Quick release structure
By using a quick-release snap-fit mechanism that engages with the slot, the problem of difficult installation and removal of small antennas or satellite signal receiving panels in existing technologies is solved, enabling a fast and convenient installation and removal process.
Patent Information
- Application Number
- CN202521283051.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-23
- Publication Date
- 2026-03-03
- Estimated Expiration
- 2035-06-23
AI Technical Summary
The disassembly and assembly process of small and medium-sized antennas or satellite signal receiving panels in the existing technology is difficult and time-consuming, requires the use of specific tools, and affects portability.
The quick-release structure includes a connecting component and a locking element. The locking element engages or disengages with the mounting slot, enabling quick fixing and disassembly of the connecting component. The connecting component includes a fixing end and a locking end, with the locking element located on the locking end.
It enables quick assembly and disassembly of connecting components without the need for tools, improving portability and ease of operation.
Smart Images

Figure CN223965196U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of communication technology, and in particular to a quick-release structure. Background Technology
[0002] Small antennas or satellite signal receiving panels are typically mounted on supports such as vehicles, outdoors, rooftops, and ship masts using connecting components. The antenna itself or the satellite signal receiving panel is referred to as the supported object. The supported object has mounting hardware (or the supported object itself serves as the mounting hardware), and it may have mounting slots adapted to the connecting components. The structure of the mounting slots is shown in the attached diagram. Figure 1 As shown, the mounting component has a bottom wall and a side wall forming a mounting groove. The side wall is formed on the bottom wall and a fixing edge is provided on the side wall. The mounting groove has an open side, and the connecting component can enter or leave the mounting groove from the open side.
[0003] Considering packaging costs and portability, the connecting component and the mounting hardware are designed as two separate products. During use, users need to assemble the connecting component with the mounting hardware. To ensure reliable connection, a locking mechanism is also required to secure the connecting component to the mounting hardware. This necessitates the use of specific tools, such as screwdrivers, wrenches, and hammers, for assembly and disassembly. This inconvenience also reduces portability. Utility Model Content
[0004] In view of this, the present invention provides a quick-release structure to solve the problem of difficult or time-consuming disassembly and assembly processes in the prior art.
[0005] To achieve one, some, or all of the above objectives, or other objectives, this utility model proposes:
[0006] A quick-release structure is suitable for mounting components with mounting grooves, wherein the mounting component has a bottom wall and side walls forming the mounting groove, and the bottom wall has a locking groove. The quick-release structure includes:
[0007] A connecting assembly is detachably installed in a mounting slot, wherein the connecting assembly includes a fixed end and a snap-fit end, the fixed end abutting against the side wall of the mounting slot, and the snap-fit end connecting to the fixed end;
[0008] The engaging component is located on the engaging end and can engage or disengage with the slot on the bottom wall.
[0009] Implementing the embodiments of this utility model will have the following beneficial effects:
[0010] With the aforementioned quick-release structure, the user can push the connecting component into the mounting slot and engage the locking mechanism. The side wall and the locking mechanism together restrict the planar movement of the connecting component on the bottom wall, thus securing the component. To remove the connecting component, simply release the locking mechanism from the slot and pull the component out of the mounting slot, allowing for quick assembly and disassembly. Attached Figure Description
[0011] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0012] Figure 1 Schematic diagram of the mounting slot structure for some mounting components Figure 1 ;
[0013] Figure 2 Schematic diagram of the mounting slot structure for some mounting components Figure 2 ;
[0014] Figure 3 A schematic diagram of the overall structure of one embodiment Figure 1 The second connector is shown covering the receiving cavity;
[0015] Figure 4 A schematic diagram of the overall structure of one embodiment Figure 2 The diagram shows the second connector opening the receiving cavity;
[0016] Figure 5 This is a schematic diagram of one embodiment where the second connector is used as a support.
