Hanging buckle
By providing the first and second blocking members in the hook, two unlocking operations are required to fully unlock the hook, thus solving the problem of easy mislocking of existing quick-release buckles and achieving a safe and reliable quick-release function.
Patent Information
- Application Number
- CN202422870867.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-22
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2034-11-22
AI Technical Summary
Existing quick-release buckles are prone to mis-locking due to their elastic snap-fit structure, and are unable to effectively prevent the problem of mis-locking.
A hook is designed, which requires two unlocking operations to achieve quick release by setting a first and a second blocking member. The first blocking member moves from a first position to a second position under the action of an external force, and the second member can then move out of the second blocking member relative to the first member and resist the first blocking member. It is fully unlocked only when it further returns to the first position.
It effectively avoids the problem of mis-locking, ensures the accuracy and reliability of the unlocking operation, and improves the user experience.
Smart Images

Figure CN223323088U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of buckles, and in particular relates to a hanging buckle. Background Art
[0002] With rising living standards, the number of photography enthusiasts is increasing. For travel, sightseeing, and other casual photography pursuits, carrying a camera has become a major concern. To give their hands a rest when not shooting, most people use a lanyard to hang their camera around their neck. Lanyards typically utilize quick-release buckles for quick detachment from the camera. Existing quick-release buckles typically utilize a two-piece assembly, requiring pre-installed components on both the camera and strap ends to facilitate quick detachment. These components are typically connected via an elastic snap-fit mechanism, which can easily lead to mis-locking issues after being squeezed. Utility Model Content
[0003] The utility model aims to provide a novel hanging buckle which requires two unlocking operations to realize quick release.
[0004] The above-mentioned objectives are achieved by the following technical solutions.
[0005] The embodiment of the present invention provides a hook, which includes a first component and a second component; the second component is movably arranged on the first component;
[0006] A first blocking member and a second blocking member are provided on the first component. When the first blocking member is in the first position, the second component is blocked by the second blocking member. When the first blocking member is in the second position, the second component can be moved out of the second blocking member relative to the first component and blocked by the first blocking member. When the first blocking member returns to the first position from the second position, the second component can be moved out of the first blocking member relative to the first component.
[0007] In some embodiments, a sliding channel is provided in the first component, and the second component is slidably arranged in the sliding channel;
[0008] When the first blocking member is in the first position, the second blocking member is at least partially located in the sliding channel to resist the second component. When the first blocking member is in the second position, the first blocking member is at least partially located in the sliding channel and the second blocking member is located outside the sliding channel. The second component can move out of the second blocking member relative to the first component and resist the first blocking member. When the first blocking member returns to the first position from the second position, the first blocking member is located outside the sliding channel, and the second component can move out of the first blocking member relative to the first component.
[0009] In some embodiments, the first blocking member and the second blocking member both have elastic deformation properties, and the first blocking member and the second blocking member are arranged on opposite sides of the second component, and a first hole body is provided on the second component. The first blocking member can generate elastic deformation under the action of external force and pass through the first hole body to press the second blocking member in a linked manner; the first blocking member is in the first position when it is normally in a state, and is in the second position when the first blocking member generates elastic deformation and passes through the first hole body to press the second blocking member in a linked manner.
[0010] In some embodiments, the second blocking member protrudes upward on one side close to the second component to form a step body. When the second blocking member is in normal state, the opposite sides of the step body are against the hole walls of the second component corresponding to the opposite sides of the first hole body.
[0011] In some embodiments, a third blocking member is provided on the first blocking member, the third blocking member is provided on a side of the first blocking member close to the second component, and the third blocking member is passed through the first hole body, and the first blocking member presses the second blocking member in linkage with the third blocking member.
[0012] In some embodiments, the first blocking member includes a connecting portion and a pressing portion connected to the connecting portion, the connecting portion is connected to the first component, and the third blocking member is disposed on the pressing portion.
[0013] In some embodiments, a second hole is formed through the first component, and the first blocking member and the second blocking member are both disposed in the second hole.
[0014] In some embodiments, the second component includes a buckling body and a first buckling portion arranged on the buckling body; the buckling body is movably arranged on the first component, and the first buckling portion is driven by the buckling body to be locked to the first component or unlocked from the first component.
