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Effect of Relative Humidity on Mechanical Degradation of Medium Mn Steels

机译:相对湿度对中锰钢力学性能的影响

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摘要

Medium Mn steels have been considered as the next-generation materials for use in the automotive industry due to their excellent strength and ductility balance. To reduce the total weight and improve the safety of vehicles, medium Mn steels look forward to a highly promising future. However, hydrogen-induced delayed cracking is a concern for the use of high strength steels. This work is focused on the service characteristics of two kinds of medium Mn steels under different relative humidity conditions (40%, 60%, 80% and 100%). Under normal relative humidity (about 40%) at 25 °C, the hydrogen concentration in steel is 0.4 ppm. When exposed to higher relative humidity, the hydrogen concentration in steel increases slowly and reaches a stable value, about 0.8 ppm. In slow strain rate tensile tests under different relative humidity conditions, the tensile strength changed, the hydrogen concentration increased and the elongation decreased as well, thereby increasing the hydrogen embrittlement sensitivity. In other words, the smaller the tensile rate applied, the greater the hydrogen embrittlement sensitivity. In constant load tests under different relative humidity conditions, the threshold value of the delayed cracking of M7B (‘M’ referring to Mn, ‘7’ meaning the content of Mn, ‘B’ denoting batch annealing) steel maintains a steady value of 0.82 σ (tensile strength). The threshold value of the delayed cracking of M10B significantly changed along with relative humidity. When relative humidity increased from 60% to 80%, the threshold dropped sharply from 0.63 σ to 0.52 σ . We define 80% relative humidity as the ‘threshold humidity’ for M10B.
机译:中锰钢由于具有出色的强度和延展性,因此被认为是用于汽车行业的下一代材料。为了减轻总重量并提高车辆的安全性,中锰钢期待着一个充满希望的未来。但是,氢引起的延迟开裂是高强度钢使用的关注点。这项工作着眼于两种中锰钢在不同相对湿度条件下(40%,60%,80%和100%)的使用特性。在25°C的正常相对湿度(大约40%)下,钢中的氢浓度为0.4 ppm。当暴露在较高的相对湿度中时,钢中的氢浓度会缓慢增加并达到稳定值,约为0.8 ppm。在不同相对湿度条件下的慢应变速率拉伸试验中,拉伸强度发生变化,氢浓度增加,伸长率也降低,从而增加了氢脆敏感性。换句话说,施加的拉伸速率越小,氢脆敏感性越大。在不同的相对湿度条件下进行恒定载荷测试时,M7B钢的延迟开裂阈值(“ M”表示Mn,“ 7”表示Mn的含量,“ B”表示分批退火)保持稳定值0.82 σ(抗拉强度)。 M10B的延迟裂化的阈值随着相对湿度而显着变化。当相对湿度从60%增加到80%时,阈值从0.63σ急剧下降到0.52σ。我们将80%的相对湿度定义为M10B的“阈值湿度”。

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