372
Views
56
CrossRef citations to date
0
Altmetric
Articles

Microstructure and mechanical properties of cp-titanium produced by spark plasma sintering

Pages 59-65 | Published online: 19 Jul 2013

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (8)

Mohammad Abedi, Saeed Sovizi, Abolfazl Azarniya, Diletta Giuntini, Melica Esmaeeli Seraji, Hamid Reza Madaah Hosseini, Chinappan Amutha, Seeram Ramakrishna & Alexander Mukasyan. (2023) An analytical review on Spark Plasma Sintering of metals and alloys: from processing window, phase transformation, and property perspective. Critical Reviews in Solid State and Materials Sciences 48:2, pages 169-214.
Read now
N. S. Weston, B. Thomas & M. Jackson. (2019) Processing metal powders via field assisted sintering technology (FAST): a critical review. Materials Science and Technology 35:11, pages 1306-1328.
Read now
A. S. Chua, M. Brochu & D. P. Bishop. (2015) Spark plasma sintering of prealloyed aluminium powders. Powder Metallurgy 58:1, pages 51-60.
Read now
R. Yamanoglu, W. Bradbury, E. Karakulak, E. A. Olevsky & R. M. German. (2014) Characterisation of nickel alloy powders processed by spark plasma sintering. Powder Metallurgy 57:5, pages 380-386.
Read now
K. Crosby, L. L. Shaw, C. Estournes, G. Chevallier, A. W. Fliflet & M. A. Imam. (2014) Enhancement in Ti–6Al–4V sintering via nanostructured powder and spark plasma sintering. Powder Metallurgy 57:2, pages 147-154.
Read now
N Vicente, A Fedrizzi, N Bazzanella, F Casari, F Buccioti & A Molinari. (2013) Microstructure of interface of SPS co-sintered and sinter bonded cp2-Ti and Co–28Cr–6Mo. Powder Metallurgy 56:2, pages 143-148.
Read now
S. Diouf, C. Menapace & A. Molinari. (2012) Study of effect of particle size on densification of copper during spark plasma sintering. Powder Metallurgy 55:3, pages 228-234.
Read now
RandallM. German. (2010) Coarsening in Sintering: Grain Shape Distribution, Grain Size Distribution, and Grain Growth Kinetics in Solid-Pore Systems. Critical Reviews in Solid State and Materials Sciences 35:4, pages 263-305.
Read now

Articles from other publishers (48)

Ali Mohammad Ali Aljafery, Abdalbseet A. Fatalla & Julfikar Haider. (2023) Powder Metallurgy Preparation and Characterization of Titanium-Titanium Diboride Composite Targeted for Dental Implant. Journal of Composites Science 7:9, pages 353.
Crossref
K. Showkat Ali, R. Karunanithi, M. Prashanth, S. Sivasankaran, B. Subramanian & H. Siddhi Jailani. (2022) Structure and mechanical properties of in-situ synthesized α-Ti/TiO2/TiC hybrid composites through mechanical milling and spark plasma sintering. Ceramics International 48:8, pages 11215-11227.
Crossref
Leandro Bolzoni. 2022. Encyclopedia of Materials: Metals and Alloys. Encyclopedia of Materials: Metals and Alloys 353 361 .
Samson Olaitan Jeje, Mxolisi Brendon Shongwe, Azeez Lawan Rominiyi & Peter Apata Olubambi. (2021) Spark plasma sintering of titanium matrix composite—a review. The International Journal of Advanced Manufacturing Technology 117:9-10, pages 2529-2544.
Crossref
X. Y. Li, Z. H. Zhang, X. W. Cheng, G. J. Huo, S. Z. Zhang & Q. Song. (2021) The Development and Application of Spark Plasma Sintering Technique in Advanced Metal Structure Materials: A Review. Powder Metallurgy and Metal Ceramics 60:7-8, pages 410-438.
Crossref
Ce Zhang, Fang Yang, Cunguang Chen & Zhimeng Guo. (2021) The microstructure and mechanical properties of extra low interstitials (ELI) Ti-6Al-4V alloys manufactured from hydride–dehydride (HDH) powder. Journal of Alloys and Compounds 873, pages 159757.
