Accessory buckling mechanism for communication interface
By designing an automated track and adsorption platform in conjunction with a component fastening mechanism that moves the top plate, the problems of low efficiency and inconsistent precision caused by manual intervention in the assembly process of communication interface components were solved, achieving efficient and precise automated assembly.
Patent Information
- Application Number
- CN202520270928.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-20
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2035-02-20
AI Technical Summary
The existing assembly process for communication interface components requires a lot of manual intervention, resulting in low efficiency and inconsistent assembly accuracy, which is greatly affected by the operator's skill level and attention.
A component fastening mechanism for a communication interface was designed. Through the cooperation of a track and an adsorption platform, the automated conveying and precise control of components are realized. Combined with the vertical movement of the top plate, timely adjustment of components is realized. A cutting component and a drive component are provided to ensure the continuity and accuracy of the assembly process.
It improves the automation level and production efficiency of component assembly, ensures the continuity and precision of assembly, reduces the need for manual intervention, and enhances the stability and consistency of product quality.
Smart Images

Figure CN223612829U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to communication interface accessory buckling technical field, specifically is a kind of accessory buckling mechanism for communication interface. BACKGROUND
[0002] In the field of electronic equipment accessory production, communication interface is an important component, and its accessory assembly link is the key part of production process. With the continuous progress of science and technology, the market's demand for electronic products is gradually improved in terms of refinement and high performance. Communication interface production faces higher requirements and more opportunities, and the efficiency and accuracy of accessory assembly link become more and more important.
[0003] The existing accessory buckling mechanism for communication interface still has the following problems: the installation of general communication interface accessories needs a lot of manual intervention, and the operator needs to manually adjust the position of the accessory and the assembly position continuously. This way not only is inefficient, but also human factors have a great impact on production quality. Different operating personnel have different operation proficiency and attention concentration, which can easily cause the assembly process between accessories to be not continuous, and thus can easily cause the problem of low consistency of assembly precision.
[0004] Therefore, an accessory buckling mechanism for communication interface is needed to solve the above problems. UTILITY MODEL CONTENTS
[0005] Based on the above, the purpose of the utility model is to provide an accessory buckling mechanism for communication interface to solve the problem of manual intervention in communication interface assembly.
[0006] In order to solve the above technical problems, the utility model adopts the following technical solutions:
[0007] An accessory buckling mechanism for communication interface, comprising:
[0008] A first feeding shell for transporting accessory one;
[0009] A first limit position is arranged at the discharge end of the first feeding shell;
[0010] A second feeding shell is arranged at the side of the first feeding shell, and the second feeding shell is used for transporting accessory two;
[0011] A second limit position is arranged at the discharge end of the second feeding shell;
[0012] A top plate is arranged on the second limit position in a reciprocating manner along the vertical direction of the second limit position, and the top plate is used for lifting accessory two;
[0013] The feeding assembly comprises a track and an adsorption platform, the track is arranged between the first feeding shell and the second feeding shell, two ends of the track extend along the direction of the first limit position and the direction of the second limit position respectively, the adsorption platform is slidingly installed on the track, and the adsorption platform reciprocates along the track to the first limit position and the second limit position.
[0014] The feeding assembly comprises a track and an adsorption platform, the track is arranged between the first feeding shell and the second feeding shell, two ends of the track extend along the direction of the first limit position and the direction of the second limit position respectively, the adsorption platform is slidingly installed on the track, and the adsorption platform reciprocates along the track to the first limit position and the second limit position.
[0015] The feeding assembly comprises a track and an adsorption platform, the track is arranged between the first feeding shell and the second feeding shell, two ends of the track extend along the direction of the first limit position and the direction of the second limit position respectively, the adsorption platform is slidingly installed on the track, and the adsorption platform reciprocates along the track to the first limit position and the second limit position.
[0016] The feeding assembly comprises a track and an adsorption platform, the track is arranged between the first feeding shell and the second feeding shell, two ends of the track extend along the direction of the first limit position and the direction of the second limit position respectively, the adsorption platform is slidingly installed on the track, and the adsorption platform reciprocates along the track to the first limit position and the second limit position.
[0017] The feeding assembly comprises a track and an adsorption platform, the track is arranged between the first feeding shell and the second feeding shell, two ends of the track extend along the direction of the first limit position and the direction of the second limit position respectively, the adsorption platform is slidingly installed on the track, and the adsorption platform reciprocates along the track to the first limit position and the second limit position.
