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Anisotropic compressional behaviour of the Sorel cement F5-phase (Mg₃(OH)₅Cl·4H₂O) [Anisotropic compressional behaviour of the Sorel cement F5-phase (Mg3(OH)5Cl·4H2O)]

Articolo
Data di Pubblicazione:
2023
Citazione:
Anisotropic compressional behaviour of the Sorel cement F5-phase (Mg₃(OH)₅Cl·4H₂O) [Anisotropic compressional behaviour of the Sorel cement F5-phase (Mg3(OH)5Cl·4H2O)] / T. Battiston, D. Comboni, G. Verri, M. Hanfland, G.D. Gatta. - In: CONSTRUCTION AND BUILDING MATERIALS. - ISSN 0950-0618. - 366:(2023 Feb 22), pp. 130162.1-130162.9. [10.1016/j.conbuildmat.2022.130162]
Abstract:
The crystal structure of the so-called F5-phase [Mg3(OH)5Cl·4H2O], the dominant crystalline component of the Sorel cement, has been reinvestigated by synchrotron powder X-ray diffraction data, with a deep description of the complex and pervasive H-bonding network. Its isothermal high-pressure behaviour (up to 5.10 GPa) has been studied by an in-situ compressional experiment, under hydrostatic conditions. The pressure vs volume pattern, modelled with an isothermal equation of state, revealed the occurrence of two anisotropic compressional regimes: the values of the isothermal bulk modulus (K0 = − V(∂P/∂V)) is 28.2(5) and 38.5(9) respectively up to 1.90 and at P > 2.10 GPa. The F5-phase shows a significant anisotropic compressional scheme, described as magnitude and orientation of the Eulerian finite unit-strain ellipsoid: ε1:ε2:ε3 ∼ 6.6:2.5:1.0 up to 1.9 GPa, and ε1:ε2:ε3 ∼ 4.7:1.8:1.0 at P > 2.1 GPa for the low- and high-P regimes, respectively. The structural causes, at the atomic scale, that govern the compressional anisotropy of the F5-phase are discussed.
Tipologia IRIS:
01 - Articolo su periodico
Keywords:
Sorel cement; F5-phase; Anisotropic compressibility; Crystal structure; Synchrotron X-ray diffraction;
Elenco autori:
T. Battiston, D. Comboni, G. Verri, M. Hanfland, G.D. Gatta
Autori di Ateneo:
COMBONI DAVIDE ( autore )
GATTA GIACOMO DIEGO ( autore )
Link alla scheda completa:
https://air.unimi.it/handle/2434/950850
Link al Full Text:
https://air.unimi.it/retrieve/handle/2434/950850/2119526/Sorel-F5_paper2%20(1)_DG.pdf
Progetto:
Mineral Reactivity in Large-scale Processes (MiReLaP)
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Settore GEO/09 - Georisorse Miner.Appl.Mineral.-Petrogr.per l'amb.e i Beni Cul
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Realizzato con VIVO | Progettato da Cineca | 25.11.5.0