Polymer Modified Steel Fiber Reinforced Concrete

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Presentation transcript:

Polymer Modified Steel Fiber Reinforced Concrete 1 1

CONTENTS INTRODUCTION STEEL FIBER REINFORCED CONCRETE GENERAL                           INTRODUCTION                                                                   STEEL FIBER REINFORCED CONCRETE                       GENERAL                                                                      MIX DESIGN OF SFC                                                   PROPERTIES OF SFC                                                   APPLICATIONS OF SFC                                                        POLYMER MODIFIED SFC                                       EXPERIMENTAL PROGRAM                                                RESULTS                                                                      CONCLUSION                                                              REFERENCES                        

INTRODUCTION Steel fiber reinforced concretes are structural materials that are gaining importance quite rapidly due to the increasing demand of superior structural properties. These composites exhibit attractive tensile and compressive strengths, low drying shrinkage, high toughness, high energy absorption and durability.

STEEL FIBER REINFORCED CONCRETE GENERAL   MIX DESIGN OF SFC                   

PROPERTIES OF SFC Compressive strength Tensile strength Flexural strength                

POLYMER MODIFIED SFC To the steel fiber reinforced concrete a styrene butadiene rubber emulsion was added and the properties of such polymer modified steel fiber reinforced concrete (PSFC) are studied.

Experimental program Materials: The cementations material used in the test was ordinary Portland cement. Fly ash and silica fume. The coarse aggregate was crushed limestone with a maximum size of 12 mm.

RESULTS

conclusion Addition of steel fibers to a concrete will improve both its flexural and compressive strength. The strengths increase significantly with fiber content. The flexural strength increases greatly when containing 3-10 wt.% SBR. The optimal use of SBR is 5 wt.%, which achieves the highest flexural strength. However, the compressive strength may decrease with the addition arrives 10 wt.%, a  16% reduction is observed.

REFERENCES www.google.com www.wikipedia.com

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