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The mechanism governing cutting of Polycrystalline Cubic Boron Nitride (PCBN) tool blanks with phase transformation induced fracture

机译:具有相变诱发断裂的控制多晶立方氮化硼(PCBN)工具坯料切削的机理

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摘要

The thesis presents a combined experimental and computational investigation of a novel thermochemical material removal mechanism for cutting of polycrystalline cubic boron nitride (PCBN) substrates through controlled crack propagation. The CO2-Laser/Waterjet machining system developed by the Iowa State University\u27s Laboratory for Lasers, MEMS, and Nanotechnology was utilized to achieve specimen cutting. It has been proved that the hybrid machining method is more efficiency and able to provide high quality cutting that overcomes the major drawbacks with current EDM and Nd:YAG laser machining techniques. The LWJ method implemented a high power laser heating followed by low pressure waterjet quenching that achieved fracture initiation and propagation along the cutting path. The purposes of water in LWJ machining are: (1) help the phase transformation as to induce larger tensile stresses for crack propagation and (2) provide thermal shock that reduce the fracture toughness of material in specimen. Two forms of PCBN specimens: the solid compact and the composite with tungsten carbide substrate were studied in this thesis. The mechanism governing the fracture behavior was studied through Raman spectroscopy, Scanning Electron Microscopy (SEM), and surface profile measurement with profilometer. FEA model associated with machining parameters was developed to validate the machining mechanism and provide prediction of fracture behavior. Good agreement between simulation prediction and experimental observation was achieved.
机译:本文提出了一种新型的热化学材料去除机理的实验和计算研究相结合的方法,该机理用于通过受控的裂纹扩展来切割多晶立方氮化硼(PCBN)衬底。爱荷华州立大学激光,MEMS和纳米技术实验室开发的CO2-激光/水刀加工系统用于实现样品切割。事实证明,混合加工方法效率更高,能够提供高质量的切削,克服了当前EDM和Nd:YAG激光加工技术的主要缺点。 LWJ方法实施了高功率激光加热,然后进行低压喷水淬火,从而实现了断裂的起始和沿切割路径的扩展。 LWJ加工中水的目的是:(1)帮助进行相变,以产生更大的拉伸应力以扩展裂纹;(2)提供热冲击,从而降低样品中材料的断裂韧性。本文研究了两种形式的PCBN样品:固体压块和含碳化钨基体的复合材料。通过拉曼光谱,扫描电子显微镜(SEM)和用轮廓仪测量表面轮廓来研究控制断裂行为的机理。开发了与加工参数关联的FEA模型以验证加工机制并提供断裂行为的预测。模拟预测与实验观察之间取得了良好的一致性。

著录项

  • 作者

    Wu, Zhuoru;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 en
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