CN221100354U - Data line bending-resistant life testing device - Google Patents

Data line bending-resistant life testing device Download PDF

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Publication number
CN221100354U
CN221100354U CN202323015088.8U CN202323015088U CN221100354U CN 221100354 U CN221100354 U CN 221100354U CN 202323015088 U CN202323015088 U CN 202323015088U CN 221100354 U CN221100354 U CN 221100354U
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CN
China
Prior art keywords
data line
clamping seat
clamping
seat
line connector
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Active
Application number
CN202323015088.8U
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Chinese (zh)
Inventor
冉洪飞
王忆宁
周思远
范启明
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Cixi Hongyu Electric Appliance Co ltd
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Cixi Hongyu Electric Appliance Co ltd
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Abstract

The utility model discloses a data line bending-resistant life testing device which comprises a control unit, a supporting seat, a first clamping seat, a second clamping seat and an air cylinder, wherein the supporting seat is arranged on the control unit; the first clamping seat and the second clamping seat are arranged at intervals along the left-right direction, the first clamping seat is fixed on the supporting seat, the second clamping seat can be connected on the supporting seat in a front-back sliding manner, a first data line connector positioned on one end of the data line is connected with one connecting end of the on-off tester in a matched and spliced manner and is electrically connected with the other connecting end of the on-off tester in a matched and spliced manner, a cylinder is fixed on the supporting seat and is used for driving the second clamping seat to slide back and forth so that a connecting line positioned at the tail end of the first data line connector is bent back and forth relative to the first data line connector; the utility model can realize the test of the bending-resistant life of the data line, thereby being beneficial to the control of enterprises on the quality of the produced data line products.

