Recent Progress in CMM-Based Form Measurement

Author:

Jusko Otto, ,Neugebauer Michael,Reimann Helge,Bernhardt Ralf,

Abstract

Form standards with different profile geometries were measured using 3- and 4-axis scanning on a 3D CMM prototype with a precision rotary table. Physical boundary conditions, including probing force, probe diameter, probe geometry, probe material, and scanning speed, were varied, and then the results were analyzed. Some results were found to be equivalent to those obtained using form measuring machines. Limitations of the current implementation of this technique are discussed.

Publisher

Fuji Technology Press Ltd.

Subject

Industrial and Manufacturing Engineering,Mechanical Engineering

Reference21 articles.

1. T. Pfeifer and A. Napierala, “Scanning on coordinate mesuring machines,” Proc. XVI IMEKO World Congress, Vienna, Austria, 2000.

2. [2] O. Jusko and H. Kunzmann, “CIRP form measurement intercomparison including CMMs and form testers,” Metrologia, ISSN 0026-1394, Vol.37, No.4, pp. 345-346, 2000.

3. [3] VDI/VDE 2617 Blatt 2.2, “Genauigkeit von Koordinatenmessgeräten – Kenngröss en und deren Prüfung – Formmessung (Accuracy of coordinate measuring machines – Parameters and their reverification – Form measurement).”

4. [4] ISO 10360-3, “Geometrical Product Specification (GPS) – Acceptance Test and reverification test for coordinate measuring machines (CMM) – Part 3: CMMs with a rotary table as the fourth axis.”

5. [5] ISO 10360-4, “Geometrical Product Specification (GPS) – Acceptance Test and reverification test for coordinate measuring machines (CMM) – Part 4: CMMs used in scanning modus.”

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