Crossref
Aleksey Nokhrin, Pavel Andreev, Maksim Boldin, Vladimir Chuvil’deev, Mikhail Chegurov, Ksenia Smetanina, Mikhail Gryaznov, Sergey Shotin, Artem Nazarov, Gleb Shcherbak, Artem Murashov & Galina Nagicheva. (2021) Investigation of Microstructure and Corrosion Resistance of Ti-Al-V Titanium Alloys Obtained by Spark Plasma Sintering. Metals 11:6, pages 945.
Crossref
L. Bolzoni, S. Raynova & F. Yang. (2021) An alternative method to manufacture Ti alloys from particulate materials. Powder Technology 380, pages 341-348.
Crossref
Dhyah Annur, Ika Kartika, Sugeng Supriadi & Bambang Suharno. (2021) Titanium and titanium based alloy prepared by spark plasma sintering method for biomedical implant applications—a review. Materials Research Express 8:1, pages 012001.
Crossref
Abdulaziz Alhazaa, Abdulaziz Assaifan, Mahmoud Hezam, Muhammad Ali Shar, Junko Umeda & Katsuyoshi Kondoh. (2021) Effect of sintering temperature on the microstructure and mechanical properties of the Ti-2.5Zr alloy. Materials Research Express 8:1, pages 016522.
Crossref
Samson Olaitan Jeje, Mxolisi Brendon Shongwe, Nthabiseng Maledi, Enoch Nifise Ogunmuyiwa, Lerato Criselda Tshabalala, Bukola Joseph Babalola & Peter Apata Olubambi. (2020) Sintering behavior and alloying elements effects on the properties of CP-Titanium sintered using pulsed electric current. Materials Chemistry and Physics 256, pages 123707.
Crossref
Ayako SUZUKIKotaro KIKUCHIKosuke NAKANO & Hiroyuki KITAGAWA. (2020) Low-Temperature Densification of Titanium Powder by Pulse-Current Sintering under Cyclic Uniaxial Pressure周期的一軸圧力下でのパルス通電焼結法によるチタン粉末の低温での高密度焼結. Journal of the Japan Society of Powder and Powder Metallurgy 67:10, pages 525-528.
Crossref
S.D. Luo, T. Song, S.L. Lu, B. Liu, J. Tian & M. Qian. (2020) High oxygen-content titanium and titanium alloys made from powder. Journal of Alloys and Compounds 836, pages 155526.
Crossref
Randall M. German. (2020) Titanium sintering science: A review of atomic events during densification. International Journal of Refractory Metals and Hard Materials 89, pages 105214.
Crossref
Fahamsyah H. Latief, El-Sayed M. Sherif, Agus S. Wismogroho, Wahyu B. Widayatno & Hany S. Abdo. (2020) The Cyclic Oxidation and Hardness Characteristics of Thermally Exposed Titanium Prepared by Inductive Sintering-Assisted Powder Metallurgy. Crystals 10:2, pages 104.
Crossref
Jiří Kozlík, Hanka Becker, Josef Stráský, Petr Harcuba & Miloš Janeček. (2020) Manufacturing of fine-grained titanium by cryogenic milling and spark plasma sintering. Materials Science and Engineering: A 772, pages 138783.
Crossref
Glenda T. Motsi, Sophie Guillemet-Fritsch, Geoffroy Chevallier, Mxolisi B. Shongwe, Peter A. Olubambi & Claude Estournes. (2019) Microstructural evolution and mechanical properties of pure titanium powders processed by spark plasma sintering. Powder Technology 345, pages 415-424.
Crossref
M.R. Mphahlele, E.A. Olevsky & P.A. Olubambi. 2019. Spark Plasma Sintering. Spark Plasma Sintering 281 299 .
Ahad Mohammadzadeh, Abbas Sabahi Namini, Maziyar Azadbeh & Amir Motallebzadeh. (2018) On the physical and mechanical properties of spark plasma sintered pure Ti and Ti-TiB composite. Materials Research Express 5:12, pages 126512.
