Handle structure and electronic equipment
By designing a detachable handle structure and a locking mechanism, the problem of dirty handles was solved, making it convenient and stable to clean and replace the handles, thus improving the user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ANKER INNOVATIONS TECH CO LTD
- Filing Date
- 2025-05-27
- Publication Date
- 2026-05-12
AI Technical Summary
Handles are prone to getting dirty and sticky during long-term use, affecting user experience and are difficult to clean and replace.
Design a detachable handle structure that allows for detachable connection between the handle and the equipment body through mounting components and a locking mechanism. This allows the handle to be cleaned and replaced, and the locking mechanism prevents the handle from detaching due to vibration or accidental contact.
The handle is detachable, making it easy to clean and replace, preventing dirt from affecting its use, and improving the stability and portability of the handle on the equipment body.
Smart Images

Figure CN224233977U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of handle technology, and more particularly to a handle structure and electronic device. Background Technology
[0002] A handle is a structure designed to facilitate picking up or carrying, and is widely used on electronic devices, cases, or other objects that need to be moved.
[0003] In related technologies, handles are usually fixed to electronic devices and other objects that need to be moved. Over time, dirt can easily adhere to the handles, affecting user experience. Utility Model Content
[0004] This application provides a handle structure and electronic device, which allows for the disassembly of the handle for cleaning and replacement, preventing dirt from adhering to the handle and affecting user operation.
[0005] In a first aspect, this application provides a handle structure, including a handle and two sets of mounting components, wherein the two sets of mounting components are respectively disposed at both ends of the handle, and the mounting components include:
[0006] The first mounting component is connected to the handle;
[0007] The second mounting component is arranged along the first mounting component in the first direction and is detachably connected to the first mounting component. The second mounting component is used to connect to the device body.
[0008] A first locking structure is provided on the side of the first mounting member facing the second mounting member;
[0009] The second locking structure is disposed on the side of the second mounting member facing the first mounting member;
[0010] The first mounting member is rotatable relative to the second mounting member around a first axis, so that the first locking structure locks or unlocks with the second locking structure, thereby realizing the locking or unlocking of the first mounting member in the first direction and the locking or unlocking of the first mounting member in the direction around the first axis, wherein the extension direction of the first axis is parallel to the first direction.
[0011] Secondly, this application provides an electronic device, including a device body and a handle structure, wherein a second mounting member is connected to the device body, and both ends of the handle structure are detachably connected to the housing of the device body through two sets of mounting components.
[0012] The beneficial effects of this application are as follows: the handle can be detachably connected to the device body, allowing for cleaning and replacement, preventing dirt from adhering to the handle and affecting user operation. Furthermore, when the handle is not needed, the electronic device's handle and the device body can be stored separately, making the carrying and storage of the electronic device more convenient. In addition, the cooperation of the first and second locking structures enables the locking or unlocking of the first and second mounting components, thereby enabling the handle to be locked or unlocked from the device body. This prevents vibration or accidental contact from causing the first mounting component to rotate and unlock the first and second locking structures, ensuring the handle is stably mounted on the device body and preventing it from detaching during daily use. Attached Figure Description
[0013] To more clearly illustrate the technical solutions in the embodiments or related technologies of this application, the drawings used in the description of the embodiments or related technologies will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0014] Figure 1 This is a schematic diagram of the handle structure in one embodiment of this application;
[0015] Figure 2 This is an exploded view of the handle structure in one embodiment of this application;
[0016] Figure 3 This is a schematic diagram of the structure of the first mounting component in one embodiment of this application;
[0017] Figure 4 This is a schematic diagram of the structure of the second mounting component in one embodiment of this application;
[0018] Figure 5 This is a partial structural diagram of the handle structure when the first locking structure is in the locked position in one embodiment of this application;
[0019] Figure 6 This is a partial structural diagram of the handle structure when the first locking structure is in the locked position in one embodiment of this application;
[0020] Figure 7 This is a partial structural diagram of the handle structure when the first locking structure is in the unlocked position in one embodiment of this application;
[0021] Figure 8 This is a partial structural diagram of the handle structure when the first locking structure is in the unlocked position in one embodiment of this application;
[0022] Figure 9This is a schematic diagram of the structure of the device body in one embodiment of this application;
[0023] Figure 10 This is an exploded view of the components of the device body in one embodiment of this application.
