Backplane connector mistake-proof insertion structure and assembly equipment thereof
By setting guide grooves and guide posts on the connector and adopting an intelligent mechanized clamping and positioning mechanism, the problem of easy misalignment of the connector is solved, and an efficient and safe assembly process is achieved.
Patent Information
- Application Number
- CN202510403852.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-01
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2045-04-01
AI Technical Summary
Existing connectors lack anti-misfit structures, which makes it easy for plugs and sockets to be misaligned, potentially causing printed circuit board burnout. Furthermore, relying on manual visual identification cannot completely prevent misfitting.
A backplane connector anti-misfitting structure and its assembly equipment were designed. By setting guide grooves and guide posts on the socket and plug, and using an intelligent mechanized clamping and positioning mechanism, the plug and socket are ensured to be accurately aligned during the assembly process.
It achieves precise connector mating, improves operational smoothness, reduces manual intervention time, and ensures safe use.
Smart Images

Figure CN120165280B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of backplane connector anti-misplug, and particularly relates to a backplane connector anti-misplug structure and an assembling equipment thereof. BACKGROUND
[0002] In the interconnection of electronic circuits, in order to prevent misplug between connectors, the connectors are usually required to have an anti-misplug function.
[0003] The existing connector does not have an anti-misplug structure, and when plugging, since the product contact spacing is relatively small and the needle spacing is densely arranged, misplug is easily caused, especially after transverse misplug, the connector can still be normally plugged in place, and when the misplug is not found and power is continuously supplied, the printed board will be burned;
[0004] The connector without the anti-misplug structure is required to be manually marked and positioned for plugging recognition, but the visual recognition by the user cannot completely avoid the misplug.
[0005] Therefore, it is necessary to provide a backplane connector anti-misplug structure and an assembling equipment thereof, which sets the anti-misplug structure on the backplane connector and uses the assembling equipment to improve the smoothness of the backplane connector plugging operation and ensure the use safety. SUMMARY
[0006] The application aims at the existing backplane connector anti-misplug structure and an assembling equipment thereof to solve the problems in the background.
[0007] In order to solve the above technical problems, the application provides the following technical scheme: an assembling equipment of a backplane connector anti-misplug structure, the backplane connector anti-misplug structure comprising a socket and a plug, the socket being provided with guide grooves on both sides, the plug being fixedly provided with guide columns on both sides, the guide grooves and the guide columns being matched, the assembling equipment comprising a bottom plate, the bottom plate being fixedly provided with an assembling shell on the right side, the assembling shell being provided with a lifting mechanism on the left side, and a clamping positioning mechanism being provided on the left side of the bottom plate;
[0008] The clamping positioning mechanism comprises a conveying assembly, a lower clamping assembly and a conveying assembly, wherein:
[0009] The conveying assembly comprises two groups of sliding rails fixed on the bottom plate and a fourth air cylinder fixed on the bottom of the bottom plate, the sliding rails are connected with sliding plates, the bottom plate is provided with a sliding groove two, the sliding groove two is provided with a sliding block in the inside, the output end of the fourth air cylinder is fixedly connected with the sliding block, and the sliding block is fixedly connected with the sliding plate.
[0010] A base is fixed to the top of the sliding plate, two sets of connecting shafts are fixedly connected to the right side of the base, connecting rods are fixed to the ends of the connecting shafts, sliding rods are slidably connected to both sides of the connecting rods, a bearing rod is fixed to the end of the sliding rod, a bearing plate is fixed to the right side of the bearing rod, a fifth cylinder is fixed to the bottom of the connecting rod, and the output end of the fifth cylinder is fixedly connected to the bearing rod;
[0011] A plurality of positioning posts are fixed on the surface of the carrier plate, and the size of the positioning posts matches the circular holes on the bottom surface of the socket;
[0012] A ventilation hole is provided inside the positioning column, a central cavity is provided inside the supporting plate, the ventilation hole and the central cavity are penetrated, an air inlet pipe is fixedly connected to the bottom of the supporting plate, one end of the air inlet pipe is connected to the central cavity, and the other end of the air inlet pipe is connected to the air source.