[0017] Figure 6 Schematic diagram of an explosive assembly structure according to one embodiment Figure 1 ;
[0018] Figure 7 Schematic diagram of an explosive assembly structure according to one embodiment Figure 2 ;
[0019] Figure 8 This is a cross-sectional structural schematic diagram of one embodiment, showing the engaging end being engaged in the slot via a locking platform;
[0020] Figure 9 for Figure 8 Enlarged view of point A in the middle;
[0021] Figure 10A schematic diagram of the connection component structure in one embodiment. Figure 1 ;
[0022] Figure 11 A schematic diagram of the connection component structure in one embodiment. Figure 2 ;
[0023] Figure 12 A schematic diagram of the connection structure between the engaging member and the engaging end in another embodiment;
[0024] Figure 13 This is a schematic diagram of a connection component and its installation in a mounting slot, as shown in other embodiments.
[0025] Figure 14 This is a schematic diagram illustrating the process of installing the first connector into the mounting slot in another embodiment;
[0026] Figure 15 This is a schematic diagram of the connection component structure for other embodiments;
[0027] Figure 16 This is a schematic diagram of the structure of the first connector in another embodiment;
[0028] Figure 17 This is a schematic diagram of an embodiment connected with an additional support member;
[0029] Figure 18 This is a schematic diagram illustrating the use of additional support members for support in one embodiment;
[0030] Figure 19 This is a schematic diagram showing an additional support member provided on one side of the front of the mounting component in one embodiment;
[0031] Figure 20 This is a schematic diagram showing, in one embodiment, a portion of the connecting part facing the front of the mounting component;
[0032] Figure 21 This is a schematic diagram of the structure of the housing with connecting pieces in one embodiment;
[0033] Figure 22 This is a schematic diagram illustrating the use of the storage component in one embodiment;
[0034] Figure 23 This is a schematic diagram of the connection component being connected to the support in another embodiment.
[0035] in:
[0036] 1-Installation component; 100-Installation slot; 101-Front side; 102-Back side; 10-Side wall; 11-Bottom wall; 12-Positioning wall; 13-Fixing edge; 14-Limiting wall; 15-Open side; 110-Card slot; 141-Connecting post; 1411-Wire passage;
[0037] 2-Connecting assembly; 21-First connector; 22-Second connector; 23-Fixed end; 24-Engaging end; 25-Connecting part; 26-Extension; 27-Handle; 201-The side of the connecting assembly away from the mounting part; 211-Receiving cavity; 221-Rotating shaft; 231-Front abutment end; 232-Abutting end; 241-Drive part; 242-Bottom surface of the engaging end; 2311-Receiving opening; 2312-Shaft hole; 2313-Top surface of the front abutment end; 2321-Connecting rod; 2322-Abutting edge; 23211-Front end of the connecting rod; 200-Clearing space;
[0038] 3-Card assembly; 31-Card platform;
[0039] 4-The object being supported;
[0040] 5-Supports;
[0041] 6-Wire;
[0042] 7-Magnetic attraction component; 71-First magnetic component; 72-Second magnetic component;
[0043] 8-Additional support components; 81-Mounting section;
[0044] 9-Shell sleeve; 91-Connecting piece; 92-Through hole;
[0045] 9a-Containment Component. Detailed Implementation
[0046] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains; the terminology used herein in the specification is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention; the terms "comprising" and "having," and any variations thereof, in the specification, claims, and accompanying drawings of this invention are intended to cover non-exclusive inclusion. The terms "first," "second," etc., in the specification, claims, or accompanying drawings of this invention are used to distinguish different objects, not to describe a particular order.
[0047] In this document, the term "embodiment" means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of the present invention. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.
[0048] To enable those skilled in the art to better understand the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings.
[0049] See appendix Figures 1 to 23 This utility model provides a quick-release structure, which is suitable for a mounting component 1 having a mounting groove 100, wherein the structure of the mounting groove 100 is as shown in the attached figure. Figure 1 As shown, the mounting component 1 has a bottom wall 11 and a side wall 10 that constitute the mounting groove 100. The side wall 10 is formed on the bottom wall 11 and a fixing edge 13 is provided on the side wall 10. The bottom wall 11 has at least one slot 110.
[0050] Among them, the mounting component 1 can be integrated onto the supported object 4, or the mounting component 1 can be the supported object 4 itself, as shown in the attached figure. Figure 1 , 6 As shown in Figure 13; or, the mounting component 1 may be manufactured as a separate item and used to be mounted onto the supported object 4. The following embodiments are described with the mounting component 1 serving as the supported object 4.
