Laboringenieur
Prediction of MRF polishing by classification of the initial error with Zernike polynomials.
In: Optical Manufacturing and Testing V (vol. 5180) , pg. 115-122
(2003)
DOI: 10.1117/12.507652
Prediction of MRF polishing by classification of the initial error with Zernike polynomials.
San Diego, CA, USA 03.08.2003.
(2003)
Lens production enhancement by adoption of artificial influence functions and a knowledge-based system in a magnetorheological finishing process.
San Diego, CA, USA 03.08.2003.
(2003)
Temporal stability and performance of MR polishing fluid.
San Diego, CA, USA 2004.
(2004)
Comparison of a new contact topographical measurement system for spherical and aspherical surfaces with interferometry.
In: Current Developments in Lens Design and Optical Engineering V (vol. 5523) , pg. 225-234
(2004)
DOI: 10.1117/12.558899
Temporal stability and performance of MR polishing fluid.
In: Current Developments in Lens Design and Optical Engineering V (vol. 5523) , pg. 273-280
(2004)
DOI: 10.1117/12.558897
Erzeugung hochpräziser Oberflächen auf optischen Bauelementen für die Präzisionsoptik mit magnetorheologischem Finishing (MRF).
pg. 89-98
(2004)
Erzeugung hochpräziser Oberflächen auf optischen Bauelementen für die Präzisionsoptik mit magnetorheologischem Finishing (MRF).
Zwiesel 17.06.2004.
(2004)
Comparison of a new contact topographical measurement system for spherical and aspherical surfaces with interferometry.
Denver, CO, USA 02.08.2004.
(2004)
Comparison of different magnetorheological polishing fluids.
In: Optical Fabrication, Testing, and Metrology II (vol. 5965) , pg. 659-670
(2005)
DOI: 10.1117/12.656430
Utilizing a TII aspherical measurement machine in a computer-controlled polishing process.
In: Optical Measurement Systems for Industrial Inspection IV (vol. 5856) , pg. 987-993
(2005)
DOI: 10.1117/12.612597
A new approach to predict computer-controlled polishing results.
In: Optical Manufacturing and Testing VI (vol. 5869) , pg. 94-102
(2005)
DOI: 10.1117/12.616780
New viscosity measurement for magnetorheological polishing fluid.
In: Optical Manufacturing and Testing VI (vol. 5869) , pg. 133-141
(2005)
DOI: 10.1117/12.616690
Analysis of thermal sources in a magnetorheological finishing (MRF) process.
In: Optical Manufacturing and Testing VI (vol. 5869) , pg. 111-120
(2005)
DOI: 10.1117/12.616751
MRF in der Praxis – Optimierung der Wirtschaftlichkeit.
Deggendorf 19.04.2005.
(2005)
Utilizing a TII aspherical measurement machine in a computer-controlled polishing process.
München 13.06.2005.
(2005)
Analysis of thermal sources in a magnetorheological finishing (MRF) process.
San Diego, CA, USA 31.07.2005.
(2005)
New viscosity measurement for magnetorheological polishing fluid.
San Diego, CA, USA 31.07.2005.
(2005)
A new approach to predict computer-controlled polishing results.
San Diego, CA, USA 31.07.2005.
(2005)
Comparison of different magnetorheological polishing fluids.
Jena 12.09.2005.
(2005)
Correlation between influence- function quality and predictability of a computer-controlled polishing process.
In: Optical Engineering (vol. 45) , pg. 063401 ff.
(2006)
DOI: 10.1117/1.2213630
Coherences between influence function size, polishing quality and process time in the magnetorheological finishing.
In: Current Developments in Lens Design and Optical Engineering VII (vol. 6288) , pg. 62880Q ff.
(2006)
DOI: 10.1117/12.678720
Coherences between spot size, process time and polishing quality in MRF.
Rochester, NY, USA 2006.
(2006)
Deposits and damages on high precision surfaces of advanced materials.
(2006)
Sedimentations on high-precision surfaces of advanced materials by magnetorheological finishing.
In: Current Developments in Lens Design and Optical Engineering VII (vol. 6288) , pg. 62880R ff.
(2006)
Rauhigkeitsentwicklung bei der Bearbeitung von Komponenten für die Präzisionsoptik mit Diamantwerkzeugen.
(2006)
Coherences between influence function size, polishing quality and process time in the magnetorheological finishing.
San Diego, CA, USA 2006.
(2006)
Rauhigkeitsentwicklung bei der Bearbeitung von Komponenten für die Präzisionsoptik mit Diamantwerkzeugen.
pg. 143-153
(2006)
Simulation of a complex optical polishing process using a neural network.
In: Robotics and Computer-Integrated Manufacturing (vol. 24) , pg. 32-37
(2006)
DOI: 10.1016/j.rcim.2006.07.003
Deposits and damages on high precision surfaces of advanced materials.
