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CN205580378U - Laser on -line measuring device - Google Patents

Laser on -line measuring device Download PDF

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Publication number
CN205580378U
CN205580378U CN201620138022.9U CN201620138022U CN205580378U CN 205580378 U CN205580378 U CN 205580378U CN 201620138022 U CN201620138022 U CN 201620138022U CN 205580378 U CN205580378 U CN 205580378U
Authority
CN
China
Prior art keywords
laser
axis
measuring device
line measuring
drag chain
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
CN201620138022.9U
Other languages
Chinese (zh)
Inventor
查世宝
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.)
Shanghai Fu Fu Industrial Automation Equipment Co Ltd
Original Assignee
Shanghai Fu Fu Industrial Automation Equipment 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 Shanghai Fu Fu Industrial Automation Equipment Co Ltd filed Critical Shanghai Fu Fu Industrial Automation Equipment Co Ltd
Priority to CN201620138022.9U priority Critical patent/CN205580378U/en
Application granted granted Critical
Publication of CN205580378U publication Critical patent/CN205580378U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a laser on -line measuring device, including being provided with the X bracing strut, X axle tow chain, Z bracing strut, Z axle cylinder, Z axle tow chain, linear guide rail group, servo motor, laser determine module, gas circuit pipeline, cable, wherein laser determine module bears the frame, laser survey head, displacement sensor, guide rod cylinder, locating pin, industry camera including being provided with the testing stand, when using this laser on -line measuring device, the work piece is processed on the lathe chuck and is accomplished the back, need not take off the work piece, the state that still keeps work piece processing to accomplish, therefore processing to detect all be same reference surface, the testing result is accurate, reliably, has saved the expense of making accurate tool simultaneously, is whole production manufacturing cost promptly the process time of also having practiced thrift whole product.

