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STUDY OF CREEP DAMAGE IN CREEP EXPOSED MARTENSITIC HIGH CHROMIUM STEEL WELDMENTS

机译:蠕变暴露马氏体高铬钢焊蠕变损伤研究

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Precipitation, grain-boundary and sub-boundary hardening are the most important strengthening mechanisms in creep resistant martensitic high chromium steels. In recent years, a design concept for the stabilisation of the microstructure (precipitates, grain boundaries and martensitic lath structure) by addition of boron and nitrides was developed. This so called MARBN steel (MARtensitic steel strengthened by Boron and Nitrogen) combines boron strengthening (solid solution strengthening) with nitride strengthening (precipitation strengthening). Welding trials showed no uniform formation of a fine grained region in the heat affected zone HAZ, which is considered critical for creep strength due to Type IV cracking. First creep test results of crosswelds are very promising. In this work, an improved MARBN steel was developed and investigated. Uniaxial creep tests of base material as well as of welded joints have been carried out at 650°C up to 25.000 hours at different stress levels. The creep strength of base material and that of welded joints was analysed and the evolution of damage was investigated using synchrotron micro-tomography and electron back scatter diffraction in order to understand the creep damage mechanism. The combination of long-term creep testing data with a 3-D damage investigation by using synchrotron μCT allows a completely new view on the basic failure mechanisms at elevated temperatures in the heat affected zone of welded joints.
机译:沉淀,晶界和亚边界硬化是抗蠕变马氏体高铬钢中最重要的强化机制。近年来,开发了通过添加硼和氮化物稳定微观结构(沉淀物,晶状体和马氏体Lath结构)的设计理念。这样,所谓的马巴钢(由硼和氮气强化的马氏体钢)将硼强化(固溶强化)与氮化物强化(沉淀强化)结合在一起。焊接试验表明在热影响区HAZ,这被认为是对蠕变强度临界由于IV型裂化没有均匀地形成细晶区的。第一个Crosswelds的蠕变测试结果非常有前途。在这项工作中,开发并调查了一种改进的MARBN钢。基材以及焊接接头的单轴蠕变试验在不同的应力水平下在650℃下进行650℃,高达25.000小时。分析了基材的蠕变强度和焊接接头的蠕变强度,并使用同步微型层析术和电子背散射衍射研究了损坏的演变,以了解蠕变损伤机制。使用Synchrotronμct的长期蠕变测试数据的组合具有3-D损伤调查允许在焊接接头热影响区域的升高温度下的基本故障机制上进行全新。

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