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基于响应面法对搅拌摩擦加工AlCrCoFeNi高熵合金增强SS410的微观结构、力学性能及磨损行为优化的研究。

A study on microstructural, mechanical properties and optimization of wear behavior of friction stir processed AlCrCoFeNi High Entropy Alloy reinforced SS410 using response surface methodology.

作者信息

Ragunath S, Radhika N, Krishna S Aravind, Rajeshkumar L

机构信息

Department of Mechanical Engineering, Amrita School of Engineering, Coimbatore, Amrita Vishwa Vidyapeetham, India.

Department of Mechanical Engineering, KPR Institute of Engineering and Technology, Coimbatore, India.

出版信息

Heliyon. 2024 Jan 10;10(2):e24429. doi: 10.1016/j.heliyon.2024.e24429. eCollection 2024 Jan 30.

Abstract

The equimolar High Entropy Alloy (HEA) is incorporated on the surface of SS410 steel to enhance the mechanical properties for the current industrial scenario. The objective of the present work is to make a first attempt at surface modification of SS410 steel with gas atomization synthesized AlCrCoFeNi HEA powder through Friction Stir Processing (FSP). The microhardness and ultimate tensile strength of the FSP-HEA sample are increased by 41.3 % and 39.1 % respectively due to the high degree of refined grains with 2.84 μm and evenly distributed HEA particles. The wear rate of FSP-HEA samples is optimized by response surface methodology with process parameters including applied load, sliding distance, and sliding velocity. The most influential factor and regression model are derived from experimental results that predict the wear rate by the analysis of variance technique. The worn surface of FSP-HEA samples is evaluated by morphological analysis with corresponding induced wear mechanisms. The minimum wear rate is achieved by optimum process parameters along with higher hardness through particle-stimulated nucleation mechanism, Hall-Petch relation, and dynamic recrystallization. The grain refinement, barrier effect, and grain growth hindrance of HEA particles lead to enhancement in the strength of processed HEA samples.

摘要

在SS410钢表面加入等摩尔高熵合金(HEA),以提升其在当前工业场景下的机械性能。本工作的目的是首次尝试通过搅拌摩擦加工(FSP),用气体雾化合成的AlCrCoFeNi HEA粉末对SS410钢进行表面改性。由于形成了高度细化的2.84μm晶粒且HEA颗粒分布均匀,FSP-HEA样品的显微硬度和抗拉强度分别提高了41.3%和39.1%。采用响应面法,以施加的载荷、滑动距离和滑动速度等工艺参数对FSP-HEA样品的磨损率进行了优化。通过方差分析技术从实验结果中得出了预测磨损率的最具影响力的因素和回归模型。通过形态分析及相应的磨损机制对FSP-HEA样品的磨损表面进行了评估。通过颗粒激发形核机制、霍尔-佩奇关系和动态再结晶,在最佳工艺参数及更高硬度的共同作用下实现了最低磨损率。HEA颗粒的晶粒细化、阻挡效应和晶粒生长阻碍作用导致加工后的HEA样品强度增强。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fca8/10826323/872258e9d5fe/gr1.jpg

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