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Investigation of Formation Features of Sulphide Inclusions and Their Distribution Inside the Grain Depending Upon the Conditions of Steel 20 Deoxidation

机译:硫化物夹杂物形成特征及其在晶粒内部分布的研究,取决于钢20脱氧条件

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The paper reports laboratory test findings on the impact of steel oxidation level on distribution features of non-metallic inclusions in low-alloyed structural steels. An analysis of the effect of various oxidation methods of steel on the distribution and formation of non-metallic inclusions is made. The results reveal a relation between the amount of sulphide and oxisulphide inclusions formed and steel oxidation level. The release of oxisulphide from the melt is accompanied with a decrease in the amount of both oxygen and sulphur. After oxygen content has achieved an equilibrium value, only “pure” sulphides are formed, which may deteriorate steel plastic properties. Thus, sulphides start precipitating only when oxygen content in the melt falls to a very low value. An increase in the amount of oxysulphides is accompanied with a decrease in sulphur concentration in the melt which reduces sulphide phase concentration at grain boundaries and stabilizes plastic properties. Thus the negative effect of sulphur can be reduced not only by decreasing its content in steel through expensive secondary steelmaking methods but also by controling the amount, shape and types of oxide, sulphide and oxisulphide inclusions in steel.
机译:本文报告了实验室测试结果对钢氧化水平对低合金结构钢的非金属夹杂物分布特征的影响。制造了各种氧化方法对非金属夹杂物分布和形成的各种氧化方法的影响。结果揭示了形成的硫化物和氧化硫化物夹杂物的关系和钢氧化水平。来自熔体的氧化硫化物的释放伴随着氧气和硫的量减少。氧含量达到平衡值后,形成“纯”硫化物,这可能劣化钢塑性。因此,硫化物只有当熔体中的氧含量落到非常低的值时才开始沉淀。氧化硫化物量的增加伴随着熔体中的硫浓度的降低,这减少了晶界处的硫化物相浓度并稳定塑料性能。因此,通过昂贵的二级炼钢方法将其含量降低,而且还可以通过昂贵的二级炼钢方法降低其钢中的含量,而是通过控制钢中的氧化物,硫化物和氧化含水剂的含量的含量来降低硫的负面影响。

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