Mounting part and vehicle
By designing mounting components with avoidance and mating surfaces, combining multiple mounting parts and reinforcing structures, and employing anti-loosening connections, the problem of inconvenient installation of interactive controllers in vehicles has been solved, achieving improvements in stability and efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANGHAI PATEO ELECTRONIC EQUIPMENT MANUFACTURING CO LTD
- Filing Date
- 2025-05-30
- Publication Date
- 2026-05-15
AI Technical Summary
How to efficiently install interactive controllers in vehicles, reduce the limitations imposed by installation components on the controller, and improve connection stability.
Design an installation component comprising an assembly structure and a mating structure. The mating structure has a clearance surface and a mating surface, with the clearance surface recessed relative to the mating surface to form a clearance space. The installation component has a small contact area with the interactive controller. It is connected to the support structure through multiple mounting parts, and features a reinforcing structure and a bending protection structure. It adopts an anti-loosening connection method and has pre-set connection holes to accommodate support structures of different sizes.
It enables convenient installation of the interactive controller, reduces the limitations of the mounting components on the controller, improves connection stability and structural strength, adapts to complex support structures, and improves installation efficiency and fault tolerance.
Smart Images

Figure CN224240956U_ABST
Abstract
Description
Technical Field
[0001] This application relates to, but is not limited to, the field of installation structure technology, and in particular to an installation component and a vehicle. Background Technology
[0002] Transportation vehicles refer to tools that use electricity, fuel, or hybrid power to carry people or goods, such as new energy vehicles. Interactive controllers can facilitate human-machine interaction in vehicles and other transportation vehicles; how to install interactive controllers in transportation vehicles is a problem that needs to be solved. Utility Model Content
[0003] One embodiment of this application provides a mounting component, wherein the mounting component is provided with a mating surface and a clearance surface, the clearance surface being recessed relative to the mating surface to form a clearance space for the interactive controller, the contact area between the mounting component and the interactive controller is small, reducing the restriction of the mounting component on the interactive controller, thereby facilitating the installation of the interactive controller.
[0004] Another embodiment of this application provides a mounting component, wherein the assembly structure is provided with at least two mounting parts, which are connected to the support structure, thereby improving the connection stability between the mounting component and the support structure. In the event of failure of some mounting parts, the remaining mounting parts can still provide a connection, thereby improving the connection stability of the interactive controller. The at least two mounting parts are located around the mating structure, which can provide support for the mating structure at multiple locations, so that the force on the mating structure is more balanced and the structural stability of the mounting component is improved.
[0005] Another embodiment of this application provides a mounting component, wherein a first mounting part has an adjacent mating surface and a clearance surface, so that the first mounting part has a stable connection with the mating structure; the first mounting surface of the first mounting part and the adjacent clearance surface have the same orientation, both facing the interactive controller, the first mounting surface is recessed relative to the clearance surface, and the first mounting surface is away from the interactive controller, thereby providing clearance space to facilitate the installation of the interactive controller.
[0006] Another embodiment of this application provides an installation component, wherein the second installation part includes an installation body and a bent body. The second installation surface of the installation body can be adapted to a support structure. The bent body is connected between the installation body and the mating structure. The two ends of the bent body are bent relative to the installation body and the mating structure, respectively, thereby forming a two-section bent structure. This facilitates the installation body to adapt to a support structure with a complex structure, and the installation body is far away from the interactive controller, thereby providing clearance space and facilitating the installation of the interactive controller.
[0007] Another embodiment of this application provides a mounting component in which a bent body is bent relative to a mating structure in a direction away from the mating surface, so that the mounting body can move away from the mating structure and the interactive controller. The mounting body is bent relative to the bent body in a direction close to the mating structure, and the projection of the mounting body does not overlap with the projection of the mating structure. That is, the second mounting surface of the mounting body and the mating surface have the same orientation, and the mating structure does not obstruct the second mounting surface, which facilitates the connection between the mounting body and the support structure.
[0008] Another embodiment of this application provides an installation component in which a bending protection structure is disposed between a bending body and a clearance surface. The bending protection structure includes a first structural surface that is flush with the adjacent mating surface so that both remain flat surfaces when not bent. Compared to a scheme where the clearance surface and the mating surface form a staggered structure relative to the bending body, which is prone to material compression during bending, the bending body with the bending protection structure is less likely to cause material compression during bending relative to the mating structure. After bending, both the mating surface and the surface of the bending body are flat surfaces. Along the direction from the mating surface to the clearance surface, the distance between the second structural surface and the bending body gradually decreases, which helps to reduce the impact of the bending protection structure on the installation component and facilitates clearance from the interactive controller.
[0009] Another embodiment of this application provides an installation component, wherein a reinforcing structure is provided to improve the bending resistance and structural strength of the installation component; a first reinforcing protrusion is provided at least part of the connection position between the bent body and the installation body, which facilitates the improvement of the structural strength of the bent body and the installation body; a second reinforcing protrusion is provided at least part of the connection position between the bent body and the mating structure, which facilitates the improvement of the structural strength of the bent body and the mating structure; a third reinforcing protrusion is provided on the bent body, the mating structure and the installation body, which can improve the bending resistance of the bent body, the mating structure and the installation body respectively, so as to improve the structural strength of the bent body, the mating structure and the installation body.
[0010] Another embodiment of this application provides a mounting component, wherein a first reinforcing protrusion and a second reinforcing protrusion are disposed near a first edge, which can provide high structural strength near the first edge and maintain the flatness of the first edge; the middle section of the third reinforcing protrusion forms a second edge, the first end forms a partial edge of a corresponding mating surface, and the second end forms a partial edge of a second mounting surface, and the third reinforcing protrusion is disposed at the edge to increase structural strength; and the dimensions of the middle section, the first end and the second end gradually decrease, which facilitates processing.
[0011] Another embodiment of this application provides a mounting component in which a mating surface surrounds a clearance surface, or the clearance surface is disposed between at least two mating surfaces, so that the mounting component can provide stable support for the interactive controller.
[0012] Another embodiment of this application provides an installation component in which a connecting stud is pre-installed on the mating surface, which improves the assembly accuracy of the connecting stud and the installation component, and the connecting stud can be used as a positioning reference during connection, which facilitates improved installation efficiency; the connecting nut and the connecting stud adopt an anti-loosening connection, which can improve the stability of the connection and reduce the risk of failure.