[0015] In some embodiments, the first buckling portion is an arc-shaped structure, and the first end of the first buckling portion is connected to the buckling body, and a first locking opening is formed between the second end and the buckling body. The first locking opening is in a locked state when it extends into the first component, and is in an unlocked state when the first locking opening extends out of the first component.
[0016] In some embodiments, the second component further includes a second buckling portion disposed at an end of the buckling body away from the first buckling portion, and the second buckling portion is driven by the buckling body to move to be locked to or unlocked from the first component.
[0017] In some embodiments, the second buckling portion is a square ring body, and the first end of the second buckling portion is connected to the buckling body, and a second locking opening is formed between the second end and the buckling body. When the second locking opening is extended into the first component, it is in a locked state, and when the second locking opening is extended out of the first component, it is in an unlocked state.
[0018] The technical solution provided by the utility model has the following advantages and effects:
[0019] The hook includes a first component and a second component, and the second component is movably arranged on the first component. A first stopper and a second stopper are arranged on the first component. Under normal circumstances, when the first stopper is in the first position, the second component resists the second stopper. At this time, the second component is in a locked state relative to the first component. When unlocking is required, the first stopper can be moved from the first position to the second position under the action of an external force. At this time, the second component can move out of the second stopper relative to the first component and resist the first stopper. This is a preliminary unlocking state. Further, by returning the first stopper from the second position to the first position, the second component can continue to move out of the first stopper relative to the first component, and unlocking is successful at this time. Therefore, the unlocking operation of the hook requires two unlocking operations to achieve unlocking, thereby effectively avoiding the problem of mislocking. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 This is a structural diagram of the hook in a locked state according to an embodiment of the utility model;
[0021] Figure 2 yes Figure 1 Schematic diagram of the exploded structure of the hook;
[0022] Figure 3 This is a structural diagram of a buckle sleeve provided with a protective layer in an embodiment of the utility model;
[0023] Figure 4 yes Figure 1 A schematic diagram of the longitudinal cross-sectional structure of the hook;
[0024] Figure 5 This is a schematic diagram of a state in which the hook of the embodiment of the utility model presses the second blocking member in conjunction with the first blocking member;
[0025] Figure 6 This is a schematic diagram of a state in which the first blocking member of the hook of the embodiment of the utility model is pressed and the second member is moved out of the second blocking member relative to the first member;
[0026] Figure 7 This is a schematic diagram of the state of the hook of the embodiment of the utility model when the first blocking member in the pressed state is released;
[0027] Figure 8 This is a schematic diagram of a state in which the second component of the hook according to an embodiment of the utility model slides further relative to the first component so that the first buckle portion is in an unlocked state;
[0028] Figure 9 This is a schematic diagram of the first blocking member in a pressed state when the hook of the embodiment of the utility model unlocks the second buckle portion;
[0029] Figure 10 It is a schematic cross-sectional view of the structure of the hook of the embodiment of the present invention, in which the second component slides out relative to the first component so that the second buckle portion is in an unlocked state;
[0030] Figure 11 This is a schematic diagram of a state in which the second component of the hook of the embodiment of the present invention slides out relative to the first component so that the second buckle portion is in an unlocked state.
[0031] Description of reference numerals:
[0032] 100. Buckle;
[0033] 11. First component; 111. Second hole body; 112. Through hole; 113. Sliding channel; 12. First blocking member; 121. Third blocking member; 122. Inclined surface; 123. Connecting portion; 124. Pressing portion; 13. Second blocking member; 131. Step body; 132. Connecting end; 133. Free end; 2. Second component; 21. First hole body; 22. Snap-fitting body; 23. First snap-fitting portion; 231. First locking opening; 24. Second snap-fitting portion; 241. Second locking opening; 3. Protective layer. DETAILED DESCRIPTION
[0034] In order to facilitate the understanding of the present invention, specific embodiments of the present invention will be described in more detail below with reference to the accompanying drawings.
[0035] Unless otherwise specified or defined, the "first, second..." used in this article is only used to distinguish names and does not represent a specific quantity or order.
[0036] Unless stated otherwise or defined otherwise, the term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.
[0037] It should be noted that, in this document, “fixed to” or “connected to” may mean directly fixing or connecting to an element, or indirectly fixing or connecting to an element.
