CN207395638U - A kind of eccentricity acquisition testing frock - Google Patents

A kind of eccentricity acquisition testing frock Download PDF

Info

Publication number
CN207395638U
CN207395638U CN201721411274.5U CN201721411274U CN207395638U CN 207395638 U CN207395638 U CN 207395638U CN 201721411274 U CN201721411274 U CN 201721411274U CN 207395638 U CN207395638 U CN 207395638U
Authority
CN
China
Prior art keywords
end block
movable end
cylinder
eccentricity
testing
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
CN201721411274.5U
Other languages
Chinese (zh)
Inventor
邱少煜
张明星
唐新荣
党美娟
黄朝宗
简旭换
黄运升
徐敏辉
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.)
Zhejiang Jinglei Compressor Co Ltd
Original Assignee
Zhejiang Jinglei Compressor 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 Zhejiang Jinglei Compressor Co Ltd filed Critical Zhejiang Jinglei Compressor Co Ltd
Priority to CN201721411274.5U priority Critical patent/CN207395638U/en
Application granted granted Critical
Publication of CN207395638U publication Critical patent/CN207395638U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Abstract

The utility model is related to a kind of eccentricity acquisition testing frocks, a kind of eccentricity acquisition testing frock, including testing stand, and it is arranged on the acquisition testing component on testing stand, the acquisition testing component includes the fixed pedestal being fixed on testing stand and the axial activity axostylus axostyle being threaded through in fixed pedestal and the movable end block being connected in axle end, and it is connected to the displacement sensor on movable end block for the limiting cylinder of movable end block and test side described in /V;The activity end block is arranged in detection mouth, and the lower end of movable end block is in workpiece sensing station;Shaft rod upper sleeve between movable end block and fixed pedestal is equipped with compression spring, and the output terminal of limiting cylinder is towards movable end block, and the outbound course of limiting cylinder is opposite with the potential energy direction of compression spring.The detecting tool can carry out the eccentricity of compressor automatic detection, and accuracy of detection is high, efficient.

