Analysis of Residual Stresses in Micro Powder Injection Moulded Micro Bending Specimens Made of Zirconia
Author:
Affiliation:
1. Universität Karlsruhe (TH)
2. Deutsches Elektronen-Synchrotron DESY
3. Karlsruhe Institute of Technology (KIT)
4. Universtity of Karlsruhe
Abstract
Publisher
Trans Tech Publications, Ltd.
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Link
https://www.scientific.net/MSF.490-491.503.pdf
Reference7 articles.
1. www. sfb499. de.
2. L. Merz, S. Rath, V. Piotter, R. Ruprecht, J. Ritzhaupt-Kleissl, J. Haußelt: Feedstock Development for Micro Powder Injection Moulding; Microsystem Technologies 8 (2002); pp.129-132.
3. T. Wroblewski, O. Clauß, H. -A. Crostack, A. Ertel, F. Fandrich, Ch. Genzel, K. Hradil, W. Ternes, E. Woldt: A new diffractometer for materials science and imaging at HASYLAB beamline G3, Nuclear Instruments&Methods in Physics Research A 428 (1999).
4. T. Wroblewski: MAXIM - A Novel Method for the X-ray Imaging of Strain, 6th European Conference on Residual Stresses-ECRS 6, Coimbra Portugal, Materials Science Forum Vols. 404-407 (2002), p: 121-126.
5. M. Auhorn, T. Beck, V. Schulze, D. Löhe: Quasi-static and cyclic testing of specimens with high aspect ratios produced by micro-casting and micro-powder-injection-moulding, Microsystem Technologies, Vol. 8, 2/3, Berlin (2002), pp.109-112.
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1. Locally resolved stress and strain analysis of sinter-joined micro valves using synchrotron X-ray diffraction and conical slit apertures;Microsystem Technologies;2014-08-03
2. A review of micro-powder injection moulding as a microfabrication technique;Journal of Micromechanics and Microengineering;2011-03-01
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