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Effect of Ni alloying on the microstructural evolution and mechanical properties of two duplex light-weight steels during different annealing temperatures : experiment and phase-field simulation

机译:镍合金化对两种退火温度下两种轻质双相钢组织和力学性能的影响:实验和相场模拟

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摘要

This paper presents a study of two lightweight steels, Fe-15Mn-10Al-0.8C-5Ni and Fe-15Mn-10Al-0.8C where strength is dependent upon the microstructure of 2nd phase precipitates. We investigate the effects of annealing temperature from 500 °C to 1050 °C on the precipitation of ordered phases size and morphology through phase-field modelling and experimental studies based on laboratory scale annealing and characterization. The chemical composition of carbides and B2 compounds as a function of isothermal annealing temperature and the matrix within which they formed are elucidated in this study. It is found that nano-sized disk-shaped B2 particles form at higher annealing temperatures (e.g. 900 °C and 1050 °C). The simulation results on carbides demonstrated the effects of energetic competition between interfacial energy and elastic strain energy on the morphological evolution of carbides. In addition to that, different ordering behaviours observed depending on the Ni content into the steel. The results demonstrate processing route designed through the phase-field simulations led to a better combination of strength and ductility. The tensile testing results indicate an increase in the strength and elongation when B2 precipitate morphology changes from micro-size faceted shape to nano-size disk-like particles.
机译:本文介绍了两种轻质钢,Fe-15Mn-10Al-0.8C-5Ni和Fe-15Mn-10Al-0.8C的研究,其中强度取决于第二相析出物的微观结构。我们通过相场建模和基于实验室规模退火和表征的实验研究,研究了500°C至1050°C的退火温度对有序相尺寸和形态沉淀的影响。在本研究中阐明了碳化物和B2化合物的化学组成随等温退火温度的变化以及它们形成的基质。发现在较高的退火温度(例如900℃和1050℃)下形成了纳米尺寸的盘状B2颗粒。碳化物的模拟结果证明了界面能和弹性应变能之间的高能竞争对碳化物形态演化的影响。除此之外,根据钢中的镍含量,观察到不同的有序行为。结果表明,通过相场模拟设计的加工路线可以更好地结合强度和延展性。拉伸测试结果表明,当B2沉淀物形态从微米大小的刻面形状变为纳米大小的盘状颗粒时,强度和伸长率均增加。

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