Description

A kind of eccentricity acquisition testing frock
Technical field
The utility model is related to a kind of eccentricity acquisition testing frocks.
Background technology
With measure and policy of the consumption and country of the energy on energy-saving and emission-reduction, the important act that carbon emission is China is reduced It arranges.Under this overall background, electric vehicle becomes the Main way of China's research and development.Electric vehicle and common internal combustion engine Automobile is compared, and has big advantage, has the features such as low noise, pollution-free and saving oil, becomes the energy-saving ring of a new generation One of public tool of the traffic of guarantor, as New-energy electric vehicle develops, so electric vehicle compressor becomes important research direction. As an important parameter of screw compressor, eccentricity is the emphasis of test.Traditional detection mode is to pass through manual type It is fixed, then with hand eccentric rotation axis, while the reading of amesdial is observed, eccentricity is being calculated by complicated;It should Mode is time-consuming and laborious, and measurement accuracy is poor and efficiency is low.
The content of the invention
To solve the above-mentioned problems, the purpose of this utility model is to provide a kind of eccentricity acquisition testing frock, the inspections The eccentricity of compressor can be carried out automatic detection by surveying frock, and accuracy of detection is high, efficient.
In order to realize above-mentioned purpose, the utility model employs following technical solution:
A kind of eccentricity acquisition testing frock, it is characterised in that:Including testing stand and the acquisition being arranged on testing stand Detection components and be arranged on the power bay of testing stand one side and be arranged on power bay move horizontally pair and set Docking cylinder on pair is moved horizontally and the DC power output end being arranged on docking cylinder output terminal, flat prismatic pair Moving direction with docking cylinder be horizontal direction, and be mutually perpendicular to;Workpiece sensing station, inspection are equipped with below the testing stand The detection mouth communicated with workpiece sensing station is offered in test aircraft on transverse plane;The acquisition testing component includes being fixed on detection Fixed pedestal and the axial activity axostylus axostyle being threaded through in fixed pedestal and the activity being connected in axle end on frame End block and it is connected to the displacement sensing on movable end block for the limiting cylinder of movable end block and test side described in /V Device;The activity end block is arranged in detection mouth, and the lower end of movable end block is in workpiece sensing station;Movable end block is with consolidating Determine the shaft rod upper sleeve between pedestal and be equipped with compression spring, the movable end block of output terminal direction of limiting cylinder, and the output side of limiting cylinder To opposite with the potential energy direction of compression spring.
Preferably, the pair that moves horizontally is arranged on including the slide being fixed on power bay and movement on slide Movable plate and the driving movable plate mobile cylinder;The cylinder body of the docking cylinder is fixed on movable plate.
Preferably, the test side of institute's displacement sensors is parallel with the output terminal of limiting cylinder.
The utility model uses above-mentioned technical proposal, which is related to a kind of eccentricity acquisition testing frock, this is partially The heart includes testing stand and power bay away from acquisition testing frock, and testing stand is equipped with acquisition testing component, and power bay is equipped with direct current Power output end;During detection, workpiece is moved on workpiece sensing station, and the motor after DC power output end movement with workpiece connects Line terminals are connected;The lower end of movable end block in acquisition testing component is stretched into workpiece and is docked with eccentric shaft, limiting cylinder Output terminal remove active force, the motor in workpiece drives eccentric shaft rotation, and synchronous drive activity end block moves;Movable end block Axial round-trip is realized under the action of eccentric shaft and spring, the displacement sensor being connected on movable end block detects the axial direction Mobile displacement;Final data is averaged in the case where rotating the no less than standard of 5 circles.Pass through above-mentioned eccentricity acquisition testing work Dress, can carry out the eccentricity of compressor automatic detection, and accuracy of detection is high, efficient.
Description of the drawings
Fig. 1 is the structure diagram of eccentricity capture and detection apparatus.
Fig. 2 is the structure diagram of acquisition testing component.
Specific embodiment
Below in conjunction with the accompanying drawings, the preferred embodiment of the utility model is described in further detail.
A kind of eccentricity capture and detection apparatus as shown in Figure 1 and 2, including rack 1 and the detection being arranged in rack 1 Frame 2 and the acquisition testing component 3 being arranged on testing stand 2 and the workpiece lifting mechanism being arranged on immediately below testing stand 2 4.The rack 1 is undertaken on workpiece assembly line 5, is additionally provided with to detect the sense of the location of workpiece in workpiece assembly line 5 in rack 1 Answer device 51.The lift path of the workpiece lifting mechanism 4 passes perpendicularly through workpiece assembly line 5.The workpiece lifting mechanism 4 includes rising Sending down abnormally ascending cylinder 41 and the hoistable platform 42 being arranged on 41 output terminal of lifting cylinder.The output terminal longitudinal direction of the lifting cylinder 41 Upward, hoistable platform 42 is equipped with to position the positioning column of workpiece pushing plate.
2 lower section of the testing stand is equipped with workpiece sensing station a, is offered and workpiece sensing work on transverse plane on testing stand 2 The detection mouth that position a is communicated.The acquisition testing component 3 includes the fixed pedestal 31 being fixed on testing stand 2 and axial activity The axostylus axostyle 32 being threaded through in fixed pedestal 31 and the movable end block 33 being connected on 32 end of axostylus axostyle and for /V institute It states the limiting cylinder 34 of movable end block 33 and test side is connected to displacement sensor 35 on movable end block 33.The activity End block 33 is arranged in detection mouth, and the lower end of movable end block 33 is in workpiece sensing station a.Movable end block 33 and fixed base Compression spring 36, the movable end block 33 of output terminal direction of limiting cylinder 34, and limiting cylinder 34 are arranged on axostylus axostyle 32 between seat 31 Outbound course and compression spring 36 potential energy direction on the contrary, the test side of institute's displacement sensors 35 and the output terminal of limiting cylinder 34 It is parallel.
The rack 1 is equipped with power bay 7, and power bay 7 is in 2 one side of testing stand.Power bay 7 is equipped with and moves horizontally The DC power supply that pair and being arranged on moves horizontally the cylinder of the docking in pair 71 and is arranged on docking 71 output terminal of cylinder Output terminal 72, the moving direction of flat prismatic pair is horizontal direction with docking cylinder 71, and is mutually perpendicular to.It is described to move horizontally pair Including the slide 73 being fixed on power bay 7 and the mobile movable plate 74 being arranged on slide 73 and the driving movement The mobile cylinder 75 of plate 74.The cylinder body of the docking cylinder 71 is fixed on movable plate 74.
The utility model uses above-mentioned technical proposal, which is related to a kind of eccentricity capture and detection apparatus, this is partially The heart is undertaken on away from the rack 1 that capture and detection apparatus includes in workpiece assembly line 5, and rack 1 is equipped with testing stand 2,2 lower section of testing stand Equipped with workpiece sensing station a, rack 1 is equipped with the workpiece lifting mechanism 4 for lifting workpieces height, at acquisition testing component 3 In on testing stand 2.During detection, workpiece to be detected is transported by workpiece assembly line 5, and after reaching designated position, workpiece lifting mechanism 4 will Workpiece is pushed on workpiece sensing station a, is connected after DC power supply output mobile with the connecting terminal of motor of workpiece.Acquisition inspection The lower end for the movable end block 33 surveyed in component 3 is stretched into workpiece and is docked with eccentric shaft, and the output terminal of limiting cylinder 34 removes work Firmly, the motor in workpiece drives eccentric shaft rotation, and synchronous drive activity end block 33 moves.Movable end block 33 in eccentric shaft and Axial round-trip is realized under the action of spring, the displacement sensor 35 being connected on movable end block 33 detects the axial movement Displacement.Final data is averaged in the case where rotating the no less than standard of 5 circles.It, can by above-mentioned eccentricity acquisition testing frock Automatic detection is carried out to the eccentricity of compressor, accuracy of detection is high, efficient.

