;
[0094] 210, interior trim body; 220, interior trim support portion;
[0095] 300, armrest; 400, outer panel;
[0096] 10. Vehicle-mounted armrest assembly; 1. Vehicle. DETAILED DESCRIPTION
[0097] The following will be combined with the drawings in the embodiments of the present application to clearly and completely describe the technical solutions in the embodiments of the present application. Obviously, the embodiments described are only part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work are within the scope of protection of the present application.
[0098] Reference Figures 1 to 3 As shown, for the convenience of introduction, the upper, lower, left, right, front and back directions are adopted in the corresponding drawings to facilitate the introduction of the relative position relationship between the various parts in this application, which should not be understood as a limitation on the absolute position.
[0099] Moreover, in the present application, the first direction corresponds to the front-to-back direction, the second direction corresponds to the left-to-right direction, and the third direction corresponds to the up-to-down direction; similarly, the first direction here indicates the front-to-back direction only for the convenience of introducing the specific embodiments of the present application. There is no absolute correspondence between the first direction and the front-to-back direction. Similarly, there is no absolute correspondence between the second direction and the left-to-right direction, and between the third direction and the up-to-down direction.
[0100] The first direction, second direction and third direction of the present application are only used to express relative positional relationships. They only indicate approximate directions rather than absolute geometric relationships.
[0101] According to a first aspect of the present application, a guide connection device 100 is provided, referring to Figures 1 to 13 , including: a mounting part 110 and a guide component 120.
[0102] The mounting member 110 is used to connect the interior component 200 and the armrest component 300 , and the guide assembly 120 is used to connect the mounting member 110 and the interior component 200 . Along the first direction, the length of the guide assembly 120 is coupled with the length of the interior component 200 .
[0103] Through the above technical solution, the guide assembly 120 is set between the interior decoration part 200 and the mounting part 110, and the length of the guide assembly 120 is coupled with the length of the interior decoration part 200. The length of the guide assembly 120 can be matched with the length of the interior decoration part 200 according to needs, thereby improving the travel distance of the armrest part 300.
[0104] In some embodiments, reference Figures 1 to 13 The mounting member 110 is configured to be movably connected to the interior component 200 through the guide assembly 120, so that the armrest member 300 and the mounting member 110 can form a synchronous movement along the first direction within a preset stroke relative to the interior component 200.
[0105] By configuring the mounting member 110 to be movably connected to the interior component 200 through the guide assembly 120, the armrest member 300 and the mounting member 110 can form a synchronous movement along the first direction relative to the interior component 200 within a preset stroke, so that the armrest member 300 and the mounting member 110 can complete the synchronous movement along the first direction within the preset stroke, further improving the movement stroke of the interior component 200. At the same time, the mounting member 110 is connected to the interior component 200 through the guide assembly 120, which can reduce the overall thickness of the interior component 200.
[0106] For example, the length of the guide assembly 120 may be set to be substantially the same as the length of the interior trim 200 along the first direction, and the ratio may be between 0.9 and 1.1.
[0107] In the present application, two guide assemblies 120 may be symmetrically arranged on both sides of the interior trim 200 .
[0108] In some embodiments, reference Figure 3 The interior component 200 defines a receiving space 200a for receiving at least part of the guide assembly 120 and an interior space 200b connected to the receiving space 200a; wherein, the opening of the interior space 200b is oriented differently from the opening of the receiving space 200a, so that the mounting member 110 can open or close the interior space 200b when it moves in a first direction within a preset stroke relative to the interior component 200.
[0109] By arranging the guide assembly 120 in the receiving space 200a of the interior part 200, and the opening direction of the receiving space 200a is different from the opening direction of the interior space 200b, the interior space 200b can be opened or closed when the mounting member 110 moves along the first direction relative to the interior part 200 within a preset stroke. At this time, since the receiving space 200a has a different opening direction from the interior space 200b, even if the interior space 200b is opened, the guide assembly 120 will be hidden in the receiving space 200a, and the guide assembly 120 cannot be observed from top to bottom. In this way, the armrest member 300 can slide a large distance while hiding the guide assembly 120, thereby ensuring the overall beauty of the armrest assembly.
[0110] Exemplarily, the interior component 200 includes an armrest box, which defines an interior space 200 b and a receiving space 200 a . The guide assembly 120 is disposed in the interior space 200 b , and a guide assembly 120 is disposed on both inner walls of the armrest component 300 .
