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固相颗粒粉末冶金泡沫铝的性能研究 被引量:5
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作者 王展光 杜晟连 《粉末冶金工业》 CAS 北大核心 2014年第2期29-32,共4页
本文在加入粒径为0.5μm SiC颗粒制备出复合泡沫铝的基础上,对其材料进行单向压缩试验,研究其在受力情况下的力学性能、吸能能力和吸能效率。结果表明:SiC颗粒增强粉末冶金泡沫铝的压缩应力应变曲线与其他多孔泡沫金属相似;SiC颗粒增强... 本文在加入粒径为0.5μm SiC颗粒制备出复合泡沫铝的基础上,对其材料进行单向压缩试验,研究其在受力情况下的力学性能、吸能能力和吸能效率。结果表明:SiC颗粒增强粉末冶金泡沫铝的压缩应力应变曲线与其他多孔泡沫金属相似;SiC颗粒增强粉末冶金泡沫铝压缩应力应变曲线,呈现线弹性变形、屈服平台阶段、致密化阶段;其屈服强度随SiC颗粒的体积百分含量增大而增大。 展开更多
关键词 SIC颗粒 粉末冶金泡沫铝 压缩应力应变曲线 吸能能力
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SiC颗粒对粉末冶金泡沫铝的力学性能影响 被引量:1
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作者 李书琴 杨维汉 +3 位作者 蔡萍 王展光 谢世坤 胡景智 《轻金属》 CSCD 北大核心 2012年第4期56-59,64,共5页
本文在SiC颗粒增强粉末冶金泡沫铝压缩试验的基础上,研究SiC颗粒对其力学性能、吸能能力和吸能效率的影响。结果表明:SiC颗粒增强粉末冶金泡沫铝压缩应力应变曲线,呈现线弹性变形、屈服平台阶段、致密化阶段;其屈服强度随SiC颗粒的体积... 本文在SiC颗粒增强粉末冶金泡沫铝压缩试验的基础上,研究SiC颗粒对其力学性能、吸能能力和吸能效率的影响。结果表明:SiC颗粒增强粉末冶金泡沫铝压缩应力应变曲线,呈现线弹性变形、屈服平台阶段、致密化阶段;其屈服强度随SiC颗粒的体积百分含量增大而增大。 展开更多
关键词 SIC颗粒 粉末冶金泡沫铝 压缩应力应变曲线 吸能能力
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Effects of foaming parameters on microstructure and compressive properties of aluminum foams produced by powder metallurgy method 被引量:6
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作者 T.GERAMIPOUR H.OVEISI 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2017年第7期1569-1579,共11页
Semi open-cell aluminum foams having channels between individual cells were produced using low cost CaCO3foamingagent and applying the powder compact melting process.To this end,the aluminum and CaCO3powder mixtures w... Semi open-cell aluminum foams having channels between individual cells were produced using low cost CaCO3foamingagent and applying the powder compact melting process.To this end,the aluminum and CaCO3powder mixtures were coldcompacted into dense cylindrical precursors for foaming at specific temperatures under air atmosphere.The effects of severalparameters including precursor compaction pressure,foaming agent content as well as temperature and time of the foaming processon the cell microstructure,linear expansion,relative density and compressive properties were investigated.A uniform distribution ofcells with sizes less than100μm,which form semi open-cell structures with relative densities in the range of55.4%-84.4%,wasobtained.The elevation of compaction pressure between127-318MPa and blowing agent up to15%(mass fraction)led to anincrease in the linear expansion,compressive strength and densification strain.By varying the foaming temperature from800to1000°C,all of the investigated parameters increased except compressive strength and relative density.The results indicated theoptimal foaming temperature and time as900°C and10-25min,respectively. 展开更多
关键词 aluminum foam powder metallurgy CACO3 foaming agent semi open-cell microstructure EXPANSION compressive properties
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