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Synthesis and viscoelasticity of Zr-based bulk glassy alloy containing ZrC particles

机译:ZRC粒子玻璃玻璃合金的合成与粘弹性

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Cylindrical composite Zr{sub}(55)Al{sub}(10)Ni{sub}5Cu{sub}(30) bulk glassy alloys containing up to 17.5 vol. % ZrC particles were prepared with using an in-situ reaction forming ZrC between graphite particles with diameters of ~ 10 μm and Zr metal in molten alloy during arc-melting followed by copper mold casting. Because the in-situ reaction suppresses an agglomeration and segregation among dispersoids in the glassy matrix, mechanical properties of the composite materials at room temperature, especially toughness and plastic elongation, were significantly improved from the Zr{sub}(55)Al{sub}(10)Ni{sub}5Cu{sub}(30) single glassy phase. In order to demonstrate the influence of the dispersed ZrC particles on workability of the supercooled liquid of the alloy, viscous flow behaviors under constant strain-rates were investigated. Although the Newtonian viscosity becomes larger, the composite material has the same viscoelastic properties, i.e., "shear thinning", and excellent workability as the single glassy phase in spite of the dispersed particles.
机译:圆柱形复合Zr {sub}(55)Al {sub}(10)Ni {sub} 5cu {sub}(30)含有高达17.5 Vol的散装玻璃合金。在熔融合金中使用在熔融合金中的石墨颗粒之间使用在石墨颗粒之间使用原位反应形成Zrc,在熔融合金中的铜金属之间的原位反应形成Zrc,然后进行铜模铸件。因为原位反应抑制了玻璃基质中的分散体之间的聚集和偏析,因此从Zr {sub}(55)}(55)}(55)}显着改善了室温下的复合材料的机械性能,尤其是韧性和塑料伸长率。 (10)Ni {Sub} 5CU {Sub}(30)单玻璃相。为了证明分散的ZRC颗粒对合金过冷液体的可加工性的影响,研究了恒定应变率下的粘性流动性。虽然牛顿粘度变大,但复合材料具有相同的粘弹性,即“剪切稀释”,尽管分散的颗粒尽管是单玻璃相的优异的可加工性。

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