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Effect of Tensile-Strain Rate and Specimen Width on Mechanical Properties of Cold-Formed Q345 Steel at Elevated Temperatures

机译:拉力率和试样宽度对高温冷形成Q345钢力学性能的影响

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The objective of this paper is to to ascertain the reliable mechanical properties of cold-formed Q345 steel at elevated temperatures while considerting the effects of tensile strain rate and specimen width. This paper presents an experimental study on the mechanical properties of cold-formed Q345 steel at temperatures ranging from 20°C to 800°C tested with two specimen widths and three tensile-strain rates, namely 0.06/min, 0.6/min, and 1.2/min. Tensile specimens were fabricated from a steel plate with a nominal thickness of 2.5 mm and tensile tests were carried out to determine the stress-strain relationship, yield strength, tensile strength, and elastic modulus. The test results showed that the tensile-strain rate has a maximum influence of 9% on yield and tensile strength at 600°C and the specimen width has a maximum influence of 14% on yield and tensile strength at 400°C. The maximum influence of the tensile-strain rate and specimen width on the elastic modulus is 18% and 12% respectively at 500°C. The necking phenomenon is less noticeable at temperatures below 300°C but is clearly observed at temperatures above 300°C. The comparison of the test results with predictions obtained from design standards (EC3, AISC, and AS4100) indicates a good agreement on the yield and tensile strength, but the magnitudes of elastic modulus obtained from the test are considerably higher than those obtained from the design standards. Based on averaged values of the test results associated with different tensile-strain rates and specimen widths, predictive equations were proposed to determine the mechanical properties of cold-formed Q345 steel at elevated temperatures.
机译:本文的目的是在升高的温度下确定冷成型Q345钢的可靠性机械性能,同时表示拉伸应变率和样品宽度的影响。本文介绍了在20℃至800℃的温度下测试的冷形成Q345钢的力学性能实验研究,用两个样品宽度和三种拉伸应变率测试,即0.06 / min,0.6 / min和1.2 / min。从标称厚度为2.5mm的钢板制造拉伸试样,进行拉伸试验以确定应力 - 应变关系,屈服强度,拉伸强度和弹性模量。测试结果表明,拉应力速率在600℃下的产率和拉伸强度的最大影响为9%,并且样品宽度在400℃下的产率和拉伸强度的最大影响为14%。拉伸应变率和样品宽度在弹性模量上的最大影响分别为18%和12%,在500℃下分别为18%和12%。在低于300℃的温度下,颈缩现象不太明显,但在高于300℃的温度下清楚地观察。测试结果与从设计标准(EC3,AISC和AS4100)获得的预测的测试结果表明了对产率和拉伸强度的良好一致性,但从测试中获得的弹性模量的幅度远高于从设计中获得的弹性模量标准。基于与不同拉应力速率和试样宽度相关的测试结果的平均值,提出了预测方程,以确定在升高的温度下冷形成Q345钢的机械性能。

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