Accessory assembling mechanism of communication interface
By coordinating the movement of the rotary table and automated components, high-precision automated assembly of communication interface parts is achieved, solving the problems of low accuracy and slow speed of manual assembly, and improving production efficiency and quality.
Patent Information
- Application Number
- CN202520270270.8
- 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 current assembly of communication interface components relies on manual methods, resulting in low precision and slow speed, which affects production efficiency and quality stability.
The system employs automated equipment such as a rotary worktable, cutting components, feeding shell, clamping components, and adsorption components. Through the coordinated movement of the positioning rod and the mounting position, it achieves precise positioning and cutting of parts, enabling automated and high-precision assembly.
It improved the assembly accuracy and speed of communication interface components, reduced human error, and enhanced production quality and efficiency.
Smart Images

Figure CN223613426U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to communication interface accessory assembling technical field, specifically is a kind of accessory assembling mechanism of communication interface. BACKGROUND
[0002] In the field of electronic equipment accessory production, as a kind of key component, its accessory assembling link occupies the core position in the whole production process. With the rapid development of science and technology and the continuous rise of market demand for electronic product refinement and high performance, the production of communication interface is facing unprecedented challenges and opportunities.
[0003] The existing communication interface accessory assembling still has the following problems: traditional communication interface accessory assembling often adopts manual mode, however, this mode has certain limitation, manual operation is difficult to maintain high accuracy, and it is easy to cause slight deviation of assembling accuracy, which affects the stability of performance and quality of communication interface. Moreover, manual assembling rate is relatively slow, which may cause production cycle to be prolonged and production efficiency to be reduced.
[0004] Therefore, a kind of accessory assembling mechanism of communication interface is needed to solve the above problems. UTILITY MODEL CONTENT
[0005] Based on the above, the purpose of the utility model is to provide an accessory assembling mechanism of communication interface to solve the problems of low manual assembling accuracy and low rate.
[0006] In order to solve the above technical problems, the utility model adopts the following technical scheme:
[0007] An accessory assembling mechanism of communication interface comprises:
[0008] Rotary workbench, the rotary workbench can rotate;
[0009] Cutting assembly, including cutting port, positioning rod and cutting plate, the cutting port is installed in the side of the rotary workbench along the edge of the rotary workbench, the positioning rod is vertically reciprocatingly arranged on the upper end of the positioning rod along the cutting port, and the cutting plate is vertically reciprocatingly arranged on the lower end of the cutting port along the cutting port;
[0010] Feeding shell, including shell and opening, the shell is hollow structure, the shell is arranged in the side of the rotary workbench, the opening is arranged in the side of the shell, and the opening extends along the opposite side of the opening of the shell, the opening is installed in the side of the rotary workbench along the edge of the rotary workbench, and the shell is used to carry accessory two;
[0011] The buckle assembly comprises a buckle plate and a top plate, the buckle plate is vertically reciprocatingly arranged at the upper end of the opening, and the top plate is vertically reciprocatingly arranged at the lower end of the opening.
[0012] The installation position is arranged on the table surface of the rotating workbench, and sequentially passes through the cutting opening and the opening during rotation of the rotating workbench, and is used for carrying the accessory one.
[0013] As a preferred scheme of the accessory assembly mechanism of the communication interface, the top of the cutting plate is provided with a protective plate, and there is a gap between the protective plate and the cutting plate, and the communication interface accessory carried by the installation position passes through the gap during rotation of the rotating workbench.
[0014] As a preferred scheme of the accessory assembly mechanism of the communication interface, the rectification needle is arranged at the lower end of the opening, and the rectification needle is vertically reciprocatingly arranged to insert and rectify the hole on the accessory one and the positioning hole on the accessory two.
[0015] As a preferred scheme of the accessory assembly mechanism of the communication interface, the rectification needle is arranged at the lower end of the opening, and the rectification needle is vertically reciprocatingly arranged to insert and rectify the hole on the accessory one and the positioning hole on the accessory two.
[0016] As a preferred scheme of the accessory assembly mechanism of the communication interface, the rectification needle is arranged at the lower end of the opening, and the rectification needle is vertically reciprocatingly arranged to insert and rectify the hole on the accessory one and the positioning hole on the accessory two.
[0017] As a preferred scheme of the accessory assembly mechanism of the communication interface, the rectification needle is arranged at the lower end of the opening, and the rectification needle is vertically reciprocatingly arranged to insert and rectify the hole on the accessory one and the positioning hole on the accessory two.
