Structure and properties of low-alloy steel 10G2FBYu after rolling in embossed rolls under conditions of electroplasticity

Y. Pochivalov
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Abstract

The article describes the features of grain structure formation and mechanical properties of low-alloy steel 10G2FBYu after rolling in flat and embossed rolls under the conditions of ordinary and electroplastic deformation. When rolling in embossed rolls, a significant non-uniformity of deformation is achieved over the rolling cross-section, expressed in localized macroshifts directed at an angle of 45° to the rolling plane. It is shown that local shear deformation during rolling in embossed rolls leads to an increase in the ultimate strength of the steel under study with a decrease in plasticity of the rolled material. Rolling 10G2FBYu steel in embossed rolls under conditions of electroplasticity provides maximum strength characteristics with a high hardening coefficient at the stage of macrodeformation. At the same time, the plasticity is maintained at a level sufficient for technological purposes. Structural metallographic and electron microscopic studies showed that increase in strength of steel when rolling in embossed rolls under conditions of electroplastic effect is caused by the refinement of ferrite grains to sizes less than 0.5 µm. Fractographic studies revealed changes in the nature of fracture in steel during rolling in embossed rolls, which is expressed in appearance of areas of brittle fracture in the rolled samples. Rolling under conditions of electroplasticity increases the proportion of ductile fracture and ductility of 10G2FBYu steel.
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电塑性条件下压花轧辊轧制后 10G2FBYu 低合金钢的结构和性能
文章介绍了低合金钢 10G2FBYu 在普通变形和电塑性变形条件下,经平轧辊和压花辊轧制后的晶粒结构形成特征和机械性能。在压花轧辊中轧制时,轧制截面上的变形明显不均匀,表现为与轧制平面成 45° 角的局部大变形。研究表明,在压花轧辊中轧制时产生的局部剪切变形会提高所研究钢材的极限强度,同时降低轧制材料的塑性。在电塑性条件下用压花轧辊轧制 10G2FBYu 钢,在宏观变形阶段可获得最大强度特性和较高的硬化系数。同时,塑性保持在足以满足技术要求的水平。结构金相和电子显微镜研究表明,在电塑性效应条件下用压花轧辊轧制钢材时,钢材强度的提高是由于铁素体晶粒细化到 0.5 微米以下造成的。断口研究表明,在压花辊轧制过程中,钢的断口性质发生了变化,表现为轧制样品中出现了脆性断裂区域。电塑性条件下的轧制增加了 10G2FBYu 钢的韧性断裂比例和延展性。
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