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Improvement of Corrosion Resistance of Alloy 600 by Utilizing Recrystallization

机译:利用再结晶改善合金600的耐腐蚀性

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Intergranular corrosion (IGC) of the recrystallized Alloy 600 containing 0.06 percent C has been investigated. Cold rolled Alloy 600 was recrystallized by electric furnace heating or by YAG (Yttrium-Aluminum-Garnet) laser irradiation. The IGC resistance was evaluated by Streicher test (JIS G 0572). It was observed that the cold rolled Alloy 600 of 45 to 75 percent are occupied by the recrystallized grains after the electric furnace heating at 800 to 900 deg C. The reycrystallized Alloy 600 is excellent in IGC resistance, because of the granular Cr-rich carbides distribution in the recrystallized grains. It was shown that the surface recrystallized layer of about 300 to 800 #mu#m thickness can he easily formed on the cold rolled Alloy 600 by the 900 W YAG laser irradiation. The IGC resistance of the surface recrystallized Alloy 600 is also excellent, except the excessive laser irradiation.
机译:研究了含有0.06%C的再结晶合金600的晶间腐蚀(IGC)。 冷轧合金600通过电炉加热或通过YAG(钇 - 铝 - 石榴石)激光辐射重结晶。 通过间歇性试验评估IGC电阻(JIS G 0572)。 观察到,在800至900℃的电炉加热之后,将冷轧合金600含量为45至75%的再结晶晶粒。由于颗粒状的Cr富含碳化物,再融合合金600具有优异的IGC抗性优异 分布在重结晶颗粒中。 结果表明,通过900W YAG激光照射,可以在冷轧合金600上容易地形成约300至800-800#Mu#M厚度的表面重结晶层。 除了过量的激光照射之外,表面再结晶合金600的IGC电阻也是优异的。

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