[0013] The present invention further describes that the lifting mechanism includes a driving assembly and an upper clamping assembly, the driving assembly includes a first cylinder fixed to the left side of the assembly shell, the left side of the assembly shell is provided with two sets of slide grooves 1, the two sets of slide grooves 1 are provided with connecting plates 1, the bottom of the connecting plate 1 is fixed with a connecting block, the connecting block is slidably connected to the assembly shell, and connecting plates 2 are fixed on both sides of the bottom of the connecting block;
[0014] The output end of the first cylinder is fixedly connected to the connecting plate.
[0015] The present invention further describes that the upper clamping assembly includes a mounting plate, a clamping shell is fixed to the bottom of the mounting plate, square grooves are opened on both sides of the clamping shell, and pressure plates are arranged inside two groups of square grooves. The mounting plate is located on both sides of the clamping shell and is fixed with mounting seats. A second cylinder is fixed on the side of the mounting seat away from the clamping shell. The output end of the second cylinder is fixedly connected to the pressure plate. The clamping shell is hollow.
[0016] Distance sensors are fixed below both sides of the mounting plate.
[0017] The present invention further describes that a third cylinder is fixed on the top of the mounting plate, a through slot is opened inside the mounting plate, the through slot is connected to the hollow part of the clamping shell, and a push plate 1 is fixed to the output end of the third cylinder.
[0018] The present invention further describes that the transport assembly includes a conveyor belt arranged on a bottom plate, the conveyor belt is arranged inside the assembly shell, a plurality of sockets are placed on the conveyor belt, and a placement slot is opened on the right side of the assembly shell.
[0019] The surface of the conveying belt is fixed with mounting bosses on both sides, the mounting bosses are made of flexible rubber material, and the socket is in surface contact with the mounting bosses.
[0020] The mounting bosses are arranged in two groups, and gaps are formed between the two groups of mounting bosses.
[0021] The lower clamping assembly comprises support rods fixed on the bottom plate, and the top of the support rods is fixed with a bearing table.
[0022] The outer sides of the two groups of support rods are fixed with seventh cylinders, and the output ends of the seventh cylinders are fixed with a third push plate.
[0023] Compared with the prior art, the present application has the following advantages: the present application sets up a clamping and positioning mechanism, and uses intelligent mechanical assembly instead of manual operation, which can save working time and improve the smoothness of the back plate connector insertion operation. BRIEF DESCRIPTION OF DRAWINGS
[0024] The accompanying drawings are used to provide a further understanding of the present application, and constitute a part of the specification, and are used to explain the present application together with embodiments of the present application, and do not constitute a limitation of the present application. In the drawings:
[0025] Figure 1 is a schematic diagram of the connector structure of the present application as a whole;
[0026] Figure 2 is an exploded schematic diagram of the connector of the present application;
[0027] Figure 3 is a schematic diagram of the assembly equipment of the present application as a whole Figure 1 ;
[0028] Figure 4 is a schematic diagram of the assembly equipment of the present application as a whole Figure 2 ;
[0029] Figure 5 is a schematic diagram of the assembly equipment of the present application as a whole Figure 3 ;
[0030] Figure 6 is a schematic diagram of the A area of the present application Figure 3 ;
[0031] Figure 7 is a partial enlarged schematic view of the B area of the present application Figure 4 ;
[0032] Figure 8 is a partial enlarged schematic view of the C area of the present application Figure 5 ;
[0033] Figure 9 is a two-dimensional schematic view of the conveying belt and the bearing plate of the present application
[0034] Figure 10 is a two-dimensional schematic view of the bearing table of the present application
[0035] Figure 11 is a partial enlarged schematic view of the D area of the present application Figure 9 ;
[0036] In the figure: 1, socket; 2, plug; 3, guide column; 4, guide groove; 5, bottom plate; 6, assembled shell; 7, sliding rail; 8, sliding plate; 9, third cylinder; 10, sliding groove one; 11, connecting plate one; 12, connecting block; 13, connecting plate two; 14, clamping shell; 15, mounting seat; 16, second cylinder; 17, pressing plate one; 18, square groove one; 19, fourth cylinder; 20, sliding block; 21, sliding groove two; 22, base; 23, support rod; 24, bearing table; 25, placing groove; 26, first cylinder; 27, connecting shaft; 28, conveying belt; 29, connecting rod; 30, fifth cylinder; 31, bearing rod; 32, sliding rod; 33, bearing plate; 34, positioning column; 35, mounting boss; 36, square groove two; 37, sixth cylinder; 38, push plate two; 39, mounting plate; 40, controller; 41, distance sensor; 42, central cavity; 43, air inlet pipe; 44, ventilation hole. DETAILED DESCRIPTION
[0037] The technical solutions of the present application will be further described in detail below in combination with preferred embodiments and the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by a person of ordinary skill in the art without creative work fall within the protection scope of the present application.