[0051] Specifically, the side wall 10 includes two positioning walls 12, each with a fixing edge 13, and the two positioning walls 12 have an included angle, as shown in the attached figure. Figure 2 The included angle α shown is given. The bottom wall 11 connects to two positioning walls 12, and at least one slot 110 is provided in the bottom wall 11. The fixing edge 13 is located on the positioning wall 12 away from the bottom wall 11 and extends inward toward the mounting groove 100.
[0052] The quick-release structure includes a connecting component 2 and a locking component 3. The connecting component 2 is detachably installed in the mounting groove 100 and is used to support or connect to the support 5. The connecting component 2 includes a fixed end 23 and a locking end 24. The fixed end 23 abuts against the two positioning walls 12 and the corresponding fixing edges 13 of the mounting groove 100, and the locking end 24 is connected to the fixed end 23. The locking component 3 is disposed on the locking end 24 and can engage or disengage with the locking groove 110 on the bottom wall 11.
[0053] For example, attached Figure 1 The two card slots 110 shown are, for example, attached Figure 6 The four card slots 110 shown can be used, and even more card slots 110 can be provided. The number of card holders 3 can be set to only one or according to the number of card slots 110, so as to flexibly design the usage position of the card holders 3.
[0054] See attached Figure 10 , 1115, 16. The connecting assembly 2 includes a first connecting member 21 and a second connecting member 22. A fixed end 23 and a snap-fit end 24 are formed on the first connecting member 21. The first connecting member 21 is used to be installed into the mounting groove 100. The second connecting member 22 is installed on the first connecting member 21 and is used to support or connect to the support 5. (See attached diagram) Figure 5 As shown, the second connector 22 itself serves as a support; as attached Figure 23 As shown, the second connector 22 is mounted on the support 5.
[0055] In some embodiments, as shown in the appendix Figure 12 As shown, the engaging member 3 is movably or detachably mounted on the engaging end 24. At least part of the engaging member 3 protrudes from the side of the engaging end 24 facing the bottom wall 11, thus forming a locking platform 31. The user can operate the engaging member 3 to engage or disengage from the locking slot 110. For example, threads are provided on the engaging member 3 so that it is threadedly connected to the engaging end 24. Twisting the engaging member 3 can change the height of the locking platform 31 relative to the bottom surface 242 of the engaging end 24, thereby allowing the locking platform 31 to extend into or disengage from the locking slot 110.
[0056] In other embodiments, see Appendix Figure 8 , 9 11, 16, The locking component 3 is a locking platform 31 integrally formed and set on the locking end 24.
[0057] Regarding the first connector 21, specifically, the first connector 21 is detachably installed in the mounting groove 100, specifically fixed to the mounting groove 100 by a snap-fit method. The fixed end 23 includes two abutment ends 232, which are arranged corresponding to the two positioning walls 12 and are symmetrical to each other. The engaging end 24 connects the two abutment ends 232 and is elastically deformable. The engaging member 3 protrudes at least partially from the side of the engaging end 24 facing the bottom wall 11, thereby forming a locking platform 31. A driving part 241 is provided on the engaging end 24, which can drive the engaging end 24 to elastically deform upward. The deformation of the engaging end 24 drives the engaging member 3 to engage or disengage from the locking groove 110 along the deformation direction of the engaging end 24. That is, the engaging member 3 engages or disengages from the locking groove 110 in a direction approximately perpendicular to the bottom wall 11.
[0058] When the first connector 21 needs to be installed onto the mounting component 1, the first connector 21 can be placed into the mounting groove 100 and pushed towards the intersection of the two positioning walls 12 or the intersection of their extended surfaces until the two abutting ends 232 abut against the two positioning walls 12 respectively. Then, the locking platform 31 can just extend into the locking groove 110 and achieve locking. The abutting ends 232 also abut against the two fixing edges 13, and the locking end 24 abuts against the bottom wall 11. When the two abutting ends 232 abut against the two positioning walls 12 respectively, the two positioning walls 12 are used to limit the first connector 21 from sliding forward and to limit the first connector 21 from sliding to the left or backward. The locking platform 31 and the locking groove 110 are used to limit the backward movement of the first connector 21. The cooperation of the two fixing edges 13 and the bottom wall 11 is used to limit the vertical movement of the first connector 21 and prevent the first connector 21 from detaching from the mounting groove 100 upward. Therefore, when the locking platform 31 is inserted into the locking slot 110, the movement of the first connecting member 21 in six directions (front, back, left, right, up, and down) is restricted, thus completely fixing the first connecting member 21. At this time, the support 5 is installed on the first connecting member 21 to support the mounting member 1.
