Improving the thermal properties of olive/bamboo fiber‐based epoxy hybrid composites
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[1] M. Arjmand,et al. Mechanical properties of bamboo fiber-reinforced polymer composites: a review of recent case studies , 2022, Journal of Materials Science.
[2] M. Jawaid,et al. Improvements in the thermal behaviour of date palm/bamboo fibres reinforced epoxy hybrid composites , 2021, Composite Structures.
[3] Liping He,et al. Mechanical and Dynamic Mechanical Properties of the Amino Silicone Oil Emulsion Modified Ramie Fiber Reinforced Composites , 2021, Polymers.
[4] M. Jawaid,et al. Olive fiber reinforced epoxy composites: Dimensional Stability, and mechanical properties , 2021, Polymer Composites.
[5] S. Siengchin,et al. Flexural and Dynamic Mechanical Properties of Alkali-Treated Coir/Pineapple Leaf Fibres Reinforced Polylactic Acid Hybrid Biocomposites , 2021, Journal of Bionic Engineering.
[6] C. Santulli,et al. A comparative evaluation of chemical, mechanical, and thermal properties of oil palm fiber/pineapple fiber reinforced phenolic hybrid composites , 2021, Polymer Composites.
[7] M. Jawaid,et al. Natural Fibre-Reinforced Composite for Ballistic Applications: A Review , 2021, Journal of Polymers and the Environment.
[8] M. Jawaid,et al. Effect of surface modified date palm fibre loading on mechanical, thermal properties of date palm reinforced phenolic composites , 2021, Composite Structures.
[9] M. Bashir. Use of Dynamic Mechanical Analysis (DMA) for Characterizing Interfacial Interactions in Filled Polymers , 2021, Solids.
[10] M. Jawaid,et al. Morphological, structural, and thermal analysis of three part of Conocarpus cellulosic fibres , 2021 .
[11] M. Jawaid,et al. Cellulose nanocrystal extracted from date palm fibre: Morphological, structural and thermal properties , 2021 .
[12] S. Siengchin,et al. Thermal characterization of date palm/epoxy composites with fillers from different parts of the tree , 2020 .
[13] F. Al-Oqla. Flexural Characteristics and Impact Rupture Stress Investigations of Sustainable Green Olive Leaves Bio-composite Materials , 2020, Journal of Polymers and the Environment.
[14] P. Sathyaseelan,et al. Dynamic mechanical analysis of areca/kenaf fiber reinforced epoxy hybrid composites fabricated in different stacking sequences , 2020 .
[15] M. Jawaid,et al. A New Study on Characterization and Properties of Natural Fibers Obtained from Olive Tree (Olea europaea L.) Residues , 2019, Journal of Polymers and the Environment.
[16] M. Jawaid,et al. Thermomechanical and dynamic mechanical properties of bamboo/woven kenaf mat reinforced epoxy hybrid composites , 2019, Composites Part B: Engineering.
[17] M. Jawaid,et al. Flexural, thermal and dynamic mechanical properties of date palm fibres reinforced epoxy composites , 2019, Journal of Materials Research and Technology.
[18] S. Awad,et al. Evaluation of the photostabilizing efficiency of polyvinyl alcohol–zinc chloride composites , 2018, Journal of Thermoplastic Composite Materials.
[19] S. M. Sapuan,et al. Thermal, mechanical, and physical properties of seaweed/sugar palm fibre reinforced thermoplastic sugar palm Starch/Agar hybrid composites. , 2017, International journal of biological macromolecules.
[20] Z. Leman,et al. Physicochemical and thermal properties of lignocellulosic fiber from sugar palm fibers: effect of treatment , 2016, Cellulose.
[21] M. T. Paridah,et al. A review on dynamic mechanical properties of natural fibre reinforced polymer composites , 2016 .
[22] P. Jeyaraj,et al. Synergy of fiber length and content on free vibration and damping behavior of natural fiber reinforced polyester composite beams , 2014 .
[23] B. F. Yousif,et al. Characteristics of kenaf fibre/epoxy composites subjected to thermal degradation , 2013 .