CN110186552A - A kind of full-automatic three generations's hub bearing vibration measuring set and measurement method - Google Patents

A kind of full-automatic three generations's hub bearing vibration measuring set and measurement method Download PDF

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Publication number
CN110186552A
CN110186552A CN201910549143.0A CN201910549143A CN110186552A CN 110186552 A CN110186552 A CN 110186552A CN 201910549143 A CN201910549143 A CN 201910549143A CN 110186552 A CN110186552 A CN 110186552A
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sensor
generations
cylinder
hub bearing
fixing seat
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CN110186552B (en
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孙连贵
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Dalian Behring Bearing Instrument Co Ltd
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Dalian Behring Bearing Instrument Co Ltd
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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01HMEASUREMENT OF MECHANICAL VIBRATIONS OR ULTRASONIC, SONIC OR INFRASONIC WAVES
    • G01H11/00Measuring mechanical vibrations or ultrasonic, sonic or infrasonic waves by detecting changes in electric or magnetic properties
    • G01H11/06Measuring mechanical vibrations or ultrasonic, sonic or infrasonic waves by detecting changes in electric or magnetic properties by electric means

Abstract

The invention discloses a kind of full-automatic three generations's hub bearing vibration measuring set and measurement methods, including large platform, rack, driving mechanism, conveying elevating mechanism, automatic delivering mechanism, measurement elevating mechanism, force adding machine and measuring mechanism.The present invention realized when measuring bearing gauge head automatically lift, automatic 3 points of measurements, the automatic metal (uppers, automatic transportation bearing of bearing to be measured.The shortcomings that being lifted by the sensor of vibration measuring set gauge head, fall mechanism after rise, measurement surface is scratched when not only avoiding handling measured bearing and the automatic mechanism for realizing 3 points of measurements, and the distributing structure of corresponding excellent, good, poor is realized to measured bearing.

Description

A kind of full-automatic three generations's hub bearing vibration measuring set and measurement method
Technical field
The present invention relates to a kind of measuring instrument and measurement method more particularly to a kind of full-automatic three generations's hub bearing vibration measurements Instrument and measurement method.
Background technique
Since structure is complicated for automobile three generations's hub bearing itself, so China is to three generations's hub bearing oscillating mass at present Detection, lying substantially in can not detect or manual simplified detecting state, and not only detection efficiency is low, also adds for manual simplified detection The labor intensity of testing staff, and human error in the detection process cannot be overcome, make the efficiency of manager statistically compared with It is low, and lag behind the trend of external detection bearing oscillating mass development.
Summary of the invention
To solve the problems, such as above-mentioned and defect, the present invention provides a kind of full-automatic three generations's hub bearing vibrations to survey Measure instrument and measurement method.
Technical solution of the present invention:
A kind of full-automatic three generations's hub bearing vibration measuring set, including large platform 2, rack 3, driving mechanism, conveying lifting Mechanism, automatic delivering mechanism, measurement elevating mechanism, force adding machine 15 and measuring mechanism 14;
The rack 3 is used to carry the large platform 2 of full-automatic three generations's hub bearing vibration measuring set;The large platform 2 is set In 3 upper surface of rack, for accepting the other component of full-automatic three generations's hub bearing vibration measuring set;
The driving mechanism includes that mandrel 1, spindle motor 4, belt and oily hydrostatic spindle 9, the spindle motor 4 are fixed on In rack 3, the tail end of the output end of spindle motor 4 and oily hydrostatic spindle 9 is linked by belt, and oily 9 upper end of hydrostatic spindle is successively It is fixedly connected across rack 3, large platform 2 with mandrel 1, so that mandrel 1 be driven to rotate;
