vehicle

CN224688783UActive Publication Date: 2026-08-28HONGFUJIN PRECISION ELECTRONICS (ZHENGZHOU) CO LTD +1
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Patent Information

Application Number
CN202521320695.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-06-25
Publication Date
2026-08-28
Estimated Expiration
2035-06-25

AI Technical Summary

Technical Problem

[0003]但电子产品被夹爪抓取时,夹爪与电子产品的壳体接触,壳体容易发生磨伤;电子产品在不同的工作模块之间的搬运过程中,壳体易与工作设备内的零部件发生摩擦甚至碰触,导致电子产品出现外观刮伤不良等缺陷,需要维修更换电子产品的壳体,耗费大量的成本和时间

Benefits of technology

[0024]使用者可以通过施力凸块对弹性件施加作用力,使得弹性件发生朝向第二边框的形变,推动电子产品与第一边框分离,提高电子产品与载具的拆卸效率。

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the assembling technical field, in particular to a carrier for positioning an electronic product, the electronic product comprising a side surface, an end surface, a top surface and a bottom surface, the opposite directions of the top surface and the bottom surface being a third direction; the carrier comprising a first frame and a second frame, a supporting part being connected with the bottom surface of the first frame or the second frame along the third direction, and a limiting part being connected with the top surface of the first frame or the second frame along the third direction; the first frame comprising a first side frame and a second side frame, the first side frame comprising a first end, and the second side frame comprising a second end; the second frame comprising a third side frame and a fourth side frame, the third side frame comprising a third end, and the fourth side frame comprising a fourth end; the first end being rotationally connected with the third end, and the second end being detachably connected with the fourth end; the first side frame and the second side frame being enclosed to form a positioning cavity, and the positioning cavity being configured to position the electronic product. The carrier can be assembled on the periphery of the electronic product, and the electronic product can be effectively protected.
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Description

Technical Field

[0001] This application relates to the field of assembly technology, and more particularly to a carrier. Background Technology

[0002] When electronic products are being tested or assembled, they need to be placed in working equipment. The grippers of the moving mechanism inside the working equipment clamp the electronic products to execute the workflow. Some working equipment also needs to move the electronic products from one working module to another for the next process.

[0003] However, when electronic products are gripped by the grippers, the grippers come into contact with the product's casing, which can easily cause scratches. During the transfer of electronic products between different working modules, the casing can easily rub against or even come into contact with components inside the working equipment, resulting in defects such as scratches on the electronic products. This requires repairing or replacing the casing, which consumes a lot of costs and time. Utility Model Content

[0004] In view of this, this application provides a vehicle that can solve at least one of the above-mentioned technical problems.

[0005] This application provides a carrier for positioning an electronic product. The electronic product includes two oppositely arranged side surfaces, two end surfaces, a top surface, and a bottom surface. One of the end surfaces is provided with a power interface. The direction in which the two side surfaces face each other is a first direction, the direction in which the two end surfaces face each other is a second direction, and the direction in which the top surface faces the bottom surface faces each other is a third direction. The first direction, the second direction, and the third direction are perpendicular to each other. The carrier includes a first frame and a second frame. The first frame includes a first side frame and a second side frame connected together. The first side frame includes a first end facing away from the second side frame, and the second side frame includes a second end facing away from the first side frame. The second frame includes a third side frame and a fourth side frame connected together. The third side frame includes a third side frame facing away from the fourth side frame. The third end, the fourth frame includes a fourth end facing away from the third frame; the first end is rotatably connected to the third end, and the second end is detachably connected to the fourth end, so that the carrier can switch between a first state and a second state; the first state is that the second end and the fourth end are connected to each other, so that the first frame and the second frame enclose a positioning cavity for accommodating the electronic product, in the first state the second frame and the third frame are configured to abut against the two side surfaces along the first direction, and the first frame and the fourth frame are configured to abut against the two end faces along the second direction; the second state is that the second end and the fourth end are separated from each other, so that the electronic product is placed on the carrier or the electronic product is separated from the carrier.

