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Mechanical Behavior of Workable Bio-Based Cementitious Composites for Construction Materials
This study presents the results of a wide experimental campaign aimed at characterizing the physical and mechanical response of sustainable cementitious composites produced different types of bio-aggregates (i.e., bamboo particles, wood shavings and rice husk). First of all, based on the specific physical and geometrical properties of the bio-aggregates, an adapted mixing process was performed in order to warranty an adequate moldability. Then, the stress-strain behavior of the hardened samples was investigated up to 28-days by unveiling the influence of the several types of particles on the resulting mechanical response. The results proposed herein demonstrate the high potential of the bio-concretes for being employed as an innovative and sustainable construction materials.
Mechanical Behavior of Workable Bio-Based Cementitious Composites for Construction Materials
This study presents the results of a wide experimental campaign aimed at characterizing the physical and mechanical response of sustainable cementitious composites produced different types of bio-aggregates (i.e., bamboo particles, wood shavings and rice husk). First of all, based on the specific physical and geometrical properties of the bio-aggregates, an adapted mixing process was performed in order to warranty an adequate moldability. Then, the stress-strain behavior of the hardened samples was investigated up to 28-days by unveiling the influence of the several types of particles on the resulting mechanical response. The results proposed herein demonstrate the high potential of the bio-concretes for being employed as an innovative and sustainable construction materials.
Mechanical Behavior of Workable Bio-Based Cementitious Composites for Construction Materials
Lecture Notes in Civil Engineering
di Prisco, Marco (editor) / Menegotto, Marco (editor) / da Gloria, M’hamed Yassin Rajiv (author) / Andreola, Vanessa Maria (author) / dos Santos, Daniele Oliveira Justo (author) / Pepe, Marco (author) / Filho, Romildo Dias Toledo (author)
Italian Concrete Conference ; 2021 ; Naples, Italy
2023-09-10
14 pages
Article/Chapter (Book)
Electronic Resource
English
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