Detachable connecting mechanism and connector with same
By designing a detachable connection mechanism in the connector, using the coordinated movement of the clamping unit and the locking position, the problem of the connector being disengaged in the motion scenario is solved, and rapid fixing and disassembly are achieved, improving the user experience.
Patent Information
- Application Number
- CN202422244734.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-13
- Publication Date
- 2025-09-02
- Estimated Expiration
- 2034-09-13
AI Technical Summary
Existing connectors are prone to disconnect due to external forces in motion scenarios, causing circuits or signals to be disconnected and affecting the user experience.
A detachable connection mechanism is designed to enable rapid fixing and disassembly by setting a clamping unit and a locking position between the connecting seat and the mounting sleeve, including the mating movement of the plug-in, the mounting sleeve, the guide groove and the clamping position.
It realizes rapid fixing and disassembly between different devices, with simple structure and convenient operation, meeting the needs of connectors in different scenarios.
Smart Images

Figure CN223297136U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of connection mechanisms, in particular to a detachable connection mechanism, and further to a connector including the detachable connection mechanism. Background Art
[0002] Energy Storage Connectors generally refer to electrical connectors used to transmit current or signals. They require high current, low resistance, reliability, and safety. Contact between the male and female ends allows for the transmission of information or current. Energy storage connectors are a common type of electrical connector, providing connectivity and conduction. Manufacturers have varying requirements for energy storage connectors, with the overall trend towards miniaturization and ease of operation. Elbow plug-in connectors are a typical example.
[0003] Connectors typically connect two active devices, including a plug and socket that fit together. In actual use, they can only achieve effective connection between the two and cannot fix the two when needed. Especially in sports scenarios, external forces may cause the connected connector plug and socket to detach, thereby causing the circuit or signal to be disconnected, seriously affecting the user's daily use experience. Utility Model Content
[0004] One of the purposes of the present invention is to provide a detachable connection mechanism that can realize rapid fixation and disassembly between different devices, with a simple structure and convenient operation; the second purpose is to provide a connector that can realize detachable installation between the connector plug and the socket to meet the connector usage requirements in different scenarios.
[0005] In order to achieve one of the aforementioned objectives, according to one aspect of the present application, a detachable connection mechanism is provided, comprising:
[0006] The connecting seat is configured to have a first opening inwardly opened on one side thereof, and the first opening is provided with a snap-fit position;
[0007] The mounting sleeve is configured to slide axially through the first opening, and has a second opening formed therein, wherein an inner wall of the second opening is provided with a guide groove having at least one locking position;
[0008] a plug-in component configured to slide through the interior of the second opening, and having a locking component mounted on its outer periphery and receivable within the guide groove; the plug-in component configured to move axially and / or rotate circumferentially along the second opening to drive the locking component to move along the guide groove;
[0009] a snap-fit unit, movably mounted on the mounting sleeve and interfering with the moving trajectory of the connector, and configured to be driven by the connector to move so as to be buckled into the snap-fit position;
[0010] When the locking member moves to a preset position along the guide groove, the clamping unit is locked at the clamping position to fix the installation sleeve and the connecting seat, and continues to move until it is clamped with the locking position to lock the connector and the installation sleeve;
[0011] When the locking member moves along the reverse path, the locking member disengages from the locking position to release the lock between the plug-in member and the installation sleeve. When the locking member continues to move to the preset position, the engaging unit exits the engaging position and resets to release the fixation of the installation sleeve and the connecting seat.
[0012] In addition to one or more of the above, or as an alternative, in another embodiment, the guide groove is opened through along the thickness direction of the installation sleeve and extends from the inner wall of the second opening to the outer wall of the installation sleeve.
[0013] In addition to one or more of the above, or as an alternative, in another embodiment, the guide groove includes:
[0014] first notches, distributed along the axial direction of the mounting sleeve;
[0015] The second notch is distributed along the circumferential direction of the mounting sleeve and one end of the second notch is connected to the first notch. The locking position is arranged at the second notch.
