Evaluación de la resistencia a compresión y durabilidad del concreto 175 kg/cm2 remplazando ladrillo triturado por agregado fino, Chiclayo 2021
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Fecha
2025
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Universidad Católica Santo Toribio de Mogrovejo
Resumen
La industria de la construcción actualmente se encuentra en un acelerado desarrollo, sin embargo, es de las más contaminantes a nivel mundial debido la explotación masiva de canteras para la utilización de los agregados en el diseño por ello en los últimos años los investigadores buscan alternativas ecológicas como el ladrillo triturado y han realizado estudios que ayuden a mejorar los materiales de la mezcla del concreto logrando una alta resistencia a los 28 días. El objetivo de la presente investigación es determinar evaluar resistencia y durabilidad del concreto f’c= 175 kg/cm² y reemplazo parcial de ladrillo triturado por agregado fino en los porcentajes de 10, 20 y 30 % respectivamente, luego se realizó la comparación de las 
propiedades del concreto patrón y experimental. El resultado arrojo que la óptima reemplazo de ladrillo triturado en sustitución parcial del agregado fino es del 10% para un f’c=175 kg/cm² siendo el aumento de la resistencia a la compresión, durabilidad como también en las propiedades en estado fresco del concreto.
The construction industry is currently in an accelerated development, however, it is one of the most polluting worldwide due to the massive exploitation of quarries for the use of aggregates in the design, so in recent years researchers are looking for ecological alternatives such as crushed brick and have conducted studies that help improve the materials of the concrete mixture achieving high strength after 28 days. The objetive of this research is to determine the effect of the resistance and durability of concrete. Using concrete pattern f'c = 175 kg / cm² and partial replacement of crushed brick by fine aggregate in the percentages of 10, 20 and 30 % respectively, then the comparison of the properties of the pattern and experimental concrete was performed. The result showed that the optimal replacement of crushed brick in partial replacement of fine aggregate is 10% for an f'c = 175 kg / cm² being the increase in compressive strength, durability as well as in the properties in fresh state of the concrete.
The construction industry is currently in an accelerated development, however, it is one of the most polluting worldwide due to the massive exploitation of quarries for the use of aggregates in the design, so in recent years researchers are looking for ecological alternatives such as crushed brick and have conducted studies that help improve the materials of the concrete mixture achieving high strength after 28 days. The objetive of this research is to determine the effect of the resistance and durability of concrete. Using concrete pattern f'c = 175 kg / cm² and partial replacement of crushed brick by fine aggregate in the percentages of 10, 20 and 30 % respectively, then the comparison of the properties of the pattern and experimental concrete was performed. The result showed that the optimal replacement of crushed brick in partial replacement of fine aggregate is 10% for an f'c = 175 kg / cm² being the increase in compressive strength, durability as well as in the properties in fresh state of the concrete.
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Concreto, Agregados (materiales de construcción, Reciclaje de residuos, Concrete, Aggregates (building materials), Waste recycling
Citación
I. I. Zamora Diaz. "Evaluación de la resistencia a compresión y durabilidad del concreto 175 kg/cm2 remplazando ladrillo triturado por agregado fino, Chiclayo 2021," tesis de licenciatura, Fac. de Ingeniería, Univ. USAT, Chiclayo, Perú, 2025. [En línea]. Disponible en:
