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- W2039810471 abstract "Significance A volcanic ash–lime mortar has been regarded for centuries as the principal material constituent that provides long-term durability to ancient Roman architectural concrete. A reproduction of Imperial-age mortar based on Trajan’s Markets (110 CE) wall concrete resists microcracking through cohesion of calcium–aluminum–silicate–hydrate cementing binder and in situ crystallization of platey strätlingite, a durable calcium-aluminosilicate mineral that reinforces interfacial zones and the cementitious matrix. In the 1,900-y-old mortar dense intergrowths of the platey crystals obstruct crack propagation and preserve cohesion at the micron scale. Trajanic concrete provides a proven prototype for environmentally friendly conglomeratic concretes that contain ∼88 vol % volcanic rock yet maintain their chemical resilience and structural integrity in seismically active environments at the millenial scale." @default.
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- W2039810471 date "2014-12-15" @default.
- W2039810471 modified "2023-10-12" @default.
- W2039810471 title "Mechanical resilience and cementitious processes in Imperial Roman architectural mortar" @default.
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- W2039810471 doi "https://doi.org/10.1073/pnas.1417456111" @default.
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