[0018] As a preferred scheme of the accessory buckling mechanism of the communication interface, the cutting component further comprises a lower movable block, a guide column and a spring, the lower movable block is movably arranged at the bottom of the upper movable block in the direction of the upper movable block, a gap is left between the upper movable block and the lower movable block, the guide column passes through the gap from the lower movable block and is fixed in the upper movable block, and the spring is sleeved on the guide column, and the lower pressing block is fixed on the lower movable block.
[0019] As a preferred scheme of the accessory buckling mechanism of the communication interface, the cutting component further comprises a positioning needle, the positioning needle is fixed in the lower movable block, the fixed block is provided with a through hole for inserting the positioning needle, and the positioning needle passes through the gap from the lower movable block and penetrates the upper movable block into the through hole.
[0020] As a preferred scheme of the accessory buckling mechanism of the communication interface, the driving component is arranged at the second limit position and is used for driving the top plate to lift and support the second accessory.
[0021] As a preferred scheme of the accessory buckling mechanism of the communication interface, the driving component comprises a driver and a connecting block, the driver is fixed at the bottom of the second feeding shell, the connecting block is arranged at the lifting end of the driver, and the top plate is fixed on the top surface of the connecting block.
[0022] As a preferred scheme of the accessory buckling mechanism of the communication interface, the driving component further comprises a deviation correcting needle, the deviation correcting needle is fixed on the connecting block and is used for matching the matching hole on the second accessory.
[0023] The beneficial effects of the utility model are as follows: the track is arranged between the first feeding shell and the second feeding shell to build a connecting channel, the adsorption platform adsorbs the first accessory at the first limit position, and the first accessory can flexibly reciprocate between the first limit position and the second limit position along the track, so that the position conversion of the first accessory in the whole feeding process is smooth and can be accurately controlled, the coherence and consistency of the feeding and assembly processes are ensured, the top plate is arranged on the second limit position and can reciprocate in the vertical direction of the second limit position, so that the second accessory can be timely lifted to a proper height after being transported to the discharging end of the second feeding shell, the position of the second accessory is timely adjusted after discharging to facilitate subsequent assembly, and then the buckling work of the first accessory and the second accessory is smoothly completed. BRIEF DESCRIPTION OF DRAWINGS
[0024] Figure 1 The utility model provides a kind of overall structure schematic view of the accessory buckling mechanism of the communication interface;
[0025] Figure 2The utility model provides a kind of accessory buckling mechanism for communication interface, and the movement state schematic diagram of the adsorption platform adsorption accessory one in it;
[0026] Figure 3 The utility model provides a kind of accessory buckling mechanism for communication interface, and the installation perspective drawing of accessory two in it;
[0027] Figure 4 The utility model provides a kind of accessory buckling mechanism for communication interface, and the installation sectional view of accessory two in it;
[0028] Figure 5 The utility model provides a kind of accessory buckling mechanism for communication interface, and the overall structure schematic diagram of cutting assembly in it;
[0029] Figure 6 The utility model provides a kind of accessory buckling mechanism for communication interface, and the explosion view of cutting assembly in it;
[0030] Figure 7 The utility model provides a kind of accessory buckling mechanism for communication interface, and the sectional view of cutting assembly in it.
[0031] Among them, each reference sign in the drawing:
[0032] 1, first feeding shell;2, first limit position;3, second feeding shell;4, second limit position;5, top plate;
[0033] 6, feeding assembly;601, track;602, adsorption platform;a, fixed seat;B, sliding rod;C, suction head;D, air nozzle;
[0034] 7, feeding connecting assembly;701, cam;702, longitudinal slide rail;703, transverse slide rail;704, sliding block;705, panel;706, frame;707, slot;708, stand;
[0035] 8, cutting assembly;801, upper movable block;802, fixed block;803, inclined surface;804, lower pressing block;805, lower movable block;806, guide column;807, spring;808, positioning needle;809, positioning seat;810, power source;811, guide hole;812, guide column;
[0036] 9, driving assembly;901, driver;902, connecting block;903, deviation rectifying needle. DETAILED DESCRIPTION
[0037] The utility model will be described in further detail below in combination with the drawings and embodiments. It can be understood that the specific embodiments described herein are merely used to explain the utility model and not to limit the utility model. In addition, it should be noted that only the parts related to the utility model are shown in the drawings for ease of description, not all the structures.
