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Durability of clinker reduced shotcrete: Ca~(2+) leaching, sintering, carbonation and chloride penetration

机译:熟料耐久性降低喷射:Ca〜(2+)浸出,烧结,碳化和氯化物渗透

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摘要

The reduction of clinker use is mandatory to lower the negative environmental impact of concrete. In shotcrete mixes, similarly to the case of conventional concrete, the use of supplementary cementitious materials (SCMs) and proper mix design allow for the substitution of clinker without compromising the mechanical properties. However, the impact of the substitution on the durability of shotcrete needs to be further assessed and understood. The results from the present study, obtained from real-scale sprayed concrete applications, show a reduction of the Ca2+ leaching and sintering potential of clinker-reduced shotcrete mixes due to the presence of SCMs. This positive effect, crucial for low maintenance costs of tunnels, is mainly related to a reduced portlandite content, which on the other hand negatively affects the carbonation resistance of shotcrete. Additionally, the hydration of SCMs positively influences the chloride penetration resistance presumably due to a combination of microstructural changes and changes in the chloride binding capacity. Differences found in the pore size distribution of the various mixes have low impact on the determined durability parameters, in particular compared to the effect of inhomogeneities produced during shotcrete application.
机译:熟料使用的减少是强制性的,以降低混凝土的负环境影响。在喷射混合物中,与传统混凝土的情况类似,使用补充水泥材料(SCM)和适当的混合设计允许熟料替代而不损害机械性能。然而,需要进一步评估和理解替代对吸尘器耐久性的影响。本研究的结果从实际喷涂的混凝土应用中获得,由于SCM的存在,Ca2 +浸出和熟料混合混合物的烧结电位的降低。这种积极的效果,对于隧道低维护成本至关重要,主要与低植物含量减少,另一方面是对吸收的碳化抗性的负面影响。另外,由于微观结构变化的组合和氯化物结合能力的变化,SCM的水合可以呈正常影响氯化物渗透性阻力。各种混合物的孔径分布中发现的差异对确定的耐久性参数产生低影响,特别是与吸尘器应用期间产生的不均匀性的影响相比。

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