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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials >Behaviour of the oxide scale during SEM in situ plastic deformation of pure nickel foil
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Behaviour of the oxide scale during SEM in situ plastic deformation of pure nickel foil

机译:纯镍箔的SEM原位塑性变形过程中氧化皮的行为

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摘要

The present study reports direct observations of the fracture of NiO layers on high purity nickel foils during in situ straining experiments performed in a scanning electron microscope at room temperature. The experimental set-up which has been specifically developed in our laboratory for performing such tests is first presented in details. The evolution of cracking on the oxide scale is followed during the plastic deformation of the substrate and up to the specimen rupture which roughly occurs at a total strain of 16%. The first cracks appear at 0.6% true strain and are perpendicular to the load axis. New oxide cracks are formed all along the test. The oxide scale remains fully adherent to the substrate and no kind of spallation or delamination could be noticed. A statistical study of the inter-cracks spacings is carried out and shows that the inter-cracks spacing decreases with the deformation according to a power law of the plastic strain.
机译:本研究报告了在室温下在扫描电子显微镜中进行的原位应变实验过程中,高纯度镍箔上NiO层断裂的直接观察结果。首先详细介绍了在我们实验室中专门为执行此类测试而开发的实验设置。在基材的塑性变形过程中,会跟踪氧化物尺度上裂纹的发展,直至试样的破裂(大约在总应变为16%时发生)。最初的裂纹出现在0.6%的真实应变下,并且垂直于载荷轴。在整个测试过程中都会形成新的氧化物裂纹。氧化皮仍然完全粘附在基材上,不会出现任何散裂或分层现象。对裂纹间距的统计研究表明,裂纹间距根据塑性应变的幂定律随变形而减小。

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