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activated sintering
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    Four Niaddition patterns of high density Wbase alloys were studied. The results show that the alloys obtained by addition of Nickel in a coreduction way can reduce their sindering temperature due to great activated sintering action in liquid phase sintering, and avoid the formation of intermetallic compounds of fragil phase WNi4 due to extremely fine crystal grains of tungsten. In addition, the alloys have good physical and mechanical performances.
    对镍加入到钨基高密度合金中的4种添加方式进行了研究,结果表明,镍以共还原法的添加方式加入得到的合金,在液相烧结时活化烧结作用大,可降低合金的烧结温度,钨晶粒微细,可防止脆性相WNi4金属间化合物的形成,同时合金具有较好的物理力学性能。
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  activated sintering
The use of a new plasma- activated sintering (PAS) process to densify aluminum nitride (AIN) powders to nearly full theoretical density (97 to >amp;gt;99%) in 5 to 10 min was investigated.
      
Here these separate contributions are isolated through careful control of the co-sintering process for W/Al2O3 bilayers, and in particular through control of the W-layer properties by using the process of activated sintering.
      
This end-product was consolidated in vacuum at 1963 K with a pressure of 19.6 to 38.2 MPa for 0.3 ks, using a plasma-activated sintering (PAS) method.
      
Synthesizing of nanocomposite WC/MgO powders by mechanical solid-state reduction and subsequent plasma-activated sintering
      
Syntheses of full-density nanocrystalline titanium nitride compacts by plasma-activated sintering of mechanically reacted powder
      
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Four Niaddition patterns of high density Wbase alloys were studied. The results show that the alloys obtained by addition of Nickel in a coreduction way can reduce their sindering temperature due to great activated sintering action in liquid phase sintering, and avoid the formation of intermetallic compounds of fragil phase WNi4 due to extremely fine crystal grains of tungsten. In addition, the alloys have good physical and mechanical performances.

对镍加入到钨基高密度合金中的4种添加方式进行了研究,结果表明,镍以共还原法的添加方式加入得到的合金,在液相烧结时活化烧结作用大,可降低合金的烧结温度,钨晶粒微细,可防止脆性相WNi4金属间化合物的形成,同时合金具有较好的物理力学性能。

In the paper, influences of activating sintering elements, alloying elements, impurity elements and chemicals on the microstructhe and mechanical properties of tungsten and tungsten alloy are reviewed, and some sugestionsare provided for developing new tungsten alloys and composites with improved mechanical properties.

综述了活化烧结元素、合金化元素、杂质元素及化合物对钨合金组织和性能的影响,并对新型钨基合金及其复合材料的研究、开发提出了一些看法。

In the paper, influences of activating sintering elements, alloying elements, impurity elements and chemicals on the dricrostructure and mechanical properies Of tungsten and tungsten alloy are reviewed, and some suggestions are provided for developing new tungsten alloys and composites with improved mechanical properties.

综述了活化烧结元素、合金化元素、杂质元素及化合物对钨合金组织和性能的影响,并对新型钨基合金及其复合材料的研究、开发提出了一些看法。

 
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