Non-contact method for surface roughness measurement after machining
By: J. Valíček, M. Držík, T. Hryniewicz, M. Harničárová, K. Rokosz, M. Kušnerová, K. Barčová and D. Bražina
Open Access
|Oct 2012References
- [1] Whitehouse, D.J. (1997). Surface metrology.
- [2] Thomas, T.R. (1982).. London: Longman.
- [3] Ohlidal, M. (1995). Comparison of 2-dimensional Fraunhofer approximation and 2-dimensional Fresnel approximation at analysis of surface-roughness by angle speckle correlation. 2. Experimental results.
- [4] Nadolny, K. et al. (2011). Laser measurements of surface topography of abrasive tools using measurement system CLI 2000.
- [5] Łukianowicz, C., Karpiński, T. (2001). Optical system for measurement of surface form and roughness.
- [6] Senchenko, E.S., Chugui, Yu.V. (2011). Shadow inspection of 3D objects in partially coherent light.
- [7] Kawate, E., Hain, M. (2012). New scatterometer for spatial distribution measurements of light scattering from materials. 56-61.
- [8] Bumbalek, B. (1983). Statistical-analysis and its use evaluating surface microgeometry.
- [9] Geleta, V., Mészároš, I. (2001). Surface roughness formation of some mechatronic parts. In
- [10] Ogilvy, J.A(1991).
- [11] Łukianowicz, C. (2003). Modeling of direct and inverse problems in light scattering by rough surfaces.
- [12] Kapłonek, W., Łukianowicz, C. (2008). Assessment of surface microroughness in movement by laser scatterometry and image stacking.155-160.
DOI: https://doi.org/10.2478/v10048-012-0028-3 | Journal eISSN: 1335-8871
Language: English
Page range: 184 - 188
Published on: Oct 21, 2012
Published by: Slovak Academy of Sciences, Institute of Measurement Science
In partnership with: Paradigm Publishing Services
Publication frequency: Volume open
Related subjects:
© 2012 J. Valíček, M. Držík, T. Hryniewicz, M. Harničárová, K. Rokosz, M. Kušnerová, K. Barčová, D. Bražina, published by Slovak Academy of Sciences, Institute of Measurement Science
This work is licensed under the Creative Commons License.