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首页> 外文期刊>Interceram: International Journal for Bricks, Structural Clay Products, Refractories, Pottery, Fine Ceramics, Abrasives and Special Ceramics >Polysialate Matrixes from Al-Rich and Si-Rich Metakaolins: Polycondensation and Physico-Chemical Properties
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Polysialate Matrixes from Al-Rich and Si-Rich Metakaolins: Polycondensation and Physico-Chemical Properties

机译:富铝和富硅偏高岭土的聚唾液酸酯基质:缩聚和理化性质

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Two metakaolins from Al-rich and Si-rich kaolinitic clays were used to design polysialate matrices with different 5i/AI and NaK/AI ratios. The aim was to investigate the influence of oligomers formed during dissolution and hydrolysis on the polycondensation and transformation to hard and stable matrices. Products of geopolymerization of the different matrices were subjected to mechanical testing considering various loading configurations. The geopolymer matrices showed compressive strength from 51 + 5 MPa (Si/Al.:1.23) to 61 + 2 MPa (5i/Al = 2.42) and bi-axial four-point strength from 11 + 2 MPa to 16 + 1.1 MPa respectively. These results were consistent with density, leaching ability and microstructure. It is proposed that the mechanical properties and the stability of the products of reactions can be discussed as the important parameters for the evaluation of the quality of geopolymer matrices. Moreover, polycondensation and the final performance of the product are greatly influenced by the unreacted crystalline or semi-crystalline phases that act as fillers and contribute to increased stability and mechanical properties. A good geopolymer material resulting from our study will be defined as an amorphous matrix of polysialates in which various unreacted or partly reacted crystalline phases are embedded. It is suggested that Si-rich metakaolin will present the more hardening and stable matrix with shorter setting time leading to small pores and an enhanced interlocked microstructure.
机译:来自富铝和富硅高岭土的两种偏高岭土用于设计具有不同5i / AI和NaK / AI比率的聚唾液酸盐基质。目的是研究溶解和水解过程中形成的低聚物对缩聚和转化为硬质稳定基质的影响。考虑到各种负载配置,对不同基质的地质聚合产物进行了机械测试。地质聚合物基体的抗压强度分别为51 + 5 MPa(Si / Al。:1.23)至61 + 2 MPa(5i / Al = 2.42)和双轴四点强度分别为11 + 2 MPa至16 + 1.1 MPa 。这些结果与密度,浸出能力和微观结构一致。建议将机械性能和反应产物的稳定性作为评估地质聚合物基质质量的重要参数进行讨论。此外,缩聚反应和产物的最终性能受到未反应的结晶或半结晶相的影响,这些结晶或半结晶相起填料的作用,并有助于提高稳定性和机械性能。由我们的研究得出的一种良好的地质聚合物材料将被定义为聚硅酸盐的无定形基质,其中嵌入了各种未反应或部分反应的结晶相。这表明富硅偏高岭土将呈现出更坚硬,更稳定的基体,凝固时间更短,从而导致小孔和增强的互锁微观结构。

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