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Influence of Untreated Abaca Fibre on Mechanical Properties of Lightweight Foamed Concrete


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Ramamurthy, K., Nambiar, E.K.K. & Ranjani, G.I.S. (2009). Classification of studies on properties of foam concrete. Cement and Concrete Composites, 31(6), 388–396. RamamurthyK. NambiarE.K.K. RanjaniG.I.S. 2009 Classification of studies on properties of foam concrete Cement and Concrete Composites 31 6 388 396 10.1016/j.cemconcomp.2009.04.006 Search in Google Scholar

Mydin, M.A.O., Musa, M. & Ghani, A.N.A. (2018). Fiber glass strip laminates strengthened lightweight foamed concrete: Performance index, failure modes and microscopy analysis. AIP Conference Proceedings, 2016, 020111. MydinM.A.O. MusaM. GhaniA.N.A. 2018 Fiber glass strip laminates strengthened lightweight foamed concrete: Performance index, failure modes and microscopy analysis AIP Conference Proceedings 2016 020111 10.1063/1.5055513 Search in Google Scholar

Jiang, J., Lu, Z., Niu, Y., Li, J. & Zhang, Y. (2016). Study on the preparation and properties of high-porosity foamed concretes based on ordinary Portland cement. Materials and Design, 92, 949–959. JiangJ. LuZ. NiuY. LiJ. ZhangY. 2016 Study on the preparation and properties of high-porosity foamed concretes based on ordinary Portland cement Materials and Design 92 949 959 10.1016/j.matdes.2015.12.068 Search in Google Scholar

Mccarthy, A. & Jones, M.R. Preliminary views on the potential of foamed concrete as a structural material. Magazine of Concrete Research, 57(1), 21–31. MccarthyA. JonesM.R. Preliminary views on the potential of foamed concrete as a structural material Magazine of Concrete Research 57 1 21 31 10.1680/macr.2005.57.1.21 Search in Google Scholar

Norgaard, J. & Othuman Mydin, M.A. (2013). Drywall thermal properties exposed to high temperatures and fire condition. Jurnal Teknologi, 62(1), 63–68. NorgaardJ. Othuman MydinM.A. 2013 Drywall thermal properties exposed to high temperatures and fire condition Jurnal Teknologi 62 1 63 68 10.11113/jt.v62.1369 Search in Google Scholar

Johnson Alengaram, U., Al Muhit, B.A., Jumaat, M.Z. & Jing, M.L.Y. (2013). A comparison of the thermal conductivity of oil palm shell foamed concrete with conventional materials. Materials and Design, 51, 522–529. Johnson AlengaramU. Al MuhitB.A. JumaatM.Z. JingM.L.Y. 2013 A comparison of the thermal conductivity of oil palm shell foamed concrete with conventional materials Materials and Design 51 522 529 10.1016/j.matdes.2013.04.078 Search in Google Scholar

Feng, J., Zhang, R., Gong, L., Li, Y., Cao, W. & Cheng, X. (2015). Development of porous fly ash-based geopolymer with low thermal conductivity. Materials and Design, 65, 529–533. FengJ. ZhangR. GongL. LiY. CaoW. ChengX. 2015 Development of porous fly ash-based geopolymer with low thermal conductivity Materials and Design 65 529 533 10.1016/j.matdes.2014.09.024 Search in Google Scholar

Liu, C., Luo, J., Li, Q., Gao, S. & Chen, S. (2019). Calcination of green high-belite sulphoaluminate cement (GHSC) and performance optimizations of GHSC based foamed concrete. Materials and Design, 182, 107986. LiuC. LuoJ. LiQ. GaoS. ChenS. 2019 Calcination of green high-belite sulphoaluminate cement (GHSC) and performance optimizations of GHSC based foamed concrete Materials and Design 182 107986 10.1016/j.matdes.2019.107986 Search in Google Scholar

Feng, S., Zhou, Y., Wang, Y. & Lei, M. (2020). Experimental research on the dynamic mechanical properties and damage characteristics of lightweight foamed concrete under impact loading. International Journal of Impact Engineering, 140, 103558. FengS. ZhouY. WangY. LeiM. 2020 Experimental research on the dynamic mechanical properties and damage characteristics of lightweight foamed concrete under impact loading International Journal of Impact Engineering 140 103558 10.1016/j.ijimpeng.2020.103558 Search in Google Scholar

