首页> 外文会议>ASME international mechanical engineering congress and exposition;IMECE2011 >EXPLORING A MANUFACTURING ROUTE TO PRODUCE WC-BASED MICRO-CUTTING TOOL WITH NANOSTRUCTURED MATERIAL
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EXPLORING A MANUFACTURING ROUTE TO PRODUCE WC-BASED MICRO-CUTTING TOOL WITH NANOSTRUCTURED MATERIAL

机译:探索制造路线以生产具有纳米结构材料的基于WC的微切削刀具

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Micro cutting tools used for micro machining by material removal (e.g. milling, turning) exhibit a high breakage rate due to various physical problems. This is partly due to the material characteristics. The present feasibility study intends to develop and manufacture a micro-tool by taking advantage of nano-structured powder material, prepared by mechanical milling process, with an ultimate objective to enhance the properties of the developed micro-tool. Cemented carbide, WC-Co, was used to produce the micro-tool. Hence, a processing route was defined to obtain nano-structured powders ultimately leading to the production of high performance cutting tools by appropriate consolidation. A couple of dies were designed and tested to understand limitations and issues related to the production of such micro tools. The introduction and compaction of the nano-structured WC-Co powder inside the die micro cavity features proved to be a challenge. Following compaction, the micro-tool shaped compacts were sintered at 1400°C for two hours under inert atmosphere. Samples with a large aspect ratio are shown and a couple of challenges are discussed.
机译:由于各种物理问题,用于通过材料去除(例如,铣削,车削)进行微加工的微切削刀具表现出很高的破损率。部分原因是材料特性。本可行性研究旨在通过利用通过机械研磨工艺制备的纳米结构粉末材料来开发和制造微型工具,其最终目的是增强开发的微型工具的性能。硬质合金WC-Co用于生产微型工具。因此,定义了一种加工路线以获得纳米结构的粉末,最终通过适当的固结来生产高性能的切削工具。设计和测试了两个模具,以了解与此类微型工具生产相关的局限性和问题。在模具微腔特征内部引入和压实纳米结构的WC-Co粉末是一项挑战。压实之后,将微型工具形状的压块在惰性气氛下在1400°C烧结2小时。显示了具有大长宽比的示例,并讨论了两个挑战。

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