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Original Articles

Elastic moduli of the C15 Laves-phase materials TaV2, TaV2H(D)x and ZrCr2

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Pages 1667-1679 | Received 25 Jan 2000, Accepted 15 Mar 2000, Published online: 24 Aug 2009

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Read on this site (4)

DS Agosta, RG Leisure & AV Skripov. (2007) Elastic properties of the Ta–V system: bcc Ta0.33V0.67 and C15 TaV2 . Philosophical Magazine 87:2, pages 299-306.
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R. G. Leisure, K. Foster, C. Lemier & A. V. Skripov. (2005) Thermal expansion of the C15 Laves-phase materials TaV2 and TaV2H . Philosophical Magazine 85:36, pages 4509-4514.
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Articles from other publishers (24)

Isaac Jacob, Dotan Babai, Matvey Bereznitsky & Roni Z. Shneck. (2023) The Role of Bulk Stiffening in Reducing the Critical Temperature of the Metal-to-Hydride Phase Transition and the Hydride Stability: The Case of Zr(MoxFe1−x)2-H2. Inorganics 11:6, pages 228.
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Jishen Jiang, Mingyue Du & Xianfeng Ma. (2022) On the microstructures and cracking modes of Cr-coated Zr-4 alloys oxidized and vacuum-annealed at 1000 °C. Journal of Alloys and Compounds 908, pages 164610.
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D. Babai, M. Bereznitsky, R.Z. Shneck & I. Jacob. (2021) The effect of Pd on hydride formation in Zr(PdxM1−x)2 intermetallics where M is a 3d element. Journal of Alloys and Compounds 889, pages 161503.
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Ji-Shen Jiang, Dong-Qing Wang, Ming-Yue Du, Xian-Feng Ma, Chen-Xue Wang & Xiu-Jie He. (2021) Interdiffusion behavior between Cr and Zr and its effect on the microcracking behavior in the Cr-coated Zr-4 alloy. Nuclear Science and Techniques 32:12.
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Hao Yu Wang, Zi Yue Wang, Zhi Sheng Nong, Ji Jie Wang, Tian Nan Man & Jing Chuan Zhu. (2020) Microstructures and Phase Formation of Refractory MoNbTaVZr High Entropy Alloy. Materials Science Forum 993, pages 384-390.
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D. Babai, M. Bereznitsky, R.Z. Shneck & I. Jacob. (2020) Mutual impact of crystal volume and heat of alloy formation on hydride stabilities in Zr(PdxCr1−x)2 and similar intermetallics. Journal of Alloys and Compounds 814, pages 152268.
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Hao Wang, Ning Gao, Guang-Hong Lü & Zhong-Wen Yao. (2018) Effects of temperature and point defects on the stability of C15 Laves phase in iron: A molecular dynamics investigation. Chinese Physics B 27:6, pages 066104.
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Yi Wang, Ming Yan, Qiang Zhu, Williams Yi Wang, Yidong Wu, Xidong Hui, Richard Otis, Shun-Li Shang, Zi-Kui Liu & Long-Qing Chen. (2018) Computation of entropies and phase equilibria in refractory V-Nb-Mo-Ta-W high-entropy alloys. Acta Materialia 143, pages 88-101.
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A. Robina Merlino, C.R. Luna, A. Juan & M.E. Pronsato. (2016) A DFT study of hydrogen storage in Zr(Cr 0.5 Ni 0.5 ) 2 Laves phase. International Journal of Hydrogen Energy 41:4, pages 2700-2710.
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Reza Sarhaddi, Hadi Arabi & Faiz Pourarian. (2014) Structural, stability and electronic properties of C15- AB 2  ( A = Ti , Zr ; B = Cr ) intermetallic compounds and their hydrides: An ab initio study . International Journal of Modern Physics B 28:17, pages 1450105.
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Arun Kumar Rai & Subramanian Raju. (2012) High temperature thermal properties of UFe2. Journal of Thermal Analysis and Calorimetry 112:1, pages 73-82.
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D.K. Pandey, P.K. Yadawa & R.R. Yadav. (2007) Acoustic wave propagation in Laves-phase compounds. Materials Letters 61:25, pages 4747-4751.
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Q. Yao, J. Sun, D. Lin, S. Liu & B. Jiang. (2007) First-principles studies of defects, mechanical properties and electronic structure of Cr-based Laves phases. Intermetallics 15:5-6, pages 694-699.
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Yoshitsugu Kojima, Yasuaki Kawai, Shin-ichi Towata, Tomoya Matsunaga, Tamio Shinozawa & Masahiko Kimbara. (2006) Development of metal hydride with high dissociation pressure. Journal of Alloys and Compounds 419:1-2, pages 256-261.
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Xing-Qiu Chen, W. Wolf, R. Podloucky & P. Rogl. (2005) Ab initio study of ground-state properties of the Laves phase compounds , and . Physical Review B 71:17.
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Pierre Perrot. (2004) Cr-Zr Binary Phase Diagram Evaluation. MSI Eureka 30, pages 20.15393.1.2.
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Y. Nakagawa, T. Ohta, Y. Kaneno, H. Inoue & T. Takasugi. (2004) Defect structures and room-temperature mechanical properties of C15 laves phases in Zr-Nb-Cr and Zr-Hf-Cr alloy systems. Metallurgical and Materials Transactions A 35:11, pages 3469-3476.
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J.E Atteberry, D.S Agosta, C.E Nattrass, R.G Leisure, I Jacob, R.C BowmanJr.Jr. & O Yeheskel. (2004) Temperature dependence of the elastic moduli of polycrystalline LaAlxNi5−x and LaSnxNi5−x. Journal of Alloys and Compounds 376:1-2, pages 139-144.
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J.E. Atteberry, D.S. Agosta, R.G. Leisure, O. Beeri & M.H. Mintz. (2004) Elastic moduli of polycrystalline TiCr1.8 over the temperature range of 3–410K. Journal of Alloys and Compounds 365:1-2, pages 68-72.
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B. Mayer, H. Anton, E. Bott, M. Methfessel, J. Sticht, J. Harris & P.C. Schmidt. (2003) Ab-initio calculation of the elastic constants and thermal expansion coefficients of Laves phases. Intermetallics 11:1, pages 23-32.
Crossref
D.S Agosta, J.E Hightower, K Foster, R.G Leisure & Z Gavra. (2002) Elastic moduli of polycrystalline ZrCo as a function of temperature. Journal of Alloys and Compounds 346:1-2, pages 1-5.
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K. Foster, J. E. Hightower, R. G. Leisure & A. V. Skripov. (2002) Strong hydrogen-related electronic effects on the shear elastic constant of . Physical Review B 65:9.
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R.G Leisure, K Foster, J.E Hightower, A Ode & A.V Skripov. (2002) Temperature dependence of the elastic shear modulus of the Laves-phase materials TaV2 and TaV2Hx. Journal of Alloys and Compounds 330-332, pages 396-399.
Crossref
K. Foster, R. G. Leisure & A. V. Skripov. (2001) Ultrasonic evidence for strong isotope effects on the local motion of H(D) in . Physical Review B 64:21.
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