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Study on the behaviour of DS-Class inclusions in advanced bearing steel

机译:先进轴承钢DS级夹杂物的行为研究

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The source and generated mechanisms of DS-size inclusions in bearing steel were studied by sampling systematically and using ASPEX, SEM and EDS to analyse the morphology, composition and amount of nonmetallic inclusions larger than 13 mu m. Two kinds of typical DS-size inclusions were found in the refining process: type I is CaO-MgO-Al2O3 -SiO2 distributed evenly and wrapped by CaS; type II is composite inclusion with MgO-Al2O3 as the core, CaO-Al2O3 and CaO-SiO2 as the inner layer, covered by CaS. Based on the Fact Sage and thermodynamic calculations, the DS inclusions formation mechanisms were drawn. There are two formation mechanisms of the type II inclusions: one is the solid phases will precipitate from the matrix of type Iinclusions as the temperature drops; another is that when the reaction time is not sufficient, the MgO.Al2O3 spinel core will not be transformed completely, and the evolution can be summarized as: Al2O3 -> MgO-Al2O3 -> CaO-MgO-Al2O3 -> surrounded by CaO-Al2O3 (SiO2) covered by CaS.
机译:通过系统地和使用ASPEX,SEM和EDS来研究轴承钢中DS尺寸夹杂物的源和产生机制,分析了大于13μm的形态,组成和非金属夹杂物的形态。在精炼过程中发现了两种典型的DS尺寸夹杂物:I型是CAO-MgO-Al2O3 -SiO2均匀分布并由CAS包裹; II型是用MgO-Al 2 O 3作为核,CaO-Al 2 O 3和CaO-SiO 2作为内层的复合物包含,由CAS覆盖。基于事实鼠尾草和热力学计算,拉伸DS夹杂物形成机制。 II型夹杂物有两种形成机制:一个是固体相将从型Iinclusions基质中沉淀出来的温度下降;另一个是,当反应时间不足以时,MgO。晶粒芯不会完全转化,并且进化可以概括为:Al 2 O 3 - > MgO-Al2O3 - > CaO-MgO-Al2O3 - >被CaO-包围CAS覆盖的AL2O3(SIO2)。

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