Features of formation of austenite grains in 12 % Cr heat-resistant ferritic-martensitic steels

M. Belomyttsev
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Abstract

Ferritic-martensitic heat-resistant high-chromium steels (FMHS) with chromium content of 11 – 12 % are quenched to martensite from temperatures of 1050 – 1100 °С. Possible undesirable consequences of heating to such high temperatures are an increase in the size of austenite grains, increase in the amount of delta ferrite in the final structure, and a decrease in mechanical characteristics. In this work, the change of all these factors during heating of FHMS to quenching temperatures in the range of 950 – 1250 °С was studied. Ratios of the contents of martensite (its amount was identified with the proportion of austenite before quenching) and high-temperature delta ferrite on metallographic sections were analyzed. It was found that behavior of structure of the studied FHMS upon heating to temperatures of 1150 °С and above depends on the steels structural class. In steels whose structure at room temperature consists of martensite and delta ferrite, or in which delta ferrite begins to form at heating temperatures of 1200 °С and higher, size of austenite grain decreases with increasing temperature in the range of 1200 – 1250 °С, and the amount of delta ferrite – increases. Such structural transformations can be associated with features of the phase equilibrium diagrams of steels of this class. Such structural transformations can be associated with a change in the position and (or) inclination of boundaries of the high-temperature region of coexistence of austenite and delta-ferrite in the phase equilibrium diagrams of FHMS at a change in heating temperature in this range. Compression tests at 20 °С of 15Cr12Mn3SiMoW2VB steel samples after heat treatment with heating to temperatures for hardening 1000 – 1250 °С showed that formation of an additional amount of delta ferrite at temperatures above 1200 °С is a stronger factor than the refinement of austenite grains. This causes a decrease in yield strength of the samples quenched from these temperatures followed by high tempering.
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12% Cr耐热铁素体-马氏体钢中奥氏体晶粒的形成特征
铬含量为11 - 12 %的铁素体-马氏体耐热高铬钢(FMHS)在1050 - 1100 °С处淬火为马氏体。加热到如此高的温度可能产生的不良后果是奥氏体晶粒尺寸增大,最终组织中δ铁素体数量增加,机械特性降低。本文研究了FHMS加热至950 ~ 1250 °С范围内淬火温度的变化情况。分析了金相切片上马氏体(其含量以淬火前奥氏体的比例确定)与高温δ铁素体含量的比值。研究发现,在加热到1150 °С及以上温度时,所研究的FHMS的结构行为取决于钢的结构等级。在室温下由马氏体和δ铁素体组成的钢,或在1200 °С及更高温度下开始形成δ铁素体的钢,在1200 - 1250 °С范围内,随着温度的升高,奥氏体晶粒尺寸减小,δ铁素体-的数量增加。这种结构转变可以与这类钢的相平衡图的特征相联系。这种结构转变可能与FHMS相平衡图中奥氏体和δ -铁素体共存高温区域边界的位置和(或)倾角在该范围内加热温度变化有关。15Cr12Mn3SiMoW2VB钢试样在加热到1000 - 1250 °С的硬化温度后,在20 °С的压缩试验表明,在1200 °С以上的温度下,形成额外数量的δ铁素体比奥氏体晶粒细化的影响更大。这导致从这些温度淬火后再进行高回火的样品屈服强度下降。
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