[0013] Another embodiment of this application provides an installation component, wherein the pre-set connecting holes facilitate the connection between the assembly structure and the support structure, and the connecting holes can also be used for positioning during connection. At least one connecting hole is set as an elongated hole, which helps to compensate for processing and assembly errors, and also facilitates the adaptation to support structures of different sizes, thereby improving the fault tolerance of the installation component.
[0014] Another embodiment of this application provides a vehicle in which an interactive controller is mounted on the vehicle's support structure via a mounting component. The clearance surface of the mounting component is recessed relative to the mating surface, forming a clearance space for the interactive controller. The contact area between the mounting component and the interactive controller is small, reducing the restriction of the mounting component on the interactive controller, thereby facilitating the installation of the interactive controller and making it easier to deploy the interactive controller on the vehicle.
[0015] To achieve one or more of the above objectives, a first aspect of the embodiments of this application provides a support structure for mounting an interactive controller on a vehicle. The mounting component includes an assembly structure and a mating structure. The assembly structure is connected to the support structure. The mating structure is connected to the assembly structure and includes a clearance surface and a mating surface. The mating surface is adapted to accommodate the interactive controller. The mating surface and the clearance surface have the same orientation, and the clearance surface is recessed relative to the mating surface to provide clearance space for the interactive controller.
[0016] A second aspect of the embodiments of this application is that the vehicle provided in the embodiments of this application includes an interactive controller and an installation component of the embodiments of this application. The vehicle includes a vehicle and a support structure. The interactive controller is connected to the support structure through the installation component. Attached Figure Description
[0017] Figure 1 An isometric schematic diagram of the mounting component and the interaction controller provided in the embodiments of this application;
[0018] Figure 2 Rear view of the mounting hardware and interaction controller provided in the embodiments of this application;
[0019] Figure 3 This is a second-view isometric schematic diagram of the mounting component provided in the embodiments of this application;
[0020] Figure 4 This is one of the first-view isometric schematic diagrams of the mounting component provided in the embodiments of this application;
[0021] Figure 5 A top view of the mounting component provided in the embodiments of this application;
[0022] Figure 6 A bottom view of the mounting component provided in the embodiments of this application;
[0023] Figure 7 A front view of the mounting component provided in the embodiments of this application;
[0024] Figure 8 Rear view of the mounting component provided in an embodiment of this application;
[0025] Figure 9 Left view of the mounting component provided in the embodiments of this application;
[0026] Figure 10 Right view of the mounting component provided in the embodiments of this application;
[0027] Figure 11 This is the second isometric first-view diagram of the mounting component provided in the embodiments of this application.
[0028] Figure label:
[0029] 100 - Assembly structure; 110 - First mounting part; 111 - First mounting surface; 120 - Second mounting part; 121 - Mounting body; 1211 - Second mounting surface; 122 - Bending body; 1221 - First edge; 1222 - Second edge; 130 - Connecting hole; 200 - Mating structure; 210 - Clearance surface; 220 - Mating surface; 230 - Connecting stud; 240 - Connecting nut; 250 - Clearance space; 260 - Reference surface; 300 - Bending protection structure; 310 - First structural surface; 320 - Second structural surface; 400 - Reinforcing structure; 410 - First reinforcing protrusion; 420 - Third reinforcing protrusion; 421 - First end; 422 - Middle section; 423 - Second end; 430 - Second reinforcing protrusion; 500 - Interactive controller. Detailed Implementation
[0030] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the specific technical solutions of this application will be further described in detail below with reference to the accompanying drawings of the embodiments of this application. The following embodiments are used to illustrate this application, but are not intended to limit the scope of this application.
[0031] In the embodiments of this application, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of the embodiments of this application, unless otherwise stated, "multiple" means two or more.
[0032] Furthermore, in the embodiments of this application, directional terms such as "upper," "lower," "left," and "right" are defined relative to the positions in which the components are schematically placed in the accompanying drawings. It should be understood that these directional terms are relative concepts, used for relative description and clarification, and can change accordingly depending on the position of the components in the accompanying drawings.
[0033] In the embodiments of this application, unless otherwise explicitly specified and limited, the term "connection" should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral part; it can be a direct connection or an indirect connection through an intermediate medium.
[0034] In embodiments of this application, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes that element.
[0035] In the embodiments of this application, the terms "exemplary" or "for example" are used to indicate that something is an example, illustration, or description. Any embodiment or design that is described as "exemplary" or "for example" in the embodiments of this application should not be construed as being more preferred or advantageous than other embodiments or design. Specifically, the use of the terms "exemplary" or "for example" is intended to present the relevant concepts in a specific manner.
[0036] This application provides a means of transportation, which refers to a vehicle that uses electricity, fuel, or hybrid power as its driving force and can transport people or goods. The means of transportation can be a land vehicle, a marine vehicle, or an aerospace vehicle. Land vehicles include passenger cars, freight vehicles, sport utility vehicles (SUVs), and rail trains; marine vehicles include cargo ships, passenger ships, speedboats, and submersibles; and aerospace vehicles include airplanes and spacecraft. In some examples of this application, the means of transportation includes new energy vehicles.
[0037] In some technical solutions, interactive controllers are installed in vehicles to enable human-computer interaction, but the installation of interactive controllers in vehicles is a problem that needs to be solved.
[0038] In addition, this application embodiment also provides an installation component, referring to... Figure 1 , Figure 2 and Figure 3 The mounting component is used to mount the interactive controller 500 to the support structure of the vehicle. The mounting component includes an assembly structure 100 and a mating structure 200. The assembly structure 100 is used to connect to the support structure. The mating structure 200 is connected to the assembly structure 100 and includes a clearance surface 210 and a mating surface 220. The mating surface 220 is used to adapt to the interactive controller 500. The mating surface 220 and the clearance surface 210 have the same orientation, and the clearance surface 210 is recessed relative to the mating surface 220 to provide clearance space 250 for the interactive controller 500.
[0039] In this embodiment, the mounting component can be a combination of one or more plate-like structures, block-like structures, and rod-like structures. In some examples, the mounting component is a combination of multiple plate-like structures.
