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Nano-indentation experiment for determining mechanical properties of typical cement phases at nano/micro-scale

机译:纳米压痕实验,用于测定纳米/微级典型水泥相的机械性能

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Nano-indentation experiments are carried out on two cement pastes in order to get mechanical properties of cement pastes. For the comparison of initial cement paste, metakaolin as a valuable admixture for concrete/cement applications is added, considered to increase the reactivity of pozzolans. Statistical analysis on a number of indent points can be traced back to a medium modulus of elasticity. The averaged elastic moduli of typical phases in cement pastes are thus determined. Young's moduli of C.H phases is about 44.7GPa by nano-indentation experiment, which are close to the previous simulation values and other references. Besides, Young's moduli of Calcitc and clinker averaged by nano-indentation experiment are 86.695GPa and 102.230G.Pa, which are separately in relative good agreement with simulation values of 84.549GPa by Jia and 85.41-145.56GPa (porosity: 10%) by Arar. A systematic approach is developed to validate and to assess the elastic parameters associated with each phase. The P-h curves of the simulation and experiment are compared to conclude on the feasibility of the methodology.
机译:纳米压痕实验在两个水泥浆料上进行,以获得水泥浆料的机械性能。为了比较初始水泥浆料,添加了偏塔林作为混凝土/水泥应用的有价值的混合物,认为增加了Pozzolans的反应性。关于许多缩进点的统计分析可以追溯到中等弹性模量。因此确定了水泥浆料中的典型相平均弹性模量。少年的C.h阶段的Moduli是纳米缩进实验约44.7GPa,其接近先前的模拟值和其他参考。此外,少年的Calcitc和粉碎机的Moduli由纳米压痕实验平均为86.695gPa和102.230g.pa,其与jia和85.41-145.56gpa(孔隙度:10%)的相对良好的达84.549gpa的仿真值相对良好一致arar。开发了一种系统方法来验证和评估与每个阶段相关的弹性参数。将模拟和实验的P-H曲线进行比较,以得出关于方法的可行性。

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