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Synergetic strengthening of layered steel sheet investigated using an in situ neutron diffraction tensile test

机译:用原位中子衍射拉伸试验研究层状钢板的协同强化

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摘要

Synergetic strengthening induced by plastic strain incompatibility at the interface, and the resulting extra geometrically necessary dislocations (GNDs) generated during plastic deformation, were investigated to understand the origin of extra strength in heterogeneous structured (HS) materials. The mechanism of extra GND generation in twinning-induced plasticity (TWIP)-interstitial free (IF) steel layered sheet was quantitatively analyzed by conducting in situ neutron scattering tensile test. Load partitioning due to the different mechanical properties between the TWIP-steel core and IF-steel sheath at the TWIP/IF interface was observed during the in situ tensile testing. Because of the plastic strain incompatibility from load partitioning, extra GNDs are generated and saturate during tensile deformation. The extra GNDs can be correlated with the back-stress evolution of the HS materials, which contributes to the strength of layered materials. Because of the back-stress evolution caused by load partitioning, the strength of TWIP-IF layered steel is higher than the strength estimated by the rule-of-mixtures. This finding offers a mechanism by which extra GNDs are generated during load partitioning and shows how they contribute to the mechanical properties of HS materials.
机译:研究了由界面处塑性应变不相容引起的协同强化,以及在塑性变形过程中产生的额外的几何必要位错(GND),以了解异质结构(HS)材料额外强度的起源。通过进行原位中子散射拉伸试验,定量分析了孪生感应塑性(TWIP)-无间隙(IF)钢层合板中额外的GND生成机理。在原位拉伸测试过程中,观察到由于TWIP / IF接口处TWIP钢芯和IF钢护套之间的机械性能不同而导致的载荷分配。由于负载分配引起的塑性应变不兼容,在拉伸变形过程中会生成多余的GND并使其饱和。多余的GND可以与HS材料的背应力演变相关,这有助于分层材料的强度。由于负载分配引起的背应力演变,TWIP-IF层状钢的强度高于混合规则所估计的强度。这一发现提供了一种在负载分配过程中生成额外GND的机制,并显示了它们如何对HS材料的机械性能做出贡献。

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