[0059] See appendix Figure 14 Since the locking platform 31 protrudes from the bottom surface 242 of the engaging end 24, during the sliding process of the first connecting member 21, if the locking platform 31 has not yet moved to the position of the slot 110, the locking platform 31 slides against the bottom wall 11, causing the engaging end 24 to be in a tilted state. Consequently, the abutting end 232 and the fixing edge 13 are no longer flush, meaning that the abutting end 232 and the fixing edge 13 are in line contact or point contact. When the top of the abutting end 232 contacts the fixing edge 13 and continues to slide, the fixing edge 13 applies downward pressure to the abutting end 232, while the bottom wall 11 applies upward pressure to the locking platform 31, causing the engaging end 24 to undergo elastic deformation. Until the locking platform 31 moves above the position of the slot 110, the elastic deformation of the engaging end 24 returns to its original state, driving the locking platform 31 to extend into the slot 110, completing the engagement of the locking platform 31 and the slot 110.
[0060] If it is necessary to remove the first connector 21 from the mounting part 1, the user can lift the drive part 241 to make the engaging end 24 elastically deform upward, and the locking platform 31 will be lifted and disengaged from the locking groove 110, thereby releasing its restriction on the backward movement of the first connector 21. The user can then slide and pull out the first connector 21 along the mounting groove 100, so that the first connector 21 is disengaged from the fixing edge 13.
[0061] Therefore, the quick-release structure allows for rapid connection and disassembly, and the connection structure is reliable and stable. It allows users to quickly install the supported object 4 onto the supported object 5. The disassembly and installation process between the mounting part 1 and the first connecting part 21 does not require the use of tools. For the supported object 4, which needs to be disassembled frequently, the reinstallation process is very convenient and quick.
[0062] Specifically, considering durability, the first connector 21 can be made of metal, such as aluminum alloy or iron. Alternatively, to reduce the difficulty for the user to lift the drive unit 241, the first connector 21 can be made of plastic. Furthermore, to facilitate the user in lifting the drive unit 241, in this embodiment, the drive unit 241 is arched, forming a clearance space 200 between the drive unit 241 and the bottom wall 11. The user can insert their fingers into the clearance space 200, making it easier to apply force to lift the drive unit 241.
[0063] Furthermore, the fixed end 23 also includes a front abutment end 231 disposed opposite to the engaging end 24, and the front abutment end 231 is also connected to the two abutment ends 232. The side wall 10 also includes a limiting wall 14, which is located at the intersection of the two positioning walls 12 and connects the two positioning walls 12. When the two abutment ends 232 abut against the two positioning walls 12 respectively, the front abutment end 231 abuts against the limiting wall 14. In this embodiment, the limiting wall 14 restricts the forward movement of the first connector 21.
[0064] In addition, as attached Figure 6 , 7 As shown in Figures 15 and 16, the mounting component 1 has a connecting post 141 at the limiting wall 14. A through wire passage 1411 is opened inside the connecting post 141, and a receiving opening 2311 is correspondingly provided at the front end 231 for the connecting post 141 to pass through. That is, a wire 6 can be inserted into the wire passage 1411 after passing through the receiving cavity 211 and the receiving opening 2311.
[0065] Further, see appendix. Figure 10 and 15 The first connector 21 is arranged in a ring shape, making the engaging end 24 a flat plate shape, which reduces the difficulty of external force driving the engaging end 24 to elastically deform. Specifically, in this embodiment, the front abutment end 231, the two abutment ends 232 and the engaging end 24 are assembled together to form a ring structure.
[0066] In addition, the two fixed edges 13 extend to the top of the limiting wall 14 and connect with each other, so that the front abutment 231 also abuts against the fixed edges 13, thereby increasing the contact area between the first connector 21 and the fixed edges 13 and strengthening the connection stability between the first connector 21 and the mounting member 1.
