CN117849671A - Quick detection device of signal line connector - Google Patents

Quick detection device of signal line connector Download PDF

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Publication number
CN117849671A
CN117849671A CN202410244535.7A CN202410244535A CN117849671A CN 117849671 A CN117849671 A CN 117849671A CN 202410244535 A CN202410244535 A CN 202410244535A CN 117849671 A CN117849671 A CN 117849671A
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CN
China
Prior art keywords
detection
detection device
signal line
seat
line connector
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Granted
Application number
CN202410244535.7A
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Chinese (zh)
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CN117849671B (en
Inventor
孙学祥
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Weifang Haili Electronics Co ltd
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Weifang Haili Electronics Co ltd
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Priority to CN202410244535.7A priority Critical patent/CN117849671B/en
Priority claimed from CN202410244535.7A external-priority patent/CN117849671B/en
Publication of CN117849671A publication Critical patent/CN117849671A/en
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Publication of CN117849671B publication Critical patent/CN117849671B/en
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Abstract

The invention relates to the technical field of signal line detection, in particular to a rapid detection device for a signal line connector. Including detection device main part and feeding component, the front side rotation of detection device main part is connected with the detection seat, and feeding component is located the front side of detection seat, and the leading flank of detection seat is connected with a plurality of detection end, is equipped with the supplementary plug part that can follow adjacent two detection end axial direction lines and remove between the adjacent two detection ends, supplementary plug part includes the connecting seat and rotates the variable diameter auxiliary roller of being connected with the connecting seat. This application is connected in the detection device main part and is detected the seat, detects the seat and can detect a plurality of signal lines simultaneously, and during the use, connect through supplementary plug part to the signal line and carry out the plug, need not artifical plug, and operating efficiency is high, and the plug in-process effort is stable, can effectively avoid causing the damage to connect and detection end.

