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水分对结构普通重量混凝土静、动弹性模量的影响

Moisture Impact on Static and Dynamic Modulus of Elasticity in Structural Normal-Weight Concretes.

作者信息

Domagała Lucyna, Margańska Maria, Miazgowicz Marek

机构信息

Faculty of Civil Engineering, Cracow University of Technology, 31-155 Kraków, Poland.

出版信息

Materials (Basel). 2024 Jul 27;17(15):3722. doi: 10.3390/ma17153722.

Abstract

In the case of concrete built into a structure, the static secant modulus of elasticity () is often estimated based on its dynamic value () measured by the ultrasonic pulse velocity method instead of direct tests carried out on drilled cores. Meanwhile, the prevailing equations applied to estimate often overlook the impact of concrete moisture. This study aimed to elucidate the moisture impact across two normal-weight structural concretes differing in compressive strength (51.6 and 71.4 MPa). The impact of moisture content was notably more evident only for the weaker concrete, according to dynamic modulus measurements. In other cases, contrary to the literature reports and expectations, this effect turned out to be insignificant. These observations may be explained by two factors: the relatively dense and homogeneous structure of tested concretes and reduced sensitivity of measurements to concrete moisture condition compared to measurements obtained using the ultrasonic method. Additionally, established formulas to estimate were verified. The obtained modulus results tested under different moisture conditions of normal-weight concretes were also compared with those of lightweight aggregate concretes of identical volume compositions previously obtained in a separate study.

摘要

对于浇筑在结构中的混凝土,其静态割线弹性模量( )通常是根据通过超声脉冲速度法测得的动态值( )来估算,而非对钻芯进行直接测试。同时,用于估算 的现行公式往往忽略了混凝土湿度的影响。本研究旨在阐明湿度对两种抗压强度不同(51.6和71.4 MPa)的普通重量结构混凝土的影响。根据动态模量测量结果,湿度含量的影响仅在强度较弱的混凝土中更为明显。在其他情况下,与文献报道和预期相反,这种影响被证明是微不足道的。这些观察结果可以由两个因素来解释:测试混凝土相对致密和均匀的结构,以及与使用超声方法获得的 测量结果相比, 测量对混凝土湿度条件的敏感性降低。此外,对用于估算 的既定公式进行了验证。还将在不同湿度条件下测试的普通重量混凝土的模量结果与先前在另一项单独研究中获得的相同体积组成的轻骨料混凝土的模量结果进行了比较。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a565/11313055/372a2753d283/materials-17-03722-g001.jpg

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