Airtight testing arrangement of high-voltage heavy current connector
Technical Field
The utility model relates to the technical field of connector production, in particular to an air tightness testing device for a high-voltage large-current connector.
Background
Along with the development of new energy car, the quick charge stake, the relevant trade technique of electric wire netting energy storage, demand to high-pressure heavy current connector is bigger and bigger, and the connector that adopts torsional spring terminal structure has advantages such as electric connection performance is good, shock resistance, reliability height, plug convenience, has obtained wide application.
After the high-voltage high-current connector is produced, the air tightness needs to be detected so as to guarantee the quality of the high-voltage high-current connector. The basic requirement of a certain connector for keeping good air tightness is to effectively guarantee the service life of a product and the use performance of the product, so that the connector needs to be subjected to an air tightness test after being manufactured so as to detect the air tightness between a terminal and a body or between the body and a shell. However, in the prior art, the airtightness of the connector is detected manually one by one, so that the test operation is time-consuming and labor-consuming, the efficiency is very low, inconvenience is brought to a production enterprise, and the production cost of the production enterprise is increased.
Therefore, it is necessary to design a device for testing the air tightness of a high-voltage high-current connector, so as to solve the above problems.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide an air tightness testing device for a high-voltage large-current connector, which is used for solving the problems in the background technology.
In order to achieve the purpose, the utility model provides the following technical scheme: the utility model provides an airtight testing arrangement of high-pressure heavy current connector, includes rack, connector body and installs the airtight testing tool who is used for detecting connector body gas tightness on the rack, airtight testing tool installs in the left side at rack top, and the top of rack rotates and installs the station rotary disk that bears the connector body, the station rotary disk is rotated by it of motor drive, and the station rotary disk is located airtight testing tool's right side, the top of rack still installs the balance main part and unloads the balance, and station rotary disk, balance main part and the balance three of unloading arrange from a left side to the right side in proper order, the top of rack is adapted with the dust-proof cabinet cover, and installs the control on the dust-proof cabinet cover and show the board.
Preferably, the top fixed mounting of station rotary disk has four to be the annular array distribution the alignment concave station that awaits measuring, the connector body is positioned in the detection mounting groove on the alignment concave station that awaits measuring, and one of them is counterpointed the concave station that awaits measuring and is towards airtight test tool.
Preferably, the top of rack is installed the test and is got bad module, sprue unloading module and test unloading module, and the test is got on bad module and the sprue unloading module equal slidable mounting and is got the clamping jaw of pressing from both sides the connector body, and the material of two clamping jaws is got the opposite direction, the test is got bad module and sprue unloading module and is located the front and back side of station rotary disk respectively.
Preferably, the test unloading module is also adapted to a vertical middle frame, the vertical middle frame is fixedly mounted on the machine cabinet, a power assembly for driving the test unloading module to move is arranged on the vertical middle frame, and the test unloading module is located between the station rotating disk and the swinging disk main body.
Preferably, the balance main part includes balance unloading subassembly and balance loading subassembly, and both all install on the rack, the right side at rack top still is installed and is suspended the worker frame, and the top of suspending the worker frame installs electronic track that moves, slidable mounting gets the finished product module on the electronic track groove that moves, and gets and also install the clamping jaw of getting the connector body on the finished product module, balance main part and the balance of unloading all are located the below of getting the finished product module.
Preferably, the top fixedly connected with mounting bracket of rack, and fixed mounting has telescopic cylinder on the mounting bracket, telescopic cylinder's output and airtight testing tool fixed connection, there is the testboard at the top of rack through support fixed mounting, and the testboard is located between station rotary disk and the airtight testing tool.
Compared with the prior art, the utility model has the beneficial effects that:
the high-voltage large-current connector airtightness testing device fixes the high-voltage large-current connector to be tested on each alignment concave station to be tested, and the station rotating disc rotates to enable one of the alignment to-be-tested concave stations to face the airtight testing tool, the telescopic air cylinder is started to drive the airtight testing tool to move towards the opposite alignment to-be-tested concave station, and then the airtight testing is carried out on the connector body under the matching of the airtight testing tool and the testing station, after the connector body on the alignment concave station to be tested is detected, the station rotating disc continues to rotate, so that the next alignment concave platform to be tested is rotated to the position of the airtight testing tool and the next round of testing task is performed, replacing the traditional mode of testing one by one manually, the test operation is more time-saving and labor-saving, the efficiency is higher, convenience is brought to production enterprises, and the production cost of the production enterprises is effectively reduced.
Drawings
FIG. 1 is a perspective view of the overall structure of the present invention;
FIG. 2 is a perspective view of the present invention with the dust cover removed;
FIG. 3 is a perspective view of the station rotating disk and the air tightness testing tool of the present invention;
FIG. 4 is a perspective view of a wobble plate body of the present invention;
FIG. 5 is a perspective view of the turntable of FIG. 3 according to the present invention.
