Effect of Particle Size on the Compressibility and Sintering of Titanium Powders

Publish Year: 1398
نوع سند: مقاله ژورنالی
زبان: English
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JR_IJMF-6-2_005

تاریخ نمایه سازی: 9 اسفند 1399

Abstract:

In this research, the effects of the powder particle size on the compaction and sintering of Hydride‌–Dehydride titanium powders are investigated. Commercially pure titanium powders with three different size ranges were utilized. Compaction was accomplished under applied pressures of 200 to 650 MPa. Sintering was carried out at 1100 to 1400 ºC temperatures. The compressibility behavior of the differently-sized powders was studied by measuring the density of the green compacts. The microstructure of produced compacts was studied using scanning electron microscopy. Results showed that the small powders have the least compressibility. The compressibility data was analyzed and studied by common compaction equations. The modified Heckel equation showed the best correspondence. In addition, measuring the density of sintered compacts showed that the small powders had the highest sinterability. The highest amount of sintered density (98% theoretical) was attained for the small powder compacted under 650 MPa and sintered at 1400 ºC. However, the sintering temperature of 1200 ºC was recognized as the most appropriate temperature for the middle and large-sized titanium powders. The results of hardness tests showed that the appropriate mechanical properties could be attained for commercially pure titanium powder compacts by vacuum sintering accomplished at the optimum sintering circumstances.

Authors

Iman Kaseb

Science and Research Branch, Islamic Azad University of Tehran, Tehran, Iran

Mohammad Moazami-Goudarzi

Science and Research Branch, Islamic Azad University of Tehran, Tehran, Iran

Alireza Abbasi

Science and Research Branch, Islamic Azad University of Tehran, Tehran, Iran

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  • [1] X. Guo, L. Ma, A. Inoue, Improved hydrogen storage ...
  • [2] H. Kim, K. Maruyama, Parallel twinning during creep deformation ...
  • [3] J.I. Qazi, J. Rahim, O.N. Senkov, F.H. Froes, Phase ...
  • [4] O.N. Senkov, F.H. Froes, Thermohydrogen processing of titanium alloys, ...
  • [5] G.S. Upadhyaya, Powder metallurgy technology, Cambridge Int Science Publishing, ...
  • [6] A. Hadadzadeh, M.A. Whitney, M.A. Wells, S.F. Corbin, Corbin, ...
  • [7] R. Ge, A new powder compaction equation, International Journal ...
  • [8] R. Panelli, F.A. Filho, A study of a new ...
  • [9] R. Heckel, Density-pressure relationships in powder compaction, Transactions Metallurgy ...
  • [10] M. Moazami-Goudarzi, F. Akhlaghi, Effect of nanosized SiC particles ...
  • [11] R. Machaka, H.K. Chikwanda, Analysis of the cold compaction ...
  • [12] A. Simchi, Effects of lubrication procedure on the consolidation, ...
  • [13] A. Simchi, G. Veltl, Investigation of warm compaction and ...
  • [14] R.M. German, Powder metallurgy science, Metal Powder Industries Federation, ...
  • [15] F. Tang, I.E. Anderson, S.B. Biner, Biner, Solid state ...
  • [16] L. Bolzoni, P.G. Esteban, E.M. Ruiz-Navas. E. Gordo, Influence ...
  • [17] M. Qian, F.H. Froes, Titanium Powder Metallurgy: Science, Technology ...
  • [18] ASM Handbook, Powder metal technologies and applications, Materials Park, ...
  • [19] P.J. Denny, Compaction equations: a comparison of the Heckel ...
  • [20] N.D. Gentis, G. Betz, Compressibility of binary powder formulations: ...
  • [21] R. Boyer, G. Welsch, E.W. Collings, Materials Properties Handbook: ...
  • [22] F. Thummler, An Introduction to Powder Metallurgy, Institute of ...
  • [23] J. Shon, J. Park, K. Cho, J. Hong, N. ...
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