[0111] In the present application, a storage space 200a for placing cups is provided in the interior space 200b. When the armrest member 300 and the mounting member 110 move synchronously along a first direction relative to the interior member 200 by a preset stroke, that is, when they move to a first preset position, the storage space 200a for placing cups is exposed, realizing the use scenario of the cup holder.
[0112] refer to Figure 3 , the plane where the opening of the accommodating space 200a is located can be set perpendicular to the plane where the opening of the interior space 200b is located.
[0113] In some embodiments, reference Figure 4 The guide assembly 120 includes a first guide member 121 and a second guide member 122 .
[0114] The first guide member 121 is used to connect with one of the mounting member 110 and the interior trim member 200 , and the second guide member 122 is used to connect with the other of the mounting member 110 and the interior trim member 200 .
[0115] The first guide member 121 at least surrounds a portion of the second guide member 122 , so that the armrest member 300 can move relative to the interior trim member 200 along a first direction within a preset stroke.
[0116] By arranging the first guide member 121 around at least a portion of the second guide member 122, the connection between the mounting member 110 and the interior member 200 is completed using the first guide member 121 and the second guide member 122. The first guide member 121 and the second guide member 122 can enable the mounting member 110 to move stably relative to the interior member 200.
[0117] For example, the first guide member 121 can be connected to the mounting member 110, and the second guide member 122 can be connected to the interior part 200. Under the action of external force, the mounting member 110 can carry the armrest member 300 and move along the first direction on the second guide member 122 using the first guide member 121, thereby achieving the effect of moving the armrest member 300 relative to the interior part 200 along the first direction.
[0118] Specifically, the mounting member 110 can be constructed into a plate shape, and the first guide member 121 can be formed on both sides of the plate-shaped mounting member 110 , and the second guide member 122 can be formed in the interior space 200 b of the interior member 200 and located on both sides of the interior member 200 .
[0119] In some embodiments, reference Figure 4 One of the first guide member 121 and the second guide member 122 is configured as a column, and the other is formed with a central space 120a penetrating the guide member along the first direction.
[0120] By configuring the first guide member 121 and the second guide member 122 to be columnar and to fit in the central space 120 a , movement is stabilized.
[0121] Exemplarily, the first guide member 121 can be constructed as a ring with a central space 120a, and the second guide member 122 can be constructed as a column. The first guide member 121 and the second guide member 122 are then nested so that the first guide member 121 can move stably along the second guide member 122 to achieve a sliding effect of the armrest member 300.
[0122] In some embodiments, reference Figure 8 and Figure 13 The guide connection device 100 also includes: a connection component 130.
[0123] The connecting assembly 130 is located between the mounting member 110 and the interior trim member 200 , wherein the connecting assembly 130 enables the mounting member 110 to move relative to the interior trim member 200 along a first direction at a preset speed within a preset stroke.
[0124] By providing a connecting assembly 130 between the mounting member 110 and the interior member 200 , the connecting assembly 130 enables the mounting member 110 to move relative to the interior member 200 along a first direction within a preset range at a preset rate, further enabling the mounting member 110 to move stably relative to the interior member 200 .
[0125] At the same time, the connecting component 130 can be used in conjunction with the guiding component 120 to enable the mounting component 110 to move stably relative to the interior trim component 200 .
[0126] In some embodiments, reference Figure 8 and Figure 13The connecting component 130 includes: a first connecting member 131 and a second connecting member 132 .
[0127] The first connecting member 131 is used to connect to one of the mounting member 110 and the interior part 200, and the second connecting member 132 is used to connect to the other of the mounting member 110 and the interior part 200, wherein the first connecting member 131 and the second connecting member 132 form a power coupling to enable the mounting member 110 to move along a first direction relative to the interior part 200 at a preset speed within a preset stroke.
[0128] By connecting the first connecting member 131 to one of the mounting member 110 and the interior part 200, and connecting the second connecting member 132 to the other of the mounting member 110 and the interior part 200, and forming a dynamic coupling with the first connecting member 131 and the second connecting member 132, the effect of the mounting member 110 being able to move in a first direction relative to the interior part 200 at a preset speed within a preset stroke is achieved.
[0129] For example, the first connection member 131 may be disposed at the bottom of the mounting member 110 , facing the interior space 200 b , and the second connection member 132 may be disposed at one end of the interior member 200 .
[0130] In some embodiments, reference Figure 8 and Figure 13 The first connecting member 131 and the second connecting member 132 are configured as gear racks.