[0016] In addition to one or more of the above, or as an alternative, in another embodiment, the locking position is arranged at an end of the second notch away from the first notch, and is configured as a latch for the locking member to engage.
[0017] In addition to one or more of the above, or as an alternative, in another embodiment, the preset position is configured as a connecting corner between the first notch and the second notch.
[0018] In addition to one or more of the above, or as an alternative, in another embodiment, the snap-fit position is configured as a snap-fit hole arranged at one end of the first opening away from the orifice, and the inner diameter of the snap-fit hole is larger than the inner diameter of the first opening.
[0019] In addition to one or more of the above, or as an alternative, in another embodiment, the card connection position is configured as a plurality of card interfaces arranged at an end of the first opening away from the hole and distributed at equal intervals along the circumference thereof.
[0020] In addition to one or more of the above, or as an alternative, in another embodiment, the snap-in unit includes: a plurality of snap-in connectors movably connected to the mounting sleeve at one end and located on the moving path of the connector; the connector is configured to move axially along the second opening and drive each of the snap-in connectors to flip toward or away from the central axis of the second opening to engage the snap-in connector in the snap-in position or flip the snap-in connector back to its original position.
[0021] In addition to one or more of the above, or as an alternative, in another embodiment, a plurality of notches are circumferentially arranged at the end of the mounting sleeve facing away from the insertion of the connector, and the connector is configured as a buckle that is obliquely installed inside each of the notches, and when in the reset state, the angle between the buckle and the central axis of the second opening is an acute angle.
[0022] In addition to one or more of the above, or as an alternative, in another embodiment, two guide grooves are arranged in sequence along the circumference of the mounting sleeve, the connector is provided with a plug hole along the radial direction, the locking member is connected to the plug hole and both ends pass through the outer wall of the connector and are respectively accommodated in the two guide grooves.
[0023] In addition to one or more of the above, or as an alternative, in another embodiment, the locking member is configured as a pin, and the plug-in member is configured as a rod.
[0024] In addition to one or more of the above, or as an alternative, in another embodiment, further comprising:
[0025] a limiting member, provided on the outer side wall of the mounting sleeve and extending along the axial direction thereof, and configured in at least one manner;
[0026] The limiting groove is axially opened on the inner wall of the first opening and is configured to allow the limiting member to slide through and be provided in a one-to-one correspondence with the limiting member.
[0027] In addition to one or more of the above, or as an alternative, in another embodiment, the limiting member is configured as a limiting rib and the number is two, and the two limiting ribs are symmetrically distributed relative to the central axis of the first opening.
[0028] In order to achieve the second of the aforementioned objectives, according to another aspect of the present application, a connector is provided, comprising: a socket unit, a plug unit, and a detachable connection mechanism as described above and connected between the socket unit and the plug unit.
[0029] Compared with the prior art, the beneficial effects of the present invention are: through the clamping unit provided on the mounting sleeve and interfering with the moving trajectory of the plug-in component and the clamping position provided on the first opening, the mounting sleeve and the connecting seat are fixed when the clamping unit and the clamping position are clamped, and the locking position provided in the guide groove can be used to clamp the mounting sleeve and the connecting seat with the locking member after the mounting sleeve and the connecting seat are clamped and fixed, so as to realize the fixation of the plug-in component and the mounting sleeve, thereby realizing the rapid fixation of the connecting seat and the mounting sleeve, as well as the mounting sleeve and the plug-in component. If reset is required, the locking member can be driven to move along the opposite path by the plug-in component, thereby realizing rapid fixation and disassembly between different devices. The structure is simple and the operation is relatively convenient, which can meet the needs of rapid assembly and disassembly between different devices. BRIEF DESCRIPTION OF THE DRAWINGS
[0030] The disclosure of this application will be more easily understood with reference to the accompanying drawings, which are for illustrative purposes only and are not intended to limit the scope of protection of this application.
