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首页> 外文期刊>International Journal of Fatigue >Influence of dissolved hydrogen on the fatigue crack growth behaviour of AISI 4140 steel
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Influence of dissolved hydrogen on the fatigue crack growth behaviour of AISI 4140 steel

机译:溶解氢对AISI 4140钢疲劳裂纹扩展行为的影响

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In this investigation, the influence of dissolved hydrogen on the fatigue crack growth behaviour of a low alloy steel (AISI 4140) was examined. The investigation also examined the influence of microstructure on the fatigue threshold and the fatigue crack growth behaviour of this material. Compact tension (CT) specimens prepared from AISI 4140 steel as per ASTM standard E-647; were tested in two different heat treated conditions, i.e., cold rolled and annealed as well as austempered condition. The specimens were precharged with hydrogen using ex situ cathodic charging technique at a constant current density for three different time periods ranging from 150 to 250 h. The samples were then subjected to fatigue crack growth test in the threshold region as well as in the linear region. The near threshold fatigue crack growth rate, fatigue threshold and the crack growth rate in the linear region of these specimens were determined. The fatigue crack growth behaviour of the hydrogen charged samples were compared with specimens without any dissolved hydrogen. The current test results show that the near threshold crack growth rate increases with the increase in dissolved hydrogen content. It was also observed that the fatigue threshold decreases as the dissolved hydrogen content increases. The crack growth rate was found to be higher in the austempered samples compared to the annealed samples. An interesting phenomenon was observed in the case of annealed specimens charged with hydrogen for 250 h. These specimens had unusually high fatigue threshold (△K_(th)).
机译:在这项研究中,研究了溶解氢对低合金钢(AISI 4140)的疲劳裂纹扩展行为的影响。研究还检查了显微组织对这种材料的疲劳阈值和疲劳裂纹扩展行为的影响。由AISI 4140钢按照ASTM标准E-647制备的紧凑拉伸(CT)样品;在两种不同的热处理条件下进行了测试,即冷轧和退火以及奥氏体状态。使用异位阴极充电技术以恒定电流密度在150到250 h的三个不同时间段对样品进行氢气预充电。然后对样品在阈值区域和线性区域中进行疲劳裂纹扩展测试。确定这些样品的接近阈值疲劳裂纹扩展速率,疲劳阈值和线性区域的裂纹扩展速率。将含氢样品的疲劳裂纹扩展行为与不含任何溶解氢的样品进行了比较。当前的测试结果表明,随着溶解氢含量的增加,接近阈值的裂纹扩展速率也随之增加。还观察到疲劳阈值随着溶解氢含量的增加而降低。发现与退火样品相比,奥氏体样品的裂纹扩展速率更高。在退火样品中充入氢气250小时后,观察到一个有趣的现象。这些样品具有异常高的疲劳阈值(△K_(th))。

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