[0040] In this embodiment, the two components (components refer to structures such as assembly structure 100, mating structure 200, and interactive controller 500) are connected by means of one or more combinations of snap-fit, threaded connection, and fastener connection to achieve a detachable connection, which facilitates disassembly and assembly and provides good maintainability. Alternatively, the two connected components can be connected non-detachably by means of welding, bonding, riveting, or integral molding, resulting in better connection stability.
[0041] In some examples, the assembly structure 100 is detachably connected to the support structure, for example, the assembly structure 100 is detachably connected to the support structure by fasteners such as bolts, screws, studs, and nuts; in other examples, the assembly structure 100 is non-detachably connected to the support structure.
[0042] In some examples, the mating structure 200 and the assembly structure 100 are detachably connected; in other examples, the mating structure 200 and the assembly structure 100 are non-detachably connected. For example, the mating structure 200 and the assembly structure 100 are integrally molded, resulting in better overall structural integrity.
[0043] In this embodiment, the mating surface 220 is used to adapt to the interactive controller 500. Alternatively, the mating surface 220 may be used to limit the interactive controller 500, and when the interactive controller 500 is connected to the mounting component, the mating surface 220 abuts against the surface of the interactive controller 500. Or, the mating surface 220 may be used to connect the interactive controller 500, for example, by bonding or welding the mating surface 220 to the surface of the interactive controller 500.
[0044] In some examples, the mating structure 200 is detachably connected to the interactive controller 500, for example, the interactive controller 500 is detachably connected to the mating structure 200 by fasteners such as bolts, screws, studs, and nuts; in other examples, the interactive controller 500 is non-detachably connected to the mating structure 200, for example, the interactive controller 500 is bonded to the mating surface 220.
[0045] In this embodiment, the two structural surfaces of the mounting component (the structural surfaces may be mating surface 220, clearance surface 210, etc.) having the same orientation means that the two structural surfaces are located on the same side of the mounting component. For example, both structural surfaces are located on the side of the mounting component facing the interactive controller 500. Alternatively, when viewed along the vertical direction of a certain structural surface, both the structural surface and the structural surfaces with the same orientation can be observed without being obstructed by the structure of the mounting component. For example, the mating surface 220 and the clearance surface 210 can be observed along the same direction.
[0046] It should be noted that the mating surface 220 and the clearance surface 210 can be arranged parallel to each other, or they can be arranged at an acute or obtuse angle. In some examples, the mating surface 220 and the clearance surface 210 are arranged parallel to each other.
[0047] In this embodiment, the recessed avoidance surface 210 relative to the mating surface 220 means that the avoidance surface 210 is further away from the interaction controller 500 relative to the mating surface 220. (Refer to...) Figure 2 and Figure 8 The plane that is away from the clearance surface 210 in the mounting component is taken as the reference surface 260, and the minimum distance between the mating surface 220 and the reference surface 260 is greater than the maximum distance between the clearance surface 210 and the reference surface 260.
[0048] It should be noted that the avoidance surface 210 provides an avoidance space 250, which means that the distance between the avoidance surface 210 and the interactive controller 500 is greater than 0. During the vibration of the interactive controller 500, the interactive controller 500 and the avoidance surface 210 do not come into contact.
[0049] In this embodiment, the interaction controller 500 refers to a device that processes electrical signals related to interactive devices. Interactive devices include piezoelectric vibrators, vibration sensors, etc. For example, the interaction controller 500 is used to control the piezoelectric vibrator to vibrate and produce sound, and / or, the interaction controller 500 is used to process vibration signals sensed by sensors such as piezoelectric vibrators. The interaction controller 500 may include a circuit board, and signal processing circuits, processors, etc., arranged on the circuit board.
[0050] In this embodiment of the application, the interactive controller 500 is connected to the support structure via the mounting component. The mounting component includes an assembly structure 100 and a mating structure 200. The assembly structure 100 is connected to the support structure, and the mating structure 200 is connected to the interactive controller 500. The mating structure 200 includes a mating surface 220, which is adapted to the interactive controller 500, thereby mounting the interactive controller 500 onto the support structure.
[0051] Based on this, the mating structure 200 also includes a mating surface 220, which has the same orientation as the clearance surface 210. The mating surface 220 faces the interactive controller 500, and the clearance surface 210 also faces the interactive controller 500. The clearance surface 210 is recessed relative to the mating surface 220, thereby forming a clearance space 250. The clearance space 250 can avoid the interactive controller 500 so that the interactive controller 500 can be installed.
[0052] The mounting component of this application embodiment has a mating surface 220 and a clearance surface 210. The clearance surface 210 is recessed relative to the mating surface 220, forming a clearance space 250 for the interactive controller 500. The contact area between the mounting component and the interactive controller 500 is small, reducing the restriction of the mounting component on the interactive controller 500, thereby facilitating the installation of the interactive controller 500.
[0053] To improve the stability of the mounting components and supporting structure, refer to Figure 3 , Figure 4 , Figure 5 and Figure 6 In some embodiments of this application, the assembly structure 100 includes at least two mounting portions (e.g., a first mounting portion 110 and a second mounting portion 120), which are used to connect to the support structure, and the at least two mounting portions are located around the mating structure 200.
[0054] In this embodiment, the mounting portion is used to connect the support structure, and different mounting portions can adopt the same or different structural forms. In some examples, the assembly structure 100 includes two mounting portions, a first mounting portion 110 and a second mounting portion 120, both of which are plate-shaped structures.
[0055] In some examples, the projection of the mating structure 200 is located in the center when projected along the direction of the vertical clearance surface 210, and the projection of the mounting part is located around the periphery of the mating structure 200. The projections of multiple mounting parts can be located at different positions around the periphery of the mating structure 200, and the embodiments of this application do not limit this.
[0056] The mounting component of this application embodiment has at least two mounting parts in the assembly structure 100. It is connected to the support structure through multiple mounting parts, which improves the connection stability between the mounting component and the support structure. In the event that some mounting parts fail, the remaining mounting parts can still provide a connection, thereby improving the connection stability of the interactive controller 500. The at least two mounting parts are located around the mating structure 200, which can provide support for the mating structure 200 at multiple positions, so that the force on the mating structure 200 is more balanced and the structural stability of the mounting component is improved.