[0031] In the picture:
[0032] Figure 1 A three-dimensional structural diagram of a detachable connecting mechanism provided by the utility model;
[0033] Figure 2 An exploded view of a detachable connection mechanism provided by the utility model;
[0034] Figure 3 A three-dimensional structural diagram of a connecting seat of a detachable connecting mechanism provided by the utility model;
[0035] Figure 4 A cross-sectional view of a connecting seat of a detachable connecting mechanism provided by the utility model;
[0036] Figure 5 A three-dimensional structural diagram of a mounting sleeve of a detachable connecting mechanism provided by the utility model;
[0037] Figure 6 A cross-sectional view of a snap-in unit of a detachable connection mechanism provided by the present invention when not snap-in with a snap-in hole;
[0038] Figure 7 A cross-sectional view of a snap-in unit of a detachable connection mechanism provided by the present invention when snap-in is engaged with a snap-in hole;
[0039] Figure 8 This is a schematic diagram of the three-dimensional structure of a detachable connecting mechanism provided by the present invention when the locking member and the guide groove are in the initial state;
[0040] Figure 9This is a schematic diagram of the three-dimensional structure of a detachable connection mechanism provided by the present invention when the locking member and the guide groove are in an intermediate state;
[0041] Figure 10 This is a schematic diagram of the three-dimensional structure of a detachable connection mechanism provided by the present invention when the locking member and the guide groove are in a locked state;
[0042] Figure 11 This is a schematic diagram of the three-dimensional structure of a detachable connecting mechanism provided by the utility model when there are two guide grooves.
[0043] In the accompanying drawings: 1 connecting seat, 11 first opening, 2 mounting sleeve, 21 second opening, 22 guide groove, 221 first notch, 222 second notch, 3 plug-in part, 4 locking part, 5 clamping unit, 51 clamping part, 6 bayonet, 7 clamping hole, 8 limiting part, 9 limiting groove, 10 plug-in hole. DETAILED DESCRIPTION
[0044] To make the purpose, technical solutions and advantages of the embodiments of the present application clearer, the specific technical solutions of the present application will be further described in detail below in conjunction with the drawings in the embodiments of the present application. The following embodiments are used to illustrate the present application but are not intended to limit the scope of the present application.
[0045] In the embodiments of this application, the terms "first" and "second" are used for descriptive purposes only and should not be understood as indicating or implying relative importance or implicitly indicating the number of the technical features indicated. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include one or more of the features. In the description of the embodiments of this application, unless otherwise specified, "multiple" means two or more.
[0046] In addition, in the embodiments of the present application, directional terms such as "up", "down", "left" and "right" are defined relative to the orientation of the components in the drawings. It should be understood that these directional terms are relative concepts. They are used for relative description and clarification, and they may change accordingly according to changes in the orientation of the components in the drawings.
[0047] In the embodiments of the present application, unless otherwise clearly specified and limited, the term "connection" should be understood in a broad sense. For example, "connection" can be a fixed connection, a detachable connection, or an integrated connection; it can be a direct connection or an indirect connection through an intermediate medium.
[0048] In the embodiments of the present application, the terms "comprises," "comprising," or any other variations thereof are intended to encompass non-exclusive inclusion, such that a process, method, article, or apparatus comprising a series of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus. In the absence of further limitations, an element defined by the phrase "comprising a ..." does not preclude the presence of other identical elements in the process, method, article, or apparatus comprising the element.
[0049] In the embodiments of this application, words such as "exemplary" or "for example" are used to indicate examples, illustrations, or descriptions. Any embodiment or design described as "exemplary" or "for example" in the embodiments of this application should not be interpreted as being preferred or advantageous over other embodiments or designs. Rather, the use of words such as "exemplary" or "for example" is intended to present the relevant concepts in a concrete manner.