[0067] Furthermore, to improve the engagement strength between the card holder 31 and the card slot 110, in this embodiment, as shown in the attached... Figure 11 and 16 As shown, the engaging end 24 is provided with two engaging platforms 31, which are arranged mirror-symmetrically with respect to the driving part 241. The bottom wall 11 is provided with two corresponding slots 110, and the two engaging platforms 31 can engage with the two slots 110 respectively. Increasing the number of engaging platforms 31 improves the engagement strength between the first connecting member 21 and the mounting member 1. Since the two engaging platforms 31 are located on opposite sides of the driving part 241, when the driving part 241 is lifted, both engaging platforms 31 can be simultaneously disengaged from the slots 110.
[0068] According to the principle of interaction of forces, when the fixed edge 13 applies pressure to the abutting end 232, the fixed edge 13 will experience a reaction force from the abutting end 232. Therefore, both the fixed edge 13 and the abutting end 232 will inevitably experience a certain degree of elastic deformation. If the thickness of the abutting end 232 at the point of contact with the fixed edge 13 is too large, the deformation during contact will be concentrated on the fixed edge 13. If the fixed edge 13 undergoes repeated large-scale deformations, it is prone to breakage. In this embodiment, to reduce the deformation of the fixing edge 13, the abutting end 232 includes a connecting rod 2321 and an abutting edge 2322. Both the front abutting end 231 and the engaging end 24 are connected to two connecting rods 2321. The abutting edge 2322 is disposed on the connecting rod 2321 and extends towards the positioning wall 12. The thickness of the abutting edge 2322 is thinner than that of the connecting rod 2321. The abutting edge 2322 can be located at the top of the connecting rod 2321 or in the middle of the side wall of the connecting rod 2321, as shown in the attached figure. Figure 15 and 16 As shown, the abutment flange 2322 is located at the top of the connecting rod 2321, as per the attached diagram. Figure 10 and 11 The abutment edge 2322 is located in the middle of the side wall of the connecting rod 2321. Therefore, in this embodiment, two abutment edges 2322 abut against the two positioning walls 12, and when the two abutment edges 2322 abut against the two positioning walls 12 respectively, they also abut against the two fixing edges 13 respectively. During the sliding installation of the first connecting member 21, the abutment edges 2322 and the fixing edges 13 interact. The thickness of the abutment edges 2322 is comparable to the thickness of the fixing edges 13, and the deformation generated during their interaction is evenly distributed between them, thus reducing the deformation amplitude of the fixing edges 13. (See attached diagram) Figure 15 and 16 As shown, the front end 23211 of the connecting rod 2321 is connected to the front abutment end 231. The front end 23211 bends outward toward the outer surface of the positioning wall 12, which can reduce the sharpness of the abutment edge 2322 at the front abutment end 231.
[0069] Furthermore, when it is necessary to remove the first connector 21 from the mounting part 1, the user only needs to drive the flat engaging end 24 to elastically deform upwards, requiring less pulling force from the user on the drive part 241. In addition, during the elastic deformation of the engaging end 24, not only does the engaging end 24 itself have an elastic force that tends to return to its original shape, but the two connecting rods 2321 also generate a pulling force on the engaging end 24. When the locking platform 31 moves above the locking slot 110, the pulling force of the connecting rods 2321 on the engaging end 24 is mainly used to straighten the engaging end 24, that is, to drive the engaging end 24 back to its flat state, correspondingly pressing the locking platform 31 into the locking slot 110.
[0070] See appendix Figure 3 , 4 In some embodiments, 8, 10, and 11, the first connector 21 has a receiving cavity 211, and the second connector 22 is configured to open or close the receiving cavity 211. The engaging end 24 and the engaging member 3 are both located within the receiving cavity 211. The receiving cavity 211 provides a storage space for the user, which can be used to store small tools, items related to the mounting component 1, etc. Correspondingly, in this embodiment, the second connector 22 has a plate-like structure design.
[0071] One end of the second connector 22 is rotatably mounted on the first connector 21 and close to the front abutment end 231. The first connector 21 is generally annular, and the bottom wall 11, the first connector 21, and the second connector 22 together form a receiving cavity 211. Specifically, a shaft hole 2312 can be opened on the front abutment end 231 or the abutment end 232, and the second connector 22 can be hinged to the shaft hole 2312 by a rotating shaft 221.
