Academic literature on the topic 'Coconut Coir Fiber Aggregates (CCFA)'

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Journal articles on the topic "Coconut Coir Fiber Aggregates (CCFA)"

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C., VINAY KUMAR, V. BHASKAR DESAI Dr., and D. JAGAN MOHAN Dr. "EXPERIMENTAL INVESTIGATION ON HARDENED PROPERTIES OF CONCRETE MODIFIED WITH LIGHTWEIGHT COCONUT COIR FIBER AGGREGATES." International Journal of Advances in Engineering & Scientific Research 4, no. 3 (2017): 09–26. https://doi.org/10.5281/zenodo.10775958.

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<strong>Abstract</strong><strong>: </strong> &nbsp; &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; Modern world emerges with new techniques in construction field. Concrete technology has made tremendous strides in the past decade. The development in specifying the concrete according to its performance requirements, rather than its constituents and ingredients has opened innumerable opportunities for both producers and users of concrete to design concrete catering to their s
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C., VINAY KUMAR, V. BHASKAR DESAI Dr., and D. JAGAN MOHAN Dr. "EXPERIMENTAL INVESTIGATION ON HARDENED PROPERTIES OF CONCRETE MODIFIED WITH LIGHTWEIGHT COCONUT COIR FIBER AGGREGATES." International Journal of Advances in Engineering & Scientific Research Vol.4, Issue 3, May-2017 (2017): 09–26. https://doi.org/10.5281/zenodo.583715.

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Modern world emerges with new techniques in construction field. Concrete technology has made tremendous strides in the past decade. The development in specifying the concrete according to its performance requirements, rather than its constituents and ingredients has opened innumerable opportunities for both producers and users of concrete to design concrete catering to their specific requirements. One of the most outstanding advances in the concrete technology over the last decade has been “Lightweight Concrete” (LWC). In this study, Coconut Coir Fiber Aggregates (CCFA) are used as a lightweig
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P., Leela Balaji Ashok Kumar*1 &. P.Rajesh2. "IMPROVEMENT OF STRENGTH OF CONCRETE WITH PARTIAL REPLACEMENT OF COARSE AGGREGATE WITH COCONUT SHELL AND FINE AGGREGATE WITH COIR FIBRE." GLOBAL JOURNAL OF ENGINEERING SCIENCE AND RESEARCHES 6, no. 7 (2019): 1–11. https://doi.org/10.5281/zenodo.3345188.

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The growing concern of resource depletion and global pollution has challenged many researchers to seek and develop new materials relying on renewable resources. These include the use of by-products and waste materials for building construction. The utilization of coconut shells and coir fiber as a partial replacement for fine and coarse aggregates has been investigated in this study. This research work includes the experimental study of using locally available coconut shells as partial replacement with coarse aggregates and coir fiber obtained from metal casting industries as partial replaceme
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Jadhav, Ajit S. "Review Study on Compressive Strength of Concrete using Coconut Coir and Recycled Aggregate." INTERNATIONAL JOURNAL OF SCIENTIFIC RESEARCH IN ENGINEERING AND MANAGEMENT 09, no. 06 (2025): 1–9. https://doi.org/10.55041/ijsrem50776.

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This study investigates the feasibility of incorporating recycled coarse aggregates and coconut coir fibers into concrete to increase sustainability and structural performance. The study looks at how recycled materials and natural fibers affect the workability and mechanical qualities of concrete, namely compressive and flexural strength. Experimental trials were carried out on concrete samples with varied RCA proportions (ranging from 0% to 100% in 10% increments) and a fixed coconut coir fiber content of 1% by cement weight, with fiber dimensions of 60 mm in length and 0.35 mm in diameter. C
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Burhanudin, Irsyad, and Agustinus Agus Setiawan. "Effect of Coconut Fibre on the Compressive and Tensile Strength of Geopolymer Concrete." Jurnal Komposit 9, no. 1 (2025): 73–78. https://doi.org/10.32832/komposit.v9i1.16456.

