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通过模拟研究WC-Co粉末超声振动辅助压制的微观机制。

Investigating the Microscopic Mechanism of Ultrasonic-Vibration-Assisted-Pressing of WC-Co Powder by Simulation.

作者信息

Chen Yuhang, Wang Yun, Huang Lirong, Su Binbin, Yang Youwen

机构信息

School of Mechanical and Electrical Engineering, Jiangxi University of Science and Technology, Ganzhou 341000, China.

Jiangxi Province Key Laboratory of Maglev Technology, School of Electrical Engineering and Automation, Jiangxi University of Science and Technology, Ganzhou 341000, China.

出版信息

Materials (Basel). 2023 Jul 24;16(14):5199. doi: 10.3390/ma16145199.

Abstract

The ultrasonic-vibration-assisted pressing process can improve the fluidity and the uneven distribution of density and particle size of WC-Co powder. However, the microscopic mechanism of ultrasonic vibration on the powder remains unclear. In this paper, WC particles with diameter 5 μm and Co particles with diameter 1.2 μm were simulated by three-dimensional spherical models with the aid of the Python secondary development. At the same time, the forming process of the powder at the mesoscale is simulated by virtue of the finite element analysis software ABAQUS. In the simulation process, the vibration amplitude was set to 1, 2, and 3 μm. Their influence on the fluidity, the filling density, and the stress distribution of WC-Co powder when the ultrasonic vibration was applied to the conventional pressing process was investigated. The simulation results show that the ultrasonic vibration amplitude has a great influence on the density of the compact. With an increase in the ultrasonic amplitude, the compact density also increases gradually, and the residual stress in the billet decreases after the compaction. From the experimental results, the size distribution of the billet is more uniform, the elastic after-effect is reduced, the dimensional instability is improved, and the density curves obtained by experimentation and simulation are within a reasonable error range.

摘要

超声振动辅助压制工艺可以改善WC-Co粉末的流动性以及密度和粒度的不均匀分布。然而,超声振动对粉末作用的微观机制仍不明确。本文借助Python二次开发,用三维球形模型模拟了直径为5μm的WC颗粒和直径为1.2μm的Co颗粒。同时,借助有限元分析软件ABAQUS模拟了粉末在细观尺度上的成型过程。在模拟过程中,将振动幅度设置为1μm、2μm和3μm。研究了在常规压制过程中施加超声振动时,它们对WC-Co粉末的流动性、填充密度和应力分布的影响。模拟结果表明,超声振动幅度对坯块密度有很大影响。随着超声幅度的增加,坯块密度也逐渐增加,压实后坯料中的残余应力减小。从实验结果来看,坯块的尺寸分布更均匀,弹性后效减小,尺寸不稳定性得到改善,实验和模拟得到的密度曲线在合理的误差范围内。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0304/10384394/9d266747c8e6/materials-16-05199-g001.jpg

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