Unraveling the mechanism of the conversion treatment on Advanced High Strength Stainless Steels (AHSSS)

Author:

Nabizadeh Mohaddese,Mernissi Cherigui El Amine,Marcoen Kristof,Kolberg Thomas,Schatz Daniel,Cruz Alexander John,Ameloot Rob,Terryn Herman,Hauffman Tom

Funder

Vrije Universiteit Brussel

Chemetall

Publisher

Elsevier BV

Subject

Surfaces, Coatings and Films,Condensed Matter Physics,Surfaces and Interfaces,General Physics and Astronomy,General Chemistry

Reference61 articles.

1. G. Badinier, J.B. Moreau, B. Petit, C. Boissy, J.D. Mithieux, S. Saedlou, J. Paegle, Development of press hardening stainless steels for body-in-white application, in: 6th Int. Conf. Hot Steel Met. Form. High-Performance Steel, CHS2 2017- Proc., 2017: pp. 77–84.

2. J.B. Moreau, G. Badinier, P.O. Santacreu, B. Petit, J.D. Mithieux, J. Paegle, Lightweight chassis parts made of MaX1.2HY press hardening stainless steel, 6th Int. Conf. Hot Steel Met. Form. High-Performance Steel, CHS2 2017- Proc. (2017) 611–618.

3. Aperam- Stainless, MaX: Ultra-High Strength Stainless Steel for Lightweight Automotive Applications, (2017). https://www.aperam.com/sites/default/files/documents/2018-05/Aperam_plaquette MaX_0.pdf?template=colorbox (accessed October 19, 2020).

4. The mechanism of thermal oxide film formation on low Cr martensitic stainless steel and its behavior in fluoride-based pickling solution in conversion treatment;Nabizadeh;Corros. Sci.,2021

5. The effect of surface texture on the oxidation behaviour of polycrystalline Fe-Cr;Zijlstra;Appl. Surf. Sci.,2018

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