Chandni, T.J. & Anand, K.B. (2018). Utilization of recycled waste as filler in foam concrete. Journal of Building Engineering, 19, 154–160. ChandniT.J. AnandK.B. 2018 Utilization of recycled waste as filler in foam concrete Journal of Building Engineering 19 154 160 10.1016/j.jobe.2018.04.032 Search in Google Scholar

Liu, Y., Wang, Z., Fan, Z., Gu, J. (2020). Study on properties of sisal fiber modified foamed concrete. IOP Conf. Ser. Material Science Engineering, 744, 012042. LiuY. WangZ. FanZ. GuJ. 2020 Study on properties of sisal fiber modified foamed concrete. IOP Conf. Ser Material Science Engineering 744 012042 10.1088/1757-899X/744/1/012042 Search in Google Scholar

Nensok Hassan M., Othuman Mydin M.A., Awang H. (2022). Fresh state and mechanical properties of ultra-lightweight foamed concrete incorporating alkali treated banana fibre. Jurnal Teknologi, 84, 117–128. Nensok HassanM. Othuman MydinM.A. AwangH. 2022 Fresh state and mechanical properties of ultra-lightweight foamed concrete incorporating alkali treated banana fibre Jurnal Teknologi 84 117 128 10.11113/jurnalteknologi.v84.16892 Search in Google Scholar

Flores-Johnson, E.A., Yan, Y.Z., Carrillo, J.G., González-Chi, P.I., Herrera-Franco, P.J., Li, Q.M. (2018). Mechanical Characterization of Foamed Concrete Reinforced with Natural Fibre. Materials Research Proceedings, 7, 1–6. Flores-JohnsonE.A. YanY.Z. CarrilloJ.G. González-ChiP.I. Herrera-FrancoP.J. LiQ.M. 2018 Mechanical Characterization of Foamed Concrete Reinforced with Natural Fibre Materials Research Proceedings 7 1 6 10.21741/9781945291838-1 Search in Google Scholar

Amarnath, Y., Ramachandrudu, C. (2016). Properties of Foamed Concrete with Sisal Fibre. In Proceedings of the 9th International Concrete Conference 2016: Environment, Efficiency and Economic Challenges for Concrete, University of Dundee, Dundee, UK, 4–6. AmarnathY. RamachandruduC. 2016 Properties of Foamed Concrete with Sisal Fibre In Proceedings of the 9th International Concrete Conference 2016: Environment, Efficiency and Economic Challenges for Concrete University of Dundee, Dundee, UK 4 6 Search in Google Scholar

Raj, B., Dhanya S., Mini, K.M., Amritha R. (2020). Mechanical and durability properties of hybrid fiber reinforced foam concrete. Construction and Building Materials, 245, 118373. RajB. DhanyaS. MiniK.M. AmrithaR. 2020 Mechanical and durability properties of hybrid fiber reinforced foam concrete Construction and Building Materials 245 118373 10.1016/j.conbuildmat.2020.118373 Search in Google Scholar

Amran, Y.H.M., Farzadnia, N. & Abang Ali, A.A. (2015). Properties and applications of foamed concrete; a review. Construction and Building Materials, 101, 990–1005. AmranY.H.M. FarzadniaN. Abang AliA.A. 2015 Properties and applications of foamed concrete; a review Construction and Building Materials 101 990 1005 10.1016/j.conbuildmat.2015.10.112 Search in Google Scholar

Nambiar, E.K.K. & Ramamurthy, K. (2007). Air-void characterisation of foam concrete. Cement and Concrete Research, 37(2), 221–230. NambiarE.K.K. RamamurthyK. 2007 Air-void characterisation of foam concrete Cement and Concrete Research 37 2 221 230 10.1016/j.cemconres.2006.10.009 Search in Google Scholar

Kunhanandan Nambiar, E.K. & Ramamurthy, K. (2008). Fresh state characteristics of foam concrete. Journal of Materials in Civil Engineering, 20(2), 111–117. Kunhanandan NambiarE.K. RamamurthyK. 2008 Fresh state characteristics of foam concrete Journal of Materials in Civil Engineering 20 2 111 117 10.1061/(ASCE)0899-1561(2008)20:2(111) Search in Google Scholar

