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APPLICATION OF THE INCREMENTAL STEP LOADING TECHNIQUE TO SMALL PUNCH TESTS IN HYDROGEN EMBRITTLEMENT

机译:增量步骤加载技术在氢脆化上小冲击试验中的应用

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In this work, the incremental step loading technique to measure hydrogen embrittlement threshold in steels from ASTM F1624 standard is applied to the Small Punch test technique. For the experimental program, a medium strength steel is employed, simulating the hydrogen embrittlement environment by a cathodic polarization of 5 mA/cm~2 in an acid electrolyte mainly consisting of IN H_2SO_4 in H2O. Regular standard tests on cylindrical tensile specimens were carried out under the same environment following the ASTM F1624 standard, observing the same trends in both cases, which validates the methodology proposed. In order to adapt the aforementioned standard to small punch testing, the duration of the loading steps had to be modified, proposing much shorter ones according to the Small Punch specimen dimensions and the punch rate taking place in these scenarios, which is pointed in bibliography. This proposal allows to obtain a threshold load by using at least 3 specimens in a total time of around a week.
机译:在这项工作中,从ASTM F1624标准测量钢中钢中氢气脆化阈值的增量步骤加载技术应用于小冲击测试技术。对于实验程序,采用介质强度钢,在酸电解质中通过5mA / cm〜2的阴极偏振模拟氢气脆性环境,主要由H2O中的H_2SO_4组成。在ASTM F1624标准之后,在同一环境下进行圆柱形拉伸试样的定期标准测试,观察两种情况的相同趋势,该案例验证了所提出的方法。为了使上述标准适应小冲击测试,必须修改负载步骤的持续时间,根据小冲击样本尺寸和在这些场景中进行的冲压速率提出更短的较短情况,这是指向参考书目的。该提议允许通过在大约一周的总时间使用至少3个样本来获得阈值负载。

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