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CN1367066A - Equipment for grinding die-cutting cylinder cutting edge and making integral detection and its detection method - Google Patents

Equipment for grinding die-cutting cylinder cutting edge and making integral detection and its detection method Download PDF

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Publication number
CN1367066A
CN1367066A CN01101524A CN01101524A CN1367066A CN 1367066 A CN1367066 A CN 1367066A CN 01101524 A CN01101524 A CN 01101524A CN 01101524 A CN01101524 A CN 01101524A CN 1367066 A CN1367066 A CN 1367066A
Authority
CN
China
Prior art keywords
cutting edge
workpiece
digital display
roller
indexing means
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.)
Pending
Application number
CN01101524A
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Chinese (zh)
Inventor
吴明根
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.)
BEIJING YUCHENG JINGGON DIE-CUTTING MACHINOFACTURE Co Ltd
Original Assignee
BEIJING YUCHENG JINGGON DIE-CUTTING MACHINOFACTURE 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 BEIJING YUCHENG JINGGON DIE-CUTTING MACHINOFACTURE Co Ltd filed Critical BEIJING YUCHENG JINGGON DIE-CUTTING MACHINOFACTURE Co Ltd
Priority to CN01101524A priority Critical patent/CN1367066A/en
Publication of CN1367066A publication Critical patent/CN1367066A/en
Pending legal-status Critical Current

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  • Finish Polishing, Edge Sharpening, And Grinding By Specific Grinding Devices (AREA)
  • Constituent Portions Of Griding Lathes, Driving, Sensing And Control (AREA)

Abstract

A cutting-edge grinding and examination integrated equipment for die-cutting drum is characterized by that it includes machine body, digital display dividing device, high-speed grinding head, tail seat, cutting-edge observation device, vertical tool carriage, longitudinal tool carrier and workpiece mounting frame. Said digital display dividing device is mounted at one end on the left or right side of the machine body. On the side ends of the digital display dividing device and the tail seat opposite to a workpiece the workpiece mounting frames are respectively mounted. The above-mentioned vertical tool carriage is perpendicular to the machine body and mounted on the longitudinal tool carrier. The cutting edge observation device is mounted on the vertical tool carriage, a turning mechanism is set on the cutting edge observation device, and the above-mentioned grinding head id fixed on the rolling guid rail at a certain angle and is driven by a screw rod.

