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High Pressure and High Temperature Techniques

Pressure generation to 80 GPa using multianvil apparatus with sintered diamond anvils

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Pages 245-254 | Received 29 Feb 2008, Published online: 10 Oct 2008

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Read on this site (10)

Guozhu Song, Dejiang Ma, Xuefeng Zhou, Lingfei Wang, Zheng Wei, Chao Xu, Wendan Wang, Liping Wang, Yusheng Zhao & Shanmin Wang. (2021) Operation of large-volume cubic press above 8 GPa and 2500°C with a centimeter-sized cell volume using an optimized hybrid assembly. High Pressure Research 41:2, pages 132-141.
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Jingjun Wu, Fangming Liu, Jiawei Zhang, Qiang Wang, Yinjuan Liu, Jin Liu, Ke Liu & Duanwei He. (2018) Cobalt-doped magnesium oxide pressure-transmitting medium for high pressure and high-temperature apparatus. High Pressure Research 38:4, pages 448-457.
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Takayuki Ishii, Daisuke Yamazaki, Noriyoshi Tsujino, Fang Xu, Zhaodong Liu, Takaaki Kawazoe, Takafumi Yamamoto, Dmitry Druzhbin, Lin Wang, Yuji Higo, Yoshinori Tange, Takashi Yoshino & Tomoo Katsura. (2017) Pressure generation to 65 GPa in a Kawai-type multi-anvil apparatus with tungsten carbide anvils. High Pressure Research 37:4, pages 507-515.
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Takehiro Kunimoto, Tetsuo Irifune, Yoshinori Tange & Kouhei Wada. (2016) Pressure generation to 50 GPa in Kawai-type multianvil apparatus using newly developed tungsten carbide anvils. High Pressure Research 36:2, pages 97-104.
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M.A.G.M. Manthilake, N. Walte & D. J. Frost. (2012) A new multi-anvil press employing six independently acting 8 MN hydraulic rams. High Pressure Research 32:2, pages 195-207.
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Robert C. Liebermann. (2011) Multi-anvil, high pressure apparatus: a half-century of development and progress. High Pressure Research 31:4, pages 493-532.
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Haikuo Wang, Duanwei He, Xiaozhi Yan, Chao Xu, Junwei Guan, Ning Tan & Wendan Wang. (2011) Quantitative measurements of pressure gradients for the pyrophyllite and magnesium oxide pressure-transmitting mediums to 8 GPa in a large-volume cubic cell. High Pressure Research 31:4, pages 581-591.
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Takehiro Kunimoto, Tetsuo Irifune & Hitoshi Sumiya. (2008) Pressure generation in a 6-8-2 type multi-anvil system: a performance test for third-stage anvils with various diamonds. High Pressure Research 28:3, pages 237-244.
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Articles from other publishers (46)

