168
Views
1
CrossRef citations to date
0
Altmetric
Research Articles

Powder metallurgy technology at the service of diamond-impregnated tool production

, , , , , , ORCID Icon & show all
Pages 331-340 | Received 30 Nov 2017, Accepted 21 Feb 2021, Published online: 05 Mar 2021

References

  • Hughes FH. The early history of diamond tools. Ind Diamond Rev. 1980;40:405.
  • Konstanty J. Powder metallurgy diamond tools. Elsevier Science; 2005;152.
  • Konstanty J. The materials science of stone sawing. Ind Diamond Rev. 1991;1:27.
  • Hawkins AC, Antenen AP, Johnson G. The diamond wire saw in quarrying granite and marble. Dimensional Stone. 1990;44.
  • Wang CY, Rolf C. Frame Sawing of stone – theory and technology. Key Eng Mater. 2003;250:171–180.
  • Konstanty J, Bunsch A. Hot pressing of cobalt powders. Powder Metall. 1991;34(3):195–198.
  • Molinari A, Marchetti F. Study of the diamond-matrix interface in hot pressed cobalt based tools. Mater Sci Eng A. 1990;130:257–262.
  • Kamphuis B, Serneels A. Sawing and drilling natural stone and concrete with cobalite HDR. Powder Metallurgy European Congress and Exhibition; Gent. 2006.
  • Sung JC, Hu SC, Lin IC, et al. The revolution of diamond synthesis technology. Mater Sci Forum. 2007;1141:534–536.
  • Del Villar M, Muro P, Sanchez JM, et al. Consolidation of diamond tools using Cu-Co-Fe based alloys as metallic binders. Powder Metall. 2001;44:82.
  • Mancisidor A, Luno-Bilbao C, Vielma N, et al. Effect of sintering atmosphere on densification, mechanical properties and diamond stability of prealloyed diamond impregnated composites obtained by free sintering. Powder Metall. 2013;56(5):362.
  • Luno-Bilbao C, Vielma N, Mancisidor A, et al. Characterization of diamond tool metallic bonds obtained from prealloyed powders by free sintering. Powder Metallurgy World Congress and Exhibition; Florence. 2010.
  • Iturriza I, Peña G, Luno-Bilbao C, et al. Dry cutting diamond impregnated tools based on water atomized powders. Powder Metallurgy European Congress and Exhibition; Barcelona. 2011.
  • Luno-Bilbao C, Vielma N, Mancisidor A, et al. Key metallurgical phenomena involved in the sintering of prealloyed powders designed for diamond impregnated tools. Powder Metallurgy World Congress and Exhibition; Yokohama. 2012.
  • Luno-Bilbao C, Mancisidor A, Iturriza I. Tailoring the mechanical properties of prealloyed diamond impregnated bonds by different strategies. Powder Metallurgy World Congress and Exhibition; Orlando. 2014.
  • García W, Sainz S, Castro F. Influence of Mn and Ni on the mechanical properties of newly developed PM steels. Powder Metallurgy World Congress and Exhibition; Florence. 2010.
  • Sainz S, García W, Sarasola M, et al. Microstructure and mechanical properties of PM steels with additions of Mn-containig master alloys. Powder Metallurgy European Congress and Exhibition; Toulouse. 2007.
  • Castro F, Sarasola M, Sainz S, et al. Processing routes for obtaining novel high performance Mn-containing PM steels. Powder Metallurgy European Congress and Exhibition; Busan. 2006.
  • Sainz S, García W, Castro F. Tensile and fatigue properties of PM steels with additions of an atomised Fe-Mn-C master alloy. Powder Metallurgy World Congress and Exhibition; Washington. 2008.
  • Sainz S, Martinez V, Dougan M, et al. Sinterability, hardenability and mechanical properties of Mn containing PM steels through the use of a specially designed Fe-Mn-C master alloy. International conference on Powder Metallurgy and particulate materials, PowderMet2006; San Diego, USA. 2006.
  • E8M-12 A. Standard test methods for tension testing of metallic materials. p. 12.
  • Narasimhan KS, Semel FJ. Sintering of powder premixes – a brief overview. Mater Sci. 2007.
  • German RM. Powder metallurgy science. Metal Powder Industries federation; 1994.
  • German RM. Sintering theory and practice. John Wiley and Sons; 1996.
  • Narasimhan KS. Sintering of powder mixtures and the growth of ferrous powder metallurgy. Mater Chem Phys. 2001;67:56.
  • Krecar D, Vassileva V, Danninger H, et al. Phosphorus as sintering activator in powder metallurgical steels: characterization of the distribution and its technological impact. Anal Bioanal Chem. 2004;379(4):610.
  • Molinari A, Straffelini G, Fontanari V, et al. Sintering and microstructure of phosphorus steels. Powder Metall. 1992;35(4):285.
  • Sung CM, Tai MF. Reactivities of transition Metals with carbon: implications to the mechanism of diamond Synthesis under high pressure. Int J Refract Met Hard Mater. 1997;15(4):237–256.
  • Tillmann W, Ferreira M, Steffen A, et al. Carbon reactivity of binder metals in diamond-metal composites – characterization by scanning electron microscopy and X-ray diffraction. Diam Relat Mater. 2013;38:118–123.
  • Zhao X, Duan L. A Review of the diamond retention capacity of Metal bond matrices. Metals. 2018;8(5):307.

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.