SIGMOIDAL EXSOLUTION BY INTERNAL SHEAR STRESS IN PYROXENES FROM CHONDRITIC METEORITES

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dc.contributor.author Ferraris C.
dc.contributor.author Folco L.
dc.contributor.author Mellini M.
dc.date.accessioned 2022-02-13T04:46:09Z
dc.date.available 2022-02-13T04:46:09Z
dc.date.issued 2003
dc.identifier https://elibrary.ru/item.asp?id=5108137
dc.identifier.citation Physics and Chemistry of Minerals, 2003, 30, 9, 503-510
dc.identifier.issn 0342-1791
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/35276
dc.description.abstract Pyroxenes of pigeonitic and augitic bulk compositions in H3-4 chondritic meteorites commonly exhibit sigmoidal precipitates, rather than the elsewhere common lamellar associations. Most often, submicrometric sigmoids with calcic clinopyroxene composition occur within clinoenstatite; more rarely, clinoenstatite sigmoids occur within calcic clinopyroxene. The sigmoids appear as '001' terminated lamellae, with terminations rotated in opposite directions towards the '100' orientation. Pre-exsolution pigeonite and augite formed at temperatures higher than 980 °C, whereas sigmoidal exsolution occurred between 990 and 830 °C. Local anomalous lattice parameters determined by electron diffraction suggest that lattice parameters are most strained where the exsolution texture is most poorly defined. Shear strain occurs during exsolution due to mismatching lattice parameters and variable β angles. In response to shear stress, the lamellae relax and assume sigmoidal strained morphologies. Sigmoidal exsolution is strongly controlled by (100) orthoenstatite stacking faults that possibly trigger exsolution.
dc.subject EXSOLUTION
dc.subject PYROXENE
dc.subject CHONDRULE
dc.subject SIGMOIDS
dc.subject SHEAR STRESS
dc.title SIGMOIDAL EXSOLUTION BY INTERNAL SHEAR STRESS IN PYROXENES FROM CHONDRITIC METEORITES
dc.type Статья


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