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Comparison between HB and HDF made from waste leather
A. Rindler
, P. Solt
,
M.C. Barbu
Forest Products Technology
Design and Green Engineering
Research output
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peer-review
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Keyphrases
Leather
100%
Waste Leather
100%
Wood
42%
Elastic Modulus
42%
Production Process
42%
Mechanical Properties
28%
Composite Materials
14%
Spruce
14%
Urea-formaldehyde
14%
Bending Strength
14%
Tensile Strength
14%
Beech
14%
Internal Bond
14%
Wet Process
14%
Composite Board
14%
Material Properties
14%
Board Properties
14%
Wood Fiber
14%
Resource Scarcity
14%
Discontinuous Processes
14%
Board Type
14%
Wet White
14%
Panel Type
14%
Published Results
14%
Wet Blue Leather
14%
Bond Bending
14%
Process Influence
14%
Phenol-formaldehyde Resin
14%
High Density Fibreboard
14%
Wood Panel Industry
14%
Innovative Approaches
14%
Hardboard
14%
Material Science
Leather
100%
Elastic Moduli
33%
Mechanical Property
22%
Ultimate Tensile Strength
11%
Flexural Strength
11%
Density
11%
Composite Material
11%
Urea
11%
Materials Property
11%
Spruce
11%