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Ultrasonic-assisted preparation of complex-shaped ceramic cutting tools by microwave sintering

机译:微波烧结的超声波辅助制备复杂陶瓷切削刀具

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Complex-shaped ceramic tools were prepared by ultrasonic-assisted molding technology and microwave sintering. A uniaxial ultrasonic vibration compaction system was designed. The effects of ultrasonic vibration and molding pressures on mechanical properties and microstructures of A(2)O(3) and Al2O3/SiC complex-shaped milling cutters were investigated by simulations and experiments. The results indicated that the density was distributed unevenly within the green ceramic tool samples, especially poor in the tool edges. These drawbacks were well improved by ultrasonic-assisted molding technology and microwave sintering. Applying ultrasonic vibration during the compaction process of green ceramic tool samples could improve the densification, hardness and reduce the randomness of mechanical properties of the sintered ceramic tool materials, especially for the difficult-to-sinter composite ceramics (with poor density). For A(2)O(3) ceramic tool, fully dense microstructure was achieved, and for Al2O3/SiC ceramic tool, the cutting edges showed better density than that of the interior body, which was beneficial to improve the abrasion resistance of cutting tool.
机译:通过超声波辅助的模制技术和微波烧结制备复杂的陶瓷工具。设计了一个单轴超声波振动压实系统。通过模拟和实验研究了超声波振动和模塑压力对(2)o(3)和Al2O3 / SiC复合体铣刀的机械性能和微结构的影响。结果表明密度不均匀地在绿色陶瓷工具样品内分布,尤其是工具边缘差。通过超声波辅助的成型技术和微波烧结得到很好的改善这些缺点。在绿色陶瓷工具样品的压实过程中施加超声波振动可以改善烧结陶瓷工具材料的致密化,硬度和降低机械性能的随机性,特别是对于难以烧结的复合陶瓷(密度差)。对于(2)O(3)陶瓷工具,实现了完全致密的微观结构,并且对于Al2O3 / SiC陶瓷工具,切削刃比内体的密度更好,这有利于提高切削工具的耐磨性。

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