[0006] In the above solution, the carrier is assembled from a first frame and a second frame. The carrier has a simple structure and is easy to maintain. When the positioning cavity formed by the first frame and the second frame is assembled with the electronic product, it can cover the side and end face of the electronic product, so that the carrier can play an effective protective role. Compared with the gripper holding several points on the side or end face of the electronic product, this application is beneficial to reduce or even avoid friction or bumps that cause defects such as scratches or deformation of the electronic product. At the same time, the first end of the first frame and the third end of the second frame are rotatably connected, and the second end of the first frame and the fourth end of the second frame are detachably connected, so that the first frame can rotate around the third end or the second frame can rotate around the first end to open the positioning cavity, which is convenient for the electronic product to be installed into or removed from the positioning cavity.

[0007] In some embodiments, the first end is provided with a first connecting portion, the first connecting portion has connecting protrusions on two surfaces along the third direction, the third end is provided with two second connecting portions spaced apart along the third direction, the second connecting portions have connecting holes, and a connecting groove communicating with the connecting holes is formed between the two second connecting portions; the first connecting portion is configured to be received in the connecting groove, and the connecting protrusions are configured to be embedded in the connecting holes, so that the first end and the third end are rotatably connected.

[0008] The connection between the protrusion and the connecting hole forms a pivot structure, allowing the first end of the first frame and the third end of the second frame to be rotatably connected. During the installation and disassembly of electronic products, the first frame and the second frame will not separate, reducing the number of steps required to connect the first end of the first frame to the second end of the second frame and improving the assembly efficiency of the carrier on electronic products. At the same time, the first frame or the second frame can rotate in the plane containing the first and second directions to open the positioning cavity, making it convenient for electronic products to be installed into or removed from the positioning cavity.

[0009] In some embodiments, the second end is provided with a first extension and a second extension connected together, the first extension extending along the second direction and the second extension extending along the first direction, the first extension and the second extension forming a snap-fit ​​position; the fourth end is provided with a snap-fit ​​portion, the snap-fit ​​portion being configured to be embedded in the snap-fit ​​position, so that the second end and the fourth end are detachably connected.

[0010] The snap-fit ​​part can be embedded in the snap-fit ​​position, so that the second end of the first frame and the fourth end of the second frame form a detachable connection, and the embedded structure can improve the connection stability between the second end and the fourth end during the whole machine inspection or assembly process.

[0011] In some embodiments, the second extension is provided with a first limiting protrusion on the inner side along the second direction, and the portion of the first limiting protrusion away from the fourth end along the first direction is provided with a first limiting surface; the fourth end is provided with a second limiting protrusion, and the portion of the second limiting protrusion away from the second end along the first direction is provided with a second limiting surface; the first limiting protrusion is configured to engage with the second limiting protrusion, so that the first limiting surface abuts against the second limiting surface.

[0012] When the snap-fit ​​part is inserted into the snap-fit ​​position, the snap-fit ​​setting of the first limiting protrusion and the second limiting protrusion improves the connection stability between the snap-fit ​​part and the snap-fit ​​position, and the connection stability between the second end and the fourth end is high during the whole machine testing or assembly process.

[0013] In some embodiments, the portion of the first limiting protrusion facing the fourth end along the first direction has a first guide surface, and the portion of the second limiting protrusion facing the second end along the first direction has a second guide surface. The first guide surface and the second guide surface are configured to guide the first limiting protrusion and the second limiting protrusion to engage.

[0014] The design of the first and second guide surfaces can improve the accuracy of the docking between the second and fourth ends.

[0015] In some embodiments, the carrier further includes a support portion and a limiting portion, the support portion being connected to the first frame or the second frame, and the limiting portion being connected to the first frame or the second frame; in the first state, the support portion is configured to support the bottom surface of the electronic product along the third direction, and the limiting portion is configured to abut against the top surface of the electronic product along the third direction.

[0016] The support part supports the bottom surface of the electronic product along the third direction, and the limiting part abuts against the top surface of the electronic product along the third direction. At this time, the positioning cavity accurately positions the six sides of the electronic product, which improves the installation accuracy of the electronic product in the positioning cavity. This allows the carrier to play an effective protective role, reducing or even avoiding defects such as scratches or deformation caused by friction or bumps.

