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The formation and dissolution of residual δ ferrite in ASME Grade 91 steel plates

机译:ASME 91级钢板中残余δ铁素体的形成和溶解

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This paper investigated the relationship between creep strength and the existence of residual 5 ferrite in the initial microstructure in three heats of Grade 91 steel plates and examined the origin, the transformation process and the dissolution of the δ ferrite in the steel plates. The creep strength of the steel specimens was lower when the δ ferrite was present in the initial microstructure. The δ ferrite showed a disk shape and a bumpy interface, and had MX carbonitride particle arrays inside and coarse M_(23)C_6 carbide particles on the bumpy interface. Chromium and molybdenum were found to segregate in/around the δ ferrite disk. The residual δ ferrite dissolved completely after an additional normalizing heat treatment at 1050 ℃ for 30 min. The results obtained strongly indicate that the presence of δ ferrite is due to insufficient normalizing heat treatment time to remove segregation during solidification. The δ ferrite was also found to grow through a diffusional transformation during cooling from the normalizing heat treatment.
机译:本文研究了91级钢板在三炉中的初始组织中蠕变强度与残余5铁素体的存在之间的关系,并研究了δ铁素体在钢板中的起源,转变过程和溶解。当δ铁素体存在于初始组织中时,钢试样的蠕变强度较低。 δ铁素体呈圆盘状和凹凸的界面,内部具有MX的碳氮化物粒子阵列,凹凸的界面具有粗大的M_(23)C_6碳化物粒子。发现铬和钼偏析在δ铁氧体圆盘中/周围。在1050℃进行30分钟的正火热处理后,残余的δ铁氧体完全溶解。获得的结果有力地表明,δ铁素体的存在是由于归一化热处理时间不足以消除凝固过程中的偏析。还发现在正火热处理冷却期间,δ铁素体通过扩散相变生长。

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