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Segregation passivation makes cost-effective stainless steel resistant to corrosion and hydrogen embrittlement. [PDF]
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Metal Science and Heat Treatment, 1967
1. Low-carbon steel 10G2S1D is characterized by low stability of supercooled austenite and low hardenability. 2. The optimum heat treatment is quenching from 960–980°C, with soaking 1.5 min per mm of thickness, and tempering at 660–680°C, with soaking 4–5 min per mm of thickness, and cooling in water or in air.
A. E. Zakharov +5 more
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1. Low-carbon steel 10G2S1D is characterized by low stability of supercooled austenite and low hardenability. 2. The optimum heat treatment is quenching from 960–980°C, with soaking 1.5 min per mm of thickness, and tempering at 660–680°C, with soaking 4–5 min per mm of thickness, and cooling in water or in air.
A. E. Zakharov +5 more
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High-Strength, Low-Alloy Steels
Science, 1980High-strength, low-alloy (HSLA) steels have nearly the same composition as plain carbon steels. However, they are up to twice as strong and their greater load-bearing capacity allows engineering use in lighter sections. Their high strength is derived from a combination of grain refinement; precipitation strengthening due to minor additions of vanadium,
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Tolerances Low-Alloy Steel Bars
2017<div class="section abstract"> <div class="htmlview paragraph">This specification covers established inch/pound manufacturing tolerances applicable to low-alloy steel bars ordered to inch/pound dimensions. These tolerances apply to all conditions, unless otherwise noted.
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Aero Steels: Part 1—Low Alloy Steels
2016This chapter demonstrates the objectives of adding alloying elements to steel through their effects on microstructure and consequent improvements in mechanical properties. Classifications and designations followed by different international standards are briefly outlined. The development of medium carbon low alloy steels used for aerospace applications
K. P. Balan, A. Venugopal Reddy
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