Schlickerbasierte Herstellung von Kugelstrukturen auf Basis von Zirkoniumdioxid und TRIP-Stahl

Springer Science and Business Media LLC - Tập 72 Số 6 - Trang 26-31 - 2020
Marie Oppelt1, C. G. Aneziris1
1Institut für Keramik, Feuerfest und Verbundwerkstoffe, echnische Universität Bergakademie Freiberg, Freiberg, Germany

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Tài liệu tham khảo

Aneziris, C.G., Schärfl, W., Biermann, H., Martin, U.: Energy-Absorbing TRIP-Steel/Mg- PSZ Composite Honeycomb Structures Based on Ceramic Extrusion at Room Temperature. Internat. J. Appl. Ceram. Technol. 6 (2009) 727-735

Augustin, C., Hungerbach, W. in: Multifunctional Metallic Hollow Sphere Structures Engineering Materials. Springer-Verlag, Berlin, Heidelberg (2009) 5-30

Weigelt, C., Aneziris, C.G., Yanina, A., Guk, S.: Ceramic processing for TRIP-steel/Mg-PSZ composite materials for mechanical applications. Steel Res. Internat. 9 (2011) 1080-1086

Rybandt, S., Hohlfeld, J., Andersen, O., Göhler, H., Kaufmann, G., Schulze, C., in: Multifunktionale Leichtbauelemente aus zellularen Werkstoffen für innovatives Bauen. Bauingenieur - Die richtungsweisende Zeitschrift im Bauingenieurwesen, Springer-VDI-Verlag, Band, vol. 88 (2013)

Göhler, H., Waag,U., Stephani, G., Bretschneider, F., Venghaus, H.: Metal hollow sphere structures in sound absorbing applications. in: European Congress and Exhibition on Powder Metallurgy (EURO PM), Valenci (2003)

Quadbeck, P., Kümmel, K., Hauser, R., Standke, G., Adler, J., Stephani, G.: Open cell metal foams - application-oriented structure and material selection. in: International Conference on Cellular Materials (CellMat). Dresden (2010)

Öchsner, A., Fiedler, T., Augustin, C.: Metallic hollow sphere structures - multifunctional materials for lightweight applications: types, properties and case studies, in: Fifth International Conference on Mathematical Modeling and Computer Simulation of Materials Technology. (2008)

Spahr, O., US Patent US 861 403, Method or process of making hollow metal balls. (1906)

Schatz, W., US Patent US1039674 A, Method of making hollow metallic balls. (1912)

Toyo Tokushu Imono Kabushiki Kaisha: Deutsches Reichspatent 694 903 Verfahren und Vorrichtung zum Herstellen metallener Hohlkugeln. (1938)

Jaeckel, M., EU Patent EP0300543 A1, Verfahren zum Herstellen von metallischen oder keramischen Hohlkugeln. 1989

Anderson, O., Waag, K., Schneider, L., Stephani, G., Kieback, B.: Novel metallic hollow sphere structures. Adv. Eng. Mater. 2 (2000) 192-195

Oppelt, M., Wenzel, C., Aneziris, C.G., Berek, H.: Processing and characterization of MMC beads based on zirconia and TRIP steel. Metall. Mater. Trans. B 45 (2014) 2000-2008

Aneziris, C.G., Schärfel, W.: Deutsches Patent DE 10 2007 001 724 A1 Technische Universität Bergakademie Freiberg (2008)

Oppelt M., Aneziris C.G.: Analysis and evaluation of different influencing factors in processing of hollow and full beads by alginate gelation based on zirconia and TRIP steel. J. Alloys Compd. 634 (2015) 43-49

Oppelt, M., Leißner, T., Berek, H., Baumgart, C., Krüger, L., Peuker, U., Aneziris, C.G.: Processing and Characterization of Beads with Graded Layer Compositions Based on Zirconia and TRIP-Steel. Adv. Eng. Mat. 21 (2019) 1-9

Aneziris, C.G., Berek, H., Hasterok, M., Biermann, H., Wolf, S., Krüger, L.: Novel TRIP-steel/Mg-PSZ composite-open cell foam structures for energy absorption. Adv. Eng. Mater. 12 (2010) 197-204

Aneziris, C.G., Schärfl, W., Biermann, H., Martin, U.: Energy-absorbing TRIP-steel/Mg-PSZ composite honeycomb structures based on ceramic extrusion at room temperature. Internat. J. Appl. Ceram. Technol. 6 (2009) 727-735