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Mechanical properties enhancement of a novel medium Mn-TRIP/TWIP assisted steel by dispersion of M_2B-type borides particles

机译:通过分散M_2B型硼化物颗粒的分散性新型介质Mn-Trad / Twip辅助钢的机械性能

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摘要

The strain hardening behavior of a novel medium Mn TRIP/TWIP assisted steel which has been synergically reinforced by M_2B-type boride particles was investigated in this work. As-cast material was thermo-mechanically processed by forging and hot rolling at 1150 °C. Hot rolled strip was divided into three parts, two of which were annealed at 800 and 900 °C, respectively, to generate three different microstructures, and therefore a range of different mechanical properties. The hot rolled sample showed a small grained austenitic microstructure reinforced by the dispersion of tetragonal M_2B particles. This microstructure evolved to a similar coarsening degree after the heat treatments used, but while annealing at 800 °C produced a nearly 100%-austenite microstructure, about 13% of ferrite was observed after the treatment at 900 °C. EBSD studies showed that part of the tetragonal M_2B-type boride particles transformed into the orthogonal M_2B structure at 800 °C, as predicted by Thermo-Calc calculations. The effect of grain size, austenite stability and the structural variant of borides present were related to the mechanical properties determined by tensile test at room temperature. The differences observed for yield strength between as hot rolled and annealed samples were associated to a Hall-Petch grain size effect. On the other hand, differences in strain hardening behavior and elongation to failure observed among three samples were interpreted from perspectives of the TRIP/TWIP behavior of austenite and the deformation behavior of M_2B-type borides. The presence of some non-shearable dual-phase M_2B-type borides and an optimal rate of strain-induced transformation of austenite into martensite at 800 °C caused a significant enhancement of total elongation to failure (up to 60%) with no changes on the tensile strength from 1100 MPa, resulting in an ultra-high product of strength and elongation (66.0 GPa%).
机译:在该工作中研究了新型介质MN跳闸/ TWIP辅助钢的新型MN跳闸/ TWIP辅助钢的应变硬化行为。通过在1150℃下锻造和热轧制进行热机械加工。将热轧带材分为三个部分,其中两个分别在800和900℃下退火,以产生三种不同的微观结构,因此是一系列不同的机械性能。热轧样品显示通过四边形M_2B颗粒的分散增强的小颗粒奥氏体微观结构。在使用的热处理之后,这种微观结构在使用的热处理之后进化到相似的粗化度,但在800℃下退火的同时产生近100%的 - austenite微观结构,在900℃下处理后观察到约13%的铁素体。 EBSD研究表明,通过热计算计算预测,在800℃下转化为正交M_2B结构的四方M_2B型硼化物颗粒的一部分。晶粒尺寸,奥氏体稳定性和硼化物结构变体的影响与在室温下通过拉伸试验测定的机械性能有关。在热轧和退火样品之间观察到的屈服强度观察的差异与霍尔拼图晶粒尺寸效应相关。另一方面,从奥氏体跳闸/ Twip行为的透视和M_2B型硼化物的变形行为的透视中解释了应变硬化行为和三种样品中观察到的伸长率的差异。在800℃下存在一些非沉淀的双相M_2B型硼化物和应变诱导的奥氏体转化的最佳速率,导致延伸的总伸长率(高达60%)没有变化从1100MPa的拉伸强度导致强度和伸长率的超高产物(66.0GPa%)。

著录项

  • 来源
    《Materials Science and Engineering》 |2020年第may15期|139333.1-139333.10|共10页
  • 作者单位

    The State Key Laboratory of Rolling and Automation Northeastern University Shenyang 110819 China;

    The State Key Laboratory of Rolling and Automation Northeastern University Shenyang 110819 China;

    The State Key Laboratory of Rolling and Automation Northeastern University Shenyang 110819 China;

    The State Key Laboratory of Rolling and Automation Northeastern University Shenyang 110819 China;

    National Center for Metallurgical Research Physical Metallurgy Avda Gregorio Del Amo 8 Madrid 28040 Spain;

    The State Key Laboratory of Rolling and Automation Northeastern University Shenyang 110819 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Medium Mn steel; M_2B-type borides; Metastable austenite; Strain hardening; TRIP/TWIP effect;

    机译:中锰钢;M_2B型硼化物;亚料奥氏体;菌株硬化;旅行/ TWIP效果;

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