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<title>Self-compacting concrete with recycled concrete aggregate subjected to alternating-sign temperature variations: Thermal strain and damage</title>
<creator>Revilla Cuesta, Víctor</creator>
<creator>Skaf Revenga, Marta</creator>
<creator>Santamaría, Amaia</creator>
<creator>Espinosa González, Ana Belén</creator>
<creator>Ortega López, Vanesa</creator>
<subject>Self-compacting concrete</subject>
<subject>Recycled concrete aggregate</subject>
<subject>Extreme-ambient cyclical temperature increases</subject>
<subject>Linear thermal expansion coefficient</subject>
<subject>Internal damage</subject>
<subject>Hygroscopicity</subject>
<description>Any variation in temperature alters the dimensions of a concrete structure and provokes thermal&#xd;
stress. Moreover, the propagation of micro-cracking decreases the strength of concrete that is&#xd;
exposed to sub-zero temperatures (freezing), to heat phenomena (heating), or to cyclical thermal&#xd;
variations, especially when prepared using Recycled Concrete Aggregate (RCA). A reference selfcompacting concrete (SCC) mix made with 100% coarse and fine natural aggregate and three SCC&#xd;
mixes containing 100% coarse and/or fine RCA in replacement of natural aggregate were tested&#xd;
in this study of the thermal performance of SCC and the related effects of RCA. The mixtures were&#xd;
subjected to five thermal tests designed with positive and negative, and both constant and&#xd;
cyclical, extreme-ambient temperature variations, reaching temperatures of − 15 ◦C and 70 ◦C.&#xd;
Stiffness, weight, compressive strength, thermal deformability, and internal damage of the SCC&#xd;
mixtures were monitored throughout suitable testing. Internal damage, hygroscopicity, and loss&#xd;
of strength increased at temperatures below 0 ◦C, especially in the mixtures containing 100%&#xd;
coarse RCA, although the SCC manufactured with simultaneous additions of fine and coarse RCA&#xd;
fractions showed the worst performance. Overall, RCA performed better under positive temperature variations. The test results lead to the recommendation of a linear thermal expansion coefficient of 1.2⋅10− 5 ◦C− 1 in calculations for SCC containing RCA under those extreme&#xd;
environmental conditions.</description>
<date>2023-11-10</date>
<date>2023-11-10</date>
<date>2022-12</date>
<type>info:eu-repo/semantics/article</type>
<identifier>2214-5095</identifier>
<identifier>http://hdl.handle.net/10259/7989</identifier>
<identifier>10.1016/j.cscm.2022.e01204</identifier>
<language>eng</language>
<relation>Case Studies in Construction Materials. 2022,V. 17, e01204</relation>
<relation>https://doi.org/10.1016/j.cscm.2022.e01204</relation>
<rights>http://creativecommons.org/licenses/by-nc-nd/4.0/</rights>
<rights>info:eu-repo/semantics/openAccess</rights>
<rights>Attribution-NonCommercial-NoDerivatives 4.0 Internacional</rights>
<publisher>Elsevier</publisher>
</thesis></metadata></record></GetRecord></OAI-PMH>