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Properties of quenched and self-tempered reinforcing steel subjected to high temperature and different cooling conditions

机译:高温和不同冷却条件经受淬火和抗冲钢筋的性能

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摘要

Purpose - The study presents test results concerning the impact of high temperature and different cooling conditions on the mechanical properties of quenched and self-tempered reinforcing steel. The purpose of this paper is to clarify the extent of the history of the material's temperature development profile, the course and the intensity of fire exposure and how cooling conditions determines its properties. Design/methodology/approach - Each specimen series was heated to the temperatures of T = 200°C, 400°C, 600°C, 700°C, 800°C and 1,000 °C. The specimens were either slowly cooled down or subjected to rapid cooling with water quenching, which can be encountered during a firefighting operation. Additionally, stress-strain relationships, microhardness and structural observations were also performed. Findings - The results of the presented experiments have shown that the steel bars previously heated in fire conditions were very sensitive to the cooling intensity. The test results from the steel specimens - that were heated and quenched with water - demonstrate an increase in tensile strength but a significant reduction in material plasticity. Originality/value - The presented piece of work provides a contribution for fire safety engineering giving insight into the fire behaviour of reinforcing steel under fire conditions and subjected to rapid or slow cooling. This study has shown the threats arising from thermally induced changes in steel microstructure because of high-temperature exposure. It should also be noted that structure changes may have a local character and refer to steel rebars that are exposed because of fire spalling of concrete cover.
机译:目的 - 该研究提出了关于高温和不同冷却条件对淬火和自回火增强钢的力学性能影响的测试结果。本文的目的是阐明材料的温度发展概况,课程和火灾曝光强度以及冷却条件如何确定其性能的程度。设计/方法/方法 - 将每个样品系列加热至T = 200℃,400°C,600℃,700°C,800°C和1,000℃的温度。试样被缓慢冷却或经受水猝灭的快速冷却,可以在消防操作期间遇到。另外,还进行了应力 - 应变关系,微硬度和结构观察。结果 - 所提出的实验结果表明,预先在火条件下加热的钢筋对冷却强度非常敏感。用水加热和淬灭的钢样本的测试结果 - 表现出拉伸强度的增加,但材料可塑性显着降低。原创性/价值 - 所提出的作品为消防安全工程提供了洞察着火条件下加强钢的火灾行为的贡献,并进行快速或缓慢冷却。本研究表明,由于高温暴露,因此由于高温暴露而导致钢微观结构的变化引起的威胁。还应注意,结构变化可能具有局部性质,并指由于混凝土盖的火焰剥落而暴露的钢筋。

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