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The absence of available site data on the durability and performance of marine concrete, with polypropylene fibre inclusions was a fundamental issue justifying this study.
The performance of the deformation behaviour of the soil barrier material has significantly improved in-terms of flexural tensile strength and gas intactness upon inclusion of discrete fibre inclusions within the soil.
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Fibre inclusion can significantly increase soil tensile strength and soil tensile failure ductility.
The test variables were FFRP tube thickness and coir fibre inclusion.
The cement, sand and water ratio used was 1 1.5 0.45 with 0.45% volume fraction of kenaf fibre inclusion.
In a previous work, it was demonstrated that fibre inclusion on PLA enhanced the modulus as well as the strength.
Coir fibre inclusion with an optimum mass content can further increase the fracture energy of the confined CFRC, compared to the confined PC specimens.
The results also show that the increase with the steel fibre inclusion in the post-peak stress, absorbed energy values, impact life for IBA concrete is much higher than those for gravel concrete.
Besides, these percentages of fibres inclusions in HSFC were found to be effective when the HSFC exposed to seawater.
This paper investigates experimentally the influence of steel fibres inclusion on the behaviour of Reactive Powder Concrete (RPC) columns.
In the composite, first inclusion is fibre and second inclusion is carbon nanotube embedded in a shape memory polymer heterogeneous matrix.
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