The automatic delivering mechanism includes front stop mechanism 6, rear gear stop mechanism 7, conveyer 11, feeder motor 12 and pallet 10;The conveyer 11 is fixed on 2 top of large platform, corresponding with 14 position of measuring mechanism;The front stop mechanism 6 is located at conveying The starting point of 11 direction of advance of machine is fixed on the fuselage of conveyer 11, and front stop mechanism 6 includes that front stops the supple of gas or steam and cylinder and before stops to connect Nearly switch;Gear stop mechanism 7 is located at the middle part of 11 direction of advance of conveyer, is fixed on the fuselage of conveyer 11 after described, rear to keep off Stop mechanism 7 keeps off cylinder of stopping the supple of gas or steam and stops approaching switch with after after including;The feeder motor 12 is for driving conveyer 11;
The conveying elevating mechanism includes conveying lifting cylinder 5, connecting plate 20, gas connector and tracheae;Two conveying liftings Cylinder 5 is symmetrically fixed on 3 side of rack, and the piston rod of conveying lifting cylinder 5 is connect with connecting plate 20, defeated for fixing and accepting Machine 11 is sent, by conveying the rising of lifting cylinder 5 and retracting the lifting of realization automatic delivering mechanism;The tracheae passes through gas connector It is connected to conveying lifting cylinder 5, is supplied for conveying lifting cylinder 5;
The measurement elevating mechanism includes measuring mechanism lifting cylinder 13, column 17 and upper plate 16;Under more root posts 17 End is respectively and vertically fixed on large platform 2, and the upper end of column 17 is fixedly connected with upper plate 16;Measuring mechanism lifting cylinder 13 is fixed on On corresponding column 17;
The force adding machine 15 includes vertical plate 18, transverse slat 19, angular contact bearing 31, reinforcing cylinder 32, movable guide bush 33, adds Power disk 34, fixing sleeve 35;Two 18 upper ends of vertical plate are respectively and vertically fixed at the lower surface of upper plate 16, positioned at the inside of column 17; Two vertical plates, 18 lower end is fixedly connected with transverse slat 19;Reinforcing 32 upper end of cylinder is fixed on the middle part of upper plate 16, reinforces under cylinder 32 End is connect across transverse slat 19 with movable guide bush 33;35 sets of the fixing sleeve outside movable guide bush 33, fix by 35 upper end of fixing sleeve On transverse slat 19;The reinforcing disk 34 is connect by angular contact bearing 31 with movable guide bush 33;
The measuring mechanism 14 include coarse adjustment movable plate 21, coarse adjustment fixing seat 22, fine tuning fixing seat 23, trimming hand wheel 24, Sensor cylinder 25, sensor fixing seat 26, sensor sleeve 27, locking hand button 28, measurement fixing seat 30 and sensor;It is described Measurement 30 upper end of fixing seat is fixed on the lower surface of transverse slat 19, and measurement 30 lower end of fixing seat is connect with coarse adjustment fixing seat 22;It is described Coarse adjustment fixing seat 22 connects coarse adjustment movable plate 21, realizes the coarse adjustment of sensor position;22 bottom of coarse adjustment fixing seat and fine tuning Fixing seat 23 connects, and fine tuning 23 side of fixing seat is equipped with trimming hand wheel 24, realizes sensor position by rotary fine adjustment handwheel 24 Fine tuning;23 bottom of fine tuning fixing seat is connect with sensor cylinder 25, the tailpiece of the piston rod connection of the sensor cylinder 25 Sensor fixing seat 26 is fixedly connected with sensor sleeve 27 in sensor fixing seat 26;Sensor is fixed on sensor and fixes It is wrapped up on seat 26 and by sensor sleeve 27, exposes sensor contact 29;Sensor fixing seat 26 is equipped with locking hand button 28, Realize that sensor is locked;The measurement fixing seat 30 of three sets of measuring mechanisms 14 is separated by 120 ° and is separately fixed on transverse slat 19, real Now it is tested 3 points of measurements of 8 vibration signal of three generations's hub bearing.
Beneficial effects of the present invention: it lifted by the sensor of vibration measuring set gauge head, fall mechanism after rise, not only avoid dress The shortcomings that measurement surface is scratched when unloading measured bearing and the automatic mechanism for realizing 3 points of measurements, and phase is realized to measured bearing The distributing structure for the excellent, good, poor answered.