[0024] Figure label:
[0025] 10. Handle; 11. Mounting hole; 20. Mounting component; 21. First mounting part; 211. Rotating part; 212. Limiting part; 213. Mounting groove; 22. Second mounting part; 31. First locking structure; 32. Second locking structure; 41. Locking hole; 411. Locking opening; 412. Unlocking opening; 42. Locking hook; 421. Connecting part; 422. Hooking part; 43. Snapping part; 431. Snapping protrusion; 432. Elastic element; 44. Groove structure; 441. First groove; 442. Second groove; 51. Receiving groove; 52. Anti-slip structure; 60. Button assembly; 61. Electrical connection part; 70. Equipment body; X, First direction; N, First axis. Detailed Implementation
[0026] To make the objectives, technical solutions, and advantages of this application clearer, the following detailed description is provided in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the scope of this application.
[0027] This application provides a handle structure and an electronic device to solve the problem that in the related art, handles are usually fixed to electronic devices and other objects that need to be moved. During long-term use, dirt and grime easily adhere to the handle, affecting the user's use.
[0028] Firstly, this application provides a handle structure, such as Figure 1 and Figure 2 As shown, the handle structure includes a handle 10 and a mounting assembly 20. The handle 10 has mounting holes 11. The mounting assembly 20 includes a first mounting member 21 and a second mounting member 22, both of which are disposed within the mounting holes 11. Mounting holes 11 can be provided at both ends of the handle 10. Two sets of mounting assemblies 20 are provided, each set located at one end of the mounting holes 11 of the handle 10, allowing the handle 10 to be connected to the device body 70 of the electronic device (e.g., [device name missing]). Figure 10 It is detachable and can be used for electronic devices such as power banks, speakers, projectors, and bases for floor cleaning robots.
[0029] It should also be noted that when the handle is installed on the device body 70, the second mounting part 22 can be connected to the device body 70, and then the first mounting part 21 and the second mounting part 22 can be detachably connected. This allows the handle 10 to be detached from the device body 70, enabling the handle 10 to be removed for cleaning and replacement, preventing dirt from adhering to the handle 10 and affecting user use. Furthermore, when the handle 10 is not in use, the handle 10 of the electronic device can be stored separately from the device body 70, making the carrying and storage of the electronic device more convenient.
[0030] Specifically, such as Figures 2 to 4 As shown, the handle structure also includes a first locking structure 31 and a second locking structure 32. The first locking structure 31 is disposed on the first mounting member 21, and the second locking structure 32 is disposed on the second mounting member 22. When the first mounting member 21 rotates relative to the second mounting member 22 around the first axis N, the first locking structure 31 and the second locking structure 32 cooperate to lock or unlock the first mounting member 21 in the direction around the first axis N and in the first direction X. The extension direction of the first axis N is parallel to the first direction X.
[0031] It is understood that in this application, the locking or unlocking of the first mounting member 21 and the second mounting member 22 is achieved through the cooperation of the first locking structure 31 and the second locking structure 32, thereby enabling the locking or unlocking of the handle 10 and the equipment body 70. During the rotation of the first mounting member 21 around the first axis N, the first locking structure 31 has a locking position (e.g., Figure 5 and Figure 6 ) and unlock location (e.g. Figure 7 and Figure 8 When installing the handle 10, after aligning the first mounting part 21 and the second mounting part 22, the first mounting part 21 can be rotated around the first axis N, so that the first locking structure 31 moves to the locking position. At this time, the first locking structure 31 and the second locking structure 32 are in a locked state, and the first mounting part 21 and the second mounting part 22 are relatively fixed. The second mounting part 22 can prevent the first mounting part 21 from rotating around the first axis N and can prevent the first mounting part 21 from moving along the first direction X. This can prevent the first mounting part 21 from rotating due to vibration or accidental contact, thereby unlocking the first locking structure 31 and the second locking structure 32. As a result, the handle 10 can be stably installed on the equipment body 70, preventing the handle 10 from falling off the equipment body 70 during daily use.