[0057] To minimize the impact of the installation section on the interactive controller 500, refer to Figure 3 , Figure 4 , Figure 5 and Figure 6 In some embodiments of this application, at least two mounting portions include a first mounting portion 110, with two adjacent edges of the first mounting portion 110 respectively connected to a mating surface 220 and a clearance surface 210; the first mounting portion 110 includes a first mounting surface 111, which has the same orientation as the adjacent clearance surface 210, and the first mounting surface 111 is recessed relative to the clearance surface 210.
[0058] In this embodiment, the first mounting surface 111 can be circular, elliptical, triangular, rectangular, square, trapezoidal, or other shapes. In some examples, the first mounting surface 111 is approximately rectangular, the first mounting part 110 is chamfered at the corner of the first mounting surface 111, one long side of the first mounting surface 111 is provided corresponding to the clearance surface 210, and one short side of the first mounting surface 111 is provided corresponding to the mating surface 220.
[0059] In this embodiment, the first mounting surface 111 and the mating surface 220 may be parallel or at an angle. In some examples, the first mounting surface 111, the mating surface 220, and the clearance surface 210 are all parallel.
[0060] In this embodiment, the first mounting surface 111 is recessed relative to the clearance surface 210, as shown in the reference... Figure 2 and Figure 8 The plane that is away from the avoidance surface 210 in the mounting component is taken as the reference surface 260. The maximum distance between the first mounting surface 111 and the reference surface 260 is less than the minimum distance between the avoidance surface 210 and the reference surface 260.
[0061] In the mounting component of this application embodiment, the first mounting part 110 is provided with an adjacent mating surface 220 and a clearance surface 210 so that the first mounting part 110 and the mating structure 200 have a stable connection; the first mounting surface 111 of the first mounting part 110 and the adjacent clearance surface 210 have the same orientation, both facing the interactive controller 500, the first mounting surface 111 is recessed relative to the clearance surface 210, and the first mounting surface 111 is away from the interactive controller 500, thereby providing clearance space 250 to facilitate the installation of the interactive controller 500.
[0062] To adapt to the supporting structure, refer to Figure 3 , Figure 4 , Figure 7 , Figure 8 , Figure 9 and Figure 10 In some embodiments of this application, at least two mounting portions include a second mounting portion 120. The second mounting portion 120 includes a mounting body 121 and a bent body 122. The mounting body 121 includes a second mounting surface 1211. The bent body 122 is connected between the mounting body 121 and the mating structure 200, and one end of the bent body 122 is bent relative to the mounting body 121, while the other end of the bent body 122 is bent relative to the mating structure 200.
[0063] In some examples, the second mounting portion 120 is connected to the first mounting portion 110 on the same mating surface 220; in other examples, the mating structure 200 includes multiple mating surfaces 220, and the first mounting portion 110 and the second mounting portion 120 are connected to different mating surfaces 220; in still other examples, the second mounting portion 120 is connected to the clearance surface 210 and is not connected to the mating surface 220.
[0064] In this embodiment, the bending body 122 and the mounting body 121 are bent relative to each other, meaning that the bending body 122 and the mounting body 121 extend in different directions, and the surface of the bending body 122 forms an acute angle, a right angle, or an obtuse angle with the second mounting surface 1211; the bending body 122 and the mating structure 200 are bent relative to each other, meaning that the bending body 122 and the mating structure 200 extend in different directions, and the surface of the bending body 122 forms an acute angle, a right angle, or an obtuse angle with the mating surface 220 / avoidance surface 210.
[0065] In some examples, the relative bending direction and angle between the bent body 122 and the mounting body 121, as well as the relative bending direction and angle between the bent body 122 and the mating structure 200, can be adapted to the shape of the supporting structure. This application embodiment does not limit this.
[0066] The mounting component of this application embodiment includes a second mounting part 120 comprising a mounting body 121 and a bent body 122. The second mounting surface 1211 of the mounting body 121 can be adapted to the support structure. The bent body 122 is connected between the mounting body 121 and the mating structure 200. The two ends of the bent body 122 are bent relative to the mounting body 121 and the mating structure 200, respectively, thereby forming a two-section bent structure. This facilitates the mounting body 121 to adapt to the support structure with complex structure. Furthermore, the mounting body 121 is far from the interactive controller 500, thereby providing a clearance space 250, which facilitates the installation of the interactive controller 500.
[0067] To facilitate the connection between the mounting body 121 and the supporting structure, refer to Figure 3 , Figure 4 , Figure 9 and Figure 10 In some embodiments of this application, the bent body 122 is bent relative to the mating structure 200 in a direction away from the mating surface 220, and the mounting body 121 is bent relative to the bent body 122 in a direction close to the mating structure 200, and is projected in a direction perpendicular to the clearance surface 210. The projection of the mounting body 121 does not overlap with the projection of the mating structure 200.
[0068] In this embodiment, the bent body 122 is bent relative to the mating structure 200 in a direction away from the mating surface 220, that is, the bent body 122 is bent relative to the mating structure 200 so that the mounting body 121 located at the other end of the bent body 122 can be moved away from the mating surface 220; the mounting body 121 is bent relative to the bent body 122 in a direction close to the mating structure 200, that is, the mounting body 121 is bent relative to the bent body 122 so that the second mounting surface 1211 of the mounting body 121 has the same orientation as the mating surface 220.
[0069] In this embodiment, the surface of the bent body 122 and the second mounting surface 1211 may form an acute angle, a right angle, or an obtuse angle; the surface of the bent body 122 and the corresponding mating surface 220 may form an acute angle, a right angle, or an obtuse angle. In some examples, the surface of the bent body 122 is perpendicular to the second mounting surface 1211, and the surface of the bent body 122 is also perpendicular to the corresponding mating surface 220.
[0070] In this embodiment of the application, the bent body 122 is bent relative to the mating structure 200 in a direction away from the mating surface 220, so that the mounting body 121 can move away from the mating structure 200 and the interactive controller 500. The mounting body 121 is bent relative to the bent body 122 in a direction close to the mating structure 200, and the projection of the mounting body 121 does not overlap with the projection of the mating structure 200. That is, the second mounting surface 1211 of the mounting body 121 and the mating surface 220 have the same orientation. The mating structure 200 does not obstruct the second mounting surface 1211, which facilitates the connection between the mounting body 121 and the support structure.