Puchov, Slowakei 10.-13.05.2006.
(2006)
Sedimentations on high-precision surfaces of advanced materials by magnetorheological finishing.
San Diego, CA, USA 13.08.2006.
(2006)
Calculation of MRF influence functions.
In: Optical Manufacturing and Testing VII (vol. 6671) , pg. 66710Y ff.
(2007)
Lens production enhancement by adoption of artificial influence functions and a knowledge-based system in a magnetorheological finishing process.
In: Optical Manufacturing and Testing VII (vol. 6671) , pg. 66711J ff.
(2007)
DOI: 10.1117/12.761356
Design and development of a novel computer-controlled power device for electrical-assisted optical grinding.
pg. TD0406-1 ff.
(2007)
Filter algorithm for influence functions in the computer-controlled polishing of high-quality optical lenses.
In: International Journal of Machine Tools and Manufacture (vol. 47) , pg. 107-111
(2007)
Correcting silicon carbide and silicon nitride moulds by Magnetorheological Finishing.
pg. 360-363
(2007)
Calculation of MRF influence functions.
San Diego, CA, USA 2007.
(2007)
Subsurface damages detecting on standard optical glass by dimple method.
pg. 13 ff.
(2007)
Subsurface damages detecting on standard optical glass by dimple method.
Jasna, Slowakei 29.-31.08.2007.
(2007)
Schneller und genauer - Optimale Polierstrategie durch variable Abtragsfunktion.
Deggendorf 2008.
(2008)
Utilisation of time-variant influence functions in the computer-controlled polishing.
In: Precision Engineering (vol. 32) , pg. 47-54
(2008)
DOI: 10.1016/j.precisioneng.2007.04.005
Mathematical modelling of influence functions in computer-controlled polishing. Part I.
In: Applied Mathematical Modelling (vol. 32) , pg. 2888-2906
(2008)
Ultraschallunterstütztes Schleifen von Linsen.
pg. 191-203
(2008)
Mathematical modelling of influence functions in computer-controlled polishing. Part II.
In: Applied Mathematical Modelling (vol. 32) , pg. 2907-2924
(2008)
Simulation of a complex optical polishing process using a neural network.
In: Robotics and Computer-Integrated Manufacturing (vol. 24) , pg. 32-37
(2008)
DOI: 10.1016/j.rcim.2006.07.003
Examination of surface and subsurface damages on silicon wafers using dimple polishing.
(2008)
Material removal study at silicon nitride molds for the precision glass molding using MRF process.
In: Current Developments in Lens Design and Optical Engineering IX (vol. 7060) , pg. 706007 ff.
(2008)
DOI: 10.1117/12.794583
Precision finishing of aspherical optical components using ELID grinding.
pg. 191-203
(2008)
Material influence of silicon nitride at Magnetorheological Finishing (MRF).
(2008)
Forces acting between polishing tool and workpiece surface in magnetorheological finishing.
vol. 7060 pg. 706006 ff.
DOI: 10.1117/12.794196
(2008)
Advanced techniques for computer-controlled polishing.
In: Current Developments in Lens Design and Optical Engineering IX (vol. 7060)
(2008)
DOI: 10.1117/12.808036
Magnetorheological Finishing of silicon nitride moulds.
(2008)
Precision finishing of aspherical optical components using ELID grinding.
Zwiesel 04.-05.06.2008.
(2008)
Ultraschallunterstütztes Schleifen von Linsen.
Zwiesel 04.-05.06.2008.
(2008)
Strategies for grinding optical free-forms using ball-shaped grinding wheels.
Rochester, NY, USA 11.05.2009.
(2009)
Relationship between influence function accuracy and polishing quality in magnetorheological finishing.
pg. 76550Y ff.
DOI: 10.1117/12.865508
(2010)
Effects of mechanical inaccuracies on the measurement result in metrology systems.
vol. 7656 pg. 765611 ff.
(2010)
Investigations on Magnetorheological Finishing of High-Quality Optical Surfaces with Varying Influence Function (Proceedings of Optical Fabrication and Testing 2010; Jackson Hole, WY, USA; June 13-17, 2010).
Washington, DC, USA pg. OWD3 ff.
(2010)
Investigations on Grinding Tools for Silicon Carbide Based Advanced Materials.
Bellingham: SPIE pg. OWD2 ff.
(2010)
Prediction and control techniques for sub-aperture polishing of high-quality optical lenses.
University of the West of England, Bristol, Großbritannien.
(2010)
Relationship between influence function accuracy and polishing quality in magnetorheological finishing.
Dalian, China 26.-29.04.2010.
(2010)
Physical marker based stitching process of circular and non-circular interferograms.
DOI: 10.1117/12.889491
(2011)
3D Scale - A system to reduce and compensate the influence of multiple axis errors of rotational axes.
2013.
(2013)