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Understanding the electrical, thermal and mechanical properties of LDPE-clay nanocomposites
Published in Institution of Engineering and Technology
2019
Volume: 14
   
Issue: 6
Pages: 650 - 655
Abstract
The performance of low-density polyethylene (LDPE) clay nanocomposites was analysed. The inclusion of nano montmorillonite (MMT) clay in LDPE material has significantly increased the contact angle, corona ageing resistance, water droplet initiated corona inception voltage and surface discharge inception voltage of the composites. The surface charge decay rate of the samples significantly reduced on the inclusion of clay indicating modified trap distribution characteristics due to the inclusion of the filler. Dynamical mechanical analysis indicates increased storage modulus and reduced tan (δ) due to nanofillers inclusion. Laser-induced breakdown spectroscopy indicates that on inclusion of nanofillers the plasma temperature increases and crater depth decreases. In particular, increased discharge resistance, improved thermomechanical properties are observed with LDPE-MMT clay composites compared to pure LDPE. © The Institution of Engineering and Technology 2019
About the journal
JournalMicro and Nano Letters
PublisherInstitution of Engineering and Technology
ISSN17500443
Open AccessNo
Concepts (26)
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    Atomic emission spectroscopy
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    Contact angle
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    Decay (organic)
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    Nanocomposites
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    CORONA INCEPTION VOLTAGE
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    DISCHARGE INCEPTION VOLTAGES
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    DYNAMICAL MECHANICAL ANALYSIS
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    INCREASED DISCHARGES
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    LOW DENSITY POLYETHYLENE(LDPE)
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    SURFACE CHARGE DECAY
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    Thermal and mechanical properties
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    THERMOMECHANICAL PROPERTIES
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    Mechanical properties
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    Filler
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    Montmorillonite
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    Nanocomposite
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    Polyethylene
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    Article
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    Comparative study
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    Dynamics
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    Electric potential
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    LASER INDUCED BREAKDOWN SPECTROSCOPY
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    Mechanics
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    Surface charge
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    Temperature dependence
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    Thermal analysis