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Effect of High Energy Milling Time of the Aluminum Bronze Alloy Obtained by Powder Metallurgy with Niobium Carbide Addition

机译:粉末冶金加碳化铌获得铝青铜合金高能铣削时间的影响

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The aluminum bronze alloy is part of a class of highly reliable materials due to high mechanical strength and corrosion resistence being used in the aerospace and shipbuilding industry. It's machined to produce parts and after its use cycle, it's discarded, but third process is considered expensive and besides not being correct for environment reasons. Thus, reusing this material through the powder metallurgy (PM) route is considered advantageous. The aluminum bronze chips were submitted to high energy ball milling process with 3% of niobium carbide (NbC) addition. The NbC is a metal-ceramic composite with a ductile-brittle behaviour. It was analyzed the morphology of powders by scanning electron microscopy as well as particle size it was determined. X ray diffraction identified the phases and the influence of milling time in the diffractogram patterns. Results indicates that milling time and NbC addition improves the milling efficiency significantly and being possible to obtain nanoparticles.
机译:铝青铜合金是一类高度可靠的材料的一部分,这是因为其在航空航天和造船业中使用的高机械强度和耐腐蚀性。它经过机械加工以生产零件,并且在其使用周期结束后被丢弃,但是第三道工序被认为是昂贵的,而且由于环境原因不正确。因此,通过粉末冶金(PM)路线重新使用该材料被认为是有利的。铝青铜屑经过3%的碳化铌(NbC)加入高能球磨工艺。 NbC是一种具有延性脆性的金属陶瓷复合材料。通过扫描电子显微镜分析了粉末的形态以及确定的粒度。 X射线衍射确定了衍射图谱中的相和研磨时间的影响。结果表明,研磨时间和添加NbC可以显着提高研磨效率,并且有可能获得纳米颗粒。

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