Suppr超能文献

温成形对中碳低合金钢强度和韧性的影响。

Effect of Tempforming on Strength and Toughness of Medium-Carbon Low-Alloy Steel.

作者信息

Yuzbekova Diana, Dudko Valeriy, Pydrin Alexander, Gaidar Sergey, Mironov Sergey, Kaibyshev Rustam

机构信息

Laboratory of Advanced Steels for Agricultural Machinery, Russian State Agrarian University-Moscow Timiryazev Agricultural Academy, 127550 Moscow, Russia.

Laboratory of Mechanical Properties of Nanostructured Materials and Superalloys, Belgorod State National Research University, 308015 Belgorod, Russia.

出版信息

Materials (Basel). 2023 Jan 31;16(3):1202. doi: 10.3390/ma16031202.

Abstract

The effect of tempforming on the strength and fracture toughness of 0.4%C-2%Si-1%Cr-1%Mo-VNb steel was examined. Plate rolling followed by tempering at the same temperature of 600 °C increases yield stress by 25% and the Charpy V-notch impact energy by a factor of ~10. Increasing rolling reduction leads to the reorientation and elongation of grains toward the rolling direction (RD) and the development of a strong {001} <110> (rotated cube) texture component that highly enhances fracture toughness. A lamellar structure with a spacing of 72 nm between boundaries and a lattice dislocation density of ~10 m evolves after tempforming at 600 °C with a total strain of 1.4. Two types of delamination were found, attributed to crack branching and the propagation of secondary cracks along the rolling plane perpendicular to the propagation direction of the primary crack. Delamination toughness is associated with the nucleation of secondary cracks in RD and their propagation over a large distance. The critical condition for delamination toughness is the propagation of primary cracks by the ductile fracture mechanism and the propagation of secondary cracks by the brittle quasi-cleavage mechanism.

摘要

研究了热加工对0.4%C-2%Si-1%Cr-1%Mo-VNb钢强度和断裂韧性的影响。在600°C的相同温度下进行中厚板轧制后回火,屈服应力提高了25%,夏比V型缺口冲击能量提高了约10倍。轧制压下率的增加导致晶粒向轧制方向(RD)重新取向并伸长,并形成强烈的{001}<110>(旋转立方)织构组分,这极大地提高了断裂韧性。在600°C下进行总应变为1.4的热加工后,形成了一种层状结构,其晶界间距为72nm,晶格位错密度约为10 m。发现了两种类型的分层,这归因于裂纹分支以及二次裂纹沿垂直于主裂纹扩展方向的轧制平面的扩展。分层韧性与RD中二次裂纹的形核及其在较大距离上的扩展有关。分层韧性的临界条件是主裂纹通过韧性断裂机制扩展,二次裂纹通过脆性准解理机制扩展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8216/9921759/5771343564f4/materials-16-01202-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验