[0071] To facilitate bending of the bent body 122 relative to the mating structure 200, refer to Figure 3 , Figure 4 , Figure 5 and Figure 8 In some embodiments of this application, the mounting component further includes a bending protection structure 300, which is disposed between the bending body 122 and the clearance surface 210. The bending protection structure 300 includes a first structural surface 310 and a second structural surface 320. The first structural surface 310 is flush with the adjacent mating surface 220, and the second structural surface 320 is disposed between the first structural surface 310 and the clearance surface 210. Along the direction of the mating surface 220 toward the clearance surface 210, the distance between the second structural surface 320 and the bending body 122 gradually decreases.
[0072] In this embodiment of the application, the first structural surface 310 and the adjacent mating surface 220 being flush-connected means that the first structural surface 310 and the adjacent mating surface 220 are spliced together to form a continuous flat surface, for example, the extended surface of the first structural surface 310 constitutes the adjacent mating surface 220.
[0073] In this embodiment, the distance between the second structural surface 320 and the bent body 122 refers to the vertical distance between the second structural surface 320 and the bent body 122 in the direction perpendicular to the bent body 122. In some examples, the second structural surface 320 is an adjacent surface of the first structural surface 310, the second structural surface 320 extends along an arc, and the bending protection structure 300 is a boss with an arc-shaped profile.
[0074] In this embodiment of the mounting component, a bending protection structure 300 is disposed between the bending body 122 and the avoidance surface 210. The first structural surface 310 of the bending protection structure 300 is flush with the adjacent mating surface 220 so that both remain flat surfaces when not bent. Compared to the solution where the avoidance surface 210 and the mating surface 220 form a staggered structure relative to the bending body 122, which is prone to material compression during bending, the bending body 122 with the bending protection structure 300 is less prone to material compression during bending relative to the mating structure 200. After bending, both the mating surface 220 and the surface of the bending body 122 are flat surfaces. Along the direction of the mating surface 220 towards the avoidance surface 210, the distance between the second structural surface 320 and the bending body 122 gradually decreases, which helps to reduce the impact of the bending protection structure 300 on the mounting body 121 and facilitates avoidance of the interactive controller 500.
[0075] To improve the structural strength of the mounting components, refer to Figure 3 , Figure 4 , Figure 5 , Figure 7 , Figure 10 and Figure 11In some embodiments of this application, the mounting component further includes a reinforcing structure 400, which includes a first reinforcing protrusion 410, and / or a second reinforcing protrusion 430, and / or a third reinforcing protrusion 420. A first reinforcing protrusion 410 is disposed at at least part of the connection position between the bent body 122 and the mounting body 121, and the first reinforcing protrusion 410 protrudes relative to the corresponding surfaces of the bent body 122 and the mounting body 121; a second reinforcing protrusion 430 is disposed at at least part of the connection position between the bent body 122 and the mating structure 200, and the second reinforcing protrusion 430 protrudes relative to the corresponding surfaces of the bent body 122 and the mating structure 200; a third reinforcing protrusion 420 includes an intermediate section 422, a first end 421 and a second end 423, the intermediate section 422 is disposed on the bent body 122 and protrudes relative to the surface of the bent body 122, the first end 421 is disposed on the mating structure 200 and protrudes relative to the corresponding mating surface 220, and the second end 423 is disposed on the mounting body 121 and protrudes relative to the second mounting surface 1211.
[0076] In some examples, the mounting component is provided with any one of the first reinforcing protrusion 410, the second reinforcing protrusion 430, and the third reinforcing protrusion 420; in other examples, the mounting component is provided with the first reinforcing protrusion 410 and the second reinforcing protrusion 430, but not the third reinforcing protrusion 420; in still other examples, the mounting component is provided with the first reinforcing protrusion 410 and the third reinforcing protrusion 420, but not the second reinforcing protrusion 430; in yet another example, the mounting component is provided with the second reinforcing protrusion 430 and the third reinforcing protrusion 420, but not the first reinforcing protrusion 410; in addition, the mounting component may also be provided with the first reinforcing protrusion 410, the second reinforcing protrusion 430, and the third reinforcing protrusion 420 simultaneously.
[0077] The mounting component of this application embodiment has a reinforcing structure 400, which can improve the bending resistance and structural strength of the mounting component. The first reinforcing protrusion 410 is provided at least part of the connection position between the bent body 122 and the mounting body 121, which facilitates the improvement of the structural strength of the bent body 122 and the mounting body 121. The second reinforcing protrusion 430 is provided at least part of the connection position between the bent body 122 and the mating structure 200, which facilitates the improvement of the structural strength of the bent body 122 and the mating structure 200. The third reinforcing protrusion 420 is provided on the bent body 122, the mating structure 200 and the mounting body 121, which can improve the bending resistance of the bent body 122, the mating structure 200 and the mounting body 121 respectively, so as to improve the structural strength of the bent body 122, the mating structure 200 and the mounting body 121.
[0078] To improve the structural smoothness of the mounting components, refer to... Figure 3 and Figure 4In some embodiments of this application, the bent body 122 includes a first edge 1221, one end of which is connected to the mating surface 220, and the other end of which is connected to the second mounting surface 1211. A first reinforcing protrusion 410 and a second reinforcing protrusion 430 are disposed close to the first edge 1221. Alternatively, a middle section 422 forms the second edge 1222 of the bent body 122, which is disposed opposite to the first edge 1221. A first end 421 forms a portion of the edge corresponding to the mating surface 220, and a second end 423 forms a portion of the edge of the second mounting surface 1211. The size of the middle section 422 gradually decreases along the protrusion direction of the middle section 422 relative to the bent body 122. The size of the first end 421 gradually decreases along the protrusion direction of the first end 421 relative to the mating surface 220. The size of the second end 423 gradually decreases along the protrusion direction of the second end 423 relative to the second mounting surface 1211.
[0079] In some examples, the first edge 1221 is the edge of the bent body 122 closer to the avoidance surface 210, and the second edge 1222 is the edge of the bent body 122 away from the avoidance surface 210. The first edge 1221 and the second edge 1222 can be set parallel to each other or have an angle between them.
