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首页> 外文期刊>Practical Metallography >The Effect of Loading during Martensitic Transformation of a Maraging Steel after Prior Austenite Grain Size Refinement by Thermal Cycling
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The Effect of Loading during Martensitic Transformation of a Maraging Steel after Prior Austenite Grain Size Refinement by Thermal Cycling

机译:热循环后奥氏体晶粒尺寸细化后奥氏体晶粒尺寸后的马氏体转化期间的效果

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摘要

This work demonstrates the efficiency of microstructural tuning by external loading during the martensitic phase transformation of a 12Cr-9Ni-2Mo-0.7Al-0.35Ti maraging steel. Additional prior austenite grain size refinement is achieved by thermal cycling yielding industrially relevant grain sizes, for which not the full set of all 24 characteristic Kurdjumov-Sachs orientation relation variants of martensite is obtained within each grain. For the last thermal cycle three different cases are investigated: i) one specimen is annealed at a higher temperature before the last cooling, ii) one specimen is loaded with a tensile stress of 120 MPa and iii) one specimen with an equivalent 120 MPa Mises stress in torsion during the transformation. This study is one of the first combining the effects of a small grain size, a high dislocation density and external loadings. Orientation imaging microscopy data is presented, revealing the effect of loading type during transformation on the final texture and interface/boundary character.
机译:该作品通过12Cr-9Ni-2MO-0.7AL-0.35TI乘积钢的马氏体相变期间通过外部加载来展示通过外部加载的微观结构调节的效率。通过热循环获得工业上相关的晶粒尺寸的另外的先前奥氏体晶粒尺寸细化,其中没有全套所有24个特征Kurdjumov-Sach取向关系的马氏体内部。对于最后一种热循环,研究了三种不同的情况:i)在最后冷却前的较高温度下,一试,II)一种样品在较高的温度下退火,其中一个样品加载120MPa和III)一个标本,其具有等同的120MPa缺陷转型期间扭转的压力。该研究是第一组合小粒度,高位脱位密度和外部载荷的效果之一。提出了取向成像显微镜数据,揭示了在最终纹理和接口/边界字符上变换过程中加载类型的效果。

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