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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Influence of fine-scale B2 precipitation on dynamic compression and wear properties in hypo-eutectic Al0.5CoCrFeNi high-entropy alloy
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Influence of fine-scale B2 precipitation on dynamic compression and wear properties in hypo-eutectic Al0.5CoCrFeNi high-entropy alloy

机译:细尺寸B2沉淀对杂交Al0.5高熵合金动态压缩和磨损性能的影响

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摘要

The near equi-atomic high-entropy alloys based on Al, Co, Cr, Fe, Ni have provided a novel microstructural template for alloy design. The face centered cubic (FCC) matrix strengthened by body centered cubic (BCC) based ordered B2 precipitates can be used to develop new generation of precipitation strengthened alloys. The present study focuses on an Al0.5CoCrFeNi hypo-eutectic alloy consisting of an as-solidified FCC + B2 microstructure. Guided by solution thermodynamic modeling, this alloy has been isothermally aged for solid-state precipitation of a high fraction of fine scale intragranular B2 particles. While, the positive influence of B2 on tensile strength, and work hardenability have been published earlier, the current work presents effect of fine scale B2 phase on sliding wear and dynamic compression properties. The flow stress at 0.02% true strain increased from similar to 670 MPa to similar to 1350 (102%) MPa, the ultimate compressive strength increased from similar to 1160 MPa to 1500 MPa (20%), and the wear resistance increased more than 5 times with progressively increasing phase fraction of B2 precipitates. Published by Elsevier B.V.
机译:基于铝、钴、铬、铁、镍的近等原子高熵合金为合金设计提供了一种新的微观结构模板。体心立方(BCC)基有序B2沉淀强化面心立方(FCC)基体可用于开发新一代沉淀强化合金。本研究的重点是Al0。5CoCrFeNi亚共晶合金,由凝固态FCC+B2微观结构组成。在溶液热力学模型的指导下,该合金进行了等温时效,以获得高比例的细粒度晶内B2颗粒的固态沉淀。虽然B2对拉伸强度和加工淬透性的积极影响已在之前发表,但目前的研究显示了细尺度B2相对滑动磨损和动态压缩性能的影响。0.02%真应变下的流动应力从670MPa增加到1350MPa(102%),极限抗压强度从1160MPa增加到1500MPa(20%),耐磨性随着B2沉淀相含量的增加增加增加了5倍以上。由Elsevier B.V.出版。

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