Zang Chao, Xing Yaping, Yang Tingting, Teng Qi, Zhen Jinming, Zhang Ran, Jia Zhengfeng, Han Weifang
School of Materials Science and Engineering, Liaocheng University, Liaocheng 252059, China.
Polymers (Basel). 2022 Oct 9;14(19):4230. doi: 10.3390/polym14194230.
Phenolic-matrix composites possess excellent synergistic effects on mechanical and tribological properties and can be used in the aerospace, medical, and automobile industries. In this work, a series of phenol-formaldehyde resin/hexagonal boron nitride nanocomposites (PF/BNs) were in situ synthesized using an easy method. PF/BN coatings (PF/BNCs) on 316L steels were prepared through a spin-casting method. The wear behaviors of these PF/BNCs were investigated by dry sliding with steel balls. The percentage of BN, the thickness of the coating, and the heat treatment temperature affected the coefficients of friction (COFs) and wear rates of these coatings. After heat treatment at 100 °C, the tribological properties of the PF/BNCs were remarkably improved, which might be attributed to both the transformation of carbon on the worn surfaces from C-O/C=O into C=N, carbide, and other chemical bonds and the cross-linking of the prepolymers.
酚醛基复合材料在机械性能和摩擦学性能方面具有优异的协同效应,可应用于航空航天、医疗和汽车工业。在本工作中,采用一种简便方法原位合成了一系列酚醛树脂/六方氮化硼纳米复合材料(PF/BNs)。通过旋铸法在316L钢上制备了PF/BN涂层(PF/BNCs)。采用钢球干滑动的方式研究了这些PF/BNCs的磨损行为。BN的百分比、涂层厚度和热处理温度影响了这些涂层的摩擦系数(COFs)和磨损率。在100℃下热处理后,PF/BNCs的摩擦学性能得到显著改善,这可能归因于磨损表面上的碳从C-O/C=O转变为C=N、碳化物和其他化学键以及预聚物的交联。