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A FABRICATION PROCESS OF FE-C NANOCOMPOSITE POWDER USING PLASMA ARC DISCHARGE

机译:等离子弧放电制备Fe-C纳米复合粉的工艺

摘要

the invention the plasma arc discharge (Plasma Arc Diacharge) using the iron (Fe) - carbon (C) nanocomposite powder relates to the manufacturing process, pure iron (Fe) or iron (Fe) with the positive (+) and the negative electrode alloys of the available raw material rods 124 (-), the electrode (122) with argon (Ar) plasma in the atmosphere arc generation step of generating an arc (S10) with, the arc generation step (S10) powder to be a nanocomposite powder produced by melting and evaporating the material rod (124) using a plasma arc heat generated through the forming step ( S20) and, is configured to include a collecting step (S30) for collecting the nanocomposite powder produced through the powder forming step (S20), the powder forming step (S20), the hydrogen (H 2 ) and methane (CH 4 mixed gas is added to the ), the arcing electrode in the step (S10) (122) is tungsten (W), molybdenum (Mo), graphite (Graphite) or characterized by any one of a molybdenum alloy. With this configuration, the existing solid and producing a nanocomposite powder has a superior performance in comparison to the cohesion and the drawing order of a nanocomposite powder manufacturing process of the liquid there is a possible advantage.
机译:使用铁(Fe)-碳(C)纳米复合粉的等离子弧放电(Plasma Arc Diacharge)涉及制造工艺,涉及纯铁(Fe)或带有正(+)和负电极的铁(Fe)大气中产生电弧的步骤(S10)的电弧产生步骤(S10)中的粉末为纳米复合材料,在大气中产生可用的原料棒124(-)的合金,带有氩(Ar)等离子体的电极(122)和电弧通过使用在形成步骤(S20)中产生的等离子弧热熔化并蒸发材料棒(124)产生的粉末,并配置为包括收集步骤(S30),用于收集通过粉末形成步骤(S20)产生的纳米复合粉末),粉末形成步骤(S20),氢气(H 2 )和甲烷(CH 4 混合气体添加到)中,步骤( S10)(122)是钨(W),钼(Mo),石墨(Graphite)或以钼合金中的任何一种为特征。通过这种构造,与液体的纳米复合粉末制造过程的内聚力和拉伸顺序相比,现有的固体和生产的纳米复合粉末具有优异的性能,存在可能的优点。

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