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Modelling of fracture strength of functionally graded geopolymer

机译:功能梯度地质聚合物的断裂强度建模

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In the current paper, fracture strength of a functionally graded geopolymer was analytically modelled for crack propagation in two possible perpendicular situations with respect to the functionally graded region. Functionally graded geopolymer was produced by pouring and subsequent vibration of two layers of different alkali activated fly ash-based geopolymers into the moulds. The thickness of functionally graded region was determined equal to 18.6 mm through evaluating Si/Al ratio obtained from EDS. In modelling procedure of both crack configurations, the functionally graded region was considered to have 372 layers with the thickness of 50 μm and the fracture strength of the geopolymeric specimen in functionally graded region was related to the fracture strength of the constituent layers. To represent the variation of surface energy and elastic modulus in functionally graded region, three different functions including exponential, power-law and linear were considered. The obtained results from the proposed model show a good agreement with those of obtained through experimental procedure.
机译:在当前的论文中,对功能梯度土工聚合物的断裂强度进行了分析建模,以了解相对于功能梯度区域在两种可能的垂直情况下的裂纹扩展。通过将两层不同的碱活化粉煤灰基地质聚合物倒入模具中并随后进行振动,可以生产出功能分级的地质聚合物。通过评估从EDS获得的Si / Al比,将功能梯度区域的厚度确定为等于18.6mm。在两种裂纹构造的建模过程中,功能梯度区域均被视为具有372层,厚度为50μm,并且功能梯度区域中的地聚合物样品的断裂强度与构成层的断裂强度相关。为了表示功能梯度区域中表面能和弹性模量的变化,考虑了三个不同的函数,包括指数函数,幂律函数和线性函数。从提出的模型获得的结果与通过实验程序获得的结果显示出良好的一致性。

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