短期高温环境对 40 毫米厚 Q345 钢中铁素体晶粒尺寸不均匀分布的影响

Pub Date : 2024-04-11 DOI:10.24425/amm.2024.147809
Hao Xu, R. Gou, Min Yu, Wen-Jiao Dan, Nian Wang
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引用次数: 0

摘要

为了揭示工程中厚板晶粒大小在厚方向上的不均匀分布,我们观察并测量了 40 mm 厚 Q345 钢在不同的火灾形成的短期高温环境下的微观结构。此外,还揭示了短期高温环境对 Q345 钢中铁素体晶粒大小分布的影响。在不同的消防环境下,沿厚度方向不同位置的分布参数 Nf(铁素体晶粒数)和 df(平均晶粒直径)以及 ρAf(面积分数密度)和 df 之间存在对数正态分布关系。然而,统计结果受统计区间长度的影响很大。当 df 约为统计区间长度的 4 至 6 倍时,统计精度较高。通过非线性拟合方法,建立了在各种火灾环境下沿厚度方向不同位置的多个非均匀分布经验模型,包括 Nf-df 经验公式和 ρAf-df 经验公式。此外,还分别揭示了火灾温度 T 与 Nf 、T 与 ρAf 、火灾持续时间 t 与 Nf 、t 与 ρAf 之间的相互关系。
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The Influence of Short-Term High Temperature Environment on the Non-Uniform Distribution of Ferrite Grain Size in 40 mm-thick Q345 Steel
In order to reveal the non-uniform distribution of grain size in thick direction for engineering heavy plate, microstructure of 40 mm-thick Q345 steel was observed and measured under different short-term high temperature environments formed by fire. Moreover, the influence of the short-term high temperature environment was revealed on the distribution of ferrite grain size in the Q345 steel. Under different fire service environments, there was a log-normal distribution relationship between the distribution parameter Nf (number of ferrite grains) and df (average grain diameter), as well as ρAf (area fraction density) and df, at different positions along the thickness direction. However, the statistical results are greatly affected by the length of the statistical interval. When df is about 4 to 6 times the length of the statistical interval, the statistical accuracy is higher. By using nonlinear fitting method, multiple non-uniform distribution empirical models including Nf-df empirical formulas and ρAf-df empirical formulas were established at different positions along thick direction under various fire environments. Furthermore, the interrelationships between fire temperature T and Nf , T and ρAf , fire duration t and Nf , t and ρAf were revealed, respectively.
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