Detailed description of the invention
Fig. 1 is bearing vibration measuring instrument complete machine structure schematic diagram under conveying lifting cylinder stretching state;
Fig. 2 (a) is bearing vibration measuring instrument complete machine structure schematic diagram under conveying lifting cylinder retracted mode;
Fig. 2 (b) is the A-A cross-sectional view of Fig. 2 (a);
Fig. 3 is measuring mechanism schematic diagram;
Fig. 4 is force adding machine schematic diagram;
In figure: 1 mandrel;2 large platforms;3 racks;4 spindle motors;5 conveying lifting cylinders;6 front stop mechanisms;Gear stops after 7 Mechanism;8 tested three generations's hub bearings;9 oily hydrostatic spindles;10 pallets;11 conveyers;12 feeder motors;13 mechanism lifting cylinders; 14 measuring mechanisms;15 force adding machines;16 upper plates;17 columns;18 vertical plates;19 transverse slats;20 connecting plates;21 coarse adjustment movable plates;22 is thick Adjust fixing seat;23 fine tuning fixing seats;24 trimming hand wheels;25 sensor cylinders;26 sensor fixing seats;27 sensor sleeves;28 Lock hand button;29 sensor contacts;30 measurement fixing seats;31 angular contact bearings;32 reinforcing cylinders;33 movable guide bushs;34 reinforcings Disk;35 fixing sleeves.
Specific embodiment
To make the object, technical solutions and advantages of the present invention clearer, below in conjunction with attached drawing to embodiment party of the present invention Formula is described in further detail:
A kind of full-automatic three generations's hub bearing vibration measuring set, including large platform 2, rack 3, driving mechanism, conveying lifting Mechanism, automatic delivering mechanism, measurement elevating mechanism, force adding machine 15 and measuring mechanism 14;
The rack 3 is used to carry the large platform 2 of full-automatic three generations's hub bearing vibration measuring set;The large platform 2 is set In 3 upper surface of rack, for accepting the other component of full-automatic three generations's hub bearing vibration measuring set;
The driving mechanism includes that mandrel 1, spindle motor 4, belt and oily hydrostatic spindle 9, the spindle motor 4 are fixed on In rack 3, the tail end of the output end of spindle motor 4 and oily hydrostatic spindle 9 is linked by belt, and oily 9 upper end of hydrostatic spindle is successively It is fixedly connected across rack 3, large platform 2 with mandrel 1, so that mandrel 1 be driven to rotate;
The automatic delivering mechanism includes front stop mechanism 6, rear gear stop mechanism 7, conveyer 11, feeder motor 12 and pallet 10;The conveyer 11 is fixed on 2 top of large platform, corresponding with 14 position of measuring mechanism;The front stop mechanism 6 is located at conveying The starting point of 11 direction of advance of machine is fixed on the fuselage of conveyer 11, and front stop mechanism 6 includes that front stops the supple of gas or steam and cylinder and before stops to connect Nearly switch;Gear stop mechanism 7 is located at the middle part of 11 direction of advance of conveyer, is fixed on the fuselage of conveyer 11 after described, rear to keep off Stop mechanism 7 keeps off cylinder of stopping the supple of gas or steam and stops approaching switch with after after including;The feeder motor 12 is for driving conveyer 11;
The conveying elevating mechanism includes conveying lifting cylinder 5, connecting plate 20, gas connector and tracheae;Two conveying liftings Cylinder 5 is symmetrically fixed on 3 side of rack, and the piston rod of conveying lifting cylinder 5 is connect with connecting plate 20, defeated for fixing and accepting Machine 11 is sent, by conveying the rising of lifting cylinder 5 and retracting the lifting of realization automatic delivering mechanism;The tracheae passes through gas connector It is connected to conveying lifting cylinder 5, is supplied for conveying lifting cylinder 5;
The measurement elevating mechanism includes measuring mechanism lifting cylinder 13, column 17 and upper plate 16;Under more root posts 17 End is respectively and vertically fixed on large platform 2, and the upper end of column 17 is fixedly connected with upper plate 16;Measuring mechanism lifting cylinder 13 is fixed on On corresponding column 17;