[0018] As a preferred scheme of the accessory assembly mechanism of the communication interface, the rectification needle is arranged at the lower end of the opening, and the rectification needle is vertically reciprocatingly arranged to insert and rectify the hole on the accessory one and the positioning hole on the accessory two.
[0019] The preferred scheme of the accessory assembling mechanism as a communication interface further comprises a positioning assembly arranged on the shell, and the positioning assembly is used for repeatedly correcting and fixing the material belt.
[0020] The preferred scheme of the accessory assembling mechanism as a communication interface, the positioning assembly comprises a slot and a needle body, the slot is arranged on the shell, the slot is deep to the inside of the shell, and the needle body is reciprocatingly arranged on the shell in the direction perpendicular to the slot, and the needle body is used for penetrating the slot and inserting into each matching hole on the conveying material belt in the shell.
[0021] The preferred scheme of the accessory assembling mechanism as a communication interface, the bottom of the rotating workbench is provided with a position sensor, and the bottom surface of the rotating workbench is provided with a sensing sheet, and the sensing sheet sweeps the sensing end of the position sensor when the rotating workbench rotates.
[0022] The accessory assembling mechanism of the communication interface has the beneficial effects that: one accessory is transported through the mounting position, another accessory is transported through the material belt, the positioning rod and the mounting position vertically reciprocate along the upper and lower ends of the cutting opening, the clamping plate and the top plate vertically reciprocate along the upper and lower ends of the opening, the mounting position sequentially passes through the cutting opening and the opening when the rotating workbench rotates, the accessory on the mounting position is accurately positioned and cut through the coordinated movement of the positioning rod and the mounting position, the size and shape of the accessory meet the assembly requirements, the accessory on the mounting position is pressed onto the accessory on the material belt through the vertical reciprocation of the clamping plate and the top plate when the mounting position rotates to the opening, the product after assembly can be transported to the next process along with the material belt, the accessory is processed and formed, and the accessories are automatically and accurately assembled, the precision, speed and consistency of the communication interface accessory assembly are improved, the error and cost caused by manual assembly are reduced, and the quality and efficiency of the overall production of the communication interface are improved. BRIEF DESCRIPTION OF DRAWINGS
[0023] Figure 1 The first direction overall structure schematic view of the accessory assembling mechanism of the communication interface is provided in the utility model;
[0024] Figure 2 The second direction overall structure schematic view of the accessory assembling mechanism of the communication interface is provided in the utility model;
[0025] Figure 3 The first direction cross-sectional view of the accessory assembling mechanism of the communication interface is provided in the utility model;
[0026] Figure 4 The first direction cross-sectional view of the accessory assembling mechanism of the communication interface is provided in the utility model; Figure 3A local enlarged schematic view of the middle A;
[0027] Figure 5 A second direction sectional view of the accessory assembling mechanism of the communication interface provided by the utility model;
[0028] Figure 6 A Figure 3 A local enlarged schematic view of the middle B;
[0029] Figure 7 An explosion view of the installation position of the accessory assembling mechanism of the communication interface provided by the utility model.
[0030] Wherein, the reference signs in the drawing are:
[0031] 1, rotary table; 101, driver; 102, turntable;
[0032] 2, cutting assembly; 201, cutting opening; 202, positioning rod; 203, cutting plate;
[0033] 3, feeding shell; 301, shell; 302, opening;
[0034] 4, buckling assembly; 401, buckling plate; 402, top plate; a, sliding rod body; b, sliding block;
[0035] 5, protection plate; 6, deviation correcting needle;
[0036] 7, adsorption assembly; 701, vacuum power source; 702, platform main body; 703, pipeline; 704, air hole;
[0037] 8, driving movement assembly; 801, vertical plate; 802, transverse plate; 803, track; 804, fastener; 805, stand; 806, fixed plate; 807, power device; 808, buckling plate; 809, slide; 810, vertical vertical hole;
[0038] 9, positioning assembly; 901, slot; 902, needle body;
[0039] 10, position sensor; 11, induction sheet; 12, support;
[0040] 13, first driving assembly; 1301, driving source; 1302, sliding block;
[0041] 14, mounting plate; 15, positioning plate; 16, driving element;
[0042] 18, installation position; 1801, positioning block; 1803, limiting block;
[0043] 20, stand; 21, connecting block; 22, accessory one; 23, accessory two. DETAILED DESCRIPTION
[0044] 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 only used to explain the utility model, and not to limit the utility model. In addition, it should be noted that, in order to facilitate the description, only the part related to the utility model is shown in the drawings, not all structures.
