Experimental Research on Dehydration Process and Strength of Concrete Influenced by Drying Temperature and Concrete Size

Author:

Chen Xiaoming1,Zhang Guohui2ORCID,Zhou Wei1,Liu Hongchuan1,Yang Shiqiang1

Affiliation:

1. CITIC Construction Co. Ltd., Beijing 100027, China

2. Electrical Engineering College, Kunming University of Science and Technology, Kunming 650500, Yunnan, China

Abstract

Moisture has a significant effect on the properties of concrete, and drying concrete in an oven is a common method to obtain specimens with different moisture content. In this paper, C30 concrete specimens with different sizes were oven-dried at constant temperatures of 60, 80, 105, 120, and 150 °C, respectively. The change of specimen mass, ultrasonic testing, and compressive and splitting tensile strength were tested before and after drying. The size effect and the size effect law (SEL) of concrete were analysed. The results indicated that the maximum drying rate and water loss ratio of the specimens with different sizes under the same drying temperature are basically the same. The larger the size, the longer the drying time. After drying, the concrete compressive and splitting tensile strength have increased to varying degrees, and the smaller the size, the greater the increase. For C30 concrete with different sizes, the drying temperature that has the minimal influence is 105 °C. The SEL was modified by introducing drying temperature, and the formulas were obtained after drying.

Funder

Natural Science Foundation of Yunnan Province

Publisher

Hindawi Limited

Subject

General Engineering,General Materials Science

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