Introduction to Fe Cr Alloy
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In this study, firstly molecular dynamics simulations are conducted to study how Cr concentration affects the formation probability of loops from overlapping cascades on a pre-existing ½ loop in a series of Fe-Cr alloys with 0 – 15%Cr at 300 K using a concentration-dependent interatomic potential.
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Even organs are being medically substituted with different types of metals such as mild steel, carbon steel, Ni-Cr alloy, Fe-Cr alloy, 22 carat Gold,24 carat Gold Tin, etc.
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This article reviews mechanical alloying or ball-milling of (NC) powders of Fe-Cr alloys of different compositions, and the remarkable oxidation resistance of the NC alloy.
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To better understand the atomistic mechanism of surface oxide film formed on Fe-Cr alloy, the initial wet oxidation process on Fe-Cr alloy surface was investigated using ReaxFF molecular dynamic simulations.
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Using density-functional theory, we determine the generalized stacking fault energy (GSFE) for the { 1 1 ¯ 2 } 〈 1 ¯ 11 〉 twinning system in ferromagnetic (FM) body-centered cubic Fe and Fe-Cr alloys with molar fraction of Cr ≤ 0.
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This novel technique is applied for the diffusion in Fe-Cr alloy as a representative substitutional alloy.
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However, one anomaly that has intrigued researchers for more than 50 years is the proportion of two types of dislocation loops in Fe and Fe-Cr alloys with Burger vectors b=½ and b=.
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The formation of Fe-Cr alloy phase was analyzed using X_Ray Diffraction (XRD) technique to improve the synthesis process of the Oxide Dispersion Strengthened (ODS) steel.
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Ferritic Fe-Cr alloy is one of the most important metallic interconnect material for the solid oxide fuel cells (SOFCs).
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5 MeV He2+ ions) were used to quantify the cavity swelling behavior in ultra-high purity Fe and Fe-Cr alloys (3-14 wt.
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Using transmission electron microscopy, we reveal that helium can drastically modify the dislocation loop Burgers vector in Fe-Cr alloys.
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For Fe-Cr alloys, the experimental and calculated values of etch rate are very similar.
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Using transmission electron microscopy, we reveal that helium can drastically modify the dislocation loop Burgers vector in Fe-Cr alloys.
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In the present work, the orientation characteristics of residual grains during hot deformation of an age-hardening Ni-Fe-Cr alloy (Alloy 925) at different conditions were systematically analyzed through high-resolution electron back-scatter diffraction.
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Classical and quantum calculations were performed in characterizing the interstitials transport parameters in the bulk of a diluted Fe Cr alloy and, in the Σ 5 symmetric tilt grain boundary (GB) structure.
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BZCY ceramics are sintered at 1450 °C in reducing environment alone and supported on Fe Cr alloy metal support, and key characteristics such as Ba loss, sintering behavior, and chemical compatibility with metal support are determined.
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The average migration barrier for C diffusion in Fe Cr alloys is found to increase progressively with the Cr concentration, with a small rate below 6 %Cr.
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