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Interfacial characteristics and mechanical properties of duplex stainless steel bimetal composite by heat treatment

机译:热处理双相不锈钢双金属复合材料的界面特性和力学性能

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摘要

The interfacial morphologies play a crucial role in mechanical properties of laminated/bimetal composite. This study investigates the effects of heat treatments on the interfacial characteristics, mechanical properties and fracture behaviour of a 2205 duplex stainless steel/AH36 carbon steel bimetal composite with varying interface situations fabricated by the hot-rolling and subsequent heat treatments. The bimetal composite was annealed from 850 °C to 1150 °C in steps of 100°C with soaking 1 h. Heterogeneities of grain size and element concentration exist in the microstructural evolution of bonding zone adjacent to interface after annealing treatments, which were observed by the optical microscope and scanning electron microscope (SEM) coupled with the energy dispersive X-ray spectroscopy (EDS). It was found that the diffusion transition zone of Cr and Fe alloy elements between component 2205 and AH36 steel layers present an increasing trend with the rise of annealing temperature. The results of conventional, shear and compact tensile test indicate that the tensile strength of 2205/AH36 bimetal composite gradually decreases but the fracture elongation increases with the rising annealing temperature, the thicker alloy element diffusion zone results in the stronger interfacial shear strength and better ductility of bimetal composite, but the thick and strong interface has less positive effect than the mechanical properties of bimetal composite itself on preventing the fatigue crack growth across the interface.
机译:界面形态在层压/双金属复合材料的力学性能中起着至关重要的作用。本研究研究了热处理对2205双相不锈钢/ AH36碳钢双金属复合材料的界面特征,机械性能和断裂行为的影响,该钢铁双金属复合材料的不同卷绕和随后的热处理制造的不同界面情况。双金属复合材料以850℃至1150℃的步长,浸泡1小时。晶粒尺寸和元素浓度的异质性存在于与退火处理后邻近的界面相邻的粘合区的微观结构演化中,其由光学显微镜和扫描电子显微镜(SEM)与能量分散X射线光谱(EDS)耦合而观察。结果发现,随着退火温度的升高,组件2205和AH36钢层之间Cr和Fe合金元件的扩散过渡区具有越来越大的趋势。常规,剪切和紧凑型拉伸试验的结果表明,2205 / aH36双金属复合材料的拉伸强度逐渐降低,但断裂伸长率随着退火温度的上升而增加,较厚的合金元素扩散区导致更强的界面剪切强度和更好的延展性双金属复合材料,但厚和强的界面具有比双金属复合材料本身的力学性能较少的积极效果,防止界面穿过突出裂缝的裂纹生长。

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  • 来源
    《Materials Science and Engineering》 |2020年第10期|139513.1-139513.10|共10页
  • 作者单位

    School of Mechanical Materials Mechatronic and Biomedical Engineering University of Wollongong Wollongong NSW 2522 Australia;

    School of Mechanical Materials Mechatronic and Biomedical Engineering University of Wollongong Wollongong NSW 2522 Australia;

    School of Mechanical Materials Mechatronic and Biomedical Engineering University of Wollongong Wollongong NSW 2522 Australia;

    Baosteel Research Institute (R&D Centre) Baoshan Iron & Steel Co. Ltd. Shanghai 200431 China;

    Baosteel Research Institute (R&D Centre) Baoshan Iron & Steel Co. Ltd. Shanghai 200431 China;

    Baosteel Research Institute (R&D Centre) Baoshan Iron & Steel Co. Ltd. Shanghai 200431 China;

    Baosteel Research Institute (R&D Centre) Baoshan Iron & Steel Co. Ltd. Shanghai 200431 China;

    School of Mechanical Materials Mechatronic and Biomedical Engineering University of Wollongong Wollongong NSW 2522 Australia;

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

    Bimetal composite; Heat treatment; Element diffusion; Interfacial characteristics; Mechanical properties;

    机译:双金属复合材料;热处理;元素扩散;界面特征;机械性能;

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