Description

Be used for grinding of cross cutting roller cutting edge and the machining and testing method that detects incorporate equipment and cross cutting roller cutting edge
The present invention relates to a kind of grinding of cross cutting roller cutting edge and machining and testing method that detects incorporate equipment and cross cutting roller cutting edge of being used for.
In the past, cross cutting roller cutting edge is after by roughing, all be by carrying out fine finishining by hand, because manual processing is to feel to guarantee its machining accuracy by operator's experience and technology fully, and because the cross cutting roller is a mould steel by extreme hardness constitutes, so manual to process not only man-hour wasteful but also be difficult to guarantee the positional precision of cutting edge and the form accuracy of cutting edge.In addition, add man-hour, can't use checkout equipment that the cutting edge after processing or processing is detected manual, so, must process and detect and separately carry out, after processing, workpiece will be unloaded from process equipment like this, again workpiece be detected, after the detection, also workpiece will be installed in process equipment according to testing result and process, like this, workpiece loading and unloading has not only been wasted many times repeatedly, and brought very big trouble, thereby also reduced operating efficiency to the operator.
The present invention makes in order to address the above problem, and its objective is provides a kind of machining accuracy height, high being used for the grinding of cross cutting roller cutting edge and detecting incorporate equipment and use this equipment processing to detect the method for cross cutting roller cutting edge of working (machining) efficiency.
In order to achieve the above object, of the present inventionly be used for the grinding of cross cutting roller cutting edge and detect incorporate equipment; It is characterized in that it comprises: lathe bed, digital display indexing means, high speed bistrique, tailstock, cutting edge finder, vertical saddle, main carriage and workpiece installing rack; This digital display indexing means is installed in an end of lathe bed left and right directions, this tailstock is configured in opposed to each other on the lathe bed in phase on the left and right directions with the digital display indexing means and also can leaves or closely move along left and right directions relative to the digital display indexing means, is used for adjusting corresponding to the length of workpiece the distance of indexing means and tailstock; On the side relative of digital display indexing means and tailstock, be installed with respectively and be used for the top workpiece installing rack of the correct aligning of workpiece with workpiece; Above-mentioned vertical saddle is installed on the main carriage perpendicular to lathe bed, and this knife rest can be along the left and right directions on the lathe bed, be that the length direction of workpiece is installed on the lathe bed movably, and this main carriage can be manually or driven by drive unit and to move; The cutting edge finder is installed on the vertical saddle and can moves along the vertical direction on planker; Single-revolution mechanism is set on the cutting edge finder, and the Z axle that this slew gear can change perpendicular to horizontal plane turns round the circumferential high-precision calibration that also can carry out around the Z axle; Above-mentioned high speed bistrique is fixed at a certain angle on the rolling guide and by leading screw and drives, and this rolling guide is arranged on the slew gear; Above-mentioned edge of a knife finder and slew gear can be finely tuned along the Y direction to the horizontal direction extension perpendicular to axis of workpiece.
Because of the present invention to be used for the grinding of cross cutting roller cutting edge and to detect incorporate equipment be that detection and grinding is integrated, can in the processing of limit, add the situation that detects cutting edge, therefore, improved the working (machining) efficiency of cutting edge, and because the axle center around workpiece that this equipment is indexing means to be driven rotatablely moves and the main carriage of strip length sensor control the feed motion of bistrique along moving of axis of workpiece direction, therefore got rid of the influence of human factor, can guarantee the machining accuracy (positional precision and form accuracy) of high cutting edge machining accuracy.
Fig. 1 is that the present invention is used for grinding of cross cutting roller cutting edge and the front view that detects incorporate equipment.
It is following that the present invention will be described with reference to accompanying drawing.
As shown in Figure 1, grinding of cross cutting roller cutting edge and the incorporate equipment of detection of being used for of the present invention, comprise granite lathe bed 12, digital display indexing means 1, tailstock 10, workpiece installing rack 9, the main carriage 11 of strip length sensor, vertical saddle 6, high speed bistrique 3, high-precision rotary mechanism 7, rolling guide 8, CCD camera 5, stereomicroscope 4, above-mentioned digital display indexing means 1 is fixedly mounted on an end of the top directions X of granite lathe bed 12, tailstock 10 along directions X be arranged on movably above-mentioned granite lathe bed 12 above on, workpiece 2 is aimed at the axle center center hole at its two ends respectively by workpiece installing rack 9 with digital display indexing means 1 and the top of tailstock 10, and toply supporting by digital display indexing means 1 and tailstock 10 by above-mentioned, workpiece 2 drives rotation by digital display indexing means 1 with the scale division value of setting, thus make workpiece 2 with corresponding to the circumferential lengths of cutting edge to be processed be rotated.Can adjust the installing space of workpiece 2 with the length of workpiece 2 accordingly with respect to the distance of digital display indexing means 1 by adjusting tailstock 10.Above-mentioned workpiece installing rack 9 is used for workpiece 2 and above-mentioned top correct the aligning.The main carriage 11 of strip length sensor can be arranged on the granite lathe bed movably along directions X, can accurately read the amount of movement of the main carriage 11 of above-mentioned strip length sensing along directions X by above-mentioned linear transducer, with the processing length of monitoring cutting edge on directions X.Fixedly mounting vertical saddle 6 in the main carriage upper edge of above-mentioned strip length sensor vertical (Z to), the stereomicroscope 4 that is used to observe the cutting edge situation is installed on this vertical saddle 6, eyepiece one end at stereomicroscope 4 is installed with CCD camera 5, the picture that is used for the cutting edge that will amplify through stereomicroscope 4 is taken by CCD camera 5 and is imaged on the indicator screen (not shown) that is connected with the CCD camera, thereby the operator can be directly watches cutting edge or cutting edge of processing and tool setting situation after the processing from indicator screen, stereomicroscope 4 can move along the Z direction, thereby can adjust the installing space of the above-below direction of workpiece corresponding to the size of workpiece, lower end side at stereomicroscope 4 is installed with a high-precision rotary mechanism 7, on this slew gear 7, high speed bistrique 3 is installed at a certain angle, this high speed bistrique 3 is to be installed in the above-mentioned high-precision rotary mechanism 7 and by leading screw by rolling guide to drive along the rolling guide rectilinear motion, be used for man-hour bistrique being docked with processed cutting edge face adding, be used to return bistrique man-hour adding, above-mentioned high-precision rotary mechanism 7 can carry out high-precision calibration gyration W around the Z axle, the cutting edge of different directions contacts and carries out grinding on being used to adjust bistrique and be arranged on cross cutting roller side face, above-mentioned digital display indexing means can also can be driven by stepper motor by manually driving along moving of directions X around the rotation of A axle and the main carriage of strip length sensor.With microscope alignment cutting edge and A to the digital display value can detect the circumferential distance of cutting edge, with microscope alignment cutting edge and X to the digital display value can detect X to the distance of cutting edge, the difference mutually of detected value and the desired standard value of drawing can be at any time with the bistrique correction until reaching specification requirement.On this device, also can digital display height gauge and electricity consumption sensing sense instrument detection cutting edge height (needing the compensation guiding error) be installed along Z-direction.
Above-mentioned lathe bed is not limited to granite system, also can be cast iron or other metal material system.