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This research aims to evaluate the impact of adding coconut fiber on the compressive and tensile strengths of geopolymer concrete. The study utilized geopolymer concrete composed of a mixture of fly ash and coconut coir fiber. The research variables included the percentage of coconut coir fiber in the geopolymer concrete mix, namely 0%, 0.25%, 0.50%, and 1%. Data collection involved the fabrication of geopolymer concrete, testing of coarse and fine aggregates, and aggregate sieve analysis. The results of this study are expected to provide insights into the potential of coconut fiber in enhanci
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Maria Emilia P. Sevilla, Miller DL. Cutora, Julia Aliana Mari S. Cortez, Dominic Ross D. David, and Nicole Ashley D. Santos. "Coconut Coir Fiber and Coconut Shell as Substitute to Fine Aggregates in Concrete Mortar Cubes." Proceedings of International Exchange and Innovation Conference on Engineering & Sciences (IEICES) 10 (October 17, 2024): 1298–304. http://dx.doi.org/10.5109/7323423.

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Rumbayan, Rilya, Sudarno, and Adriana Ticoalu. "A study into flexural, compressive and tensile strength of coir-concrete as sustainable building material." MATEC Web of Conferences 258 (2019): 01011. http://dx.doi.org/10.1051/matecconf/201925801011.

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Coir has been known as a potential natural fiber for many sustainable construction material developments due to its wide availability and sustainable resource of coconut tree. This research study aims to investigate the flexural, compressive and tensile properties of concrete incorporating coir fiber and to find the fiber content which gives optimum results. In this study, coir concrete specimens were cast and tested with variations of fiber content of 0%, 0.25%, 0.5%, 0.75%, and 1% by weight of aggregates. Flexural test was conducted based on SNI 4431:2011, compressive test was conducted base
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Naidu, Dr G. Tirupathi. "To Study the Mechanical Behaviour of M30 Grade Concrete Using Light Weight and Self-Healing Concrete with Partial Replacement of Flyash and Coconut Fiber." International Journal for Research in Applied Science and Engineering Technology 13, no. 3 (2025): 2491–97. https://doi.org/10.22214/ijraset.2025.67861.

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Concrete is a widely used construction material due its high strength, durability. Traditional concrete has several limitations, including high weight, low thermal insulation and susceptibility to cracking and damaging. This study investigates various modifications to conventional concrete to enhance its mechanical properties, durability, and sustainability. The research focuses on four distinct approaches: incorporating 1.5% coconut coir fiber by volume to analyse its impact on compressive, tensile, and flexural strength; replacing 25% of cement with fly ash in M30 grade concrete to improve d
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Singh, Sumer. "To Study the Mechanical Properties of Concrete Using Coconut Fibre Ash & CRT Powder with Addition of Asbestos Fiber." International Journal for Research in Applied Science and Engineering Technology 12, no. 12 (2024): 167–75. https://doi.org/10.22214/ijraset.2024.65730.

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One of the ongoing issues with global sustainability in the twenty-first century is concrete. Cement has the highest carbon dioxide emissions and energy consumption of all the components used in concrete, which include water, fine aggregates, cement additives, and cement itself. Cathode-Ray Tube (CRT) technology has fallen behind as new technologies like Liquid Crystal Displays (LCD) and LED Display Panels are constantly replacing it. As a result, there are more CRTs that need to be disposed of annually worldwide. It can modify the physical property of concrete. Use and Recycling of CRT Tube a
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Compton, Michael, and Timothy Zauche. "Potential of Anaerobic Digestion-derived Biosolids as an Organic Addendum in Horticultural Growing Media." HortScience 41, no. 4 (2006): 970D—970. http://dx.doi.org/10.21273/hortsci.41.4.970d.

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Soilless horticultural growing media are composed of organic matter, coarse aggregates, nutrients, and a wetting agent. Sphagnum peat has been the standard organic addendum to soilles growing media. However, recent shortages, escalating costs, and its acidity make sphagnum peat a sometimes less-than-desirable material. Alternatives such as composted bark dust, coconut coir, composted manure, and crop by-products have been proposed as substitutes for sphagnum peat, but none are a suitable general alternative. Anaerobic digestion-derived biosolids (ADB) has the potential to become a complete or
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