CN205593711U - Automatic check out test set of turbo charger bleed valve gas tightness - Google Patents

Automatic check out test set of turbo charger bleed valve gas tightness Download PDF

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Publication number
CN205593711U
CN205593711U CN201620384333.3U CN201620384333U CN205593711U CN 205593711 U CN205593711 U CN 205593711U CN 201620384333 U CN201620384333 U CN 201620384333U CN 205593711 U CN205593711 U CN 205593711U
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CN
China
Prior art keywords
cylinder
guide rail
horizontal guide
tool
operating board
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
CN201620384333.3U
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Chinese (zh)
Inventor
曹建
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.)
Kunshan Hao Shuo Precision Optical Machinery Co Ltd
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Kunshan Hao Shuo Precision Optical Machinery Co Ltd
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Priority to CN201620384333.3U priority Critical patent/CN205593711U/en
Application granted granted Critical
Publication of CN205593711U publication Critical patent/CN205593711U/en
Expired - Fee Related legal-status Critical Current
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Abstract

The utility model discloses an automatic check out test set of turbo charger bleed valve gas tightness, its characterized in that: including operation panel (1), operation panel (1) is provided with PLC (2) down, be provided with on operation panel (1) with the appearance that leaks hunting (3) and manipulator that PLC (2) link to each other move a year mechanism (4), appearance (3) and the inflatable head of leaking hunting moves and carries mechanism (7) and link to each other, interface (71) that inflatable head moved year mechanism (7) are just to being used for placing tool (6) of waiting to detect bleed valve (5), tool (6) the top be provided with hold -down mechanism (8) and the manipulator moves manipulator (412) of carrying mechanism (4). The utility model provides a pair of automatic check out test set of turbo charger bleed valve gas tightness, degree of automation is high, realizes non -defective unit and defective products automatic classification and carry that detection efficiency is high, detects and the time of delivery weak point the difficult maloperation that artificial nature appears.