[0032] When it is necessary to disassemble the handle 10, the first mounting part 21 can be moved by the finger or other tools, so that the first mounting part 21 rotates relative to the second mounting part 22 around the first axis N under the action of external force, so that the first locking structure 31 moves to the unlocked position. At this time, the first locking structure 31 and the second locking structure 32 are in the unlocked state. Then the first mounting part 21 can be moved away from the second mounting part 22 along the first direction X, so that the first mounting part 21 and the second mounting part 22 are separated, and the handle 10 can be disassembled.
[0033] See also Figure 3 and Figure 4 As shown, in some embodiments of this application, the first locking structure 31 includes a first locking member and a second locking member, and the second locking structure 32 includes a third locking member and a fourth locking member. The first locking member and the third locking member cooperate to lock or unlock the first mounting member 21 and the second mounting member 22 in the first direction X; the second locking member and the fourth locking member cooperate to lock or unlock the first mounting member 21 and the second mounting member 22 in the direction around the first axis N.
[0034] The locking and unlocking states of the first and third locking components are synchronized with the locking and unlocking states of the second and fourth locking components. It can be understood that the states of the first and third locking components are the same as those of the second and third locking components, such as... Figure 5 and Figure 6 As shown, when the first mounting member 21 is rotated to engage the first locking member and the third locking member, the second locking member and the fourth locking member are also engaged; Figure 7 and Figure 8 As shown, when the first mounting member 21 is rotated to unlock the first and third locking members, the second and fourth locking members are also unlocked. It can be understood that the first locking member has a first locking position (e.g., ...). Figure 5 and Figure 6 ) and the first unlock position (e.g. Figure 7 and Figure 8 The third locking member has a second locking position (e.g., Figure 5 and Figure 6 ) and the second unlock position (such as Figure 7 and Figure 8 When the first locking structure 31 is in the locked position, the first locking member is in the first locked position and locked with the second locking member, and the third locking member is in the second locked position and locked with the fourth locking member; when the first locking structure 31 is in the unlocked position, the first locking member is in the first unlocked position and unlocked with the second locking member, and the third locking member is in the second unlocked position and unlocked with the fourth locking member.
[0035] It should be noted that in this application, the first locking member and the third locking member form a set of locking components, and the second locking member and the fourth locking member form another set of locking components. The first mounting member 21 is locked or unlocked in the first direction X and in the direction around the first axis N by the cooperation of the two sets of locking components. The two sets of locking components cooperate with each other. Only when both sets of locking components are in the unlocked state can the handle 10 be separated from the equipment body 70. This can improve the installation stability of the handle 10 on the equipment body 70 and prevent the handle 10 from falling off the equipment body 70 during daily use.
[0036] It should also be noted that in other embodiments, a set of locking components can simultaneously achieve locking or unlocking of the first mounting member 21 in the first direction X and in the direction around the first axis N. For example, the first locking structure 31 can be a first magnetic attractor or a second magnetic attractor. When the first locking structure 31 is in the locked position, the first magnetic attractor and the second magnetic attractor are magnetically connected, realizing the locking of the first locking structure 31 and the second locking structure 32. When the first mounting member 21 rotates under the action of external force, the first magnetic attractor and the second magnetic attractor separate, realizing the locking of the first locking structure 31 and the second locking structure 32. Unlocking the second locking structure 32; for example, the first locking structure 31 is an elastic element 432 with a perforation, and the second locking structure 32 is a hook structure. The hook structure passes through the perforation and hooks with the perforation. The inner wall of the perforation elastically abuts against the hook structure, thereby locking the first locking structure 31 and the second locking structure 32. When the first mounting member 21 rotates under the action of external force, the hook structure squeezes through the inner wall of the perforation, causing the elastic element 432 to deform and the size of the perforation to increase. This allows the hook structure to pass smoothly through the perforation along the first direction X, thereby unlocking the first mounting member 21 and the second mounting member 22.
