4.4 Article

Chemical modification of sugarcane bagasse and sisal fibers using hydroxymethylated lignin: Influence on impact strength and water absorption of phenolic composites

Related references

Note: Only part of the references are listed.
Article Materials Science, Composites

Mechanical and damage tolerance behavior of short sisal fiber reinforced recycled polypropylene biocomposites

Md Naushad et al.

JOURNAL OF COMPOSITE MATERIALS (2017)

Article Agricultural Engineering

Phenolic and lignosulfonate-based matrices reinforced with untreated and lignosulfonate-treated sisal fibers

Fernando de Oliveira et al.

INDUSTRIAL CROPS AND PRODUCTS (2017)

Review Engineering, Manufacturing

A review of the recent developments in biocomposites based on natural fibres and their application perspectives

T. Gurunathan et al.

COMPOSITES PART A-APPLIED SCIENCE AND MANUFACTURING (2015)

Article Engineering, Multidisciplinary

Effect of fiber loading on the properties of treated cellulose fiber-reinforced phenolic composites

Ester Rojo et al.

COMPOSITES PART B-ENGINEERING (2015)

Article Green & Sustainable Science & Technology

Mechanical and Water Absorption Properties of Municipal Solid Waste and Banana Fiber-Reinforced Urea Formaldehyde Composites

J. Ronald Aseer et al.

ENVIRONMENTAL PROGRESS & SUSTAINABLE ENERGY (2015)

Review Chemistry, Applied

Processing and characterization of natural cellulose fibers/thermoset polymer composites

Vijay Kumar Thakur et al.

CARBOHYDRATE POLYMERS (2014)

Review Engineering, Manufacturing

Green composites: A review of material attributes and complementary applications

Michael P. M. Dicker et al.

COMPOSITES PART A-APPLIED SCIENCE AND MANUFACTURING (2014)

Article Engineering, Environmental

Use of recycled natural fibres in industrial products: A comparative LCA case study on acoustic components in the Brazilian automotive sector

Thais dos Santos Pegoretti et al.

RESOURCES CONSERVATION AND RECYCLING (2014)

Article Agricultural Engineering

Adding value to lignins isolated from sugarcane bagasse and Miscanthus

C. G. da Silva et al.

INDUSTRIAL CROPS AND PRODUCTS (2013)

Article Chemistry, Applied

Phenolic resins-100 years of progress and their future

Kazuhisa Hirano et al.

REACTIVE & FUNCTIONAL POLYMERS (2013)

Review Engineering, Environmental

Sugarcane bagasse - The future composite material: A literature review

Y. R. Loh et al.

RESOURCES CONSERVATION AND RECYCLING (2013)

Article Materials Science, Composites

Green Composites: An Overview

Elisa Zini et al.

POLYMER COMPOSITES (2011)

Article Polymer Science

Sisal chemically modified with lignins: Correlation between fibers and phenolic composites properties

Jackson D. Megiatto et al.

POLYMER DEGRADATION AND STABILITY (2008)

Article Polymer Science

Soy protein isolate/kraft lignin composites compatibilized with methylene diphenyl diisocyanate

J Huang et al.

JOURNAL OF APPLIED POLYMER SCIENCE (2004)

Article Agricultural Engineering

Hydroxymethylation and oxidation of Organosolv lignins and utilization of the products

AR Gonçalves et al.

BIORESOURCE TECHNOLOGY (2001)

Article Engineering, Manufacturing

Effects of environmental conditions on mechanical and physical properties of flax fibers

A Stamboulis et al.

COMPOSITES PART A-APPLIED SCIENCE AND MANUFACTURING (2001)

Article Engineering, Manufacturing

Rheological behavior of short sisal fiber-reinforced polystyrene composites

KCM Nair et al.

COMPOSITES PART A-APPLIED SCIENCE AND MANUFACTURING (2000)