[0038] In the description of the utility model, unless otherwise explicitly specified and limited, the terms "connected", "connected", "fixed" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or it can be integrated; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the communication between two elements or the interaction relationship between two elements. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.
[0039] In the utility model, unless otherwise explicitly specified and limited, the "upper" or "lower" of the first feature to the second feature can include that the first and second features are in direct contact, or the first and second features are not in direct contact but are in contact through another feature between them. Moreover, the "upper", "upper" and "upper" of the first feature to the second feature include that the first feature is directly above and obliquely above the second feature, or only indicates that the horizontal height of the first feature is higher than that of the second feature. The "below", "below" and "below" of the first feature to the second feature include that the first feature is directly below and obliquely below the second feature, or only indicates that the horizontal height of the first feature is less than that of the second feature.
[0040] In the description of the embodiment, the terms "upper", "lower", "left", "right" and other orientation or position relationship are based on the orientation or position relationship shown in the drawings, only for the convenience of description and simplification of operation, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, therefore, it cannot be understood as a limitation of the utility model.
[0041] In the description of the utility model, unless otherwise stated, the meaning of "a plurality of" is two or more. In addition, the terms "first", "second" are only used to distinguish in the description, and have no special meaning.
[0042] In one embodiment of the utility model, Figures 1-7As shown, a communication interface accessory clamping mechanism is provided, comprising: a first feeding shell 1, a first limit position 2, a second feeding shell 3, a second limit position 4, and a feeding assembly 6. The first feeding shell 1 is used to transport accessory one; the first limit position 2 is arranged at the discharge end of the first feeding shell 1; the second feeding shell 3 is arranged at the side of the first feeding shell 1, and is used to transport accessory two; the second limit position 4 is arranged at the discharge end of the second feeding shell 3; a top plate 5 is arranged on the second limit position 4 in a reciprocating manner along the vertical direction of the second limit position 4, and is used to lift accessory two; and the feeding assembly 6 comprises a track 601 and an adsorption platform 602, the track 601 is arranged between the first feeding shell 1 and the second feeding shell 3, both ends of the track 601 extend along the direction of the first limit position 2 and the direction of the second limit position 4 respectively, and the adsorption platform 602 is slidingly installed on the track 601 and reciprocates along the track 601 to the first limit position 2 and the second limit position 4.
[0043] The communication interface accessory clamping mechanism provided by the embodiment has the advantages that: the track 601 is arranged between the first feeding shell 1 and the second feeding shell 3 to form a connection channel, and the adsorption platform 602 adsorbs accessory one at the first limit position 2 and reciprocates along the track 601 between the first limit position 2 and the second limit position 4 flexibly, so that the position conversion of accessory one during the whole feeding process is smooth and can be controlled accurately, and the coherence and consistency of the feeding and assembly processes are ensured; and the top plate 5 is arranged on the second limit position 4 in a reciprocating manner along the vertical direction of the second limit position 4, so that accessory two can be lifted to a suitable height in time after being transported to the discharge end of the second feeding shell 3, the position of accessory two is adjusted in time after being discharged to facilitate subsequent assembly, and then the clamping work of accessory one and accessory two is completed smoothly.
[0044] The working process of the communication interface accessory clamping mechanism provided by the embodiment is as follows: the first feeding shell 1 transports accessory one to the first limit position, the adsorption platform 602 moves vertically along one end of the track 601 to the first limit position 2 and adsorbs accessory one, the adsorption platform 602 with accessory one moves vertically along the other end of the track 601, and at the same time, the top plate 5 moves upward to press against accessory two to the second limit position 4, the adsorption platform 602 with accessory one continues to move vertically along the other end of the track 601 to the second limit position 4, so that the top plate 5 and the adsorption platform 602 are pressed together, and accessory one and accessory two are clamped.
[0045] To ensure the guiding of the adsorption platform 602 reciprocating along the track 601 to the first limit position 2 and the second limit position 4. The accessory buckling mechanism of the communication interface further comprises a feeding connection assembly 7 arranged between the track 601 and the adsorption platform 602.