Description

Quick detection device of signal line connector
Technical Field
The invention relates to the technical field of signal line detection, in particular to a rapid detection device for a signal line connector.
Background
The signal wire contains plug and inside many internal lines, if inside broken wire or short circuit all can lead to the product unable to carry out communication connection with the bus, probably directly influence the bus even and to the control of other lamps and lanterns, ohmic power line also can have the line misorder or the line condition of disconnection in inside. In order to determine whether the signal line sequence is correct and whether the signal line is broken or not, a detector is required to detect the signal line sequence, a connector of the signal line is connected with a detection end on the detector, a pulse signal is sent through the signal line, and the detector receives the signal.
When the existing detector detects, a signal wire needs to be manually inserted into the detection end of the detector, after detection is completed, the signal wire connector is manually pulled down, the manual operation efficiency is low, and the connector and the detection end are easily damaged due to instability of the force application direction of manual insertion and pulling, so that the service life of the detector is influenced.
Therefore, the application provides a quick detection device of joint, solves the problem that the atress that artifical plug signal line led to among the prior art is unstable, complex operation detection efficiency is low.
Disclosure of Invention
In order to solve the problems, the invention provides a rapid detection device for a signal line joint.
The technical scheme adopted for solving the technical problems is as follows: the utility model provides a signal line connects quick detection device, includes detection device main part and pay-off subassembly, the front side rotation of detection device main part is connected with the detection seat, and the pay-off subassembly is located the front side that detects the seat, and the leading flank that detects the seat is connected with a plurality of detection end, is equipped with the supplementary plug part that can follow two adjacent detection end axial direction lines and remove between two adjacent detection ends, supplementary plug part includes the connecting seat and rotates the variable diameter auxiliary roller of being connected with the connecting seat.
As optimization, the variable diameter auxiliary roller comprises an elastic roller surface and an adjusting component arranged in the elastic roller surface, wherein the elastic roller surface is elliptical, and a supporting block with an arc surface on the outer side is connected between the adjusting component and the inner side of the elastic roller surface;
the adjusting component comprises a telescopic component and four connecting rods, wherein the telescopic component comprises an electric telescopic rod and a driven telescopic rod which is arranged on the same shaft center of the electric telescopic rod, the four connecting rods are connected to the inner side of the supporting block in a diamond-shaped rotating mode, and the extending end of the electric telescopic rod and the extending end of the driven telescopic rod are connected with the supporting block on the inner side of the long diameter of the elastic roll surface.
As optimization, the axle center direction of elastic roll surface is equipped with the connecting block, electric telescopic handle and driven telescopic handle's stiff end with the connecting block links firmly, be equipped with the rotation motor on the connecting seat, the output shaft of rotation motor with the connecting block links firmly.
As the optimization, the quantity of detection end is four, and four detection ends are circumference array setting, the pay-off subassembly is including being fixed in the telescopic cylinder of detection device main part front side, the extension end of telescopic cylinder is connected with L shape support frame, the vertical section of L shape support frame is connected with V-arrangement delivery sheet, the bottom of V-arrangement delivery sheet is the cambered surface, the horizontal segment of L shape support frame is connected with the deflector, one side downward sloping setting of V-arrangement delivery sheet is kept away from to the deflector.
As optimization, the upper side of the V-shaped feeding plate is provided with an auxiliary roller, the axis of the auxiliary roller is horizontally arranged, and the signal wire connector is arranged between the auxiliary roller and the V-shaped feeding plate.
As optimization, be equipped with the adjustment tank on the detection seat, the length direction in adjustment tank sets up along two adjacent detection end axle center connecting line directions, the inside in adjustment tank is equipped with accommodate the lead screw, the lower extreme of connection seat with accommodate the lead screw threaded connection, accommodate the lead screw's wherein one end is connected with accommodate motor.
As optimization, the outside of detection end is equipped with the linking bridge, the outer end rotation of linking bridge is connected with the feed roll.
As optimization, the supporting blocks comprise two long supporting blocks and two short supporting blocks, wherein the long supporting blocks are arranged on the inner side of the short diameter of the elastic roller surface, and the two short supporting blocks are arranged on the inner side of the long diameter of the elastic roller surface.