[0038] Please refer to Figure 1 - Figure 2 The present application provides a technical solution: a backboard connector mistake-proof insertion structure, comprising a socket 1 and a plug 2, guide grooves 4 are formed on both sides of the socket 1, guide columns 3 are fixedly arranged on both sides of the plug 2, and the cooperation of the guide grooves 4 and the guide columns 3 can prevent the socket 1 and the plug 2 from being misaligned when connected.
[0039] Please refer to Figure 3 -Figure 9 An assembling equipment of backboard connector mistake-proof insertion structure, comprising a bottom plate 5, a assembling shell 6 is fixed on the right side of the bottom plate 5, a lifting mechanism is arranged on the left side of the assembling shell 6, which is used for driving the plug 2 to lift, a clamping and positioning mechanism is arranged on the left side of the bottom plate 5, which is used for driving the socket 1 to move to the lower side of the lifting mechanism to fix the socket 1, and the plug 2 is driven to move downward and inserted into the socket 1 through the cooperation of the lifting mechanism;
[0040] The lifting mechanism comprises a driving assembly and an upper clamping assembly, the driving assembly comprises a first air cylinder 26 fixed on the left side of the assembling shell 6, two groups of sliding grooves one 10 are arranged on the left side of the assembling shell 6, a connecting plate one 11 is arranged in the two groups of sliding grooves one 10, a connecting block 12 is fixed on the bottom of the connecting plate one 11, the connecting block 12 is in sliding connection with the assembling shell 6, connecting plates two 13 are fixed on the bottom of the connecting block 12, the first air cylinder 26 is started to drive the connecting plate one 11 to move up and down in the sliding groove one 10, so as to drive the connecting block 12 to slide on the assembling shell 6, since the upper clamping assembly is arranged below the connecting plate two 13, the upper clamping assembly can be driven to lift through the lifting of the connecting plate two 13;
[0041] The output end of the first air cylinder 26 is fixedly connected with the connecting plate one 11.
[0042] The upper clamping assembly comprises a mounting plate 39, a clamping shell 14 is fixed on the bottom of the mounting plate 39, square grooves one 18 are arranged on the two sides of the clamping shell 14, pressure plates one 17 are arranged in the two groups of square grooves one 18, mounting seats 15 are fixed on the two sides of the mounting plate 39 located on the two sides of the clamping shell 14, a second air cylinder 16 is fixed on the side of the mounting seat 15 away from the clamping shell 14, the output end of the second air cylinder 16 is fixedly connected with the pressure plate one 17, the clamping shell 14 is hollow, the second air cylinder 16 on the two sides of the clamping shell 14 is started to control the pressure plate one 17 to move in the square groove one 18, so as to clamp the plug 2, and the plug 2 can be driven to move up and down when the driving assembly drives.
[0043] Distance sensors 41 are fixed below the two sides of the mounting plate 39;
[0044] A third air cylinder 9 is fixed on the top of the mounting plate 39, a through groove is arranged in the mounting plate 39, the through groove is in communication with the hollow part of the clamping shell 14, and a push plate one (not shown in the figure) is fixed on the output end of the third air cylinder 9.
