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Grain Refinement and Improvement in Mechanical Properties of Nb-Al-Si Intermetallic Alloys

机译:Nb-Al-Si金属间化合物的晶粒细化和力学性能的改善

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摘要

Nb-Al-Si intermetallic alioys having submicron crystal grains have been produced using the self-propagating high-temperature synthesis (SHS, or combustion synthesis) method followed by the bead milling technique and the spark plasma sintering (SPS) method. The intermetallic alloys were combustion-synthesized from elemental powders of niobium, aluminum and silicon, and then ball-milled and bead-milled to reduce the alloy powder particle size. The milled alloy powder was consolidated using the SPS method with a sintering time of 300 s at a sintering temperature of 1 373 K. The increase in milling time reduced the grain size of the sintered alloy. Particularly, the grain size was dramatically reduced when zirconia beads of a 0.2-mm diameter were used after milling with zirconia balls of a 10-mm diameter. The Vickers hardness, bending strength and fracture toughness of the sintered alloys increased with the decrease in grain size.
机译:使用自蔓延高温合成(SHS或燃烧合成)方法,珠磨技术和火花等离子体烧结(SPS)方法,已生产出具有亚微米晶粒的Nb-Al-Si金属间化合物。金属间合金由铌,铝和硅的元素粉末燃烧合成,然后进行球磨和珠磨,以减小合金粉末的粒度。使用SPS方法在13003 K的烧结温度下以300 s的烧结时间将磨碎的合金粉末固结。磨碎时间的增加减小了烧结合金的晶粒尺寸。特别地,在与直径为10mm的氧化锆球研磨之后使用直径为0.2mm的氧化锆珠时,晶粒尺寸显着减小。烧结合金的维氏硬度,弯曲强度和断裂韧性随着晶粒尺寸的减小而增加。

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