[0046] Specifically, the feeding connection assembly 7 comprises a cam 701, a longitudinal slide rail 702, a transverse slide rail 703 and a sliding block 704. The middle part of the track 601 is higher than the two ends of the track 601, and the shape of the track 601 is formed by the active track of the protruding end of the cam 701 rotating around the center. The axial direction of the longitudinal slide rail 702, the vertical direction of the first limit position 2 and the vertical direction of the second limit position 4 are parallel to each other, one end of the longitudinal slide rail 702 is rotatably connected to the protruding end of the cam 701, and the end of the longitudinal slide rail 702 away from the cam 701 is fixedly provided with the adsorption platform 602. The axial direction of the transverse slide rail 703 is perpendicular to the axial direction of the longitudinal slide rail 702 at each movement position, the transverse slide rail 703 is fixedly arranged at the bottom of the longitudinal slide rail 702, and the transverse slide rail 703 and the longitudinal slide rail 702 are slidably connected through the sliding block 704. The longitudinal slide rail 702 slides along the protruding end of the cam 701 and the transverse slide rail 703.
[0047] The shape of the track 601 is formed by the active track of the protruding end of the cam 701, and the middle part of the track 601 is higher than the two ends of the track 601, so that the middle part of the track 601 has a height difference with the two ends of the track 601, and the rotational movement of the cam 701 is accurately converted into the reciprocating movement of the adsorption platform 602 along the first limit position 2 and the second limit position 4. Thus, the movement speed, residence time and other movement characteristics of the adsorption platform 602 at different positions can be flexibly controlled to meet the rhythm and accuracy requirements of different process stages in the buckling process of the accessory one and the accessory two, and to ensure that the material belt can be accurately aligned and stably connected during the buckling operation, thereby effectively improving the quality and efficiency of the buckling of the accessory one and the accessory two. When the adsorption platform 602 moves from one end of the track 601 to the middle part, the slope potential energy generated by the height difference gradually accelerates; after moving to the highest part of the middle, it begins to decelerate and reverse due to the influence of gravity, thereby forming a reciprocating movement cycle. Preferably, a driving source such as a motor can be installed to drive the cam 701 to rotate, realizing the automatic movement function of the adsorption platform 602.
[0048] Further, the feeding connection assembly 7 further comprises a panel 705, a frame body 706, and a slot 707. The panel 705 covers the open end of the frame body 706, and the slot 707 is arranged on the surface of the panel 705. The cam 701 is arranged inside the frame body 706, and a driving source is fixed to the side of the frame body 706. The driving end of the driving source extends into the frame body 706 and is connected with the cam 701. The cam end of the cam 701 penetrates through the slot 707 and is movably and rotatably connected with the longitudinal slide rail 702. Preferably, the feeding connection assembly 7 further comprises a stand 708, which can be mounted and supported on the lower end of the frame body 706 or mounted and supported on the first feeding shell 1 and the second feeding shell 3.
[0049] The driving source drives the cam 701 to stably rotate around the axis in the frame body 706, so that the protruding end of the cam 701 reciprocates along a specific trajectory curve within the range defined by the slot 707. Thus, the slot 707 forms the track 601. In this way, the rotational power of the power source 810 is effectively converted into the linear reciprocating motion of the longitudinal slide rail 702, which in turn drives the adsorption platform 602 to stably, accurately, and periodically reciprocate along the first limit position 2 and the second limit position 4. This ensures that the adsorption platform 602 can efficiently complete the material belt conveying and clamping action according to the preset motion path and rhythm during the clamping process of the first accessory and the second accessory, thereby improving the automation degree and operation accuracy of the overall production process.
[0050] The working process of the accessory clamping mechanism for the communication interface provided in the embodiment is as follows: driving the driving source, the driving source driving the cam 701, the cam 701 driving the cam end, the cam end driving the adsorption platform 602 on the longitudinal slide rail 702 to reciprocate along the slot 707 and the transverse slide rail 703, i.e., along the track 601 and the transverse slide rail 703 between the first limit position 2 and the second limit position 4.
[0051] Preferably, the adsorption platform 602 can be customized to a suitable size according to the user's needs to adsorb the first accessory, preventing the first accessory from deviating or falling during movement and improving the movement stability of the first accessory. In the embodiment, the adsorption platform 602 comprises a fixed seat a, a slide rod b, a suction head c, and an air nozzle d. The fixed seat a is positioned on the longitudinal slide rail 702. The slide rod b is slidably arranged on the fixed seat a. When the slide rod b is installed, a resilient member such as a spring 807 can be added to jointly connect with the fixed seat a, thereby increasing the damping effect of the slide rod b. The inside of the slide rod b is hollow, the suction head c is installed at the bottom of the slide rod b, and the air nozzle d is installed at the head of the slide rod b. The inside of the slide rod b, the suction head c, and the air nozzle d are in communication with each other. In use, the air nozzle d is connected with the vacuum pump body, and at this time the suction head c has suction force to adsorb the first accessory.
