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首页> 外文期刊>Materials Science and Engineering >Improvement of fracture toughness of Ti+Nb stabilized microalloyed and interstitial free steels processed through single phase regime control multiaxial forging
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Improvement of fracture toughness of Ti+Nb stabilized microalloyed and interstitial free steels processed through single phase regime control multiaxial forging

机译:通过单相态控制多轴锻造工艺改善Ti + Nb稳定的微合金化和无间隙钢的断裂韧性

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Objective of the current study is to enhance the mechanical properties, with a special emphasis on fracture toughness, of Ti + Nb stabilized interstitial free and microalloyed steels through microstructural modification by single-phase controlled multiaxial forging at large cumulative strains. Analysis of fracture toughness was executed through calculating K_Q (conditional fracture toughness), K_(ee) (equivalent energy fracture toughness) and J-integral (crack initiation energy) values from single-edge bend test data of the forged specimens. The effect of strain hardening rate and strain hardening exponent on deformation behavior were examined to correlate the yield strength (YS) and uniform elongation. Also, theoretically calculated YS (obtained from analysis of strengthening mechanisms) was correlated well with the experimentally obtained results. The quantitative measurement of grain size, low- and high-angle grain boundaries and their distribution in the deformed state were investigated through EBSD/TEM analysis. Superior combinations of the YS, ductility (%E1.) and fracture toughness were obtained through intercritical (α+γ) phase regime (~A_(r1)) control 15 cycles multiaxially forged (MAFed) microalloyed steel (YS = 1027 MPa, %E1. = 8.3% and K_(ee) = 90 MPa√m.) and pure α-ferritic region (
机译:当前研究的目的是通过在大累积应变下通过单相控制多轴锻造进行显微组织改性来提高Ti + Nb稳定的无间隙组织和微合金化钢的机械性能,特别是断裂韧性。断裂韧性的分析是通过从锻件的单边弯曲试验数据计算出K_Q(条件断裂韧性),K_(ee)(等效能量断裂韧性)和J积分(裂纹萌生能量)值来进行的。研究了应变硬化速率和应变硬化指数对变形行为的影响,以使屈服强度(YS)和均匀伸长率相关。此外,理论计算的YS(从强化机理分析中获得)与实验获得的结果也具有很好的相关性。通过EBSD / TEM分析研究了晶粒尺寸,低角度和高角度晶界及其在变形状态下的分布的定量测量。通过临界(α+γ)相态(〜A_(r1))控制15个循环的多轴锻造(MAFed)微合金钢(YS = 1027 MPa,%)获得了YS,延展性(%E1。)和断裂韧性的优良组合。 E1 = 8.3%,K_(ee)= 90MPa√m。)和纯α铁素体区(

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