Meshless single grain cutting simulations on the GPU

Q3 Engineering
M. Röthlin, H. Klippel, M. Afrasiabi, K. Wegener
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引用次数: 17

Abstract

Physically sound prediction of grinding results necessarily starts with the single grain interaction with the material, which is especially important for engineered grinding tools (EGT). The deformations encountered in single grain simulations are severe, especially due to the large negative rake angles. Conventional software tools using FEM suffer from the induced extreme distortions of the grid, necessitating costly remeshing operations. Meshless methods are not limited in the amount of deformation they can reproduce and thus are a promising alternative, which also has the potential for extreme parallelisation on the graphics co-processor (GPU). With the drastically increased computational speed unprecedented simulation resolutions can be achieved at reasonable computation times allowing parameter studies on different friction and constitutive models with first order complete meshless formulations. In the interest of reproducibility, the software tool developed is made open source and can be obtained from https://github.com/mroethli/iwf_mfree_gpu_3d.
基于GPU的无网格单粒切割仿真
磨削结果的物理可靠预测必须从单颗粒与材料的相互作用开始,这对工程磨削工具(EGT)尤其重要。在单颗粒模拟中遇到的变形是严重的,特别是由于大的负前角。使用FEM的传统软件工具会受到网格极端扭曲的影响,需要进行成本高昂的重新网格化操作。无网格方法不受其可复制变形量的限制,因此是一种很有前途的替代方法,它也有可能在图形协处理器(GPU)上实现极端并行化。随着计算速度的大幅提高,在合理的计算时间内可以获得前所未有的模拟分辨率,从而可以用一阶完全无网格公式对不同的摩擦和本构模型进行参数研究。为了再现性,开发的软件工具是开源的,可以从https://github.com/mroethli/iwf_mfree_gpu_3d.
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Mechatronics and Manufacturing Systems
International Journal of Mechatronics and Manufacturing Systems Engineering-Industrial and Manufacturing Engineering
CiteScore
1.90
自引率
0.00%
发文量
10
期刊介绍: IJMMS publishes refereed quality papers in the broad field of mechatronics and manufacturing systems with a special emphasis on research and development in the modern engineering of advanced manufacturing processes and systems. IJMMS fosters information exchange and discussion on all aspects of mechatronics (computers, electrical and mechanical engineering) with applications in manufacturing processes and systems.
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