[0131] By constructing the first connecting member 131 and the second connecting member 132 into a gear rack structure, for example, the first connecting member 131 can be a rack and the second connecting member 132 can be a gear, the sleeve structure of the first guide member 121 and the second guide member 122 can be matched, so that the mounting member 110 can move stably relative to the interior member 200.
[0132] In some embodiments, reference Figure 8 and Figure 13 The connecting component 130 also includes: a damping member 133.
[0133] The damping member 133 is set on the interior part 200, and the damping member 133 can be connected to the connecting member on the interior part 200. Combined with the above-mentioned setting method of the first connecting member 131 being set at the bottom of the mounting member 110 and the second connecting member 132 being set on the interior part 200, the damping member 133 can be connected to the gear.
[0134] By providing the damping member 133 and connecting the damping member 133 to the gear, a sliding damping feeling of the armrest member 300 is achieved when the mounting member 110 and the armrest member 300 move relative to the interior member 200 .
[0135] Specifically, the damping member 133 and the gear can be constructed relative to the interior trim 200 as a detachable whole, and the whole can be installed at the rear end of the interior trim 200 (ie, the armrest box).
[0136] It should be noted that when the front end of the armrest 300 is located at the front end of the interior component 200, it can completely cover the interior space 200b of the interior component 200. When the front end of the armrest 300 continuously moves toward the rear end of the interior component 200 relative to the front end of the interior component 200, the interior space 200b is gradually exposed for user use.
[0137] In the present application, in order to ensure that the armrest member 300 can remain in the preset position after moving to the preset position relative to the interior trim member 200 , in some embodiments, the guide connection device 100 further includes: a locking assembly 140 .
[0138] The locking assembly 140 is located between the mounting member 110 and the interior member 200 , wherein within a preset stroke, the locking assembly 140 enables the armrest member 300 to have a locked state at a preset position relative to the interior member 200 and an unlocked state moving relative to the interior member 200 along a first direction.
[0139] By setting a locking assembly 140 between the mounting member 110 and the interior component 200, the locking assembly 140 can be used to enable the armrest member 300 to have a locked state in a preset position relative to the interior component 200 and an unlocked state in which it moves relative to the interior component 200 along a first direction, thereby ensuring that after the armrest member 300 moves to the preset position relative to the interior component 200, the locking member 141 can be used to keep the mounting member 110 in the preset position, and the armrest member 300 can be kept in the preset position, thereby achieving the stability of the armrest member 300, especially when the mounting member 110 moves relative to the interior component 200 to a position that exposes the interior space 200b, the stability of the armrest member 300 can facilitate the corresponding operation of the user.
[0140] In some embodiments, reference Figures 6 to 12 The interior decoration part 200 has a preset space 200c, and the locking assembly 140 includes: a locking part 141.
[0141] The locking member 141 is movably connected to the interior component 200 such that the locking member 141 has at least a locked position and an unlocked position relative to the interior component 200. When the locking member 141 is in the locked position relative to the interior component 200, the locking member 141 interferes with the preset space 200c, thereby placing the armrest member 300 in a locked state at the preset position. When the locking member 141 is in the unlocked position relative to the interior component 200, the locking member 141 no longer interferes with the preset space 200c, thereby placing the armrest member 300 in an unlocked state capable of moving relative to the interior component 200 in a first direction.
[0142] The armrest member 300 can be locked and unlocked by utilizing the interference and release of the locking member 141 with the preset space 200 c on the interior trim member 200 .
[0143] For example, a preset space 200c can be opened in the interior part 200 of the interior part 200. The preset space 200c can be a channel opened on the two side walls of the interior part 200 to avoid the guide assembly 120. The channel serves as a preset space 200c for a portion of the locking member 141 to extend into.
[0144] refer to Figure 5 The interior trim 200 includes an interior trim body 210 and an interior trim support portion 220. The interior trim support portion 220 is connected to the left and right sides of the interior trim body 210 and can form a accommodating space 200a with the interior trim body 210 to place the guide assembly 120. The accommodating space 200a is formed between the interior trim body 210 and the interior trim support portion 220 along the first direction, and the accommodating space 200a is part of the interior space 200b of the interior trim 200. After the guide assembly 120 is placed in the interior space 200b of the interior trim 200, it can be hidden in the accommodating space 200a in the interior space 200b. Even after the installation part 110 opens the interior space 200b, the guide assembly 120 cannot be seen when observed from top to bottom, thereby ensuring the aesthetics of use.
[0145] Specifically, a portion of the locking member 141 may be constructed as a columnar structure, and a portion of the locking member that interferes with the preset space 200 c is defined as a locking portion 1411 .
