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Ti-6Al-4V钛合金单磨粒微切削过程的分析与建模

Analysis and Modeling of the Micro-Cutting Process of Ti-6Al-4V Titanium Alloy with Single Abrasive Grain.

作者信息

Rypina Łukasz, Lipiński Dariusz, Bałasz Błażej, Kacalak Wojciech, Szatkiewicz Tomasz

机构信息

Faculty of Mechanical Engineering, Koszalin University of Technology, Racławicka 15-17, 75-620 Koszalin, Poland.

出版信息

Materials (Basel). 2020 Dec 21;13(24):5835. doi: 10.3390/ma13245835.

Abstract

Modeling of material displacements in the microcutting zone is complex due to the number and interdependence of factors affecting the results of the process. An important problem in the modeling process is the selection of the constitutive model and its parameters, which will correctly describe the properties of the material under the conditions of triaxial compression, which is characteristic for the areas of the contact zone of the blade and the processed material in abrasive machining processes. The aim of the work was to develop computer models (with the use of the finite element method) of the microcutting process with a single abrasive grain, which were verified with the results of experimental tests. The paper presents the methodology of modeling the processes of microcutting with abrasive grains, whose geometrical models were created based on optical scanning methods. Observations of the microcutting process were carried out with the use of a high-speed camera and an optical profilometer. This enabled a detailed observation of the chip formation process, as well as the analysis of the surface topography of microcutting traces. The results presented in the paper indicate the convergence of the results of the numerical and experimental simulations with regard to the geometric parameters describing the scratches formed in the microcutting process and the compliance of the chip-forming process. Thus, the correctness of the selection of the constitutive model (Johnson Cook equation) and its parameters was demonstrated, as well as the correctness of the applied methodology for creating a geometric model that allowed for a reflection of the geometrical parameters of the abrasive grains that coincided with the real objects, thanks to which it was possible to reflect in detail the phenomena occurring in the vicinity of the abrasive grain tip.

摘要

由于影响加工过程结果的因素数量众多且相互依存,微切削区材料位移的建模十分复杂。建模过程中的一个重要问题是本构模型及其参数的选择,该模型要能正确描述材料在三轴压缩条件下的特性,这是磨料加工过程中刀片与被加工材料接触区域的特征。这项工作的目的是开发单颗磨料微切削过程的计算机模型(使用有限元方法),并通过实验测试结果进行验证。本文介绍了磨料微切削过程的建模方法,其几何模型基于光学扫描方法创建。使用高速相机和光学轮廓仪对微切削过程进行了观察。这使得能够详细观察切屑形成过程,并分析微切削痕迹的表面形貌。本文给出的结果表明,在描述微切削过程中形成的划痕的几何参数以及切屑形成过程的一致性方面,数值模拟和实验模拟的结果具有收敛性。因此,证明了本构模型(Johnson Cook方程)及其参数选择的正确性,以及所应用的创建几何模型方法的正确性,该方法能够反映与实际物体相符的磨料颗粒几何参数,从而可以详细反映磨料颗粒尖端附近发生的现象。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/629a/7767466/958317eed2bd/materials-13-05835-g001.jpg

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