[0072] See appendix Figure 4 The quick-release structure also includes a magnetic suction assembly 7, which is at least partially mounted on the first connector 21 or the bottom wall 11. For example, the magnetic suction assembly 7 includes a first magnetic element 71 and a second magnetic element 72. The first magnetic element 71 is mounted on the first connector 21, and the second magnetic element 72 is mounted on the second connector 22. When the second connector 22 closes the receiving cavity 211, the first magnetic element 71 and the second magnetic element 72 attract each other to lock the positional relationship between the first connector 21 and the second connector 22. When the user needs to open the receiving cavity 211, an external force can be applied to the second connector 22 to separate the first magnetic element 71 and the second magnetic element 72.
[0073] See appendix Figure 3 , 6In some embodiments, from 7 to 20, the connecting component 2 is provided with a connecting portion 25 for connecting an additional support member 8. In these embodiments, the additional support member 8 is not part of the quick-release structure. In other embodiments, the quick-release structure includes at least one additional support member 8, which is provided with a mounting portion 81 adapted to the connecting portion 25. It should be noted that the additional support member 8 is equivalent to the support 5. Since some additional support members 8 are small in size, they can be stored in the receiving cavity 211 for easy carrying.
[0074] Furthermore, the connecting part 25 is designed with a hole-like structure. For example, the connecting part 25 is a threaded hole structure, and the corresponding mounting part 81 is a threaded column structure, so that the mounting part 81 can be screwed and fixed in the connecting part 25. As another example, the connecting part 25 is a straight hole structure, and the mounting part 81 is a column-like structure with a diameter larger than that of the connecting part 25, so that the mounting part 81 can be inserted into the connecting part 25 with an interference fit.
[0075] Regarding the position of the connecting part 25, in some embodiments, the mounting member 1 has a front side 101 and a back side 102, and the mounting groove 100 is located on the back side 102 of the mounted member 1. Correspondingly, the connecting assembly 2 is also mounted on the back side of the supported object 4, so that when the connecting assembly 2 supports or connects to the support object 5, the front side of the supported object 4 faces forward or upward. Therefore, as shown in the attached... Figure 17 and 18 As shown, the connecting parts 25 are distributed on the side 201 of the connecting assembly 2 away from the mounting part 1.
[0076] Furthermore, since the limiting wall 14 of the mounting member 1 is approximately located at the center of gravity of the mounting member 1, in some embodiments, at least one connecting portion 25 is disposed on the top surface 2313 of the front abutment end 231. That is, when the additional support member 8 is installed on the connecting portion 25 located on the front abutment end 231, it is equivalent to being supported at the center of gravity of the mounting member 1 by at least one additional support member 8. The distribution structure of this connecting portion 25 makes the support of the connected assembly 2 and the additional support member 8 for the supported member more stable.
[0077] Furthermore, multiple connecting portions 25 are provided, and these multiple connecting portions 25 are arranged in a triangular, rectangular, trapezoidal, or circular pattern. Correspondingly, for example, see attached... Figure 17 and 19 The diagram shows three additional support members 8 arranged in a triangular pattern.
[0078] In some embodiments, the connecting assembly 2 further includes an extension 26 mounted at the edge of the mounting member 1. At least one connecting portion 25 is disposed on the extension 26, and at least one connecting portion 25 is disposed on the first connecting member 21 or the second connecting member 22. For example, see attached... Figure 19 and 20As shown, the extension 26 is installed on the side of the mounting member 1 away from the first connector 21, which provides a more stable connection to the mounting member 1. Specifically, the extension 26 can be designed in a "C" shape, so that the extension 26 is installed on the mounting member 1 in a clamping manner.
[0079] In some embodiments, depending on the use of the supported object 4, a portion of the connecting portion 25 may be positioned facing the front surface 101 of the mounting member 1. For example, see attached... Figure 19 and 20 As shown, the front 101 of the mounting component 1 faces upward, and three additional support members 8 are respectively mounted on the extension 26 and the first connector 21. All three additional support members 8 are located above the mounting component 1, that is, above the front 101 of the mounting component 1. The additional support members 8 can be configured to have an adhesive force, so that the mounting component 1 can be adhered to certain top walls with its front 101 facing upward.
