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首页> 外文期刊>Journal of Materials Science >Solid-state processing of oxidation-resistant molybdenum borosilicide composites for ultra-high-temperature applications
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Solid-state processing of oxidation-resistant molybdenum borosilicide composites for ultra-high-temperature applications

机译:用于超高温应用的抗氧化硼硅化钼钼复合材料的固态处理

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The high-temperature capabilities of multiphase composites based on Mo_5Si_3B_x are examined after solid-state processing and pulsed laser deposition (PLD) coating fabrication approaches. These composites are prepared by mechanical alloying of elemental powders and densified by vacuum hot pressing, which is a scalable processing approach. Chemical analyses of the hot-pressed compacts reveal a consistent 15-22 percent loss of boron, which is primarily due to the high-temperature hot-pressing step. Composites possessing sufficient amounts of boron are evaluated by thermogravimetric studies in temperatures up to 1650 °C in air. One composition demonstrates oxidative stability after long-term (100 h) isothermal conditions, as well as thermal cycling to simulate solar-thermal operation. Hot-pressed samples of composites consisting of Mo_5Si_3B_x + MoSi_2 + MoB are also employed as deposition targets for PLD trials. X-ray diffraction analysis of the resulting films indicates the absence of long-range crystallographic order.
机译:在固态处理和脉冲激光沉积(PLD)涂层制造方法之后,研究了基于Mo_5Si_3B_x的多相复合材料的高温性能。这些复合材料是通过元素粉末的机械合金化制备的,并通过真空热压进行致密化,这是一种可扩展的加工方法。对热压成型坯的化学分析显示,硼的损失始终保持15-22%,这主要是由于高温热压步骤造成的。通过在空气中高达1650°C的温度下进行热重研究,评估了具有足够硼含量的复合材料。一种组合物在长期(100小时)等温条件下表现出氧化稳定性,并具有模拟太阳热能运行的热循环。由Mo_5Si_3B_x + MoSi_2 + MoB组成的复合材料的热压样品也被用作PLD试验的沉积靶。所得膜的X射线衍射分析表明不存在长程晶体学顺序。

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