[0050] Figure 1 This is a three-dimensional schematic diagram of a detachable connection mechanism according to an embodiment of the present application, which can be used for a connector and includes: a connection seat 1 configured to have a first opening 11 opened inward on one side thereof, a mounting sleeve 2 configured to slide axially through the interior of the first opening 11 and having a second opening 21 therein, a plug-in component 3 configured to slide through the interior of the second opening 21, and a snap-fit unit 5 movably mounted on the mounting sleeve 2 and interfering with the movement trajectory of the plug-in component 3, the first opening 11 being provided with a snap-fit position, the inner wall of the second opening 21 being provided with a guide groove 22 having at least one locking position; a slot 22 which can be accommodated in the guide groove 22 is mounted on the outer periphery of the plug-in component 3. The locking piece 4 of the embodiment of the present invention is a locking piece 4; the plug-in piece 3 is configured to move axially and / or rotate circumferentially along the second opening 21 to drive the locking piece 4 to move along the guide groove 22; the clamping unit 5 is configured to drive it to move through the plug-in piece 3 to engage it in the engaging position; when the locking piece 4 moves to the preset position along the guide groove 22, the engaging unit 5 engages in the engaging position to fix the mounting sleeve 2 and the connecting seat 1, and continues to move until it is engaged with the locking position to lock the plug-in piece 3 and the mounting sleeve 2; when the locking piece 4 moves along the opposite path, the locking piece 4 disengages from the locking position to release the lock of the plug-in piece 3 and the mounting sleeve 2, and continues to move to the preset position, the clamping unit 5 exits the engaging position and resets to release the fixation of the mounting sleeve 2 and the connecting seat 1.
[0051] In actual application, this embodiment refers to Figure 1-Figure 7, the plug-in component 3 can be pre-slidably connected to the second opening 21 of the installation sleeve 2, and then the locking component 4 can be installed on the plug-in component 3 and restricted to move in the guide groove 22 of the installation sleeve 2; the above-assembled components are installed together into the first opening 11 of the connecting seat 1, and the first opening 11 can slide the installation sleeve 2 axially therein; then the plug-in component 3 is moved axially or circumferentially along the second opening 21, thereby driving the locking component 4 to move along the guide groove 22, and utilizing the clamping unit 5 provided on the installation sleeve 2 and interfering with the moving trajectory of the plug-in component 3 and the clamping unit provided on the first opening 11 When the card unit 5 and the card position are engaged, the installation sleeve 2 and the connecting seat 1 are fixed. By utilizing the locking position provided in the guide groove 22, the installation sleeve 2 and the connecting seat 1 can be fixed with the locking member 4 to achieve the fixation of the plug-in member 3 and the installation sleeve 2, thereby achieving the rapid fixation of the connecting seat 1 and the installation sleeve 2, as well as the installation sleeve 2 and the plug-in member 3. If you need to reset it, you only need to drive the locking member 4 along the opposite path through the plug-in member 3, thereby achieving rapid fixation and disassembly between different devices. The structure is simple and the operation is relatively convenient, which can meet the needs of rapid assembly and disassembly.
[0052] The following will introduce further specific implementation or refinement and improvement process of the board card inserter assembly through exemplary descriptions, so as to further improve it or for improvement considerations in other aspects.
[0053] In one case of this embodiment, reference Figure 5 The guide groove 22 is opened through the installation sleeve 2 along the thickness direction and extends from the inner wall of the second opening 21 to the outer wall of the installation sleeve 2.
[0054] It can be seen that the guide groove 22 is set as a through groove that penetrates the thickness direction of the installation sleeve 2, so that the locking member 4 can be installed on the connector 3 from the outside through the guide groove 22, which is more convenient in actual operation.
[0055] It should be noted that the above-mentioned guide groove 22 can also be opened from the inside of the second opening 21 along the thickness direction of the mounting sleeve 2. At this time, the guide groove 22 is not connected to the outside. In this case, the locking member 4 can be set as an elastic telescopic member to be accommodated inside the guide groove 22. Therefore, the specific depth of the above-mentioned guide groove 22 can be selected according to actual conditions, and this embodiment does not make specific limitations here.