The signal line joint rapid detection device has the following advantages:
according to the detection device, the detection seat is connected to the detection device main body, the detection seat can detect a plurality of signal wires simultaneously, when the detection device is used, the connector of the signal wires is plugged through the auxiliary plug part, manual plug is not needed, the operation efficiency is high, the acting force is stable in the plug process, and damage to the connector and the detection end can be effectively avoided;
the auxiliary plug part can adapt to the distance and the state between the two adjacent detection ends, and can simultaneously plug or pull the signal wire connectors on the two adjacent detection ends, thereby improving the detection efficiency.
Drawings
Fig. 1 is an isometric view of the present invention.
Fig. 2 is a schematic front view of the present invention.
FIG. 3 is a schematic axial side view of the main body of the detecting device of the present invention.
Fig. 4 is a schematic front view of the main body of the detection device of the present invention.
FIG. 5 is an isometric view of a feed assembly of the present invention.
Fig. 6 is a schematic diagram of a first state of the auxiliary plug portion of the present invention.
Fig. 7 is a schematic diagram of a third state of the auxiliary plug portion of the present invention.
FIG. 8 is a schematic diagram of a second state of the auxiliary plug portion of the present invention.
Fig. 9 is a schematic diagram showing the sectional structure of the variable diameter auxiliary roller of the present invention.
The detecting device comprises a detecting device body, a detecting seat, a detecting end, a connecting seat, a variable diameter auxiliary roller, a flexible roller surface, a supporting block, a supporting rod, an electric telescopic rod, a driven telescopic rod, a connecting rod, a rotating motor, a 6 telescopic cylinder, a 61V-shaped feeding plate, a 62 guiding plate, a 63, an auxiliary roller, a 7 connecting bracket, a 8 feeding roller, a 9 and a connector, wherein the detecting device body, the detecting seat, the detecting end, the connecting seat and the connecting seat are arranged in sequence.
Detailed Description
As shown in fig. 1-7, a signal line joint rapid detection device comprises a detection device main body 1 and a feeding component, wherein the front side of the detection device main body 1 is rotationally connected with a detection seat 2, the feeding component is positioned on the front side of the detection seat 2, the front side of the detection seat 2 is connected with a plurality of detection ends 3, an auxiliary plug part capable of moving along the axis direction connecting line of the two adjacent detection ends 3 is arranged between the two adjacent detection ends 3, and the auxiliary plug part comprises a connecting seat 4 and a variable diameter auxiliary roller 5 rotationally connected with the connecting seat 4.
The front side of the detection device main body 1 should be provided with a supporting device for supporting the feeding component, so that the axis of the feeding component is level with the axis of the detection device main body 1.
Meanwhile, a driving motor is arranged in the detection device main body 1 and is used for driving the detection seat 2 to rotate.
As shown in fig. 1 and 9, the diameter-variable auxiliary roller 5 includes an elastic roller surface 51 and an adjusting component disposed inside the elastic roller surface 51, the elastic roller surface 51 is in an elliptical ring shape, and a supporting block 52 with an arc surface on the outer side is connected between the adjusting component and the inner side of the elastic roller surface 51;
the adjusting component comprises a telescopic component and four connecting rods 55, the telescopic component comprises an electric telescopic rod 53 and a driven telescopic rod 54 which is arranged coaxially with the electric telescopic rod 53, the four connecting rods 55 are connected to the inner side of the supporting block 52 in a diamond-shaped rotating mode, and the extending end of the electric telescopic rod 53 and the extending end of the driven telescopic rod 54 are connected with the supporting block 52 on the inner side of the long diameter of the elastic roll surface 51.
When the telescopic assembly is extended, the supporting block 52 can deform, and the supporting block 52 supports the elastic roll surface 51.
As shown in fig. 1 and 9, a connecting block is arranged in the axial direction of the elastic roller surface 51, fixed ends of the electric telescopic rod 53 and the driven telescopic rod 54 are fixedly connected with the connecting block, a rotating motor 56 is arranged on the connecting seat 4, and an output shaft of the rotating motor 56 is fixedly connected with the connecting block.
When the rotating motor 56 drives the elastic roller surface 51 to rotate, the elastic roller surface 51 contacts with the joint 9, and the joint 9 is driven to move under the action of friction force.
As shown in fig. 1 and fig. 3, the number of the detection ends 3 is four, the four detection ends 3 are arranged in a circumferential array, the feeding component comprises a telescopic cylinder 6 fixed on the front side of the detection device main body 1, an extension end of the telescopic cylinder 6 is connected with an L-shaped supporting frame, a vertical section of the L-shaped supporting frame is connected with a V-shaped feeding plate 61, the bottom of the V-shaped feeding plate 61 is a cambered surface, a horizontal section of the L-shaped supporting frame is connected with a guide plate 62, and one side of the guide plate 62 away from the V-shaped feeding plate 61 is arranged in a downward inclined manner.
