CN205328204U - Quick -operation joint leakproofness detects material loading station of machine - Google Patents

Quick -operation joint leakproofness detects material loading station of machine Download PDF

Info

Publication number
CN205328204U
CN205328204U CN201620041526.9U CN201620041526U CN205328204U CN 205328204 U CN205328204 U CN 205328204U CN 201620041526 U CN201620041526 U CN 201620041526U CN 205328204 U CN205328204 U CN 205328204U
Authority
CN
China
Prior art keywords
snap joint
quick
operation joint
horizontal
slip table
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201620041526.9U
Other languages
Chinese (zh)
Inventor
姜昌国
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Ningbo Sinppa Tools Co Ltd
Original Assignee
Ningbo Sinppa Tools Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Ningbo Sinppa Tools Co Ltd filed Critical Ningbo Sinppa Tools Co Ltd
Priority to CN201620041526.9U priority Critical patent/CN205328204U/en
Application granted granted Critical
Publication of CN205328204U publication Critical patent/CN205328204U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Examining Or Testing Airtightness (AREA)

Abstract

The utility model relates to a quick -operation joint sealing performance detection equipment technical field, in particular to quick -operation joint leakproofness detects material loading station of machine, dynamic seal nature detection station sets up in the graduated disk peripherally, and the graduated disk is equipped with and is used for pressing from both sides of clamping quick -operation joint to adorn the tool, dynamic seal nature detection station includes by the horizontal slip table of cylinder driven and vertical slip table, vertical slip table is installed on horizontal slip table and can be slided on the horizontal direction, it can be at the horizontal mounting plate of vertical direction motion to install on vertical slip table, the last a plurality of gas clamp of installing of horizontal mounting plate. The utility model discloses well gas clamp presss from both sides to get from quick -operation joint vibration dish feeding mechanism in the drive of horizontal slip table and vertical slip table waits the quick -operation joint that detects to with quick -operation joint's proximal end insert on the dutiful scale press from both sides the dress tool in, once the action accomplish a plurality of quick -operation joint's automatic feeding action, work efficiency is high.