[0045] The clamping and positioning mechanism comprises a conveying assembly, a lower clamping assembly and a shipping assembly, the conveying assembly comprises a conveying belt 28 arranged on the bottom plate 5, the conveying belt 28 is arranged in the interior of the assembling shell 6, a plurality of sockets 1 are arranged on the conveying belt 28, a placing groove 25 is arranged on the right side of the assembling shell 6, the worker places the socket 1 on the conveying belt 28 through the placing groove 25, and the socket 1 is conveyed to the lower clamping assembly through the conveying belt 28;
[0046] The surface of the conveying belt 28 is fixed with mounting bosses 35 made of flexible rubber, and the socket 1 is in surface contact with the mounting bosses 35;
[0047] The shipping assembly includes two groups of sliding rails 7 fixed on the bottom plate 5 and a fourth cylinder 19 fixed at the bottom of the bottom plate 5, the sliding rails 7 are connected with a sliding plate 8, the bottom plate 5 is provided with a sliding groove two 21, the sliding groove two 21 is provided with a sliding fast 20 inside, the output end of the fourth cylinder 19 is fixedly connected with the sliding fast 20, and the sliding fast 20 is fixedly connected with the sliding plate 8; the fourth cylinder 19 is started to drive the sliding plate 8 to slide on the bottom plate 5 through the sliding fast 20;
[0048] The top of the sliding plate 8 is fixed with a base 22, the right side of the base 22 is fixedly connected with two groups of connecting shafts 27, the ends of the connecting shafts 27 are fixed with connecting rods 29, the two sides of the connecting rods 29 are slidingly connected with sliding rods 32, the ends of the sliding rods 32 are fixed with bearing rods 31, the right side of the bearing rod 31 is fixed with a bearing plate 33, the bottom of the connecting rod 29 is fixed with a fifth cylinder 30, the output end of the fifth cylinder 30 is fixedly connected with the bearing rod 31, the fifth cylinder 30 is started to drive the bearing plate 33 to move up and down through the bearing rod 31.
[0049] The surface of the bearing plate 33 is fixed with a plurality of positioning columns 34, and the positioning columns 34 are matched with the round holes on the bottom surface of the socket 1.
[0050] The inside of the positioning column 34 is provided with a ventilation hole 44, the inside of the bearing plate 33 is provided with a hub cavity 42, the ventilation hole 44 penetrates the hub cavity 42, the bottom of the bearing plate 33 is fixedly connected with an air inlet pipe 43, one end of the air inlet pipe 43 is connected with the hub cavity 42, and the other end of the air inlet pipe 43 is connected with an air source.
[0051] Gaps are formed between the two groups of mounting bosses 35 (not shown in the figure), the height of the mounting bosses 35 is greater than the height of the bearing plate 33 and the positioning column 34 combined, so that the bearing plate 33 and the positioning column 34 can enter the gaps;
[0052] The lower clamping assembly includes a support rod 23 fixed on the bottom plate 5, and the top of the support rod 23 is fixed with a bearing table 24, the bearing table 24 is a hollow structure, and the two sides of the hollow structure of the bearing table 24 are provided with square grooves two 36, the square grooves two 36 are connected with sixth cylinders 37 through linear driving, the output end of the sixth cylinder 37 is fixed with a push plate two 38, one side of the push plate two 38 is fixed with a pressure sensor (not shown in the figure), and the push plate two 38 corresponds to the positions of the guide groove 4 and the guide column 3;
[0053] It should be noted that the linear driving can be motor sliding rail driving.
[0054] The outer side of the two groups of supporting rods 23 is fixed with a seventh cylinder, and the output end of the seventh cylinder is fixed with a third push plate (not shown in the figure).
[0055] One side of the assembled shell 6 is fixed with a controller 40, which is electrically connected with the first cylinder 26, the second cylinder 16, the third cylinder 9, the fourth cylinder 19, the fifth cylinder 30, the sixth cylinder 37, the seventh cylinder, the linear drive, the distance sensor 41 and the pressure sensor.
[0056] Embodiment one;
[0057] In this embodiment, the connector is assembled by assembling equipment.
[0058] Specifically, the worker places the plug 2 in the hollow of the clamping shell 14, and then fixes the plug 2 by the first pressing plate 17. At the same time, the socket 1 is moved to below the bearing table 24 by the conveying belt 28.