Claims (3)

1. a kind of eccentricity acquisition testing frock, it is characterised in that:It is examined including testing stand and the acquisition being arranged on testing stand It surveys component and is arranged on the power bay of testing stand one side and is arranged on moving horizontally pair and be arranged on power bay The DC power output end for moving horizontally the docking cylinder in pair and being arranged on docking cylinder output terminal, flat prismatic pair Moving direction is horizontal direction with docking cylinder, and is mutually perpendicular to;Workpiece sensing station, detection are equipped with below the testing stand The detection mouth communicated with workpiece sensing station is offered on frame on transverse plane;The acquisition testing component includes being fixed on testing stand On fixed pedestal and the axial activity axostylus axostyle being threaded through in fixed pedestal and the movable end being connected in axle end Block and it is connected to the displacement sensor on movable end block for the limiting cylinder of movable end block and test side described in /V; The activity end block is arranged in detection mouth, and the lower end of movable end block is in workpiece sensing station;Movable end block and fixation Shaft rod upper sleeve between pedestal is equipped with compression spring, the movable end block of output terminal direction of limiting cylinder, and the outbound course of limiting cylinder It is opposite with the potential energy direction of compression spring.
2. a kind of eccentricity acquisition testing frock according to claim 1, it is characterised in that:The pair that moves horizontally includes The slide and the mobile gas of the mobile movable plate being arranged on slide and the driving movable plate being fixed on power bay Cylinder;The cylinder body of the docking cylinder is fixed on movable plate.
3. a kind of eccentricity acquisition testing frock according to claim 1, it is characterised in that:The inspection of institute's displacement sensors It is parallel with the output terminal of limiting cylinder to survey end.
CN201721411274.5U 2017-10-30 2017-10-30 A kind of eccentricity acquisition testing frock Expired - Fee Related CN207395638U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201721411274.5U CN207395638U (en) 2017-10-30 2017-10-30 A kind of eccentricity acquisition testing frock

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201721411274.5U CN207395638U (en) 2017-10-30 2017-10-30 A kind of eccentricity acquisition testing frock

Publications (1)

Publication Number Publication Date
CN207395638U true CN207395638U (en) 2018-05-22

Family

ID=62327147

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201721411274.5U Expired - Fee Related CN207395638U (en) 2017-10-30 2017-10-30 A kind of eccentricity acquisition testing frock

Country Status (1)

Country Link
CN (1) CN207395638U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107806810A (en) * 2017-10-30 2018-03-16 浙江精雷电器股份有限公司 A kind of eccentric throw acquisition testing frock

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107806810A (en) * 2017-10-30 2018-03-16 浙江精雷电器股份有限公司 A kind of eccentric throw acquisition testing frock

Similar Documents

Publication Publication Date Title
CN103134674B (en) Device and method used for detection of sliding performance of matching part
CN105607666A (en) Three-freedom electric automobile charging interface scanning positioning method
CN110207994A (en) A kind of initial port timing automatic measurement system of engine
CN207395638U (en) A kind of eccentricity acquisition testing frock
CN107830777A (en) A kind of self-driven support of bearing circle glitch detection equipment
CN207923035U (en) A kind of eccentricity acquisition testing component
CN207662331U (en) A kind of eccentricity capture and detection apparatus
CN209623982U (en) A kind of equipment for sealing diaphragm air-leakage test
CN107806809A (en) A kind of eccentric throw capture and detection apparatus
CN107806810A (en) A kind of eccentric throw acquisition testing frock
CN205317418U (en) Engine variable intake manifold airtightness detecting device
CN105136287B (en) A kind of vibration detection device
CN107830790A (en) A kind of eccentric throw acquisition testing component
CN209639751U (en) A kind of small machine comprehensive performance automatic checkout system
CN201600122U (en) Device capable of measuring complicated revolution solid part surface profile
CN103048380A (en) Mud pump air case scanning and detecting device based on magnetic memory effect
CN206300633U (en) High accuracy piston automatic detecting machine
CN109059834A (en) A kind of motor rotor bearing prepackage detection device
CN108214305A (en) Abrasion of grinding wheel measurement equipment and abrasion of grinding wheel measuring method
CN107824472A (en) A kind of wear ring separator
CN107755280A (en) A kind of internal diameter separator of wear ring
CN207922978U (en) A kind of self-powered dynamic bearing holder circle glitch detection equipment
CN203745357U (en) Device for testing inlaying force of piston copper bush
CN207858613U (en) Abrasion of grinding wheel measurement equipment
CN103363934A (en) Automatic detection fixture

Legal Events

Date Code Title Description
GR01 Patent grant
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: 20180522

Termination date: 20201030