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  1. Home
  2. Browse by Author

Browsing by Author "Mujawar, Shafi"

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    Comparison of conventional concrete and special cement concrete
    (AIKTC, 2015-05) Mujawar, Shafi; Syed, Shahabuddin (11CE58); Chhatriwala, Farhan (12CE100); Shaikh, Shahid Madni (11CE48)
    Concrete is widely used construction material in the world. nowdays the world witnessing the construction of more and more challenging and difficult engineering structures. so the concrete need to posses very high strength and sufficient workability. Researches all the world developing high performance concrete by adding various fibres, admixtures in different proportion . various fibres like glass ,carbon, polypropylene and provide improvement in concrete properties like tensile strength fatigue characteristic, durability, shrinkage, impact erosion resistence and serviceability of concrete
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    Experimental investigation on physical properties of I-Crete incorporated cement on M30 grade of concrete
    (AIKTC, 2026-05) Mujawar, Shafi; Siddiqui, Arshad (23DCE02); Idrisi, Danish (21DCE11); Shaikh, Adnan Ahmad (22DCE43)
    This experimental study evaluates the physical properties of M30 grade concrete incorporated with i-Crete additives. The research focuses on determining the impact of varying i-Crete proportions on key performance indicators, specifically compressive strength, split tensile strength, and flexural strength. Systematic laboratory testing was conducted to identify the relationship between additive dosage and structural integrity. Results demonstrate that i-Crete integration enhances the overall mechanical strength of M30 concrete, with peak performance achieved at a specific optimal percentage. These findings suggest that i-Crete is a viable additive for improving the durability and strength characteristics of standard- grade concrete mixes.
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    Invisible Problem of Poor Compaction in Real Structures
    (NBM&CW, 2025-12) Patil, Dada S.; Mujawar, Shafi
    This study highlights the hidden risks of poor concrete compaction, showing how inadequate vibration increases porosity, lowers strength, and leads to misleading cube test results. The laboratory fin

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