Full text: Fortschritte in der Metallographie

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Bild 7: Porenverteilung über Wanddicke dicht oberhalb des Durchrisses im FOREVER-Experiment EC-2 che Ke 
Literatur 
Expe: 
[1] Nourgaliev, R. R., A. Karbojian, T. N. nr die 
Dinh, B. R. Sehgal: FOREVER Experi- Die ZU 
ments on Thermal and Mechanical Beha- 
viour of a Reactor Pressure Vessel during a 
Severe Accident, Technical Report-1, MVI 
Project Research Report, Stockholm 1998 
[2] Altstadt, E., H.-G. Willschiitz: Develop- 
ment of an Integral Finite Element Model 
for the Simulation of Scaled Core-Melt- 
down Experiments, FZR-292. Rossendorf 
2000 
[3] Sehgal, B. R., R. R. Nourgaliev, T. N. 
Dinh, A. Karbojian: FOREVER experi- 
ne ment program on reactor pressure vessel 
or 2 behaviour and core debris retention, 
„708602 SMIRT-185, Seoul (Korea), 1999 
‚747643 r4] Miiller, G., J. Bohmert: Metallographic 
- 786583 Post-Test Investigations for the Scaled Co 
een re-Meltdown-Experiments FOREVER-1 
„903804 and -2, FZR-298, Rossendorf, 2000 
„942844 5° Altstadt, E., J. Böhmert, G. Müller, H.-G. 
„581886 Willschütz: Pre- and Post-Test Calculations 
EC-FOREVER-2 of Scaled Core-Meltdown Experiments, In- 
stitute of Safety Research, Annual Report 
2000, Forschungszentrum Rossendorf, 
Wiss.-techn. Bericht, FZR-316. 2000 
Bild 8: Verteilung des Schiidigungsparameters D nach 
FEM-Rechnung kurz vor dem Versagenszeitpunkt [4] Bild 1: 
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