Nambiar, E.K.K. & Ramamurthy, K. (2006). Influence of filler type on the properties of foam concrete. Cement and Concrete Composites, 28(5), 475–480. NambiarE.K.K. RamamurthyK. 2006 Influence of filler type on the properties of foam concrete Cement and Concrete Composites 28 5 475 480 10.1016/j.cemconcomp.2005.12.001 Search in Google Scholar

Onésippe, C., Passe-Coutrin, N., Toro, F., Delvasto, S., Bilba, K. & Arsène, M.A. (2010). Sugarcane bagasse fibres reinforced cement composites: thermal considerations. Composites Part A: Applied Science and Manufacturing, 41(4), 549–556. OnésippeC. Passe-CoutrinN. ToroF. DelvastoS. BilbaK. ArsèneM.A. 2010 Sugarcane bagasse fibres reinforced cement composites: thermal considerations Composites Part A: Applied Science and Manufacturing 41 4 549 556 10.1016/j.compositesa.2010.01.002 Search in Google Scholar

Defence Standard code 40–42 (2002). Foam liquids, Fire extinguishing. Ministry of Defence, 2, 5–11. Defence Standard code 40–42 2002 Foam liquids, Fire extinguishing Ministry of Defence 2 5 11 Search in Google Scholar

Mydin, M.A.O. (2017). Preliminary studies on the development of lime-based mortar with added egg white. International Journal of Technology, 8(5), 800–810. MydinM.A.O. 2017 Preliminary studies on the development of lime-based mortar with added egg white International Journal of Technology 8 5 800 810 10.14716/ijtech.v8i5.442 Search in Google Scholar

Serri, E., Othuman Mydin, M.A. & Suleiman, M.Z. (2014). Thermal properties of Oil Palm Shell lightweight concrete with different mix designs. Jurnal Teknologi, 70(1), 155–159. SerriE. Othuman MydinM.A. SuleimanM.Z. 2014 Thermal properties of Oil Palm Shell lightweight concrete with different mix designs Jurnal Teknologi 70 1 155 159 10.11113/jt.v70.2507 Search in Google Scholar

Othuman Mydin, M.A., Sahidun, N.S., Mohd Yusof, M.Y. & Noordin, N.M. (2015). Compressive, flexural and splitting tensile strengths of lightweight foamed concrete with inclusion of steel fibre. Jurnal Teknologi, 75(5), 70–75. Othuman MydinM.A. SahidunN.S. Mohd YusofM.Y. NoordinN.M. 2015 Compressive, flexural and splitting tensile strengths of lightweight foamed concrete with inclusion of steel fibre Jurnal Teknologi 75 5 70 75 10.11113/jt.v75.4962 Search in Google Scholar

Youm, K.S., Moon, J., Cho, J.Y. & Kim, J.J. (2011). Experimental study on strength and durability of lightweight aggregate concrete containing silica fume. Construction and Building Materials, 114, 517–527. YoumK.S. MoonJ. ChoJ.Y. KimJ.J. 2011 Experimental study on strength and durability of lightweight aggregate concrete containing silica fume Construction and Building Materials 114 517 527 10.1016/j.conbuildmat.2016.03.165 Search in Google Scholar

Raj, B., Sathyan, D., Madhavan, M.K. & Raj, A. (2020). Mechanical and durability properties of hybrid fiber reinforced foam concrete. Construction and Building Materials, 245, 118373. RajB. SathyanD. MadhavanM.K. RajA. 2020 Mechanical and durability properties of hybrid fiber reinforced foam concrete Construction and Building Materials 245 118373 10.1016/j.conbuildmat.2020.118373 Search in Google Scholar

BS 196 (2005). Methods of testing cement. British Standards Institute, 2–8. BS 196 2005 Methods of testing cement British Standards Institute 2 8 Search in Google Scholar

BS 882 (1992). Specification for aggregates from natural sources for concrete. British Standards Institute, 1–4. BS 882 1992 Specification for aggregates from natural sources for concrete British Standards Institute 1 4 Search in Google Scholar

ASTM C869-91 (1999). Standard Specification for Foaming Agents Used in Making Preformed Foam for Cellular Concrete, ASTM International, 1–12 ASTM C869-91 1999 Standard Specification for Foaming Agents Used in Making Preformed Foam for Cellular Concrete ASTM International 1 12 Search in Google Scholar

