Detailseite
Kristallographisch kompatible keramische Formengedächtniswerkstoffe
Antragsteller
Professor Dr.-Ing. Eckhard Quandt
Fachliche Zuordnung
Herstellung und Eigenschaften von Funktionsmaterialien
Förderung
Förderung von 2016 bis 2021
Projektkennung
Deutsche Forschungsgemeinschaft (DFG) - Projektnummer 313454214
Zusammenfassung der Projektergebnisse
Keine Zusammenfassung vorhanden
Projektbezogene Publikationen (Auswahl)
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Phase engineering and supercompatibility of shape memory alloys, Materials Today (2018), 21(3), 265–277
Gu, H.; Bumke, L.; Chluba, C.; Quandt, E.; James, R.D.
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Power-Source-Free Analysis of Pyroelectric Energy Conversion, Physical Review Applied (2019), 12(1), 014063
Zhang, C.; Song, Y.; Wegner, M.; Quandt, E.; Chen, X.
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Suppression of abnormal grain growth in K0.5Na0.5NbO3: phase transitions and compatibility, Scientific Reports (2019), 9(1), 19775
Pop-Ghe, P.; Stock, N.; Quandt, E.
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Tuning crystallographic compatibility to enhance shape memory in ceramics, Physical Review Materials (2019), 3(9), 093603
Jetter, J.; Gu, H.; Zhang, H.; Wuttig, M.; Chen, X.; Greer, J.R.; James, R.D.; Quandt, E.
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Correlation between phase compatibility and efficient energy conversion in Zr-doped Barium Titanate, Scientific Reports (2020), 10(1), 3496
Wegner, M.; Gu, H.; James, R.D.; Quandt, E.
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Direct observation of intermediate twinning in the phase transformations of ferroelectric potassium sodium niobate, Ceramics International (2021), 47(14), 20579–20585
Pop-Ghe, P.; Amundsen, M.; Zamponi, C.; Gunnæs, A.; Quandt, E.
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Exploding and weeping ceramics, Nature (2021), 599(7885), 416–420
Gu, H.; Rohmer, J.; Jetter, J.; Lotnyk, A.; Kienle, L.; Quandt, E.; James, R.D.
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Fabrication of stable monoclinic zirconiabased ceramics, Ceramics International (2021), 47(6), 8692–8696
Jetter, J.; Rohmer, J.; Wegner, M.; Quandt, E.
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Size-dependence of zirconia-based ceramics via deformation twinning, Extreme Mechanics Letters (2021), 42, 101124
Zhang, H.; Gu, H.; Jetter, J.; Quandt, E.; James, R.D.; Greer, J.R.
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Tailoring growth modes by excess alkali addition in magnetron sputtered potassium sodium niobate thin films, Materials Today Communications (2021), 27, 102221
Pop-Ghe, P.; Wolff, N.; Rubab, A.; Kienle, L.; Quandt, E.