Description

Turbocharger deflation valve air-tightness automatic detection system
Technical field
This utility model relates to a kind of turbocharger deflation valve air-tightness automatic detection system, belongs to test technique automatic field.
Background technology
The now airtight detection of vent valve is all to be detected by leak detector, and non-defective unit is classified by getting ready to mark with defective products, and non-defective unit and defective products, by manually circulating, exist detection efficiency lowly, detect the time long, the problem such as maloperation of artificial property easily occurs.
Utility model content
This utility model solves the technical problem that and is to provide a kind of automaticity height, it is achieved the turbocharger deflation valve air-tightness automatic detection system that non-defective unit and defective products are automatically classified and carried;Further, this utility model provides a kind of turbocharger deflation valve air-tightness automatic detection system avoiding defective product box to pile phenomenon;Further, this utility model provides a kind of non-defective unit conveyer belt room to detect, it is to avoid conveyer belt is piled and mechanical hand persistently carries out capturing the turbocharger deflation valve air-tightness automatic detection system that phenomenon occurs.
For solving above-mentioned technical problem, the technical solution adopted in the utility model is:
Turbocharger deflation valve air-tightness automatic detection system, it is characterized in that: include operating board, described operating board is arranged with PLC, the leak detector being connected with described PLC and mechanical hand transfer mechanism it is provided with on described operating board, described leak detector is connected with pneumatic head transfer mechanism, the interface of described pneumatic head transfer mechanism is just to the tool for placing vent valve to be detected, and described tool is provided above hold-down mechanism and the mechanical hand of described mechanical hand transfer mechanism;It is provided with on the described operating board on described tool side and detects the conveying mechanism of qualified described vent valve for transmission automatically, through hole is had on the described operating board on described tool side, described through hole is detected the casing of underproof described vent valve by slideway be connected with being used for placing, and described casing is positioned at below described operating board.
Described tool includes housing, described casing center is provided with the one-level cavity of cylinder, the diameter that is provided below of described one-level cavity is less than the diameter of described one-level cavity and the cylindrical two grade cavitys concentric with described one-level cavity, the degree of depth sum of described one-level cavity and two grades of cavitys is less than the height of described housing, have a upward and downward in described housing sidewall and run through described housing and the gap being connected with described one-level cavity and two grades of cavitys, described gap includes the inverted trapezoidal gap wide at the top and narrow at the bottom being connected with described one-level cavity and the strip crevice being connected with described two grades of cavitys, described inverted trapezoidal gap is connected with strip crevice, described two grades of cavity centre positions are provided with the strip groove extending downward described housing lower surface and being connected with described strip crevice;Being provided with at least two proximity transducer for detection level degree in described two grades of cavitys, described proximity transducer is electrically connected with described hold-down mechanism.
The width of described strip crevice and strip groove all exhaustor external diameters with described vent valve adapt.
nullDescribed hold-down mechanism includes the first vertical guide rail being arranged on the described operating board on described tool side,It is provided with the first slide block on described first vertical guide rail,It is provided with the first cylinder on described first slide block,The lower surface of described first cylinder is provided with the first horizontal guide rail,It is provided with the second slide block upper surface described in the second slide block on described first horizontal guide rail and is provided with the second cylinder,Described second slide block lower surface is provided with briquetting,Described briquetting includes the first connecting plate being connected with described second slide block lower surface,The first chute that can slide on described first horizontal guide rail it is provided with in described first connecting plate,The length of described first connecting plate is identical with the length of described first horizontal guide rail,The end lower surface of described first connecting plate is provided with the pressure head for pushing down described vent valve,Described pressure head extends to above described tool along described first horizontal guide rail;Described first cylinder and the second cylinder are all connected with described PLC.
Described pneumatic head transfer mechanism includes the described interface being connected with the exhaustor of described vent valve, described interface and the 3rd cylinders, and described 3rd cylinder is connected with described PLC.
nullDescribed mechanical hand transfer mechanism includes two second vertical guide rails being arranged on described operating board,Described in two, the second vertical guide rail top is connected with the second horizontal guide rail,The upper surface slide of described second horizontal guide rail connects slide plate,The 3rd slide block it is provided with on second vertical guide rail described in two,It is provided with on described 3rd slide block vertically to the 4th cylinder of motion,It is connected with guide post between 4th cylinder described in two,The guide plate that can slide on described guide post it is provided with on described guide post,Described guide plate front end face is connected with the level the 5th cylinder to motion,Telescopic between described guide plate with described slide plate it is connected,The lower surface of described 5th cylinder is provided with threeth horizontal guide rail perpendicular with described second horizontal guide rail,It is provided with Four-slider on described 3rd horizontal guide rail,Described Four-slider lower surface is connected with the second connecting plate,The second chute that can slide on described 3rd horizontal guide rail it is provided with in described second connecting plate,The length of described second connecting plate is identical with the length of described 3rd horizontal guide rail,The lower surface of described second connecting plate is provided with the 6th cylinder of front backward moving,The lower surface of described 6th cylinder is provided with described mechanical hand;Described 4th cylinder, the 5th cylinder and the 6th cylinder are all connected with described PLC.
