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Updated: Jan 13, 2026

Hydrogen Charging of Aluminum using Friction in Water
Published on: January 28, 2020
Diffusion and Critical Hydrogen Content of Carbon Steels with Different Strengths and Microstructures
Dino Zwittnig1, Matthias Eichinger1, Martin Mülleder2
1Chair of General and Analytical Chemistry, Montanuniversitaet Leoben, Franz Josef-Straße 18, 8700 Leoben, Austria.
Abstract:
Four thermomechanically rolled carbon steels with different strength levels and microstructures, namely S355M, X65M, S960M, and S1100M, were selected, and their critical hydrogen contents Hcrit were determined. Hcrit is the hydrogen content where brittle fracture of the steel can occur. The Hcrit values for the four carbon steels are 2.03 (S355M), 0.91 (X65M), 0.32 (S960M), and 0.53 ppm (S1100M). Bainitic carbon steel S1100M outperforms lower-strength tempered martensitic steel S960M in terms of resistance to hydrogen embrittlement. All other steels follow the trend that a higher strength of steel results in a lower resistance to hydrogen embrittlement. The root cause for the beneficial behavior of bainitic steels is discussed.
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