[0059] When the socket 1 is transported to below the bearing table 24, the seventh cylinder is started to extend to make the third push plate contact with the front and back surfaces of the socket 1 to fix the socket 1. At this time, the fourth cylinder 19 is started to contract to drive the bearing plate 33 to move to the direction close to the socket 1, and then enter the gap formed between the mounting bosses 35. Then, the fifth cylinder 30 is started to contract, so that the positioning column 34 contacts and enters the circular hole on the bottom surface of the socket 1. Since the third push plate fixes the socket 1, the socket 1 will not displace when the positioning column 34 enters the circular hole on the bottom of the socket 1. When the positioning column 34 is inserted into the socket 1, the seventh cylinder is controlled to contract to make the push plate away from the socket 1.
[0060] The fifth cylinder 30 is continuously started to contract to make the socket 1 enter the hollow of the bearing table 24. At this time, the sixth cylinder 37 is started to extend to control the second push plate 38 to clamp the socket 1 to fix the socket 1 again. Then, the sixth cylinder 37 is controlled to move upward by the linear drive to drive the socket 1 to move upward, so that the socket 1 is separated from the positioning column 34 on the bearing plate 33.
[0061] Then, the first cylinder 26 is started to contract to drive the plug 2 to move downward, so that the plug 2 is inserted into the socket 1. Since the guide groove 4 and the guide column 3 are matched, the socket 1 and the plug 2 can be prevented from being misaligned when being connected. When the plug 2 is inserted into the socket 1, the second cylinder 16 is controlled to contract. Then, the third cylinder 9 is controlled to extend to press the first push plate on the surface of the plug 2, so that the guide groove 4 and the guide column 3 are completely clamped, and the installation and connection of the plug 2 and the socket 1 are completed.
[0062] When the plug 2 and the socket 1 are completely installed, the sixth cylinder 37 is driven by the straight line to move downward, and the bearing plate 33 is controlled to move upward to make the positioning column 34 enter the circular hole on the bottom surface of the socket 1 again, so as to drive the connected connector (the plug 2 and the socket 1 are installed) to move downward until the connected connector is moved out of the bearing table 24, at this time, the fourth cylinder 19 is elongated to drive the bearing plate 33 away from the bearing table 24, so as to facilitate the worker to take down the installed connector.
[0063] It should be noted that the hollow shape of the clamping shell 14 matches the hollow structure of the bearing table 24, so as to facilitate the matching of the plug 2 and the socket 1.
[0064] Through the above steps, the intelligent mechanical assembly method is used instead of manual work, which can save working time and improve the smoothness of the back plate connector plug-in operation.
[0065] Example two;
[0066] In this embodiment, the quality of the connector is detected when the connector is installed;
[0067] Specifically, during the clamping of the plug 2 and the socket 1, the distance sensors 41 on both sides of the mounting plate 39 detect the distance between the mounting plate 39 and the bearing table 24 in real time, and transmit the signal to the controller 40. Since the distance L of the installed plug 2 and socket 1 is set in the controller 40, the real-time detected distance is compared with the set L. When the real-time detected distance is equal to L, it means that the plug 2 and the socket 1 are installed. After installation, the pressure sensor detects the pressure change of the second push plate 38 extruding the socket 1 and transmits the signal to the controller 40. When it is detected that the pressure of the second push plate 38 extruding the socket 1 is increased, it means that when the guide groove 4 and the guide column 3 cooperate, the socket 1 is deformed, so the pressure detected by the pressure sensor changes, which indicates that there is a problem with the quality of the socket 1 shell;
[0068] When the plug 2 and the socket 1 are installed, the pressure of the second push plate 38 extruding the socket 1 does not change, at this time, the sixth cylinder 37 is controlled to contract so that the second push plate 38 contracts and no longer clamps the socket 1. When the socket 1 is lowered, it means that the gap between the guide groove 4 and the guide column 3 is large, which indicates that the cooperation degree of the guide groove 4 and the guide column 3 is low. When the socket 1 is not lowered, it means that the cooperation degree of the guide groove 4 and the guide column 3 is high.
