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Cutting forces and TEM analysis of the generated surface during machining metal matrix composites

机译:金属基复合材料加工过程中切削力和生成表面的TEM分析

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摘要

Cutting of metal matrix composites (MMCs) has been considerably difficult due to the extremely abrasive nature of the reinforcements that causes rapid tool wear and high machining cost. An investigation was carried out to clearly understand the role played by the ductile matrix on the machining performance based on the estimation of line defects generated as a result of cutting. The microstructural studies were conducted using transmission electron microscopy (TEM) on the machined surface to reveal the deformation pattern of the work hardening matrix and its correlation with the forces generated during turning MMCs. Cracking and debonding of the reinforcement particles are the significant damage modes that directly affect the tool performance. It was found that the particle size and volume fraction affect the extent of deformation in the generated surface. Also the machining forces are correlated to the plastic deformation characteristics of the matrix material. This investigation provided valuable information on the deformation behaviour of particulate reinforced composites that can improve the performance and accuracy of machining MMCs.
机译:由于增强材料的极具研磨性,导致工具快速磨损和高加工成本,金属基复合材料(MMC)的切割非常困难。进行了一项调查,以根据切割产生的线缺陷的估计值,清楚地了解延性基体对加工性能的作用。使用透射电子显微镜(TEM)在加工表面上进行了微观结构研究,以揭示加工硬化基体的变形模式及其与车削MMC时产生的力的相关性。增强颗粒的破裂和脱粘是直接影响工具性能的重要破坏方式。发现粒径和体积分数影响所产生的表面的变形程度。加工力也与基体材料的塑性变形特性相关。这项研究提供了有关颗粒增强复合材料变形行为的有价值的信息,这些行为可以改善加工MMC的性能和准确性。

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