材料科学
微观结构
冶金
等温淬火
摩擦学
碳化物
润滑性
奥氏体
耐磨性
摩擦学
复合材料
贝氏体
作者
Mattia Franceschi,Chiara Soffritti,Annalisa Fortini,Luca Pezzato,Gian Luca Garagnani,Manuele Dabalà
标识
DOI:10.1016/j.triboint.2022.108071
摘要
The effect of isothermal transformation temperatures on wear performances of a newly designed high-silicon carbide-free bainitic steel was studied. Wear tests were performed by a ball-on-disc tribometer using steel spheres as counterpart material. Friction coefficient was provided by the equipment, whereas wear rate was evaluated by the wear volume. Wear tracks on disc surfaces and worn cross-sections were analysed by means FEG-SEM, EDS measurements, XRD, roughness, and hardness tests. Bainitic microstructure offers better wear resistance compared to pearlitic-ferritic microstructure due to higher hardness, strain hardening capability, and strain-induced transformations. Adhesion and tribo-oxidational wear are the main wear mechanisms; the extent
\nof oxidation increases increasing austempering temperature and it is maximum for samples treated at 350 ◦C and pearlitic-ferritic microstructure.
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