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HYBRID ALUMINA COMPOSITES FOR CUTTING TOOL INSERTS: MATERIAL DESIGN AND DEVELOPMENT

机译:切削刀具嵌件的混合氧化铝复合材料:材料设计与开发

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A successful approach to the development of reinforced materials for enhanced cutting tool inserts requires the formulation and application of innovative concepts at each step of material design development. In this paper, reinforced ceramic-based cutting tools with enhanced thermal and structural properties are developed for high-speed machining applications using a computational approach. A mean-field homogenization, effective medium approximation and J-integral based fracture toughness evaluation using an in-house code are used for predicting the effective structural and thermal properties for tool inserts as a function of reinforcement type, volume fraction, particle size and interface between matrix and reinforcement. Initially, several potential reinforcements are selected at the material design phase. SiC, TiB_2, cBN and TiC were all found to be suitable candidates when reinforced into an alumina matrix as both single and hybrid inclusions for the enhancement of thermal and structural properties. For validation purposes, alumina-cubic boron nitride-silicon carbide composites are developed using Spark Plasma Sintering as hybrid systems, which are in line with the designed range of volume fraction and reinforcement particle size. Structural and thermal properties such as elastic modulus, fracture toughness and thermal conductivity are measured to complement the computational material design model.
机译:成功开发用于增强切削刀具刀片的增强材料的方法,需要在材料设计开发的每个步骤中制定和应用创新概念。在本文中,开发了一种具有增强的热和结构特性的增强陶瓷基切削刀具,用于使用计算方法的高速加工应用。使用内部代码进行平均场均质化,有效介质近似和基于J积分的断裂韧性评估,以预测刀具刀片的有效结构和热性能,取决于增强类型,体积分数,粒度和界面在基体和钢筋之间。最初,在材料设计阶段选择了几种潜在的增强材料。当将SiC,TiB_2,cBN和TiC增强到氧化铝基体中作为单一和混合夹杂物以增强热和结构性能时,它们都是合适的候选物。为了验证目的,使用火花等离子体烧结作为混合体系开发了氧化铝-立方氮化硼-碳化硅复合材料,这与体积分数和增强颗粒尺寸的设计范围相符。测量结构和热性能,例如弹性模量,断裂韧性和热导率,以补充计算材料设计模型。

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