SINTERING BEHAVIOR AND MECHANICAL-PROPERTIES OF ACTIVATED SINTERED MOLYBDENUM
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作者:
HOFMANN, H
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MAX PLANCK INST MET RES,INST WERKSTOFFWISSENSCH,POWDER MET LABS,D-7000 STUTTGART 80,FED REP GERMAX PLANCK INST MET RES,INST WERKSTOFFWISSENSCH,POWDER MET LABS,D-7000 STUTTGART 80,FED REP GER
HOFMANN, H
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GROSSKOPF, M
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MAX PLANCK INST MET RES,INST WERKSTOFFWISSENSCH,POWDER MET LABS,D-7000 STUTTGART 80,FED REP GERMAX PLANCK INST MET RES,INST WERKSTOFFWISSENSCH,POWDER MET LABS,D-7000 STUTTGART 80,FED REP GER
GROSSKOPF, M
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HOFMANNAMTENBRINK, M
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MAX PLANCK INST MET RES,INST WERKSTOFFWISSENSCH,POWDER MET LABS,D-7000 STUTTGART 80,FED REP GERMAX PLANCK INST MET RES,INST WERKSTOFFWISSENSCH,POWDER MET LABS,D-7000 STUTTGART 80,FED REP GER
HOFMANNAMTENBRINK, M
[1
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PETZOW, G
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MAX PLANCK INST MET RES,INST WERKSTOFFWISSENSCH,POWDER MET LABS,D-7000 STUTTGART 80,FED REP GERMAX PLANCK INST MET RES,INST WERKSTOFFWISSENSCH,POWDER MET LABS,D-7000 STUTTGART 80,FED REP GER
PETZOW, G
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[1] MAX PLANCK INST MET RES,INST WERKSTOFFWISSENSCH,POWDER MET LABS,D-7000 STUTTGART 80,FED REP GER
Molybdenum compacts containing small additions of nickel were slowly heated to 1470 degree C in hydrogen and immediately cooled to room temperature. Some samples were additionally hot isostatically pressed. All compacts showed brittle grain boundary failure and their bend strength was dependent on compact grain size and the quantity of impurities and alloying additions (nickel) present at the grain boundaries. The oxygen content of as-received powders influenced shrinkage behavior, and therefore the mechanical properties. Microstructural design led to improvement of mechanical properties in some cases.