材料科学
纳米压痕
复合材料
脆性
涂层
成核
氮化硅
硅
微晶
氮化物
韧性
断裂韧性
图层(电子)
冶金
化学
有机化学
作者
А. И. Ковалев,Vladimir Vakhrushev,Ben D. Beake,Egor Konovalov,Dmitry Wainstein,S. A. Dmitrievskii,German Fox‐Rabinovich,Stephen C. Veldhuis
出处
期刊:Nanomaterials
[Multidisciplinary Digital Publishing Institute]
日期:2022-04-11
卷期号:12 (8): 1312-1312
被引量:4
摘要
The micromechanism of the low-cycle fatigue of mono- and multilayer PVD coatings on cutting tools was investigated. Multilayer nanolaminate (TiAlCrSiY)N/(TiAlCr)N and monolayer (TiAlCrSiY)N PVD coatings were deposited on the cemented carbide ball nose end mills. Low-cycle fatigue resistance was studied using the cyclic nanoindentation technique. The obtained results were compared with the behaviour of the polycrystalline silicon reference sample. The fractal analysis of time-resolved curves for indenter penetration depth demonstrated regularities of damage accumulation in the coatings at the early stage of wear. The difference in low-cycle fatigue of the brittle silicon and nitride wear-resistant coatings is shown. It is demonstrated that when distinguished from the single layer (TiAlCrSiY)N coating, the nucleation and growth of microcracks in the multilayer (TiAlCrSiY)N/(TiAlCr)N coating is accompanied by acts of microplastic deformation providing a higher fracture toughness of the multilayer nanolaminate (TiAlCrSiY)N/(TiAlCr)N.
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