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Matrix-Based Encapsulation of Construction Chemicals Using High-Shear Agglomeration

机译:基于高剪切附聚的基于矩阵的建筑化学品封装

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Encapsulation of dry superplasticizers in matrix-based encapsulation systems was investigated. As basic material, commercially available fly ash was granulated by high-shear agglomeration. Due to a high variability of factors affecting the encapsulation process and later release of admixtures, the design-of-experiments method was applied to reduce the quantity of experiments. Statistical evaluation indicates that the particle characteristics of the agglomerates were mostly influenced by the binder viscosity during the investigations. The delayed admixture release was enhanced by high binder viscosity and low energy input during the agglomeration process due to a coating of the bigger superplasticizer particles by the smaller fly ash. These results will help to develop encapsulated construction chemicals with controlled admixture delivery for the future application in a wide range of different building materials.
机译:研究了干式高效减水剂在基于基质的封装系统中的封装。作为基础材料,通过高剪切附聚将市售粉煤灰造粒。由于影响封装过程和混合物后来释放的因素的高度可变性,因此采用实验设计方法来减少实验数量。统计评估表明,在研究过程中,附聚物的颗粒特性主要受粘合剂粘度的影响。由于团聚过程中高粘合剂粘度和低能量输入而增加了延迟的混合物释放,这是由于较小的粉煤灰覆盖了较大的高效减水剂颗粒。这些结果将有助于开发可控制掺合料输送的封装建筑化学品,以备将来在各种不同建筑材料中的应用。

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