Crossref
Jaromír Kopeček, Kristína Bartha, Radek Mušálek, Zdeněk Pala, Tomáš Chráska, Přemysl Beran, Vasyl Ryukhtin, Pavel Strunz, Jaroslava Nováková, Josef Stráský, Pavel Novák, Oleg Heczko, Michal Landa, Hanuš Seiner & Miloš Janeček. (2018) Structural characterization of semi-heusler/light metal composites prepared by spark plasma sintering. Scientific Reports 8:1.
Crossref
M.T. Jia, B. Gabbitas & L. Bolzoni. (2018) Evaluation of reactive induction sintering as a manufacturing route for blended elemental Ti-5Al-2.5Fe alloy. Journal of Materials Processing Technology 255, pages 611-620.
Crossref
A. Muthuchamy, Paridh Patel, M. Rajadurai, Jitendar K. Chaurisiya & A. Raja Annamalai. (2018) Influence of sintering temperature on mechanical properties of spark plasma sintered pre-alloyed Ti-6Al-4 V powder. Materials Testing 60:3, pages 283-288.
Crossref
Mehdi Shahedi Asl, Abbas Sabahi Namini, Amir Motallebzadeh & Maziyar Azadbeh. (2018) Effects of sintering temperature on microstructure and mechanical properties of spark plasma sintered titanium. Materials Chemistry and Physics 203, pages 266-273.
Crossref
Andrzej Miklaszewski, Dariusz Garbiec & Katarzyna Niespodziana. (2018) Sintering behavior and microstructure evolution in cp-titanium processed by spark plasma sintering. Advanced Powder Technology 29:1, pages 50-57.
Crossref
L. L. Benson, L. A. Benson Marshall, N. S. Weston, I. Mellor & M. Jackson. (2017) On a Testing Methodology for the Mechanical Property Assessment of a New Low-Cost Titanium Alloy Derived from Synthetic Rutile. Metallurgical and Materials Transactions A 48:11, pages 5228-5232.
Crossref
Debajyoti Palai, Arjun Dey, Parthasarathi Bera, Manjima Bhattacharya, Amitava Basu Mallick, Anoop Kumar Mukhopadhyay & Anand Kumar Sharma. (2017) Comprehensive studies on microstructural, electronic, thermo-optical, mechanical and tribological behavious of vacuum heat treated ultra thin CP Ti foils. Materials Research Express 4:7, pages 076404.
Crossref
Esther Molero, Begoña Ferrari, Antonio Javier Sanchez-Herencia, Elena Gordo & Paolo Colombo. (2017) Ti/Ti 3 SiC 2 (/TiC) Bulk and Foam Composites by Pyrolysis of Polycarbosilane and TiH 2 Mixtures  . Advanced Engineering Materials 19:6, pages 1600700.
Crossref
Y. F. Yang, H. Imai, K. Kondoh & M. Qian. (2017) Enhanced Homogenization of Vanadium in Spark Plasma Sintering of Ti-10V-2Fe-3Al Alloy from Titanium and V-Fe-Al Master Alloy Powder Blends. JOM 69:4, pages 663-668.
Crossref
Bikramjit Basu & Sourabh GhoshBikramjit Basu & Sourabh Ghosh. 2017. Biomaterials for Musculoskeletal Regeneration. Biomaterials for Musculoskeletal Regeneration 15 44 .
P.A. Loginov, E.A. Levashov, A.Yu. Potanin, A.E. Kudryashov, O.S. Manakova, N.V. Shvyndina & I.V. Sukhorukova. (2016) Sintered Ti–Ti3P–CaO electrodes and their application for pulsed electrospark treatment of titanium. Ceramics International 42:6, pages 7043-7053.
Crossref
M.T. Jia, J.M. Liang, D.L. Zhang, C. Kong & B. Gabbitas. (2016) Effects of holding time during pre-sintering and post-forging annealing on the microstructure and mechanical properties of Ti parts fabricated by powder compact forging. Materials Science and Engineering: A 655, pages 113-121.
