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Improvement of Cutting Forces Modeling Based on Oriented Cutting Tests

机译:基于定向切削试验的切削力建模方法的改进

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Cutting tools with higher wear resistance are those manufactured by powder metallurgy process, which combines the development of materials and design properties, features of shape-making technology and sintering. The annual global market of cutting tools consumes about US$ 12 billion; therefore, any research to improve tool designs and machining process techniques adds value or reduces costs. The aim is to describe the Spark Plasma Sintering (SPS) of cutting tools in functionally gradient materials, to show this structure design suitability through thermal residual stress model and, lastly, to present two kinds of inserts. For this, three cutting tool materials were used (Al2O3-ZrO2, Al2O3-TiC and WC-Co). The samples were sintered by SPS at 1300°C and 70MPa. The results showed that mechanical and thermal displacements may be separated during thermal treatment for analysis. Besides, the absence of cracks indicated coherence between experimental results and the residual stresses predicted.
机译:具有较高耐磨性的切削刀具是通过粉末冶金工艺制造的刀具,其结合了材料的发展和设计特性,成形技术和烧结的特点。每年全球切削工具市场消费约120亿美元;因此,任何改善工具设计和加工工艺技术的研究都可以增加价值或降低成本。目的是描述功能梯度材料中切削刀具的火花等离子烧结(SPS),以通过热残余应力模型显示这种结构设计的适用性,最后介绍两种刀片。为此,使用了三种切削刀具材料(Al2O3-ZrO2,Al2O3-TiC和WC-Co)。通过SPS在1300℃和70MPa下烧结样品。结果表明,可以在热处理过程中将机械位移和热位移分开进行分析。此外,没有裂纹表明实验结果与预测的残余应力之间具有连贯性。

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