[0045] 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 internal communication of two elements or the interaction relationship of 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.
[0046] In the utility model, unless otherwise explicitly specified and limited, the first feature is "on" or "below" the second feature, which 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 first feature "on", "above" and "above" the second feature includes 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 first feature "below", "below" and "below" the second feature includes 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.
[0047] In the description of the embodiment, the terms "up", "down", "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 particular orientation, be constructed and operated in a particular orientation, therefore it cannot be understood as a limitation of the utility model.
[0048] In the description of the utility model, unless otherwise specified, 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.
[0049] In one embodiment of the utility model, as Figures 1-7As shown, the assembly mechanism of the accessory of the communication interface is provided, comprising: a rotating workbench 1, a feeding shell 3, a buckling assembly 4, a cutting assembly 2 and a mounting position 18. The rotating workbench 1 can rotate; the cutting assembly 2 comprises a cutting opening 201, a positioning rod 202 and a cutting plate 203, the cutting opening 201 is installed on the side of the rotating workbench 1 along the edge of the rotating workbench 1, the positioning rod 202 is vertically reciprocatingly arranged at the upper end of the positioning rod 202 along the cutting opening 201, and the cutting plate 203 is vertically reciprocatingly arranged at the lower end of the cutting opening 201 along the cutting opening 201; the feeding shell 3 comprises a shell 301 and an opening 302, the shell 301 is a hollow structure, the shell 301 is arranged on the side of the rotating workbench 1, the opening 302 is arranged on the side of the shell 301, and the opening 302 extends along the opposite side of the shell 301, the opening 302 is installed on the side of the rotating workbench 1 along the edge of the rotating workbench 1, and the shell 301 is used for carrying the accessory two 23; the buckling assembly 4 comprises a buckling plate 401 and a top plate 402, the buckling plate 401 is vertically reciprocatingly arranged at the upper end of the opening 302 along the opening 302, and the top plate 402 is vertically reciprocatingly arranged at the lower end of the opening 302 along the opening 302; the mounting position 18 is arranged on the table surface of the rotating workbench 1, the mounting position 18 rotates with the rotating workbench 1 and sequentially passes through the cutting opening 201 and the opening 302, and the mounting position 18 is used for carrying the accessory one 22.
[0050] The assembly mechanism of the accessory of the communication interface provided by the embodiment transports one accessory through the mounting position 18, transports another accessory through the material belt, and vertically reciprocatingly moves the positioning rod 202 and the mounting position 18 along the upper and lower ends of the cutting opening 201 respectively, and vertically reciprocatingly moves the buckling plate 401 and the top plate 402 along the upper and lower ends of the opening 302 respectively, and then rotates the mounting position 18 with the rotating workbench 1 to sequentially pass through the cutting opening 201 and the opening 302, so that the accessory on the mounting position 18 is accurately positioned and cut through the coordinated movement of the positioning rod 202 and the mounting position 18, to ensure that the size and shape meet the assembly requirements; when the mounting position 18 rotates with the rotating workbench 1 to the opening 302, the vertical reciprocating movement of the buckling plate 401 and the top plate 402 presses the accessory on the mounting position 18 to the accessory on the material belt, and the product after assembly can be transported to the next process with the material belt; the processing and forming of the accessory and the automatic high-precision assembly between the accessories are realized, the precision, speed and consistency of the assembly of the communication interface accessory are effectively improved, the errors and costs caused by manual assembly are reduced, and the quality and efficiency of the overall production of the communication interface are improved.
[0051] The assembling process of the assembling mechanism of the communication interface accessory assembling mechanism of the embodiment is as follows: the accessory one 22 is placed in the mounting position 18, the mounting position 18 rotates with the rotating workbench 1 to the cutting opening 201, the positioning rod 202 first descends to the accessory one 22 on the mounting position 18 and cooperates with the mounting position 18 to press the accessory one 22, and then the cutting plate 203 punches upward until the waste is punched down; after that, the mounting position 18 rotates with the workbench to the opening 302, the buckling plate 401 is pressed downward to the upper top surface of the material belt, and then the top plate 402 lifts the accessory to the lower bottom surface of the material belt, and the top plate 402 continuously lifts and cooperates with the buckling plate 401 to press the accessory one 22 to the accessory two 23 on the material belt.
