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高比重钨合金力学性能影响因素分析 被引量:1
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作者 马红磊 胡更开 李树奎 《材料科学与工程学报》 CAS CSCD 北大核心 2003年第5期668-670,共3页
首先考虑液相烧结工艺条件及组分对高比重钨合金微结构和各相性质的影响 ,再从细观力学的角度考虑高体积百分比钨合金微结构及各相性质对复合材料有效力学性质的影响 ,从而架起工艺条件及组分与钨合金力学性能之间关系的桥梁 ,为分析高... 首先考虑液相烧结工艺条件及组分对高比重钨合金微结构和各相性质的影响 ,再从细观力学的角度考虑高体积百分比钨合金微结构及各相性质对复合材料有效力学性质的影响 ,从而架起工艺条件及组分与钨合金力学性能之间关系的桥梁 ,为分析高比重钨合金性能从理论上建立一套方法 ,从材料设计和制备的角度实现对这种材料性能优化提供一种方案。 展开更多
关键词 钨合金 力学性能 液相烧结工艺 LPS 粉末冶金 细观力学
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Microstructure and properties of liquid-phase sintered tungsten heavy alloys by using ultra-fine tungsten powders
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作者 于洋 王尔德 《中国有色金属学会会刊:英文版》 CSCD 2004年第5期912-917,共6页
The microstructure and properties of liquid-phase sintered 93W-4.9Ni-2.1Fe tungsten heavy alloys using ultra-fine tungsten powders (medium particle size of 700 nm) and original tungsten powders (medium particle size o... The microstructure and properties of liquid-phase sintered 93W-4.9Ni-2.1Fe tungsten heavy alloys using ultra-fine tungsten powders (medium particle size of 700 nm) and original tungsten powders (medium particle size of 3 μm) were investigated respectively. Commercial tungsten powders (original tungsten powders) were mechanically milled in a high-energy attritor mill for 35 h. Ultra-fine tungsten powders and commercial Ni, Fe powders were consolidated into green compacts by using CIP method and liquid-phase sintering at 1 465 ℃ for 30 min in the dissociated ammonia atmosphere. Liquid-phase sintered tungsten heavy alloys using ultra-fine tungsten powders exhibit full densification (above 99% in relative density) and higher strength and elongation compared with conventional liquid-phase sintered alloys using original tungsten powders due to lower sintering temperature at 1 465 ℃ and short sintering time. The mechanical properties of sintered tungsten heavy alloy are found to be mainly dependent on the particles size of raw tungsten powders and liquid-phase sintering temperature. 展开更多
关键词 微观结构 钨合金 液相烧结工艺 机械性能 BCC 温度
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