[0037] See also Figure 3 and Figure 4 As shown, in some embodiments, the first locking member and the second locking member are arranged circumferentially along the first mounting member 21, and the third locking member and the fourth locking member are arranged circumferentially along the second mounting member 22. It is understandable that the first mounting member 21 and the second mounting member 22 are arranged along the extension direction of the first axis N. The circumferential direction of the first mounting member 21 and the circumferential direction of the second mounting member 22 are both around the first axis N. Compared with arranging the first locking member and the second locking member along the radial direction of the first mounting member 21 and the third locking member and the fourth locking member along the radial direction of the second mounting member 22, the first mounting member 21 and the second mounting member 22 have less space in the radial direction, which requires increasing the size of the first mounting member 21 and the second mounting member 22 in the radial direction, thus increasing the volume of the first mounting member 21 and the second mounting member 22. However, the first mounting member 21 and the second mounting member 22 have relatively more space in the circumferential direction, which is sufficient to set the first locking structure 31 and the second locking structure 32, without increasing the volume of the first mounting member 21 and the second mounting member 22.
[0038] Furthermore, multiple first locking structures 31 and second locking structures 32 can be provided, and the first locking structures 31 and second locking structures 32 are arranged alternately along the circumference of the first mounting member 21, so that the connection between the first mounting member 21 and the second mounting member 22 is more stable.
[0039] In some embodiments, one of the first locking member and the third locking member is a lock hole 41 and the other is a lock hook 42; the lock hole 41 includes a locking opening 411 and an unlocking opening 412 arranged circumferentially along the first mounting member 21, the locking opening 411 and the unlocking opening 412 are in communication, the lock hook 42 includes a connecting part 421 and a hooking part 422 connected to the connecting part 421, the connecting part 421 passes through the lock hole 41 and can move along the locking opening 411 and the unlocking opening 412, and the hooking part 422 is located outside the lock hole 41. It should be noted that the hook 422 is connected to the connecting part 421 to form a hook-shaped structure. When the first locking member is a lock hole 41, the lock hole 41 is provided on the first mounting member 21 and can penetrate the first mounting member 21 along the first direction X. The hook 42 is provided on the second mounting member 22, the connecting part 421 is connected to the second mounting member 22, and the hook 422 is located on the side of the first mounting member 21 away from the second mounting member 22. When the first locking member is a hook 42, the hook 42 is provided on the first mounting member 21, the connecting part 421 is connected to the first mounting member 21, the hook 422 is located on the side of the second mounting member 22 away from the first mounting member 21, the lock hole 41 is provided on the second mounting member 22, and the lock hole 41 can penetrate the second mounting member 22 along the first direction X.
[0040] Among them, such as Figure 5 and Figure 6 As shown, when the engaging part 422 engages with the locking opening 411, the first locking member and the third locking member are in a locked state; as Figure 7 and Figure 8 As shown, when the engaging part 422 is positioned opposite the unlocking opening 412, the engaging part 422 can move in and out of the locking opening 411 along the first direction X, and the first locking member and the third locking member are in the unlocked state. It can be understood that the radial dimension of the unlocking opening 412 along the first mounting member 21 can be greater than the radial dimension of the locking opening 411 along the first mounting member 21, and the radial dimension of the engaging part 422 along the first mounting member 21 can be greater than the radial dimension of the locking opening 411 along the first mounting member 21, and the radial dimension of the engaging part 422 along the first mounting member 21 is smaller than the radial dimension of the locking opening 411 along the first mounting member 21.