[0038] An embodiment of the present invention provides a hanging buckle 100, which includes a first component 11 and a second component 2; the second component 2 is movably arranged on the first component 11; specifically, the second component 2 can be used to connect two devices to be connected into one, for example, the camera end and the strap end can be connected into one, of course, it can also be used to connect other devices that need to be connected into one, and there is no special restriction here.
[0039] A first blocking member 12 and a second blocking member 13 are provided on the first component 11. When the first blocking member 12 is in the first position, the second component 2 is blocked by the second blocking member 13. When the first blocking member 12 is in the second position, the second component 2 can be moved out of the second blocking member 13 relative to the first component 11 and blocked by the first blocking member 12. When the first blocking member 12 returns to the first position from the second position, the second component 2 can be moved out of the first blocking member 12 relative to the first component 11.
[0040] Among them, by setting the first blocking member 12 and the second blocking member 13, under normal circumstances, when the first blocking member 12 is in the first position, the second component 2 is blocked by the second blocking member 13. At this time, the second component 2 is in a fixed state relative to the first component 11, and the positions therebetween are relatively fixed to form a locked state. When unlocking is required, the first blocking member 12 can be moved from the first position to the second position under the action of an external force. At this time, the second component 2 can move out of the second blocking member 13 relative to the first component 11 and block against the first blocking member 12. This is a preliminary unlocking state. Further, by returning the first blocking member 12 from the second position to the first position, the second component 2 can continue to move out of the first blocking member 12 relative to the first component 11, and the unlocking is successful at this time. Therefore, the unlocking operation of the hook 100 requires two unlocking operations to achieve unlocking, thereby effectively avoiding the problem of mislocking.
[0041] In some embodiments, a sliding channel 113 is provided in the first component 11, and the second component 2 is slidably arranged in the sliding channel 113; when the first blocking member 12 is in the first position, the second blocking member 13 is at least partially located in the sliding channel 113 to resist the second component 2; when the first blocking member 12 is in the second position, the first blocking member 12 is at least partially located in the sliding channel 113 and the second blocking member 13 is located outside the sliding channel 113, and the second component 2 can move out of the second blocking member 13 relative to the first component 11 and resist the first blocking member 12; when the first blocking member 12 returns to the first position from the second position, the first blocking member 12 is located outside the sliding channel 113, and the second component 2 can move out of the first blocking member 12 relative to the first component 11.
[0042] In some embodiments, as Figures 1 to 8 As shown, the first blocking member 12 and the second blocking member 13 both have elastic deformation properties, and the first blocking member 12 and the second blocking member 13 are arranged on opposite sides of the second component 2. A first hole body 21 is provided on the second component 2. The first blocking member 12 can generate elastic deformation under the action of external force and pass through the first hole body 21 to press the second blocking member 13 in a linked manner. The first blocking member 12 is in the first position when it is normal, and is in the second position when the first blocking member 12 generates elastic deformation and passes through the first hole body 21 to press the second blocking member 13 in a linked manner.
[0043] Among them, since the first blocking member 12 and the second blocking member 13 both have elastic deformation properties, they can be deformed under the action of an external force and can recover the deformation after the external force is removed. When the first blocking member 12 is in a normal state, the second blocking member 13 is at least partially located in the sliding channel 113 to resist the second component 2, thereby fixing the second component 2 on the first component 11. At this time, the second component 2 is locked to the first component 11, thereby locking the camera end and the strap end together. When unlocking is required, for example, when unlocking the camera end, an external force is applied to the first blocking member 12, and the first blocking member 12 is elastically deformed and linked to press the second blocking member 13, and the strap The second blocking member 13 is deformed to be located outside the sliding channel 113, while the first blocking member 12 is deformed to be located inside the sliding channel 113. At this time, the second component 2 can be moved out of the second blocking member 13 relative to the first component 11 under the action of external force and resist the first blocking member 12. At this time, the second component 2 is in a preliminary unlocked state. The external force of the first blocking member 12 is further removed, and the first blocking member 12 recovers its deformation due to its own elastic deformation performance. At this time, the first blocking member 12 is deformed to be located outside the sliding channel 113. At this time, the second component 2 is further pulled with external force, so that the second component 2 slides further out relative to the first component 11. At this time, it is unlocked. Therefore, the unlocking operation of the hook 100 requires two unlocking operations to achieve unlocking, thereby effectively avoiding the problem of mislocking.