[0017] In some embodiments, the first frame and the second frame are provided with hollowed-out portions.

[0018] Hollowed-out sections can reduce the overall weight of the vehicle, and the addition of hollowed-out sections can increase the vehicle's elasticity and improve its collision resistance.

[0019] In some embodiments, the connection between the first and second borders, and the connection between the third and fourth borders, are provided with arc-shaped portions.

[0020] The vehicle's corners are designed with an arc shape, which not only makes it easy to match the corner shape of electronic products, but also disperses the impact force to other areas of the vehicle, further improving the vehicle's collision resistance.

[0021] In some embodiments, the fourth frame has a notch that is configured to expose the power interface to the outside.

[0022] The notch allows the power interface of the electronic product to be exposed to the outside, facilitating subsequent testing.

[0023] In some embodiments, the carrier further includes an elastic element, one end of which is connected to the wall surface of the second frame facing the third frame along the first direction; the elastic element has a force-applying protrusion on its surface away from the third frame along the first direction, the second frame has a receiving hole extending through the second frame along the first direction, the force-applying protrusion is configured to be received in the receiving hole, and the force-applying protrusion is configured to receive a force to cause the elastic element to deform along the first direction, so that the elastic element applies a force to the electronic product.

[0024] Users can apply force to the elastic element through the force-applying protrusion, causing the elastic element to deform toward the second frame, pushing the electronic product to separate from the first frame, thus improving the disassembly efficiency of the electronic product and the carrier. Attached Figure Description

[0025] Figure 1 This is a schematic diagram of the structure of a vehicle provided in one embodiment of this application.

[0026] Figure 2 for Figure 1 The diagram shows a structural schematic of another state of the vehicle.

[0027] Figure 3 for Figure 1 An exploded view of the vehicle shown.

[0028] Explanation of key component symbols: 10. Carrier; 20. Electronic product; 201. Side; 202. End face; 203. Top face; 204. Power interface; 205. Bottom face; 1. Support section; 2. Limiting part; 3. First framework; 31. First frame; 311. First end; 312. First connecting part; 3121. Connecting protrusion; 32. Second frame; 321. Second end; 322. First extension; 323. Second extension; 324. Snap-fit ​​position; 325. First limiting protrusion; 3251. First limiting surface; 3252. First guide surface; 326. Receiving hole; 4. Second framework; 41. Third frame; 411. Third end; 4111. Second connecting part; 412. Connecting groove; 413. Connecting hole; 42. Fourth frame; 421. Fourth end; 422. Snap-fit ​​part; 423. Second limiting protrusion; 4231. Second limiting surface; 4232. Second guide surface; 424. Third limiting protrusion; 425. Notch; 5. Hollowed-out section; 6. Curved section; 7. Elastic components; 8. Force-applying protrusion; X, first direction; Y, second direction; Z, third direction. Detailed Implementation

[0029] The technical solutions of the embodiments of this application will be described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments.

[0030] For issues such as scratches or abrasions that may occur on electronic products during the overall testing or assembly process, please refer to... Figure 1 and Figure 2 This application provides a carrier 10 that can enclose an electronic product 20 (see reference). Figure 3 The side and end faces (as shown) effectively protect the electronic product 20. Compared with clamping the electronic product 20 at several points on the side or end face by the claws, this application helps to reduce or even avoid defects such as scratches or deformation of the electronic product 20 caused by friction or bumps.

[0031] In some implementations, the electronic product includes, but is not limited to, mobile phones, tablets, or e-readers, which can be selected according to actual needs and are not limited thereto. Optionally, this application uses a mobile phone as an example; please refer to... Figure 3 The mobile phone includes two sides 201, two end faces 202, a top face 203, and a surface 205 arranged opposite to each other. One end face 202 is provided with a power interface 204 for connecting to a power source. The two sides 201 are facing each other in a first direction X, the two end faces 202 are facing each other in a second direction Y, and the top face 203 and the bottom face 205 are facing each other in a third direction Z. The first direction X, the second direction Y, and the third direction Z are orthogonal to each other.