Description

A kind of laser on-line measuring device
Technical field
This utility model relates to detecting device, particularly relates to a kind of laser on-line measuring device.
Background technology
nullIn current manufacturing industry, detection method is: the product after machining takes off process equipment,Individually detect again,Wherein waste the production time,And the general using method of the most relatively advanced laser detection is: laser measuring head is fixed on tool,The product fixing relative position detects,It is required for product and does a localization tool,Finished product needed is placed on tool and carries out second positioning,So can cause position error,For certainty of measurement requires high product,The accuracy of measurement must be affected,Unless the machining accuracy of tool is the highest,Location mode is the most reasonable,It is only possible to evade this point,The tool that machining accuracy is the highest simultaneously can produce the production cost of great number,Such as structure shown in CN201520532646.4 belt pulley plane degree measuring laser on-line measuring device.
Summary of the invention
This utility model is for above-mentioned the deficiencies in the prior art, provide a kind of laser on-line measuring device, it need not take off the workpiece machined can detect workpiece, ensure that processing detection is all same datum level, can conveniently coordinate all kinds of lathe, milling machine and machining center etc., be particularly suitable for needing the process equipment of high-speed production beat and high-accuracy production equipment.
For solving problems of the prior art, the concrete technical scheme of employing is:
A kind of laser on-line measuring device, including being provided with X-axis support, X-axis drag chain, Z axis support, Z axis cylinder, Z axis drag chain, linear guides group, servomotor, laser detection assembly, gas circuit pipeline, cable;Described linear guides group is the most uniform is arranged on X-axis support front;Described servomotor is fixed on Z axis support;Described Z axis support is arranged in linear guides group;Described Z axis cylinder one end is arranged on Z axis cradle top, and the other end is connected with the carrier on laser detection assembly;Described X-axis drag chain, Z axis drag chain is separately mounted on X-axis support and Z axis support;Described gas circuit pipeline, within cable is arranged on X-axis drag chain and Z axis drag chain;
Described laser detection assembly includes being provided with testing stand, carrier, laser measuring head, displacement transducer, guide rod cylinder, alignment pin, industrial camera;Described testing stand is fixed by the alignment pin being arranged on carrier bottom;Described guide rod cylinder one end is connected on testing stand, and the other end is fixed by the alignment pin being arranged on carrier top, along with stretching of guide rod cylinder , testing stand can produce the rotary motion around alignment pin;Described laser measuring head, displacement transducer, industrial camera is arranged on carrier.
Preferably technical scheme, the stroke of described guide rod cylinder meets the distance required for testing stand half-twist.
Further preferred technical scheme, described industrial camera is high-resolution high-speed camera.
A kind of laser on-line measuring device specific implementation process is: first X-axis support is fixed on the correct position of lathe, after workpiece machines on lathe chuck, it is not necessary to take off workpiece, remains in that the state that work pieces process completes;At this moment servomotor starts to provide side-to-side movement power for laser on-line measuring device, and Z axis support starts to move right along linear guides group, Z axis cylinder action downward or upward simultaneously and then pull laser detection component movement;When distance workpiece certain position, displacement transducer begins to send out signal, servomotor, Z axis cylinder stopping action, and then laser measuring head and industrial camera are started working, and measures workpiece and records data, by connected cable transmission to external control devices;When needing the workpiece detecting horizontal clamping, guide rod cylinder action, promote testing stand half-twist, and then the workpiece of horizontal clamping can be detected;X-axis drag chain in motor process, Z axis drag chain drags gas circuit pipeline and cable along with motion.
By using such scheme, compared with prior art, it has the technical effect that a kind of laser on-line measuring device of the present utility model
1. after workpiece machines on lathe chuck, need not take off workpiece, remain in that the state that work pieces process completes, thus processing detection is all same datum level, testing result is accurate, reliably, saves the expense manufacturing accurate tool simultaneously, also save the process time of whole product, be i.e. whole manufacturing cost.
2. use displacement transducer and servomotor, laser detection assembly registration, there is automatization and the ability of monitoring continuously.
3. use high-resolution high-speed industrial photographing unit, each product machined is had to the record of surface quality, there is the strongest quality trackability, great convenience is provided for quality management.
Accompanying drawing explanation
Fig. 1 is that the overall structure axle of this utility model a kind of laser on-line measuring device measures intention;
Fig. 2 is the overall structure schematic top plan view of this utility model a kind of laser on-line measuring device;
Fig. 3 is the overall structure front elevational schematic of this utility model a kind of laser on-line measuring device;
Fig. 4 is that close-up schematic view faced by the laser detection assembly of this utility model a kind of laser on-line measuring device;
Fig. 5 is the overall structure left view schematic diagram of this utility model a kind of laser on-line measuring device;
Fig. 6 is the laser detection assembly left view close-up schematic view of this utility model a kind of laser on-line measuring device.
Detailed description of the invention
For making the purpose of this utility model, technical scheme and advantage of greater clarity, below in conjunction with instantiation and referring to the drawings, this utility model is further described.It should be understood that these describe the most exemplary, and it is not intended to limit scope of the present utility model.Additionally, in the following description, eliminate the description to known features and technology, to avoid unnecessarily obscuring concept of the present utility model.
As shown in Figures 1 to 6:
A kind of laser on-line measuring device, including being provided with X-axis support 1, X-axis drag chain 2, Z axis support 3, Z axis cylinder 4, Z axis drag chain 5, linear guides group 6, servomotor 7, laser detection assembly 8, gas circuit pipeline 9, cable 10;Described linear guides group about 6 is uniform is arranged on X-axis support 1 front;Described servomotor 7 is fixed on Z axis support 3;Described Z axis support 3 is arranged in linear guides group 6;Described Z axis cylinder 4 one end is arranged on Z axis support 3 top, and the other end is connected with the carrier 82 on laser detection assembly 8;Described X-axis drag chain 2, Z axis drag chain 5 is separately mounted on X-axis support 1 and Z axis support 3;Described gas circuit pipeline 9, within cable 10 is arranged on X-axis drag chain 2 and Z axis drag chain 5;
Described laser detection assembly 8 includes being provided with testing stand 81, carrier 82, laser measuring head 83, displacement transducer 84, guide rod cylinder cylinder 85, alignment pin 86, industrial camera 87;Described testing stand 81 is fixed by the alignment pin 86 being arranged on carrier 82 bottom;Described guide rod cylinder 85 one end is connected on testing stand 81, and the other end is fixed by the alignment pin 86 being arranged on carrier 82 top, and along with stretching of guide rod cylinder 85, testing stand 81 can produce the rotary motion around alignment pin 86;Described laser measuring head 83, displacement transducer 84, industrial camera 87 is arranged on carrier 82;
The stroke of described guide rod cylinder 85 meets the distance required for testing stand 81 half-twist;
Described industrial camera 87 is high-resolution high-speed camera;
In conjunction with shown in Fig. 1 to Fig. 6:
A kind of laser on-line measuring device specific implementation process is: first X-axis support 1 is fixed on the correct position of lathe, after workpiece machines on lathe chuck, need not take off workpiece, remain in that the state that work pieces process completes, at this moment servomotor 7 starts to provide side-to-side movement power for laser on-line measuring device, Z axis support 3 starts to move right along linear guides group 6, Z axis cylinder 4 action downward or upward simultaneously and then pull laser detection assembly 8 to move;When distance workpiece certain position, displacement transducer 84 begins to send out signal, servomotor 7, Z axis cylinder 4 stops action, then laser measuring head 83 and industrial camera 87 are started working, and measure workpiece and record data, being transferred to external control devices by connected cable 10;When needing the workpiece detecting horizontal clamping, guide rod cylinder 85 action, promote testing stand 81 half-twist, and then the workpiece of horizontal clamping can be detected;X-axis drag chain 2 in motor process, Z axis drag chain 5 drags gas circuit pipeline 9 and cable 10 along with motion.
The foregoing is only preferred embodiment of the present utility model; not in order to limit protection domain of the present utility model; all within spirit of the present utility model and principle, any amendment, the equivalent made, be all contained in protection domain of the present utility model within.

