Chromium gradient stainless steels with simultaneous high strength, ductility, and corrosion-resistant: In-depth study of continuous hardening mechanisms

IF 9.4 1区 材料科学 Q1 ENGINEERING, MECHANICAL
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Abstract

Cr-rich stainless steel sheets exhibit superior corrosion resistance but low ductility, which presents a trade-off between fabrication complexity and performance of the materials in multiple industrial applications, such as marine equipment and microreactors. By transitioning the Cr-rich (30 wt.% Cr) stainless steel component to SS 316 L with a smooth composition gradient in the thickness direction, the intrinsic homogeneous elongation of the Cr-rich layer was increased by 260 % while maintaining the naturally high corrosion resistance (100 %) and retaining most of the strength (more than 80 %). By employing in-situ tensile testing and electron backscatter diffraction analysis, it was revealed that the Cr-rich layer in the gradient structure underwent a profound deformation mechanism, including significant heterogeneous deformation-induced hardening and grain reorientation induced by multiplication and accumulation of geometrically necessary dislocations, in such a way to enable a substantial plastic strain and thereby retarding the occurrence of fracture. The proportion of the Cr-rich layer makes a significant impact on the magnitude of the strain gradient in the gradient specimens, therefore affecting the increment of density of geometrically necessary dislocations. The critical proportion value of the Cr-rich layer is found to be around 22 %. Before and after the critical value the gradient specimens showed different sensitivities to the proportion. This discovery underlines the significance of intrinsic plasticity in low-ductility metals and the role of compositional gradient materials in enhancing strength and ductility.

Abstract Image

同时具有高强度、延展性和耐腐蚀性的铬梯度不锈钢:连续硬化机制的深入研究
富含铬的不锈钢板具有优异的耐腐蚀性,但延展性较低,这就需要在制造复杂性和材料性能之间进行权衡,以适应多种工业应用,如海洋设备和微反应器。通过将富含铬(30 wt.%铬)的不锈钢成分转变为在厚度方向上具有平滑成分梯度的 SS 316 L,富含铬层的固有均匀伸长率提高了 260%,同时保持了天然的高耐腐蚀性(100%)并保留了大部分强度(超过 80%)。通过原位拉伸试验和电子反向散射衍射分析,发现梯度结构中的富铬层经历了深刻的变形机制,包括显著的异质变形诱导硬化和几何必要位错倍增和累积诱导的晶粒重取向,从而产生了大量塑性应变,从而延缓了断裂的发生。富铬层的比例对梯度试样中应变梯度的大小有显著影响,因此会影响几何必要位错密度的增加。富铬层的临界比例值约为 22%。在临界值之前和之后,梯度试样对该比例表现出不同的敏感性。这一发现强调了低延展性金属固有塑性的重要性,以及成分梯度材料在提高强度和延展性方面的作用。
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来源期刊
International Journal of Plasticity
International Journal of Plasticity 工程技术-材料科学:综合
CiteScore
15.30
自引率
26.50%
发文量
256
审稿时长
46 days
期刊介绍: International Journal of Plasticity aims to present original research encompassing all facets of plastic deformation, damage, and fracture behavior in both isotropic and anisotropic solids. This includes exploring the thermodynamics of plasticity and fracture, continuum theory, and macroscopic as well as microscopic phenomena. Topics of interest span the plastic behavior of single crystals and polycrystalline metals, ceramics, rocks, soils, composites, nanocrystalline and microelectronics materials, shape memory alloys, ferroelectric ceramics, thin films, and polymers. Additionally, the journal covers plasticity aspects of failure and fracture mechanics. Contributions involving significant experimental, numerical, or theoretical advancements that enhance the understanding of the plastic behavior of solids are particularly valued. Papers addressing the modeling of finite nonlinear elastic deformation, bearing similarities to the modeling of plastic deformation, are also welcomed.
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