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Werkstoffe aus Platin-Metallen

136 bytes added, 20:39, 22 September 2014
German translation
<xr id="fig:Influence_of_1-20_atom%_of_different_additive_metals_on_the_electrical_resistivit_ p_of_platinum_(Degussa)"/>Influence of Einfluss von 1-20 atomAtom-% of different additive metals on the electrical resistivity verschiedener Zusatzmetalle auf den spez. elektrischen Widerstand p of platinum von Platin (Degussa)
<xr id="fig:Influence_of_1-20_atom%_of_different_additive_metals_on_the_electrical_resistivit_ p_of_platinum"/>Influence of Einfluss von 1-22 atomAtom-% of different additive metals on the electrical resistivity verschiedener Zusatzmetalle auf den spezifischen elektrischen Widerstand p of palladiumvon Palladium (Degussa)
<xr id="fig:Phase_diagram_of_platinum-iridium"/>Fig. 2.27: Phase diagram of platinumZustandsdiagramm von Platin-iridiumIridium
<xr id="fig:Phase_diagram_of_platinum-nickel"/>Fig. 2.28: Phase diagram of platinumZustandsdiagramm von Platin-nickelNickel
<xr id="fig:Phase_diagram_of_platinum-tungsten"/>Fig. 2.29: Phase diagram of platinumZustandsdiagramm von Platin-tungstenWolfram
<xr id="fig:Phase_diagram_of_platinum-copper"/>Fig. 2.30: Phase diagram of palladiumZustandsdiagramm von Palladium-copperKupfer
<xr id="fig:Strain_hardening_of_Pt_by_cold_working"/>Fig. 2.31: Strain hardening of Verfestigungsverhalten von Pt by cold workingdurch Kaltumformung
<xr id="fig:Softening_of_Pt_after_annealing_for_0.5_hrs_after_80%_cold_working"/>Fig. 2.32: Softening of Erweichungsverhalten von Pt after annealing for nach 0.5 hrs after ,5h Glühdauer und einer Kaltumformung von 80% cold working
<xr id="fig:Strain_hardening_of_PtIr5_by_cold_working"/>Fig. 2.33: Strain hardening of Verfestigungsverhalten von PtIr5 by cold workingdurch Kaltumformung
<xr id="fig:Softening_of_PtIr5_after_annealing_for_1_hr_after_different degrees_of_cold_working"/>Fig. 2.34: Softening of Erweichungsverhalten von PtIr5 after annealing for 1 hr after different degrees of cold workingnach 1h Glühdauer mit unterschiedlicher Kaltumformung
<xr id="fig:Strain_hardening_of_PtNi8_by_cold_working"/>Fig. 2.35: Strain hardening of Verfestigungsverhalten von PtNi8 by cold workingdurch Kaltumformung
<xr id="fig:Softening_of_PtNi8_after_annealing_for_1_hr_after_80%_cold_working"/>Fig. 2.36: Softening of Erweichungsverhalten von PtNi8 after annealing for 1 hr after nach 1h Glühdauer und einer Kaltumformung von 80% cold working
<xr id="fig:Strain_hardening_of_PtW5_by_cold_working"/>Fig. 2.37: Strain hardening of Verfestigungsverhalten von PtW5 by cold workingdurch Kaltumformung
<xr id="fig:Softening_of_PtW5_after_annealing_for_1_hr_after_80%_cold_working"/>Fig. 2.38: Softening of Erweichungsverhalten von PtW5 after annealing for 1hr after nach 1h Glühdauer und einer Kaltumformung von 80% cold working
<xr id="fig:Strain_hardening_of_Pd_99.99_by_cold_working"/>Fig. 2.39: Strain hardening of Verfestigungsverhalten von Pd 99.,99 by cold workingdurch Kaltumformung
<xr id="fig:Strain_hardening_of_PdCu15_by_cold_working"/>Fig. 2.40: Strain hardening of Verfestigungsverhalten von PdCu15 by cold workingdurch Kaltumformung
<xr id="fig:Softening_of_PdCu15_after_annealing_for_0.5_hrs"/>Fig. 2.41: Softening of Erweichungsverhalten von PdCu15 after annealing for nach 0.5 hrs,5h Glühdauer und einer Kaltumformung von 80%