[0080] Regarding the additional support member 8, at least one additional support member 8 is one or more of the following: a suction cup containing a mounting portion 81, a magnetic suction member containing a mounting portion 81, a foot pad containing a mounting portion 81, and a strap containing a mounting portion 81. Only an embodiment in which the additional support member 8 is designed as a disc is shown in the accompanying drawings.
[0081] See appendix Figure 6 , 8 21. In some embodiments, the quick-release structure further includes a housing 9, which fits onto the edge of the mounting member 1 and covers the back surface 102 of the mounting member 1. Specifically, the housing 9 is hollowed out at the position corresponding to the mounting groove 100, that is, the housing 9 does not cover the mounting groove 100, allowing the connecting component 2 to be installed and removed while the housing 9 is being worn. Further, as shown in the attached... Figure 21 As shown, a connecting piece 91 can also be provided at the position of the housing 9 corresponding to the front abutment 231. The connecting piece 91 has a through hole 92. The position of the through hole 92 corresponds to the position of the connecting part 25 on the front abutment 231. The connecting piece 91 and the connecting assembly 2 can be connected and fixed by the additional support member 8.
[0082] See appendix Figure 22 In some embodiments, the quick-release structure further includes a receiving member 9a, which has several receiving bags for storing items. The receiving member 9a may be part of the housing 9 or used as an accessory.
[0083] In some embodiments, the mounting groove 100 has an open side 15 extending through the edge of the mounting member 1. The open side 15 is unique, and the connecting assembly 2 needs to be inserted into the mounting groove 100 from the open side 15. The connecting assembly 2 extends towards the open side 15 to form a handle 27 located outside the mounting groove 100, such that the handle 27 connects to two abutment ends 232. Specifically, the first connecting member 21 extends beyond the open side 15 to form the handle 27, which facilitates the user in carrying the mounting member 1. Of course, the handle 27 can be integrally formed with the first connecting member 21, or it can be a separate structure designed and locked in place using bolts.
[0084] Obviously, the embodiments described above are only some embodiments of this utility model, not all embodiments. The accompanying drawings show preferred embodiments of this utility model, but do not limit the patent scope of this utility model. This utility model can be implemented in many different forms; rather, the purpose of providing these embodiments is to provide a more thorough and comprehensive understanding of the disclosure of this utility model. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing specific embodiments, or make equivalent substitutions for some of the technical features. Any equivalent structures made using the content of this utility model specification and drawings, directly or indirectly applied to other related technical fields, are similarly within the patent protection scope of this utility model.
Claims
1. A quick-release structure suitable for a mounting component (1) having a mounting groove (100), wherein the mounting component (1) has a bottom wall (11) and a side wall (10) constituting the mounting groove (100), the bottom wall (11) having a slot (110), characterized in that, The quick-release structure includes: A connecting component (2) is detachably installed in the mounting groove (100), wherein the connecting component (2) includes a fixed end (23) and a snap-fit end (24), the fixed end (23) abuts against the side wall (10) of the mounting groove (100), and the snap-fit end (24) is connected to the fixed end (23); The engaging component (3) is disposed on the engaging end (24) and can engage or disengage with the slot (110) on the bottom wall (11).
2. The quick-release structure according to claim 1, characterized in that, The engaging end (24) is elastically deformable, and the engaging member (3) is at least partially protruding from the engaging end (24) toward the bottom wall (11). The engaging end (24) is also provided with a driving part (241), which is used to drive the engaging end (24) to elastically deform so as to drive the engaging member (3) to engage or disengage from the slot (110). The engaging member (3) engages or disengages from the slot (110) in a direction generally perpendicular to the bottom wall (11).
3. The quick-release structure according to claim 1, characterized in that, The side wall (10) includes a limiting wall (14) and two positioning walls (12). The limiting wall (14) connects the two positioning walls (12). The mounting groove (100) is formed by the bottom wall (11), the limiting wall (14) and the two positioning walls (12). A connecting post (141) is provided on the limiting wall (14). A wire-passing channel (1411) is provided through the connecting post (141). The fixed end (23) includes a front abutment end (231) and two abutment ends (232). The front abutment end (231) connects to the two abutment ends (232). When the connecting component (2) is installed in the mounting groove (100), the front abutment end (231) abuts against the limiting wall (14), and the two abutment ends (232) abut against the two positioning walls (12) respectively. The front abutment end (231) is provided with a receiving opening (2311), and the receiving opening (2311) allows the connecting post (141) to pass through.