The force adding machine 15 includes vertical plate 18, transverse slat 19, angular contact bearing 31, reinforcing cylinder 32, movable guide bush 33, adds Power disk 34, fixing sleeve 35;Two 18 upper ends of vertical plate are respectively and vertically fixed at the lower surface of upper plate 16, positioned at the inside of column 17; Two vertical plates, 18 lower end is fixedly connected with transverse slat 19;Reinforcing 32 upper end of cylinder is fixed on the middle part of upper plate 16, reinforces under cylinder 32 End is connect across transverse slat 19 with movable guide bush 33;35 sets of the fixing sleeve outside movable guide bush 33, fix by 35 upper end of fixing sleeve On transverse slat 19;The reinforcing disk 34 is connect by angular contact bearing 31 with movable guide bush 33;
The measuring mechanism 14 include coarse adjustment movable plate 21, coarse adjustment fixing seat 22, fine tuning fixing seat 23, trimming hand wheel 24, Sensor cylinder 25, sensor fixing seat 26, sensor sleeve 27, locking hand button 28, measurement fixing seat 30 and sensor;It is described Measurement 30 upper end of fixing seat is fixed on the lower surface of transverse slat 19, and measurement 30 lower end of fixing seat is connect with coarse adjustment fixing seat 22;It is described Coarse adjustment fixing seat 22 connects coarse adjustment movable plate 21, realizes the coarse adjustment of sensor position;22 bottom of coarse adjustment fixing seat and fine tuning Fixing seat 23 connects, and fine tuning 23 side of fixing seat is equipped with trimming hand wheel 24, realizes sensor position by rotary fine adjustment handwheel 24 Fine tuning;23 bottom of fine tuning fixing seat is connect with sensor cylinder 25, the tailpiece of the piston rod connection of the sensor cylinder 25 Sensor fixing seat 26 is fixedly connected with sensor sleeve 27 in sensor fixing seat 26;Sensor is fixed on sensor and fixes It is wrapped up on seat 26 and by sensor sleeve 27, exposes sensor contact 29;Sensor fixing seat 26 is equipped with locking hand button 28, Realize that sensor is locked;The measurement fixing seat 30 of three sets of measuring mechanisms 14 is separated by 120 ° and is separately fixed on transverse slat 19, real Now it is tested 3 points of measurements of 8 vibration signal of three generations's hub bearing.
The oil hydrostatic spindle 9 includes main shaft, bearing shell, watt seat, belt pulley and flow controller;The running accuracy of the mandrel 1 ≤ 3u, bearing capacity≤1500 newton, the vibration of foundation is in 5dB or less.
A method of vibration measurement being carried out using full-automatic three generations's hub bearing vibration measuring set, this method includes following Step:
Step 1: pallet A with tested three generations's hub bearing 8 when moving forward to front stop mechanism 6 on conveyer 11, Before to stop approaching switch bright;If it is bright to stop to approach switch after, i.e., after keep off before stop mechanism 7 and have pallet B, then the front of front stop mechanism 6 Cylinder of stopping the supple of gas or steam blocks pallet A;Stop to go out close to switch after if, i.e., after keep off stop mechanism 7 before there is no pallet B, then on front stop mechanism 6 Front stops cylinders retract, and pallet A keeps off stop mechanism 7 after reaching under the drive of conveyer 11, and is stopped the supple of gas or steam by the rear gear of rear gear stop mechanism 7 Cylinder blocks;
Step 2: the conveying lifting cylinder 5 for conveying elevating mechanism retracts, and drives automatic delivering mechanism decline, is tested three generations Hub bearing 8 is contacted with mandrel 1, because there is gap between measured bearing 8 and pallet 10,8 core axle bumper of measured bearing is lived And be detached from pallet 10, pallet 10 is due to own wt, so meeting personally Fig. 2 on a moving belt forever, makes tested three generations's hub spindle 8 are held to be detached from pallet A;
Step 3: the measuring mechanism lifting cylinder 13 for measuring elevating mechanism retracts, and drives force adding machine 15 and measuring mechanism 14 entire lowerings reach the sensor of measuring mechanism 14 on the horizontal position of measurement position;