[0032] The carrier 10 surrounds the six sides of the electronic product 20 to provide protection. The carrier 10 specifically includes a support part 1, a limiting part 2, a first frame 3, and a second frame 4 that are connected to each other.

[0033] In some implementation methods, please refer to Figure 1 Both the first frame 3 and the second frame 4 are L-shaped structures. When assembled, they form a rectangular frame of the carrier 10. The rectangular frame can be fitted onto the outside of the two sides 201 and the two end faces 202 of the electronic product 20, providing protection. The carrier 10 has a simple structure and is easy to maintain. The first frame 3 includes a first side frame 31 and a second side frame 32 connected together. The first side frame 31 includes a first end 311 facing away from the second side frame 32, and the second side frame 32 includes a second end 321 facing away from the first side frame 31. The second frame 4 includes a third side frame 41 and a fourth side frame 42 connected together. The third side frame 41 includes a third end 411 facing away from the fourth side frame 42, and the fourth side frame 42 includes a fourth end 421 facing away from the third side frame 41. That is, the first end 311 and the second end 321 are the two ends of the first frame 3, and the third end 411 and the fourth end 421 are the two ends of the second frame 4.

[0034] Please refer to Figure 2 The first end 311 of the first frame 3 and the third end 411 of the second frame 4 are rotatably connected, so that the first frame 3 can rotate around the third end 411 of the second frame 4 or the second frame 4 can rotate around the first end 311 of the first frame 3. Specifically, the first end 311 is provided with a first connecting part 312, and the first connecting part 312 is provided with connecting protrusions 3121 on both sides opposite to each other along the third direction Z. The third end 411 is provided with two second connecting parts 4111 spaced apart along the third direction Z. The second connecting parts 4111 are provided with connecting holes 413. A connecting groove 412 is formed between the two second connecting parts 4111 to connect the connecting holes 413. When the first end 311 of the first frame 3 is connected to the third end 411 of the second frame 4, the first connecting part 312 is received in the connecting groove 412, and the connecting protrusions 3121 are embedded in the connecting holes 413 along the third direction Z, so that the first end 311 and the third end 411 are rotatably connected. Understandably, the connection between the protrusion 3121 and the connection hole 413 forms a rotating shaft structure. During the installation and disassembly of the electronic product 20, the first frame 3 and the second frame 4 can rotate relative to each other in the planes of the first direction X and the second direction Y without separating. This reduces the operation steps required to connect the first end 311 of the first frame 3 to the second end 321 of the second frame 4 when the carrier 10 is installed on the electronic product 20, thereby improving the assembly efficiency of the carrier 10 on the electronic product 20.

[0035] The second end 321 of the first frame 3 and the fourth end 421 of the second frame 4 are detachably connected. Specifically, the second end 321 has a first extension 322 and a second extension 323 connected to each other. The first extension 322 extends along the second direction Y, and the second extension 323 extends along the first direction X. The first extension 322 and the second extension 323 enclose to form a snap-fit ​​position 324, which is approximately L-shaped. The fourth end 421 has a snap-fit ​​part 422, the shape of which matches the snap-fit ​​position 324, allowing it to be embedded in the snap-fit ​​position 324. The second end 321 and the fourth end 421 are detachably connected. It can be understood that the embedded structure formed by the snap-fit ​​part 422 and the snap-fit ​​position 324 can improve the connection stability of the second end 321 and the fourth end 421 during the whole machine inspection or assembly process, so that the first frame 3 and the second frame 4 enclose a structurally stable rectangular frame.

[0036] The first end 311 is rotatably connected to the third end 411, and the second end 321 is detachably connected to the fourth end 421, so that the carrier 10 can switch between a first state and a second state. In the first state, the second end 321 and the fourth end 421 are connected to each other, so that the first frame 31 and the second frame 32 enclose a positioning cavity for accommodating the electronic product 20. In the first state, the second frame 32 and the third frame 41 are configured to abut against the two side surfaces 201 along the first direction X, and the first frame 31 and the fourth frame 42 are configured to abut against the two end faces 202 along the second direction Y. In the second state, the second end 321 and the fourth end 421 are separated from each other, so that the electronic product is placed on the carrier or the electronic product is separated from the carrier.