[0052] The negative pressure airflow is generated by the connection of the vacuum pump body and the air nozzle d, so that a stable suction force is formed at the suction head c, realizing precise and reliable adsorption and grabbing of the accessories one with different shapes, sizes and materials. With the elastic buffering effect of the spring 807 between the sliding rod b and the fixed seat a, the position disturbance of the adsorption platform 602 caused by vibration, collision and other factors during movement is effectively reduced, so as to ensure the stability and precision of the accessories one during the whole movement and transmission process, and also ensure the smooth progress of the subsequent assembly process of the accessories one and the accessories two.
[0053] In order to drive the top plate 5 to lift and support the accessories two, the accessory assembly mechanism for the communication interface further comprises a driving assembly 9 arranged at the second limit position 4.
[0054] Specifically, the driving assembly 9 comprises a driver 901 and a connecting block 902, the driver 901 is fixedly arranged at the bottom of the second feeding shell 3, the connecting block 902 is arranged at the lifting end of the driver 901, and the top plate 5 is fixedly arranged at the top surface of the connecting block 902. By arranging the driver 901 to drive the connecting block 902, and then driving the top plate 5 to timely lift the accessories two to a suitable height, the position of the accessories two is adjusted in time after discharging, so as to realize subsequent assembly work. The smoothness and precision of the discharge and assembly connection of the accessories two in the assembly process of the accessories one and the accessories two are improved, the assembly jamming or defects caused by the untimely or inaccurate position adjustment of the accessories two are effectively reduced, the automation work efficiency and production stability of the whole accessory assembly mechanism are enhanced, the demand for manual intervention and potential quality risk hidden danger are reduced, and the production efficiency and product quality consistency are significantly improved.
[0055] Preferably, the top plate 5 can be a long rounded rectangle. The edge design of the long rounded rectangular top plate 5 can effectively avoid sharp collision interference with the surrounding components during lifting of the accessories two, so that the accessories two are more uniformly stressed and move more smoothly when being lifted, realizing more stable and precise position adjustment and support of the accessories two, so as to ensure the smooth progress of the subsequent assembly process with the accessories one. Of course, in some embodiments, the top plate 5 can also be square or circular.
[0056] Specifically, the driving assembly 9 further comprises a deviation rectifying needle 903 fixed on the connecting block 902, and the connecting block 902 is used to match the matching hole on the second accessory. Preferably, the deviation rectifying needle 903 can be symmetrically arranged on the connecting block 902, and the distance between the two deviation rectifying needles 903 can be adjusted according to the position of the matching hole. By arranging two or more deviation rectifying needles 903, the deviation rectifying needle 903 can be connected with multiple matching holes during the lifting movement of the driver 901, so that the second accessory can be quickly and accurately positioned and oriented during the lifting process by the top plate 5. The deviation rectifying needle 903 and the matching hole can effectively prevent the second accessory from deviating in angle or transversely moving, realize high-precision correction and stable support of the discharging position of the second accessory, and ensure accurate docking in the subsequent assembly process with the first accessory.
[0057] In order to cut off the waste material on the first accessory, the accessory buckling mechanism for the communication interface further comprises a material cutting assembly 8 arranged on the first limit position 2.
[0058] Specifically, the material cutting assembly 8 comprises an upper movable block 801, a fixed block 802 and a pressing block 804. The upper movable block 801 is fixedly arranged on the bottom of the first limit position 2. The fixed block 802 is fixedly arranged on the side of the first limit position 2, and a gap is left between the fixed block 802 and the upper movable block 801, which is flush with the bottom of the first limit position 2. The pressing block 804 is arranged in the upper movable block 801, and the pressing block 804 reciprocatingly extends and retracts along the upper movable block 801 towards the first limit position 2.