[0041] It should also be noted that, taking the first locking element as the locking hook 42 as an example, when the first mounting part 21 is rotated, the connecting part 421 rotates within the locking hook 42 around the first axis N, thereby causing the hook part 422 to rotate around the first axis N, as shown below. Figure 5 and Figure 6 As shown, when the hook portion 422 rotates to the locking opening 411, since the size of the hook portion 422 is smaller than the size of the locking opening 411, the hook portion 422 engages with the locking opening 411, thereby locking the first mounting member 21 in the first direction X. This prevents the first mounting member 21 from moving away from the second mounting member 22 along the first direction X and separating from the second mounting member 22, thus achieving the installation of the first mounting member 21 and the second mounting member 22; as Figure 7 and Figure 8 As shown, when the hook part 422 rotates to the unlocking opening 412, since the size of the unlocking opening 412 is larger than the size of the hook part 422, the hook part 422 can enter and exit the locking opening 411 along the first direction X, thereby unlocking the first mounting member 21 in the first direction X. At this time, the first mounting member 21 can be moved away from the second mounting member 22 along the first direction X to separate it from the second mounting member 22, thereby disassembling the first mounting member 21 and the second mounting member 22.
[0042] See also Figure 3 and Figure 4 As shown, in some embodiments, one of the second and fourth locking members is a snap-fit member 43, and the other is a groove structure 44. It should be noted that when the second locking member is a snap-fit member 43, the fourth locking member is a groove structure 44; the snap-fit member 43 is disposed on the first mounting member 21, and the groove structure 44 is disposed on the second mounting member 22. Conversely, when the fourth locking member is a snap-fit member 43, the second locking member is a groove structure 44; the snap-fit member 43 is disposed on the second mounting member 22, and the groove structure 44 is disposed on the first mounting member 21.
[0043] When the engaging member 43 engages with the groove structure 44, the second and fourth engaging members are in a locked state; when the engaging member 43 separates from the groove structure 44, the second and fourth engaging members are in an unlocked state.
[0044] It should be noted that, taking the second locking element as the engaging element 43 as an example, when the first mounting part 21 is rotated, the engaging element 43 is driven to rotate around the first axis N, thereby driving the hook part 422 to rotate around the first axis N, as shown below. Figure 5 and Figure 6As shown, when the hook part 422 rotates to engage with the locking member 43 and the groove structure 44, the first mounting member 21 is subjected to rotational resistance in the direction around the first axis N, thereby achieving the locking of the first mounting member 21 in the direction around the first axis N. This can prevent the first mounting member 21 from rotating due to vibration or other factors during daily use, causing the first locking member and the third locking member to unlock, thus making the connection between the lifting device and the equipment body 70 more stable.
[0045] like Figure 7 and Figure 8 As shown, when the hook part 422 rotates to the point where the locking part 43 separates from the groove structure 44, the first mounting part 21 can rotate freely around the first axis N, thereby unlocking the first mounting part 21 in the direction around the first axis N. At this time, the first mounting part 21 can be rotated to the point where the first locking part and the third locking part are unlocked, thereby disassembling the first mounting part 21 and the handle 10.
[0046] In some embodiments, the engaging member 43 includes an elastic member 432, which enables the engaging member 43 to elastically engage with the groove structure 44. When the engaging member 43 is elastically engaged with the groove structure 44, the engaging member 43 elastically abuts against the groove wall surface of the groove structure 44 under the elastic force of the elastic member 432, thereby achieving elastic engagement between the engaging members 43 and the groove structure 44, making the connection between the engaging member 43 and the groove structure 44 tighter, and also preventing the engaging member 43 from jamming with the groove structure 44, causing the first mounting member 21 to be unable to rotate.
[0047] See also Figure 3 and Figure 4 As shown, in some embodiments, the engaging member 43 includes a engaging protrusion 431, and the groove structure 44 includes a first groove 441 and a second groove 442. The second groove 442 and the first groove 441 are arranged at intervals along the circumference of the first mounting member 21, and the second groove 442 extends along the circumference of the first mounting member 21.
