Open Journal of Civil Engineering

Open Journal of Civil Engineering

ISSN Print: 2164-3164
ISSN Online: 2164-3172
www.scirp.org/journal/ojce
E-mail: ojce@scirp.org
"Comparative Studies of Steel, Bamboo and Rattan as Reinforcing Bars in Concrete: Tensile and Flexural Characteristics"
written by Adekunle P. Adewuyi, Adegboyega A. Otukoya, Oluwole A. Olaniyi, Oladipupo S. Olafusi,
published by Open Journal of Civil Engineering, Vol.5 No.2, 2015
has been cited by the following article(s):
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[1] A Review on the Mechanical Behaviour of Bamboo Reinforced Concrete Beams
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[2] Effectiveness of using rattan fiber as a soil-reinforcing material and its application in different forms
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[3] Influence of alkalisation and eggshell particles on mechanical, thermal and physical properties of rattan-bamboo fibre reinforced hybrid polyester laminated composite
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[4] Study of the Implementation of Fibrous Materials and Earth in Hollow Body Slab in Reinforced Concrete: Case of Laterite, Borassus aethiopum and Calamus deerratus …
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[5] Flexural Behaviour of Bamboo Reinforced Concrete Beam
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[6] Mechanical characteristics of Biomaterial Particles Reinforced Epoxy Resin Composites for Automobile Accessories
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[7] Bamboo Reinforced Concrete Beam
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[8] Strength Potentials of Rattan Reinforced Concrete Using Concrete Grade C30/35
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[9] Characterization of major reinforcing bars for concrete works in Botswana construction industry
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[10] Bamboo as a Green Building Material: A Comparative Analysis
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[11] Practical Applications of Bamboo as a Building Material: Trends and Challenges
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[12] Flexural Capacity of Rattan Cane Reinforced Concrete Beams
E3S Web of Conferences, 2021
[13] Study of the Implementation of Fibrous Materials and Earth in Hollow Body Slab in Reinforced Concrete: Case of Laterite, Borassus Aethiopum and Calamus …
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[14] Optimization techniques using ANNOVA Taguchi method for flexural member of bamboo/steel as reinforcement in concrete
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[15] Compressive Failure of Rattan Reinforced Soil Mixture
2020
[16] Review on Fabrication of Bamboo Composite Materials Reinforced Concrete
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[17] An Investigation into the Use of Bamboo as Reinforcement in Concrete
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[18] Mechanical, Morphological Properties and Chemical Resistance of Filled Rattan Wastes Powder Epoxy Composites
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[19] Implementation of Agriculture Wastes in Different Construction Applications
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[20] Environmental, social and economic sustainability of bamboo and bamboo-based construction materials in buildings
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[21] Tensile and Flexural Properties of Common Steel Reinforcing bars in Southwestern Nigeria for Concrete Structures
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[22] Modélisation et simulation numérique d'une nervure mixte armée d'armatures végétales (rônier et lianes de rotin)
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[23] Mise au point d'un plancher mixte en éco-matériaux
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[24] CARACTERISATION DES BOIS DE RONIER ET DES LIANES DE ROTIN EN VUE DE LEUR UTILISATION COMME ARMATURES ENTRANT DANS LA REALISATION …
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[25] Investigation on Flexural Behaviour of Beam with Bamboo as Main Rebars
International Journal of Recent Technology and Engineering, 2018
[26] Bamboo reinforced self-compacting concrete one-way slabs for sustainable construction in rural areas
Cogent Engineering, 2018
[27] Beneficiated pozzolans as cement replacement in bamboo-reinforced concrete: the intrinsic characteristics
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[28] Sustainability and Recycling of Bamboo for Engineering Applications
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[29] Strength properties of bamboo and steel reinforced concrete containing manufactured sand and mineral admixtures
Journal of King Saud University - Engineering Sciences, 2017
[30] Fabrication and Performance Test of Glass-Bamboo Fiber Based Industry Safety Helmet
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[31] Investigation on Elastic Properties of Bamboo and Behavior of Bamboo Reinforced Concrete Beams
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[32] Axial Tensile Strength Analysis of Naturally Treated Bamboo as Possible Replacement of Steel Reinforcement in the Concrete Beam
Papua New Guinea University of Technology, Global Virtual Conference in Civil Engineering (GVCCE) 2016, 2017
[33] MISE AU POINT D'UNE DALLE EN ECO-MATERIAU
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[34] The Potential of Bamboo as Building Material in Organic Shaped Buildings
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[35] Flexural Performance of Self-Compacting Concrete Containing Corn-Cob Ash
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[36] Bambusa
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[37] Flexural Strength Properties of Slurry Infiltrated Fibrous Concrete (SIFCON) Beams using Miraculous Berry (Thaumatococcus daniellii) Fiber as Reinforcement
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[38] Investigation on Strength Properties of Bamboo Sticks as Reinforcement in Concrete with Metakaolin as Partial Replacement to Cement
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[39] Buong text
[40] Strength Analysis of Physically Treated Rattan as Reinforcement of Concrete Beam
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