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Title Recycled Precast Concrete Kerbs and Paving Blocks, a Technically Viable Option for Footways
ID_Doc 26429
Authors Juan-Valdés, A; Rodríguez-Robles, D; García-González, J; de Rojas, MIS; Guerra-Romero, MI; Martínez-García, R; Morán-del Pozo, JM
Title Recycled Precast Concrete Kerbs and Paving Blocks, a Technically Viable Option for Footways
Year 2021
Published Materials, 14, 22
DOI 10.3390/ma14227007
Abstract The linear economy paradigm in place to date has to be seriously challenged to give way to a new school of thought known as the circular economy. In this research work, precast kerbs and paving blocks made with recycled concrete (RACC-mixture) bearing 50 wt% mixed recycled aggregate (masonry content of 33%) and an eco-efficient cementitious material as 25 wt% conventional binder replacement were evaluated to assess their intrinsic potential to replace traditional raw materials, in keeping with circular economy criteria. Therefore, precast products were subjected to mechanical strength, durability and microstructure tests and were compared to conventional concrete units (CC-mixture and commercially available precast elements). Although a class demotion was observed for water absorption and some decreases in flexural strength (26%), splitting tensile strength (12.8%) and electrical resistivity (45%) and a lower class water absorption were registered, and the recycled mixture also exhibited a greater performance in terms of compressive strength (6%), a better abrasion resistance classification and a comparable porosity and microstructure, which ensures a good concrete durability. In any case, the results showed that precast pieces were European standard-compliant, thus supporting the viability of the mixed recycled aggregates and eco-efficient cementitious replacement in footways.
Author Keywords recycled cement; mixed recycled aggregates; recycled concrete; precast concrete; footways
Index Keywords Index Keywords
Document Type Other
Open Access Open Access
Source Science Citation Index Expanded (SCI-EXPANDED)
EID WOS:000726997300001
WoS Category Chemistry, Physical; Materials Science, Multidisciplinary; Metallurgy & Metallurgical Engineering; Physics, Applied; Physics, Condensed Matter
Research Area Chemistry; Materials Science; Metallurgy & Metallurgical Engineering; Physics
PDF https://www.mdpi.com/1996-1944/14/22/7007/pdf?version=1637312238
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