[0146] In some embodiments, the locking member 141 forms a sliding connection relative to the mounting member 110 along the second direction, wherein the locking member 141 can slide relative to the mounting member 110 along the second direction so that a portion of the locking member 141 interferes with the preset space 200c or eliminates interference with the preset space 200c.
[0147] The first direction is perpendicular to or inclined to the second direction.
[0148] By forming a sliding connection between the locking member 141 and the mounting member 110 along a second direction perpendicular to or inclined to the first direction, when the locking member 141 slides along the second direction relative to the mounting member 110, part of the locking member 141 can interfere with or release the interference with the preset space 200c, thereby achieving a locking state in which the mounting member 110 and the armrest member 300 can be locked in the preset position using the locking member 141.
[0149] In the present application, the second direction may be constructed to be perpendicular to the first direction, and in this case the locking member 141 may interfere with or release interference with the preset space 200 c of the interior trim 200 more smoothly.
[0150] It should be noted that the second direction is the left-right direction of the interior component 200, and the first direction is the front-back direction of the interior component 200. In this application, a driving motor can be used to directly apply a force to the locking component 141 along the second direction. Of course, a force can also be applied to the locking component 141 in a direction different from the second direction, so that the locking component 141 can move along the second direction, for example, to interfere with or release the interference with the preset space 200c.
[0151] In some embodiments, reference Figures 10 to 12 The locking assembly 140 further includes an unlocking member 142 .
[0152] By connecting the unlocking member 142 to the mounting member 110 and the locking member 141 respectively, wherein the unlocking member 142 applies a force to the locking member 141 so that the locking member 141 can move from the locked position to the unlocked position along the second direction, and the locking member 141 can move from the locked position to the unlocked position relative to the mounting member 110 in the second direction, thereby achieving the unlocking and locking of the mounting member 110 and the armrest member 300 at the preset position, and after unlocking, the mounting member 110 and the armrest member 300 can move again along the first direction relative to the interior trim 200 to achieve position switching, thereby achieving the effect of multi-position switching and locking of the interior trim 200.
[0153] For example, three channels can be opened along the first direction on the interior support portion 220 of the interior part 200, and the three channels are evenly opened on the interior support portion 220 according to actual needs. The locking member 141 can be used to lock the three positions of the mounting member 110 and the armrest member 300, thereby achieving a multi-stage locking effect of the mounting member 110 and the armrest member 300 relative to the interior part 200.
[0154] In some embodiments, reference Figure 10 The locking assembly 140 includes at least two locking members 141 , and the two locking members 141 are located on opposite sides in the second direction.
[0155] In the process that the locking member 141 can move from the locking position to the unlocking position along the second direction, the two locking members 141 arranged opposite to each other approach each other.
[0156] By setting two locking members 141, both sides of the mounting member 110 can be locked, further improving the locking stability of the mounting member 110, and in the process of the locking member 141 moving from the locking position to the unlocking position along the second direction, the two locking members 141 set back to each other can approach each other for easy operation.
[0157] For example, a locking member 141 can be provided on both the left and right sides of the interior trim 200. When the locking member 141 moves from the locked position to the unlocked position, the two locking members 141 on the left and right sides can move toward the middle to approach each other. When the locking member 141 moves from the unlocked position to the locked position, the two locking members 141 can move to the left and right sides to move away from each other.
[0158] In some embodiments, the unlocking member 142 is adapted to apply a force to the locking member 141 along a third direction; wherein the third direction intersects with a plane formed by the second direction and the first direction.
[0159] By intersecting the third direction with the plane formed by the second direction and the first direction, it is ensured that when the force applied by the unlocking member 142 to the locking member 141 can act on the locking member 141, the locking member 141 can slide relative to the mounting member 110 along the second direction.
[0160] In the present application, the third direction may be set to intersect perpendicularly with the plane formed by the first direction and the second direction.
[0161] In the present application, in order to enable the unlocking member 142 to exert a force on the locking member 141 along the third direction so that the locking member 141 can move along the second direction, in some embodiments, the locking assembly 140 also includes: a reversing structure 143, which utilizes the reversing structure 143 to enable the force applied by the unlocking member 142 to the locking member 141 along the third direction to have a force component in the second direction, so that the locking member 141 can slide along the second direction relative to the mounting member 110 to the unlocked position.
[0162] For example, the reversing structure 143 may be located between the unlocking member 142 and the locking member 141 .
