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Please use this identifier to cite or link to this item: http://ntour.ntou.edu.tw:8080/ir/handle/987654321/50392

Title: Effect of Polyolefin Fiber on the Engineered Properties of Cement-Based Composites Containing Silica Fume
Authors: Wei-Ting Lin
An Cheng
Ran Huang
Yu-Chih Chen
Xin-Gang Zhou
Contributors: 國立臺灣海洋大學:河海工程學系
Keywords: Polyolefin Fiber
Direct Tensile Strength
SEM Observation
Resistivity
Date: 2011
Issue Date: 2018-10-08T01:42:00Z
Publisher: international association for automation and robotics in construction
Abstract: Abstract: This study is aimed to evaluate the engineered properties of cement-based composites which comprise polyolefin fibers and silica fume in the mixes. Material variables include water-cementitious ratio, dosage of silica fume, polyolefin fiber length and dosage. Compressive strength, splitting tensile strength, direct tensile strength, resistivity, rapid chloride penetration test and microscopic observation were conducted. Test results indicate that the specimens containing silica fume have higher compressive strength than fiber and control specimens. The specimens with polyolefin fiber and silica fume have much higher tensile strength and ductility than the control and silica fume specimens. The specimens containing silica fume and polyolefin fiber demonstrate better resistance in chloride penetration than polyolefin fiber composites or silica fume composites. For a given volume fraction, short polyolefin fiber performs better than long polyolefin fiber in improving concrete properties. The specimen containing silica fume significantly increases in resistivity and decreases in total charge passed. SEM microscopy illustrates that the polyolefin fiber acts as the crack arresters in concrete, which can inhibit internal crack propagation.
URI: http://ntour.ntou.edu.tw:8080/ir/handle/987654321/50392
Appears in Collections:[河海工程學系] 期刊論文

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