In the figure: 1. a cabinet; 2. a dust-proof cabinet cover; 201. controlling a display machine; 3. a station rotating disc; 301. aligning the concave platform to be detected; 302. a connector body; 4. a hermetic test tool; 5. testing and taking a bad module; 6. a main runner blanking module; 7. suspending the tool frame; 8. taking a finished product module; 9. discharging and placing a plate; 10. electrically moving the rail; 11. a wobble plate main body; 111. a balance blanking assembly; 112. a balance feeding assembly; 12. a vertical middle frame; 13. testing the blanking module; 14. a mounting frame; 15. a telescopic cylinder; 16. and (5) a test bench.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1-5, the present invention provides the following embodiments:
example one
The utility model provides an airtight testing arrangement of high-pressure heavy current connector, including rack 1, connector body 302 and install airtight testing tool 4 that is used for detecting connector body 302 gas tightness on rack 1, airtight testing tool 4 installs in the left side at 1 top of rack, and the top of rack 1 rotates and installs the station rotary disk 3 that bears connector body 302, station rotary disk 3 is rotated by its motor drive, and station rotary disk 3 is located airtight testing tool 4's right side, balance main part 11 and the balance 9 of unloading are still installed to the top of rack 1, and station rotary disk 3, balance main part 11 and the balance 9 three of unloading are arranged from a left side to the right side in proper order, the top of rack 1 is adapted with dust-proof cabinet cover 2, and install control display board 201 on the dust-proof cabinet cover 2.
Further, the top of station rotary disk 3 is fixedly mounted with four alignment to-be-tested concave stations 301 distributed in an annular array, connector body 302 is positioned in the detection mounting groove on alignment to-be-tested concave station 301, and one of the alignment to-be-tested concave station 301 faces to airtight test tool 4.
Further, the top fixedly connected with mounting bracket 14 of rack 1, and fixed mounting has telescopic cylinder 15 on the mounting bracket 14, telescopic cylinder 15's output and 4 fixed connection of airtight test tool, and there is testboard 16 at the top of rack 1 through support fixed mounting, and testboard 16 is located between station rotary disk 3 and airtight test tool 4.
The specific implementation manner of this embodiment is: fixing the high-voltage high-current connector to be detected on each alignment concave platform to be detected 301, rotating the station rotating disc 3 to enable one alignment concave platform to be detected 301 to face the airtight testing tool 4, starting the telescopic air cylinder 15 and driving the airtight testing tool 4 to move towards the opposite alignment concave platform to be detected 301, and then carrying out airtight detection on the connector body 302 under the matching of the airtight testing tool 4 and the testing platform 16, after the connector body 302 on the alignment concave station 301 is detected, the station rotating disc 3 continues to rotate, so that the next alignment concave platform to be tested 301 is rotated to the position of the airtight testing tool 4 and the next round of testing task is performed, replacing the traditional way of testing one by one manually, the test operation is more time-saving and labor-saving, the efficiency is higher, convenience is brought to production enterprises, and the production cost of the production enterprises is effectively reduced.
Example two
The difference from the first embodiment is that the following contents are also included:
bad module 5 is got in the test installed at the top of rack 1, sprue unloading module 6 and test unloading module 13, and equal slidable mounting gets on bad module 5 and the sprue unloading module 6 and gets the clamping jaw of pressing from both sides and getting connector body 302, the material position of getting of two clamping jaws is opposite, bad module 5 is got in the test and sprue unloading module 6 is located the front and back side of station rotary disk 3 respectively, the test can get the incomplete product that the gas tightness detected not to pass through to the clamping jaw on the bad module 5 of clamp, in order to improve follow-up product practical application's fail safe nature.
Further, the test unloading module 13 is also adapted to a vertical middle frame 12, the vertical middle frame 12 is fixedly mounted on the cabinet 1, a power assembly for driving the test unloading module 13 to move is arranged on the vertical middle frame 12, the test unloading module 13 is located between the station rotating disk 3 and the swing disk main body 11, and the test unloading module 13 can detach a high-voltage high-current connector subjected to a test.
Further, balance main part 11 includes balance unloading subassembly 111 and balance loading subassembly 112, and both all install on rack 1, the right side at rack 1 top still is installed and is suspended worker frame 7, and the top that suspends worker frame 7 is installed and is electronic moving track 10, sliding mounting gets finished product module 8 on the electronic moving track groove, and get and also install the clamping jaw of getting and press from both sides connector body 302 on the finished product module 8, balance main part 11 and pendulum dish 9 of unloading all are located the below of getting finished product module 8, it can press from both sides the finished product high pressure heavy current connector that the gas tightness detected and pass through to get clamping jaw on the finished product module 8, can move it to the unloading instrument and wait subsequent packing.
Those not described in detail in this specification are within the skill of the art.
Although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that various changes in the embodiments and/or modifications of the utility model can be made, and equivalents and modifications of some features of the utility model can be made without departing from the spirit and scope of the utility model.