ASTM C796 (1989). Standard Test Method for Foaming Agents for Use in Producing Cellular Concrete Using Preformed Foam, ASTM International, 1–3. ASTM C796 1989 Standard Test Method for Foaming Agents for Use in Producing Cellular Concrete Using Preformed Foam ASTM International 1 3 Search in Google Scholar

De Klerk, M.D., Kayondo, M., Moelich, G.M., de Villiers, W.I., Combrinck, R., Boshoff, W.P. (2020). Durability of chemically modified sisal fibre in cement-based composites. Construction and Building Materials, 241, 117835. De KlerkM.D. KayondoM. MoelichG.M. de VilliersW.I. CombrinckR. BoshoffW.P. 2020 Durability of chemically modified sisal fibre in cement-based composites Construction and Building Materials 241 117835 10.1016/j.conbuildmat.2019.117835 Search in Google Scholar

BS 12390-3 (2011). Testing hardened concrete. Compressive strength of test specimens. British Standards Institute, 1–8. BS 12390-3 2011 Testing hardened concrete. Compressive strength of test specimens British Standards Institute 1 8 Search in Google Scholar

BS EN 12390-5 (2019). Testing hardened concrete. Flexural strength of test specimens. British Standards Institute, 1–7. BS EN 12390-5 2019 Testing hardened concrete. Flexural strength of test specimens British Standards Institute 1 7 Search in Google Scholar

BS EN 12390-6 (2009). Testing hardened concrete. Tensile splitting strength of test specimens, British Standards Institute, 1–10. BS EN 12390-6 2009 Testing hardened concrete Tensile splitting strength of test specimens British Standards Institute 1 10 Search in Google Scholar

Zamzani, N.M., Mydin, M.A.O., Ghani, A.N.A. (2019). Effectiveness of ‘cocos nucifera linn’ fibre reinforcement on the drying shrinkage of lightweight foamed concrete. ARPN Journal of Engineering and Applied Sciences, 14, 3932–3937. ZamzaniN.M. MydinM.A.O. GhaniA.N.A. 2019 Effectiveness of ‘cocos nucifera linn’ fibre reinforcement on the drying shrinkage of lightweight foamed concrete ARPN Journal of Engineering and Applied Sciences 14 3932 3937 Search in Google Scholar

Othuman Mydin, M.A., Rozlan, N.A., Ganesan, S. (2015). Experimental study on the mechanical properties of coconut fibre reinforced lightweight foamed concrete. Journal of Materials and Environmental Science, 6, 407–411. Othuman MydinM.A. RozlanN.A. GanesanS. 2015 Experimental study on the mechanical properties of coconut fibre reinforced lightweight foamed concrete Journal of Materials and Environmental Science 6 407 411 Search in Google Scholar

Mohamad, N., Iman, M.A., Mydin, M.A.O., Samad, A.A.A, Rosli, J.A., Noorwirdawati, A. (2018). Mechanical properties and flexure behaviour of lightweight foamed concrete incorporating coir fibre. IOP Conference Series: Earth and Environmental Science, 140, 012140. MohamadN. ImanM.A. MydinM.A.O. SamadA.A.A. RosliJ.A. NoorwirdawatiA. 2018 Mechanical properties and flexure behaviour of lightweight foamed concrete incorporating coir fibre IOP Conference Series: Earth and Environmental Science 140 012140 10.1088/1755-1315/140/1/012140 Search in Google Scholar

Serri, E., Suleiman, M.Z., Mydin, M.A.O. (2019). The effects of oil palm shell aggregate shape on the thermal properties and density of concrete. Advanced Materials Research, 935, 172–175. SerriE. SuleimanM.Z. MydinM.A.O. 2019 The effects of oil palm shell aggregate shape on the thermal properties and density of concrete Advanced Materials Research 935 172 175 10.4028/www.scientific.net/AMR.935.172 Search in Google Scholar

Suhaili, S.S., Mydin, M.A.O., Awang, H. (2021). Influence of Mesocarp Fibre Inclusion on Thermal Properties of Foamed Concrete. Journal of Advanced Research in Fluid Mechanic and Thermal Science, 87, 1–11. SuhailiS.S. MydinM.A.O. AwangH. 2021 Influence of Mesocarp Fibre Inclusion on Thermal Properties of Foamed Concrete Journal of Advanced Research in Fluid Mechanic and Thermal Science 87 1 11 10.37934/arfmts.87.1.111 Search in Google Scholar