Being provided with the first photoelectric sensor at described slide egress, described first photoelectric sensor is connected with described PLC.
Described conveying mechanism includes conveyer belt, and described conveyer belt passes through reductor and motors, described reductor is provided with speed regulator, described conveyer belt is provided with the second photoelectric sensor, and described second photoelectric sensor is connected with described PLC.
Described hold-down mechanism, tool, through hole and conveying mechanism is from left to right set gradually on described operating board.
The display device being connected with described PLC it is additionally provided with on described operating board.
A kind of turbocharger deflation valve air-tightness automatic detection system that this utility model provides, two proximity transducers are installed on tool, when vent valve to be detected is put in tool, two sensors all sense vent valve when setting level, hold-down mechanism starts action, if vent valve is not set level, hold-down mechanism will not action;Vent valve is pushed down by hold-down mechanism after setting level, hold-down mechanism is made up of two cylinders and briquetting, hold-down mechanism is carried out left and right displacement by the second cylinder, first cylinder carries out upper and lower displacement again and pushes down vent valve, and protected by optical gate outside hold-down mechanism, after the first cylinder and the second cylinder piston-rod displacement push down vent valve, 3rd cylinder piston-rod displacement of pneumatic head transfer mechanism carries out inspection of leaking hunting, after checking well, pneumatic head transfer mechanism displacement returns, gas-tight confinement and the inflationtime of vent valve are set in leak detector, signal is passed on the transfer position of mechanical hand by OK Yu NG signal respectively by PLC on line, mechanical hand transfer mechanism is divided into three positions, 1. tool crawl position, 2. for placing the box location of defective work, 3 for placing the conveying mechanism position of certified products.Non-defective unit flows directly on conveying mechanism position, and defective products is directly by mechanical hand transfer to box location, and mechanical hand unclamps jaw, and defective products flows in casing.Casing is connected with slideway, and slideway is provided with the first photoelectric sensor with the seam of casing, and when the first photoelectric sensing product sense defective products, machinery just can continue running, it is to avoid phenomenon piled by casing.And non-defective unit and defective products number can be shown on man-computer interface.This utility model is the most qualified according to measuring, and mechanical hand is classified crawl automatically, and non-defective unit automatically captures and puts into conveying mechanism, conveying mechanism flow into next work station.Conveying mechanism is by conveyer belt motor and reductor, speed regulator and the second photoelectric sensor are constituted, when conveyer belt piled by vent valve, by the second photoelectric sensor according to last room, when being sensed, by the second photoelectric sensor, the position not having to capture, mechanical hand does not carry out grasping movement, and by next station, vent valve is taken away by work station personnel, mechanical hand carries out capturing certified products again and puts into conveyer belt, it is to avoid conveyer belt fails to lay down, pile after mechanical hand persistently carry out capturing the appearance of phenomenon.
This utility model only needs work station personnel to put in tool by vent valve to be detected, automatic transferring inflation detection, the most qualified automatically being classified by mechanical hand, the vent valve classified will be flowed into next station by conveyer belt, save the original operation personnel of leaking hunting of this station.
The beneficial effects of the utility model are: improve production efficiency and circulation sorts out error rate, improve production efficiency, and play the effect that machine is substituted.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model;
Fig. 2 is the structural representation of tool in this utility model;
Fig. 3 is the axonometric chart of Fig. 2;
Fig. 4 is the structural representation that Fig. 3 puts into vent valve;
Fig. 5 is the structural representation that Fig. 2 puts into vent valve;
Fig. 6 is left view or the right view of Fig. 5;
Fig. 7 is the structural representation of hold-down mechanism in this utility model;
Fig. 8 is the top view of Fig. 7;
Fig. 9 is the structural representation of pneumatic head transfer mechanism in this utility model;
Figure 10 is the structural representation of pneumatic head transfer mechanism duty in this utility model;
Figure 11 is the structural representation of mechanical hand transfer mechanism in this utility model;
Figure 12 is the structural representation of conveying mechanism in this utility model.
Detailed description of the invention
In conjunction with specific examples below and accompanying drawing, the utility model is described in further detail, and following instance is merely illustrative, and protection content of the present utility model is not limited to this.
As shown in Fig. 1 ~ Figure 12, turbocharger deflation valve air-tightness automatic detection system, it is characterized in that: include operating board 1, described operating board 1 is arranged with PLC2, the leak detector 3 being connected with described PLC2 and mechanical hand transfer mechanism 4 it is provided with on described operating board 1, described leak detector 3 is connected with pneumatic head transfer mechanism 7, the interface 71 of described pneumatic head transfer mechanism 7 is just to the tool 6 for placing vent valve 5 to be detected, and described tool 6 is provided above hold-down mechanism 8 and the mechanical hand 412 of described mechanical hand transfer mechanism 4;It is provided with on the described operating board 1 on described tool 6 side and detects the conveying mechanism 9 of qualified described vent valve 5 for transmission automatically, through hole 10 is had on the described operating board 1 on described tool 6 side, described through hole 10 is detected the casing 12 of underproof described vent valve 5 by slideway 11 be connected with being used for placing, and described casing 12 is positioned at below described operating board 1.