[0163] In some embodiments, the reversing structure 143 includes an active reversing portion 1431 and a passive reversing portion 1432 .
[0164] The active reversing portion 1431 is formed to the unlocking member 142 , and the driven reversing portion 1432 is formed to the locking member 141 .
[0165] The unlocking member 142 applies a force to the driven reversing portion 1432 along the third direction through the active reversing portion 1431 , and the driven reversing portion 1432 causes the force to have a force component along the second direction.
[0166] By utilizing the active reversing portion 1431 and the driven reversing portion 1432 , it is achieved that the acting force can have a force component in the second direction, thereby enabling the locking member 141 to move from the locking position to the unlocking position.
[0167] When the acting force disappears, the acting force of the active reversing portion 1431 on the driven reversing portion 1432 also disappears, so the locking member 141 can move from the unlocking position to the locking position.
[0168] It should be noted that the force applied by the unlocking member 142 to the active reversing portion 1431 of the reversing structure 143 may be derived from the force applied to the unlocking member 142 .
[0169] In the present application, when two locking members 141 are provided, two active reversing portions 1431 can be provided on the unlocking member 142 corresponding to the locking members 141, and the two active reversing portions 1431 are symmetrically provided on the unlocking member 142, so that the two locking members 141 can move synchronously along the second direction under the action of the force component, that is, approach each other.
[0170] In some embodiments, the active reversing portion 1431 and the driven reversing portion 1432 are both constructed as planes; wherein the planes are arranged to be obliquely intersected with a plane formed by the second direction and the first direction.
[0171] By configuring both the active reversing portion 1431 and the driven reversing portion 1432 as planes, and obliquely intersecting the plane formed by the second direction and the first direction, the acting force can have a force component in the second direction.
[0172] For example, the active reversing portion 1431 and the driven reversing portion 1432 can be constructed as a wedge surface structure, so that when the active reversing portion 1431 presses against the driven reversing portion 1432, the active reversing portion 1431 can move relative to the driven reversing portion 1432, thereby enabling the driven reversing portion 1432 to drive the locking member 141 to move from the locked position to the unlocked position.
[0173] In some embodiments, the unlocking member 142 forms a rotational connection relative to the mounting member 110 about the second direction.
[0174] By forming a rotational connection around the second direction with the unlocking member 142 relative to the mounting member 110, when the unlocking member 142 rotates around the second direction, the unlocking member 142 can apply a force to the locking member 141 from top to bottom in the third direction through the reversing structure 143. This operation is convenient and can occupy less three-dimensional space in the third direction.
[0175] In some embodiments, reference Figure 10 The locking assembly 140 further includes: a mounting bracket 144 .
[0176] The mounting bracket 144 is fixedly connected to the mounting member 110 , wherein the locking member 141 is connected to the mounting bracket 144 , and the mounting bracket 144 can prevent the locking member 141 from moving along the third direction.
[0177] By connecting the locking member 141 to the mounting bracket 144, the mounting bracket 144 is used to prevent the locking member 141 from moving along the third direction, so that when the unlocking member 142 applies a force to the locking member 141 through the reversing structure 143, the mounting bracket 144 can offset the component of the force applied by the active reversing part 1431 to the driven reversing part 1432 in the third direction, so that the locking member 141 only moves from the locked position to the unlocked position along the second direction, thereby enabling the mounting member 110 to drive the armrest member 300 to move relative to the armrest member 300 within a preset stroke.
[0178] For example, a moving channel of the mounting bracket 144 can be provided on the mounting bracket 144, which passes through the mounting bracket 144 in the second direction. A portion of the locking member 141 is slidably connected to the mounting bracket 144, and another portion can extend along the moving channel. When the locking member 141 moves along the second direction, the other portion of the locking member 141 can interfere with or release interference with the preset space 200c on the interior part 200.
[0179] Specifically, the locking member 141 can be constructed as a block structure, the portion of the locking member 141 that interferes with the preset space 200c on the interior component 200 can be constructed as a columnar structure, and the driven reversing portion 1432 on the locking member 141 can be constructed as an inclined surface on the locking member 141.
[0180] In the present application, a guide column can also be set in the moving channel, and the locking member 141 has a guide space that passes through the locking member 141 along the second direction. Part of the guide column is set in the guide space, and the center of the guide column is set parallel to the second direction, so that the locking member 141 can move stably along the second direction when moving along the second direction, thereby improving the stability of the movement of the locking member 141.
