1278
Dicionário Raphael Bluteau,séc. XVIII.
FALCETO,J.; MAZARRÓN,F.; CANÃS, I. Assessment of compressed earth blocks made in Spain:
International durability tests. Construction and Building Materials. N.37, p.738–745 ,2012.
JAYASINGHE, C.; KAMALADASA, N. Compressive strength characteristics of cement stabilized
rammed earth walls. Construction and Building Materials. n.21, p.1971-76, 2007.
KIANFAR, E.; TOUFIGH, V. Reliability analysis of rammed earth structures. Construction and
Building Materials. N.127, p.884–895,2016.
MANIADITIS, V.; WALKER, P. StructuralCapacityofRammedEarth in Compression.2008.
MANIADITIS, V.; WALKER, P. A. Review of Rammed Earth Construction for DTi Partners in
Innovation Project‘Developing Rammed Earth for UK Housing. 2003
NARLOCH, P. L.; WOYCIECHOWSKI, P.; DMOWSKA, E; HALEMBA, K.DurabilityAssessment of
MonolithicRammedEarthWalls. Archives of Civil Engineering. V.LXI, N.2, p.73-88, 2015.
NEW ZEALAN EDICT OF GOVERNMENT. NZS 4298. Materials and workmanship for earth
buildings [Building Code Compliance Document E2 (AS2)] ,1998.
OLOTUAH, A. O. Recourse to earthforlow-costhousing in Nigeria. Building and Environment. n.37,
p.123-29, 2002.
REDDY, B.; KUMAR, P.Cementstabilisedrammedearth. Part A: compactioncharacteristics and
physicalproperties of compactedcementstabilisedsoils. Materials and Structures. N.44, p.681-693,
2010.
SILVA, R. A.; OLIVEIRA, D. V.; MIRANDA, T.; CRISTELO, N.; ESCOBAR, M. C; SOARES,
E.Rammedearthconstructionwithgranitic residual soils: The case studyof northern Portugal.
Construction and BuildingMaterials. N.47, p.181–191,2013.
TRIPURA, D.; SINGH, K. Axial load-capacity of rectangular cementstabilizedrammedearthColumn.
EngineeringStructures. N.99, p.402–412, 2015.
TRIPURA, D.; SINGH, K. Behavior of cement-stabilizedrammedearth circular columnunder axial
loading. Materials and Structures. N.49, p.371–382, 2014.