[0080] In this embodiment, the first reinforcing protrusion 410 being closer to the first edge 1221 means that the distance between the first reinforcing protrusion 410 and the second edge 1222 is greater than the distance between the first reinforcing protrusion and the first edge 1221, i.e., the first reinforcing protrusion 410 is closer to the first edge 1221; correspondingly, referring to Figure 11 The second reinforcing protrusion 430 being closer to the first edge 1221 means that the distance between the second reinforcing protrusion 430 and the second edge 1222 is greater than the distance between the second reinforcing protrusion and the first edge 1221, that is, the second reinforcing protrusion 430 is closer to the first edge 1221.
[0081] In this embodiment, the surface of the intermediate section 422 can be an arc surface or a plane inclined relative to the surface of the bent body 122. The cross-sectional profile of the intermediate section 422 can be triangular, trapezoidal, stepped, etc. The cross-sections of the first end 421 and the second end 423 can refer to the cross-section of the intermediate section 422 for ease of processing.
[0082] In the mounting component of this application embodiment, the first reinforcing protrusion 410 and the second reinforcing protrusion 430 are disposed near the first edge 1221, which can provide high structural strength near the first edge 1221 and maintain the flatness of the first edge 1221; the middle section 422 of the third reinforcing protrusion 420 forms the second edge 1222, the first end 421 forms a part of the edge corresponding to the mating surface 220, and the second end 423 forms a part of the edge of the second mounting surface 1211. The third reinforcing protrusion 420 is disposed at the edge to increase structural strength; and the dimensions of the middle section 422, the first end 421 and the second end 423 gradually decrease, which facilitates processing.
[0083] In order to improve the installation stability of the interactive controller 500, in some embodiments of this application, the mating surface 220 is annular and surrounds the avoidance surface 210.
[0084] Reference Figure 3 , Figure 4 , Figure 5 and Figure 6 In other embodiments of this application, there are at least two mating surfaces 220, and the avoidance surface 210 is disposed between at least two mating surfaces 220.
[0085] In this embodiment, the mating surface 220 is annular, meaning that the mating surface 220 can surround the entire circumference of the avoidance surface 210. The inner contour shape and the outer contour shape of the mating surface 220 can be the same or different. The outer contour of the mating surface 220 can be a regular or irregular shape such as a circle, triangle, rhombus, square, or hexagon, and the outer contour of the mating surface 220 is adapted to the contour of the avoidance surface 210.
[0086] In some examples, the mounting includes multiple (including two) mating surfaces 220, which are located at different positions around the clearance surface 210, i.e., multiple mating surfaces 220 are arranged around the clearance surface 210.
[0087] In this embodiment, the outer contour of the avoidance surface 210 can be a regular or irregular shape such as a circle, triangle, rhombus, square, or hexagon. In some examples, the avoidance surface 210 includes a long side, a bent side, and two short sides. The long side, one of the short sides, the bent side, and the other short side are connected end to end to form the outer contour of the avoidance surface 210. The two short sides are parallel, and the long side and the bent side are connected to the two short sides respectively. The two short sides are perpendicular to the long side, and the two short sides have different lengths. The bent side includes at least two straight sides that bend relative to each other. The relative bends can be transitioned by acute angles, right angles, obtuse angles, or rounded corners. The long side, the bent side, and the two short sides enclose and form the avoidance surface 210.
[0088] In some examples, the longer short side is connected to the first mounting surface 111 and a mating surface 220, respectively, and the shorter short side is connected to another mating surface 220. The two mating surfaces 220 are staggered along the extension direction of the longer side. The mating surface 220 that is not connected to the first mounting surface 111 is connected to the bent body 122, and the bent body 122 is located away from the long side of the avoidance surface 210.
[0089] In the embodiments of this application, the mounting component has a mating surface 220 surrounding a clearance surface 210, or the clearance surface 210 is disposed between at least two mating surfaces 220, so that the mounting component can provide stable support for the interactive controller 500.
[0090] To improve installation convenience and connection stability, refer to Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 7 and Figure 8 In some embodiments of this application, the mating structure 200 further includes a connecting stud 230 and a connecting nut 240. Each mating surface 220 is provided with a connecting stud 230. The connecting nut 240 is anti-loosening connected to the corresponding connecting stud 230 to fix the interactive controller 500 relative to the mating structure 200.
[0091] In this embodiment, each mating surface 220 may be provided with one or more connecting studs 230. The outer peripheral side of the connecting stud 230 is provided with external threads, which can be adapted to the internal threads of the connecting nut 240. In some examples, the mounting component includes two mating surfaces 220, and each of the two mating surfaces 220 is provided with a connecting stud 230.
[0092] When the interactive controller 500 is connected to the mounting piece, the connecting stud 230 passes through the corresponding connecting through hole of the interactive controller 500, the connecting nut 240 engages with the corresponding connecting stud 230, and the connecting nut 240 and the corresponding mating surface 220 clamp and fix the interactive controller 500, with at least a portion of the mating surface 220 abutting against the surface of the interactive controller 500.
[0093] In some examples, the surface of the connecting stud 230 is coated with anti-loosening adhesive, and the connecting nut 240 is connected to the connecting stud 230 in an anti-loosening manner through the anti-loosening adhesive; in other examples, the connecting nut 240 is an anti-loosening nut, and the anti-loosening nut is connected to the connecting stud 230 in an anti-loosening manner; in still other examples, an elastic washer is also provided, which is disposed between the mating surface 220 and the interactive controller 500, or the elastic washer is disposed between the connecting nut 240 and the interactive controller 500, so that the connecting nut 240 is connected to the corresponding connecting stud 230 in an anti-loosening manner.
[0094] In this embodiment of the application, the mounting component has a pre-installed connecting stud 230 on the mating surface 220, which improves the assembly accuracy between the connecting stud 230 and the mounting component. The connecting stud 230 can also serve as a positioning reference during connection, which facilitates improved installation efficiency. The connecting nut 240 and the connecting stud 230 adopt an anti-loosening connection, which can improve the stability of the connection and reduce the risk of failure.
[0095] To facilitate the connection between the assembly structure 100 and the supporting structure, refer to Figure 3 , Figure 4 , Figure 5 and Figure 6 In some embodiments of this application, the assembly structure 100 includes at least two connecting holes 130 for connecting the support structure; at least one connecting hole 130 is an elongated hole.
[0096] In this embodiment, the connecting hole 130 can be a through hole; the connecting hole 130 can be a smooth hole or a threaded hole; the connecting hole 130 can be a variable diameter hole or a constant diameter hole. In some examples, the connecting hole 130 is a constant diameter through hole, and the connecting hole 130 is used for fasteners such as bolts and studs to pass through.