[0181] In the present application, two limiting portions 1441 may be provided at both ends of the mounting bracket 144 in the front-to-back direction, and the limiting portions 1441 may be combined with a portion of the locking member 141 to limit movement of the locking member 141 in the third direction.
[0182] In some embodiments, reference Figure 10 The guide connection device 100 further includes: a first restoring member 150 .
[0183] Part of the first reset member 150 is connected to the mounting bracket 144, and part of it is suitable for acting on the unlocking member 142, so that the unlocking member 142 has a tendency to drive the active reversing portion 1431 away from the driven reversing portion 1432, so that the locking member 141 can switch from the unlocking position to the locking position.
[0184] By further arranging a first reset member 150 between the mounting bracket 144 and the unlocking member 142, under the action of the first reset member 150, the unlocking member 142 can drive the active reversing portion 1431 away from the driven reversing portion 1432, so that the locking member 141 can switch from the unlocking position to the locking position.
[0185] Exemplarily, the first return member 150 can be constructed as a cylindrical spring, one end of the cylindrical spring is connected to the mounting bracket 144, and the other end is connected to the unlocking member 142. When the unlocking member 142 rotates in the second direction to apply a force to the locking member 141 through the reversing structure 143, the cylindrical spring will be compressed. When the force disappears, the elastic potential energy of the compressed spring acts on the unlocking member 142, so that the unlocking member 142 can drive the active reversing portion 1431 of the reversing structure 143 away from the driven reversing portion 1432.
[0186] refer to Figure 10 In order to enable the first return member 150 to extend along the third direction without deviation and excessive compression, a guide member 145 can also be provided. Part of the guide member 145 is fixedly connected to the installation, and the first return member 150 is arranged around the guide member 145.
[0187] When the unlocking member 142 applies a downward force to the locking member 141 through the reversing structure 143 in the second direction, the first reset member 150 will be compressed to a certain stroke. When the end of the guide member 145 contacts the end of the unlocking member 142, the guide member 145 will prevent the unlocking member 142 from continuing to rotate in the first direction. At this time, it means that the unlocking member 142 has rotated to the position and the locking member 141 has also moved from the locked position to the unlocked position.
[0188] On the contrary, after the acting force disappears, the unlocking member 142 will move in the opposite direction under the action of the first restoring member 150, and the locking member 141 will move back to the locking position from the unlocking position.
[0189] The timing when the locking member 141 moves from the unlocking position back to the locking position is when the interior decoration member 200 and the mounting member 110 need to be locked at the preset position.
[0190] In the present application, the interior decoration component 200 and the mounting component 110 can be locked at three positions, two of which open the interior decoration space 200 b and one closes the interior decoration space 200 b.
[0191] In some embodiments, the guide connection device 100 further includes: a second restoring member (not shown in the figures).
[0192] Part of the second return member is connected to the locking member 141, and part of the second return member is connected to the interior part 200, wherein the second return member is suitable for acting on the locking member 141 so that the locking member 141 has a tendency to interfere with the preset space 200c, so that the locking member 141 can move from the unlocked position to the locked position and remain in the locked position.
[0193] By providing the second restoring member, after the force in the second direction applied to the locking member 141 disappears, the second restoring member can move the locking member 141 from the unlocking position to the locking position.
[0194] For example, a second restoring member may be provided between two locking members 141 disposed opposite to each other, or a second restoring member may be provided between each locking member 141 and the interior trim member 200 .
[0195] Among them, when a second return member is set between two locking members 141 arranged in opposite directions, when the locking member 141 moves from the locked position to the unlocked position, the second return member is continuously compressed in the second direction. After the force in the second direction acting on the locking member 141 disappears, the elastic potential energy of the second return member will act on the two locking members 141 respectively, thereby causing the two locking members 141 to move away from each other to move from the unlocked position to the locked position.
[0196] When a second return member is provided for each locking member 141 and the interior trim member 200, the second return member can be placed around the portion of the locking member 141. When the locking member 141 moves from the locked position to the unlocked position, the second return member is continuously stretched in the second direction. After the force in the second direction acting on the locking member 141 disappears, the elastic potential energy of the second return member pulls the locking member 141 from the unlocked position to the locked position.
[0197] The second restoring member in the present application can be constructed as a columnar spring or as a rubber material.
[0198] According to the second aspect of this application, reference Figure 1 , provides a vehicle-mounted armrest assembly 10, including the guide connection device 100 as described above.
[0199] The vehicle-mounted armrest assembly 10 has all the beneficial effects of the above-mentioned guide connection device 100, which will not be described in detail in this application.
