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首页> 外文期刊>The Journal of Strain Analysis for Engineering Design >An experimental investigation into strain and stress partitioning of duplex stainless steel using digital image correlation, X-ray diffraction and scanning Kelvin probe force microscopy
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An experimental investigation into strain and stress partitioning of duplex stainless steel using digital image correlation, X-ray diffraction and scanning Kelvin probe force microscopy

机译:利用数字图像相关,X射线衍射和扫描开尔文探针力显微镜对双相不锈钢的应变和应力分配进行实验研究

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摘要

The evolution of microstructure strain partitioning during quasi in situ tensile loading of grade 2205 duplex stainless steel has been investigated. Digital image correlation revealed the development of tensile strain initially in austenite and at interphase boundaries, and further extending into the ferrite with increasing load. Higher resolution digital image correlation observations indicated strain hardening of austenite, followed by deformation of the ferrite. Digital image correlation analysis of a 20% cold-rolled microstructure revealed tensile strain development at interphases, with discrete tensile and compressive strain pockets observed within the austenite. X-ray diffraction measurements indicated the presence of tensile stresses primarily developing in the ferrite, with full-width at half maximum values indicating plastic strain accumulation primarily in the austenite. The effect of tensile loading on Volta potential differences, obtained via scanning Kelvin probe force microscopy, highlighted the development of discrete anodic and cathodic sites with the introduction of strain. A Volta potential roughness parameter (Psi(Ra)) is introduced describing Volta potential changes as a function of strain. This observation supports the concept of an enhanced propensity of local electrochemical activity with increasing applied strain in duplex stainless steel.
机译:研究了2205级双相不锈钢在准原位拉伸载荷过程中显微组织的变形分配过程。数字图像相关性揭示了拉伸应变最初在奥氏体和相间边界处发展,并随着载荷的增加而进一步扩展到铁素体中。高分辨率数字图像相关性观察表明,奥氏体应变硬化,然后是铁素体变形。对20%冷轧组织的数字图像相关分析表明,在相变过程中出现了拉伸应变,在奥氏体中观察到了离散的拉伸和压缩应变袋。 X射线衍射测量表明主要在铁素体中存在拉伸应力,半峰全宽表明塑性应变主要在奥氏体中积累。通过扫描开尔文探针力显微镜获得的拉伸载荷对伏特电位差的影响突出了引入应变后阳极和阴极离散位置的发展。引入了伏特电势粗糙度参数(Psi(Ra)),该参数描述了伏特电势随应变的变化。该观察结果支持了在双相不锈钢中随着施加应变的增加而增强了局部电化学活性的倾向性的概念。

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