[0052] Preferably, the rotating workbench 1 is provided with a lower mounting support 12, the rotating workbench 1 comprises a driver 101 and a rotating disc 102, the driver 101 is fixedly arranged on the rotating disc 102, and the mounting position 18 is located on the rotating disc 102. By arranging the support 12, the rotating workbench 1 is supported. The driver 101 can be composed of an electric machine, and the model of the electric machine can be selected according to the needs of the enterprise. In the embodiment, a concentric rotation is selected, and the model of the electric machine is selected on the side surface.
[0053] Specifically, the mounting plate 14 is vertically arranged on the support 12, the cutting opening 201 is arranged on the mounting plate 14, the first driving assembly 13 for driving the positioning rod 202 and the cutting plate 203 to make vertical reciprocating motion along the punching opening is arranged on the mounting plate 14, the first driving assembly 13 comprises a driving source 1301 and a sliding block 1302, the driving source 1301 is located on the mounting plate 14, the driving source 1301 can be composed of a pneumatic cylinder, the sliding block 1302 is arranged on the driving end of the driving source 1301, the sliding block 1302 is provided with a through hole, and the positioning rod 202 is arranged in the through hole. The driving source 1301 drives the sliding block 1302 to make pressing motion along the direction of the accessory one 22, and the punching plate punches off the waste along the upper end of the accessory one 22.
[0054] Meanwhile, the support 12 can also be arranged on the bottom surface of the shell 301 to support the shell 301, and the height of the support 12 can also be set according to the mounting height of the accessory.
[0055] Preferably, the bottom of the rotating workbench 1 is provided with a position sensor 10, the bottom surface of the rotating workbench 1 is provided with a sensing sheet 11, and the sensing sheet 11 sweeps the sensing end of the position sensor 10 when the rotating workbench 1 rotates. Through the cooperation of the position sensor 10 and the sensing sheet 11, the real-time rotation angle of the rotating workbench 1 can be accurately determined, which helps to improve the accuracy of the buckling work of the accessory one 22 and the accessory two 23.
[0056] Preferably, the top of the cutting plate 203 is provided with a protective plate 5, and the protective plate 5 is spaced apart from the cutting plate 203, and the communication interface product loaded on the mounting position 18 rotates through the space along with the rotating workbench 1. The installation of the protective plate 5 can prevent waste from splashing, facilitate the centralized treatment of waste, and improve the cleaning convenience of the mechanism.
[0057] The accessory assembling mechanism of the communication interface further comprises a positioning plate 15, a driving element 16 and a slide rod body a for driving the top plate 402 to perform a pressing movement, the positioning plate 15 is fixed to the lower end of the opening 302, the positioning plate 15 has a guiding slide rail edge therein, the slide rod body a is installed in the positioning plate 15 and penetrates out of the positioning plate 15, and the slide rod body a is in sliding cooperation with the slide rail edge.
[0058] Further, the mounting position 18 comprises a positioning block 1801, a sliding block b and a limiting block 1803, the positioning block 1801 is fixed to the rotating workbench 1, the limiting block 1803 is fixed to the bottom of the positioning block 1801, there is a movable space between the limiting block 1803 and the positioning block 1801, the sliding block b penetrates into the movable space from the top surface of the positioning block 1801 and the top surface of the limiting block 1803, and the end of the sliding block b close to the top surface of the limiting block 1803 extends out of the limiting block 1803.
[0059] In the embodiment, the top plate 402 can be composed of the slide rod body a and the sliding block b, and the specific fastening working process of the accessory one 22 and the accessory two 23 is as follows: the driving element 16 is driven, the driving element 16 drives the slide rod body a to slide along the slide rail edge, the slide rod body a penetrates through the positioning plate 15 and contacts the end of the sliding block b extending out of the limiting block 1803, and the accessory one 22 is pressed on the top plate 402, so that the accessory one 22 is fastened and cooperated with the accessory two 23.
[0060] The accessory assembling mechanism of the communication interface further comprises a deviation rectifying needle 6, which is arranged at the lower end of the opening 302, and performs vertical reciprocating movement along the opening 302 to insert and rectify the hole position on the accessory one 22 and the positioning hole position on the accessory two 23.
[0061] Specifically, the first driving assembly 13 can also be used to drive the deviation rectifying needle 6 to perform the insertion and rectification movement, and the hole diameter of the through hole can be moderately adjusted according to the diameter of the deviation rectifying needle 6, and the specific installation mode is as follows: the driving source 1301 is positioned at the lower end of the opening 302, the sliding block 1302 is installed at the driving end of the driving source 1301, the sliding block 1302 is provided with a through hole, and the deviation rectifying needle 6 is installed in the through hole, the driving source 1301 drives the sliding block 1302 to drive the deviation rectifying needle 6 to penetrate through the hole position on the accessory one 22 in the direction of the accessory one 22, and the top plate 402 presses the accessory one 22, so that the accessory one 22 is transported stably, and further, when the deviation rectifying needle 6 and the top plate 402 together press the accessory one 22 to the lower side of the material belt, the fastening plate 401 can be used to perform the fastening action of the accessory one 22 and the accessory two 23.