[0200] In the present application, an outer panel 400 can also be set on the left and right sides of the interior decoration part 200. The outer panel 400 can cover the left and right sides of the interior decoration part 200 to maintain its beauty, and can be connected to other structures on the vehicle 1, thereby increasing the overall connection area of the vehicle armrest assembly 10 and ensuring the stability of the vehicle armrest assembly 10.
[0201] According to the third aspect of this application, reference Figure 14 , a vehicle 1 is also provided, comprising the guide connection device 100 as described above or the vehicle armrest assembly 10 as described above.
[0202] The vehicle 1 has all the beneficial effects of the above-mentioned guide connection device 100, which will not be described in detail in this application.
[0203] The vehicle 1 has all the beneficial effects of the above-mentioned vehicle armrest assembly 10, which will not be described in detail in this application.
[0204] The vehicle 1 may be a fuel vehicle, a plug-in hybrid vehicle, a new energy vehicle, etc., and this application does not make any specific limitation on this.
[0205] This application exemplarily describes the working process of the guide connection device 100:
[0206] When the interior space 200b of the interior component 200 needs to be opened to meet usage requirements, the mounting component 110 and the armrest component 300 in the present application can move backward relative to the interior component 200, and can move backward from the initial position to the first preset position or the second preset position. At the initial position, the first preset position and the second preset position, the locking component 141 of the locking assembly 140 can be used to interfere with the preset space 200c to ensure that the mounting component 110 and the armrest component 300 can be kept in a locked state.
[0207] When the mounting member 110 and the armrest member 300 need to be moved and switched between various positions, the interference between the locking member 141 and the preset space 200c is released, allowing the mounting member 110 and the armrest member 300 to move along the first direction (i.e., front and back) of the mounting member 110, wherein the locking member can move in the second direction (i.e., left and right), and the unlocking member 142 can rotate around the second direction.
[0208] The first preset position is located at the front end of the second preset position, and the initial position is located at the front end of the first preset position.
[0209] In the description of this application, the terms "first" and "second" are used for descriptive purposes only and should not be understood to indicate or imply relative importance or implicitly specify the number of technical features indicated. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include one or more features. In the description of this application, "plurality" means two or more, unless otherwise specifically defined.
[0210] In the above embodiments, the description of each embodiment has its own focus. For parts that are not described in detail in a certain embodiment, reference can be made to the relevant descriptions of other embodiments.
[0211] The embodiments, implementation methods and related technical features of the present application can be combined and replaced with each other without conflict.
[0212] The above are merely preferred embodiments of the present application and do not constitute any form of limitation to the present application. However, any simple modifications, equivalent changes, and modifications made to the above embodiments based on the technical essence of the present application without departing from the content of the technical solution of the present application are still within the scope of the technical solution of the present application.
Claims
1. A guide connection device, characterized in that: include: Mounting parts for connecting interior trim parts and armrest parts; as well as a guide assembly for connecting the mounting member and the interior trim member; Wherein, along the first direction, the length of the guide assembly is coupled with the length of the interior trim component.
2. The guide connection device according to claim 1, characterized in that: The mounting member is configured to be movably connected to the interior trim member through the guide assembly, so that the armrest member and the mounting member can synchronously move relative to the interior trim member along a first direction within a preset stroke.
3. The guide connection device according to claim 1, characterized in that: The interior trim member defines a receiving space for receiving at least a portion of the guide assembly and an interior trim space communicating with the receiving space; The opening of the interior space and the opening of the accommodating space are oriented in different directions, so that the mounting member can open or close the interior space when it moves relative to the interior member along a first direction within a preset stroke.
4. The guide connection device according to claim 1, characterized in that: The guide assembly comprises: a first guide member, configured to connect to one of the mounting member and the interior trim member; a second guide member for connecting to the other of the mounting member and the interior trim member; The first guide member at least surrounds a portion of the second guide member, so that the armrest member can move relative to the interior trim member along a first direction within a preset stroke.
5. The guide connection device according to claim 4, characterized in that: One of the first guide member and the second guide member is configured in a columnar shape, and the other one is formed with a central space penetrating the guide member along a first direction.
6. The guide connection device according to claim 1, characterized in that: The guide connection device also includes: a connecting assembly located between the mounting member and the interior trim member; The connecting assembly enables the mounting component to move relative to the interior component along a first direction at a preset speed within a preset stroke.