4. The quick-release structure according to claim 1, characterized in that, The connecting component (2) includes a first connector (21) and a second connector (22), the fixing end (23) and the engaging end (24) are formed on the first connector (21), the first connector (21) is used to be installed in the mounting groove (100), and the second connector (22) is installed on the first connector (21); Furthermore, the first connector (21) is provided with a receiving cavity (211), and the second connector (22) is configured to open or close the receiving cavity (211). The engaging end (24) and the engaging member (3) are both located in the receiving cavity (211). Furthermore, the second connector (22) is rotatably mounted on the first connector (21), and the bottom wall (11), the first connector (21), and the second connector (22) together enclose the receiving cavity (211).
5. The quick-release structure according to claim 4, characterized in that, It also includes a magnetic suction assembly (7), which is at least partially mounted on the first connector (21) or the bottom wall (11); When the second connector (22) covers the receiving cavity (211), the magnetic suction assembly (7) connects and locks the first connector (21) and the second connector (22).
6. The quick-release structure according to claim 1, characterized in that, The connecting component (2) is provided with a connecting part (25) for connecting an additional support member (8).
7. The quick-release structure according to claim 6, characterized in that, The connecting part (25) is designed with a hole structure for connecting with any additional support member (8) that is adapted to the hole structure; Furthermore, the connecting part (25) has a threaded hole structure.
8. The quick-release structure according to claim 6, characterized in that, The connecting part (25) is distributed on the side (201) of the connecting assembly (2) away from the mounting part (1); Furthermore, the side wall (10) includes a limiting wall (14) and two positioning walls (12), the limiting wall (14) connects the two positioning walls (12), the mounting groove (100) is formed by the bottom wall (11), the limiting wall (14) and the two positioning walls (12), and the limiting wall (14) is set close to the center of gravity of the mounting part (1); The fixed end (23) includes a front abutment end (231) and two abutment ends (232). The front abutment end (231) connects to the two abutment ends (232). When the connecting component (2) is installed in the mounting groove (100), the front abutment end (231) abuts against the limiting wall (14), and the two abutment ends (232) abut against the two positioning walls (12) respectively. At least one of the connecting portions (25) is disposed on the front abutment end (231); Furthermore, multiple connecting portions (25) are provided, and they are arranged in a triangular, rectangular, trapezoidal or circular pattern.
9. The quick-release structure according to claim 6, characterized in that, The connecting assembly (2) includes a first connector (21), a second connector (22), and an extension (26). The fixed end (23) and the engaging end (24) are formed on the first connector (21). The first connector (21) is used to be installed in the mounting groove (100). The second connector (22) is installed on the first connector (21). The extension (26) is installed at the edge of the mounting member (1). Multiple connecting portions (25) are provided, at least one connecting portion (25) is provided on the extension member (26), and at least one connecting portion (25) is provided on the first connecting member (21) or the second connecting member (22); Furthermore, the mounting member (1) has a front (101) and a back (102), and the connecting portion (25) is disposed facing the front (101) of the mounting member (1).
10. The quick-release structure according to claim 6, characterized in that, The quick-release structure also includes at least one additional support member (8), on which an installation part (81) adapted to the connecting part (25) is provided; Furthermore, the mounting component (1) has a front (101) and a back (102). The quick-release structure also includes a housing (9), which is fitted onto the edge of the mounting component (1) and covers the back (102) of the mounting component (1). The housing (9) is hollowed out at the mounting groove (100). The housing (9) can be connected to the connecting assembly (2) through the additional support (8). Furthermore, at least one of the additional support members (8) is one or more of the following: a suction cup with a mounting portion (81), a magnetic member with a mounting portion (81), a foot pad with a mounting portion (81), and a strap with a mounting portion (81); Furthermore, the mounting groove (100) has an open side (15) extending to the edge of the mounting member (1); The connecting component (2) extends toward the open side (15) and forms a handle (27) located outside the mounting groove (100).