Surface roughness after turning the austenitic 08X18H10 steel alloyed with copper and manganese depending on structure and properties formed by the intensive plastic deformation

A. Filippov, N. Shamarin, S. Tarasov, S. Fortuna, V. Utyaganova
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Abstract

Various industries are widely using the austenitic stainless steels, and these steels possess the potential to improve their mechanical properties through alloying and deformation machining. However, such material improvement could also affect the quality of its machine cutting. The paper studies the influence of intensive plastic deformation on structure and properties of the 08X18H10 steel alloyed with copper and manganese, as well as on the quality of its machining in turning under different structural states. It was established that the use of multilateral forging led to formation of a heavily deformed subgrain structure with the high dislocation density in the steel under study, and subsequent rolling caused additional formation of the differently oriented deformation microtwins and packs of nanotwins. These structural alterations contributed to increasing the strength and micro-hardness of the material. Analysis of the machine turned surface relief of the samples showed that using the intensive plastic deformation made it possible to significantly reduce the Ra and Rz roughness parameters compared to those samples not subjected to intensive plastic deformation. It was found that an increase in feed led to the growing micro-hardness of the material thin near-surface layer and to its smoother alteration in depth from the machined surface.
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车削后的奥氏体08X18H10铜锰合金钢的表面粗糙度取决于剧烈塑性变形形成的组织和性能
奥氏体不锈钢被广泛应用于各个工业领域,这些钢具有通过合金化和变形加工来改善其力学性能的潜力。但是,这种材料的改进也会影响其机器切割的质量。研究了强塑性变形对铜锰合金08X18H10钢组织和性能的影响,以及在不同组织状态下对其车削加工质量的影响。结果表明,多边锻造导致所研究钢中形成具有高位错密度的大变形亚晶组织,随后的轧制导致不同取向变形的微孪晶和纳米孪晶的额外形成。这些结构变化有助于提高材料的强度和显微硬度。结果表明,与未进行强塑性变形的样品相比,采用强塑性变形的样品可以显著降低Ra和Rz粗糙度参数。结果表明,随着进给量的增加,材料近表面薄层的显微硬度增加,其深度变化与加工表面相比更加光滑。
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