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2005年03月04日

【期刊论文】Mechanical, friction and wear behaviors of a novel high-strength wear-resisting aluminum bronze

李元元, Yuanyuan Li, Tungwai Leo Ngai, Wei Xia

Wear 197(1996)130-136,-0001,():

-1年11月30日

摘要

By studying microstructural effects on the mechanical and tribological behaviors of aluminum bronzes, a novel high-strength wear-resisting aluminum bronze (KK) has been developed by optimizing microstructures, modifying, adding special elements and controlling the casting process. The mechanical properties, friction and wear behavior of this alloy have been tested and compared with two other commercial aluminum bronzes of the same class. Experimental results show that the properties of the novel KK bronze are much superior to those of the other bronzes.

Aluminum bronze, Wear resisting, Friction and wear, Modify

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2005年03月04日

【期刊论文】Effects of die angle on microstructures and mechanical properties of AZ31 magnesium alloy processed by equal channel angular pressing①

李元元, LI Yuan-yuan, LIU Ying, NGAI Tungwai Leo, ZHANG Da-tong, GUO Guo-wen, CHEN Wei-ping

Vol. 14 No.1 Trans. Nonferrous Met. Soc. China Feb. 2004,-0001,():

-1年11月30日

摘要

AZ31 Mg alloy was prepared through equal channel angular pressing (ECAP) by Bc route in two different dies, in which the intersecting angles between channels are 90

AZ31 magnesium alloy, ECAP, die angle

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2005年03月04日

【期刊论文】Effect of sintering parameters on warm compacted iron-based material①

李元元, LI Yuan-yuan, XIAO Zhi-yu, NGAI Tungwai Leo, XIA Wei, CHEN Wei-ping

Vol. 13 No.6 Trans. Nonferrous Met. Soc. China Dec. 2003,-0001,():

-1年11月30日

摘要

Iron-based powder metallurgy material was prepared by warm compaction at 125℃ using a compacting pressure of 700MPa. Sintering temperature ranging from 1100℃ to 1300℃ and sintering time ranging from 40min to 80min were used to study the effects of sintering parameters on the compacts. Die wall lubrication polytetrafluoroethylene (PTFE) emulsion was also applied in combination with warm compaction in hope to increase the compact density and the mechanical properties of the sintered material. Green and sintered density, spring back effect and sinter shrinkage were measured. Mechanical properties of both as-sinter and heat treated samples were also measured. Results show that mechanical properties of the sintered compacts increase with the increase of sintering temperature and sintering time. Sample prepared by die wall lubricated warm compaction always shows higher density and mechanical properties.

warm compaction, powder metallurgy, iron-based material, sintering, die wall lubrication

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2005年03月04日

【期刊论文】Warm compacted NbC particulate reinforced iron-base composite(I)① --Effect of fabrication parameters

李元元, LI Yuan-yuan, XIAO Zhi-yu, NGAI Tungwai Leo, ZHOU Zhao-yao, SHAO Ming

Vol. 12 No.4 Trans. Nonferrous Met. Soc. China Aug. 2002,-0001,():

-1年11月30日

摘要

he fine NbC particles are embedded on the surface of iron particles and evenly distributed in the mixed powders. Warm compaction was used not only to increase the green density but also to improve the formability of the mixed powder and to improve the compact's green strength to facilitate handling. The influences of fabrication parameters such as ball milling time, annealing temperature and time, warm compaction temperature, sintering temperature and sintering time were studied. Compacts with a relative sintered density of 97% and a tensile strength of more than 800MPa can he obtained by using a ball milling time of 5h, an annealing temperature of 800℃, a compaction pressure of 600MPa, warm compaction temperatore of 120℃, sintering temperature of 1 280℃, and sintering time of 80min. The shrinkage at this sintering condition was approximately 4.3%.

iron-base composite, NbC particulate, warm compaction powder metallurgy

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2005年03月04日

【期刊论文】Effect of die wall lubrication on warm compaction powder metallurgy

李元元, Y.Y. Li*, T.L. Ngai, D.T. Zhang, Y, Long, W. Xia

Journal of Materials Processing Technology 129(2002)354-358,-0001,():

-1年11月30日

摘要

Die wall lubrication was applied on warm compaction powder metallurgy in the hope to reduce the concentration level of the admixed lubricant, since lubricant is harmful to the mechanical properties of the sintered material. Iron-based samples were prepared by die wall lubricated warm compaction at 135 and 175℃, using polytetrafluoroethylene (PTFE) emulsion as the die wall lubricant. Compacting pressures of 700 and 550MPa were used. An admixed lubricant concentration ranging from 0 to 0.6wt.% was used in this study. The results show that in addition to a decrease in ejection forces, the green density of the compacts increased linearly with the decrease in the admixed lubricant content. The mechanical properties of the sintered compacts increase sharply when the admixed lubricant concentration was reduced to 0.125wt.% or less, No scoring was observed in all of the experiments.

Warm compaction, Die wall lubrication, Powder metallurgy

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    吉林大学,吉林

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