• Bulletin of the Chinese Ceramic Society
  • Vol. 41, Issue 10, 3347 (2022)
GUO Yihang*, LI Li, YANG Chenxin, and SHI Yuqiong
Author Affiliations
  • [in Chinese]
  • show less
    DOI: Cite this Article
    GUO Yihang, LI Li, YANG Chenxin, SHI Yuqiong. Research Progress of Plant Fiber Reinforced Concrete[J]. Bulletin of the Chinese Ceramic Society, 2022, 41(10): 3347 Copy Citation Text show less
    References

    [5] SOSDEAN C, MARSAVINA L, DE SCHUTTER G. Damage of reinforced concrete structures due to steel corrosion[J]. Advanced Materials Research, 2015, 1111: 187-192.

    [13] WEN C C, ZHANG P, WANG J, et al. Influence of fibers on the mechanical properties and durability of ultra-high-performance concrete: a review[J]. Journal of Building Engineering, 2022, 52: 104370.

    [14] LI X, TABIL L G, PANIGRAHI S. Chemical treatments of natural fiber for use in natural fiber-reinforced composites: a review[J]. Journal of Polymers and the Environment, 2007, 15(1): 25-33.

    [15] BIAGIOTTI J, PUGLIA D, KENNY J M. A review on natural fibre-based composites-part I[J]. Journal of Natural Fibers, 2004, 1(2): 37-68.

    [16] MUNAWAR S S, UMEMURA K, KAWAI S C. Characterization of the morphological, physical, and mechanical properties of seven nonwood plant fiber bundles[J]. Journal of Wood Science, 2007, 53(2): 108-113.

    [17] RAMESH M, PALANIKUMAR K, REDDY K H. Plant fibre based bio-composites: sustainable and renewable green materials[J]. Renewable and Sustainable Energy Reviews, 2017, 79: 558-584.

    [18] YAN L B, KASAL B, HUANG L. A review of recent research on the use of cellulosic fibres, their fibre fabric reinforced cementitious, geo-polymer and polymer composites in civil engineering[J]. Composites Part B: Engineering, 2016, 92: 94-132.

    [21] DE ANDRADE SILVA F, MOBASHER B, FILHO R D T. Cracking mechanisms in durable sisal fiber reinforced cement composites[J]. Cement and Concrete Composites, 2009, 31(10): 721-730.

    [25] RAMAKRISHNA G, SUNDARARAJAN T. Impact strength of a few natural fibre reinforced cement mortar slabs: a comparative study[J]. Cement and Concrete Composites, 2005, 27(5): 547-553.

    [27] RANJBAR N, ZHANG M Z. Fiber-reinforced geopolymer composites: a review[J]. Cement and Concrete Composites, 2020, 107: 103498.

    [29] ABBAS A N, AZIZ F N A A, ABDAN K, et al. Kenaf fibre reinforced cementitious composites[J]. Fibers, 2022, 10(1): 3.

    [31] KORNIEJENKO K, FRACZEK E, PYTLAK E, et al. Mechanical properties of geopolymer composites reinforced with natural fibers[J]. Procedia Engineering, 2016, 151: 388-393.

    [32] CHEN R, AHMARI S, ZHANG L Y. Utilization of sweet sorghum fiber to reinforce fly ash-based geopolymer[J]. Journal of Materials Science, 2014, 49(6): 2548-2558.

    [33] AMALIA N, HIDAYATULLAH S, NURFADILLA, et al. The mechanical properties and microstructure characters of hybrid composite geopolymers-pineapple fiber leaves (PFL)[J]. IOP Conference Series: Materials Science and Engineering, 2017, 180: 012012.

    [34] S RIBEIRO R A, S RIBEIRO M G, SANKAR K, et al. Geopolymer-bamboo composite: a novel sustainable construction material[J]. Construction and Building Materials, 2016, 123: 501-507.

    [37] TOLDO FILHO R D, SCRIVENER K, ENGLAND G L, et al. Durability of alkali-sensitive sisal and coconut fibres in cement mortar composites[J]. Cement and Concrete Composites, 2000, 22(2): 127-143.

    [40] ZHAO R F, GUO H X, YI X Y, et al. Research on thermal insulation properties of plant fiber composite building material: a review[J]. International Journal of Thermophysics, 2020, 41(6): 87.