nullDescribed tool 6 includes housing 61,Described housing 61 is provided centrally with the one-level cavity 62 of cylinder,The diameter that is provided below of described one-level cavity 62 is less than the diameter of described one-level cavity 62 and the cylindrical two grade cavitys 63 concentric with described one-level cavity 62,The degree of depth sum of described one-level cavity 62 and two grades of cavitys 63 is less than the height of described housing 61,Have a upward and downward on described housing 61 sidewall and run through described housing 61 and the gap 64 being connected with described one-level cavity 62 and two grades of cavitys 63,Described gap 64 includes the inverted trapezoidal gap 65 wide at the top and narrow at the bottom being connected with described one-level cavity 62 and the strip crevice 66 being connected with described two grades of cavitys 63,Described inverted trapezoidal gap 65 is connected with strip crevice 66,Described two grades of cavity 63 centre positions are provided with the strip groove 67 extending downward described housing 61 lower surface and being connected with described strip crevice 66;Being provided with at least two proximity transducer for detection level degree in described two grades of cavitys 63, described proximity transducer is electrically connected with described hold-down mechanism 8.
Two grades of cavitys 63 are used for accommodating vent valve, and strip groove 67 is used for accommodating exhaustor 13, and tool 6 is put into or taken out to vent valve by being provided for of gap 64;The taking-up of vent valve is easy in the setting in inverted trapezoidal gap 65;The setting of strip crevice 66 is easy to the taking-up of vent valve and it is connected with the interface 71 of pneumatic head transfer mechanism 7.
The width of described strip crevice 66 and strip groove 67 all exhaustor 13 external diameters with described vent valve 5 adapt.
nullDescribed hold-down mechanism 8 includes the first vertical guide rail 81 being arranged on the described operating board 1 on described tool 6 side,It is provided with the first slide block 82 on described first vertical guide rail 81,It is provided with the first cylinder 83 on described first slide block 82,The lower surface of described first cylinder 83 is provided with the first horizontal guide rail 89,It is provided with the second slide block 84 on described first horizontal guide rail 89,Described second slide block 84 upper surface is provided with the second cylinder 85,Described second slide block 84 lower surface is provided with briquetting 86,Described briquetting 86 includes the first connecting plate 87 being connected with described second slide block 84 lower surface,The first chute that can slide on described first horizontal guide rail 89 it is provided with in described first connecting plate 87,The length of described first connecting plate 87 is identical with the length of described first horizontal guide rail 89,The end lower surface of described first connecting plate 87 is provided with the pressure head 88 for pushing down described vent valve 5,Described pressure head 88 extends to above described tool 6 along described first horizontal guide rail 89;Described first cylinder 83 is all connected with described PLC2 with the second cylinder 85.
The setting of hold-down mechanism 8, it is achieved that pressure head 88 vertical to motion and level to motion.
Described pneumatic head transfer mechanism 7 includes the described interface 71 being connected with the exhaustor 13 of described vent valve 5, and described interface 71 is connected with the 3rd cylinder 72, and described 3rd cylinder 72 is connected with described PLC2.
nullDescribed mechanical hand transfer mechanism 4 includes two second vertical guide rails 41 being arranged on described operating board 1,Described in two, the second vertical guide rail 41 top is connected with the second horizontal guide rail 42,The upper surface slide of described second horizontal guide rail 42 connects slide plate 43,It is provided with the 3rd slide block 44 on second vertical guide rail 41 described in two,It is provided with on described 3rd slide block 44 vertically to the 4th cylinder 47 of motion,It is connected with guide post 45 between 4th cylinder 47 described in two,The guide plate 46 that can slide on described guide post 45 it is provided with on described guide post 45,Described guide plate 46 front end face is connected with the level the 5th cylinder 48 to motion,Telescopic between described guide plate 46 with described slide plate 43 it is connected,The lower surface of described 5th cylinder 48 is provided with threeth horizontal guide rail perpendicular with described second horizontal guide rail 42,It is provided with Four-slider 49 on described 3rd horizontal guide rail,Described Four-slider 49 lower surface is connected with the second connecting plate 410,The second chute that can slide on described 3rd horizontal guide rail it is provided with in described second connecting plate 410,The length of described second connecting plate 410 is identical with the length of described 3rd horizontal guide rail,The lower surface of described second connecting plate 410 is provided with the 6th cylinder 411 of front backward moving,The lower surface of described 6th cylinder 411 is provided with described mechanical hand 412;Described 4th cylinder the 47, the 5th cylinder 48 is all connected with described PLC2 with the 6th cylinder 411.
The setting of mechanical hand transfer mechanism 4, achieve mechanical hand 412 and can carry out moving of three-dimensional along X-axis, Y-axis and Z axis, it is easy to mechanical hand 412 freely operate to three positions, i.e. 1. tool 6 crawl positions, 2., for placing casing 12 position of defective work, 3 for placing conveying mechanism 9 position of certified products.
Described slideway 11 exit is provided with the first photoelectric sensor, and described first photoelectric sensor is connected with described PLC2.
Described conveying mechanism 9 includes conveyer belt, and described conveyer belt passes through reductor and motors, described reductor is provided with speed regulator, described conveyer belt is provided with the second photoelectric sensor, and described second photoelectric sensor is connected with described PLC2.
Described hold-down mechanism 8, tool 6, through hole 10 and conveying mechanism 9 is from left to right set gradually on described operating board 1.
It is additionally provided with, on described operating board 1, the display device being connected with described PLC2.
This utility model is controlled by PLC2 on line leak detector 3, and it is the most qualified that leak detector 3 detects vent valve 5, and non-defective unit is classified by mechanical hand 412 transfer with defective products.This utility model automaticity is high, it is achieved non-defective unit is automatically classified with defective products and carries, and detection efficiency is high, and detection and time of delivery are short, are difficult to the maloperation artificial property occur.
The above is only preferred implementation of the present utility model; it is noted that, for those skilled in the art; on the premise of without departing from this utility model principle, it is also possible to make some improvements and modifications, these improvements and modifications also should be regarded as protection domain of the present utility model.