Step 4: the reinforcing cylinder 32 on force adding machine 15 stretches out, and drives reinforcing disk 34 that tested three generations's hub bearing 8 is thorough Bottom is shifted on mandrel 1 and applies certain pressure;
Step 5: oily hydrostatic spindle 9 band moving mandrel 1 under the driving of spindle motor 4 rotates, to drive tested three generations's wheel Hub axle holds the rotation of 8 inner rings;Sensor cylinder 25 stretches out, and the sensor contact 29 of sensor is made to contact tested three generations's hub bearing 8 Outer ring starts 3 points of measurements of tested 8 vibration signal of three generations's hub bearing;
Step 6: after the vibration measurement, sensor cylinder 25 is retracted, and makes the sensor contact of sensor 29 leave tested 8 outer ring of three generations's hub bearing;Measuring mechanism lifting cylinder 13 rises, and reinforcing cylinder 32 retracts;Convey lifting air Cylinder 5, which rises, drives automatic delivering mechanism to rise, and is tested three generations's hub bearing 8 since the effect of pallet A is detached from mandrel 1, into support In disk A;Afterwards keep off stop mechanism 7 rear gear stop cylinders retract, make pallet A with tested three generations's hub bearing 8 on conveyer 11 to After be moved to feeding distribution mechanism;
Step 7: host picks up the vibration signal of tested three generations's hub bearing 8, and converts the vibration signal to accordingly Electric signal;Feeding distribution mechanism classifies to tested three generations's hub bearing 8 according to host command, and it is automatic to be tested three generations's hub bearing 8 Into in the corresponding material path of excellent, good, poor.
When measurement, the sensor contact 29 is located at the half of tested 8 width of three generations's hub bearing;The sensing Device contact 29 applies dynamometry to the surface contacted with tested three generations's hub bearing 8, makes it have certain contact stiffness.
The vibration measurement method is used to measure the bearing of plurality of specifications.
The foregoing is only a preferred embodiment of the present invention, but scope of protection of the present invention is not limited thereto, In the technical scope disclosed by the present invention, any changes or substitutions that can be easily thought of by anyone skilled in the art, It should be covered by the protection scope of the present invention.Therefore, protection scope of the present invention should be with scope of protection of the claims Subject to.

Claims (5)

1. a kind of full-automatic three generations's hub bearing vibration measuring set, which is characterized in that full-automatic three generations's hub bearing vibration Measuring instrument include large platform (2), rack (3), driving mechanism, conveying elevating mechanism, automatic delivering mechanism, measurement elevating mechanism, Force adding machine (15) and measuring mechanism (14);
The rack (3) is used to carry the large platform (2) of full-automatic three generations's hub bearing vibration measuring set;The large platform (2) It is placed in rack (3) upper surface, for accepting the other component of full-automatic three generations's hub bearing vibration measuring set;
The driving mechanism includes that mandrel (1), spindle motor (4), belt and oily hydrostatic spindle (9), the spindle motor (4) are solid It is scheduled on rack (3), the tail end of the output end of spindle motor (4) and oily hydrostatic spindle (9) is linked by belt, oily hydrostatic spindle (9) upper end sequentially passes through rack (3), large platform (2) is fixedly connected with mandrel (1), so that mandrel (1) be driven to rotate;
