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Enhancing material properties with a sustainable wood-quartz-HDPE composite: a study on strength
Vishalagoud S. Patil
,
Arun Y. Patil
*
, Piyush Kumar
, Anil Kumar
, Raman Kumar
, Chander Prakash
, P. C. Arunakumara
, Mallikarjungouda B. Patil
, Keshavmurthy R
, Jaber M. Asiri
, Yunus Khan Yunus
, Shaik Mohamed Shamsudeen
*
Corresponding author for this work
Department of Mechanical and Industrial Engineering, Manipal Institute of Technology, Bengaluru
Research output
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Contribution to journal
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Article
›
peer-review
3
Citations (Scopus)
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INIS
density
100%
wood
100%
quartz
100%
polyethylenes
100%
powders
50%
resources
50%
tensile strength
25%
environment
25%
hardness
25%
wastes
25%
impact strength
25%
mechanical properties
25%
physical properties
25%
fatigue
25%
voids
25%
sustainability
25%
recycling
25%
cracks
25%
durability
25%
compression strength
25%
sustainable development
25%
strength (impact)
25%
fracture mechanics
25%
Material Science
Materials Property
100%
Density
100%
Polyethylene
100%
Composite Material
100%
Ultimate Tensile Strength
33%
Physical Property
33%
Impact Strength
33%
Compressive Strength
33%
Fracture Mechanics
33%
Strength of Materials
33%