[0044] In some embodiments, as Figure 4As shown, the second blocking member 13 protrudes upward on one side close to the second component 2 to form a step body 131. When the second blocking member 13 is in a normal state, the opposite sides of the step body 131 are arranged against the hole walls of the second component 2 corresponding to the opposite sides of the first hole body 21. The second blocking member 13 is an elastic deformation structure, so the second blocking member 13 will deform relative to the first component 11 under the linkage pressing of the first blocking member 12, wherein the end of the second blocking member 13 connected to the first component 11 is the connecting end 132, and the end of the second blocking member 13 not connected to the first component 11 is the free end 133. The connecting end 132 of the second blocking member 13 is less deformed, and the free end 133 of the second blocking member 13 is more deformed. Therefore, a step body 131 can be formed at both ends of the second component 2 along the extension direction from the connecting end 132 to the free end 133 of the second blocking member 13. There are two unlockable buckles. The buckle that needs to be unlocked frequently, such as the buckle for connecting the camera end, is provided on the side close to the connecting end 132. Therefore, a small force can be applied to make the buckle slide out from the side of the free end 133 to the side of the connecting end 132 relative to the first component 11 to perform the unlocking operation. The buckle that is seldom unlocked, such as the buckle for connecting the shoulder strap, is provided on the side close to the free end 133. A larger force needs to be applied to make the buckle slide out from the side of the connecting end 132 to the side of the free end 133 relative to the first component 11 to perform the unlocking operation. Therefore, by providing the step body 131 on the second blocking member 13, the step body 131 can be switched from a blocking state against the second component 2 to a staggered state under the linkage pressure of the first blocking member 12, thereby fixing the second component 2 or releasing the second component 2, so that the unlocking operation can be performed. It should be noted that, for the buckle that is seldom unlocked, in order to ensure a larger unlocking force and smooth unlocking, such as Figure 9 As shown, the side wall of the step 131 of the second blocking member 13 near the connection end 132 can be configured as a vertical wall structure, and the top bend of the side wall can be chamfered to facilitate unlocking. Furthermore, in other embodiments, the side wall of the step 131 of the second blocking member 13 near the connection end 132 can also be configured as an inclined wall that slopes toward the free end 133. The greater the inclination angle, the smaller the unlocking force required.
[0045] Furthermore, if Figures 4 to 8 As shown, the side wall of the step 131 near the free end 133 of the second blocking member 13 is flush with the side wall of the second blocking member 13, ensuring smooth sliding of the second component 2 from the side of the free end 133 to the side of the connecting end 132 relative to the first component 11 for unlocking. Specifically, the second blocking member 13 can be a rectangular plate structure.
[0046] In some embodiments, as Figure 2 、 Figures 4 to 8As shown, the first blocking member 12 is provided with a third blocking member 121. The third blocking member 121 is provided on a side of the first blocking member 12 close to the second component 2 and is passed through the first hole 21. The first blocking member 12 is linked to press the second blocking member 13 through the third blocking member 121. Since the third blocking member 121 is provided on the first blocking member 12 and passed through the first hole 21, the second blocking member 13 can be deformed to switch states without applying a strong pressure on the first blocking member 12, thereby improving the user experience. The third blocking member 121 can also provide a further blocking effect. The first blocking member 12 recovers its deformation due to its own elastic deformation properties, but the third blocking member 121 continues to block the movement of the second component 2. It is necessary to continue to use external force to pull the second component 2 and squeeze the third blocking member 121 to deform the first blocking member 12 out of the first hole 21, so that the second component 2 can slide out of the first component 11 and unlock.
[0047] In some embodiments, as Figure 4 As shown, the third stopper 121 is a protrusion disposed on the side of the first stopper 12 near the second component 2, and the side surface of the protrusion is an inclined surface 122. The inclination of the protrusion can be set according to actual needs and is not particularly limited here. The structure of the protruding inclined surface 122 enables the second component 2 to slide smoothly relative to the third stopper 121 with a small external force, causing the first stopper 12 to deform and unlock, thereby improving the user experience. Of course, in other embodiments, the side surface of the protrusion can also be a vertical surface structure, which is not particularly limited here.
