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一种用于模拟飞秒脉冲加工后钛合金Ti6Al4V表面微观形貌循环结构的新方法。

A New Method for Modeling the Cyclic Structure of the Surface Microrelief of Titanium Alloy Ti6Al4V After Processing with Femtosecond Pulses.

作者信息

Hutsaylyuk Volodymyr, Lytvynenko Iaroslav, Maruschak Pavlo, Dzyura Volodymyr, Schnell Georg, Seitz Hermann

机构信息

Institute of Robots and Machine Design, Military University of Technology, Gen. S. Kaliskiego str. 2, 00-908 Warsaw, Poland.

Department of Industrial Automation, Ternopil National Ivan Puuj Technical University, Ruska str. 56, 46001 Ternopil, Ukraine.

出版信息

Materials (Basel). 2020 Nov 5;13(21):4983. doi: 10.3390/ma13214983.

Abstract

A method of computer modeling of a surface relief is proposed, and its efficiency and high accuracy are proven. The method is based on the mathematical model of surface microrelief, using titanium alloy Ti6Al4V subjected to processing with femtosecond pulses as an example. When modeling the examples of microrelief, changes in the shape of segments-cycles of the studied surface processes, which correspond to separate morphological formations, were taken into account. The proposed algorithms were realized in the form of a computer simulation program, which provides for a more accurate description of the geometry of the microrelief segments. It was proven that the new method significantly increases the efficiency of the analysis procedure and processing of signals that characterize self-organized relief formations.

摘要

提出了一种表面形貌的计算机建模方法,并证明了其有效性和高精度。该方法基于表面微观形貌的数学模型,以飞秒脉冲加工的钛合金Ti6Al4V为例。在对微观形貌示例进行建模时,考虑了与单独形态结构相对应的研究表面过程的片段循环形状的变化。所提出的算法以计算机模拟程序的形式实现,该程序能够更准确地描述微观形貌片段的几何形状。事实证明,新方法显著提高了分析程序和处理表征自组织形貌形成的信号的效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc44/7663938/ee6459a7ace6/materials-13-04983-g001.jpg

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