Domagała Lucyna, Sieja Kinga
Faculty of Civil Engineering, Cracow University of Technology, 31-155 Kraków, Poland.
Materials (Basel). 2023 Jun 10;16(12):4299. doi: 10.3390/ma16124299.
The dynamic modulus of elasticity (), specified by ultrasonic pulse velocity measurements, is often used, especially for concrete built into construction, to estimate the static modulus of elasticity (). However, the most commonly used Equations for such estimations do not take into account the influence of concrete moisture. The aim of this paper was to establish this influence for two series of structural lightweight aggregate concrete (LWAC) varying in their strength (40.2 and 54.3 MPa) and density (1690 and 1780 kg/m). The effect of LWAC moisture content turned out to be much more pronounced in the case of dynamic modulus measurements than for static ones. The achieved results indicate that the moisture content of the concrete should be taken into consideration in modulus measurements as well as in Equations estimating on the basis of specified by the ultrasonic pulse velocity method. The static modulus of LWACs was lower on average by 11 and 24% in relation to dynamic modulus, respectively when measured in air-dried and water-saturated conditions. The influence of LWAC moisture content on the relationship between specified static and dynamic moduli was not affected by the type of tested lightweight concrete.
通过超声脉冲速度测量确定的动态弹性模量()常被用于估算静态弹性模量(),尤其适用于建筑结构中的混凝土。然而,此类估算最常用的公式并未考虑混凝土湿度的影响。本文旨在确定强度(40.2和54.3 MPa)和密度(1690和1780 kg/m)不同的两组结构轻集料混凝土(LWAC)的这种影响。结果表明,在动态模量测量中,LWAC含水量的影响比静态模量测量中更为显著。所得结果表明,在模量测量以及基于超声脉冲速度法确定的来估算的公式中,都应考虑混凝土的含水量。在风干和水饱和条件下测量时,LWAC的静态模量相对于动态模量平均分别低11%和24%。LWAC含水量对规定的静态和动态模量之间关系的影响不受所测试轻集料混凝土类型的影响。