Claims (6)

1. be used for the grinding of cross cutting roller cutting edge and detect incorporate equipment, it is characterized in that it comprises:
The main carriage of lathe bed, digital display indexing means, high speed bistrique, tailstock, cutting edge finder, vertical saddle, strip length sensor and workpiece installing rack; This digital display indexing means is installed in an end of lathe bed left and right directions, this tailstock is configured in opposed to each other on the lathe bed in phase on the left and right directions with the digital display indexing means and also can leaves or approaching moving along left and right directions relative to the digital display indexing means, is used for adjusting corresponding to the length of workpiece the distance of indexing means and tailstock; On the side relative of digital display indexing means and tailstock, be installed with respectively and be used for the top workpiece installing rack of the correct aligning of workpiece with workpiece; Above-mentioned vertical saddle is perpendicular to lathe bed and be installed on the main carriage, and this main carriage can be along the left and right directions on the lathe bed, be that the length direction of workpiece moves, and this main carriage can be manually or driven by drive unit and to move; The cutting edge finder is installed on the vertical saddle and can moves along the vertical direction on planker; Single-revolution mechanism is set on the cutting edge finder, and this slew gear can change perpendicular to the Z axle revolution of horizontal plane and can carry out around the circumferential high-precision calibration of Z axle; Above-mentioned high speed bistrique is fixed at a certain angle on the rolling guide and by leading screw and drives, and this rolling guide is arranged on the slew gear; Above-mentioned edge of a knife finder and slew gear can be finely tuned along the Y direction to the horizontal direction extension perpendicular to axis of workpiece.
2. as claimed in claim 1ly be used for the grinding of cross cutting roller cutting edge and detect incorporate establishing
Be equipped with, it is characterized in that above-mentioned direction sensor is grating or magnetic grid, lathe bed is made of granite, and driving workpiece is manual driving device around the rotation of A axle and main carriage along the drive unit that moves of Y-axis, to realize manual grinding.
3. as claimed in claim 1ly be used for the cutting edge grinding of cross cutting roller and detect incorporate equipment,
It is characterized in that above-mentioned length direction sensor is grating or magnetic grid, lathe bed is made of granite, drives workpiece and rotates and main carriage is that stepper motor is to realize that mill disappears automatically along the drive unit that moves of Y-axis around the A axle.
4. as claim 1, the 2 or 3 described equipment that are used for the cutting edge grinding of cross cutting roller and detect one, it is characterized in that above-mentioned cutting edge finder is made up of stereomicroscope, CCD camera and display.And, on Z-direction, promptly digital display chi and the inductance amesdial that detects the cutting edge height upwards is set at the vertical Nogata.
5. a machining and testing method that is used for the cutting edge of cross cutting roller is characterized in that it is to use
6. the machining and testing method of the described any cutting edge grinding that is used for the cross cutting roller of claim 1~6 and the cutting edge of the cross cutting roller that detects integration apparatus, add man-hour at first by mobile tailstock with the distance between tailstock and digital display indexing means, make its distance corresponding with the length of workpiece, then by the workpiece installing rack with top on the top and tailstock on workpiece and the digital display indexing means aim at and be bearing in top on, then adjust the extension elongation of slew gear and bistrique, to be processed of the grinding face that makes bistrique and cutting edge contacts, in the cutting edge process, the digital display indexing means.According to cutting edge to be processed control the angle value of the rotation of roller along the circumferential length of roller, corresponding with the circumferential length that circumferential feeding size in the edge that guarantees roller and cutting edge are to be processed; Slew gear turns round according to the bearing of trend that the cutting edge on the roller periphery is set so that the grinding face of bistrique is parallel with to be processed of cutting edge all the time; Vertical planker of strip length sensing carries vertical saddle moving axially along workpiece, so that bistrique is along the workpiece axially-movable, the workpiece spindle of monitoring bistrique by above-mentioned linear transducer to movement length, so that its move distance is controlled corresponding to the actual processing length of cutting edge, by controlling the linear longitudinal movement around the main carriage of the gyration in its axle center and strip length sensor of roller that above-mentioned digital display indexing means drives along the axis direction of roller, the collateral security bistrique moves in contact with the cutting edge that is formed on various bearing of trends on the roller side face, realizes the grinding of cutting edge; In addition, bistrique is fixedly mounted on the rolling guide, when loading and unloading roller on this equipment, earlier bistrique is up promoted, and is beneficial to loading and unloading; When tool setting, by bistrique is moved along rolling guide, successfully the grinding face with bistrique docks with cutting edge face to be processed; The cutting edge checkout gear can move up and down along vertical, when being installed, roller adjusts the height of cutting edge checkout gear corresponding to the diameter of roller in order not bump with workpiece, after machining, by mobile main carriage, the cutting edge checkout gear is aimed at a cutting edge, move main carriage along directions X then, make the cutting edge checkout gear aim at another cutting edge, can measure the distance of above-mentioned two cutting edges at directions X according to the length value that linear transducer is read; In addition, make the cutting edge checkout gear aim at a cutting edge that extends along directions X by rotating the digital display indexing means, rotate the digital display indexing means then and make the cutting edge checkout gear aim at the cutting edge that another extends along directions X, can measure the distance of above-mentioned two cutting edges according to the numerical value of digital display indexing means demonstration; By being arranged on digital display chi and the inductance amesdial on the Z-direction, detect the height of cutting edge.
CN01101524A 2001-01-21 2001-01-21 Equipment for grinding die-cutting cylinder cutting edge and making integral detection and its detection method Pending CN1367066A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN01101524A CN1367066A (en) 2001-01-21 2001-01-21 Equipment for grinding die-cutting cylinder cutting edge and making integral detection and its detection method