The automatic delivering mechanism include front stop mechanism (6), afterwards keep off stop mechanism (7), conveyer (11), feeder motor (12) and Pallet (10);The conveyer (11) is fixed on above large platform (2), corresponding with measuring mechanism (14) position;The front stops Mechanism (6) is located at the starting point of conveyer (11) direction of advance, is fixed on the fuselage of conveyer (11), front stop mechanism (6) It stops the supple of gas or steam including front and cylinder and before stops to approach switch;Gear stop mechanism (7) afterwards is located at the middle part of conveyer (11) direction of advance, consolidates It is scheduled on the fuselage of conveyer (11), cylinder of stopping the supple of gas or steam is kept off after gear stop mechanism (7) includes afterwards and stops approaching switch with after;The feeder motor (12) for driving conveyer (11);
The conveying elevating mechanism includes conveying lifting cylinder (5), connecting plate (20), gas connector and tracheae;Two conveying liftings Cylinder (5) is symmetrically fixed on rack (3) side, and the piston rod of conveying lifting cylinder (5) is connect with connecting plate (20), for fixing With undertaking conveyer (11), passes through the rising for conveying lifting cylinder (5) and retract the lifting for realizing automatic delivering mechanism;The gas Pipe is connected to by gas connector with conveying lifting cylinder (5), for conveying lifting cylinder (5) gas supply;
The measurement elevating mechanism includes measuring mechanism lifting cylinder (13), column (17) and upper plate (16);More root posts (17) Lower end be respectively and vertically fixed on large platform (2), the upper end of column (17) is fixedly connected with upper plate (16);Measuring mechanism lifting air Cylinder (13) is fixed on corresponding column (17);
The force adding machine (15) includes that vertical plate (18), transverse slat (19), angular contact bearing (31), reinforcing cylinder (32), activity are led Cover (33), reinforcing disk (34), fixing sleeve (35);Two vertical plate (18) upper ends be respectively and vertically fixed at upper plate (16) lower surface, Positioned at the inside of column (17);Two vertical plates (18) lower end is fixedly connected with transverse slat (19);Reinforcing cylinder (32) upper end is fixed on The middle part of upper plate (16), reinforcing cylinder (32) lower end pass through transverse slat (19) and connect with movable guide bush (33);The fixing sleeve (35) It covers in movable guide bush (33) outside, fixing sleeve (35) upper end is fixed on transverse slat (19);The reinforcing disk (34) passes through angular contact Bearing (31) is connect with movable guide bush (33);
The measuring mechanism (14) includes coarse adjustment movable plate (21), coarse adjustment fixing seat (22), fine tuning fixing seat (23), trimming hand wheel (24), sensor cylinder (25), sensor fixing seat (26), sensor sleeve (27), locking hand button (28), measurement fixing seat (30) and sensor;Described measurement fixing seat (30) upper end is fixed on the lower surface of transverse slat (19), measures fixing seat (30) lower end It is connect with coarse adjustment fixing seat (22);The coarse adjustment fixing seat (22) connects coarse adjustment movable plate (21), realizes the thick of sensor position It adjusts;Coarse adjustment fixing seat (22) bottom is connect with fine tuning fixing seat (23), and fine tuning fixing seat (23) side is equipped with trimming hand wheel (24), the fine tuning of sensor position is realized by rotary fine adjustment handwheel (24);The fine tuning fixing seat (23) bottom and sensor The tailpiece of the piston rod of cylinder (25) connection, the sensor cylinder (25) connects sensor fixing seat (26), sensor fixing seat (26) sensor sleeve (27) are fixedly connected on;Sensor is fixed on sensor fixing seat (26) and passes through sensor sleeve (27) it wraps up, exposes sensor contact (29);Sensor fixing seat (26) is equipped with locking hand button (28), realizes sensor locking It is fixed;The measurement fixing seat (30) of three sets of measuring mechanisms (14) is separated by 120 ° and is separately fixed on transverse slat (19), realizes tested three For 3 points of measurements of hub bearing (8) vibration signal.
2. a kind of full-automatic three generations's hub bearing vibration measuring set, which is characterized in that it is described oil hydrostatic spindle (9) include main shaft, Bearing shell, watt seat, belt pulley and flow controller;Running accuracy≤3u of the mandrel (1), bearing capacity≤1500 newton, the vibration of foundation In 5dB or less.
