Microstructure and Wear Behavior of Tungsten Hot-Work Steel after Boriding and Boroaluminizing

Author:

Mishigdorzhiyn Undrakh,Chen Yan,Ulakhanov NikolayORCID,Liang HongORCID

Abstract

(1) Background: Boron-based diffusion layers possess great application potential in forging and die-casting due to their favorable mechanical and thermophysical properties. This research explores the enhanced wear resistance of tungsten hot-work steel through boriding and boroaluminizing. (2) Methods: Thermal-chemical treatment (TCT) of steel H21 was carried out. Pure boriding was introduced to the substrate through heating a paste of boron carbide and sodium fluoride 1050 °C for two hours. As for boroaluminizing, 16% of aluminum powder was added to the boriding paste. (3) Results: It was shown that boriding resulted in the formation of an FeB/Fe2B layer with a tooth-like structure. A completely different microstructure was revealed after boroaluminizing—namely, diffusion layer with heterogeneous structure, where hard components FeB and Mx (B,C) were displaced in the matrix of softer phases—Fe3Al and α-Fe. In addition, the layer thickness increased from 105 μm to 560 μm (compared to pure boriding). The maximum microhardness values reached 2900 HV0.1 after pure boriding, while for boroaluminizing it was about 2000 HV0.1. (4) Conclusions: It was revealed that the mass loss during wear test reduced by two times after boroaluminizing and 13 times after boriding compared to the hardened sample after five-min testing.

Funder

Russian Foundation for Basic Research

Publisher

MDPI AG

Subject

Surfaces, Coatings and Films,Mechanical Engineering

Cited by 13 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Prediction of the boroaluminized layer thickness using an artificial neural network;Поверхность. Рентгеновские, синхротронные и нейтронные исследования;2024-04-15

2. Prediction of the Thickness of a Boroaluminized Layer Using an Artificial Neural Network;Journal of Surface Investigation: X-ray, Synchrotron and Neutron Techniques;2024-04

3. Electron Beam Treatment of Diffusion B–Al Layers on 3Kh2V8F Steel Surfaces;Bulletin of the Russian Academy of Sciences: Physics;2024-04

4. The effect of borocoppering duration on the composition, microstructure and microhardness of the surface of carbon and alloy steels;Metal Working and Material Science;2023-03-15

5. Evaluation of Wear Resistance of AISI L6 and 5140 Steels after Surface Hardening with Boron and Copper;Lubricants;2023-01-29

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