[0069] When the real-time detected distance is greater than L, it indicates that the gap between the guide groove 4 and the guide column 3 is too small, so that the plug 2 cannot be completely inserted into the socket 1. At this time, the socket 1 and the plug 2 are controlled to be separated by a small distance (the distance is set according to the actual situation, and the socket 1 and the plug 2 are not separated too far), and the fifth cylinder 30 is controlled to retract, so that the bearing plate 33 is driven to approach the bottom of the socket 1. The gas source is started to pass the gas into the central cavity 42 through the air inlet pipe 43, and then the gas is blown to the bottom surface of the socket 1 through the multiple groups of ventilation holes 44. The gas is blown to the inside of the socket 1 through the circular hole, and then blown to the surface of the guide column 3 on the plug 2. The impurities in the inside of the socket 1 and the guide grooves 4 on both sides and the surface of the guide column 3 are cleaned. Then the plug 2 and the socket 1 are continuously controlled to be matched. If the guide groove 4 and the guide column 3 are completely engaged at this time, it indicates that the gap between the guide groove 4 and the guide column 3 is too small due to impurities, which indicates that the matching degree of the guide groove 4 and the guide column 3 is medium. After the impurities are cleaned, the plug 2 still cannot be completely inserted into the socket 1, which indicates that the matching degree of the guide groove 4 and the guide column 3 is low.
[0070] Through the above steps, it can be known that the engagement state can be judged when the socket 1 and the plug 2 of the connector are engaged, and whether the quality of the socket 1 shell will have a problem can be identified.
[0071] It should be noted that when the connector is not assembled, the gas source can be started to clean the impurities in the clamping shell 14 and the bearing table 24, so as to ensure the cleanliness of the inside of the clamping shell 14 and the bearing table 24, and avoid that the impurities in the inside of the clamping shell 14 and the bearing table 24 affect the installation precision of the connector.
[0072] In the description of the present application, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.
[0073] Finally, it should be pointed out that: the above examples are only used to illustrate the technical solutions of the present application, and not to limit them. Although the present application has been described in detail with reference to the foregoing examples, those skilled in the art should understand that they can modify the technical solutions recorded in the foregoing examples, or make equivalent substitutions for part of the technical features, and these modifications or substitutions do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.
Claims
1. An assembling device for a backplane connector mistake-proofing plug structure, the backplane connector mistake-proofing plug structure comprising a socket (1) and a plug (2), guide grooves (4) being formed on two sides of the socket (1), guide columns (3) being fixedly arranged on two sides of the plug (2), the guide grooves (4) and the guide columns (3) being matched, characterized in that: The assembly device comprises a bottom plate (5), a right side of the bottom plate (5) is fixed with an assembly shell (6), a left side of the assembly shell (6) is provided with a lifting mechanism, and a left side of the bottom plate (5) is provided above with a clamping positioning mechanism; The clamping positioning mechanism comprises a conveying assembly, a lower clamping assembly and a shipping assembly, wherein: The shipping assembly comprises two groups of sliding rails (7) fixed on the bottom plate (5) and a fourth air cylinder (19) fixed at the bottom of the bottom plate (5), the sliding rails (7) are connected with a sliding plate (8), the bottom plate (5) is provided with a sliding groove two (21), the sliding groove two (21) is provided with a sliding block (20) in the inside, the output end of the fourth air cylinder (19) is fixedly connected with the sliding block (20), and the sliding block (20) is fixedly connected with the sliding plate (8); The top of the sliding plate (8) is fixed with a base (22), the right side of the base (22) is fixedly connected with two groups of connecting shafts (27), the tail end of the connecting shaft (27) is fixed with a connecting rod (29), the two sides of the connecting rod (29) are slidingly connected with sliding rods (32), the tail end of the sliding rod (32) is fixed with a bearing rod (31), the right side of the bearing rod (31) is fixed with a bearing plate (33), the bottom of the connecting rod (29) is fixed with a fifth air cylinder (30), and the output end of the fifth air cylinder (30) is fixedly connected with the bearing rod (31); The surface of the bearing plate (33) is fixed with a plurality of positioning columns (34), and the positioning columns (34) are matched with the circular holes on the bottom surface of the socket (1) in size; The inside of the positioning column (34) is provided with a ventilation hole (44), the inside of the bearing plate (33) is provided with a hub cavity (42), the ventilation hole (44) penetrates the hub cavity (42), the bottom of the bearing plate (33) is fixedly connected with an air inlet pipe (43), one end of the air inlet pipe (43) is connected with the hub cavity (42), and the other end of the air inlet pipe (43) is connected with an air source.
