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Articles

Behaviour of metal powders during cold and warm compaction

Pages 281-287 | Published online: 19 Jul 2013

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P G Esteban, L Bolzoni, E M Ruiz-Navas & E Gordo. (2011) PM processing and characterisation of Ti–7Fe low cost titanium alloys. Powder Metallurgy 54:3, pages 242-252.
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Articles from other publishers (19)

Defeng Wang, Xiaohan Liu, Meng Li, Jiale Lv, Xizhong An, Quan Qian, Haitao Fu, Hao Zhang, Xiaohong Yang & Qingchuan Zou. (2022) Microstructure evolution and densification behavior of TiC/316L composite powders during cold/warm die compaction and solid-state sintering: 3D particulate scale numerical modelling and experimental validation. Advanced Powder Technology 33:8, pages 103667.
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Defeng Wang, Meng Li & Xizhong An. (2022) Numerical study on the warm compaction and solid-state sintering of TiC/316L composite powders from particulate scale. Powder Technology 402, pages 117361.
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Xiaobin Hu, Zili Liu, Xiqin Liu, Huanjian Xie, Cheng Zhang & Yuwen Zou. (2021) Effect of Warm Compaction and Lubricant on Microstructure and Properties of Iron-Based Alloy. Journal of Materials Engineering and Performance 31:4, pages 3382-3391.
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S S Jafari & G H Majzoobi. (2021) A study on damage evolution in Cu-TiO 2 composite fabricated at different temperatures and strain rates . Materials Research Express 8:9, pages 095004.
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Shucheng Dong, Baicheng Wang, Yuchao Song, Guangyu Ma, Huiyan Xu, Dmytro Savvakin & Orest Ivasishin. (2021) Comparative Study on Cold Compaction Behavior of TiH2 Powder and HDH-Ti Powder. Advances in Materials Science and Engineering 2021, pages 1-15.
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K Rahmani, GH Majzoobi & A Atrian. (2019) Simultaneous effects of strain rate and temperature on mechanical response of fabricated Mg–SiC nanocomposite. Journal of Composite Materials 54:5, pages 659-668.
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Zili Liu, Haohao Li, Xiqin Liu, Dong Li, Xin Huang, Zhendong Fang & Yuwen Zou. (2019) Effect of warm compaction lubricant on the properties of Fe-based powder metallurgy materials. Materials Research Express 6:4, pages 046534.
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Carlos Romero, Fei Yang & Leandro Bolzoni. (2018) Fatigue and fracture properties of Ti alloys from powder-based processes – A review. International Journal of Fatigue 117, pages 407-419.
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G H Majzoobi, K Rahmani & A Atrian. (2018) Temperature effect on mechanical and tribological characterization of Mg–SiC nanocomposite fabricated by high rate compaction. Materials Research Express 5:1, pages 015046.
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GH Majzoobi, H Bakhtiari, A Atrian, MK Pipelzadeh & SJ Hardy. (2015) Warm dynamic compaction of Al6061/SiC nanocomposite powders. Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials: Design and Applications 230:2, pages 375-387.
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Mingtu Jia & Deliang Zhang. 2015. Titanium Powder Metallurgy. Titanium Powder Metallurgy 183 200 .
S.D. Luo, Y.F. Yang, G.B. Schaffer & M. Qian. (2014) Warm die compaction and sintering of titanium and titanium alloy powders. Journal of Materials Processing Technology 214:3, pages 660-666.
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A. Simchi & A.A. Nojoomi. 2013. Advances in Powder Metallurgy. Advances in Powder Metallurgy 86 108 .
P. G. Esteban, Y. Thomas, E. Baril, E. M. Ruiz-Navas & E. Gordo. (2011) Study of compaction and ejection of hydrided-dehydrided titanium powder. Metals and Materials International 17:1, pages 45-55.
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S.H. Huo, M. Qian, G.B. Schaffer & E. Crossin. 2011. Fundamentals of Aluminium Metallurgy. Fundamentals of Aluminium Metallurgy 655 701 .
Renáta Oriňáková, Miriam Kupková, Andrej Oriňák, Andrea Fedorková & Eva Dudrová. (2010) Synthesis of polypyrrole coatings on surface of iron particles. Surface and Interface Analysis 42:12-13, pages 1706-1711.
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P.G. Esteban, E.M. Ruiz-Navas & E. Gordo. (2010) Influence of Fe content and particle size the on the processing and mechanical properties of low-cost Ti–xFe alloys. Materials Science and Engineering: A 527:21-22, pages 5664-5669.
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H.R. Hafizpour, A. Simchi & S. Parvizi. (2010) Analysis of the compaction behavior of Al–SiC nanocomposites using linear and non-linear compaction equations. Advanced Powder Technology 21:3, pages 273-278.
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Z. Razavi Hesabi, H.R. Hafizpour & A. Simchi. (2007) An investigation on the compressibility of aluminum/nano-alumina composite powder prepared by blending and mechanical milling. Materials Science and Engineering: A 454-455, pages 89-98.
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