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Development of ultra high strength nano-Y2O3 dispersed ferritic steel by mechanical alloying and hot isostatic pressing

机译:机械合金化和热等静压研制超高强度纳米Y2O3分散铁素体钢

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摘要

The present investigation aims to develop ultra high strength ferritic steels through consolidation of mechanically alloyed powders of 1.0wt% nano-Y2O3 dispersed 83.0Fe-13.5Cr-2.0Al-0.5Ti (alloy A), 79.0Fe-17.5Cr-2.0Al-0.5Ti (alloy B), 75.0Fe-21.5Cr-2.0Al-0.5Ti (alloy C) and 71.0Fe-25.5Cr-2.0Al-0.5Ti (alloy D) alloys (all in wt%) by hot isostatic pressing (HIP) at 600,800 and 1000 °C using 1.2 GPa pressure for 1 h. Following this mechano-chemical synthesis and consolidation, extensive effort has been undertaken to characterize the microstructural evolution by X-ray diffraction, scanning and transmission electron microscopy and energy dispersive spectroscopy. Mechanical properties including hardness, compressive strength, Young's modulus and fracture toughness were determined using nano-indentation and universal testing machine. The present ferritic alloys record extraordinary levels of compressive strength (2012-3325MPa), Young's modulus (230-295GPa), fracture toughness (4.6-21.8 MPa^m) and hardness (15.5-19.7 GPa), and measure up to 2-3 times greater strength with a lower density (~7.4Mg/m3) than that of other oxide dispersion strengthened ferritic steels (<1200 MPa) or tungsten based alloys (<2200 MPa). The novelty of these alloys lies in the unique microstructure comprising uniform dispersion of 20-30 nm Y2O3 (ex situ) or Y2Ti207 (in situ) particles in higher volume fraction in high-Cr ferritic matrix.
机译:本研究旨在通过固结1.0wt%纳米Y2O3分散在83.0Fe-13.5Cr-2.0Al-0.5Ti(合金A),79.0Fe-17.5Cr-2.0Al-中的机械合金粉末的固结来开发超高强度铁素体钢0.5 Ti(合金B),75.0Fe-21.5Cr-2.0Al-0.5Ti(合金C)和71.0Fe-25.5Cr-2.0Al-0.5Ti(合金D)合金(均以重量%计)( HIP)在600,800和1000°C下使用1.2 GPa压力持续1 h。在这种机械化学合成和固结之后,已进行了广泛的努力,以通过X射线衍射,扫描和透射电子显微镜以及能量色散光谱表征微结构的演变。使用纳米压痕和通用测试机测定机械性能,包括硬度,抗压强度,杨氏模量和断裂韧性。目前的铁素体合金记录了极高的抗压强度(2012-3325MPa),杨氏模量(230-295GPa),断裂韧性(4.6-21.8 MPa ^ m)和硬度(15.5-19.7 GPa),测量值高达2-3是其他氧化物弥散强化铁素体钢(<1200 MPa)或钨基合金(<2200 MPa)的两倍,强度更高,密度更低(〜7.4Mg / m3)。这些合金的新颖之处在于其独特的微观结构,该组织包含20-30 nm的Y2O3(非原位)或Y2Ti207(原位)颗粒以较高的体积分数在高铬铁素体基体中均匀分散。

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  • 来源
    《Materials Science and Engineering》 |2011年第26期|p.7475-7483|共9页
  • 作者单位

    Metallurgical and Materials Engineering Department,Indian Institute ofTechnology,Kharagpur 721302,India;

    Institute of High Pressure Physics (Unipress),Polish Academy of Sciences,Sokolowska 29,01-142 Warsaw,Poland;

    Institute of High Pressure Physics (Unipress),Polish Academy of Sciences,Sokolowska 29,01-142 Warsaw,Poland;

    Institute of High Pressure Physics (Unipress),Polish Academy of Sciences,Sokolowska 29,01-142 Warsaw,Poland;

    Metallurgical and Materials Engineering Department,Indian Institute ofTechnology,Kharagpur 721302,India,Central Class and Ceramic Research Institute (a CSIR unit),Kolkata 700032,India;

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

    oxide dispersion strengthening; ferritic steel; mechanical alloying; hot isostatic pressing; mechanical properties;

    机译:氧化物弥散强化;铁素体钢;机械合金化;热等静压;力学性能;

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