[0048] In some embodiments, as Figure 2 As shown, the first blocking member 12 includes a connecting portion 123 and a pressing portion 124 connected to the connecting portion 123. The connecting portion 123 is connected to the first component 11, and the third blocking member 121 is disposed on the pressing portion 124. The pressing portion 124 has a greater deformation range. By providing a protrusion on the pressing portion 124, the first blocking member 12 can be deformed by pressing the pressing portion 124 with a relatively small force, thereby driving the third blocking member 121 to press the second blocking member 13 downward or restore it to its original shape. Specifically, the connecting portion 123 is a long strip-shaped plate, and the pressing portion 124 is a cylindrical pressing plate.
[0049] In some embodiments, as Figure 2As shown, the first component 11 is provided with a second hole 111 extending therethrough, wherein the first component 11 is provided with the second hole 111 extending therethrough in the vertical direction, and the first blocking member 12 and the second blocking member 13 are both arranged at the second hole 111, so that a deformation accommodating space for the first blocking member 12 and the second blocking member 13 is formed in the first component 11, so that the first blocking member 12 and the second blocking member 13 can directly act on the second component 2 in the first component 11 to unlock or lock it.
[0050] In some embodiments, as Figure 1 and Figure 2 As shown, the second component 2 includes a buckling body 22 and a first buckling portion 23 provided on the buckling body 22; the buckling body 22 is movably provided through the first component 11, and the first buckling portion 23 is driven by the buckling body 22 to be locked to the first component 11 or unlocked from the first component 11. The first buckling portion 23 is used to buckle with an external device, such as a camera. In the locked state, the first buckling portion 23 is locked to the first component 11, and the camera end can be locked to the hook 100 through the first buckle 23. When unlocking is required, an external force acts on the second component 2 to move relative to the first component 11, driving the first buckling portion 23 to unlock from the first component 11, thereby unlocking the camera end from the first buckle 23 and allowing the camera end to be detached from the hook 100 for use.
[0051] Specifically, the first fastening portion 23 is an arc-shaped structure, and the first end of the first fastening portion 23 is connected to the fastening body 22, and a first locking opening 231 is formed between the second end and the fastening body 22. When the first locking opening 231 extends into the first component 11, it is in a locked state, and when the first locking opening 231 extends out of the first component 11, it is in an unlocked state. Specifically, a first locking groove is provided on a side of the first component 11 corresponding to the first locking opening 231. In the locked state, the first locking opening 231 of the first fastening portion 23 is located within the first locking groove of the first component 11, thereby forming a closed loop structure of the first fastening portion 23, capable of fastening an external device, such as a camera, to the closed loop structure. When unlocking is required, an external force acts on the second component 2 to move relative to the first component 11, driving the first locking opening 231 of the first fastening portion 23 to be exposed in the first locking groove of the first component 11, thereby forming a gap in the first fastening portion 23 to facilitate the assembly or detachment of an external device, such as a camera. When the first buckle portion 23 is used to connect to the camera end, since unlocking is required more frequently, the first buckle portion 23 is disposed on a side of the second blocking member 13 close to the connecting end 132 .
[0052] In some embodiments, as Figure 1 、 Figure 2 、 Figures 9 to 11 As shown, the second component 2 further includes a second fastening portion 24 provided at an end of the fastening body 22 away from the first fastening portion 23. The second fastening portion 24 is driven by the fastening body 22 to be locked to the first component 11 or unlocked from the first component 11. The second fastening portion 24 is used to fasten with an external device, such as a shoulder strap. In the locked state, the second fastening portion 24 is locked to the first component 11, and the shoulder strap can be locked to the hook 100 through the second fastening portion 24. When unlocking is required, an external force acts on the second component 2 to move in the opposite direction relative to the first component 11, driving the second fastening portion 24 to unlock from the first component 11, thereby unlocking the shoulder strap end from the second fastening portion 24 and allowing the shoulder strap end to be detached from the hook 100 for use.