<xr id="fig:Strain_hardening_of_PdCu40_by_cold_working"/>Fig. 2.42: Strain hardening of Verfestigungsverhalten von PdCu40 by cold workingdurch Kaltumformung
<xr id="fig:Softening_of_PdCu40_after_annealing_for_0.5_hrs_after_80%_cold_working"/>Fig. 2.43: Softening of Erweichungsverhalten von PdCu40 after annealing for nach 0.5 hrs after ,5h Glühdauer und einer Kaltumformung von 80% cold working
<xr id="fig:Electrical_resistivity_p_of_PdCu_alloys"/>FigSpez. 2.44: Electrical resistivity elektrischer Widerstand p of von PdCu alloys with and without an annealing step for forming an ordered phase-Legierungen ohne und mit einer Glühbehandlung zur Ausbildung einer geordneten Phase
<figure id="fig:Influence_of_1-20_atom%_of_different_additive_metals_on_the_electrical_resistivit_ p_of_platinum_(Degussa)">
[[File:Influence of platinum degussa.jpg|left|thumb|<caption>Influence of Einfluss von 1- 20 atomAtom-% of different additive metals on the electrical resistivity verschiedener Zusatzmetalle auf den spez. elektrischen Widerstand p of platinum von Platin (Degussa)</caption>]]
</figure>
<figure id="fig:Influence_of_1-20_atom%_of_different_additive_metals_on_the_electrical_resistivit_ p_of_platinum">
[[File:Influence of palladium.jpg|left|thumb|<caption>Influence of Einfluss von 1-22 atomAtom-% of different additive metals on the electrical resistivity verschiedener Zusatzmetalle auf den spezifischen elektrischen Widerstand p of palladiumvon Palladium (Degussa)</caption>]]
</figure>
<figure id="fig:Phase_diagram_of_platinum-iridium">
[[File:Phase diagram of platinum iridium.jpg|left|thumb|<caption>Fig. 2.27:Phase diagram of platinumZustandsdiagramm von Platin-iridiumIridium</caption>]]
</figure>
<figure id="fig:Phase_diagram_of_platinum-nickel">
[[File:Phase diagram of platinum nickel.jpg|left|thumb|<caption>Fig. 2.28:Phase diagram of platinumZustandsdiagramm von Platin-nickelNickel</caption>]]
</figure>
<figure id="fig:Phase_diagram_of_platinum-tungsten">
[[File:Phase diagram of palladium copper.jpg|left|thumb|<caption>Fig. 2.29:Phase diagram of platinumZustandsdiagramm von Platin-tungstenWolfram</caption>]]
</figure>
<figure id="fig:Phase_diagram_of_platinum-copper">
[[File:Phase diagram of palladium copper2.jpg|left|thumb|<caption>Fig. 2.30: Phase diagram of palladiumZustandsdiagramm von Palladium-copperKupfer</caption>]]
</figure>
<figure id="fig:Strain_hardening_of_Pt_by_cold_working">
[[File:Strain hardening of Pt by cold working.jpg|left|thumb|<caption>Fig. 2.31: Strain hardening of Verfestigungsverhalten von Pt by cold workingdurch Kaltumformung</caption>]]
</figure>
<figure id="fig:Softening_of_Pt_after_annealing_for_0.5_hrs_after_80%_cold_working">
[[File:Softening of Pt after annealing.jpg|left|thumb|<caption>Fig. 2.32: Softening of Erweichungsverhalten von Pt after annealing for nach 0.5 hrs after ,5h Glühdauer und einer Kaltumformung von 80% cold working</caption>]]
</figure>
<figure id="fig:Strain_hardening_of_PtIr5_by_cold_working">
[[File:Strain hardening of PtIr5 by cold working.jpg|left|thumb|<caption>Fig. 2.33: Strain hardening of Verfestigungsverhalten von PtIr5 by cold workingdurch Kaltumformung</caption>]]
</figure>