[0062] The assembling mechanism of the accessory of the communication interface further comprises an adsorbing assembly 7 arranged on the mounting position 18, and the adsorbing assembly 7 is used for adsorbing and positioning the accessory one 22. The adsorbing assembly 7 comprises a vacuum power source 701, a platform body 702, a pipeline 703 and a gas hole 704. The vacuum power source 701 is connected to the rotary workbench 1, the platform body 702 is fixedly arranged on the mounting position 18, the pipeline 703 is arranged in the platform body, the gas hole 704 is arranged on the mounting surface of the platform body 702, and the gas hole 704 and the vacuum power source 701 are in conductive connection with the pipeline 703. When the accessory one 22 is mounted, the accessory one 22 is directly positioned and adsorbed on the gas hole 704, so that the convenience of mounting the accessory one 22 is improved, and the mounting precision of the accessory one 22 and the accessory two 23 is improved.
[0063] Preferably, the mounting position 18 can be provided with a plurality of mounting positions 18, and in the embodiment, the mounting position 18 is provided with four mounting positions 18 and is distributed in the circumferential direction of the rotary workbench 1. The rotary workbench 1 is provided with a rack 20 for positioning and supporting the vacuum power source 701. By arranging the rack 20, the stability of the adsorbing operation of the accessory on the mounting position 18 can be avoided due to the shaking and displacement of the power source, and the stability of the accessory one 22 and the accessory two 23 is further improved.
[0064] The assembling mechanism of the accessory of the communication interface further comprises a driving motion assembly 8 arranged on the housing 301, and the driving motion assembly 8 is used for driving the clamping plate 401 to perform clamping motion.
[0065] Specifically, the driving motion assembly 8 comprises a vertical plate 801, a horizontal plate 802, a track 803 and a fastener 804. The vertical plate 801 is vertically arranged on the side surface of the housing 301. The horizontal plate 802 reciprocally moves along the vertical direction of the vertical plate 801 and passes through the middle part of the vertical plate 801. The track 803 is arranged on the middle part of the horizontal plate 802 passing through the vertical plate 801. One end of the fastener 804 is fixedly arranged on the vertical plate 801, and the other end of the fastener 804 passes through the track 803 and is driven by the track 803 to slide. The clamping plate 401 is fixedly arranged on the top surface of the vertical plate 801.
[0066] Further, the driving movement assembly 8 further comprises a stand 805, a fixed plate 806, a power device 807 and a buckle plate 808, the stand 805 is fixed to the side of the shell 301, the stand 805, the fixed plate 806, the power device 807 and the buckle plate 808 can be fixed in sequence by using fastening nails, the stand 805 provides a stable lateral support base for the whole driving movement assembly 8, and the stand 805, the fixed plate 806, the power device 807 and the buckle plate 808 are firmly connected in sequence by using fastening nails, so that they form a cooperative whole structure. The power device 807 can be a pneumatic cylinder, the telescopic end of the pneumatic cylinder is fixedly connected with the horizontal plate 802, and the horizontal plate 802 is driven to move when the power device 807 (pneumatic cylinder) is telescopic. The fixed plate 806 is provided with a sliding groove 809, the sliding groove 809 is used for guiding the vertical plate 801 to slide vertically and drive the buckle pressing plate 401 to move vertically. The two ends of the track 803 have a height difference, which can guide the vertical plate 801 to move in a specific track, so as to drive the buckle pressing plate 401 to move vertically. The buckle plate 808 is provided with a vertical hole 810 for guiding the sliding of the fastening nail, which provides guidance and limiting for the sliding of the fastening nail.
[0067] When the track 803 with a height difference at both ends is arranged, the two ends can be chamfered to ensure the flexible movement of the fastening nail 804.
[0068] In the embodiment, the working process of driving the buckle pressing plate 401 to move is as follows: the power device 807 is driven, the horizontal plate 802 is driven to move horizontally and telescopically, the fastening nail 804 is driven to move vertically along the vertical hole 810 by the track 803 with a height difference at both ends, the vertical plate 801 is driven to move vertically along the sliding groove 809 by the fastening nail 804, and the buckle pressing plate 401 fixed to the vertical plate 801 is driven to move vertically along the opening 302 to complete the buckle pressing action.
