IP Library Granted Patent US 7,162,383
Granted Patent B2
US 7,162,383 · App. 10/833,007 · Granted Jan 9, 2007

Calibration method for surface texture measuring instrument, calibration program for surface texture measuring instrument, recording medium storing the calibration program and surface texture measuring instrument

Assignee: Mitutoyo Corporation
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Quick Facts
Patent No.
US 7,162,383
App. No.
10/833,007
Granted
Jan 9, 2007
Kind
B2
Abstract

In a calibration method for a surface texture measuring instrument which measures a surface of a workpiece and includes an arm that is supported to be swingable around a base point thereof and is provided with a contact point at an end for scanning the workpiece surface, the calibration method includes a measurement step for measuring a calibration gauge of which cross section contains a part of a substantially perfect circle, an assignment step for assigning the detection results, which are obtained in the measurement step, in an evaluation formula based on a circle equation in which the center coordinates of the calibration gauge are (x c , z c ) and the radius is “r”, and a calibration step for calibrating each parameter based on the evaluation formula obtained in the assignment step.

Claims (33)

1. A calibration method for a surface texture measuring instrument that measures a surface of a workpiece, the instrument including: an arm supported to be swingable around a base point; a stylus that is arranged on an end of the arm and is provided with a contact point on a tip thereof; the contact point being in contact or nearly in contact with the workpiece along a substantial tangent line of an arc drawn by a tip of the contact point in accordance with a swing of the arm; a shifter for shifting the arm in x-direction while keeping the contact point in contact or nearly in contact with the workpiece surface; a first detector for detecting a displacement of the base point in the x-direction; a second detector for detecting a displacement in z-direction due to the swing of the arm based on a displacement of a point on the arm in the z-direction; and a compensation computing unit that compensates detection results of the first detector and the second detector for a deviation due to the swing to obtain measurement data of the workpiece surface, the calibration method comprising:

a measurement step for measuring a calibration gauge of which cross section contains a part of a substantially perfect circle;

an assignment step for assigning the detection results of the first detector and the second detector, which are obtained in the measurement step, in an evaluation formula based on a circle equation in which the center coordinates of the calibration gauge are (x c , z c ) and a radius of the calibration gauge is r;

a calibration step for calibrating gain of z-coordinate of the tip of the contact point relative to the detection result of the second detector and each parameter included in the deviation based on the results obtained in the assignment step; and

a storage step for storing the calibrated gain and each calibrated parameter.

2. The calibration method for the surface texture measuring instrument according to claim 1 ,

wherein the evaluation formula in the assignment step is determined based on: an arm reference length L as a length from the base point to a reference point as a foot of a perpendicular line extended from the tip of the contact point to a base shaft of the arm extending in longitudinal direction; a detection value x i of the first detector; a detection result z i of the second detector; a gain g of the z-coordinate of the tip of the contact point to the detection result z i of the second detector; and a tip compensation amount h as a length from the reference point to the tip of the contact point, and

wherein, with a known arm reference length L being given, the center coordinates (x c , z c ), the radius r, the gain g and the tip compensation amount h are found in the calibration step.

3. The calibration method for the surface texture measuring instrument according to claim 2 , wherein, based on a designed value of the arm reference length L, the center coordinates (x c , z c ), the radius r, the gain g, and the tip compensation amount h are found in the calibration step.

4. The calibration method for the surface texture measuring instrument according to claim 1 ,

wherein the evaluation formula in the assignment step is determined based on: an arm reference length L as a length from the base point to the tip of the contact point; a detection value x i of the first detector; a detection result z i of the second detector; a gain g of the z-coordinate of the tip of the contact point to the detection result z i of the second detector; and a zeroset deviation z 0 as a value derived by multiplying the detection result of the second detector, which is obtained when a line connecting the base point and the tip of the contact point tip is parallel to the x-direction, by the gain g, and

wherein the center coordinates (x c , z c ) of the circle, the radius of the circle r, the gain g, the arm reference length L and the zeroset deviation z 0 are found.

5. The calibration method for the surface texture measuring instrument according to claim 1 ,

wherein the evaluation formula in the assignment step is determined based on: an arm reference length L as a length from the base point to a reference point as a foot of a perpendicular line extended from the tip of the contact point to a base shaft of the arm extending in longitudinal direction; a detection value x i of the first detector; detection result z i of the second detector; a gain g of the z-coordinate of the tip of the contact point to the detection result z i of the second detector; a tip compensation amount h as a length from the reference point to the tip of the contact point; and a zeroset deviation z 0 as a value derived by multiplying the detection result of the second detector, which is obtained when the base shaft of the arm is parallel to the x-direction, by the gain g, and

wherein the center coordinates (x c , z c ) of the circle, the radius of the circle r, the tip compensation amount h, the gain g, the zeroset deviation z 0 and the arm reference length L are found.

6. The calibration method for the surface texture measuring instrument according to claim 1 , further comprising a second calibration step, with a true shape of the calibration gauge being given, for computing a tip shape of the contact point based on difference from the radius r found in the calibration step.