<figure id="fig:Softening_of_PtIr5_after_annealing_for_1_hr_after_different degrees_of_cold_working">
[[File:Softening of PtIr5 after annealing.jpg|left|thumb|<caption>Fig. 2.34: Softening of Erweichungsverhalten von PtIr5 after annealing for 1 hr after different degrees of cold workingnach 1h Glühdauer mit unterschiedlicher Kaltumformung</caption>]]
</figure>
<figure id="fig:Strain_hardening_of_PtNi8_by_cold_working">
[[File:Strain hardening of PtNi8 by cold working.jpg|left|thumb|<caption>Fig. 2.35: Strain hardening of Verfestigungsverhalten von PtNi8 by cold workingdurch Kaltumformung</caption>]]
</figure>
<figure id="fig:Softening_of_PtNi8_after_annealing_for_1_hr_after_80%_cold_working">
[[File:Softening of PtNi8 after annealing.jpg|left|thumb|<caption>Fig. 2.36: Softening of Erweichungsverhalten von PtNi8 after annealing for 1 hr after nach 1h Glühdauer und einer Kaltumformung von 80% cold working</caption>]]
</figure>
<figure id="fig:Strain_hardening_of_PtW5_by_cold_working">
[[File:Strain hardening of PtW5 by cold working.jpg|left|thumb|<caption>Fig. 2.37: Strain hardening of Verfestigungsverhalten von PtW5 by cold workingdurch Kaltumformung</caption>]]
</figure>
<figure id="fig:Softening_of_PtW5_after_annealing_for_1_hr_after_80%_cold_working">
[[File:Softening of PtW5 after annealing.jpg|left|thumb|<caption>Fig. 2.38: Softening of Erweichungsverhalten von PtW5 after annealing for 1 hr after nach 1h Glühdauer und einer Kaltumformung von 80% cold working</caption>]]
</figure>
<figure id="fig:Strain_hardening_of_Pd_99.99_by_cold_working">
[[File:Strain hardening of Pd-99 99by cold working.jpg|left|thumb|<caption>Fig. 2.39: Strain hardening of Verfestigungsverhalten von Pd 99.,99 by cold workingdurch Kaltumformung</caption>]]
</figure>
<figure id="fig:Strain_hardening_of_PdCu15_by_cold_working">
[[File:Strain hardening of PdCu15 by cold working.jpg|left|thumb|<caption>Fig. 2.40: Strain hardening of Verfestigungsverhalten von PdCu15 by cold workingdurch Kaltumformung</caption>]]
</figure>
<figure id="fig:Softening_of_PdCu15_after_annealing_for_0.5_hrs">
[[File:Softening of PdCu15 after annealing.jpg|left|thumb|<caption>Softening of Erweichungsverhalten von PdCu15 after annealing for nach 0.5 hrs,5h Glühdauer und einer Kaltumformung von 80%</caption>]]
</figure>
<figure id="fig:Strain_hardening_of_PdCu40_by_cold_working">
[[File:Strain hardening of PdCu40 by cold working.jpg|left|thumb|<caption>Strain hardening of Verfestigungsverhalten von PdCu40 by cold workingdurch Kaltumformung</caption>]]
</figure>
<figure id="fig:Softening_of_PdCu40_after_annealing_for_0.5_hrs_after_80%_cold_working">
[[File:Softening of PdCu40 after annealing.jpg|left|thumb|<caption>Softening of Erweichungsverhalten von PdCu40 after annealing for nach 0.5 hrs after ,5h Glühdauer und einer Kaltumformung von 80% cold working</caption>]]
</figure>
<figure id="fig:Electrical_resistivity_p_of_PdCu_alloys">
[[File:Electrical resistivity p of PdCu alloys.jpg|left|thumb|<caption>Electrical resistivity Spez. elektrischer Widerstand p of von PdCu alloys with and without an annealing step for forming an ordered phase-Legierungen ohne und mit einer Glühbehandlung zur Ausbildung einer geordneten Phase</caption>]]
</figure>

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