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Microstructure-based three-dimensional characterization of chip formation and surface generation in the machining of particulate-reinforced metal matrix composites

机译:颗粒增强金属基复合材料加工中基于微结构的切屑形成和表面生成的三维特征

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摘要

Particulate-reinforced metal matrix composites(PRMMCs)are difficult to machine due to the inclusion of hard,brittle reinforcing particles.Existing experimental investigations rarely reveal the complex material removal mechanisms(MRMs)involved in the machining of PRMMCs.This paper develops a three-dimensional(3D)microstructure-based model for investigating the MRM and surface integrity of machined PRMMCs.To accurately mimic the actual microstructure of a PRMMC,polyhedrons were randomly distributed inside the matrix to represent irregular SiC particles.Particle fracture and matrix deformation and failure were taken into account.For the model’s capability comparison,a two-dimensional(2D)analysis was also conducted.Relevant cutting experiments showed that the established 3D model accurately predicted the material removal,chip morphology,machined surface finish,and cutting forces.It was found that the matrix-particle-tool interactions led to particle fractures,mainly in the primary shear and secondary deformation zones along the cutting path and beneath the machined surface.Particle fracture and dilodegment greatly influences the quality of a machined surface.It was also found that although a 2D model can reflect certain material removal features,its ability to predict microstructural variation is limited.
机译:由于包含硬,脆性粒子的含有难以脆性,颗粒增强金属基质复合材料(PRMMC)难以加工。提高实验研究很少揭示参与PRMMCS加工中的复杂材料去除机制(MRMS)。本文发展了三个 - 基于尺寸(3D)基于微结构的用于研究机加工PRMMCs的MRM和表面完整性的模型。准确地模拟PRMMC的实际微观结构,多面体随机分布在基质内,表示不规则的SiC粒子。裂缝和基质变形和失效。考虑到模型的能力比较,还进行了一种二维(2D)分析。详细说明,切割实验表明,建立的3D模型精确地预测了材料去除,芯片形态,机加工表面光洁度和切割力。它是发现基质粒子 - 工具相互作用导致颗粒骨折,主要在初级剪切中D沿切割路径和机加工表面下方的二次变形区域。裂缝和省略极大地影响加工表面的质量。还发现,尽管2D模型可以反映某些材料去除特征,其预测微观结构变化的能力是有限的。

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