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激光熔覆参数对FeCrNiTiZr涂层微观结构及高温磨损的影响

Effect of the Laser Cladding Parameters on Microstructure and Elevated Temperature Wear of FeCrNiTiZr Coatings.

作者信息

Gao Yali, Bai Sicheng, Jiang Shan, Lu Pengyong, Zhang Dongdong, Jie Meng, Liu Yu

机构信息

Department of Mechanical Engineering, Northeast Electric Power University, No. 169 Changchun Road, Jilin 132012, China.

School of Mechanical Electrical Engineering, Jilin Institute of Chemical Technology, Jilin 132022, China.

出版信息

Materials (Basel). 2024 Sep 10;17(18):4444. doi: 10.3390/ma17184444.

Abstract

In order to prepare coating with good friction and wear resistance at elevated temperature on the surface of hot-working tool steel, by using a CO laser, FeCrNiTiZr high-entropy alloy coating with different laser scanning speeds (360, 480 and 600 mm/min, respectively) was successfully fabricated by using laser cladding technology on the surface of H13 steel in this paper. Phase constitutions, microhardness, microstructure, and wear characteristics of FeCrNiTiZr coatings under different laser scanning speeds were analyzed. It was determined that 480 mm/min was the optimal laser scanning speed. The results showed that the coating at the scanning speed of 480 mm/min consists of a BCC phase with significant lattice distortion and high dislocation density; the crystal structure is cellular crystal and dendrite crystal. The coating demonstrates the highest microhardness (842 HV), which is 4.2 times that of the substrate (200 HV). Its average friction coefficients at room temperature and 823 K are approximately one-seventh and one-third of the substrate's, respectively, and its wear volume is reduced by about 98% and 81% under these conditions. Compared to the substrate, the coating underwent slight abrasive wear, adhesive wear, and oxidative wear at both room temperature and 823 K. In contrast, the substrate underwent severe abrasive wear, adhesive wear, oxidative wear, and even fatigue wear.

摘要

为了在热作模具钢表面制备具有良好高温摩擦磨损性能的涂层,本文采用CO激光,通过激光熔覆技术在H13钢表面成功制备了不同激光扫描速度(分别为360、480和600 mm/min)的FeCrNiTiZr高熵合金涂层。分析了不同激光扫描速度下FeCrNiTiZr涂层的相组成、显微硬度、微观结构和磨损特性。确定480 mm/min为最佳激光扫描速度。结果表明,扫描速度为480 mm/min时的涂层由晶格畸变显著、位错密度高的体心立方相组成;晶体结构为胞状晶和树枝晶。该涂层具有最高的显微硬度(842 HV),是基体(200 HV)的4.2倍。其在室温及823 K时的平均摩擦系数分别约为基体的七分之一和三分之一,在这两种条件下其磨损体积分别减少了约98%和81%。与基体相比,该涂层在室温及823 K时均发生轻微的磨粒磨损、粘着磨损和氧化磨损。相比之下,基体发生严重的磨粒磨损、粘着磨损、氧化磨损甚至疲劳磨损。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6225/11433176/048a7971e51a/materials-17-04444-g001.jpg

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