3. a kind of method that vibration measurement is carried out using full-automatic three generations's hub bearing vibration measuring set described in claim 1, It is characterized in that, method includes the following steps:
Step 1: pallet A moves forward to front stop mechanism (6) with tested three generations's hub bearing (8) on conveyer (11) When, it is preceding that stop approaching switch bright;If it is bright to stop to approach switch after, i.e., after have pallet B before gear stop mechanism (7), then front stop mechanism (6) Front cylinder of stopping the supple of gas or steam block pallet A;Stop to go out close to switch after if, i.e., after gear stop mechanism (7) before there is no pallet B, then front stops Front in mechanism (6) stops cylinders retract, and pallet A keeps off stop mechanism (7) after reaching under conveyer (11) drive, and is stopped by rear gear The rear gear of mechanism (7) cylinder of stopping the supple of gas or steam blocks;
Step 2: the conveying lifting cylinder (5) for conveying elevating mechanism retracts, and drives automatic delivering mechanism decline, is tested three generations's wheel Hub axle is held (8) and is contacted with mandrel (1), and tested three generations's hub bearing (8) and pallet A are detached from;
Step 3: the measuring mechanism lifting cylinder (13) for measuring elevating mechanism retracts, and drives force adding machine (15) and measuring mechanism (14) entire lowering reaches the sensor of measuring mechanism (14) on the horizontal position of measurement position;
Step 4: the reinforcing cylinder (32) on force adding machine (15) stretches out, and drives reinforcing disk (34) by tested three generations's hub bearing (8) it thoroughly shifts on mandrel (1) and applies certain pressure;
Step 5: oily hydrostatic spindle (9) band moving mandrel (1) under the driving of spindle motor (4) rotates, to drive tested three generations The rotation of hub bearing (8) inner ring;Sensor cylinder (25) stretches out, and the sensor contact (29) of sensor is made to contact tested three generations's wheel Hub axle holds (8) outer ring, starts 3 points of measurements of tested three generations's hub bearing (8) vibration signal;
Step 6: after the vibration measurement, sensor cylinder (25) is retracted, and makes the sensor contact of sensor (29) tested three generations's hub bearing (8) outer ring is left;Measuring mechanism lifting cylinder (13) rises, and reinforcing cylinder (32) retracts;It is defeated Sending lifting cylinder (5) to rise drives automatic delivering mechanism to rise, and is tested three generations's hub bearing (8) since the effect of pallet A is detached from Mandrel (1), into pallet A;The rear gear for keeping off stop mechanism (7) afterwards stops cylinders retract, makes pallet A with tested three generations's hub bearing (8) feeding distribution mechanism is moved backward on conveyer (11);
Step 7: host picks up the vibration signal of tested three generations's hub bearing (8), and converts corresponding electricity for the vibration signal Signal;Feeding distribution mechanism classifies to tested three generations's hub bearing (8) according to host command, is tested three generations's hub bearing (8) certainly It is dynamic to enter in the corresponding material path of excellent, good, poor.
4. a kind of vibration measurement method according to claim 3, which is characterized in that when measurement, the sensor contact (29) it is located at the half of tested three generations's hub bearing (8) width;The sensor contact (29) is taken turns to tested three generations The surface that hub axle holds (8) contact applies dynamometry, makes it have certain contact stiffness.
5. a kind of vibration measurement method according to claim 3 or 4, which is characterized in that the vibration measurement method is for surveying Measure the bearing of plurality of specifications.
