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Hot Cracking of Ni-Cr-Fe Alloys: Test Methods and Metallurgical Effect
Sangwoo Nam, Cheolhee Kim, Young-Min Kim
JWJ. 2017;35(5):7-15.   Published online 2017 October 24    DOI:

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Hot Cracking of Ni-Cr-Fe Alloys: Test Methods and Metallurgical Effect
Journal of Welding and Joining. 2017;35(5):7-15   Crossref logo
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The low temperature magnetic properties of austenitic FeCrNi alloys. 3. The effect of chromium concentration in FeCr-17wt% Ni alloys
Cryogenics. 1981;21(12):729-733   Crossref logo
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The effect of grain boundary chemistry on Intergranular stress corrosion cracking of Ni-Cr-Fe alloys in 50 Pct NaOH at 140 °C
Metallurgical Transactions A. 1992;23(10):2887-2904   Crossref logo
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Growth kinetics of passive films on Fe, FeNi, FeCr, FeCrNi alloys
Electrochimica Acta. 1971;16(11):1895-1907   Crossref logo
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Phase Stability in the Fe-Rich Fe-Cr-Ni-Zr Alloys
Metallurgical and Materials Transactions A. 2017;48(10):5009-5016   Crossref logo
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Pitting corrosion on FeCr and FeCrNi alloys
Corrosion Science. 1969;9(7):455-470   Crossref logo
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The strengthening effect of (Ni,Fe)Al precipitates on the mechanical properties at high temperatures of ferritic Fe–Al–Ni–Cr alloys
Intermetallics. 2005;13(12):1263-1268   Crossref logo
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Studies of “sluggish diffusion” effect in Co-Cr-Fe-Mn-Ni, Co-Cr-Fe-Ni and Co-Fe-Mn-Ni high entropy alloys; determination of tracer diffusivities by combinatorial approach
Journal of Alloys and Compounds. 2018;731:920-928   Crossref logo
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The influence of nitrogen, phosphorus, sulphur and nickel on the stress corrosion cracking of austenitic FeNiCr alloys
Corrosion Science. 1985;25(8-9):815-819   Crossref logo
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Austenitic Cr-Fe-Ni alloys resistant to stress corrosion cracking in magnesium chloride
Acta Metallurgica. 1957;5(8):473-475   Crossref logo
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