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An experimental investigation of the thermal spalling of polypropylene-fibered reactive powder concrete exposed to elevated temperatures 被引量:13

An experimental investigation of the thermal spalling of polypropylene-fibered reactive powder concrete exposed to elevated temperatures
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摘要 Polypropylene fibers are embedded to prevent reactive powder concrete (RPC) from spalling failure under high temperatures. This paper probes the influence of embedded fibers at various volumetric dosages on the thermomechanical properties of polypropylene-fibered reactive powder concrete (PPRPC) exposed to high tem- peratures up to 350 ℃ and on the spalling performance and characteristics up to 600 ℃. The thermomechanical prop- erties include the characteristic temperature for spalling, and residual strengths, such as the compressive strength, split tensile strength, and flexural tensile strength. A high- definition charge-coupled device camera and scanning electron microscope technology were employed to capture the spalling processes and to detect the microstructural changes in the materials with various fiber dosages. To understand and characterize the mechanism by which polypropylene fibers influence the thermal spalling of RPC, a numerical model to determine the moisture migration and vapor pressure transmission during spalling was developed in this paper. It showed that there was an optimal volu- metric dosage of fibers to prevent PPRPC from explosive spalling. The relationships between the mechanical char- acteristics of PPRPC and the fiber dosages were derived based on experimental data. Polypropylene fibers are embedded to prevent reactive powder concrete(RPC) from spalling failure under high temperatures. This paper probes the influence of embedded fibers at various volumetric dosages on the thermomechanical properties of polypropylene-fibered reactive powder concrete(PPRPC) exposed to high temperatures up to 350 °C and on the spalling performance and characteristics up to 600 °C. The thermomechanical properties include the characteristic temperature for spalling,and residual strengths, such as the compressive strength,split tensile strength, and flexural tensile strength. A highdefinition charge-coupled device camera and scanning electron microscope technology were employed to capture the spalling processes and to detect the microstructural changes in the materials with various fiber dosages. To understand and characterize the mechanism by whichpolypropylene fibers influence the thermal spalling of RPC,a numerical model to determine the moisture migration and vapor pressure transmission during spalling was developed in this paper. It showed that there was an optimal volumetric dosage of fibers to prevent PPRPC from explosive spalling. The relationships between the mechanical characteristics of PPRPC and the fiber dosages were derived based on experimental data.
出处 《Science Bulletin》 SCIE EI CAS CSCD 2015年第23期2022-2053,共32页 科学通报(英文版)
基金 supported by the National Natural Science Foundation of China(51125017 and 50974125) Research Fund for Doctoral Programs of Chinese Ministry of Education(20110023110015) the Fund for Creative Research & Development Group Program of Jiangsu Province the Priority Academic Program Development of Jiangsu Higher Education Institutions(PAPD)
关键词 Polypropylene reactive powder concrete(PPRPC) · Thermal spalling · Vapor pressuremechanism · Polypropylene fibers ·Elevated temperatures 活性粉末混凝土 聚丙烯纤维 剥落性能 高温 实验 劈裂抗拉强度 扫描电镜技术 电荷耦合装置
作者简介 e-mail: j uy @ cumtb.edu.cn
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