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Simulation study on defect formation mechanism of the machined surface in milling of high volume fraction SiCp/Al composite

机译:高体积分数SiCp / Al复合材料铣削加工表面缺陷形成机理的模拟研究。

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摘要

The surface quality of SiC particle-reinforced aluminum matrix (SiCp/Al) composite plays an important role in their practical performance. Therefore, an in-depth understanding of the defect formation mechanism paves the solid foundation for the improvement of machined surface quality, which is the prerequisite for the widespread application of SiCp/Al materials. In this paper, the geometrical analysis of milling process was conducted firstly. Then, two-dimensional meso-scale finite element models composed of hard SiC particles and soft aluminum matrix were established for investigating the milling process of the SiCp/Al composite. Both a randomly distributed circular SiC particles model and a polygon SiC particles model were built respectively with high volume fraction. The simulation result indicated that the rotation, pulling out, big cleavage, micro fracture, and cutting through of the SiC were the main defect formation mechanisms. The simulated machined surface morphology was compared with the profile of a milled surface, and a good correlation was obtained.
机译:SiC颗粒增强铝基复合材料(SiCp / Al)的表面质量对其实用性能起着重要作用。因此,对缺陷形成机理的深入了解为改善加工表面质量奠定了坚实的基础,这是SiCp / Al材料广泛应用的前提。本文首先对铣削过程进行了几何分析。然后,建立了由硬质SiC颗粒和软质铝基体组成的二维中尺度有限元模型,以研究SiCp / Al复合材料的铣削过程。分别建立了具有高体积分数的随机分布的圆形SiC颗粒模型和多边形SiC颗粒模型。仿真结果表明,SiC的旋转,拉出,大劈裂,微裂纹和切入是主要的缺陷形成机理。将模拟的加工表面形态与铣削表面的轮廓进行比较,并获得良好的相关性。

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