Straw biomass fiber-plastic composite material
A composite material and biomass technology, applied in the field of orange stem biomass fiber-plastic composite materials, can solve the problems of low utilization rate and achieve the effects of improved utilization rate, good tensile properties, high strength and hardness
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Embodiment 1
[0024] Take the weight of 20% wheat straw, 40% of multi-textile fibers (polyester 67%, cotton 18%, other 15%), 25% PE recycled material, 10% wood powder, 5% filler and aid, Wheat straw, textile fibers, mixed and displacement of plastic, fibers in the dispersion and interface of the plastic, and the formation of the fibrillation of the fibrillation complex, the fibrous complex particles were prepared.
Embodiment 2
[0026] Take 30% of corn stalks, 30% of multi-textile fibers (67%, cotton 18%, other 15%), 25% PE reclaimed, 10% wood powder, 5% filler and aid, Wheat straw, textile fibers, mixed and displacement of plastic, fibers in the dispersion and interface of the plastic, and the formation of the fibrillation of the fibrillation complex, the fibrous complex particles were prepared.
Embodiment 3
[0028] Take the weight of 50% by weight of rice straw, 20% of multi-textile fibers (polyester 67%, cotton 18%, other 15%), 25% PE recycled material, 10% wood powder, 5% filler and aid, Wheat straw, textile fibers, mixed and displacement of plastic, fibers in the dispersion and interface of the plastic, and the formation of the fibrillation of the fibrillation complex, the fibrous complex particles were prepared.
[0029] PE new material Regeneration PE Example one Example 2 Example three Tensile strength (MPa) 22 18 23 21 19 Bending strength (MPa) 21 18 27 25 22 Bending modulus (MPa) 1100 600 2300 2100 1900
[0030] The intensity contrast of the embodiments of the present invention and PE plastics can be seen that the tensile strength, bending strength, and bending modulus of the fibrin are much higher than PE plastics.
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