Jinyuan Yan & Shizhong Yang. (2022) Pressure-Dependent Thermal Expansion Coefficient by a Diamond Anvil Cell. International Journal of Thermophysics 43:2.
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James W E Drewitt. (2021) Liquid structure under extreme conditions: high-pressure x-ray diffraction studies. Journal of Physics: Condensed Matter 33:50, pages 503004.
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Longjian Xie, Artem Chanyshev, Takayuki Ishii, Dmitry Bondar, Keisuke Nishida, Zhen Chen, Shrikant Bhat, Robert Farla, Yuji Higo, Yoshinori Tange, Xiaowan Su, BingMin Yan, Shuailin Ma & Tomoo Katsura. (2021) Simultaneous generation of ultrahigh pressure and temperature to 50 GPa and 3300 K in multi-anvil apparatus. Review of Scientific Instruments 92:10.
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Benedict J. Heinen, James W. E. Drewitt, Michael J. Walter, Charles Clapham, Fei Qin, Annette K. Kleppe & Oliver T. Lord. (2021) Internal resistive heating of non-metallic samples to 3000 K and >60 GPa in the diamond anvil cell. Review of Scientific Instruments 92:6.
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Yu-Chen Shang, Fang-Ren Shen, Xu-Yuan Hou, Lu-Yao Chen, Kuo Hu, Xin Li, Ran Liu, Qiang Tao, Pin-Wen Zhu, Zhao-Dong Liu, Ming-Guang Yao, Qiang Zhou, Tian Cui & Bing-Bing Liu. (2020) Pressure Generation above 35GPa in a Walker-Type Large-Volume Press*. Chinese Physics Letters 37:8, pages 080701.
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Daisuke YAMAZAKI. (2020) Pressure generation in the Kawai-type multianvil apparatus and rheology of the Earth's interior川井型装置での圧力発生と地球内部のレオロジー. Japanese Magazine of Mineralogical and Petrological Sciences 49:1, pages 15-27.
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Xuefeng Zhou, Dejiang Ma, Lingfei Wang, Yusheng Zhao & Shanmin Wang. (2020) Large-volume cubic press produces high temperatures above 4000 Kelvin for study of the refractory materials at pressures. Review of Scientific Instruments 91:1.
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Malcolm I. McMahon. 2020. Synchrotron Light Sources and Free-Electron Lasers. Synchrotron Light Sources and Free-Electron Lasers 1857 1896 .
Takeshi Arimoto, Tetsuo Irifune, Masayuki Nishi, Yoshinori Tange, Takehiro Kunimoto & Zhaodong Liu. (2019) Phase relations of MgSiO3-FeSiO3 system up to 64 GPa and 2300 K using multianvil apparatus with sintered diamond anvils. Physics of the Earth and Planetary Interiors 295, pages 106297.
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Takayuki Ishii, Zhaodong Liu & Tomoo Katsura. (2019) A Breakthrough in Pressure Generation by a Kawai-Type Multi-Anvil Apparatus with Tungsten Carbide Anvils. Engineering 5:3, pages 434-440.
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Tetsuo Irifune, Takehiro Kunimoto, Toru Shinmei & Yoshinori Tange. (2019) High pressure generation in Kawai-type multianvil apparatus using nano-polycrystalline diamond anvils. Comptes Rendus Geoscience 351:2-3, pages 260-268.
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Daisuke Yamazaki, Eiji Ito, Takashi Yoshino, Noriyoshi Tsujino, Akira Yoneda, Hitoshi Gomi, Jaseem Vazhakuttiyakam, Moe Sakurai, Youyue Zhang, Yuji Higo & Yoshinori Tange. (2019) High-pressure generation in the Kawai-type multianvil apparatus equipped with tungsten-carbide anvils and sintered-diamond anvils, and X-ray observation on CaSnO3 and (Mg,Fe)SiO3. Comptes Rendus Geoscience 351:2-3, pages 253-259.
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Malcolm I. McMahon. 2018. Synchrotron Light Sources and Free-Electron Lasers. Synchrotron Light Sources and Free-Electron Lasers 1 40 .
Masayuki Nishi, Jun Tsuchiya, Takeshi Arimoto, Sho Kakizawa, Takehiro Kunimoto, Yoshinori Tange, Yuji Higo & Tetsuo Irifune. (2018) Thermal equation of state of MgSiO4H2 phase H determined by in situ X-ray diffraction and a multianvil apparatus. Physics and Chemistry of Minerals 45:10, pages 995-1001.
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Tetsuo IRIFUNE. (2018) High-Pressure Generation in Kawai-Type Multi-Anvil Apparatus Using Various Ultrahard Materials様々な超硬材料を用いた川井型マルチアンビル装置による高圧力発生. The Review of High Pressure Science and Technology 28:1, pages 3-8.
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Steeve Gréaux, Masayuki Nishi, Shigehiko Tateno, Yasuhiro Kuwayama, Naohisa Hirao, Kenji Kawai, Shigenori Maruyama & Tetsuo Irifune. (2018) High-pressure phase relation of KREEP basalts: A clue for finding the lost Hadean crust?. Physics of the Earth and Planetary Interiors 274, pages 184-194.
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Zhaodong Liu, Masayuki Nishi, Takayuki Ishii, Hongzhan Fei, Nobuyoshi Miyajima, Tiziana Boffa Ballaran, Hiroaki Ohfuji, Takeshi Sakai, Lin Wang, Svyatoslav Shcheka, Takeshi Arimoto, Yoshinori Tange, Yuji Higo, Tetsuo Irifune & Tomoo Katsura. (2017) Phase Relations in the System MgSiO 3 -Al 2 O 3 up to 2300 K at Lower Mantle Pressures . Journal of Geophysical Research: Solid Earth 122:10, pages 7775-7788.
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Wang Hai-Kuo, Ren Ying, He Duan-Wei & Xu Chao. (2017) Force analysis and pressure quantitative measurement for the high pressure cubic cell. Acta Physica Sinica 66:9, pages 090702.
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Liu Yin-Juan, He Duan-Wei, Wang Pei, Tang Ming-Jun, Xu Chao, Wang Wen-Dan, Liu Jin, Liu Guo-Duan & Kou Zi-Li. (2017) Syntheses and studies of superhard composites under high pressure. Acta Physica Sinica 66:3, pages 038103.
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Zhaodong Liu, Tetsuo Irifune, Masayuki Nishi, Yoshinori Tange, Takeshi Arimoto & Toru Shinmei. (2016) Phase relations in the system MgSiO 3 –Al 2 O 3 up to 52 GPa and 2000 K. Physics of the Earth and Planetary Interiors 257, pages 18-27.
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T. Ishii, L. Shi, R. Huang, N. Tsujino, D. Druzhbin, R. Myhill, Y. Li, L. Wang, T. Yamamoto, N. Miyajima, T. Kawazoe, N. Nishiyama, Y. Higo, Y. Tange & T. Katsura. (2016) Generation of pressures over 40 GPa using Kawai-type multi-anvil press with tungsten carbide anvils. Review of Scientific Instruments 87:2.
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A. Sano-Furukawa, T. Hattori, H. Arima, A. Yamada, S. Tabata, M. Kondo, A. Nakamura, H. Kagi & T. Yagi. (2014) Six-axis multi-anvil press for high-pressure, high-temperature neutron diffraction experiments. Review of Scientific Instruments 85:11.
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