Claims (10)

1. turbocharger deflation valve air-tightness automatic detection system, it is characterized in that: include operating board (1), described operating board (1) is arranged with PLC(2), it is provided with and described PLC(2 on described operating board (1)) leak detector (3) that is connected and mechanical hand transfer mechanism (4), described leak detector (3) is connected with pneumatic head transfer mechanism (7), the interface (71) of described pneumatic head transfer mechanism (7) is just to being used for placing the tool (6) of vent valve to be detected (5), described tool (6) is provided above the mechanical hand (412) of hold-down mechanism (8) and described mechanical hand transfer mechanism (4);It is provided with on the described operating board (1) on described tool (6) side and detects the conveying mechanism (9) of qualified described vent valve (5) for transmission automatically, through hole (10) is had on the described operating board (1) on described tool (6) side, described through hole (10) is detected the casing (12) of underproof described vent valve (5) by slideway (11) be connected with being used for placing, and described casing (12) is positioned at described operating board (1) below.
nullTurbocharger deflation valve air-tightness automatic detection system the most according to claim 1,It is characterized in that: described tool (6) includes housing (61),Described housing (61) is provided centrally with the one-level cavity (62) of cylinder,The diameter that is provided below of described one-level cavity (62) is less than the diameter of described one-level cavity (62) and the cylindrical two grade cavitys (63) concentric with described one-level cavity (62),The degree of depth sum of described one-level cavity (62) and two grades of cavitys (63) is less than the height of described housing (61),Have a upward and downward on described housing (61) sidewall and run through described housing (61) and the gap (64) being connected with described one-level cavity (62) and two grades of cavitys (63),Described gap (64) includes the inverted trapezoidal gap (65) wide at the top and narrow at the bottom being connected with described one-level cavity (62) and the strip crevice (66) being connected with described two grades of cavitys (63),Described inverted trapezoidal gap (65) is connected with strip crevice (66),Described two grades of cavity (63) centre positions are provided with the strip groove (67) extending downward described housing (61) lower surface and being connected with described strip crevice (66);Being provided with at least two proximity transducer for detection level degree in described two grades of cavitys (63), described proximity transducer is electrically connected with described hold-down mechanism (8).
Turbocharger deflation valve air-tightness automatic detection system the most according to claim 2, it is characterised in that: the width of described strip crevice (66) and strip groove (67) all exhaustor (13) external diameters with described vent valve (5) adapt.
nullTurbocharger deflation valve air-tightness automatic detection system the most according to claim 1,It is characterized in that: described hold-down mechanism (8) includes the first vertical guide rail (81) being arranged on the described operating board (1) on described tool (6) side,It is provided with the first slide block (82) on described first vertical guide rail (81),It is provided with the first cylinder (83) on described first slide block (82),The lower surface of described first cylinder (83) is provided with the first horizontal guide rail (89),It is provided with the second slide block (84) on described first horizontal guide rail (89),Described second slide block (84) upper surface is provided with the second cylinder (85),Described second slide block (84) lower surface is provided with briquetting (86),Described briquetting (86) includes the first connecting plate (87) being connected with described second slide block (84) lower surface,Being provided with in described first connecting plate (87) can be at upper the first chute slided of described first horizontal guide rail (89),The length of described first connecting plate (87) is identical with the length of described first horizontal guide rail (89),The end lower surface of described first connecting plate (87) is provided with the pressure head (88) for pushing down described vent valve (5),Described pressure head (88) extends to described tool (6) top along described first horizontal guide rail (89);Described first cylinder (83) and the second cylinder (85) all with described PLC(2) be connected.
Turbocharger deflation valve air-tightness automatic detection system the most according to claim 1, it is characterized in that: described pneumatic head transfer mechanism (7) includes the described interface (71) being connected with the exhaustor of described vent valve (5) (13), described interface (71) is connected with the 3rd cylinder (72), described 3rd cylinder (72) and described PLC(2) it is connected.
