Publication Cover
High Pressure Research
An International Journal
Volume 41, 2021 - Issue 2
179
Views
0
CrossRef citations to date
0
Altmetric
Articles

New cooling system for a three-axis multi-anvil press with 6-6 geometry

ORCID Icon &
Pages 119-131 | Received 15 Jan 2021, Accepted 14 Mar 2021, Published online: 13 Apr 2021

References

  • Liebermann RC. Multi-anvil, high pressure apparatus: a half-century of development and progress. High Press Res. 2011;31(4):493–532.
  • Ito E. Theory and practice – multianvil cells and high-pressure experimental methods. In: Schubert G, editor. Treatise on geophysics. Amsterdam: Elsevier; 2007. p. 197–230.
  • Shimada M. The method of compression test under high pressures in a cubic press and the strength of granite. Tectonophysics. 1981;72(3-4):343–357.
  • Shimada M. Mechanical behavior of rocks under high pressure conditions. Portland: Ringgold; 2000; p. 135.
  • Wang Y, Durham WB, Getting IC, et al. The deformation-DIA: a new apparatus for high temperature triaxial deformation to pressures up to 15 GPa. Rev Sci Instrum. 2003;74(6):3002–3011.
  • Irifune T. Frontiers in deep Earth mineralogy using new large-volume D-DIA and KMA apparatus. Rev High Press Sci Technol. 2010;20(2):158–165.
  • Nishiyama N, Wang Y, Sanehira T, et al. Development of the multi-anvil assembly 6-6 for DIA and D-DIA type high-pressure apparatuses. High Press Res. 2008;28(3):307–314.
  • Kawazoe T, Nishiyama N, Nishihara Y, et al. Pressure generation to 25 GPa using a cubic anvil apparatus with a multi-anvil 6-6 assembly. High Press Res. 2010;30(1):167–174.
  • Ito E, Katsura T, Yamazaki D, et al. A new 6-axis apparatus to squeeze the Kawai-cell of sintered diamond cubes. Phys Earth Planet Inter. 2009;174(1-4):264–269.
  • Manthilake MAGM, Walte N, Frost DJ. A new multi-anvil press employing six independently acting 8 MN hydraulic rams. High Press Res. 2012;32(2):1–13.
  • Hattori T, Sano-Furukawa A, Arima H, et al. Design and performance of high-pressure PLANET beamline at pulsed neutron source at J-PARC. Nucl Instrum Methods Phys Res Sect A. 2015;780:55–67.
  • Bhat S, Wiehl L, Haseen S, et al. Frontispiece: a novel high-pressure tin oxynitride Sn2N2O. Chem – Eur J. 2020;26(10):2187–2194.
  • Walte NP, Solferino GFD, Golabek GJ, et al. Two-stage formation of pallasites and the evolution of their parent bodies revealed by deformation experiments. Earth Planet Sci Lett. 2020;546:116419.
  • Secco RA, Yong W. Low temperature system for a large volume multi-anvil press. Rev Sci Instrum. 2016;87(12):123901.
  • Yong W, Secco RA. Note: a simple system for low-temperature experiments in a large-volume multi-anvil press. Rev Sci Instrum. 2017;88(10):106106.
  • Sotin C, Gillet P, Poirier JP. Creep of high-pressure ice VI. In: K Jur, Benest D, Dollfus A, et al., editors. Ices in the solar system. Dordrecht: Springer Netherlands; 1985. p. 109–118.
  • Bull CL, Funnell NP, Tucker MG, et al. PEARL: the high pressure neutron powder diffractometer at ISIS. High Press Res. 2016;36(4):493–511.
  • Klotz S, Strässle T, Lebert B, et al. High pressure neutron diffraction to beyond 20 GPa and below 1.8 K using Paris-Edinburgh load frames. High Press Res. 2016;36(1):73–78.
  • Komatsu K, Moriyama M, Koizumi T, et al. Development of a new P–T controlling system for neutron-scattering experiments. High Press Res. 2013;33(1):208–213.
  • Pilyugin VP, Voronova LM, Degtyarev MV, et al. Structure refinement of pure iron during low-temperature high-pressure deformation. Russ Metall (Met). 2012;2012(4):297–302.
  • Ridley CJ, Funnell NP, Offer C, et al. A simple system for neutron diffraction at 4 K and elevated pressures. Rev Sci Instrum. 2020;91(6):063302.
  • Wang W, Fortes AD, Dobson DP, et al. Investigation of high-pressure planetary ices by cryo-recovery. II. High-pressure apparatus, examples and a new high-pressure phase of MgSO4·5H2O. J Appl Crystallogr. 2018;51(Pt 3):692–705.
  • Heard HC, Durham WB, Boro CO, et al. A triaxial deformation apparatus for service at 77 ≤ T ≤ 273 K. In: Duba AG, Durham WB, Handin JW, et al., editors. The brittle-ductile transition in rocks. Washington, DC: American Geophysical Union (AGU); 1990. p. 225–228.
  • Dissanayake SE, Matsuda M, Munakata K, et al. Development of cubic anvil type high pressure apparatus for neutron diffraction. J Phys Condens Matter. 2019;31(38):384001.
  • Howard CM. The ammonia, carbon dioxide and water ternary system. London: UCL; 2019.

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.