CN201910549143.0A 2019-06-24 2019-06-24 Full-automatic third-generation hub bearing vibration measuring instrument and measuring method Active CN110186552B (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112474395A (en) * 2020-12-16 2021-03-12 大连贝林轴承仪器有限公司 Manipulator type full-automatic third-generation hub bearing vibration measuring instrument and measuring method
CN113654814A (en) * 2021-08-13 2021-11-16 滁州学院 Detection mechanism for automobile hub
CN114739506A (en) * 2022-04-20 2022-07-12 王德章 Full-automatic third-generation hub bearing vibration measuring instrument and measuring method

Citations (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2007010415A (en) * 2005-06-29 2007-01-18 Toshiba Corp Abnormality diagnosis system, device, and technique of bearing
CN200989818Y (en) * 2006-11-03 2007-12-12 大连佳博轴承仪器有限公司 Vertical shaft semi-automatic bearing vibration measuring device
CN101246046A (en) * 2008-02-29 2008-08-20 孙连贵 Full-automatic bearing vibration survey instrument and method thereof
CN201173850Y (en) * 2008-03-17 2008-12-31 孙连贵 Bearing vibration measuring instrument
CN103123279A (en) * 2013-01-22 2013-05-29 宁波易荣机电科技有限公司 Automatic measurer for vibration of bearing
CN104655267A (en) * 2015-01-30 2015-05-27 孙连贵 Semi-automatic vibration measurement instrument for bearing of vertical shaft
CN104677482A (en) * 2015-01-30 2015-06-03 孙连贵 Semi-automatic hub bearing vibration measuring instrument
CN104964825A (en) * 2015-07-02 2015-10-07 孙连贵 Vibration measuring instrument for super-large or super-heavy bearing
CN106404398A (en) * 2016-08-31 2017-02-15 宁波易荣机电科技有限公司 Three-generation wheel hub bearing vibration automatic measuring instrument
CN107121284A (en) * 2017-04-14 2017-09-01 浙江农林大学 A kind of hub bearing vibration measuring set
JP2017166960A (en) * 2016-03-16 2017-09-21 中国電力株式会社 Measurement diagnostic apparatus and measurement diagnostic method
CN207600743U (en) * 2017-10-27 2018-07-10 大连柏盛源科技有限公司 Full-automatic wheel hub bear vibration detector

Patent Citations (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2007010415A (en) * 2005-06-29 2007-01-18 Toshiba Corp Abnormality diagnosis system, device, and technique of bearing
CN200989818Y (en) * 2006-11-03 2007-12-12 大连佳博轴承仪器有限公司 Vertical shaft semi-automatic bearing vibration measuring device
CN101246046A (en) * 2008-02-29 2008-08-20 孙连贵 Full-automatic bearing vibration survey instrument and method thereof
CN201173850Y (en) * 2008-03-17 2008-12-31 孙连贵 Bearing vibration measuring instrument
CN103123279A (en) * 2013-01-22 2013-05-29 宁波易荣机电科技有限公司 Automatic measurer for vibration of bearing
CN104655267A (en) * 2015-01-30 2015-05-27 孙连贵 Semi-automatic vibration measurement instrument for bearing of vertical shaft
CN104677482A (en) * 2015-01-30 2015-06-03 孙连贵 Semi-automatic hub bearing vibration measuring instrument
CN104964825A (en) * 2015-07-02 2015-10-07 孙连贵 Vibration measuring instrument for super-large or super-heavy bearing
JP2017166960A (en) * 2016-03-16 2017-09-21 中国電力株式会社 Measurement diagnostic apparatus and measurement diagnostic method
CN106404398A (en) * 2016-08-31 2017-02-15 宁波易荣机电科技有限公司 Three-generation wheel hub bearing vibration automatic measuring instrument
CN107121284A (en) * 2017-04-14 2017-09-01 浙江农林大学 A kind of hub bearing vibration measuring set
CN207600743U (en) * 2017-10-27 2018-07-10 大连柏盛源科技有限公司 Full-automatic wheel hub bear vibration detector

Non-Patent Citations (3)

* Cited by examiner, † Cited by third party
Title
何哲: "《二代轮毅轴承振动加速度自动检测技术研究》", 《中国优秀硕士学位论文全文数据库 工程科技II辑》 *
王禹: "《滚动轴承振动在线自动检测仪设计与分析》", 《中国优秀硕士学位论文全文数据库 工程科技II辑》 *
黄啸: "《轴承振动自动检测仪的研制》", 《中国优秀硕士学位论文全文数据库 工程科技II辑》 *

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112474395A (en) * 2020-12-16 2021-03-12 大连贝林轴承仪器有限公司 Manipulator type full-automatic third-generation hub bearing vibration measuring instrument and measuring method
CN113654814A (en) * 2021-08-13 2021-11-16 滁州学院 Detection mechanism for automobile hub
CN114739506A (en) * 2022-04-20 2022-07-12 王德章 Full-automatic third-generation hub bearing vibration measuring instrument and measuring method
CN114739506B (en) * 2022-04-20 2023-09-26 杭州宝利嘉轴承有限公司 Full-automatic third-generation hub bearing vibration measuring instrument and measuring method

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