[0037] Furthermore, the second extension 323 is provided with a first limiting protrusion 325 on the inner side along the second direction Y, and the portion of the first limiting protrusion 325 away from the fourth end 421 along the first direction X is provided with a first limiting surface 3251; the fourth end 421 is provided with a second limiting protrusion 423, and the portion of the second limiting protrusion 423 away from the second end 321 along the first direction X is provided with a second limiting surface 4231. The first limiting protrusion 325 can engage with the second limiting protrusion 423, so that the first limiting surface 3251 abuts against the second limiting surface 4231. When the snap-fit ​​part 422 is inserted into the snap-fit ​​position 324, the snap-fit ​​between the first limiting protrusion 325 and the second limiting protrusion 423 improves the connection stability between the snap-fit ​​part 422 and the snap-fit ​​position 324. After the first limiting surface 3251 and the second limiting surface 4231 abut against each other, their projections along the first direction X at least partially overlap. The second end 321 and the fourth end 421 have high connection stability along the first direction X and the third direction Z during the whole machine inspection or assembly process.

[0038] The first limiting protrusion 325 has a first guide surface 3252 on the part facing the fourth end 421 along the first direction X. The first guide surface 3252 is an inclined surface. The second limiting protrusion 423 has a second guide surface 4232 on the part facing the second end 321 along the first direction X. The second guide surface 4232 is an arc surface. The first guide surface 3252 and the second guide surface 4232 can guide the first limiting protrusion 325 and the second limiting protrusion 423 to correctly engage, thereby improving the docking accuracy of the second end 321 and the fourth end 421.

[0039] Furthermore, the latching portion 422 is provided with third limiting protrusions 424 on both sides along the third direction Z. The second limiting protrusion 423 is located between the two third limiting protrusions 424. When the latching portion 422 is inserted into the latching position 324, at least a portion of the first extension portion 322 and the second extension portion 323 are received between the two third limiting protrusions 424. The protrusion height of the third limiting protrusion 424 can be selected according to the first extension portion 322 and the second extension portion 323, so that the outer surfaces of the first extension portion 322 and the second extension portion 323 do not protrude from the top of the third limiting protrusion 424.

[0040] In some embodiments, the carrier 10 includes a plurality of support parts 1 and a plurality of limiting parts 2, please refer to Figure 1 and Figure 2 The support part 1 and the limiting part 2 are sheet-like structures. The sheet-like structures are parallel to the plane containing the first direction X and the second direction Y, and extend toward the center direction of the carrier 10. The shape and size of each sheet-like structure can be selected according to the size of the electronic product 20. For example, when the size of the electronic product 20 is large, the size of the support part 1 and the limiting part 2 can be increased, thereby increasing the contact area between the two and the electronic product 20.

[0041] The support part 1 is connected to the bottom surface of the first frame 3 or the second frame 4 along the third direction Z, and the limiting part 2 is connected to the top surface of the first frame 3 or the second frame 4 along the third direction Z. The size and number of the support part 1 and the limiting part 2 can be selectively set according to the specifications of the electronic product 20. For example, when the size of the electronic product 20 is large, the support part 1 and the limiting part 2 can be set on the first frame 31, the second frame 32, the third frame 41 and the fourth frame 42 to limit the displacement of the electronic product 20 along the third direction Z. Understandably, the support part 1 and the limiting part 2 can cooperate with the first frame 31 and the second frame 32 to form a positioning cavity, further improving the connection stability between the electronic product 20 and the carrier 10. The second frame 32 and the third frame 41 abut against the two sides 201 of the electronic product 20 along the first direction X, and the first frame 31 and the fourth frame 42 abut against the two end faces 202 of the electronic product 20 along the second direction Y. The support part 1 supports the bottom surface 205 of the electronic product 20 along the third direction Z, and the limiting part 2 abuts against the top surface 203 of the electronic product 20 along the third direction Z. At this time, the positioning cavity accurately positions the six sides of the electronic product 20, improving the installation accuracy of the electronic product 20 in the positioning cavity, so that the carrier 10 can play an effective protective role, reducing or even avoiding defects such as scratches or deformation of the electronic product 20 caused by friction or bumps.

