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Experimental Study of Cement Mortar-Steel Fiber Reinforced Rammed Earth Wall

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Author(s)
Shuai Yang
Miao Pang
Yongqiang Zhang
Keywords
rammed earth wall
ultimate bearing capacity
cement mortar-steel fiber reinforcement
model test
Environmental effects of industries and plants
TD194-195
Renewable energy sources
TJ807-830
Environmental sciences
GE1-350

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URI
http://hdl.handle.net/20.500.12424/3908982
Online Access
https://doaj.org/article/caa45632cc334beaa955c31549524124
Abstract
Rammed earth construction is an ancient technique which has recently attracted renewed interest throughout the world. Although rammed earth is currently regarded as a promising material in the construction industry in the context of sustainable development, it is difficult to quantify its bearing capacity, mechanical performance, as well as retrofitting approach, which discourages people from large-scale application in architectural engineering. This paper is devoted to the study of these problems based on rammed earth wall model experimentation. Three different models are studied considering different material components as well as structural configurations. By measuring the strain and deformation of the rammed earth wall models subjected to uniformly-distributed vertical loading, their ultimate bearing capacities are tested based on experimental investigation. Then the method of cement mortar-steel fiber reinforcement (CMSF) is carried out to study the ultimate bearing capacity enhancement of the wall models. Results show that the method of cement mortar-steel fiber reinforcement can increase the ultimate bearing capacity of the rammed earth wall models significantly, which is of relevant engineering significance in practical application.
Date
2012-10-01
Type
Article
Identifier
oai:doaj.org/article:caa45632cc334beaa955c31549524124
10.3390/su4102630
2071-1050
https://doaj.org/article/caa45632cc334beaa955c31549524124
Collections
Sustainability (MDPI)

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