[0053] By providing the first and second fastening portions 23, 24 at opposite ends of the fastening body 22, the hook 100 forms a dual-end quick-release structure, enabling both the camera end and the strap end to be detachable, greatly expanding its range of uses. Specifically, for ease of understanding, when the first and second fastening portions 23, 24 are provided at opposite ends of the fastening body 22, the unlocking steps are as follows:
[0054] When the camera end needs to be unlocked, an external force acts on the first blocking member 12, the first blocking member 12 generates elastic deformation and acts on the second blocking member 13, driving the step body 131 of the second blocking member 13 to switch from a blocking state to a staggered state relative to the second component 2 to release the second component 2. At this time, the second component 2 can slide out relative to the first component 11 toward the first buckle portion 23 under the action of the external force, wherein since the first blocking member 12 passes through the first hole 21 of the second component 2 in the deformed state, the second component 2 is relatively loose. When the second component 2 slides out to a certain distance, the wall of the first hole 21 thereof will abut against the first blocking member 12. At this time, the second component 2 is not unlocked. The external force of the first blocking member 12 is further removed, and the first blocking member 12 recovers its deformation under the action of its own elastic deformation performance. At this time, the external force is continued to be used to pull the second component 2 to squeeze the first blocking member 12, so that the second component 2 slides further relative to the first component 11. Only then is it in the unlocked state. Therefore, the unlocking operation on the camera end requires two unlocking operations to unlock relative to the first component 11, thereby effectively avoiding the problem of mislocking. Similarly, when the shoulder strap end is unlocked, an external force acts on the first blocking member 12, causing the first blocking member 12 to produce elastic deformation and act on the second blocking member 13, driving the step body 131 of the second blocking member 13 to switch from a blocking state to a partially staggered release state relative to the second component 2. Under the action of external force, the second component 2 slides out relative to the first component 11 toward the second buckle 24 until it abuts against the third blocking member 121 and is in an unlocking operation. At this time, the third blocking member 121 limits the sliding out state of the second component 2 to prevent the second component 2 from separating from the first component 11.
[0055] Specifically, the second fastening portion 24 is a square ring, and the first end of the second fastening portion 24 is connected to the fastening body 22, with a second locking opening 241 formed between the second end and the fastening body 22. When the second locking opening 241 is inserted into the first component 11, the fastening is in a locked state, and when the second locking opening 241 is extended out of the first component 11, the fastening is in an unlocked state. A second locking groove is provided on a side of the first component 11 corresponding to the second locking opening 241. In the locked state, the second locking opening 241 of the second fastening portion 24 is located within the second locking groove of the first component 11, thereby forming a closed loop structure for fastening an external device, such as a shoulder strap, to the closed loop structure. When unlocking is required, an external force acts on the second component 2 to move relative to the first component 11, causing the second locking opening 241 of the second fastening portion 24 to be exposed in the second locking groove of the first component 11, thereby forming a gap in the second fastening portion 24 to facilitate the assembly or detachment of an external device, such as a shoulder strap end. When the second buckle portion 24 is used to connect the shoulder strap, since the frequency of unlocking is low, the second buckle portion 24 is disposed on a side of the second blocking member 13 close to the free end 133 .
[0056] In some embodiments, as Figure 2 As shown, the buckle body 22 forms an inclined wall structure corresponding to the second locking opening 241 , so that the second locking opening 241 can be formed between the second buckle portion 24 and the buckle body 22 .
[0057] In some embodiments, as Figure 11 As shown, the second locking groove is formed on one side of the first component 11, and a through hole 112 is formed on the side of the first component 11 corresponding to the second locking groove, which is connected to the second locking groove. Since the second buckle portion 24 is used to assemble the shoulder strap end, the width of the second buckle portion 24 should be kept large to accommodate the width of the shoulder strap end. Therefore, in this embodiment, by forming the through hole 112 on the side of the first component 11 corresponding to the second locking groove, when the second buckle portion 24 is inserted into the second locking groove, the side of the second buckle portion 24 can be flush with the side of the first component 11, without increasing the width of the first component 11 to cover the second buckle portion 24, thereby reducing the width of the first component 11 and the overall width.
[0058] In some embodiments, the depth of the first locking groove is greater than the length of the first buckling portion 23, so that the second component 2 can move toward the second buckling portion 24, and the first locking groove has enough movable space for the first buckling portion 23 to continue to be inserted.
