首页> 外文会议>Symposium on Continuous Nanophase and Nanostructured Materials; 20031201-20031205; Boston,MA; US >Preparation and Mechanical Properties of Nanostructured Tungsten Carbide Alloys Strengthened by Carbon Nanotubes
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Preparation and Mechanical Properties of Nanostructured Tungsten Carbide Alloys Strengthened by Carbon Nanotubes

机译:碳纳米管增强纳米结构碳化钨合金的制备及力学性能

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摘要

A novel approach for the synthesis of carbon nanotubes strengthened nanostructured tungsten carbide was investigated, in which nanophase tungsten powders are carburized by C_2H_2 instead of CO and a fraction of decomposed carbons were in situ converted to nanotubes. In this way, the composite powders of nanocrystal WC-Co and carbon nanotubes have been in situ prepared. The composite WC-Co powders were then hot pressed into bulk alloy which shows a exceptionally high microhardness up to 3307 kg/mm~2. It is proposed that carbon nanotubes with extra high Young's modulus (1.8 Tpa) play both roles on strengthening the composite matrix and prohibiting growth of WC grains, which results in the great improvement of the mechanical properties of the samples. The average grain size of the prepared WC-Co hard alloys was estimated to be less than 100 nm. The effect of hot press temperature on the mechanical properties of the prepared alloys was also studied in detail.
机译:研究了一种新的合成碳纳米管增强纳米结构碳化钨的新方法,其中纳米相钨粉通过C_2H_2代替CO渗碳,一部分分解的碳原位转化为纳米管。以此方式,原位制备了纳米晶体WC-Co和碳纳米管的复合粉末。然后将复合WC-Co粉末热压成块状合金,该块状合金显示出高达3307 kg / mm〜2的超高显微硬度。提出具有较高杨氏模量(1.8 Tpa)的碳纳米管在增强复合材料基体和阻止WC晶粒生长方面均起着作用,从而极大地改善了样品的机械性能。所制备的WC-Co硬质合金的平均晶粒尺寸估计小于100nm。还详细研究了热压温度对所制合金力学性能的影响。

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