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Microstructure evolution during tempering of martensite in a medium-C steel

机译:中型钢马氏体回火过程中的微观结构演变

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To identify the characteristic microstructural length determining the mechanical properties of a quenched and tempered medium-C steel and its dependence on the prior austenite grain size, different tempering treatments have been carried out after a fully martensitic quenching. The resulting microstructures have been analyzed by Orientation Imaging Microscopy (OIM) and two kind of features have been taken into consideration: packets (i.e. domains delimited by high-angle boundaries) and cells (domains bounded by low-angle grain boundaries). The main results can be summarized as follows: 1. A very weak effect of austenite grain size on packet size was found. 2. A finer packet size was measured at mid-thickness with respect to surface after external and internal water quenching process. This phenomenon was attributed to the effect of the strain path on the phase transformation during quenching. 3. The through-thickness microstructural gradient remains substantially unchanged after tempering. 4. Grains with high-angle boundaries do not significantly grow after tempering; on the contrary, low-angle grain boundaries move, fully justifying the hardness evolution with the tempering temperature.
机译:为了鉴定确定淬火和回火培养基-C钢的机械性能的特征微观结构长度及其对先前奥氏体晶粒尺寸的依赖性,在全马氏体淬火后已经进行了不同的回火处理。通过取向成像显微镜(OIM)分析所得到的微结构,并考虑了两种特征:分组(即由高角度边界限定的域)和细胞(由低角度晶界界定的域)。主要结果可以概括如下:1。发现奥氏体粒度对包裹尺寸的影响非常弱。 2.在外部和内部水淬火过程之后的表面和内部水淬火过程中,在中间厚度下测量更细的分组尺寸。这种现象归因于应变路径在淬火期间相变对相变的影响。 3.回火后贯穿厚度微结构梯度基本保持基本不变。高角度边界的谷物在回火后不会显着生长;相反,低角度晶界移动,充分证明了硬度进化与回火温度。

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