[0059] In some embodiments, the depth of the second locking groove is greater than the length of the second buckling portion 24, so that the second component 2 can move toward the first buckling portion 23, and the second locking groove has enough movable space for the second buckling portion 24 to continue to be inserted.
[0060] In some embodiments, the first component 11 is a plastic housing, and the second component 2 is metal, meaning that the entire load-bearing portion of the second component 2 is made of metal. By slidably unlocking the second component 2 within the first component 11, the thickness of the structure can be reduced, preventing wear and tear on the camera after installation. A soft protective layer 3 can also be provided on the exterior of the first component 11 to provide a protective effect, enhance the structural aesthetics, and accommodate deformations of the first and second stoppers 12, 13.
[0061] The above embodiments are not exhaustive of the present invention, and there may be many other embodiments not listed. Any replacements and improvements made without violating the concept of the present invention are within the scope of protection of the present invention.
Claims
1. Hanging buckle, characterized in that: The hook comprises a first component and a second component; the second component is movably arranged on the first component; A first blocking member and a second blocking member are provided on the first component. When the first blocking member is in the first position, the second component is blocked by the second blocking member. When the first blocking member is in the second position, the second component can be moved out of the second blocking member relative to the first component and blocked by the first blocking member. When the first blocking member returns to the first position from the second position, the second component can be moved out of the first blocking member relative to the first component.
2. The hanging buckle according to claim 1, characterized in that: A sliding channel is provided in the first component, and the second component is slidably provided in the sliding channel; when the first blocking member is in the first position, the second blocking member is at least partially located in the sliding channel to resist the second component; when the first blocking member is in the second position, the first blocking member is at least partially located in the sliding channel and the second blocking member is located outside the sliding channel; when the first blocking member returns to the first position from the second position, the first blocking member is located outside the sliding channel.
3. The hanging buckle according to claim 2, characterized in that: Both the first blocking member and the second blocking member have elastic deformation properties, and the first blocking member and the second blocking member are arranged on opposite sides of the second component. A first hole body is provided on the second component. The first blocking member can generate elastic deformation under the action of external force and pass through the first hole body to press the second blocking member in a linked manner; the first blocking member is in the first position when it is normally located, and is in the second position when the first blocking member generates elastic deformation and passes through the first hole body to press the second blocking member in a linked manner.
4. The hanging buckle according to claim 3, characterized in that: The second blocking member has one side close to the second component that protrudes upward to form a step body. When the second blocking member is in a normal state, opposite sides of the step body abut against the hole walls of the second component corresponding to opposite sides of the first hole body.
5. The hanging buckle according to claim 3, characterized in that: The first blocking member is provided with a third blocking member, which is provided on a side of the first blocking member close to the second component and passes through the first hole. The first blocking member presses the second blocking member in linkage with the third blocking member.
6. The hanging buckle according to claim 5, characterized in that: The first blocking member includes a connecting portion and a pressing portion connected to the connecting portion, the connecting portion is connected to the first component, and the third blocking member is disposed on the pressing portion.
7. The hanging buckle according to any one of claims 1 to 6, characterized in that: The second component includes a buckling body and a first buckling portion arranged on the buckling body; the buckling body is movably arranged on the first component, and the first buckling portion is driven by the buckling body to move to be locked to the first component or unlocked from the first component.
8. The hanging buckle according to claim 7, characterized in that: The first buckling portion is an arc-shaped structure, and the first end of the first buckling portion is connected to the buckling body, and a first locking opening is formed between the second end and the buckling body. The first locking opening is in a locked state when it extends into the first component, and is in an unlocked state when the first locking opening extends out of the first component.
9. The hanging buckle according to claim 7, characterized in that: The second component further includes a second buckling portion disposed at one end of the buckling body away from the first buckling portion, and the second buckling portion is driven by the buckling body to move to be locked to the first component or unlocked from the first component.
10. The hanging buckle according to claim 9, characterized in that: The second buckling portion is a square ring body, and the first end of the second buckling portion is connected to the buckling body, and a second locking opening is formed between the second end and the buckling body. When the second locking opening is extended into the first component, it is in a locked state, and when the second locking opening is extended out of the first component, it is in an unlocked state.