The connector 9 is placed on the V-shaped feeding plate 61, and the connector 9 faces the receiving hole of the detection end 3.
As shown in fig. 5, an auxiliary roller 63 is provided on the upper side of the V-shaped feeding plate 61, the axis of the auxiliary roller 63 is horizontally arranged, and the joint 9 of the signal line is placed between the auxiliary roller 63 and the V-shaped feeding plate 61.
As shown in fig. 1-3, the detecting seat 2 is provided with an adjusting groove, the length direction of the adjusting groove is set along the axis connecting line direction of two adjacent detecting ends 3, an adjusting screw rod is arranged in the adjusting groove, the lower end of the connecting seat 4 is in threaded connection with the adjusting screw rod, and one end of the adjusting screw rod is connected with an adjusting motor.
The position of the connecting seat 4 is adjusted through the adjusting motor, so that the connecting seat 4 drives the variable diameter auxiliary roller 5 to move towards one of the detection ends 3.
The outside of detection end 3 is equipped with linking bridge 7, the outer end rotation of linking bridge 7 is connected with feed roll 8.
The feeding roller 8 can be a driven roller or a driving roller; when the feed roller 8 is a drive roller, a feed motor is connected to the axial direction of the feed roller 8.
As shown in fig. 9, the support block 52 includes two long support blocks disposed inside the short diameter of the elastic roll surface 51 and two short support blocks disposed inside the long diameter of the elastic roll surface 51.
The using method comprises the following steps:
when the device is specifically used, a signal wire and the connector 9 are placed on the V-shaped feeding plate 61, and the connector 9 is placed towards the detection end 3;
as shown in fig. 4, the uppermost detection end 3 is a first detection end, and is sequentially a second detection end, a third detection end and a fourth detection end in a clockwise direction;
the telescopic cylinder 6 stretches to enable the V-shaped feeding plate 61 to approach to the direction of the first detection end, the outer end of the feeding plate is contacted with the bottom of the first detection end, and the connector 9 is opposite to the accommodating hole in the first detection end;
as shown in fig. 4, the electric telescopic rod 53 in the variable diameter auxiliary roller 5 between the first detection end and the fourth detection end is extended, so that the two long diameter ends of the elastic roller surface 51 are in contact with the joints 9 connected to the first detection end and the second detection end, and when seen in the direction facing the rotating motor 56, the variable diameter auxiliary roller 5 rotates counterclockwise, pushing the joints 9 in the first detection end to the direction of the detection seat 2, and pushing the joints 9 in the fourth detection end to the outside, thereby realizing the first state as shown in fig. 6;
as shown in fig. 4, at this time, the variable diameter auxiliary roller 5 between the first detection end and the second detection end moves in the direction of the first detection end along the adjustment groove by the action of the adjustment motor, and the variable diameter auxiliary roller 5 contacts the joint 9 on the first detection end to push the joint 9 toward the inside of the first detection end, as shown in the second state of fig. 8;
as shown in fig. 4, the variable diameter auxiliary roller 5 between the second detection end and the first detection end is centrally arranged, the electric telescopic rod 53 and the driven telescopic rod 54 of the variable diameter auxiliary roller 5 are in a shortened state, as shown in a third state in fig. 7, and the joint 9 is in a detection state from the first detection end to the third detection end;
the variable diameter auxiliary roller 5 between the third detection end and the fourth detection end moves along the direction of the adjusting groove towards the fourth detection end under the action of the adjusting motor, the variable diameter auxiliary roller 5 is in contact with the joint 9 on the fourth detection end, the joint 9 completes detection when rotating to the position of the fourth detection end through the first detection end, the joint 9 is pushed outwards through the rotation of the variable diameter auxiliary roller 5, and the joint 9 is led to exit from the detection end 3 and enter into the guide plate 62.
When the variable diameter auxiliary roller 5 is required to act on the joints 9 on the two adjacent detection ends 3 simultaneously, the variable diameter auxiliary roller 5 is positioned in the middle of the two detection ends 3, and the electric telescopic rod 53 in the variable diameter auxiliary roller 5 is in an extension state and can drive the two joints 9 to move in opposite directions.
When the variable diameter auxiliary roller 5 is required to be contacted with one of the joints 9, the variable diameter auxiliary roller 5 is driven to move to one side by the adjusting motor, and the electric telescopic rod 53 is shortened.
The foregoing embodiments are merely specific examples of the present invention, and the scope of the present invention includes, but is not limited to, the product forms and styles of the foregoing embodiments, any suitable changes or modifications made by one of ordinary skill in the art, which are consistent with the claims of the present invention, shall fall within the scope of the present invention.