[0042] It should be noted that the length, width and height of the positioning cavity can be selected according to the size of the electronic product 20. It can accurately position the six sides of the electronic product 20 and stably clamp the electronic product 20. No limitation is made here.

[0043] In some implementation methods, please refer to Figure 1 and Figure 2 The first frame 3 and the second frame 4 are provided with hollow parts 5. It can be understood that the hollow parts 5 can reduce the overall weight of the vehicle 10, and the hollow parts 5 can increase the elasticity of the vehicle 10 and improve the collision resistance of the vehicle 10.

[0044] In some implementation methods, please refer to Figure 1 and Figure 2 The junctions of the first frame 31 and the second frame 32, and the junctions of the third frame 41 and the fourth frame 42, are provided with arc-shaped portions 6, meaning that the corners of the carrier 10 are rounded. Understandably, the arc-shaped corners of the carrier 10 facilitate matching the corner shape of the electronic product 20, while also dispersing impact force to other areas of the carrier 10, further improving the collision resistance of the carrier 10.

[0045] In some implementation methods, please refer to Figure 2The fourth frame 42 has a notch 425, and the electronic product 20 is configured to be housed in the positioning cavity. The notch 425 along the second direction Y exposes the power interface 204 to the outside. Specifically, the first frame 31, the second frame 32 and the third frame 41 are approximately rectangular columnar structures, and at least part of the fourth frame 42 is a sheet structure. The sheet structure is parallel to the plane containing the first direction X and the second direction Y. After the first frame 3 and the second frame 4 are assembled, the notch 425 is formed at the top of the fourth frame 42 along the third direction Z. The notch 425 exposes the power interface 204 of the electronic product 20 to the outside, which facilitates the subsequent testing process.

[0046] In some implementation methods, please refer to Figure 1 The carrier 10 also includes an elastic element 7 and a force-applying protrusion 8 for quick disassembly of the carrier 10. Specifically, the elastic element 7 is a sheet-like spring. One end of the elastic element 7 is connected to the inner wall surface of the third frame 41 along the first direction X of the second frame 32. In this application, the elastic element 7 and the second frame 32 are integrally formed, which makes the connection between the two more stable. The force-applying protrusion 8 is disposed on the surface of the elastic element 7 away from the third frame 41 along the first direction X, and the second frame 32 is provided with a receiving hole 326 that passes through the second frame 32 along the first direction X. When the elastic element 7 does not deform, the elastic element 7 and the inner wall surface of the second frame 32 along the first direction X are attached, and the force-applying protrusion 8 is received in the receiving hole 326. When the electronic product 20 needs to be separated from the first frame 31, the force-applying protrusion 8 receives the force and causes the elastic element 7 to deform along the first direction X, so that the elastic element 7 applies a force to the electronic product 20, which speeds up the disassembly of the electronic product 20 and improves the disassembly efficiency of the electronic product 20 and the carrier 10.

[0047] In practical applications, the first frame 3 can rotate around the third end 411 or the second frame 4 can rotate around the first end 311 to open the positioning cavity. The electronic product 20 is then installed into the positioning cavity. The first frame 3 or the second frame 4 is rotated so that the second end 321 of the first frame 3 engages with the fourth end 421 of the second frame 4. At this time, the second side frame 32 and the third side frame 41 abut against the two sides 201 of the electronic product 20 along the first direction X, and the first side frame 31 and the fourth side frame 42 abut against the two end faces 202 of the electronic product 20 along the second direction Y. The support part 1 supports the bottom surface 205 of the electronic product 20 along the third direction Z, and the limiting part 2 abuts against the top surface 203 of the electronic product 20 along the third direction Z, thus completing the assembly of the electronic product 20 with the carrier 10.

[0048] Furthermore, those skilled in the art should recognize that the above embodiments are merely illustrative of this application and are not intended to limit this application. Any appropriate changes and variations made to the above embodiments within the essential spirit and scope of this application fall within the scope of this application's disclosure.