7. The calibration method for the surface texture measuring instrument according to claim 6 , wherein the calibration gauge contains at least a part of a perfect circle and the true shape of the calibration gauge is represented by a radius rt of the perfect circle.

8. The calibration method for the surface texture measuring instrument according to claim 6 , wherein the tip shape of the contact point contains at least a part of a perfect circle and is represented by the radius of the perfect circle.

9. A calibration program stored on a computer-readable recording medium for a surface texture measuring instrument wherein a computer executes a calibration method for the surface texture measuring instrument that measures a surface of a workpiece, the instrument including: an arm supported to be swingable around a base point; a stylus that is arranged on an end of the arm and is provided with a contact point on a tip thereof, the contact point being in contact or nearly in contact with the workpiece along a substantial tangent line of an arc drawn by a tip of the contact point in accordance with a swing of the arm; a shifter for shifting the arm in x-direction while keeping the contact point in contact or nearly in contact with the workpiece surface; a first detector for detecting a displacement of the base point in the x-direction; a second detector for detecting a displacement in z-direction due to the swing of the arm based on a displacement of a point on the arm in the z-direction; and a compensation computing unit that compensates detection results of the first detector and the second detector for a deviation due to the swing to obtain measurement data of the workpiece surface, the calibration method comprising:

a measurement step for measuring a calibration gauge of which cross section contains a part of a substantially perfect circle;

an assignment step for assigning the detection results of the first detector and the second detector, which are obtained in the measurement step, in an evaluation formula based on a circle equation in which the center coordinates of the calibration gauge are (x c , z c ) and a radius of the calibration gauge is r;

a calibration step for calibrating gain of z-coordinate of the tip of the contact point relative to the detection result of the second detector and each parameter included in the deviation based on the results obtained in the assignment step; and

a storage step for storing the calibrated gain and each calibrated parameter.

10. A computer-readable recording medium storing a calibration program for a surface texture measuring instrument wherein a computer executes a calibration method for the surface texture measuring instrument that measures a surface of a workpiece, the instrument including: an arm supported to be swingable around a base point; a stylus that is arranged on an end of the arm and is provided with a contact point on a tip thereof, the contact point being in contact or nearly in contact with the workpiece along a substantial tangent line of an arc drawn by a tip of the contact point in accordance with a swing of the arm; a shifter for shifting the arm in x-direction while keeping the contact point in contact or nearly in contact with the workpiece surface; a first detector for detecting a displacement of the base point in the x-direction; a second detector for detecting a displacement in z-direction due to the swing of the arm based on a displacement of a point on the arm in the z-direction; and a compensation computing unit that compensates detection results of the first detector and the second detector for a deviation due to the swing to obtain measurement data of the workpiece surface, the calibration method comprising:

a measurement step for measuring a calibration gauge of which cross section contains a part of a substantially perfect circle;

an assignment step for assigning the detection results of the first detector and the second detector, which are obtained in the measurement step, in an evaluation formula based on a circle equation in which the center coordinates of the calibration gauge are (x c , z c ) and a radius of the calibration gauge is r; and

a calibration step for calibrating gain of z-coordinate of the tip of the contact point relative to the detection result of the second detector and each parameter included in the deviation based on the results obtained in the assignment step; and

a storage step for storing the calibrated gain and each calibrated parameter.

11. A surface texture measuring instrument comprising a calibration program for the surface texture measuring instrument, the program being executable by a computer wherein the computer executes a calibration method for the surface texture measuring instrument that measures a surface of a workpiece, the instrument including: an arm supported to be swingable around a base point; a stylus that is arranged on an end of the arm and is provided with a contact point on a tip thereof, the contact point being in contact or nearly in contact with the workpiece along a substantial tangent line of an arc drawn by a tip of the contact point in accordance with a swing of the arm; a shifter for shifting the arm in x-direction while keeping the contact point in contact or nearly in contact with the workpiece surface; a first detector for detecting a displacement of the base point in the x-direction; a second detector for detecting a displacement in z-direction due to the swing of the arm based on a displacement of a point on the arm in the z-direction; and a compensation computing unit that compensates detection results of the first detector and the second detector for a deviation due to the swing to obtain measurement data of the workpiece surface, the calibration method comprising:

a measurement step for measuring a calibration gauge of which cross section contains a part of a substantially perfect circle;

an assignment step for assigning the detection results of the first detector and the second detector, which are obtained in the measurement step, in an evaluation formula based on a circle equation in which the center coordinates of the calibration gauge are (x c , z c ) and a radius of the calibration gauge is r; and

a calibration step for calibrating gain of z-coordinate of the tip of the contact point relative to the detection result of the second detector and each parameter included in the deviation based on the results obtained in the assignment step; and

a storage step for storing the calibrated gain and each calibrated parameter.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 28, 2004
From: TAKEMURA, ISAMU
To: MITUTOYO CORPORATION
Reel/Frame 015273/0044 →
Priority Claims (1)
JP 2003-129882 · May 8, 2003 · national
Continuity (1)
Related Publication 20040223148A1 · Nov 11, 2004