[0056] In another case of this embodiment, reference Figure 8 The guide groove 22 includes: a first slot 221 distributed along the axial direction of the mounting sleeve 2, and a second slot 222 distributed along the circumferential direction of the mounting sleeve 2 and connected to the first slot 221 at one end. The locking position is arranged in the second slot 222.
[0057] Under this arrangement, the first slot 221 extending along the axial direction of the mounting sleeve 2 can be used to control the movement of the locking member 4 along the axial direction, and the second slot 222 can be used to control the movement of the locking member 4 along the axial direction of the mounting sleeve 2, thereby achieving guidance in different directions corresponding to different disassembly and assembly actions.
[0058] For example, in addition to adopting the method of distributing the first groove along the axial direction and the second groove 222 along the circumferential direction, the above-mentioned guide groove 22 can also be set into an arc shape. Under this setting, the connector 3 can be moved axially along the second opening 21 and rotated circumferentially under the action of external thrust, thereby driving the locking member 4 to move along the arc-shaped guide groove 22, first fixing the mounting sleeve 2 and the connecting seat 1, and then locking the connector 3 and the mounting sleeve 2, thereby realizing a detachable connection between the three, and the resetting process can be carried out by moving along the opposite path. Therefore, the specific distribution direction of the guide groove 22 can be selected as needed, and this embodiment is not specifically limited here.
[0059] On this basis, reference Figure 8 The locking position is arranged at one end of the second notch 222 away from the first notch 221 and is configured as a bayonet 6 for the locking member 4 to engage with.
[0060] It can be known that the above-mentioned locking position is set at the end of the second slot 222 away from the first slot 221, so that when the locking member 4 moves along the first slot 221 first, the connector 3 moves along the axial direction first to achieve the fixation of the connecting seat 1 and the mounting sleeve 2, and then the connector 3 rotates along the circumferential direction, and then the locking member 4 is clamped with the bayonet 6 located at the end of the second slot 222 away from the first slot 221 to achieve the fixation of the connector 3 and the mounting sleeve 2. If disassembly is required, it is only necessary to move the connector 3 in the opposite direction.
[0061] Exemplarily, the above-mentioned locking position can also be arranged at the middle position of the second slot 222, or at other positions between the middle position and the end; the number of locking positions can be multiple, so as to achieve step-by-step regulation; in addition to being set as the bayonet 6, the locking position can be set as other components that can be engaged with the locking piece. Regarding its specific setting form, this embodiment does not make specific restrictions here.
[0062] In actual application of this embodiment, the preset position is configured as the connecting corner of the first notch 221 and the second notch 222 .
[0063] Specifically, the above-mentioned preset position is set at the connecting corner of the first slot 221 and the second slot 222, so that when the connector 3 drives the snap-fit unit 5 to engage with the snap-fit position, thereby fixing the mounting sleeve 2 and the connecting seat 1, the connector 3 can be driven to rotate circumferentially to snap-fit it with the mounting sleeve 2.
[0064] It should be noted that the above-mentioned preset position can also be set above the corner where the first slot 221 and the second slot 222 are connected as needed. After the connector 3 drives the snap-fit unit 5 to engage with the snap-fit position, it can continue to move in the axial direction and then rotate in the circumferential direction to be snap-fitted and fixed with the mounting sleeve 2. Therefore, the specific setting position of the above-mentioned preset position can be adjusted according to the axial depth of the first opening 11 and the position of the snap-fit unit 5. The specific position of the preset position is not a restrictive provision of this embodiment.
[0065] For example, the second slot 222 exceeds the connection position between the snap-in unit 5 and the mounting sleeve 2 along the insertion direction of the connector 3. The relative distance between the second slot 222 and the connection position between the snap-in unit 5 and the mounting sleeve 2 can be adjusted as needed, which will not be further explained in this embodiment.