Claims

1. A carrier for positioning an electronic product, the electronic product comprising two oppositely arranged side surfaces, two end surfaces, a top surface, and a bottom surface, one of the end surfaces being provided with a power interface, the two side surfaces facing each other in a first direction, the two end surfaces facing each other in a second direction, and the top surface facing the bottom surface in a third direction, wherein the first direction, the second direction, and the third direction are mutually perpendicular; characterized in that, The vehicle includes a first frame and a second frame; The first frame includes a first border and a second border connected together. The first border includes a first end that is away from the second border, and the second border includes a second end that is away from the first border. The second frame includes a third border and a fourth border connected together. The third border includes a third end that is away from the fourth border, and the fourth border includes a fourth end that is away from the third border. The first end is rotatably connected to the third end, and the second end is detachably connected to the fourth end, allowing the carrier to switch between a first state and a second state. In the first state, the second end and the fourth end are connected to each other, so that the first frame and the second frame enclose a positioning cavity for accommodating the electronic product. In the first state, the second frame and the third frame are configured to abut against the two side surfaces along the first direction, and the first frame and the fourth frame are configured to abut against the two end faces along the second direction. In the second state, the second end and the fourth end are separated from each other, allowing the electronic product to be placed on the carrier or separated from the carrier.

2. The vehicle according to claim 1, characterized in that, The first end is provided with a first connecting part, and the first connecting part has connecting protrusions on two surfaces along the third direction. The third end is provided with two second connecting parts spaced apart along the third direction. The second connecting parts are provided with connecting holes, and a connecting groove is formed between the two second connecting parts to communicate with the connecting holes. The first connecting portion is configured to be received in the connecting groove, and the connecting protrusion is configured to be embedded in the connecting hole, so that the first end is rotatably connected to the third end.

3. The vehicle according to claim 1, characterized in that, The second end is provided with a first extension and a second extension connected to each other. The first extension extends along the second direction, and the second extension extends along the first direction. The first extension and the second extension surround each other to form a snap-fit ​​position. The fourth end is provided with a snap-fit ​​part, which is configured to be embedded in the snap-fit ​​position, so that the second end and the fourth end are detachably connected.

4. The vehicle according to claim 3, characterized in that, The second extension is provided with a first limiting protrusion on the inner side along the second direction, and the portion of the first limiting protrusion away from the fourth end along the first direction is provided with a first limiting surface. The fourth end is provided with a second limiting protrusion, and the portion of the second limiting protrusion away from the second end along the first direction is provided with a second limiting surface. The first limiting protrusion is configured to engage with the second limiting protrusion, so that the first limiting surface abuts against the second limiting surface.

5. The vehicle according to claim 4, characterized in that, The first limiting protrusion has a first guide surface on the portion facing the fourth end along the first direction, and the second limiting protrusion has a second guide surface on the portion facing the second end along the first direction. The first guide surface and the second guide surface are configured to guide the first limiting protrusion and the second limiting protrusion to engage.

6. The vehicle according to claim 4, characterized in that, The carrier further includes a support portion and a limiting portion. The support portion is connected to the first frame or the second frame, and the limiting portion is connected to the first frame or the second frame. In the first state, the support portion is configured to support the bottom surface of the electronic product along the third direction, and the limiting portion is configured to abut against the top surface of the electronic product along the third direction.

7. The vehicle according to claim 1, characterized in that, The first frame and the second frame have hollowed-out sections.

8. The vehicle according to claim 1, characterized in that, The connection between the first and second borders, and the connection between the third and fourth borders, are provided with arc-shaped portions.

9. The vehicle according to claim 1, characterized in that, The fourth frame has a notch, which is configured to expose the power interface to the outside.

10. The vehicle according to claim 1, characterized in that, The carrier further includes an elastic element, one end of which is connected to the wall surface of the second frame facing the third frame along the first direction; The elastic element has a force-applying protrusion on its surface away from the third frame along the first direction. The second frame has a receiving hole that passes through the second frame along the first direction. The force-applying protrusion is configured to be received in the receiving hole and is configured to receive a force to cause the elastic element to deform along the first direction, so that the elastic element applies a force to the electronic product.