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Research on the Performance of Diamond-Like Carbon Coatings on Cutting Aluminum Alloy: Cutting Experiments and First-Principles Calculations

机译:钻石型碳涂层对切割铝合金的性能研究:切割实验和第一原理计算

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摘要

The purpose of this study is to investigate the cutting performance of amorphous carbon (a-C) coatings and hydrogenated amorphous carbon (a-C:H) coatings on machining 2A50 aluminum alloy. First-principles molecular dynamics simulation was applied to investigate the effect of hydrogen on the interaction between coatings and workpiece. The cross-section topography and internal structure of a-C and a-C:H films were characterized by field emission scanning electron microscopy and Raman spectroscopy. The surface roughness of the deposited films and processed workpiece were measured using a white light interferometer. The results show that the a-C-coated tool had the highest service life of 121 m and the best workpiece surface quality (Sq parameter of 0.23 μm) while the workpiece surface roughness Sq parameter was 0.35 and 0.52 μm when machined by the a-C:H-coated and the uncoated tool, respectively. Meanwhile, the build-up edge was observed on the a-C:H-coated tool and a layer of aluminum alloy was observed to have adhered to the surface of the uncoated tool at its stable stage. An interface model that examined the interactions between H-terminated diamond (111)/Al(111) surfaces revealed that H atoms would move laterally with the action of cutting heat (549 K) and increase the interaction between a-C:H and Al surfaces; therefore, Al was prone to adhere to the a-C:H-coated tool surface. The a-C coating shows better performance on cutting aluminum alloy than the a-C:H coating.
机译:本研究的目的是研究在加工2A50铝合金上的无定形碳(A-C)涂层和氢化非晶碳(A-C:H)涂层的切割性能。应用第一原理分子动力学模拟来研究氢对涂层和工件之间相互作用的影响。通过现场发射扫描电子显微镜和拉曼光谱,特征在于A-C和A-C:H膜的横截面形貌和内部结构。使用白色光干涉仪测量沉积的薄膜和加工工件的表面粗糙度。结果表明,AC涂层工具的使用寿命最高,最佳的工件表面质量(0.23μm的Sq参数),而工件表面粗糙度Sq参数在由AC加工时为0.35和0.52μm:H-涂层和未涂层​​工具。同时,在A-C:H涂覆工具上观察到构建边缘,观察到一层铝合金,以在其稳定阶段粘附到未涂层工具的表面上。一种接口模型,用于检查H封端的金刚石(111)/ Al(111)表面之间的相互作用,显示H原子会随着切割热(549 k)的作用横向移动,并增加A-C:H和Al表面之间的相互作用;因此,Al易于粘附到A-C:H涂层的工具表面上。 A-C涂层在切割铝合金上表现出比A-C:H涂层更好的性能。

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