[0048] Among them, such as Figure 5 and Figure 6 As shown, when the first locking member and the third locking member are in the locked state, the latching protrusion 431 engages with the first groove 441, so that the second locking member and the fourth locking member are in the locked state; as Figure 7 and Figure 8As shown, when the first locking member and the third locking member are in the unlocked state, the latching protrusion 431 is located in the second groove 442, so that the second locking member and the fourth locking member are in the unlocked state. It can be understood that, taking the first locking member as the hook 42 and the groove structure 44 set on the first mounting member 21 as an example, the latching protrusion 431 is located on the second mounting member 22. When the first mounting member 21 is rotated until the hook portion 422 is opposite to the unlocking opening 412, the latching protrusion 431 is located in the second groove 442. At this time, rotating the first mounting member 21 causes the hook portion 422 to move towards the locking opening 411, and the latching protrusion 431 moves along the second groove 442 within the second groove 442 and passes through the first groove 442. In the gap area between 41 and the second groove 442, when the engaging part 422 moves to engage with the locking opening 411, the latching protrusion 431 moves to engage with the first groove 441. The second groove 442 can provide a pre-expansion space for the latching protrusion 431, reducing the pressure of the latching protrusion 431 on the first mounting member 21 when the latching protrusion 431 moves towards the first groove 441, thereby reducing the friction between the latching protrusion 431 and the first mounting member 21, making the first mounting member 21 rotate more smoothly.
[0049] When the second locking member is a snap-fit member 43, a receiving groove 51 can be provided on the first mounting member 21, and the elastic member 432 can be located in the receiving groove 51. The first end of the elastic member 432 is connected to the first mounting member 21, and the second end of the elastic member 432 is separately provided from the first mounting member 21. A locking protrusion 431 is provided at the second end of the elastic member 432. By setting the elastic member 432 in the receiving groove 51, the gap between the first mounting member 21 and the second mounting member 22 can be reduced, thereby reducing the size of the handle structure in the first direction X. When the second locking member is a slot structure, a receiving groove 51 can be provided on the second mounting member 22, and the elastic member 432 can be located in the receiving groove 51. The first end of the elastic member 432 is connected to the second mounting member 22, and the second end of the elastic member 432 is separately provided from the second mounting member 22. A locking protrusion 431 is provided at the second end of the elastic member 432.
[0050] See also Figure 2 , Figure 6 and Figure 8 As shown, in some embodiments of this application, both ends of the handle 10 are provided with mounting holes 11, and two sets of mounting components 20 are respectively provided with the two mounting holes 11. The first mounting component 21 includes a rotating part 211 and a limiting part 212. The rotating part 211 passes through the mounting hole 11, and the limiting part 212 and the second mounting component 22 are respectively connected to the two ends of the rotating part 211. The first locking structure 31 is provided on the rotating part 211, and the handle 10 can rotate about the first axis N relative to the first mounting component 21 and the second mounting component 22.
[0051] Understandably, after the handle 10 is installed on the device body 70 via the first mounting member 21 and the second mounting member 22, the first locking structure 31 is provided on the side of the rotating part 211 facing the second mounting member 22. The rotating part 11 is detachably connected to the second mounting member 22 via the first locking structure 31. Part of the handle 10 is sandwiched between the second mounting member 22 and the limiting part 212. The handle 10 can rotate relative to the first mounting member 21 and the second mounting member 22, thereby allowing the lifting part to rotate relative to the device body 70. This allows the handle 10 to be rotated when it is not needed, thus reducing the overall size of the electronic device and facilitating its storage. Furthermore, when assembling or disassembling the handle 10, only the first mounting member 21 needs to be rotated, without rotating the handle 10, making the disassembly of the handle 10 more convenient.
[0052] In some embodiments, the periphery of the limiting part 212 is provided with an anti-slip structure 52. The anti-slip structure 52 can be a toothed texture structure. When the user rotates the first mounting part 21, the user can rotate the first mounting part 21 by holding the anti-slip structure 52 with their fingers. The anti-slip structure 52 can increase the friction between the fingers and the limiting part 212, making it more convenient to rotate the first mounting part 21.
[0053] In some embodiments, at least one set of mounting components 20 includes a first mounting member 21 with a mounting groove 213 located on the side of the first mounting member 21 away from the second mounting member 22. The handle structure also includes a button assembly 60 disposed in the mounting groove 213. The button assembly 60 includes an electrical connection portion 61 passing through the first mounting member 21 and the second mounting member 22. The electrical connection portion 61 is used for electrical connection with electronic devices on the device body 70. The button assembly 60 can be pressed to open or close electronic devices such as the display screen on the device body 70. The button assembly 60 can be disassembled and installed with the mounting components 20, making the disassembly and installation of the button assembly 60 more convenient.