Mohamad, N., Samad, A.A.A., Lakhiar, M.T., Othuman Mydin, M.O., Jusoh, S., Sofia, A., Efendi, S.A. (2018). Effects of incorporating banana skin powder (BSP) and palm oil fuel ash (POFA) on mechanical properties of lightweight foamed concrete. International Journal of Integrated Engineering, 10, 169–176. MohamadN. SamadA.A.A. LakhiarM.T. Othuman MydinM.O. JusohS. SofiaA. EfendiS.A. 2018 Effects of incorporating banana skin powder (BSP) and palm oil fuel ash (POFA) on mechanical properties of lightweight foamed concrete International Journal of Integrated Engineering 10 169 176 10.30880/ijie.2018.10.09.013 Search in Google Scholar

Tambichik, M.A., Samad, A.A.A., Mohamad, N., Mohd Ali, A.Z., Othuman Mydin, M.A., Mohd Bosro, M.Z., Iman, M.A. (2018). Effect of combining Palm Oil Fuel Ash (POFA) and Rice Husk Ash (RHA) as partial cement replacement to the compressive strength of concrete. International Journal of Integrated Engineering, 10, 61–67. TambichikM.A. SamadA.A.A. MohamadN. Mohd AliA.Z. Othuman MydinM.A. Mohd BosroM.Z. ImanM.A. 2018 Effect of combining Palm Oil Fuel Ash (POFA) and Rice Husk Ash (RHA) as partial cement replacement to the compressive strength of concrete International Journal of Integrated Engineering 10 61 67 10.30880/ijie.2018.10.08.004 Search in Google Scholar

Serudin, A.M., Othuman, M.A.M., Ghani, A.N.A. (2021). Effect of lightweight foamed concrete confinement with woven fiberglass mesh on its drying shrinkage. Revista Ingeniería de Construcción, 36, 21–28. SerudinA.M. OthumanM.A.M. GhaniA.N.A. 2021 Effect of lightweight foamed concrete confinement with woven fiberglass mesh on its drying shrinkage Revista Ingeniería de Construcción 36 21 28 10.4067/S0718-50732021000100021 Search in Google Scholar

Kochova, K., Gauvin, F., Schollbach, K., Brouwers, H. (2020). Using alternative waste coir fibres as a reinforcement in cement fibre composites. Construction and Building Materials, 231, 117121. KochovaK. GauvinF. SchollbachK. BrouwersH. 2020 Using alternative waste coir fibres as a reinforcement in cement fibre composites Construction and Building Materials 231 117121 10.1016/j.conbuildmat.2019.117121 Search in Google Scholar

Awang, H., Mydin, M.A.O., Roslan, A.F. (2012). Effects of fibre on drying shrinkage, compressive and flexural strength of lightweight foamed concrete. Advanced Materials Research, 587, 144–149. AwangH. MydinM.A.O. RoslanA.F. 2012 Effects of fibre on drying shrinkage, compressive and flexural strength of lightweight foamed concrete Advanced Materials Research 587 144 149 10.4028/www.scientific.net/AMR.587.144 Search in Google Scholar

Othuman Mydin, M.A., Mohamed Shajahan, M.F., Ganesan, S., Sani, N.M. (2014). Laboratory investigation on compressive strength and micro-structural features of foamed concrete with addition of wood ash and silica fume as a cement replacement. MATEC Web of Conferences, 17, 01004. Othuman MydinM.A. Mohamed ShajahanM.F. GanesanS. SaniN.M. 2014 Laboratory investigation on compressive strength and micro-structural features of foamed concrete with addition of wood ash and silica fume as a cement replacement MATEC Web of Conferences 17 01004 10.1051/matecconf/20141701004 Search in Google Scholar

Krishna, N.K., Prasanth, M., Gowtham, R., Karthic, S., Mini, K.M. (2018). Enhancement of properties of concrete using natural fibers. Materials Today, 5, 23816–23823. KrishnaN.K. PrasanthM. GowthamR. KarthicS. MiniK.M. 2018 Enhancement of properties of concrete using natural fibers Materials Today 5 23816 23823 10.1016/j.matpr.2018.10.173 Search in Google Scholar

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