[0059] The reserved gap provides a cutting space for the waste material of the first accessory. When the gap is flush with the bottom of the first limit position 2, the boundary between the gap and the first limit position 2 is the dividing line between the effective part and the waste part of the first accessory. When the pressing block 804 lifts the first accessory by ascending along the upper movable block 801 towards the first limit position 2, the waste part is clamped under the fixed block 802, and the pressing block 804 continues to ascend. Since the waste part is blocked by the fixed block 802 and cannot move upward, the relative shearing force between the pressing block 804 and the fixed block 802 gradually increases, so that the waste part is separated from the main part of the first accessory along the preset cutting line. The pressing block 804 cooperates with the adsorption platform 602 during the ascending process to clamp the first accessory together, and then the pressing block 804 descends, and the first accessory is adsorbed by the adsorption platform 602. The waste material on the first accessory can be accurately and efficiently cut off when passing through this area, and the waste material of the first accessory is cleaned, so that the shape and size of the first accessory meet the requirements in the subsequent buckling process of the first accessory and the second accessory, and the overall quality and stability of product assembly are improved.
[0060] Preferably, the upper end of the fixed block 802 is an inclined surface 803 in the opposite direction of the movement of the adsorption platform 602, which can avoid the moving adsorption platform 602, so that the adsorption platform 602 does not collide with the fixed block 802 during the reciprocating movement, even if it is close to the cutting assembly 8, ensuring the smoothness and stability of the equipment operation.
[0061] The cutting assembly 8 further comprises a lower movable block 805, a guide column 806 and a spring 807. The lower movable block 805 is movably arranged at the bottom of the upper movable block 801 in the direction of the upper movable block 801, and a gap is left between the upper movable block 801 and the lower movable block 805. The guide column 806 passes through the gap from the lower movable block 805 and is fixed in the upper movable block 801, and the spring 807 is sleeved on the guide column 806. The pressing block 804 is fixed on the lower movable block 805.
[0062] The cutting assembly 8 further comprises a positioning seat 809 and a power source 810. The upper movable block 801 and the lower movable block 805 can be sequentially installed in the positioning seat 809, and the power source 810 is fixed at the bottom of the positioning seat 809. The power end of the power source 810 is connected with the lower movable block 805, and the power source 810 is used to drive the lower movable block 805 to move in the positioning seat 809.
[0063] The lower movable block 805 is driven by the power source 810 to move upward in the positioning seat 809, so that the lower movable block 805 drives the pressing block 804 fixed thereon to rise synchronously. During the rising process, the spring 807 sleeved on the guide column 806 is compressed. When the pressing block 804 contacts with the waste part of the accessory one and continues to rise, the elastic force of the spring 807 and the driving force of the power source 810 jointly act, so that the pressing block 804 exerts a stable and controllable pressure on the waste material, realizing the precise cutting of the waste material. The buffering effect of the spring 807 can effectively avoid the damage to the main body of the accessory one caused by the unstable output force of the power source 810, ensuring the stability and reliability of the cutting process. At the same time, the guide column 806 provides accurate guidance for the upward and downward movement of the lower movable block 805, ensuring that the pressing block 804 always moves along the predetermined straight line, improving the precision and quality of the cutting.
[0064] Further, when the adsorption platform 602 moves to the first limit position 2, the adsorption platform 602 in the embodiment is provided with a guide column 812, and a guide hole 811 is arranged on the positioning seat 809. When the adsorption platform 602 moves to the positioning seat 809, the guide column 812 cooperates with the guide hole 811, improving the positioning accuracy and stability of the movement of the adsorption platform 602 to the cutting assembly 8.
[0065] The cutting assembly 8 further comprises a positioning needle 808 fixed in the lower movable block 805, the fixed block 802 is provided with a through hole for inserting the positioning needle 808, and the positioning needle 808 passes through the gap from the lower movable block 805 to the through hole of the fixed block 802. Through the precise insertion of the positioning needle 808 and the through hole of the fixed block 802, the lower movable block 805 can be more accurately positioned and guided during the rising process, effectively preventing the lower movable block 805 from deviating or shaking due to factors such as power transmission or mechanical structure gap, realizing high-precision constraint of the movement track of the lower movable block 804, and ensuring that the waste material is stably and accurately cut off during cutting, greatly improving the working precision and reliability of the cutting assembly 8, ensuring the processing quality of the first accessory during the buckling process of the first accessory and the second accessory, and reducing subsequent assembly problems caused by cutting errors.
