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首页> 外文期刊>Cement & concrete composites >Influence of pore structure on the strength behavior of particle- and fiber-reinforced metakaolin-based geopolymer composites
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Influence of pore structure on the strength behavior of particle- and fiber-reinforced metakaolin-based geopolymer composites

机译:孔隙结构对基于粒子和纤维增强型矿泉素的地质聚合物复合材料的影响

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摘要

Geopolymers are X-ray amorphous materials with appealing properties such as high flexural strength and high compressive strength. Yet, the influence of the heterogeneity and porosity on the constitutive behavior is not fully understood. We formulate a multiscale physics-based mechanistic model to describe the strength behavior of geopolymer composites. Using an energy-based approach, we derive novel solutions to describe the effective yield criterion of fiber-reinforced and particle-reinforced metakaolin geopolymers. We calibrate our theoretical model using nanoindentation tests and validate our theoretical framework via flexural strength tests on metakaolin-based geopolymer composites. Geopolymer composites are found to exhibit a pressure-dependent granular behavior. We subdivide the porosity into nanoporosity and microporosity. Our results indicate that the nanoporosity is solely influenced by the chemistry and is not influenced by the processing and the presence of reinforcement. Due tothe presence of nanoporosity, the strength-total porosity relationships are not unique. However, an approximate one-to-one correspondence exists between the strength and the microporosity. The nanogranular structure and the chemical composition at the nanometer scale have a profound influence on the effective mechanical response.Our conceptual framework is an important step in the mechanistic modeling of the behavior of geopolymer composites.
机译:地质聚合物是X射线非晶材料,具有吸引性的性能,如高弯曲强度和高抗压强度。然而,不完全理解异质性和孔隙率对组成型行为的影响。我们制定了一种基于多尺度物理学的机制模型,以描述地缘聚合物复合材料的强度行为。使用基于能量的方法,我们推导了新的解决方案来描述纤维增强和颗粒增强的咪达甘油蛋白地质聚合物的有效屈服标准。我们使用纳米狭辙测试进行校准我们的理论模型,并通过基于甲状腺素的地质聚合物复合材料的抗弯强度试验来验证我们的理论框架。发现地缘聚合物复合材料表现出压力依赖性粒状行为。我们将孔隙率细分为纳米孔隙度和微孔。我们的结果表明,纳米光度仅受化学的影响,不受加工和增强的存在影响。由于存在纳米优化性,强度 - 总孔隙率关系不是独特的。然而,在强度和微孔之间存在近似一对一的对应关系。纳米结构的纳米结构和化学成分对有效机械反应产生了深远的影响。我们的概念框架是地质聚合物复合材料行为的机械建模的重要步骤。

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