7. The guide connection device according to claim 6, characterized in that: The connection component includes: a first connecting member, configured to connect to one of the mounting member and the interior trim member; a second connecting member, configured to connect to the other of the mounting member and the interior trim member; The first connecting member and the second connecting member form a dynamic coupling, so that the mounting member moves relative to the interior trim member along a first direction at a preset speed within a preset stroke.
8. The guide connection device according to claim 7, characterized in that: The connection component further includes: The damping member is located on the interior decoration member and is used to be connected to the connecting member on the interior decoration member.
9. The guide connection device according to claim 7, characterized in that: The first connecting member and the second connecting member are configured as gear racks.
10. The guide connection device according to any one of claims 1 to 9, characterized in that: The guide connection device also includes: a locking assembly, located between the mounting member and the interior trim member; Wherein, within a preset stroke, the locking assembly can enable the armrest member to have a locked state at a preset position relative to the interior decoration member and an unlocked state in which the armrest member moves along a first direction relative to the interior decoration member.
11. The guide connection device according to claim 10, characterized in that: The interior decoration part has a preset space; The locking assembly comprises: a locking member movably connected to the interior component so that the locking member has at least a locked position and an unlocked position relative to the interior component; Wherein, when the locking member is in a locked position relative to the interior trim member, the locking member interferes with the preset space, so that the armrest member is in a locked state at the preset position; When the locking member is in an unlocked position relative to the interior component, the locking member eliminates interference with the preset space, so that the armrest member is in an unlocked state moving relative to the interior component along the first direction.
12. The guide connection device according to claim 11, characterized in that: The locking member forms a sliding connection relative to the mounting member along a second direction; The locking member is adapted to slide relative to the mounting member along the second direction so that a portion of the locking member interferes with the preset space or eliminates interference with the preset space; The first direction is perpendicular or inclined to the second direction.
13. The guide connection device according to claim 12, characterized in that: The locking assembly further comprises: an unlocking member, connected to the mounting member and the locking member respectively; The unlocking member applies a force to the locking member so that the locking member can move from the locking position to the unlocking position along the second direction.
14. The guide connection device according to claim 13, characterized in that: The locking assembly includes at least two locking members, and the two locking members are located on opposite sides of the second direction; In the process in which the locking member is able to move from the locking position to the unlocking position along the second direction, the two locking members arranged in opposite directions approach each other.
15. The guide connection device according to claim 13, characterized in that: The unlocking member is adapted to apply a force to the locking member along a third direction; The third direction is arranged to intersect with a plane formed by the second direction and the first direction.
16. The guide connection device according to claim 13, characterized in that: The locking assembly further comprises: a reversing structure, located between the unlocking member and the locking member; The force applied by the reversing structure to the locking member along the third direction by the unlocking member can have a force component in the second direction, so that the locking member can slide relative to the mounting member along the second direction to the unlocking position.
17. The guide connection device according to claim 16, characterized in that: The commutation structure comprises: an active reversing portion, formed to the unlocking member; A driven reversing portion formed to the locking member; The unlocking member applies an action force to the driven reversing portion through the active reversing portion along the third direction, and the driven reversing portion causes the action force to have a force component along the second direction.
18. The guide connection device according to claim 17, characterized in that: The active reversing portion and the driven reversing portion are both constructed as planes; The plane is arranged to intersect obliquely with a plane formed by the second direction and the first direction.
19. The guide connection device according to claim 13, characterized in that: The unlocking member is connected to the mounting member in a rotational manner around a second direction.
20. The guide connection device according to claim 17, characterized in that: The locking assembly further comprises: A mounting bracket, fixedly connected to the mounting member; The locking member is connected to the mounting bracket, and the mounting bracket can prevent the locking member from moving along the third direction.
21. The guide connection device according to claim 20, characterized in that: The guide connection device also includes: The first reset member is partially connected to the mounting bracket and partially adapted to act on the unlocking member so that the unlocking member has a tendency to drive the active reversing portion away from the driven reversing portion so that the locking member can switch from the unlocking position to the locking position.
22. The guide connection device according to claim 17, characterized in that: The guide connection device also includes: a second restoring member, partially connected to the locking member and partially connected to the interior trim member; The second reset member is adapted to act on the locking member so that the locking member has a tendency to interfere with the preset space, so that the locking member can move from the unlocking position to the locking position and remain in the locking position.
23. A vehicle-mounted armrest assembly, characterized in that: The invention comprises a guide connection device according to any one of claims 1 to 22.
24. A vehicle, characterized in that: It comprises the guide connection device according to any one of claims 1 to 22 or the vehicle armrest assembly according to claim 23.