Microwave sintering behavior of FeCuCo based metallic powder for diamond alloy tool bit
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Microwave sintering behavior of FeCuCo based metallic powder for diamond alloy tool bit

机译:金刚晶工具钻头FeCuco基金属粉末的微波烧结行为

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AbstractA novel method of microwave pressureless sintering to fabricate FeCuCo based diamond alloy tool bits was proposed. The characteristic of densification, mechanical properties and microstructural development of the microwave-sintered samples were investigated. Compared to the traditional sintering method in resistance furnace in this work, the microwave sintering displayed distinct advantages, including shorter sintering time, lower sintering temperature, more homogeneous element diffusion, more excellent holding force between in diamond and alloyed matrix. The result demonstrated that the designed metallic powders could be quickly heated to 850?°C in microwave field and heating rate for compacted mixed powder could even reach up to 30?°C/min. And also the relative density and hardness of samples were estimated to be 95.14% and 98.5 HRB by microwave sintering at 850?°C. Additionally, the microstructure analysis manifested microscopic texture was more uniform, which indicated that the microwave sintering was beneficial to the decrease of void defect in FeCuCo and diamond sintered compact. The possible microwave sintering mechanism was also discussed. This work will provide novel perspective of the sintering strategy for the metallic matrix superhard material tool field.Highlights?A novel method of microwave pressureless sintering to fabricate FeCuCo based diamond alloy tool bits was proposed.?The microstructure of microwave pressureless sintering FeCuCo based alloy is more uniform and it has less void defects.?Compared with conventional sintering, microwave sintering can achieve higher density and hardness.?The possible mechanism of microwave heating was discussed.]]>
机译:<![CDATA [ 抽象 提出了一种微波无压烧结的新方法,以制造基于Fecuco的金刚石合金工具位。研究了微波烧结样品的致密化,机械性能和微观结构的特征。与在这项工作中的电阻炉中的传统烧结方法相比,微波烧结显示了明显的优点,包括较短的烧结时间,烧结温度较低,更均匀的元素扩散,在金刚石和合金基质中更优异的保持力。结果表明,在微波场中,设计的金属粉末可以快速加热至850°C,并且压实混合粉末的加热速率甚至可以达到30Ω·℃/分钟。并且,样品的相对密度和硬度估计为95.14%和98.5HRB,通过微波烧结在850Ω℃下烧结。另外,微观结构分析表现出微观纹理更均匀,表明微波烧结有利于FeCuco和金刚石烧结体中的空隙缺损的降低。还讨论了可能的微波烧结机构。这项工作将为金属矩阵超硬材料工具领域的烧结策略提供新颖的视角。 亮点 < CE:PARA ID =“P0010”查看=“全部”>提出了一种微波无压烧结的新方法,以制造基于Fecuco的金刚石合金工具位。 微波无压烧结Fecuco基合金的微观结构更加均匀,它有缺点缺陷。 与传统烧结相比,微波烧结可以实现更高的密度和硬度。 讨论了微波加热的可能机制。 < / ce:列表 - 项目> ]]>

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