[0054] Secondly, based on the aforementioned handle structure, this application also provides an electronic device, such as... Figure 9 and Figure 10 As shown, the electronic device includes a device body 70 and a handle structure as described in any of the above embodiments, with a second mounting member 22 connected to the device body 70. The two ends of the handle structure can be detachably connected to the housing of the device body 70 via two sets of mounting components 20, respectively.
[0055] The second mounting component 22 can be integrally formed with the housing of the equipment body 70, or the second mounting component 22 can be formed separately from the housing of the equipment body 70 and then spliced together by welding, gluing, threaded connection or other methods.
[0056] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this application should be included within the protection scope of this application.
Claims
1. A handle structure, characterized in that, include: Handle with mounting holes; Both the first mounting component and the second mounting component are disposed within the mounting hole; A first locking structure is provided on the first mounting component; The second locking structure is provided on the second mounting component; When the first mounting member rotates relative to the second mounting member about the first axis, the first mounting member and the second mounting member can be locked or unlocked in the direction about the first axis and in the first direction through the cooperation of the first locking structure and the second locking structure, wherein the extension direction of the first axis is parallel to the first direction.
2. The handle structure according to claim 1, characterized in that, The first locking structure includes a first locking member and a second locking member, and the second locking structure includes a third locking member and a fourth locking member; The first locking member cooperates with the third locking member to lock or unlock the first mounting member and the second mounting member in the first direction; The second locking member cooperates with the fourth locking member to achieve locking or unlocking of the first mounting member and the second mounting member in the direction around the first axis. The locking and unlocking states of the first locking member and the third locking member are synchronized with the locking and unlocking states of the second locking member and the fourth locking member.
3. The handle structure according to claim 2, characterized in that, One of the first locking member and the third locking member is a lock hole, and the other is a lock hook; The lock hole includes a locking opening and an unlocking opening arranged circumferentially along the first mounting member, and the locking opening and the unlocking opening are in communication. The lock hook includes a connecting part and a hooking part connected to the connecting part. The connecting part passes through the lock hole and can move along the locking opening and the unlocking opening. The hooking part is located outside the lock hole.
4. The handle structure according to claim 3, characterized in that, When the hooking part engages with the locking opening, the first locking member and the third locking member are in a locked state. When the hook portion is opposite to the unlocking opening, the hook portion can move in and out of the locking opening along the first direction, and the first locking member and the third locking member are in the unlocked state.
5. The handle structure according to claim 2, characterized in that, One of the second locking member and the fourth locking member is a snap-fit member, and the other is a groove structure; When the engaging member engages with the groove structure, the second locking member and the fourth locking member are in a locked state. When the engaging member separates from the groove structure, the second engaging member and the fourth engaging member are in an unlocked state.
6. The handle structure according to claim 5, characterized in that, The engaging member includes an elastic element, which enables the engaging member to elastically engage with the groove structure.
7. The handle structure according to claim 5, characterized in that, The engaging component includes a latching protrusion, and the groove structure includes a first groove and a second groove. The second groove and the first groove are arranged at intervals along the circumference of the first mounting component, and the second groove extends along the circumference of the first mounting component. When the first locking member and the third locking member are in the locked state, the latching protrusion engages with the first groove; when the first locking member and the third locking member are in the unlocked state, the latching protrusion is located in the second groove.
8. The handle structure according to claim 2, characterized in that, The first locking member and the second locking member are arranged circumferentially along the first mounting member, and the third locking member and the fourth locking member are arranged circumferentially along the second mounting member.
9. The handle structure according to claim 1, characterized in that, The first mounting component includes a rotating part and a limiting part. The rotating part passes through the mounting hole, and the limiting part and the second mounting component are respectively connected to the two ends of the rotating part. The first locking structure is disposed on the rotating part, and the handle can rotate about the first axis relative to the first mounting component and the second mounting component.
10. An electronic device, characterized in that, It includes a device body and a handle structure as described in any one of claims 1 to 9, wherein the second mounting member is connected to the device body.