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Macro and micro mechanical in-situ characterization using synchrotron diffraction of architectured micro-composite duplex stainless steels

机译:使用架构微复合双相不锈钢的同步和微型机械原位表征使用架构微复合双面不锈钢衍射

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摘要

The mechanical behavior of micro-composites Duplex Stainless steels (DSS) produced by Accumulative re-Bundling and Drawing (ABD) has been investigated. We evidenced a systematic increase in the yield strength, as a function of the manufacturing step, independently from the phases' volume fraction. A simple rule of mixture (ROM) successfully predicted the first generation of composites presenting a simple microstructure. However, a modified ROM taking into account the contribution of each component and its grain size could not predict the mechanical response of the composites of higher generation. An in-depth analysis is conducted to investigate the microstructure-mechanical behavior relationship and to rationalize the resultant mechanical behavior from that of each constitutive phase. For this purpose, in-situ synchrotron High Energy X-ray Diffraction measurements during uniaxial tensile experiments have been carried out to calculate the stress partitioning within each phase of the composites.
机译:研究了通过累积重新捆绑和绘图(ABD)产生的微复合材料双相不锈钢(DSS)的机械特性。我们证明了屈服强度的系统增加,作为制造步骤的功能,独立于阶段的体积分数。简单的混合物(ROM)规则成功地预测了呈现简单微结构的第一代复合材料。然而,考虑到每个组分及其粒度的贡献的修改ROM​​无法预测更高代的复合材料的机械响应。进行深度分析以研究微观结构 - 机械行为关系,并从每个本构体相的阶段合理地利用所得的机械行为。为此目的,已经进行了在单轴拉伸实验期间的原位同步高能量X射线衍射测量以计算复合材料的每个相的应力分配。

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