Materials Map

Discover the materials research landscape. Find experts, partners, networks.

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The Materials Map is an open tool for improving networking and interdisciplinary exchange within materials research. It enables cross-database search for cooperation and network partners and discovering of the research landscape.

The dashboard provides detailed information about the selected scientist, e.g. publications. The dashboard can be filtered and shows the relationship to co-authors in different diagrams. In addition, a link is provided to find contact information.

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Materials Map under construction

The Materials Map is still under development. In its current state, it is only based on one single data source and, thus, incomplete and contains duplicates. We are working on incorporating new open data sources like ORCID to improve the quality and the timeliness of our data. We will update Materials Map as soon as possible and kindly ask for your patience.

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Naji, M.
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Bakri, Muhammad Khusairy Bin

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in Cooperation with on an Cooperation-Score of 37%

Topics

Publications (30/30 displayed)

  • 2024Basalt fiber reinforced polypropylene to manufacture <scp>3D</scp> printed composites3citations
  • 2020Impact of polyvinyl alcohol/acrylonitrile on bamboo nanocomposite and optimization of mechanical performance by response surface methodology23citations
  • 2020Life cycle assessment of sustainable composites5citations
  • 2020Applications of sustainable polymer composites in automobile and aerospace industry131citations
  • 2020The curing times effect on the strength of ground granulated blast furnace slag (GGBFS) mortar48citations
  • 2020Recycling of sustainable polymers and composites16citations
  • 2020Use of sustainable polymers to make green composites10citations
  • 2019The effect of palm oil fuel ash (POFA) and polyvinyl alcohol (PVA) on the physico-mechanical, thermal and morphological properties of hybrid bio-composites11citations
  • 2019Effect of Nano-enhancement on Acacia Wood Bio-composites5citations
  • 2019Dielectric Properties of Acacia Wood Bio-composites4citations
  • 2019Infrared Spectral Functional Group and Thermal Properties of Acacia Wood Bio-composites4citations
  • 2019Tensile, Flexural and Impact Strength of Acacia Wood Bio-composites4citations
  • 2019Acacia Wood and Its Surface Treatment for High Strength Bio-composites2citations
  • 2018Cellulose fiber-reinforced thermosetting composites: impact of cyanoethyl modification on mechanical, thermal and morphological properties17citations
  • 2018Mechanical Properties of Chicken Feather Reinforced Unsaturated Polyester Composites7citations
  • 2018Biomedical and packaging application of silica and various clay dispersed nanocomposites9citations
  • 2018Improvement of epoxy nanocomposites on physical, morphology, and mechanical properties as well as fracture behavior with the addition of mesoporous silica/nano-silica4citations
  • 2018Comparative Study of Compressive Strength of Epoxy Based Bio-Composites2citations
  • 2018Tert-butyl catechol/alkaline-treated kenaf/jute polyethylene hybrid composites: impact on physico-mechanical, thermal and morphological properties22citations
  • 2018Durability and sustainability of the silica and clay and its nanocomposites7citations
  • 2017Biocomposite Materials and Its Applications in Acoustical Comfort and Noise Control10citations
  • 2017Processing and Characterization of Banana Fiber/Epoxy Composites: Effect of Alkaline Treatment53citations
  • 2016Acoustical, thermal, and morphological properties of zein reinforced oil palm empty fruit bunch fiber bio-composites24citations
  • 2016Investigation On Dielectric And Sound Absorption Properties Of Banana Fibers Reinforced Epoxy Composites20citations
  • 2015Analysis of natural fiber polymer composites: Effects of alkaline treatment on sound absorption40citations
  • 2015An investigation of sound absorption coefficient on sisal fiber poly lactic acid bio-composites26citations
  • 2015Dielectric Properties of Lignocellulosic Fibers Reinforced Polymer Composites: Effect of Fiber Loading and Alkaline Treatment40citations
  • 2014Investigation of Fiber Surface Treatment on Mechanical, Acoustical and Thermal Properties of Betelnut Fiber Polyester Composites91citations
  • 2014Processing and Characterization of Epoxy/Luffa Composites: Investigation on Chemical Treatment of Fibers on Mechanical and Acoustical Properties27citations
  • 2014Comparative Study of Dielectric Properties of Hybrid Natural Fiber Composites131citations

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Zhang, Jinwen
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Garciaperez, Tsai
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Rhodes, Kyleigh
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Chang, Yuchung
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Pelaezsamaniego, Manuel Raul
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Yusof, Fahmi Asyadi Bin Md
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Muhammad, Adamu
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Hamdan, Sinin
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Rahman, Rezaur
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Jayamani, Elammaran
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Kakar, A.
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Rahman, Md Rezaur
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Hamdan, Salehhuddin
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Khui, P. L. Nyuk
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Zain, M.
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Kakar, Akshay
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Ngaini, Zainab Binti
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Sean, Lee Tet
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Islam, Md. Saiful
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Ezhumalai, Pushparaj
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Soon, Kok Heng
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2020
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Co-Authors (by relevance)

  • Zhang, Jinwen
  • Garciaperez, Tsai
  • Rhodes, Kyleigh
  • Chang, Yuchung
  • Pelaezsamaniego, Manuel Raul
  • Yusof, Fahmi Asyadi Bin Md
  • Muhammad, Adamu
  • Hamdan, Sinin
  • Rahman, Rezaur
  • Jayamani, Elammaran
  • Jie, Tee Jun
  • Baini, R.
  • Chie, Anita Wong May
  • Yun, Chin Mei
  • Phing, Cherlene Yong Wee
  • Khui, Perry Law Nyuk
  • Khan, Afrasyab
  • Kakar, A.
  • Rahman, Md Rezaur
  • Hamdan, Salehhuddin
  • Khui, P. L. Nyuk
  • Zain, M.
  • Kakar, Akshay
  • Ngaini, Zainab Binti
  • Heng, Soon Kok
  • Sean, Lee Tet
  • Islam, Md. Saiful
  • Ezhumalai, Pushparaj
  • Soon, Kok Heng
OrganizationsLocationPeople

article

Investigation of Fiber Surface Treatment on Mechanical, Acoustical and Thermal Properties of Betelnut Fiber Polyester Composites

  • Jayamani, Elammaran
  • Hamdan, Sinin
  • Rahman, Rezaur
  • Bakri, Muhammad Khusairy Bin
Abstract

his research work is concerned with the development of unsaturated polyester composites reinforced with betelnut fibers. Moreover, the fibers were chemically modified by sodium hydroxide and its effects on the fiber/matrix interaction were also evaluated. Raw and chemically modified fibers have been used in different proportions for the preparation of these composites. The optimization of fiber proportions has been done in term of their tensile strength. The sodium hydroxide treatment effect of fibers was verified by FTIR analysis and the fibers morphological aspects of fibers by SEM. Likewise, the sound absorption coefficient of composites were studied using impedance tube method. The thermal analyses of composites were made using Thermogravimetric analysis. Compared with untreated fiber composites, there was an improvement in the tensile strength of the treated fiber composites. SEM micrographs of betelnut fiber surface revealed the rough and perforated surface of fibers. Whereas, the cross sectional of the betelnut fibers showed the bigger lumen structures. The sound absorption coefficients of composites increased as the frequency increased and thicker composites appeared to perform better than those of thinner ones. The thermal stability of the treated fiber composites was found to be higher than that of untreated fiber composites.

Topics
  • impedance spectroscopy
  • surface
  • scanning electron microscopy
  • strength
  • Sodium
  • composite
  • thermogravimetry
  • tensile strength