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Diagnostics of the bainite transformation mechanism and the effect of normalizing and tempering on the hardness and microstructure of the new Cr-Mo-V-Ti steel for operation at elevated temperature

机译:贝氏体相变机理的诊断以及正火和回火对新型Cr-Mo-V-Ti高温工作钢的硬度和组织的影响

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The Cr-Mo-V-Ti based low alloy steels are widely used in thermal power plants because of their ability to withstand elevated temperatures and high pressure under continuous service. In the present work conventional heat treatment like normalizing and tempering of the alloys has been performed. The material used in this study was the laboratory prepared experimental low alloy Cr-Mo-V-Ti steel. Samples were austenitized at 980oC for 0.5 hour air cooled and tempered at 500, 550, 600, 650, 700 and 750oC for 1 hour. Mechanism of bainite transformation has been studied in Fe-C-Cr-Mo-V-Ti steel using high speed dilatometry. These experimental data indicate that bainitic ferrite forms by a displacive transformation mechanism, but soon afterwards, excess of carbon is partitioned into the residual austenite. The changes observed in the microstructure of the steel tempered at the higher temperature, i.e. 750°C were more advanced than those observed at the temperature of 500°C. Performed microstructural investigations have shown that the degradation of the microstructure of the examined steel was mostly connected with the processes of recovery and polygonization of the matrix, disappearance of lath bainitic microstructure and the growth of the carbides. The magnitude of these changes depended on the temperature of tempering.
机译:Cr-Mo-V-Ti基低合金钢由于在连续使用中能够承受高温和高压,因此被广泛用于火力发电厂。在本工作中,已经进行了常规热处理,例如对合金进行正火和回火。本研究中使用的材料是实验室准备的实验性低合金Cr-Mo-V-Ti钢。将样品在980oC下奥氏体化0.5小时,然后风冷,然后在500、550、600、650、700和750oC下回火1小时。使用高速膨胀法研究了Fe-C-Cr-Mo-V-Ti钢中的贝氏体转变机理。这些实验数据表明,贝氏体铁素体是通过置换相变机制形成的,但不久之后,过量的碳被分配到残余奥氏体中。与在500℃的温度下观察到的相比,在较高的温度(即750℃)下回火的钢的显微组织中观察到的变化更先进。进行的微结构研究表明,被检查钢的组织退化主要与基体的恢复和多边形化,板条贝氏体组织的消失以及碳化物的生长有关。这些变化的幅度取决于回火温度。

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