[0066] refer to Figures 8-10 , which respectively represent three structural schematic diagrams of the locking member 4 and the guide groove 22 in the initial state, the intermediate state and the clamping state; which respectively correspond to the connector 3 first moving axially along the first notch 221, then rotating circumferentially along the second notch 222, and finally clamping the locking member 4 into the locking position at the end of the guide groove 22, thereby realizing the rapid clamping of the installation sleeve 2 and the connector 3.
[0067] In one case of this embodiment, reference Figure 4 The snap-fitting position is configured as a snap-fitting hole 7 arranged at one end of the first opening 11 away from the hole mouth, and the inner diameter of the snap-fitting hole 7 is larger than the inner diameter of the first opening 11.
[0068] It can be known that the above-mentioned snap-in position is set to a snap-in hole 7 connected to the end of the first opening 11, and the inner diameter of the snap-in hole 7 is larger than the inner diameter of the first opening 11, and the snap-in unit 5 arranged on the mounting sleeve 2 is buckled inside the first opening 11, thereby realizing the axial and radial direction restriction of the mounting sleeve 2, and then fixing the mounting sleeve 2 and the connecting seat 1; in addition, since the snap-in position is set to the snap-in hole 7, it can adapt to snap-in units 5 of different shapes, which has stronger adaptability and practicality.
[0069] In another aspect of this embodiment, the engaging positions are configured as a plurality of card interfaces disposed at an end of the first opening 11 away from the hole and distributed at equal intervals along the circumference thereof.
[0070] It is not difficult to see that the snap-in position is arranged as a plurality of snap-in interfaces, which facilitates buckling the snap-in unit 5 into each snap-in interface, thereby achieving fixation of the mounting sleeve 2 and the connecting seat 1 .
[0071] In actual application, this embodiment refers to Figure 5The clamping unit 5 includes: a plurality of clamping members 51 movably connected to the mounting sleeve 2 at one end and located on the moving path of the plug-in member 3; the plug-in member 3 is configured to move axially along the second opening 21 and drive each clamping member 51 to flip toward or away from the central axis of the second opening 21, so as to buckle the clamping member 51 in the clamping position or flip the clamping member 51 to reset.
[0072] It can be seen that by configuring the snap-in unit 5 to be a plurality of snap-in parts 51 that can be flipped toward or away from the central axis of the second opening 21, the plug-in unit can be used to achieve simultaneous flipping of the plurality of snap-in parts 51, and then simultaneously engage the snap-in positions or simultaneously reset them.
[0073] On this basis, a plurality of notches are arranged circumferentially on the end of the mounting sleeve 2 facing away from the plug-in component 3, and the clip 51 is configured as a clip installed obliquely inside each notch. When in the reset state, the angle between the clip and the center axis of the second opening 21 is an acute angle.
[0074] Obviously, by utilizing the multiple notches provided on the mounting sleeve 2, the clip 51 can be installed obliquely inside the notch. Since the angle between the clip and the central axis of the opening is an acute angle, it is ensured that the multiple clips are all rolled inward, and then the plug-in component 3 can be used to roll the multiple clips outward to buckle against the above-mentioned clipping position.
[0075] It should be noted that, in addition to being arranged inside the notch of the mounting sleeve 2, the above-mentioned clip can also be arranged inside the mounting sleeve 2 at one end and outside the mounting sleeve 2 at the other end, and the middle position can be rotated and connected to the mounting sleeve 2, so that the plug-in component 3 is crimped on the end located inside the mounting sleeve 2, thereby pressing the end located outside the mounting sleeve 2 into the clip-on position. Therefore, the actual installation method of the above-mentioned clip-on unit 5 is not a restrictive provision of this embodiment.
