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Rheology Optimization of Particle Modified Consolidants

机译:颗粒改性固结剂的流变优化

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摘要

Ethyl silicate-based consolidants are used to restore strength to degraded stones. One of the limitations of strength development using these products is their reported cracking behavior during drying. Particle Modified Consolidants (PMC) consist of a silicate matrix plus colloidal oxide particles. The presence of particles physically limits the silicate network from shrinking under capillary pressures, and thereby reduces strength loss during drying. In addition, the network maintains a higher permeability, because the dried consolidants remains porous. When the particles used are pigments, it is also conceivable to adjust the consolidant color. Moreover, a careful choice of particles should allow matching the thermal dilatation of the consolidant to that of the stone. An important limitation to further development of PMC has been the ability to avoid particle agglomeration in the dispersion. When agglomerates are present, not only do they increase the viscosity but they also can block pore entrances, preventing consolidant from entering the stone. In this work we demonstrate the feasibility of adsorbing nano-silica particles onto pigment particles to create a steric barrier to agglomeration. Rheology and density measurements confirm that the resulting dispersion is fluid and stable against settling. The consolidant readily penetrates Ohio Massilian sandstone, providing improved strength, stiffness, and salt resistance, compared to a commercial silicate consolidant.
机译:基于硅酸乙酯的固结剂用于恢复降解石材的强度。使用这些产品进行强度开发的限制之一是其在干燥过程中的开裂行为。颗粒改性固结剂(PMC)由硅酸盐基质和胶体氧化物颗粒组成。颗粒的存在从物理上限制了硅酸盐网络在毛细管压力下的收缩,从而减少了干燥过程中的强度损失。另外,网络保持较高的渗透性,因为干燥的固结剂保持多孔。当所使用的颗粒是颜料时,也可以想到调整固结剂的颜色。此外,仔细选择颗粒应使固结剂的热膨胀与石材的热膨胀匹配。 PMC进一步发展的一个重要限制是避免分散体中颗粒团聚的能力。当存在附聚物时,它们不仅会增加粘度,而且还会堵塞孔隙入口,从而防止固结剂进入石材。在这项工作中,我们证明了将纳米二氧化硅颗粒吸附到颜料颗粒上以形成结块的空间屏障的可行性。流变学和密度测量结果证实了所得的分散液是流动的并且对沉降稳定。与市售硅酸盐固结剂相比,该固结剂易于渗透俄亥俄马西里砂岩,从而提高了强度,刚度和耐盐性。

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