Experimental investigation on fibre reinforced bacterial concrete with partial replacement of coarse aggregate by steel slag
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ABSTRACT
newlineWhatever legacy the building may have cracks have all powers to spoil
newlineboth their aesthetic view and strength. Structural cracks cause s damages to
newlinebuildings, Monuments etc., and it may also lead to collapsing of the structure.
newlineCracks let in moisture and increase the permeability of the concrete which
newlineresults in corrosion of reinforcement. By using bacterial concrete, the cracks
newlinecan be avoided. The bacterium to be used in this work is Bacillus Subtilis which
newlineis a gram positive cell bacterium. The bacterium increases the compressive and
newlinetensile strength of the building for the similar grade of conventional concrete.
newlineThus it does not allow cracks to occur. Bacteria remain active for 200 years. It
newlineis also harmless to human and eco-friendly. The bacteria absorb the moisture
newlinein the building and increase its growth and reproduction. Even if any cracks
newlineoccur, the bacteria self-heals the crack. Concrete plays a vital role in the design
newlineand construction of the nation s infrastructure. Almost three quarters of the
newlinevolume of the concrete is composed of aggregates. These are obtained from
newlinenatural rocks and river beds, thus degrading the rocks slowly. This issue of
newlineenvironmental degradation, and need for aggregates today demands for the
newlineusage of any other alternative source. In this study an attempt is made to use
newlinesteel slag, a by-product from the steel industry as a replacement for coarse
newlineaggregate in concrete and find the optimum replacement level of steel slag as
newlinecoarse aggregate and also steel fibres are added. M30 grade of concrete was
newlineused. Tests on Compressive strength, Split tensile strength were conducted on
newlinespecimens. It was concluded that replacing some percentage of coarse
newlineaggregate with the steel slag enhances the strength. The results showed that
newlinereplacing about 50 percent of steel slag aggregates for coarse aggregate and
newlineaddition of steel fibres at volume fraction of 3% increases the strength of the
newlineconcrete when compared to the conventional concrete mix.