Description

Data line bending-resistant life testing device
Technical Field
The utility model relates to the technical field of data line testing devices, in particular to a data line bending-resistant life testing device.
Background
The data line is a connecting device used for connecting communication equipment and used for carrying out data communication, and currently, the data line on the market comprises a connecting line and two data line connectors, one end of the connecting line is connected with the tail end of one data line connector, and the other end of the connecting line is connected with the tail end of the other data line connector; when the data line is used, one data line connector is matched with one communication device for plugging and electrically connecting, and the other data line connector is matched with the other communication device for plugging and electrically connecting; in the use process of the data line, the connecting line at the tail end of the data line connector is inevitably bent, and the connecting line at the tail end of the data line connector is easily broken over time, so that the data line is damaged and needs to be replaced; however, after the production of the data line in the market, the bending test is not performed on the connecting line at the tail end of the data line connector, so that the enterprise cannot know the quality of the produced data line product, that is, cannot realize the control of the quality of the data line.
Disclosure of utility model
Aiming at the defects of the prior art, the utility model provides a data line bending-resistant life testing device which can realize the test of the bending-resistant life of a data line, thereby being beneficial to the control of enterprises on the quality of produced data line products.
The utility model relates to a data line bending-resistant life testing device which comprises a control unit, a supporting seat, a first clamping seat, a second clamping seat and an air cylinder, wherein the control unit is used for controlling the first clamping seat to clamp a data line; the first clamping seat and the second clamping seat are arranged at intervals along the left-right direction, the first clamping seat is fixed on the supporting seat, the second clamping seat can be connected on the supporting seat in a front-back sliding mode, the first supporting seat is used for clamping a first data line connector located at one end of a data line, the second clamping seat is used for clamping a connecting line located at the tail end of the first data line connector, the first data line connector located at one end of the data line is connected with one connecting end of the on-off tester in a matched and spliced mode and is electrically connected with the other connecting end of the on-off tester in a matched and spliced mode, an air cylinder is fixed on the supporting seat and used for driving the second clamping seat to slide back and forth so that the connecting line located at the tail end of the first data line connector bends back and forth relative to the first data line connector, the second clamping seat is fixed with the driving end of the air cylinder, the on-off tester is electrically connected with the control unit, and the air cylinder is connected with an electromagnetic valve in the control unit.
The utility model can realize the test of the bending-resistant life of the data line, thereby being beneficial to the control of enterprises on the quality of the produced data line products.
The utility model relates to a data line bending-resistant life testing device, wherein the middle part of a first clamping seat in the front-rear direction is provided with a first clamping groove with an opening at the upper end, the first clamping groove is used for embedding a first data line connector, a first bolt in threaded connection with the first clamping seat is arranged on the first clamping seat positioned at the front side of the first clamping groove in a penetrating way from front to rear, the rear end of the first bolt extends into the first clamping groove, and the first data line connector is clamped in the first clamping groove through the first bolt; by adopting the structure, after the first data wire connector is embedded into the first clamping groove on the first clamping seat, and after the first bolt is screwed to clamp the first data wire connector in the first clamping groove, the first data wire connector can be reliably clamped on the first clamping seat.
The utility model relates to a data line bending-resistant life testing device, wherein the middle part of a second clamping seat in the front-rear direction is provided with a second clamping groove with an opening at the upper end, the second clamping groove is used for embedding a connecting wire positioned at the tail end of a first data line connector, a second bolt in threaded connection with the second clamping seat is arranged on the second clamping seat positioned at the front side of the second clamping groove in a penetrating way from front to rear, the rear end of the second bolt extends into the second clamping groove, and the connecting wire positioned at the tail end of the first data line connector is clamped in the second clamping groove through the second bolt; by adopting the structure, after the connecting wire at the tail end of the first data wire connector is embedded into the second clamping groove on the second clamping seat, and after the second bolt is screwed to clamp the connecting wire at the tail end of the first data wire connector in the second clamping groove, the connecting wire at the tail end of the first data wire connector can be reliably clamped on the second clamping seat.
The utility model relates to a data line bending-resistant life testing device, wherein a second clamping seat is connected to a supporting seat in a front-back sliding way through a sliding rail assembly; by adopting the structure, the second clamping seat can be reliably connected on the supporting seat in a sliding way back and forth through the sliding rail assembly.
Drawings
The accompanying drawings, which are included to provide a further understanding of the application and are incorporated in and constitute a part of this specification, illustrate embodiments of the application and together with the description serve to explain the application and do not constitute a limitation on the application. In the drawings:
fig. 1 is a schematic top view of the present utility model.
Detailed Description
Various embodiments of the utility model are disclosed in the following drawings, in which details of the practice are set forth in the following description for the purpose of clarity. However, it should be understood that these practical details are not to be taken as limiting the utility model. That is, in some embodiments of the utility model, these practical details are unnecessary. Moreover, for the purpose of simplifying the drawings, some conventional structures and components are shown in the drawings in a simplified schematic manner.
In addition, the descriptions of the "first," "second," and the like, herein are for descriptive purposes only and are not intended to be specifically construed as order or sequence, nor are they intended to limit the utility model solely for distinguishing between components or operations described in the same technical term, but are not to be construed as indicating or implying any relative importance or order of such features. Thus, a feature defining "a first" or "a second" may explicitly or implicitly include at least one such feature. In addition, the technical solutions of the embodiments may be combined with each other, but it is necessary to base that the technical solutions can be realized by those skilled in the art, and when the technical solutions are contradictory or cannot be realized, the combination of the technical solutions should be considered to be absent and not within the scope of protection claimed in the present utility model.
As shown in fig. 1, the data line bending-resistant life testing device of the utility model comprises a control unit, a supporting seat 1, a first clamping seat 2, a second clamping seat 3 and a cylinder 4; the first clamping seat 2 and the second clamping seat 3 are arranged at intervals along the left-right direction, the first clamping seat 2 is fixed on the supporting seat 1, the second clamping seat 3 can be connected on the supporting seat 1 in a front-back sliding mode, the first supporting seat 1 is used for clamping a first data line connector 51 positioned at one end of a data line, the second clamping seat 3 is used for clamping a connecting line 52 positioned at the tail end of the first data line connector 51, the first data line connector 51 positioned at one end of the data line is matched, spliced and electrically connected with one connecting end of the on-off tester, the second data line connector positioned at the other end of the data line is matched, spliced and electrically connected with the other connecting end of the on-off tester, the air cylinder 4 is fixed on the supporting seat 1 and used for driving the second clamping seat 3 to slide back-and-forth so that the connecting line 52 positioned at the tail end of the first data line connector 51 bends back-and-forth relative to the first data line connector 51, the second clamping seat 3 is fixed with the driving end of the air cylinder 4, the on-off tester is electrically connected with the control unit, and the air cylinder 4 is connected with an electromagnetic valve in the control unit.
The middle part of the first clamping seat 2 in the front-back direction is provided with a first clamping groove 21 with an opening at the upper end, the first clamping groove 21 is used for embedding a first data wire connector 51, a first bolt 22 in threaded connection with the first clamping seat 2 is penetrated on the first clamping seat 2 positioned at the front side of the first clamping groove 21 from front to back, the rear end of the first bolt 22 extends into the first clamping groove 21, and the first data wire connector 51 is clamped in the first clamping groove 21 through the first bolt 22; by adopting the structure, after the first data wire connector is embedded into the first clamping groove on the first clamping seat, and after the first bolt is screwed to clamp the first data wire connector in the first clamping groove, the first data wire connector can be reliably clamped on the first clamping seat.
The middle part of the second clamping seat 3 in the front-back direction is provided with a second clamping groove 31 with an opening at the upper end, the second clamping groove 31 is used for embedding a connecting wire 52 positioned at the tail end of the first data wire connector 51, a second bolt 32 in threaded connection with the second clamping seat 3 is penetrated on the second clamping seat 3 positioned at the front side of the second clamping groove 31 from front to back, the rear end of the second bolt 32 extends into the second clamping groove 31, and the connecting wire 52 positioned at the tail end of the first data wire connector 51 is clamped in the second clamping groove 31 through the second bolt 32; by adopting the structure, after the connecting wire at the tail end of the first data wire connector is embedded into the second clamping groove on the second clamping seat, and after the second bolt is screwed to clamp the connecting wire at the tail end of the first data wire connector in the second clamping groove, the connecting wire at the tail end of the first data wire connector can be reliably clamped on the second clamping seat.
The second clamping seat 3 is connected to the supporting seat 1 in a front-back sliding way through a sliding rail assembly 33; by adopting the structure, the second clamping seat can be reliably connected on the supporting seat in a sliding way back and forth through the sliding rail assembly.
When the utility model is used for testing the bending-resistant life of the data line, the first data line connector positioned on one end of the data line is clamped on the first clamping seat, then the connecting wire positioned at the tail end of the first data line connector is clamped on the second clamping seat, then the first data line connector is matched with one connecting end of the on-off tester and is electrically connected, the second data line connector positioned on the other end of the data line is matched with the other connecting end of the on-off tester and is electrically connected, then the on-off tester and the cylinder are started through the operation control unit, after the cylinder is started, the cylinder can drive the second clamping seat to slide back and forth, and the cylinder can slide back and forth once every time when the second clamping seat slides back and forth, the control unit counts once, and when the second clamping seat slides back and forth, the connecting wire positioned at the tail end of the first data line connector can be bent back and forth relative to the first data line connector, meanwhile, the on-off tester can monitor the on-off state of the data line connector in real time, the connecting wire positioned at the tail end of the first data line connector can be matched with the first data line connector and is electrically connected with the other connecting end of the on-off tester, when the tail end of the first data line connector is bent back and forth, the first data line connector can be disconnected, the on the data line connector can be controlled to trigger the data line connector to be disconnected, and the data line connector can be immediately broken, and the data line connector can be disconnected from the first connector and the data connector can be immediately tested, and the data line connector can be disconnected, and the data connector can be tested, and the time and the data line connector can be tested, and the time has the life can be tested.
The foregoing description is only illustrative of the utility model and is not to be construed as limiting the utility model. Various modifications and variations of the present utility model will be apparent to those skilled in the art. Any modification, equivalent replacement, improvement, or the like, which is within the spirit and principles of the present utility model, should be included in the scope of the claims of the present utility model.