[0097] In this embodiment, one or more connection holes 130 may be provided on the same mounting part, and different mounting parts may be provided with the same or different numbers of connection holes 130. For example, the first mounting part 110 and the second mounting part 120 are each provided with one connection hole 130.
[0098] In this embodiment, multiple connection holes 130 on the same mounting part may have the same or different structures, and connection holes 130 on different mounting parts may also have the same or different structures.
[0099] In some examples, the connecting hole 130 provided in the first mounting part 110 is a circular hole, and the connecting hole 130 provided in the second mounting part 120 is an elongated hole; in other examples, the connecting hole 130 provided in the first mounting part 110 is an elongated hole, and the connecting hole 130 provided in the second mounting part 120 is a circular hole.
[0100] The mounting component of this application embodiment, through the preset connection hole 130, not only facilitates the connection between the assembly structure 100 and the support structure, but also the connection hole 130 can be used for positioning during connection. At least one connection hole 130 is set as an elongated hole, which helps to compensate for processing and assembly errors, and also facilitates the adaptation to support structures of different sizes, thereby improving the fault tolerance of the mounting component.
[0101] The vehicle in this application embodiment includes an interactive controller 500 and an installation component in this application embodiment. In some examples, the vehicle includes a vehicle, the vehicle includes a support structure, and the interactive controller 500 is connected to the support structure via the installation component.
[0102] In some examples, the vehicle's supporting structure includes structural components of at least one of the following: exterior body panels, interior body panels, and vehicle components, with the vehicle components connected to the exterior body panels or interior body panels. Exterior body panels include roof panels, hoods, glove box lids, pillars (such as A-pillars and B-pillars), front / rear fenders, doors, bumpers, roof racks, and mirror covers; interior body panels include headliners, floors, dashboards, door panels, center console panels, pillar guards, and window sills; vehicle components include seats, body beams, body pillars, steering wheels, armrests, rearview mirrors, and sun visors.
[0103] In some examples, the vehicle may be equipped with multiple mounting components, which may be located on different support structures or on a single support structure. This application does not limit this.
[0104] In this embodiment of the application, the interactive controller 500 is installed on the support structure of the vehicle through the mounting component. The clearance surface 210 of the mounting component is recessed relative to the mating surface 220, forming a clearance space 250 for the interactive controller 500. The contact area between the mounting component and the interactive controller 500 is small, reducing the restriction of the mounting component on the interactive controller 500, thereby facilitating the installation of the interactive controller 500 and making it easier to deploy the interactive controller 500 on the vehicle.
[0105] In one specific embodiment of this application, the mounting component is used to connect the interactive controller 500 to the vehicle's support structure. The mounting component includes a mating structure 200 and an assembly structure 100, both of which are plate-shaped structures, and the mounting component is integrally formed. The mating structure 200 includes a clearance surface 210, which is formed by a long side, a bent side, and two short sides of different sizes. The two short sides are respectively connected to mating surfaces 220, and the two mating surfaces 220 are staggered along the long side direction of the clearance surface 210. Each mating surface 220 is provided with a connecting stud 230, which cooperates with a connecting nut 240 to lock and fix the interactive controller 500 to the mating surface 220, so as to form a clearance space 250 between the interactive controller 500 and the clearance surface 210.
[0106] The assembly structure 100 includes a first mounting portion 110 and a second mounting portion 120. The first mounting portion 110 and the second mounting portion 120 are respectively connected to two mating surfaces 220. The first mounting portion 110 is located on the shorter side of the clearance surface 210 with a larger size, and the first mounting portion 110 is provided with an elongated hole. The first mounting surface 111 of the first mounting portion 110 is connected to one mating surface 220. Along the length direction of the clearance surface 210, the first mounting surface 111 and the other mating surface 220 are respectively located at both ends of the clearance surface 210. The second mounting part 120 includes a bent body 122 and a mounting body 121. The bent body 122 is bent relative to the mating structure 200 in a direction away from the mating surface 220. The mounting body 121 is bent relative to the bent body 122 in a direction close to the mating structure 200. The mounting body 121 is provided with a circular connecting hole 130 and is projected in a direction perpendicular to the clearance surface 210. The projection of the second mounting surface 1211 of the mounting body 121 is misaligned with the projection of the corresponding mating surface 220.
[0107] A bending protection structure 300 is provided between the bent body 122 and the clearance surface 210. The bending protection structure 300 is a boss with an arc-shaped profile. A first reinforcing protrusion 410 is provided at the connection position between the bent body 122 and the mounting body 121. The first reinforcing protrusion 410 is close to the first edge 1221 of the bent body 122. The mounting part is also provided with a third reinforcing protrusion 420. The third reinforcing protrusion 420 includes an intermediate section 422, a first end 421, and a second end 423. The intermediate section 422 is provided with... The first end 421 is provided with an assembly structure 100, and the second end 423 is provided on the mounting body 121 and protrudes from the second mounting surface 1211. The middle section 422 forms the second edge 1222 of the bent body 122. The first end 421 forms a part of the edge of the corresponding mating surface 220, and the second end 423 forms a part of the edge of the second mounting surface 1211. The cross-sections of the middle section 422, the first end 421, and the second end 423 are all trapezoidal.
