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Investigating the Effects of Tobacco Lignin on Polypropylene
Irfan Tahir
, John Rapinac
, Abutunis Abdulaziz
,
Venkata Gireesh Menta
Mechanical & Industrial Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
3
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Scopus citations
Overview
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Weight
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Engineering
Injection Moulding
100%
Environmental Concern
50%
Melting Temperature
50%
Single Screw Extruder
50%
Ultimate Tensile Strength
50%
Final Product
50%
Melt Blending
50%
Extrusion Process
50%
Peak Temperature
50%
Tensile Stiffness
50%
High Value Product
50%
Product Performance
50%
Production Time
50%
Processing Cost
50%
Cross Section
50%
Crystallinity
50%
Global Warming
50%
Crystallization Point
50%
Mechanical Property
50%
Melting Point
50%
Keyphrases
Tobacco
100%
Lignin
100%
Polypropylene
100%
Injection Molding Parameters
15%
High-value Products
7%
Acetylation
7%
Production Cost
7%
Crystallinity
7%
Mechanical Properties
7%
Thermal Properties
7%
Uniform Distribution
7%
Environmental Concern
7%
Physical Properties
7%
Melt Blending
7%
Production Time
7%
Melting Temperature
7%
Tensile Strength
7%
Superior Performance
7%
Processing Cost
7%
Thermogravimetric Analysis
7%
Tobacco Plants
7%
Coupons
7%
Lignin Content
7%
Commercial Application
7%
Global Warming
7%
Crystallization Temperature
7%
Decomposition Temperature
7%
Peak Temperature
7%
Extrusion Process
7%
Product Performance
7%
Tensile Stiffness
7%
Product Application
7%
Strength Degradation
7%
Eco-friendly Materials
7%
Lignin Particles
7%
Physical-mechanical
7%
Single-screw Extruder
7%
Chemistry
Poly(propylene)
100%
Decomposition Temperature
20%
Enthalpy
20%
Melting Point
20%
Crystallization Point
20%
Thermogravimetric Analysis
20%
Environmental Friendliness
20%
Differential Scanning Calorimetry
20%
Crystallinity
20%
Tensile Strength
20%
melt
20%
Mechanical Property
20%
Acetylation
20%
Scanning Electron Microscopy
20%
Material Science
Polypropylene
100%
Lignin
100%
Injection Molding
13%
Scanning Electron Microscopy
6%
Mechanical Property
6%
Thermogravimetric Analysis
6%
Differential Scanning Calorimetry
6%
Ultimate Tensile Strength
6%