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN01101524A CN1367066A (en) 2001-01-21 2001-01-21 Equipment for grinding die-cutting cylinder cutting edge and making integral detection and its detection method

Publications (1)

Publication Number Publication Date
CN1367066A true CN1367066A (en) 2002-09-04

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CN01101524A Pending CN1367066A (en) 2001-01-21 2001-01-21 Equipment for grinding die-cutting cylinder cutting edge and making integral detection and its detection method

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102814737A (en) * 2011-06-09 2012-12-12 沈阳海默数控机床有限公司 Grinder vision inspection method and grinder vision inspection system
CN110000606A (en) * 2019-04-18 2019-07-12 哈尔滨工业大学 A kind of presetting cutter method for processing Terahertz slow-wave structure part
CN110044247A (en) * 2019-05-06 2019-07-23 中原工学院 A kind of cylindrical body global sizes measuring instrument
CN110587428A (en) * 2019-10-09 2019-12-20 青岛高测科技股份有限公司 Device and method for calibrating center of Notch groove formed in semiconductor crystal bar

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102814737A (en) * 2011-06-09 2012-12-12 沈阳海默数控机床有限公司 Grinder vision inspection method and grinder vision inspection system
CN102814737B (en) * 2011-06-09 2014-08-13 沈阳海默数控机床有限公司 Grinder vision inspection method and grinder vision inspection system
CN110000606A (en) * 2019-04-18 2019-07-12 哈尔滨工业大学 A kind of presetting cutter method for processing Terahertz slow-wave structure part
CN110044247A (en) * 2019-05-06 2019-07-23 中原工学院 A kind of cylindrical body global sizes measuring instrument
CN110587428A (en) * 2019-10-09 2019-12-20 青岛高测科技股份有限公司 Device and method for calibrating center of Notch groove formed in semiconductor crystal bar

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