[0108] In some examples, both mating surfaces 220 are rectangular structures of 30 mm × 30 mm, the connecting stud 230 is an M6 stud with a length of 13 mm, the connecting hole 130 on the first mounting surface 111 is an elongated hole with a width of 6.5 mm and a length of 9.5 mm, the connecting hole 130 on the second mounting surface 1211 is a circular hole with a diameter of 6.5 mm, and the recess depth of the first mounting surface 111 relative to the mating surface 220 is greater than or equal to 6 mm and less than or equal to 7 mm, for example 6. 5mm; along the direction perpendicular to the clearance surface 210, the distance between the second mounting surface 1211 and the corresponding mating surface 220 is greater than or equal to 50mm and less than or equal to 59mm, for example, 49.5mm; the dimension of the bent body 122 along the direction perpendicular to the clearance surface 210 is 51mm, and the dimension along the direction parallel to the long side of the clearance surface 210 is 35mm; the recess depth of the clearance surface 210 relative to the mating surface 220 is 2mm, the long side of the clearance surface 210 is 86mm, and the short side is greater than or equal to 28mm and less than or equal to 41mm, for example, one of the short sides is 28mm. mm, the other short side is 41mm; the middle section 422 of the third reinforcing protrusion 420 has a dimension of 52mm along the direction perpendicular to the avoidance surface 210, the cross-section of the middle section 422 has a bottom width of 7mm, a top width of 3mm, and a height of 2mm along the protruding direction (the direction perpendicular to the surface of the bent body 122); the first end 421 has a minimum dimension of 6mm and a maximum dimension of 9mm along the short side direction of the avoidance surface 210, the cross-section of the first end 421 has a bottom width of 7mm, a top width of 3mm, and a height of 2mm along the protruding direction (the direction perpendicular to the avoidance surface 210). The height of the second end 423 is 2mm; the minimum dimension of the second end 423 along the short side of the clearance surface 210 is 12mm, the maximum dimension is 15mm, the bottom width of the cross section of the second end 423 is 7mm, the top width is 3mm, and the height along the protruding direction (the direction perpendicular to the second mounting surface 1211) is 2mm; the dimension of the first reinforcing protrusion 410 along the long side of the clearance surface 210 is 6mm, the dimension along the direction perpendicular to the clearance surface 210 is 9mm, and the dimension along the protruding direction (the direction at a 45-degree angle with the second mounting surface 1211) is 3.5mm.
[0109] It should be noted that the above dimensions are all exemplary and should not be regarded as a limitation of this application. Appropriate dimensions can be set according to usage requirements. Chamfers can also be set at the corners of the mounting parts. This application embodiment does not limit this.
[0110] The sequence numbers of the embodiments in this application are for descriptive purposes only and do not represent the superiority or inferiority of the embodiments. The above are merely preferred embodiments of this application and do not limit the patent scope of this application. Any equivalent structural or procedural transformations made based on the content of this application's specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this application.
Claims
1. An installation component, characterized in that, For mounting an interactive controller to a support structure of a vehicle, the mounting component includes: An assembly structure for connection to the supporting structure; A mating structure is connected to the assembly structure. The mating structure includes a clearance surface and a mating surface, which have the same orientation. The mating surface is used to adapt to the interactive controller, and the clearance surface is recessed relative to the mating surface to provide clearance space for the interactive controller.
2. The mounting component according to claim 1, wherein, The assembly structure includes at least two mounting parts for connecting to the support structure, and the at least two mounting parts are located around the periphery of the mating structure.
3. The mounting component according to claim 2, wherein, The at least two mounting portions include a first mounting portion, wherein two adjacent edges of the first mounting portion are respectively connected to the mating surface and the clearance surface; The first mounting portion includes a first mounting surface, which has the same orientation as the adjacent avoidance surface, and the first mounting surface is recessed relative to the avoidance surface.
4. The mounting component according to claim 2, wherein, The at least two mounting portions include a second mounting portion, the second mounting portion comprising: The mounting body includes a second mounting surface; A bent body is connected between the mounting body and the mating structure, with one end of the bent body bent relative to the mounting body and the other end of the bent body bent relative to the mating structure.
5. The mounting component according to claim 4, wherein, The bent body is bent relative to the mating structure in a direction away from the mating surface, and the mounting body is bent relative to the bent body in a direction close to the mating structure, and is projected in a direction perpendicular to the clearance surface. The projection of the mounting body does not overlap with the projection of the mating structure.
6. The mounting component according to claim 4, wherein, It also includes a bending protection structure, which is disposed between the bending body and the clearance surface; The bending protection structure includes a first structural surface and a second structural surface. The first structural surface is flush with and connected to the adjacent mating surface. The second structural surface is disposed between the first structural surface and the avoidance surface, and the distance between the second structural surface and the bending body gradually decreases along the direction from the mating surface to the avoidance surface.
7. The mounting component according to claim 4, wherein, It also includes a reinforcing structure, which comprises: A first reinforcing protrusion is disposed at at least a partial connection position between the bent body and the mounting body, the first reinforcing protrusion protruding relative to the corresponding surfaces of the bent body and the mounting body; and / or A second reinforcing protrusion is disposed at at least a partial connection position between the bent body and the mating structure, the second reinforcing protrusion protruding relative to the corresponding surfaces of the bent body and the mating structure; and / or The third reinforcing protrusion includes a middle section, a first end, and a second end. The middle section is disposed on the bent body and protrudes from the surface of the bent body. The first end is provided with the mating structure and protrudes from the corresponding mating surface. The second end is disposed on the mounting body and protrudes from the second mounting surface.
8. The mounting component according to claim 7, wherein, The bent body includes a first edge, one end of the first edge is connected to the mating surface, the other end of the first edge is connected to the second mounting surface, the first reinforcing protrusion and the second reinforcing protrusion are disposed close to the first edge, and / or, the middle section forms the second edge of the bent body, the second edge is disposed opposite to the first edge, the first end forms a partial edge corresponding to the mating surface, and the second end forms a partial edge of the second mounting surface; The size of the middle section gradually decreases along the protruding direction of the middle section relative to the bending body; the size of the first end gradually decreases along the protruding direction of the first end relative to the mating surface; and the size of the second end gradually decreases along the protruding direction of the second end relative to the second mounting surface.
9. The mounting component according to any one of claims 1 to 8, wherein, The mating surface is annular and surrounds the clearance surface; or, The number of mating surfaces is at least two, and the avoidance surface is disposed between at least two of the mating surfaces.
10. The mounting component according to any one of claims 1 to 8, wherein, The mating structure further includes a connecting stud and a connecting nut, and each mating surface is provided with the connecting stud; The connecting nut is anti-loosening connected to the corresponding connecting stud, which is used to fix the interactive controller relative to the mating structure.
11. The mounting component according to any one of claims 1 to 8, wherein, The assembly structure includes at least two connection holes, which are used for connecting the support structure. At least one of the connecting holes is an elongated hole.
12. A means of transportation, characterized in that, include: The mounting component as described in any one of claims 1 to 11; Interactive controllers are used for human-computer interaction; The means of transportation includes a vehicle, the vehicle includes a support structure, and the interactive controller is connected to the support structure via the mounting component.