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Evaluation of the Elastic Properties of Shot-Earth: Analytical Modelling and Experimental Validation
Shot-earth is a sustainable composite material made of excavated soil, aggregates and a binder for stabilization, such as cement. These components are mixed together and placed by shooting them at high speed through a dry process. In this chapter, an analytical approach is presented to evaluate the linear elastic properties of this eco-friendly material. The methodology, which is based on a multi-step Mori-Tanaka scheme, aims at providing a priori those mechanical properties needed in the design phases, in an easy manner, before the realization of a building in a specific site. Each step of the analytical approach is validated by means of the experimental results accomplished through a wide campaign.
Evaluation of the Elastic Properties of Shot-Earth: Analytical Modelling and Experimental Validation
Shot-earth is a sustainable composite material made of excavated soil, aggregates and a binder for stabilization, such as cement. These components are mixed together and placed by shooting them at high speed through a dry process. In this chapter, an analytical approach is presented to evaluate the linear elastic properties of this eco-friendly material. The methodology, which is based on a multi-step Mori-Tanaka scheme, aims at providing a priori those mechanical properties needed in the design phases, in an easy manner, before the realization of a building in a specific site. Each step of the analytical approach is validated by means of the experimental results accomplished through a wide campaign.
Evaluation of the Elastic Properties of Shot-Earth: Analytical Modelling and Experimental Validation
Springer Tracts in Civil Engineering
Tarantino, Angelo Marcello (editor) / Cotana, Franco (editor) / Viviani, Marco (editor) / Bacciocchi, M. (author) / Savino, V. (author) / Lanzoni, L. (author) / Tarantino, A. M. (author) / Viviani, M. (author)
Shot-Earth for an Eco-friendly and Human-Comfortable Construction Industry ; Chapter: 3 ; 45-65
2023-04-29
21 pages
Article/Chapter (Book)
Electronic Resource
English
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