Oraby Samy, Alaskari Ayman, Almazrouee Abdulla
Department of Mechanical Production Technology, College of Technological Studies, PAAET, P.O. Box 42325, Shuwaikh 70654, Kuwait.
Materials (Basel). 2011 Apr 6;4(4):633-650. doi: 10.3390/ma4040633.
Coated carbide inserts are considered vital components in machining processes and advanced functional surface integrity of inserts and their coating are decisive factors for tool life. Atomic Force Microscopy (AFM) implementation has gained acceptance over a wide spectrum of research and science applications. When used in a proper systematic manner, the AFM features can be a valuable tool for assessment of tool surface integrity. The aim of this paper is to assess the integrity of coated and uncoated carbide inserts using AFM analytical parameters. Surface morphology of as-received coated and uncoated carbide inserts is examined, analyzed, and characterized through the determination of the appropriate scanning setting, the suitable data type imaging techniques and the most representative data analysis parameters using the MultiMode AFM microscope in contact mode. The results indicate that it is preferable to start with a wider scan size in order to get more accurate interpretation of surface topography. Results are found credible to support the idea that AFM can be used efficiently in detecting flaws and defects of coated and uncoated carbide inserts using specific features such as "Roughness" and "Section" parameters. A recommended strategy is provided for surface examination procedures of cutting inserts using various AFM controlling parameters.
涂层硬质合金刀片被认为是加工过程中的关键部件,刀片及其涂层的先进功能表面完整性是刀具寿命的决定性因素。原子力显微镜(AFM)的应用在广泛的研究和科学应用中已得到认可。当以适当的系统方式使用时,AFM的特性可以成为评估刀具表面完整性的有价值工具。本文的目的是使用AFM分析参数评估涂层和未涂层硬质合金刀片的完整性。通过使用接触模式的MultiMode AFM显微镜,确定合适的扫描设置、合适的数据类型成像技术和最具代表性的数据分析参数,对收到的涂层和未涂层硬质合金刀片的表面形貌进行检查、分析和表征。结果表明,最好从较宽的扫描尺寸开始,以便更准确地解释表面形貌。结果被认为是可信的,支持了AFM可以利用“粗糙度”和“截面”参数等特定特征有效地检测涂层和未涂层硬质合金刀片的缺陷和瑕疵这一观点。针对使用各种AFM控制参数的切削刀片表面检查程序提供了一种推荐策略。