Crossref
N. S. Weston, F. Derguti, A. Tudball & M. Jackson. (2015) Spark plasma sintering of commercial and development titanium alloy powders. Journal of Materials Science 50:14, pages 4860-4878.
Crossref
Ya F. Yang & Ma Qian. 2015. Titanium Powder Metallurgy. Titanium Powder Metallurgy 219 235 .
M. Zadra & L. Girardini. (2014) High-performance, low-cost titanium metal matrix composites. Materials Science and Engineering: A 608, pages 155-163.
Crossref
Yuhua Li, Chao Yang, Haidong Zhao, Shengguan Qu, Xiaoqiang Li & Yuanyuan Li. (2014) New Developments of Ti-Based Alloys for Biomedical Applications. Materials 7:3, pages 1709-1800.
Crossref
B.X. Liu, L.J. Huang, L. Geng, B. Kaveendran, B. Wang, X.Q. Song & X.P. Cui. (2014) Gradient grain distribution and enhanced properties of novel laminated Ti–TiBw/Ti composites by reaction hot-pressing. Materials Science and Engineering: A 595, pages 257-265.
Crossref
Rajesh Chaudhari & Ranjit Bauri. (2014) Microstructure and Mechanical Properties of Titanium Processed by Spark Plasma Sintering (SPS). Metallography, Microstructure, and Analysis 3:1, pages 30-35.
Crossref
M. Zadra. (2014) Facile mechanical alloying of titanium sponge. Materials Science and Engineering: A 590, pages 281-288.
Crossref
Randall M. German. 2014. Sintering: from Empirical Observations to Scientific Principles. Sintering: from Empirical Observations to Scientific Principles 141 181 .
Shehreen S. Dheda, Christopher Melnyk & Farghalli A. Mohamed. (2013) Effect of titanium nitride nanoparticles on grain size stabilization and consolidation of cryomilled titanium. Materials Science and Engineering: A 584, pages 88-96.
Crossref
Saliou Diouf, Anna Fedrizzi & Alberto Molinari. (2013) A fractographic and microstructural analysis of the neck regions of coarse copper particles consolidated by spark plasma sintering. Materials Letters 111, pages 17-19.
Crossref
M. Zadra. (2013) Mechanical alloying of titanium. Materials Science and Engineering: A 583, pages 105-113.
Crossref
Zhiqiao Yan, Feng Chen, Yixiang Cai, Jian Yin & Yukai Zheng. (2013) Preparation and properties of Ti–4.5Al–6.8Mo–1.5Fe alloy by high-velocity compaction. Powder Technology 246, pages 345-350.
Crossref
Alok Kumar, Krishanu Biswas & Bikramjit Basu. (2013) On the toughness enhancement in hydroxyapatite-based composites. Acta Materialia 61:14, pages 5198-5215.
Crossref
Abdul Jimoh, Iakovos Sigalas & Mathias Hermann. (2012) <ji>In Situ</i> Synthesis of Titanium Matrix Composite (Ti-TiB-TiC) through Sintering of TiH<sub>2</sub>-B<sub>4</sub>C. Materials Sciences and Applications 03:01, pages 30-35.
Crossref
L. Bolzoni, E.M. Ruiz-Navas, E. Neubauer & E. Gordo. (2012) Inductive hot-pressing of titanium and titanium alloy powders. Materials Chemistry and Physics 131:3, pages 672-679.
Crossref
Faming Zhang, Eileen Otterstein & Eberhard Burkel. (2010) Spark Plasma Sintering, Microstructures, and Mechanical Properties of Macroporous Titanium Foams. Advanced Engineering Materials 12:9, pages 863-872.
Crossref
F. Despang, A. Bernhardt, A. Lode, Th. Hanke, D. Handtrack, B. Kieback & M. Gelinsky. (2010) Response of human bone marrow stromal cells to a novel ultra-fine-grained and dispersion-strengthened titanium-based material. Acta Biomaterialia 6:3, pages 1006-1013.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.