Description

A kind of feeding station of snap joint sealing propertytest machine
Technical field
This utility model relates to snap joint leak-testing apparatus technical field, particularly to the feeding station of a kind of snap joint sealing propertytest machine。
Background technology
Snap joint, is that a kind of instrument that do not need can be achieved with the joint of pipeline connection or disconnection。Snap joint can be divided into: air snap joint, oxygen fuel gas snap joint, gas liquid share snap joint, oil pressure snap joint, noble gas snap joint, coolant water temperature oil snap joint, quasiconductor snap joint。
As conduit coupling, its sealing directly affects pipeline safety, and the sealing of snap joint includes static sealing and dynamic airtightness。Traditional manual detection adopts assembly line work form, and by artificial feeding and manual detection, a feeding completes static sealing and dynamic airtightness detection, the inefficiency of a snap joint。
Utility model content
The purpose of this utility model is in that for the deficiencies in the prior art, the feeding station of a kind of snap joint sealing propertytest machine is provided, gas is clipped in the drive of horizontal slide unit and longitudinal slide unit and grips snap joint to be detected from snap joint vibration disc material feeder structure, and the proximal end of snap joint is inserted in the clamping fixture on index dial, one-off completes the automatic charging action of multiple snap joint, and work efficiency is high。
For solving the problems referred to above, this utility model provides techniques below scheme:
The feeding station of a kind of snap joint sealing propertytest machine, dynamic airtightness detection station is arranged at index dial periphery, and index dial is provided with the clamping fixture for clamping snap joint;Described dynamic airtightness detection station includes by the horizontal slide unit of air cylinder driven and longitudinal slide unit;Described longitudinal slide unit is installed on horizontal slide unit and can slide in the horizontal direction;Described longitudinal slide unit is provided with the horizontal mounting plate that can move in the vertical direction;Described horizontal mounting plate is provided with multiple gas folder。
Further, described horizontal mounting plate there are four gas folders along the length direction spaced set of horizontal mounting plate。
Further, described index dial detects station correspondence position with dynamic airtightness and four clamping fixtures are installed。
Beneficial effect: the feeding station of a kind of snap joint sealing propertytest machine of the present utility model, gas is clipped in the drive of horizontal slide unit and longitudinal slide unit and grips snap joint to be detected from snap joint vibration disc material feeder structure, and the proximal end of snap joint is inserted in the clamping fixture on index dial, one-off completes the automatic charging action of multiple snap joint, and work efficiency is high。
Accompanying drawing explanation
Fig. 1 is perspective view of the present utility model;
Fig. 2 is the perspective view of feeding station in this utility model;
Fig. 3 is the perspective view of static sealing detection station in this utility model;
Fig. 4 is the perspective view one of dynamic airtightness detection station in this utility model;
Fig. 5 is the perspective view one of dynamic airtightness detection station in this utility model;
Fig. 6 is the perspective view of dynamic polarization mechanism in this utility model;
Fig. 7 is the stereo decomposing structural representation of dynamic polarization mechanism in this utility model;
Fig. 8 is the perspective view of sorting mechanism in this utility model;
Fig. 9 is the static sectional structure schematic diagram of snap joint;
Figure 10 is the dynamic sectional structure schematic diagram of snap joint;
Description of reference numerals: index dial 1, feeding station 2, static sealing detection station 3, dynamic airtightness detection station 4, feeding station 5, dynamic polarization mechanism 6, sorting mechanism 7, clamping fixture 8, snap joint 9, proximal end 9a, nut end 9b, overcoat 9c, horizontal slide unit 10, longitudinal slide unit 11, horizontal mounting plate 12, gas folder 13, detection manifold 14, enlarging 14a, manifold mounting bracket 15, clamping cylinder 16, horizontal sliding table 17, vertical slide unit 18, vertical slide unit 19, transversely mounted plate 20, through hole 20a, servomotor 21, polarization platform 22, lock pin 23, support column 24, cylindrical boss 24a, polarization block 25, cylindrical hole 25a, axle sleeve 26, cam 26a, switching mechanism 27, material-dropping hole 28, pole 29, feeding box 30。
Detailed description of the invention
Below in conjunction with Figure of description and embodiment, specific embodiment of the utility model is described in further detail:
With reference to shown in Fig. 1, multistation snap joint sealing propertytest machine is the multistation continuous detection apparatus that main body adopts index dial 1, the bottom of index dial 1 is provided with the servo drive motor for driving index dial 1 rotated stepwise, it is disposed with feeding station 2 around index dial 1, static sealing detection station 3, dynamic airtightness detection station 4 and feeding station 5, feeding station 5 is additionally provided with sorting mechanism 7, for filtering out underproof snap joint 9 product of detection, dynamic airtightness detection station 4 is additionally provided with dynamic polarization mechanism 6, for realizing dynamic analog when lock pin 23 inserts。The direction that index dial 1 is arranged along feeding station 2, static sealing detection station 3, dynamic airtightness detection station 4 and feeding station 5 rotates with 90 degree for step angle, and each station rotates, at index dial 1, the gap stopped and completing synchronization action。
On index dial 1, the position of corresponding four stations is equipped with the clamping fixture 8 for positioning snap joint 9 of equal number, first passes through feeding station 2 and snap joint 9 is transferred on clamping fixture 8 corresponding with feeding station 2 on index dial 1;Index dial 1 rotates 90 degree subsequently, index dial 1 is provided with the clamping fixture 8 of snap joint 9 through feeding station 2 move to static sealing detection station 3 place, by static sealing detection station 3, snap joint 9 carries out static sealing detection (for inserting the sealing of lock pin 23 state), static sealing detection mainly adopts the mode of pressurization, pressurize and pressure measurement that the force value in snap joint 9 is detected, in detected snap joint 9, detected value being in calibration range is qualified, and detected value is defective lower than calibration range;Index dial 1 rotates 90 degree subsequently, on index dial 1, snap joint 9 after static sealing detects is moved and is detected station 4 to dynamic airtightness snap joint 9 carries out dynamic airtightness detection (inserting the sealing of lock pin 23 state), adopt pressurization equally, force value in snap joint 9 is detected by the mode of pressurize and pressure measurement, when detected value be in calibration range qualified, detected value is defective lower than calibration value, dynamic airtightness detection station 4 is additionally provided with dynamic polarization mechanism 6, this dynamic polarization mechanism 6 acts on lock pin 23, lock pin 23 is made to produce polarization dynamic analog relative to snap joint 9, it is inserted in snap joint 9 and is under use state lock pin 23 and the matching relationship of snap joint 9 simulating lock pin 23 under normality;Index dial 1 rotates 90 degree subsequently, index dial 1 moves to feeding station 5 through the snap joint 9 of dynamic airtightness detection, by feeding station 5, the snap joint 9 after the detection on clamping fixture 8 is taken out, sorting mechanism 7 certified products after detection and defective work are sorted。
It should be noted that only have static sealing detection and dynamic airtightness to be all demarcated as qualified snap joint 9 in detecting just finally be judged to certified products, enter into certified products Turnover Box or connect on the conveyer belt of next one operation。
With reference to shown in Fig. 2, feeding station 2 includes the horizontal slide unit 10 by air cylinder driven and longitudinal slide unit 11, longitudinal slide unit 11 is installed on horizontal slide unit 10 and can slide in the horizontal direction, longitudinal slide unit 11 is provided with the horizontal mounting plate 12 that can move in the vertical direction, horizontal mounting plate 12 is provided with multiple gas folder 13, for synchronizing to grip multiple snap joint 9, improve detection efficiency, gas folder 13 grips snap joint 9 to be detected in the drive of horizontal slide unit 10 and longitudinal slide unit 11 from snap joint vibration disc material feeder structure, and the proximal end 9a of snap joint 9 is inserted in the clamping fixture 8 on dutiful scale 1。
With reference to shown in Fig. 3, static sealing detection station 3 includes multiple detection manifold 14 and one for installing the manifold mounting bracket 15 of detection manifold 14, the top of manifold mounting bracket 15 is provided with for controlling the cylinder that detection manifold 14 vertically moves, detection manifold 14 is positioned at the surface of clamping fixture 8, the lower end of detection manifold 14 is provided with the enlarging 14a matched of the nut end 9b with snap joint 9, when air cylinder driven detect manifold 14 move down the nut end 9b with snap joint 9 offset time, snap joint 9 can be made to realize self sealss, the sidepiece of detection manifold 14 is provided with the arm connected with source of the gas, with to inflating pressure in snap joint 9, it is additionally provided with pressure transducer between detection manifold 14 and source of the gas, for detecting the atmospheric pressure value in snap joint 9, inflation is stopped after the blowing pressure reaches setup pressure value, carry out the bag pressure of certain time, the force value in snap joint 9 is again detected after pressurize, if the static sealing detection that namely pressure differential after pressurize between force value and the setup pressure value of detection judges this snap joint 9 more than calibration value is defective。
