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Colloidal Analysis of Particles Extracted from Microalloyed Steels
Authors:Andreas Hegetschweiler  Aljosha-Rakim Jochem  Anna Zimmermann  Johannes Walter  Thorsten Staudt  Tobias Kraus
Institution:1. INM- Leibniz Institute for New Materials, Campus D2 2, 66123 Saarbrücken, Germany;2. Colloid and Interface Chemistry, Saarland University, Campus D2 2, 66123 Saarbrücken, Germany;3. Institute of Particle Technology (LFG), Friedrich-Alexander-Universität Erlangen-Nürnberg (FAU), Cauerstr. 4, 91058 Erlangen, Germany;4. AG der Dillinger Hüttenwerke, Werkstraße 1, 66763 Dillingen, Germany
Abstract:Different colloidal particle characterization methods are examined for their suitability to determine the particle size distribution of particles extracted from steels. Microalloyed steels are dissolved to extract niobium and titanium carbonitride particles that are important for the mechanical properties of these steels. Such particles have sizes ranging from several nanometers to hundreds of nanometers depending on the precipitation stage during the thermomechanically controlled rolling process. The size distribution of the particles is analyzed by dynamic light scattering (DLS), analytical ultracentrifugation (AUC), and hollow fiber flow field-flow fractionation (HF5) and compared to data obtained for reference particles as well as data from electron microscopy, the standard sizing technique used in metallurgy today. AUC and HF5 provide high-quality size distributions, average over large particle numbers that enables statistical analysis, and yield useful insights for alloy design; however, DLS fails due to a lack of resolution. Important aspects in the conversion and comparison of size distributions obtained for broadly distributed particle systems with different measurement principles and the role of surfactants used in sample preparation are discussed.
Keywords:colloidal analysis  microalloyed steels  niobium carbonitrides  precipitate analysis  titanium carbonitrides
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