2. The equipment for assembling the mistake-proof structure of the backplane connector according to claim 1, characterized in that: The lifting mechanism comprises a driving assembly and an upper clamping assembly, the driving assembly comprises a first air cylinder (26) fixed on the left side of the assembly shell (6), the left side of the assembly shell (6) is provided with two groups of sliding grooves one (10), the two groups of sliding grooves one (10) are provided with connecting plates one (11) in the inside, the bottom of the connecting plate one (11) is fixedly connected with a connecting block (12), the connecting block (12) is slidingly connected with the assembly shell (6), and the bottom of the connecting block (12) is fixedly connected with connecting plates two (13); The output end of the first air cylinder (26) is fixedly connected with the connecting plate one (11).
3. The equipment for assembling the mistake-proof structure of the backplane connector according to claim 2, characterized in that: The upper clamping assembly includes a mounting plate (39), the bottom of the mounting plate (39) is fixedly connected with a clamping shell (14), two sides of the clamping shell (14) are provided with square grooves (18), the inside of the two square grooves (18) is provided with a pressing plate (17), the two sides of the mounting plate (39) are fixedly connected with mounting seats (15), one side of the mounting seat (15) away from the clamping shell (14) is fixedly connected with a second air cylinder (16), the output end of the second air cylinder (16) is fixedly connected with the pressing plate (17), and the clamping shell (14) is hollow. The distance sensor (41) is fixedly connected to the lower side of the two sides of the mounting plate (39).
4. The equipment for assembling the mistake-proof structure of the backplane connector according to claim 3, characterized in that: The third air cylinder (9) is fixedly connected to the top of the mounting plate (39), the inside of the mounting plate (39) is provided with a through groove, the through groove is communicated with the hollow part of the clamping shell (14), and the output end of the third air cylinder (9) is fixedly connected with a push plate (1).
5. The equipment for assembling the mistake-proof structure of the backplane connector according to claim 1, characterized in that: The conveying assembly includes a conveying belt (28) arranged on the bottom plate (5), the conveying belt (28) is arranged in the inside of the assembly shell (6), a plurality of sockets (1) are arranged on the conveying belt (28), and the right side of the assembly shell (6) is provided with a placing groove (25).
6. The equipment for assembling the mistake-proof structure of the backplane connector according to claim 5, characterized in that: The mounting bosses (35) are fixedly connected to the two sides of the surface of the conveying belt (28), the mounting bosses (35) are made of flexible rubber material, and the sockets (1) are in surface contact with the mounting bosses (35).
7. The equipment for assembling the mistake-proof structure of the backplane connector according to claim 6, characterized in that: The mounting bosses (35) are arranged in pairs, and gaps are formed between the mounting bosses (35).
8. The equipment for assembling the mistake-proof structure of the backplane connector according to claim 1, wherein: The lower clamping assembly includes a support rod (23) fixedly connected to the bottom plate (5), the top of the support rod (23) is fixedly connected with a bearing table (24), the bearing table (24) is a hollow structure, the two sides of the hollow structure of the bearing table (24) are provided with square grooves (36), the square grooves (36) are connected with sixth air cylinders (37) through linear driving, the output end of the sixth air cylinder (37) is fixedly connected with a push plate (38), one side of the push plate (38) is fixedly connected with a pressure sensor, and the push plate (38) corresponds to the positions of the guide groove (4) and the guide column (3).
9. The equipment for assembling the mistake-proof structure of the backplane connector according to claim 8, characterized in that: The seventh air cylinders are fixedly connected to the outer sides of the two support rods (23), and the output ends of the seventh air cylinders are fixedly connected with push plates (3).
Citation Information
Patent Citations
Connector with anti-misplug structure
CN109411950A
Anti-misplug connector and preparation method
CN110867677A