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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Effects of niobium particles on the wear behavior of powder metallurgical gamma-TiAl alloy in different environments
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Effects of niobium particles on the wear behavior of powder metallurgical gamma-TiAl alloy in different environments

机译:铌颗粒对不同环境粉末冶金γ合金磨损行为的影响

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The wear behavior of a powder metallurgical gamma-TiAl alloy, Ti-45Al-5Nb-0.4W + 2Nb (in at. %), containing Nb particles was investigated using pin-on-disk wear tests at room temperature. The dry sliding wear tests were performed against a zirconia disk in different environments: argon, a hydrogen in nitrogen mixture, air and oxygen. The wear rates of the TiAl pins were significantly greater in the presence of oxygen but little affected by water vapor or molecular hydrogen. The worn surface of the TiAl pins and the wear debris were examined using both a scanning electron microscope and an X-ray diffractometer. The tribolayer in the Nb rich area near the worn tip of the pin was investigated using transmission electron microscopy on specimens prepared by focused ion beam milling. It was found that both pure Nb particle residues present in the beta phase of the alloy and new compounds precipitated in the Nb-rich area around the Nb particles substantially enhanced the wear-resistance. The zirconia disk underwent a phase transformation induced by the high stresses and temperature during the wear tests. The abrasive particles produced during the wear testing, which largely consisted of the zirconia particles, were found to be embedded into a tribolayer on the worn tips of the TiAl pins. The results indicate that the main wear mechanisms of the (Ti-45Al-5Nb-0.4W) + 2Nb alloy were two-body and three-body abrasive wear, some delamination, and plastic deformation.
机译:在室温下使用销盘磨损试验研究了粉末冶金γ-0.4W + 2NB(在0.%)的粉末冶金γ-0.4W + 2NB(in in。%)的磨损行为。在不同环境中对氧化锆盘进行干滑动磨损试验:氩气,氮气混合物,空气和氧气的氢气。在氧气存在下,Tial销的磨损率明显更大,但受水蒸气或分子氢的影响很少。使用扫描电子显微镜和X射线衍射仪检查Tial销和磨损碎片的磨损表面。使用通过聚焦离子束铣削制备的标本上的透射电子显微镜研究销附近的NB富峰孔附近的富有区域。发现,在Nb颗粒周围的Nb富含Nb的区域中沉淀的合金的β相和新化合物中存在的纯Nb颗粒残基显着提高了耐磨性。氧化锆盘在磨损试验期间接受了由高应力和温度引起的相变。在主要由氧化锆颗粒组成的磨损测试期间产生的磨料颗粒被发现嵌入在Tial销的磨损尖端上的暗影层中。结果表明(Ti-45Al-5nb-0.4W)+ 2NB合金的主磨损机制是双体和三体磨料磨损,一些分层和塑性变形。

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