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Study of structure formation in bitumen-mineral compositions based on fly ash under water saturation

机译:基于水饱和度粉煤灰的沥青矿物组合物结构形成研究

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The industrial powder waste from thermal power plants such as fly ash is used as asphalt or mineral filler due to its properties and dispersibility. However, the conflicting data on the fly ash usage are due to the different compositions, dispersibility, reaction capacity of the used fly ash. This paper presents the detailed research of the structuring process in bitumen-mineral compositions experimentally studied under the water saturation tests. The water saturation for the asphalt cements evaluates the strength of adhesion of the binder film to the particle surface as well as the stability of the bitumen-mineral structure when saturating water under the reduced pressure and elevated temperature. Depending on the fly ash composition, the structure formation operates differently at the component cohesion stage and during the swelling test. In bitumen-mineral composites, based on the high-lime ash, the mineral hydration leads to the binder film liftoff as well as to the change of the ash phase composition due to the low adhesion of bitumen and mineral particles. That results in undesirable formations in the system such as calcium sulfate dihydrate and ettringite, particularly. These formations cause the structural softening and the swelling of asphalt cements. The higher bitumen - low-lime ash adhesion provided the more stable structure of asphalt cements under testing. That resulted just in the binder film deformation without its liftoff. The swelling of the bitumen compositions was provided by the low packing density of ash particles in the asphalt cement.
机译:由于其性能和分散性,粉煤灰如粉煤灰等热电厂的工业粉末废物用作沥青或矿物质填料。然而,粉煤灰使用的冲突数据是由于不同的组成,分散性,所使用的粉煤灰的反应能力。本文介绍了在水饱和试验下实验研究的沥青矿物组合物中结构过程的详细研究。沥青水泥的水饱和度评估粘合剂膜对颗粒表面的粘附强度以及在减压下饱和水时饱和水结构的稳定性。取决于粉煤灰组合物,结构形成在组件内聚阶段和溶胀试验期间不同地运行。在沥青 - 矿物复合材料上,基于高石灰灰,矿物水合导致粘合剂膜剥离以及由于沥青和矿物颗粒的低粘附性而导致灰相组成的变化。这导致系统中的不希望的形成,例如硫酸钙二水合物和Ettringite,特别是。这些形成导致结构软化和沥青水泥的溶胀。较高的沥青 - 低石灰灰粘附提供了在测试中更稳定的沥青水泥结构。这导致粘合剂膜变形而没有其升降机。通过沥青水泥中的灰分颗粒的低填充密度提供沥青组合物的溶胀。

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