nullTurbocharger deflation valve air-tightness automatic detection system the most according to claim 1,It is characterized in that: described mechanical hand transfer mechanism (4) includes two second vertical guide rails (41) being arranged on described operating board (1),Described in two, the second vertical guide rail (41) top is connected with the second horizontal guide rail (42),The upper surface slide of described second horizontal guide rail (42) connects slide plate (43),The 3rd slide block (44) it is provided with on second vertical guide rail (41) described in two,It is provided with on described 3rd slide block (44) vertically to the 4th cylinder (47) of motion,It is connected with guide post (45) between 4th cylinder (47) described in two,Being provided with on described guide post (45) can be at the upper guide plate (46) slided of described guide post (45),Described guide plate (46) front end face is connected with the level the 5th cylinder (48) to motion,Telescopic between described guide plate (46) with described slide plate (43) it is connected,The lower surface of described 5th cylinder (48) is provided with threeth horizontal guide rail perpendicular with described second horizontal guide rail (42),It is provided with Four-slider (49) on described 3rd horizontal guide rail,Described Four-slider (49) lower surface is connected with the second connecting plate (410),The second chute that can slide on described 3rd horizontal guide rail it is provided with in described second connecting plate (410),The length of described second connecting plate (410) is identical with the length of described 3rd horizontal guide rail,The lower surface of described second connecting plate (410) is provided with the 6th cylinder (411) of front backward moving,The lower surface of described 6th cylinder (411) is provided with described mechanical hand (412);Described 4th cylinder (47), the 5th cylinder (48) and the 6th cylinder (411) all with described PLC(2) be connected.
Turbocharger deflation valve air-tightness automatic detection system the most according to claim 1, it is characterised in that: described slideway (11) exit is provided with the first photoelectric sensor, described first photoelectric sensor and described PLC(2) be connected.
Turbocharger deflation valve air-tightness automatic detection system the most according to claim 1, it is characterized in that: described conveying mechanism (9) includes conveyer belt, described conveyer belt passes through reductor and motors, it is provided with speed regulator on described reductor, the second photoelectric sensor, described second photoelectric sensor and described PLC(2 it is provided with on described conveyer belt) it is connected.
Turbocharger deflation valve air-tightness automatic detection system the most according to claim 1, it is characterised in that: from left to right set gradually described hold-down mechanism (8), tool (6), through hole (10) and conveying mechanism (9) on described operating board (1).
Turbocharger deflation valve air-tightness automatic detection system the most according to claim 1, it is characterised in that: be additionally provided with and described PLC(2 on described operating board (1)) display device that is connected.
CN201620384333.3U 2016-05-03 2016-05-03 Automatic check out test set of turbo charger bleed valve gas tightness Expired - Fee Related CN205593711U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620384333.3U CN205593711U (en) 2016-05-03 2016-05-03 Automatic check out test set of turbo charger bleed valve gas tightness

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620384333.3U CN205593711U (en) 2016-05-03 2016-05-03 Automatic check out test set of turbo charger bleed valve gas tightness

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105716794A (en) * 2016-05-03 2016-06-29 昆山浩硕精密机械有限公司 Automatic detection equipment for air tightness of air release valve of turbocharger
CN106568585A (en) * 2016-10-20 2017-04-19 安徽会合智能设备有限公司 Turbocharger detection test bench

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105716794A (en) * 2016-05-03 2016-06-29 昆山浩硕精密机械有限公司 Automatic detection equipment for air tightness of air release valve of turbocharger
CN105716794B (en) * 2016-05-03 2018-03-09 昆山浩硕精密机械有限公司 Automatic detection equipment for air tightness of air release valve of turbocharger
CN106568585A (en) * 2016-10-20 2017-04-19 安徽会合智能设备有限公司 Turbocharger detection test bench
CN106568585B (en) * 2016-10-20 2019-08-16 安徽会合智能设备有限公司 Turbocharger detection test bench

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Granted publication date: 20160921

Termination date: 20170503