    [42] ZHU J, ZHENG W Z, SNEED L, et al. Mechanical properties of plant fibers reinforced alkali-activated slag cementitious material at high temperature[J]. Annales De Chimie-Science Des Matériaux, 2019, 43(4): 249-255.

    [43] GWON S, CHOI Y C, SHIN M. Effect of plant cellulose microfibers on hydration of cement composites[J]. Construction and Building Materials, 2021, 267: 121734.

    [44] SUDIN R, SWAMY N. Bamboo and wood fibre cement composites for sustainable infrastructure regeneration[J]. Journal of Materials Science, 2006, 41(21): 6917-6924.

    [45] SEDAN D, PAGNOUX C, SMITH A, et al. Mechanical properties of hemp fibre reinforced cement: influence of the fibre/matrix interaction[J]. Journal of the European Ceramic Society, 2008, 28(1): 183-192.

    [48] AGOPYAN V, SAVASTANO H, JOHN V M, et al. Developments on vegetable fibre-cement based materials in So Paulo, Brazil: an overview[J]. Cement and Concrete Composites, 2004, 27(5): 527-536.

    [49] BONNET-MASIMBERT P A, GAUVIN F, BROUWERS H J H, et al. Study of modifications on the chemical and mechanical compatibility between cement matrix and oil palm fibres[J]. Results in Engineering, 2020, 7: 100150.

    [53] TONOLI G H D, SANTOS S F, JOAQUIM A P, et al. Effect of accelerated carbonation on cementitious roofing tiles reinforced with lignocellulosic fibre[J]. Construction and Building Materials, 2010, 24(2): 193-201.

    [54] SOROUSHIAN P, WON J P, HASSAN M. Durability characteristics of CO2-cured cellulose fiber reinforced cement composites[J]. Construction and Building Materials, 2012, 34: 44-53.

    [55] NEVES A Jr, FERREIRA S R, TOLEDO FILHO R D, et al. Effect of early age curing carbonation on the mechanical properties and durability of high initial strength Portland cement and lime-pozolan composites reinforced with long sisal fibres[J]. Composites Part B: Engineering, 2019, 163: 351-362.

    [58] PRASAD B M, SAIN M M. Mechanical properties of thermally treated hemp fibers in inert atmosphere for potential composite reinforcement[J]. Materials Research Innovations, 2003, 7(4): 231-238.

    [60] SELLAMI A, MERZOUD M, AMZIANE S. Improvement of mechanical properties of green concrete by treatment of the vegetals fibers[J]. Construction and Building Materials, 2013, 47: 1117-1124.

    [62] OLIVEIRA F R, ERKENS L, FANGUEIRO R, et al. Surface modification of banana fibers by DBD plasma treatment[J]. Plasma Chemistry and Plasma Processing, 2012, 32(2): 259-273.

    [64] CLARAMUNT J, ARDANUY M, GARCA-HORTAL J A, et al. The hornification of vegetable fibers to improve the durability of cement mortar composites[J]. Cement and Concrete Composites, 2011, 33(5): 586-595.

    [65] LIU L F, YU J Y, CHENG L D, et al. Mechanical properties of poly(butylene succinate) (PBS) biocomposites reinforced with surface modified jute fibre[J]. Composites Part A: Applied Science and Manufacturing, 2009, 40(5): 669-674.

    [67] DE KLERK M D, KAYONDO M, MOELICH G M, et al. Durability of chemically modified sisal fibre in cement-based composites[J]. Construction and Building Materials, 2020, 241: 117835.

    [70] AKINYEMI A B, OMONIYI E T, ONUZULIKE G. Effect of microwave assisted alkali pretreatment and other pretreatment methods on some properties of bamboo fibre reinforced cement composites[J]. Construction and Building Materials, 2020, 245: 118405.

    [71] BILBA K, ARSENE M A. Silane treatment of bagasse fiber for reinforcement of cementitious composites[J]. Composites Part A: Applied Science and Manufacturing, 2008, 39(9): 1488-1495.

    GUO Yihang, LI Li, YANG Chenxin, SHI Yuqiong. Research Progress of Plant Fiber Reinforced Concrete[J]. Bulletin of the Chinese Ceramic Society, 2022, 41(10): 3347
    Download Citation