Overview of Suitable Methodologies for Threshold Stress Determination by Small Punch in Aggressive Environments

Laura Andrea Calvo, Borja Arroyo Martínez, J.A. Alvarez Laso, F. Gutiérrez-Solana, Sergio Cicero González, Roberto Lacalle Calderón
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Abstract

The Small Punch Test is a recently standardized technique successfully employed for estimating the tensile, creep and fracture properties of metallic materials, and is considered as one of the most suitable options for evaluating mechanical properties when materials are in shortage. Several advances have been made in order to apply this methodology for mechanical characterizations in aggressive environments. The first tests were carried out pre-embrittling the samples in environment and then testing them in air. Subsequent methodologies proposed tests in environment after pre-embrittling the samples in order not to lose part of the embrittling capacity while testing; in these scenarios the punch rate has an enormous influence on environmental characterizations. The most recent works propose to implement in the Small Punch Test the step loading methodology collected in ASTM F1624 standard, which solves these problems by applying steps at a constant load which gradually increases until the sample fails. In this work, guidelines for the application of Small Punch Tests to determine the threshold load in aggressive environment are given, based on tests results under hydrogen embrittlement scenarios. A range of punch rates for constant punch displacement is provided, together with the suitable step times when applying the step loading technique, and a correlation to estimate the threshold stress based on Small Punch samples tested with this novel technique.
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侵略性环境下小冲床阈值应力测定方法综述
小冲孔试验是最近成功地用于估计金属材料的拉伸、蠕变和断裂性能的标准化技术,被认为是在材料短缺时评估机械性能最合适的选择之一。为了将这种方法应用于侵略性环境中的机械特性,已经取得了一些进展。第一次测试是在环境中进行预脆,然后在空气中进行测试。随后的方法建议在样品预脆化后在环境中进行测试,以便在测试时不损失部分脆化能力;在这些情况下,冲孔率对环境特征有巨大的影响。最近的工作建议在小冲孔试验中实施ASTM F1624标准中收集的阶梯加载方法,通过在恒定负载下应用逐步增加的步骤来解决这些问题,直到样品失效。在这项工作中,根据氢脆情景下的试验结果,给出了应用小冲击试验确定侵略性环境下阈值载荷的指导方针。提供了恒定冲床位移的冲床速率范围,以及应用步进加载技术时的合适步进时间,以及基于使用该新技术测试的小冲床样品估计阈值应力的相关性。
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