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納米W-Cu合金熱壓收縮動力學曲線特征

Shrinkage Kinetics of Nanoscaled W-Cu Alloy during Hotpressing Sintering

  • 摘要: 采用納米W-Cu合金粉進行熱壓燒結,研究熱壓壓力、熱壓氣氛、鎢粉粒度對熱壓燒結收縮動力學曲線的影響,觀察和測定合金中鎢晶粒的長大,測定部分力學性能,實驗結果表明,采用納米W-Cu合金粉在H_2中熱壓燒結的方法可以在較高壓力、很低的燒結溫度下制成鎢晶粒的超細晶粒W-Cu合金,其相對密度可達98.8%,高溫500℃的力學性能遠遠超過常規W-Cu合金。

     

    Abstract: The effect of pressure, gas atmosphere and W particle size on the shrinkage kinetic curve of nano-scaled W-Cu composite powders during hot pressing were studied. The growing of W grains in W-Cu alloys was analyzed. Some mechanical properties were measured. The results show that, using composite nano-powders of W-Cu, the nano-scaled W-Cu alloy in which W particle size is not more than 0.5μm can be obtained through hot pressing in H2 atmosphere and under a high pressure of 75 MPa at low sintering temperatures of 970-1200℃. The relative density of the ultrafine grained alloy can reach 98.8%. The mechanical properties at 500℃ greatly exceed those of the conventional W-Cu alloy.

     

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