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In order to optimize the resulting properties, the effects of different curing methods were investigated.
The effects of different curing regimes including standard water curing and heat curing at 100, 150 and 200 °C on compressive strength, water absorption, and microstructure of GLRPC were investigated.
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In addition to this, the effect of different curing regimens on hardened properties of UHSC was carried out.
The effect of different curing times (2, 5, 10, 15 min) and different curing temperatures (90 °C, 150 °C, 180 °C) on the protection properties of the hybrid layer was investigated.
Control samples were kept under the four simulating curing conditions to study the effect of different curing condition on compressive strength of conventional concrete.
Table 2 Details of different curing conditions.
In a similar vein, immunoPET might help clarify the power of different cure strategies.
Effect of three different curing regimes on strength and strength development of the mortars is also the part of this study.
This paper aims to investigate the effect of four different curing regimes namely; tap water curing (WC), wet sack curing (WSC), air curing (AC), and liquid paraffin wax curing (LPWC) and different curing times (3, 7, 28, 56 and 180 days) on the mechanical properties of self-compacting Mortars (SCMs).
Therefore, the effect of different early curing regimes on the ASR expansion in HPC composites containing alkali reactive aggregates requires investigation.
In this work, the effects of different activators, particle size and curing conditions on the mechanical properties and hydration progress of alkali activated Pisha mortars were studied.
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