With reference to shown in Fig. 4 and Fig. 5, dynamic airtightness detection station 4 also includes multiple detection manifold 14 and a manifold mounting bracket 15, on dynamic airtightness detection station 4, the installation method of detection manifold 14 is identical with detection manifold 14 on static sealing detection station 3 with operation principle, dynamic airtightness detection station 4 also includes multiple clamping cylinder 16 for clamping snap joint 9 overcoat 9c, clamping cylinder 16 is arranged on one by the horizontal sliding table 17 of air cylinder driven, this horizontal sliding table 17 is arranged on one by the top of the vertical slide unit 18 of air cylinder driven, clamping cylinder 16 under horizontal sliding table 17 drives with snap joint 9 close to and clamp overcoat 9c, the overcoat 9c of snap joint 9 is dialed up so that lock pin 23 is inserted in the maincenter of snap joint 9 under the drive of vertical cylinder。
With reference to shown in Fig. 6 and Fig. 7, dynamic airtightness detection station 4 also includes being arranged on the dynamic polarization mechanism 6 being inserted in maincenter by lock pin 23 from clamping fixture 8 lower end below index dial 1, this dynamic polarization mechanism 6 includes vertical slide unit 19, servomotor 21, polarization platform 22 and lock pin 23, vertical slide unit 19 is provided with a horizontally disposed transversely mounted plate 20, servomotor 21 is installed on the lower end of this transversely mounted plate 20, polarization platform 22 is installed on the upper end of transversely mounted plate 20, the both sides, bottom of polarization platform 22 have been bolted support column 24, the bottom of support column 24 is provided with cylindrical boss 24a, transversely mounted plate 20 is provided with and the through hole 20a of this cylindrical boss 24a matched in clearance, polarization block 25 is installed in the middle part of polarization platform 22 lower end, the central part of this polarization block 25 is provided with cylindrical hole 25a, the outfan of servomotor 21 be provided with through transversely mounted plate 20 and be inserted into polarization block 25 cylindrical hole 25a in axle sleeve 26, the top of axle sleeve 26 is provided with cam 26a, lock pin 23 is installed vertically on the upper end of polarization platform 22, lock pin 23 is inserted in the maincenter of snap joint 9 through clamping fixture 8 from bottom to up under the drive of vertical slide unit 19, when servomotor 21 propeller shaft sleeve 26 rotates in the cylindrical hole 25a polarizing block 25, the cam 26a at axle sleeve 26 top clashes into cylindrical hole 25a inwall, polarization platform 22 is made to polarize motion on transversely mounted plate 20, wherein the gap between cylindrical boss 24a and the through hole 20a being mated bottom support column 24 is for controlling amplitude when polarization platform 22 occurs polarization to move。
With reference to shown in Fig. 8, feeding station 5 also includes the horizontal slide unit 10 identical with feeding station 2, longitudinal slide unit 11, the gentle folder 13 of horizontal mounting plate 12, for snap joint 9 is gripped from clamping fixture 8, with feeding station 2 the difference is that, feeding station 5 also includes the sorting mechanism 7 being arranged at below index dial 1, sorting mechanism 7 includes switching mechanism 27 and material-dropping hole 28, switching mechanism 27 is provided with and gas folder 13 pole 29 one to one on feeding station 5, pole 29 is simultaneously also in clamping fixture 8 one_to_one corresponding of feeding station 5 with on index dial 1, each pole 29 is controlled scalable respectively by cylinder, the front end of pole 29 is provided with feeding box 30, detect the qualified pole 29 corresponding to snap joint 9 to stretch out under the control of cylinder, the snap joint 9 unclamped after gas being pressed from both sides 13 grippings by the feeding box 30 of pole 29 front end is caught, detect the pole 29 corresponding to underproof snap joint 9 not stretch out, after gas folder 13 unclamps, underproof snap joint 9 falls into either directly through material-dropping hole 28 to be arranged on and does not conform in product Turnover Box below material-dropping hole 28, overturn by controlling switching mechanism 27, snap joint 9 qualified in feeding box 30 is poured in certified products Turnover Box or connects on the conveyer belt of next operation。
Multistation snap joint sealing propertytest machine adopts index dial 1 feed mechanism driven by servo drive motor, by feeding station 2, static sealing detection station 3, dynamic airtightness detection station 4 and feeding station 5 are arranged in around index dial 1, whole occupation area of equipment is little, a large amount of employing cylinders are as driving element, debugging is convenient, control simple, achieve the detection of snap joint 9 static sealing, automatic sorting action after dynamic airtightness detection and detection, especially dynamic airtightness detection is additionally provided with for simulating the dynamic polarization mechanism 6 that lock pin 23 under normality is inserted in snap joint 9, instead of the hard work of traditional manual detection fast sealing, improve detection efficiency, loss is low, automaticity is high。
The above, it it is only preferred embodiment of the present utility model, not technical scope of the present utility model is made any restriction, therefore every any trickle amendment, equivalent variations and modification above example made according to technical spirit of the present utility model, all still fall within the scope of the technical solution of the utility model。

Claims (3)

1. the feeding station of a snap joint sealing propertytest machine, it is characterized in that: dynamic airtightness detection station (4) is arranged at index dial (1) periphery, and index dial (1) is provided with the clamping fixture (8) for clamping snap joint (9);Described dynamic airtightness detection station (4) includes the horizontal slide unit (10) by air cylinder driven and longitudinal slide unit (11);Described longitudinal slide unit (11) is installed on horizontal slide unit (10) and above and can slide in the horizontal direction;Described longitudinal slide unit (11) is provided with the horizontal mounting plate (12) that can move in the vertical direction;Described horizontal mounting plate (12) is provided with multiple gas folder (13)。
2. the feeding station of a kind of snap joint sealing propertytest machine according to claim 1, it is characterised in that: described horizontal mounting plate (12) there are four gas folder (13) along the length direction spaced set of horizontal mounting plate (12)。
3. the feeding station of a kind of snap joint sealing propertytest machine according to claim 2, it is characterised in that: described index dial (1) above detects station (4) correspondence position be provided with four clamping fixtures (8) with dynamic airtightness。
CN201620041526.9U 2016-01-15 2016-01-15 Quick -operation joint leakproofness detects material loading station of machine Expired - Fee Related CN205328204U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620041526.9U CN205328204U (en) 2016-01-15 2016-01-15 Quick -operation joint leakproofness detects material loading station of machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620041526.9U CN205328204U (en) 2016-01-15 2016-01-15 Quick -operation joint leakproofness detects material loading station of machine

Publications (1)

Publication Number Publication Date
CN205328204U true CN205328204U (en) 2016-06-22

Family

ID=56196340

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201620041526.9U Expired - Fee Related CN205328204U (en) 2016-01-15 2016-01-15 Quick -operation joint leakproofness detects material loading station of machine

Country Status (1)

Country Link
CN (1) CN205328204U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107521971A (en) * 2017-09-26 2017-12-29 深圳双十科技有限公司 A kind of fully automatic feeding machine

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107521971A (en) * 2017-09-26 2017-12-29 深圳双十科技有限公司 A kind of fully automatic feeding machine

Similar Documents

Publication Publication Date Title
CN205333272U (en) Multistation quick -operation joint leakproofness detects machine
CN105509980A (en) Multi-station rapid joint tightness detector
CN110039308A (en) Water temperature sensor assembles equipment and its working method
CN110068422B (en) Quick automatic detection verifying attachment of bluetooth digital pressure table
CN107576857B (en) Automatic debugging system of multiport cavity filter
CN110774000A (en) Full-automatic venturi assembly line
CN109794928A (en) A kind of electric automatization clamping device
CN205333268U (en) Quick -operation joint dynamic seal nature detection station
CN105312446A (en) Special press-in and press-riveting machine for automotive belt stretcher
CN103697830A (en) Integral system for measuring warpage and surface stress of protection glass of touch screen
CN106182887A (en) A kind of detection laminating mechanism
CN205328204U (en) Quick -operation joint leakproofness detects material loading station of machine
CN109396827A (en) A kind of angle grinder head capsule automatically assembles equipment
CN106848372B (en) Battery cell processing production line
CN104493404B (en) Welding fixture for robot welding automobile seat angle iron
CN209503417U (en) A kind of iron core group installing is standby
CN205483444U (en) Quick -operation joint static sealing nature detection station
CN207522960U (en) Even material breaks disconnected device to inserts
CN108673182B (en) A kind of clamping flexible frock suitable for metal plate bracket
CN204397225U (en) A kind of weld jig for robot welding automotive seat angle bar
CN107941521B (en) A kind of clamp detection device and its working method with multistation
CN203310587U (en) Leak detection device used for transfusion bag automatic production line
CN205373982U (en) A dynamic polarization mechanism for detection of quick -operation joint dynamic seal nature
CN205463246U (en) Quick -operation joint leakproofness detects sorting mechanism of machine
CN105424297A (en) Dynamic sealing performance detection station for quick coupling

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20160622

Termination date: 20200115