278
Views
16
CrossRef citations to date
0
Altmetric
Part A: Materials Science

Consolidation of cryomilled Al–Si using spark plasma sintering

, &
Pages 2445-2464 | Received 25 Jul 2012, Accepted 14 Feb 2013, Published online: 11 Apr 2013

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

Read on this site (1)

A. A. Sorour, R. R. Chromik & M. Brochu. (2015) Microstructure and densification of gas atomised Fe–Cr–B based alloy powder consolidated by spark plasma sintering. Powder Metallurgy 58:1, pages 20-29.
Read now

Articles from other publishers (15)

Q. Yang, D.L. Cheng, F.G. Zhang, Q.W. Shi, Z. Chen, M.L. Wang, S.Y. Zhong, Y. Wu & H.W. Wang. (2021) Spark plasma sintering mechanisms of the Al-Zn-Mg-Cu alloys and TiB2/Al-Zn-Mg-Cu composites. Materials Characterization 172, pages 110825.
Crossref
Yihan Liang, Siqi Xiang, Tongye Li & Xinfang Zhang. (2020) Ultrafast fabrication of high-density Al–12Si compacts with gradient structure by electro-discharge sintering. Journal of Manufacturing Processes 54, pages 301-308.
Crossref
Xinxin Li, Chao Yang, Zhao Liu, Liming Zou, Zhi Wang & Weiwen Zhang. (2019) Effects of Applied Pressure on the Atomic Diffusion Coefficient During Spark Plasma Sintering of Crystalline Powders. JOM 71:8, pages 2475-2483.
Crossref
X.X. Li, C. Yang, T. Chen, Z.Q. Fu, Y.Y. Li, O.M. Ivasishin & E.J. Lavernia. (2019) Effective atomic diffusion coefficient dependence on applied pressure during spark plasma sintering. Materialia 6, pages 100334.
Crossref
X.X. Li, C. Yang, H.Z. Lu, X. Luo, Y.Y. Li & O.M. Ivasishin. (2019) Correlation between atomic diffusivity and densification mechanism during spark plasma sintering of titanium alloy powders. Journal of Alloys and Compounds 787, pages 112-122.
Crossref
Pasquale Cavaliere, B. Sadeghi, M. Shamanian & F. Ashrafizadeh. 2019. Spark Plasma Sintering of Materials. Spark Plasma Sintering of Materials 161 190 .
B. Sadeghi, M. Shamanian, P. Cavaliere & F. Ashrafizadeh. (2018) Effect of processing parameters on the microstructural and mechanical properties of aluminum–carbon nanotube composites produced by spark plasma sintering. International Journal of Materials Research 109:10, pages 900-909.
Crossref
B. SADEGHI, P. CAVALIERE, M. SHAMANIAN, M. SANAYEI, J.A. SZPUNAR & M. NOSKO. (2018) Electron backscattered diffraction analysis of friction stir processed nanocomposites produced via spark plasma sintering. Journal of Microscopy 271:2, pages 145-163.
Crossref
Sıddıka Mertdinç, Emre Tekoğlu, Duygu Ağaoğulları & M. Lütfi Öveçoğlu. (2018) Influence of the milling process on TiB 2 particle reinforced Al-7 wt.-% Si matrix composites . Materials Testing 60:7-8, pages 719-726.
Crossref
Behzad Sadeghi, Morteza Shamanian, Fakhreddin Ashrafizadeh & Pasquale Cavaliere. (2018) Effect of processing parameters on microstructural and mechanical properties of aluminum–SiO 2 nanocomposites produced by spark plasma sintering . International Journal of Materials Research 109:5, pages 422-430.
Crossref
Shenghua Deng, Ruidi Li, Tiechui Yuan, Siyao Xie, Mei Zhang, Kechao Zhou & Peng Cao. (2018) Direct current-enhanced densification kinetics during spark plasma sintering of tungsten powder. Scripta Materialia 143, pages 25-29.
Crossref
R. Chou, A. Ghosh, S.C. Chou, M. Paliwal & M. Brochu. (2017) Microstructure and mechanical properties of Al10SiMg fabricated by pulsed laser powder bed fusion. Materials Science and Engineering: A 689, pages 53-62.
Crossref
P. Hendrickx, J. Milligan & M. Brochu. (2015) Consideration of particle rearrangement during the modeling of spark plasma densification of Al–Mg alloy powders. Scripta Materialia 102, pages 7-10.
Crossref
G.A. Sweet, M. Brochu, R.L. HexemerJr.Jr., I.W. Donaldson & D.P. Bishop. (2014) Microstructure and mechanical properties of air atomized aluminum powder consolidated via spark plasma sintering. Materials Science and Engineering: A 608, pages 273-282.
Crossref
J. Arreguin-Zavala, J. Milligan, M. I. Davies, S. R. Goodes & M. Brochu. (2013) Characterization of Nanostructured and Ultrafine-Grain Aluminum-Silicon Claddings using the Nanoimpact Indentation Technique. JOM 65:6, pages 763-768.
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.