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Effect of hydrogen and magnetic field on the mechanical behavior of magnetostrictive iron-gallium alloy single crystal

机译:氢和磁场对磁致伸缩铁镓合金单晶力学行为的影响

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摘要

Magnetostrictive Fe-Ga and other iron alloys are candidates for use in sensing, actuation and large-scale energy harvesting applications. Exposure to aqueous electrochemical environments is anticipated in some of these applications which could potentially introduce hydrogen into the alloy and cause severe ductility reduction due to the hydrogen embrittlement effect. In this work, the effect of hydrogen and magnetic field on the fracture behaviors of [100] oriented Fe-17.5 at% Ga alloy single crystals are examined. Three-point bend test was used to measure the fracture stress. Hydrogen embrittlement was characterized by a change in fracture surface from a ductile fracture mode to a brittle cleavage type fracture. The cleavage fracture occurred along the (001) plane. Critical stress for the initiation of fracture was measured under different conditions and an upper bound for cleavage stress in these alloys is obtained. Applied magnetic field was seen to affect the fracture stress and strain of hydrogen charged sample. Acoustic emission signals collected during the test appear to be consistent with the fracture behavior.
机译:磁致伸缩Fe-Ga和其他铁合金是用于传感,驱动和大规模能量收集应用的候选材料。在这些应用中的某些应用中,预期暴露于含水电化学环境中,这可能会将氢引入合金中,并由于氢脆效应而导致严重的延展性降低。在这项工作中,研究了氢和磁场对[100]取向的Fe-17.5 at%Ga合金单晶的断裂行为的影响。三点弯曲试验用于测量断裂应力。氢脆的特征在于,断裂表面从韧性断裂模式变为脆性裂解型断裂。劈裂沿(001)面发生。在不同条件下测量了引起断裂的临界应力,并获得了这些合金中解理应力的上限。观察到施加的磁场会影响带氢样品的断裂应力和应变。测试期间收集的声发射信号似乎与断裂行为一致。

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