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Compensative alloying of Cr–Si low-alloyed steels

Materials Science and Engineering: A, 2010
Abstract The principle of choosing alloy elements in order to suppress the embrittlement of solid solution strengthening is proposed. In the case of Cr–Si low-alloyed steels, the effects of compensative alloying are studied. The ultimate tensile strength and impact toughness of Cr–Si steels microalloyed with Mo, V, and Ti are determined to prove the ...
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Low-Alloy Steels

2019
Tim Williams, Randy Nanstad
openaire   +2 more sources

Identifying facile material descriptors for Charpy impact toughness in low-alloy steel via machine learning

Journal of Materials Science and Technology, 2023
Shuize Wang, Guilin Wu, Junheng Gao
exaly  

Distinct beneficial effect of Sn on the corrosion resistance of Cr–Mo low alloy steel

Journal of Materials Science and Technology, 2021
Meihui Sun, Xiaojia Yang, Cuiwei Du
exaly  

LOW ALLOY STEEL

1969
J. WOOLMAN, R.A. MOTTRAM
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Low-alloy Steels

1994
J.C. HUDSON   +2 more
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Low-Alloy Steels

1976
J.C. HUDSON, J.F. STANNERS
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Corrosion of Carbon Steel and Low-Alloy Steel Weldments

2006
Abstract Carbon and low-alloy steels are the most frequently welded metallic materials, and much of the welding metallurgy research has focused on this class of materials. Key metallurgical factors of interest include an understanding of the solidification of welds, microstructure of the weld and heat-affected zone (HAZ), solid-state ...
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Low-alloy steels for bolts

Metal Science and Heat Treatment, 1979
Ya. Koutski, R. Pokornyi, V. Vanechek
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Low alloy tool steels

Metal Science and Heat Treatment of Metals, 1959
Yu. A. Geller, Ts. L. Olesova
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