[0069] The accessory assembly mechanism of the communication interface further comprises a positioning assembly 9 arranged on the shell 301, and the positioning assembly 9 is used for repeatedly fixing the material belt. Specifically, the positioning assembly 9 comprises a needle body 902 and a slotted hole 901, the slotted hole 901 is arranged on the shell 301, the depth of the slotted hole 901 reaches the inside of the shell 301, a pneumatic cylinder and a connecting block 21 can be mounted on the shell 301 to realize the vertical reciprocating movement of the needle body 902 along the slotted hole 901, and the needle body 902 is used for penetrating through the slotted hole 901 and inserting into each matching hole on the conveying material belt in the shell 301. Further, the material belt is prevented from deviating and deforming during processing, so that the subsequent component assembly can be accurately matched, the connection is firm, the product structure precision and performance are improved, and the product quality is ensured.
[0070] The above is only the 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 the 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 disclosed technical content without departing from the technical solution of the present application, and any equivalent embodiment with equivalent changes is equivalent to the above embodiment. Any simple modification, equivalent change and modification of the above embodiment according to the present application technical solution are within the scope of the present application technical solution.
Claims
1. A fitting assembly mechanism of a communication interface, characterized by, The utility model relates to a rotary workbench, cutting assembly, feeding shell, buckle pressure assembly and installation position, and the rotary workbench can rotate, and the cutting assembly includes cutting mouth, positioning rod and cutting plate, the feeding shell includes shell and opening, and the buckle pressure assembly includes buckle pressure plate and top plate, and the installation position is arranged on the table surface of the rotary workbench. The cutting plate is provided with a protective plate on the top, and the communication interface accessory carried by the installation position rotates through the gap when the rotary workbench rotates. The utility model also includes a correction needle arranged at the lower end of the opening, which moves vertically along the opening to insert the hole on the accessory one and the positioning hole on the accessory two for correction. The utility model also includes an adsorption assembly arranged on the installation position, which is used for adsorbing and positioning the accessory one. The adsorption assembly includes a vacuum power source, a platform body, a pipeline and a gas hole, the vacuum power source is connected to the rotary workbench, the platform body is fixedly arranged on the installation position, the pipeline is arranged in the platform body, the gas hole is arranged on the installation surface of the platform body, and the gas hole and the vacuum power source are in communication connection with the pipeline. The utility model also includes a driving motion assembly arranged on the shell, which is used to drive the buckle pressure plate to buckle.
2. The assembly mechanism of a communication interface accessory according to claim 1, wherein, The driving motion assembly includes a vertical plate, a horizontal plate, a track and a fastener, the vertical plate is movably arranged on the side surface of the shell in the vertical direction of the opening, the horizontal plate reciprocates in the vertical direction of the vertical plate and passes through the middle part of the vertical plate, the track is arranged on the horizontal plate passing through the middle part of the vertical plate, one end of the fastener is fixedly arranged on the vertical plate, the other end of the fastener passes through the track and is driven by the track to slide, and the buckle pressure plate is fixedly arranged on the top surface of the vertical plate.
3. An assembly mechanism of a communication interface accessory according to claim 1 or 2, wherein, The utility model also includes a positioning assembly arranged on the shell, which is used to repeatedly correct and fix the material belt.
4. The fitting assembly mechanism of a communication interface according to claim 1 or 2, wherein 5. An assembly mechanism of a communication interface accessory according to claim 4, wherein, 6. The fitting assembly mechanism of a communication interface according to claim 1 or 2, wherein 7. An assembly mechanism for a communication interface accessory according to claim 6, wherein, 8. The fitting assembly mechanism of a communication interface according to claim 1 or 2, wherein, 9. An assembly mechanism of a communication interface accessory according to claim 8, wherein, The positioning assembly comprises a slot and a needle body, the slot is arranged on the shell, the hole of the slot reaches the inside of the shell, the needle body is reciprocatingly arranged on the shell in the direction perpendicular to the slot, and the needle body is used for penetrating through the slot and inserting into each matching hole on the conveying belt in the shell.
10. The fitting assembly mechanism of a communication interface according to claim 1 or 2, wherein, The bottom of the rotary table is provided with a position sensor, and the bottom surface of the rotary table is provided with an inductive sheet. When the rotary table rotates, the inductive sheet sweeps across the sensing end of the position sensor.