首页> 外文会议>EPD congress;TMS annual meeting amp; exhibition; 20090215-19;20090215-19; San Francisco, CA(US);San Francisco, CA(US) >SYNTHESIS OF NANOSIZED TUNGSTEN POWDER BY A THERMAL PLASMA PROCESS AND ITS SINTERING BEHAVIOR
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SYNTHESIS OF NANOSIZED TUNGSTEN POWDER BY A THERMAL PLASMA PROCESS AND ITS SINTERING BEHAVIOR

机译:热等离子体合成纳米钨粉及其烧结行为

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Nanosized tungsten powder was synthesized by the hydrogen reduction of ammonium paratungstate (APT) in thermal plasma. The effects of operating conditions on the product composition and particle size were investigated. The particle size of synthesized W powder was less than 30 nm in all cases tested. The sintering behavior of the synthesized powder (25 nm average size) was then investigated and compared with those of commercial W powder of 500 nm average size and W powder of 23 nm average size produced by milling the commercial powder. The sintering was done at 1400℃ with various holding times. The hardness of the resulting compact from the synthesized W powder (315 VHN) was similar to that from the milled W powder (309 VHN), but the plasma-synthesized powder had a much lower tendency to form cracks. The compacts of both nanopowders were significantly harder than that of the commercial powder (192 VHN).
机译:通过在热等离子体中将对钨酸铵(APT)进行氢还原反应,合成了纳米级钨粉。研究了操作条件对产品组成和粒度的影响。在所有测试的情况下,合成的W粉末的粒径均小于30 nm。然后研究了合成粉末(平均粒径为25 nm)的烧结行为,并将其与500纳米平均粒径的商业W粉末和23纳米平均粒径的W粉末进行了比较。烧结是在1400℃,不同保温时间下进行的。由合成的W粉末(315VHN)得到的压块的硬度与由磨碎的W粉末(309VHN)得到的压块的硬度相似,但是等离子体合成的粉末形成裂纹的趋势低得多。两种纳米粉末的压实物都比市售粉末(192 VHN)坚硬。

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