Claims (4)

1. a laser on-line measuring device, including being provided with X-axis support, X-axis drag chain, Z axis support, Z axis cylinder, Z axis drag chain, linear guides group, servomotor, laser detection assembly, gas circuit pipeline, cable;It is characterized in that: described linear guides group is the most uniform is arranged on X-axis support front;Described servomotor is fixed on Z axis support;Described Z axis support is arranged in linear guides group;Described Z axis cylinder one end is arranged on Z axis cradle top, and the other end is connected with the carrier on laser detection assembly;Described X-axis drag chain, Z axis drag chain is separately mounted on X-axis support and Z axis support;Described gas circuit pipeline, within cable is arranged on X-axis drag chain and Z axis drag chain.
2. according to a kind of laser on-line measuring device described in claim 1, it is characterised in that: described laser detection assembly includes being provided with testing stand, carrier, laser measuring head, displacement transducer, guide rod cylinder, alignment pin, industrial camera;Described testing stand is fixed by the alignment pin being arranged on carrier bottom;Described guide rod cylinder one end is connected on testing stand, and the other end is fixed by the alignment pin being arranged on carrier top, along with stretching of guide rod cylinder , testing stand can produce the rotary motion around alignment pin;Described laser measuring head, displacement transducer, industrial camera is arranged on carrier.
3. according to a kind of laser on-line measuring device described in claim 2, it is characterised in that: the stroke of described guide rod cylinder meets the distance required for testing stand half-twist.
4. according to a kind of laser on-line measuring device described in claim 2, it is characterised in that: described industrial camera is high-resolution high-speed camera.
CN201620138022.9U 2016-02-24 2016-02-24 Laser on -line measuring device Expired - Fee Related CN205580378U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620138022.9U CN205580378U (en) 2016-02-24 2016-02-24 Laser on -line measuring device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620138022.9U CN205580378U (en) 2016-02-24 2016-02-24 Laser on -line measuring device

Publications (1)

Publication Number Publication Date
CN205580378U true CN205580378U (en) 2016-09-14

Family

ID=56870635

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201620138022.9U Expired - Fee Related CN205580378U (en) 2016-02-24 2016-02-24 Laser on -line measuring device

Country Status (1)

Country Link
CN (1) CN205580378U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107121059A (en) * 2016-02-24 2017-09-01 上海希孚工业自动化设备有限公司 A kind of laser on-line measuring device
CN107328363A (en) * 2017-08-10 2017-11-07 小小自动化科技(昆山)有限公司 A kind of automobile brake brake disc comprehensive detection machine

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107121059A (en) * 2016-02-24 2017-09-01 上海希孚工业自动化设备有限公司 A kind of laser on-line measuring device
CN107328363A (en) * 2017-08-10 2017-11-07 小小自动化科技(昆山)有限公司 A kind of automobile brake brake disc comprehensive detection machine
CN107328363B (en) * 2017-08-10 2024-04-09 小小自动化科技(昆山)有限公司 Comprehensive detection machine for automobile brake disc

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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

Granted publication date: 20160914

Termination date: 20190224

CF01 Termination of patent right due to non-payment of annual fee