[0076] On this basis, the above-mentioned snap-in unit 5 can also be configured to slide radially through the mounting sleeve 2, and can be crimped along the axial direction by the plug-in connector 3 to buckle against multiple elastic snap-in rods inside the card interface. By setting the end of the elastic snap-in rod to an inclined surface in contact with the plug-in connector 3, and the elastic snap-in rod itself being elastic, the above-mentioned buckling and reset functions are achieved.
[0077] In one case of this embodiment, reference Figure 11 There are two guide grooves 22 arranged in sequence along the circumference of the mounting sleeve 2, and the connector 3 is provided with a plug hole 10 along the radial direction. The locking member 4 is connected to the plug hole 10 and both ends pass through the outer wall of the connector 3 and are respectively accommodated in the two guide grooves 22.
[0078] It should be noted that the two ends of the locking member 4 are respectively located inside the two guide grooves 22, the first notches 221 of the two guide grooves 22 are opposite, and the second notches 222 extend along the circumferential direction and have the same extension direction, and the position of the locking member 4 relative to the two guide grooves 22 is the same, so that when the locking member 4 passes through the plug-in hole 10, the two ends can be respectively connected in the two guide grooves 22, ensuring that the force is more uniform during use.
[0079] Exemplarily, the number of guide grooves 22 can be one or two. The specific number can be selected as needed and is not specifically limited in this embodiment. In addition, the locking member 4 is configured as a pin and the connector 3 is configured as an insert rod.
[0080] It can be known that the locking member 4 is configured as a pin, which can be inserted into the plug hole 10 of the connector 3, thereby achieving fixation between the two.
[0081] In another case of this embodiment, reference Figure 1-Figure 5 , and also includes: a limiting member 8 arranged on the outer wall of the mounting sleeve 2 and extending a certain length along its axial direction, and a limiting groove 9 opened along the axial direction on the inner wall of the first opening 11, and the limiting member 8 is configured as at least one; the limiting groove 9 is configured for the limiting member 8 to slide through and is arranged one-to-one with it.
[0082] For example, the cross-sectional shape of the mounting sleeve 2 may be set to be circular or polygonal, and the first opening 11 may be set to be a blind hole that does not penetrate the mounting sleeve 2 .
[0083] It is not difficult to see that the axially extending limiting member 8 provided on the outer wall of the mounting sleeve 2 and the limiting groove 9 provided on the inner wall of the first opening 11 are used to achieve a sliding connection between the mounting sleeve 2 and the first opening 11 in the axial direction.
[0084] Exemplarily, the limiting member 8 is configured as a limiting rib and there are two of them, and the two limiting ribs are symmetrically distributed relative to the central axis of the first opening 11. Of course, there can be multiple limiting members 8 arranged along the circumference of the mounting sleeve 2, and the corresponding limiting grooves 9 are arranged in the same number along the circumference of the inner wall of the first opening 11. The specific number and length of the two are not restrictive provisions of this embodiment.
[0085] This embodiment further provides a connector, comprising: a socket unit, a plug unit, and a detachable connection mechanism connected between the socket unit and the plug unit and as described above.
[0086] In this arrangement, by applying the above-mentioned detachable connection mechanism to the connector, detachable installation between the connector plug and the socket is achieved to meet the connector usage requirements in different scenarios.
[0087] The above examples primarily illustrate the detachable connection mechanism and connector including the detachable connection mechanism of the present application. Although only some of the embodiments of the present application have been described, those skilled in the art will appreciate that the present application may be implemented in many other forms without departing from its subject matter and scope. Therefore, the examples and embodiments presented are to be considered illustrative rather than restrictive, and the present application may encompass various modifications and substitutions without departing from the spirit and scope of the technical solutions of the present application.
