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Structure, Mechanical Properties and Fracture Surface Features of Structural Steels Subjected to Deformation-Heat Treatment

机译:结构钢的结构,机械性能和断裂表面特征,经受变形热处理的结构钢

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摘要

A comparative study is made of the structure, mechanical properties and crack growth micromechanisms of 09G2S, 25 and 35X steel pipes after different versions of deformation and heat treatment, including cold plastic deformation of highly tempered material by radial forging and subsequent annealing. It is established that the maximum strength of the test steels is achieved after cold radial forging (CRF) with a degree of deformation of 55% and subsequent annealing at 300 degrees C. It is shown that CRF and annealing at 600 degrees C leads to formation of an ultra-fine-grained structure as a result of which reliability properties are achieved similar to a highly tempered condition with retention of improved strength properties. Features of the structure are revealed that is formed during CRF. The micromechanism of crack growth after heat and deformation-heat treatment is studied. Analysis is provided for elements of the failure surface after dynamic tests.
机译:比较研究是由09g2s,25和35倍钢管的结构,机械性能和裂纹生长微观,包括径向锻造和随后退火的高钢化材料的冷塑性变形。 建立了在冷径向锻造(CRF)之后实现了测试钢的最大强度,其变形为55%,随后在300摄氏度下进行退火。显示CRF和600℃的退火导致形成 超细颗粒结构的含义,其可靠性特性与高回火条件相似,保留改善的强度特性。 在CRF期间形成的结构的特征。 研究了热和变形热处理后裂纹生长的微观机制。 在动态测试后,为故障表面的元素提供分析。

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