Claims
- 1. A method of determining current position data of a machining tool with regard to a reference surface of a workpiece or a body connected to the workpiece, comprising the steps of:
relatively moving the tool and the workpiece toward and away from one another along a feed axis; providing a drive motor for the tool and setting the rotary speed of the drive motor to a starting rotary speed which is so low that; when bringing the tool into contact with the reference surface, the rotary speed is measurably reduced; wherein the reference surface is moved past the tool before the tool is in contact and while the tool is in contact.
- 2. The method as claimed in claim 1, wherein during the movement of the tool toward the workpiece, the reference surface covers a path which is at most ten times the desired accuracy of the machining, preferably less than 0.2 mm.
- 3. The method as claimed in claim 1, wherein the machining tool, before the contact, is driven at a rotary speed of less than one hundredth of the rotary speed used for the machining, in particular at a rotary speed of 1 to 10 revolutions/second.
- 4. The method as claimed in claim 1, wherein the tool and the reference surface are oriented with respect to one another before the actual determination of the position.
- 5. The method as claimed in claim 1, wherein the machining tool, with regard to the feed axis, is oriented in alignment with a rotary center of the reference surface which is cylindrical.
- 6. The method as claimed in claim 5, wherein before the actual determination of the position, the plane containing the rotary center of the reference surface and extending in or parallel to the feed direction and the eccentricity of the reference surface are established.
- 7. The method as claimed in claim 4, wherein before the actual determination of the position of the tool with regard to the reference surface, at least one feeling operation with a stationary reference surface is effected.
- 8. The method as claimed in claim 1, wherein the movement of the reference surface is coupled with the rotary speed of the drive motor for the tool in such a way that a reduction in the rotary speed of the drive motor brings about a reduction in the movement of the reference surface.
- 9. The method as claimed in claim 1, wherein the feed of the tool is coupled with the rotary speed of the drive motor for the tool in such a way that a reduction in the rotary speed of the drive motor brings about a reduction in the feed of the tool.
- 10. The method as claimed in claim 8, wherein the movement of the reference surface or of the feed of the tool is stopped if the rotary speed of the drive motor of the tool becomes zero.
- 11. The method as claimed in claim 1, wherein during the feeling of the tool tip for the reference surface, so much power is fed to the drive motor that the friction moments of the actual bearing arrangement and of all the lubrication are just overcome.
- 12. The method as claimed in claim 1, wherein the established position is changed by a predetermined correction value.
- 13. An apparatus for determining current position data of a machining tool, comprising a feed device to effect relatively movement of the tool and the workpiece toward and away from one another, a first spindle for accommodating the workpiece, at least one further spindle for accommodating the machining tool which can be set in rotation and has an end machining surface, the spindles being arranged and mounted in such a way that the machining tool and workpiece can be moved relatively toward and away from one another for the purpose of material removal at the workpiece, drive motors for adjusting the spindles and for the drive of the machining tool, at least one reference surface which is arranged on one of the workpiece, a work holder and a body connected to the workpiece and against which the end machining surface of the machining tool travels, a signal establishing the feed path of the tool being produced upon contact with the reference surface, which signal is used for determining the starting position of the machining tool, drive means being provided for moving the reference surface along the end machining surface of the machining tool during the contact produced by the feed, and a contact surface being formed with the reference surface by the end machining surface of the tool, the contact surface being asymmetrical and having direction components both in the feed direction and in the direction radial thereto, although only over a part of the circumference.
- 14. The apparatus as claimed in claim 13, wherein the tool has a narrowing tip and comprises a tapered grinding pencil with tip.
- 15. The apparatus as claimed in claim 13, wherein the drive means for moving the reference surface are coupled with the rotary speed of the machining tool in such a manner that a reduction in the rotary speed of the machining tool reduces the movement brought about by the drive means.
Priority Claims (1)
Number |
Date |
Country |
Kind |
101 04 287.6 |
Jan 2001 |
DE |
|
RELATED APPLICATIONS
[0001] This application relates to application Ser. No. 09/596,082, filed Jun. 16, 2000, and to application Ser. No. ______, filed ______, entitled Method of Determining Current Position Data of A Machining Tool and Apparatus Therefor, of Bernd Rothenberger, both applications commonly owned herewith. The entirety of the disclosures of both applications are specifically incorporated herein by reference.