[0066] The above is only a preferred embodiment of the present application, and does not limit the present application in any form. Although the present application is disclosed as above in a preferred embodiment, it is not intended to limit the present application. Any skilled person in the art can make some changes or modifications to the above disclosed technical content without departing from the scope of the present application, and any simple modification, equivalent change and modification of the above embodiment within the scope of the present application are all within the scope of the present application.
Claims
1. A fitting clamping mechanism for a communication interface, characterized by comprising: The application relates to a feeding device for feeding accessories, which comprises the following parts: a first feeding shell for feeding accessories I; a first limit position arranged at the discharging end of the first feeding shell; a second feeding shell arranged at the side of the first feeding shell, which is used for feeding accessories II; a second limit position arranged at the discharging end of the second feeding shell; a top plate arranged on the second limit position and capable of reciprocating along the vertical direction of the second limit position, which is used for lifting accessories II; a feeding assembly, which comprises a track and an adsorption platform, the track is arranged between the first feeding shell and the second feeding shell, the two ends of the track extend along the direction of the first limit position and the direction of the second limit position respectively, the adsorption platform is slidingly installed on the track, and the adsorption platform reciprocates along the track to the first limit position and the second limit position.
2. The mating mechanism for a communication interface according to claim 1, wherein The feeding device further comprises a feeding connecting assembly arranged between the track and the adsorption platform, which is used for guiding the adsorption platform to reciprocate along the track to the first limit position and the second limit position.
3. The mating mechanism for a communication interface accessory of claim 2, wherein, The feeding connecting assembly comprises a cam, a longitudinal slide rail, a transverse slide rail and a slide block, the middle part of the track is higher than the two ends of the track, the shape of the track is formed by the active track of the protruding end of the cam rotating around the center, the axial direction of the longitudinal slide rail is parallel to the vertical direction of the first limit position and the vertical direction of the second limit position, one end of the longitudinal slide rail is connected to the protruding end of the cam in a rotatable manner, the axial direction of the transverse slide rail is perpendicular to the axial direction of the longitudinal slide rail in each movement position, the transverse slide rail is fixed to the bottom of the longitudinal slide rail, the slide block is connected between the transverse slide rail and the longitudinal slide rail, the longitudinal slide rail slides along the protruding end of the cam and the transverse slide rail, and the adsorption platform is fixed to one end of the longitudinal slide rail away from the cam.
4. The mating mechanism for a communication interface according to any one of claims 1 to 3, wherein The feeding device further comprises a cutting assembly arranged on the first limit position, which is used for cutting off the waste on accessories I.
5. The mating mechanism for a communication interface according to claim 4, wherein The cutting assembly comprises an upper movable block, a fixed block and a lower pressing block, the upper movable block is fixed to the bottom of the first limit position, the fixed block is fixed to the side of the first limit position, a gap is left between the fixed block and the upper movable block, the gap is flush with the bottom of the first limit position, the lower pressing block is arranged in the upper movable block and reciprocates along the upper movable block to the first limit position.
6. The mating mechanism for a communication interface according to claim 5, wherein The cutting assembly further comprises a lower movable block, a guide column and a spring, the lower movable block is arranged on the bottom of the upper movable block in a movable manner along the direction of the upper movable block, a space is left between the upper movable block and the lower movable block, the guide column passes through the space from the lower movable block and is fixed in the upper movable block, the spring is sleeved on the guide column, and the lower pressing block is fixed to the lower movable block.
7. The mating mechanism for a communication interface according to claim 6, wherein The cutting assembly further comprises a positioning needle fixed in the lower movable block, a through hole for inserting the positioning needle is arranged on the fixed block, and the positioning needle passes through the space and penetrates the upper movable block to the through hole.
8. The mating mechanism for a communication interface according to any one of claims 1 to 3, wherein A driving assembly is further arranged at the second limit position, and the driving assembly is used for driving the top plate to lift and support the accessory two.
9. The mating mechanism for a communication interface according to claim 8, wherein The driving assembly comprises a driver and a connecting block, the driver is fixed to the bottom of the second feeding shell, the connecting block is arranged on the lifting end of the driver, and the top plate is fixed to the top surface of the connecting block.
10. The mating mechanism for a communication interface according to claim 9, wherein The driving assembly further comprises a deviation correcting needle, the deviation correcting needle is fixed to the connecting block, and the connecting block is used for matching the matching hole on the accessory two.