Claims (4)

1. The utility model provides a data line life-span testing arrangement that buckles which characterized in that: comprises a control unit, a supporting seat (1), a first clamping seat (2), a second clamping seat (3) and a cylinder (4); the electromagnetic valve is characterized in that the first clamping seat (2) and the second clamping seat (3) are arranged at intervals along the left-right direction, the first clamping seat (2) is fixed on the supporting seat (1), the second clamping seat (3) can be connected onto the supporting seat (1) in a front-back sliding mode, the first supporting seat (1) is used for clamping a first data line connector (51) positioned at one end of a data line, the second clamping seat (3) is used for clamping a connecting line (52) positioned at the tail end of the first data line connector (51), the first data line connector (51) positioned at one end of the data line is connected with one of connecting ends of the on-off tester in a matched mode in an inserting mode and electrically connecting mode, the second data line connector positioned at the other end of the data line is connected with the other connecting end of the on-off tester in a matched mode in an inserting mode and electrically connecting mode, the air cylinder (4) is fixed on the supporting seat (1) and used for driving the second clamping seat (3) to slide back and forth so that the connecting line (52) positioned at the tail end of the first data line connector (51) is bent relative to the first data line connector (51), the second clamping seat (3) is clamped with the air cylinder (4) in a mode, and the electromagnetic valve is fixedly connected with the electromagnetic valve.
2. The data line bending-resistant life testing device according to claim 1, wherein a first clamping groove (21) with an opening at the upper end is formed in the middle of the front-rear direction of the first clamping seat (2), the first clamping groove (21) is used for embedding a first data line connector (51), a first bolt (22) in threaded connection with the first clamping seat (2) is arranged on the first clamping seat (2) located on the front side of the first clamping groove (21) in a penetrating mode from front to rear, the rear end of the first bolt (22) stretches into the first clamping groove (21), and the first data line connector (51) is clamped in the first clamping groove (21) through the first bolt (22).
3. The device for testing the bending life of the data line according to claim 1, wherein a second clamping groove (31) with an opening at the upper end is formed in the middle of the second clamping seat (3) in the front-rear direction, the second clamping groove (31) is used for embedding a connecting wire (52) positioned at the tail end of the first data line connector (51), a second bolt (32) in threaded connection with the second clamping seat (3) is arranged on the second clamping seat (3) positioned at the front side of the second clamping groove (31) in a penetrating manner from front to rear, the rear end of the second bolt (32) stretches into the second clamping groove (31), and the connecting wire (52) positioned at the tail end of the first data line connector (51) is clamped in the second clamping groove (31) through the second bolt (32).
4. The device for testing the bending life of the data line according to claim 1, wherein the second clamping seat (3) is connected to the supporting seat (1) in a manner of sliding back and forth through a sliding rail assembly (33).
CN202323015088.8U 2023-11-08 Data line bending-resistant life testing device Active CN221100354U (en)

Publications (1)

Publication Number Publication Date
CN221100354U true CN221100354U (en) 2024-06-07

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