Claims
1. A detachable connection mechanism, characterized in that: include: The connecting seat is configured to have a first opening inwardly opened on one side thereof, and the first opening is provided with a snap-fit position; The mounting sleeve is configured to slide axially through the first opening, and has a second opening formed therein, wherein an inner wall of the second opening is provided with a guide groove having at least one locking position; a plug-in component configured to slide through the interior of the second opening and having a locking component formed on its outer periphery and receivable within the guide groove; the plug-in component configured to move axially and / or rotate circumferentially along the second opening to drive the locking component to move along the guide groove; a snap-fit unit, movably mounted on the mounting sleeve and interfering with the moving trajectory of the connector, and configured to be driven by the connector to move so as to be buckled into the snap-fit position; When the locking member moves to a preset position along the guide groove, the clamping unit is locked at the clamping position to fix the installation sleeve and the connecting seat, and continues to move until it is clamped with the locking position to lock the connector and the installation sleeve; When the locking member moves along the reverse path, the locking member disengages from the locking position to release the lock between the plug-in member and the installation sleeve. When the locking member continues to move to the preset position, the locking unit exits the locking position and resets to release the fixation of the installation sleeve and the connecting seat.
2. A detachable connection mechanism according to claim 1, characterized in that: The guide groove is formed through the installation sleeve along a thickness direction thereof and extends from an inner wall of the second opening to an outer wall of the installation sleeve.
3. A detachable connection mechanism according to claim 1 or 2, characterized in that: The guide groove comprises: first notches, distributed along the axial direction of the mounting sleeve; The second notch is distributed along the circumferential direction of the mounting sleeve and one end of the second notch is connected to the first notch. The locking position is arranged at the second notch.
4. A detachable connection mechanism according to claim 3, characterized in that: The locking position is arranged at an end of the second notch away from the first notch, and is configured as a snap-in for the locking member to engage with.
5. The detachable connection mechanism according to claim 3, characterized in that: The preset position is configured as a connecting corner between the first notch and the second notch.
6. The detachable connection mechanism according to claim 1, characterized in that: The locking position is configured as a locking hole arranged at one end of the first opening away from the hole mouth, and the inner diameter of the locking hole is larger than the inner diameter of the first opening.
7. The detachable connection mechanism according to claim 1, characterized in that: The card connection positions are configured as a plurality of card interfaces arranged at one end of the first opening away from the hole and distributed at equal intervals along the circumference thereof.
8. The detachable connection mechanism according to claim 1, characterized in that: The snap-in unit includes: a plurality of snap-in parts movably connected to the mounting sleeve at one end and located on the moving path of the plug-in part; the plug-in part is configured to move axially along the second opening and drive each of the snap-in parts to flip toward or away from the central axis of the second opening, so as to engage the snap-in part in the snap-in position or flip the snap-in part back to its original position.
9. The detachable connection mechanism according to claim 8, characterized in that: The end of the mounting sleeve facing away from the plug-in component is provided with a plurality of notches along the circumferential direction, and the connector is configured as a buckle installed obliquely inside each notch. When in the reset state, the angle between the buckle and the central axis of the second opening is an acute angle.
10. The detachable connection mechanism according to claim 1, characterized in that: The guide grooves are arranged in sequence along the circumference of the mounting sleeve. The connector is provided with a plug hole in the radial direction. The locking member is connected to the plug hole and both ends pass through the outer wall of the connector and are respectively accommodated in the two guide grooves.
11. A detachable connection mechanism according to claim 10, characterized in that: The locking member is configured as a pin, and the plug-in member is configured as an inserting rod.
12. The detachable connection mechanism according to claim 1, characterized in that: Also includes: a limiting member, provided on the outer side wall of the mounting sleeve and extending along the axial direction thereof, and configured as at least one; The limiting groove is axially opened on the inner wall of the first opening and is configured to allow the limiting member to slide through and be provided in a one-to-one correspondence with the limiting member.
13. The detachable connection mechanism according to claim 12, characterized in that: The limiting member is configured as two limiting ribs, and the two limiting ribs are symmetrically distributed relative to the central axis of the first opening.
14. A connector, characterized in that: include: A socket unit, a plug unit, and a detachable connecting mechanism connected between the socket unit and the plug unit and according to any one of claims 1 to 13.