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Investigations on the impact strength of constructional high-strength Weldox steel at lowered temperature

机译:低温下建筑用高强度Weldox钢的冲击强度研究

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Purpose: The paper presents the results of investigations concerning the impact strength of thick steel plates at lowered temperature obtained by industrial smelting of micro-alloyed steel of the type S1100QL (Weldox 1100) and S1300QL (Weldox 1300) with a yield strength of 1100-1300 MPa.Design/methodology/approach: The main methods used for these researches were the impact test Charpy V at lower temperatures, and metallographic observations. The tested samples at lower temperature have also been analyzed fractographically.Findings: The influence of the chemical composition and technology of production on the structure and mechanical properties of the investigated kinds of steels have been determined, as well as their ductility temperature of transition into the brittle state.Research limitations/implications: A large dispersion of intermetallic precipitated phases restricted considerably the possibility of their metallographic identification. This latter one will be done in the next stage of basic investigations.Practical implications: A wide range of practical applications of Weldox 1100 and Weldox 1300 sheet plates is warranted by both their high impact strength, especially at lower temperatures, and lower ductility transition temperature.Originality/value: It has been found that the degree of refinement of the martensitic structure and dispersion of secondary precipitations, mainly carbides and niobium nitrocarbides affect considerably the change of the impact strength within the investigated range of temperature from ambient temperature to minus 150°C
机译:目的:本文介绍了通过在工业上冶炼屈服强度为1100-S的S1100QL(Weldox 1100)和S1300QL(Weldox 1300)型微合金钢获得的厚钢板在较低温度下的冲击强度的研究结果。 1300 MPa设计/方法/方法:用于这些研究的主要方法是在较低温度下进行的冲击试验Charpy V和金相观察。结果:确定了化学成分和生产工艺对所研究钢材的结构和力学性能的影响,以及确定了它们转变为碳钢时的延性温度。研究的局限性/意义:金属间沉淀相的大量分散极大地限制了其金相鉴定的可能性。后者将在下一阶段的基础研究中完成。实际意义:高冲击强度,尤其是在较低的温度和较低的延性转变温度下,保证了Weldox 1100和Weldox 1300板材的广泛实际应用。原始值/值:已经发现,马氏体组织的细化程度和二次析出物(主要是碳化物和氮碳化铌)的分散程度会在所研究的温度范围(从环境温度到负150°)内显着影响冲击强度的变化。 C

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