296
Views
2
CrossRef citations to date
0
Altmetric
Research Articles

Influence of starting powders on the final properties of W-Cu alloys manufactured through rapid sinter pressing technique

ORCID Icon, ORCID Icon, ORCID Icon, & ORCID Icon
Pages 75-81 | Received 28 Feb 2018, Accepted 04 Nov 2020, Published online: 21 Nov 2020

References

  • Chen P, Shen Q, Luo G, et al. The mechanical properties of W–Cu composite by activated sintering. Int J Refract Met Hard Mater. 2013;36:220–224.
  • Yang X, Liang S, Wang X, et al. Effect of WC and CeO2 on microstructure and properties of W–Cu electrical contact material. Int J Refract Met Hard Mater. 2010;28(2):305–311.
  • Tejado E, Müller AV, You JH, et al. Evolution of mechanical performance with temperature of W/Cu and W/CuCrZr composites for fusion heat sink applications. J Mater Sci Eng A. 2018;712:738–746.
  • Tejado E, Müller AV, You JH, et al. The thermo-mechanical behaviour of W-Cu metal matrix composites for fusion heat sink applications: the influence of the Cu content. J Nucl Mater. 2018;498:468–475.
  • Johnson JL, German RM. Chemically activated liquid phase sintering of tungsten-copper. Int J Powder Metall. 1994;30(1):91–102.
  • Johnson JL, Park SJ, Kwon YS, et al. The effects of composition and microstructure on the thermal conductivity of liquid-phase-sintered W-Cu. Metall Mater Trans A. 2010;41(6):1564–1572.
  • Elsayed A, Li W, El Kady OA, et al. Experimental investigations on the synthesis of W–Cu nanocomposite through spark plasma sintering. J Alloys Compd. 2015;639:373–380.
  • Edtmaier C, Hula RC, Pintsuk G, et al. Preparation of functionally graded W/Cu interlayers and brazing to CuCrZr and CFC for actively cooled flat tile divertor mock-ups. 1st International Conference on New Materials for Extreme Environment. 2009;59:185–191.
  • Maneshian MH, Simchi A. Solid state and liquid phase sintering of mechanically activated W–20wt.% Cu powder mixture. J Alloys Compd. 2008;463(1–2):153–159.
  • Hamidi AG, Arabi H, Rastegari S. Tungsten–copper composite production by activated sintering and infiltration. Int J Refract Met Hard Mater. 2011;29(4):538–541.
  • Xu L, Yan M, Xia Y, et al. Influence of copper content on the property of Cu-W alloy prepared by microwave vacuum infiltration sintering. J Alloy Compd. 2014;592:202–206.
  • Ryu SS, Park HR, Kim HT, et al. On sinterability of Cu-coated W nanocomposite powder prepared by a hydrogen reduction of a high-energy ball-milled WO3-CuO mixture. J Mater Sci. 2012;47(29):7099–7109.
  • Zhao P, Guo P, Liu G, et al. Fabrication of W–Cu functionally graded material with improved mechanical strength. J Alloys Compd. 2014;601:289–292.
  • Liang S, Chen L, Yuan Z, et al. Infiltrated W–Cu composites with combined architecture of hierarchical particulate tungsten and tungsten fibers. Mater Charact. 2015;110:33–38.
  • Niu Y, Lu D, Huang L, et al. Comparison of W–Cu composite coatings fabricated by atmospheric and vacuum plasma spray processes. Vacuum. 2015;117:98–103.
  • Ryu SS, Kim GS, Kim JC, et al. The influence of annealing temperature on the microstructural development of W–Cu composite powder prepared by high-energy ball milling. J Alloys Compd. 2006;424(1-2):209–212.
  • Wei X, Tang J, Ye N, et al. A novel preparation method for W–Cu composite powders. J Alloys Compd. 2016;661:471–475.
  • Huang LM, Luo LM, Ding XY, et al. Effects of simplified pretreatment process on the morphology of W-Cu composite powder prepared by electroless plating and its sintering characterization. Powder Technol. 2014;258:216–221.
  • Choi JP, Lee GY, Song JI, et al. Sintering behavior of 316L stainless steel micro-nanopowder compact fabricated by powder injection molding. Powder Technol. 2015;279:196–202.
  • Arévalo C, Montealegre I, Neubauer E, et al. Influence of the particle size and raw materials in W-Cu alloys manufactured via rapid sinter pressing. Proceedings of the World PM2016, 2016.
  • Montealegre-Meléndez I, Arevalo C, Perez-Soriano EM, et al. Analysis of the influence of starting materials and processing conditions on the properties of W/Cu alloys. Materials (Basel). 2017;10(2):142.
  • Blumm J. Das Laserflash Verfahren-aktuelle Entwicklungen und Tendenzen. Proceedings of the Tagungsband zum Symposium Tendenzen in der Materialentwicklung und die Bedeutung von Wärmetransporteigenschaften, 2007, 1–2.
  • Tipler PA. Physics for Scientists and Engineers, 4th ed. New York (NY): W.H. Freeman and Co.; 1999.
  • Xu L, Srinivasakannan C, Zhang L, et al. Fabrication of tungsten-copper alloys by microwave hot pressing sintering. J Alloy Compd. 2016;658:23–28.
  • Luo LM, Tan XY, Lu ZL, et al. Sintering behavior of W–30Cu composite powder prepared by electroless plating. Int J Refract Met Hard Mat. 2014;42:51–56.

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.