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Inflammability of Melt-Spun Zr-Based Metallic Glasses

机译:熔纺Zr基金属眼镜的易燃性

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Zr-based metallic glasses can be produced by melt-spinning as thin ribbons, in a number of cases also by more conventional casting methods as bulk material. For any application, as a structural material, a material for hydrogen or deuterium storage as well as for heterogeneous catalysis, adequate oxidation and corrosion resistance have to be ensured. Some Zr-based metallic glasses, however, are known to oxidize even at very low temperatures. Therefore, it is urgent to verify whether these materials are combustible or even exhibits spontaneous ignition. The inflammability of several melt-spun ribbons, in particular Zr_(67)Fe_(33) was studied by heating with an increasing electrical current or by insertion into a flame. The microstructures produced during the burning was analyzed by optical as well as electron microscopy and X-ray diffraction. These results allow conclusions on the proceeding oxidation processes which will be compared to those during controlled isothermal oxidation at lower temperatures. Oxidation resistance near T_g and ignition resistance was observed to increase in the sequence of the late transition metals: Fe→Ni→Cu. Glowing or ignition of the ribbons is correlated with their melting as confirmed by microstructural analysis. The scale consists of broad monoclinic ZrO_2 columns on top of a very thick (molten) matrix enriched with the late transition metal.
机译:Zr基金属玻璃可以通过熔融纺丝作为薄带制造,在多种情况下也通过更传统的铸造方法作为散装材料。对于任何应用,作为结构材料,必须确保氢气或氘储存的材料以及异质催化,足够的氧化和耐腐蚀性。然而,一些Zr基金属玻璃即使在非常低的温度下也可以氧化。因此,迫切需要验证这些材料是否可燃甚至呈现自发点火。通过使用增加的电流或插入火焰,通过加热研究几个熔纺带的炎性丝带,特别是Zr_(67)Fe_(33)。通过光学以及电子显微镜和X射线衍射分析在燃烧期间产生的微结构。这些结果允许在进行氧化过程中得出结论,这将与在较低温度下的受控等温氧化期间进行比较。在晚期过渡金属的序列中增加了T_G附近的抗氧化抗性和点火抗性的抗氧化抗性:Fe→Ni→Cu。通过通过微观结构分析证实,丝带的发光或点火与它们的熔化相关。尺度由宽的单斜型ZrO_2柱组成,在非常厚的(熔融)基质的顶部,富含后过渡金属。

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