Claims (8)

1. The utility model provides a quick detection device of signal line joint, includes detection device main part (1) and pay-off subassembly, its characterized in that: the detection device is characterized in that the detection seat (2) is rotationally connected to the front side of the detection device body (1), the feeding component is located on the front side of the detection seat (2), a plurality of detection ends (3) are connected to the front side of the detection seat (2), an auxiliary plug part capable of moving along the axis direction connecting line of the two adjacent detection ends (3) is arranged between the two adjacent detection ends (3), and the auxiliary plug part comprises a connecting seat (4) and a variable-diameter auxiliary roller (5) rotationally connected with the connecting seat (4).
2. The rapid signal line connector detection device according to claim 1, wherein: the diameter-variable auxiliary roller (5) comprises an elastic roller surface (51) and an adjusting component arranged in the elastic roller surface (51), wherein the elastic roller surface (51) is elliptical, and a supporting block (52) with an arc surface on the outer side is connected between the adjusting component and the inner side surface of the elastic roller surface (51);
the adjusting component comprises a telescopic component and four connecting rods (55), the telescopic component comprises an electric telescopic rod (53) and a driven telescopic rod (54) which is coaxially arranged with the electric telescopic rod (53), the four connecting rods (55) are connected to the inner side of the supporting block (52) in a diamond-shaped rotating mode, and the extending end of the electric telescopic rod (53) and the extending end of the driven telescopic rod (54) are connected with the supporting block (52) on the inner side of the long diameter of the elastic roll surface (51).
3. The rapid signal line connector detection device according to claim 2, wherein: the axle center direction of elastic roll face (51) is equipped with the connecting block, electric telescopic handle (53) and driven telescopic handle (54) stiff end with the connecting block links firmly, be equipped with on connecting seat (4) and rotate motor (56), the output shaft of rotating motor (56) with the connecting block links firmly.
4. The rapid signal line connector detection device according to claim 1, wherein: the quantity of detection end (3) is four, and four detection ends (3) are circumference array setting, the pay-off subassembly is including being fixed in telescopic cylinder (6) of detection device main part (1) front side, the extension end of telescopic cylinder (6) is connected with L shape support frame, the vertical section of L shape support frame is connected with V-arrangement delivery sheet (61), the bottom of V-arrangement delivery sheet (61) is the cambered surface, the horizontal segment of L shape support frame is connected with deflector (62), one side downward sloping setting of V-arrangement delivery sheet (61) is kept away from to deflector (62).
5. The rapid signal line connector detection device according to claim 4, wherein: an auxiliary roller (63) is arranged on the upper side of the V-shaped feeding plate (61), the axis of the auxiliary roller (63) is horizontally arranged, and the signal wire connector (9) is placed between the auxiliary roller (63) and the V-shaped feeding plate (61).
6. The rapid signal line connector detection device according to claim 1, wherein: the detection seat (2) is provided with an adjusting groove, the length direction of the adjusting groove is set along the axis connecting line direction of two adjacent detection ends (3), an adjusting screw rod is arranged in the adjusting groove, the lower end of the connecting seat (4) is in threaded connection with the adjusting screw rod, and one end of the adjusting screw rod is connected with an adjusting motor.
7. The rapid signal line connector detection device according to claim 1, wherein: the outside of detection end (3) is equipped with linking bridge (7), the outer end rotation of linking bridge (7) is connected with feed roller (8).
8. The rapid signal line connector detection device according to claim 2, wherein: the support blocks (52) comprise two long support blocks and two short support blocks, the long support blocks are arranged on the inner side of the short diameter of the elastic roll surface (51), and the two short support blocks are arranged on the inner side of the long diameter of the elastic roll surface (51).
CN202410244535.7A 2024-03-05 Quick detection device of signal line connector Active CN117849671B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202410244535.7A CN117849671B (en) 2024-03-05 Quick detection device of signal line connector

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202410244535.7A CN117849671B (en) 2024-03-05 Quick detection device of signal line connector

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Publication Number Publication Date
CN117849671A true CN117849671A (en) 2024-04-09
CN117849671B CN117849671B (en) 2024-05-24

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