ECSP20048857A - Proceso para obtener un material compuesto basado en fibras vegetales - Google Patents

Proceso para obtener un material compuesto basado en fibras vegetales

Info

Publication number
ECSP20048857A
ECSP20048857A ECSENADI202048857A ECDI202048857A ECSP20048857A EC SP20048857 A ECSP20048857 A EC SP20048857A EC SENADI202048857 A ECSENADI202048857 A EC SENADI202048857A EC DI202048857 A ECDI202048857 A EC DI202048857A EC SP20048857 A ECSP20048857 A EC SP20048857A
Authority
EC
Ecuador
Prior art keywords
vegetable fibers
composite material
fibers
present
material based
Prior art date
Application number
ECSENADI202048857A
Other languages
English (en)
Inventor
Alexis García Guzman Jaime
Javier Cruz Riaño Luis
Isaac Fajardo Seminario Jorge
Original Assignee
Univ Politecnica Salesiana
Univ Potificia Bolivariana
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Univ Politecnica Salesiana, Univ Potificia Bolivariana filed Critical Univ Politecnica Salesiana
Priority to ECSENADI202048857A priority Critical patent/ECSP20048857A/es
Publication of ECSP20048857A publication Critical patent/ECSP20048857A/es

Links

Landscapes

  • Reinforced Plastic Materials (AREA)
  • Compositions Of Macromolecular Compounds (AREA)

Abstract

La presente invención se refiere a un proceso para obtener un material compuesto reforzado con fibras vegetales que comprende aislar las fibras vegetales, aplicar un tratamiento de plasma frío y mezclar las fibras tratadas teniendo un ángulo de contacto entre 10°-20° con un polímero termoplástico fundido para obtener el material compuesto. El proceso de la presente invención permite obtener materiales compuestos con mejor compatibilidad entre las fibras vegetales y la matriz polimérica proporcionando materiales en donde la resistencia a la tracción es de 35-49MPa, el módulo de Young es de 3.4-5GPa, el módulo de flexión es de 2.94-5.3 GPa, la resistencia al impacto Charpy con entalla a 23ºC es de 5.7-10kJ/m2, el índice de fluidez es de 6-10g/10 min a 190°C, densidad en el rango de 0.95-1.05g/cm3 y un incremento de la temperatura de degradación del material de 190ºC-200ºC.
ECSENADI202048857A 2020-08-12 2020-08-12 Proceso para obtener un material compuesto basado en fibras vegetales ECSP20048857A (es)

Priority Applications (1)

Application Number Priority Date Filing Date Title
ECSENADI202048857A ECSP20048857A (es) 2020-08-12 2020-08-12 Proceso para obtener un material compuesto basado en fibras vegetales

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
ECSENADI202048857A ECSP20048857A (es) 2020-08-12 2020-08-12 Proceso para obtener un material compuesto basado en fibras vegetales

Publications (1)

Publication Number Publication Date
ECSP20048857A true ECSP20048857A (es) 2021-01-29

Family

ID=74222175

Family Applications (1)

Application Number Title Priority Date Filing Date
ECSENADI202048857A ECSP20048857A (es) 2020-08-12 2020-08-12 Proceso para obtener un material compuesto basado en fibras vegetales

Country Status (1)

Country Link
EC (1) ECSP20048857A (es)

Similar Documents

Publication Publication Date Title
Asim et al. The effect of silane treated fibre loading on mechanical properties of pineapple leaf/kenaf fibre filler phenolic composites
Valença et al. Evaluation of the mechanical behavior of epoxy composite reinforced with Kevlar plain fabric and glass/Kevlar hybrid fabric
Peijs et al. Hybrid composites based on polyethylene and carbon fibres Part 2: influence of composition and adhesion level of polyethylene fibres on mechanical properties
US10780670B2 (en) Laminate
Yang et al. High volume-fraction silk fabric reinforcements can improve the key mechanical properties of epoxy resin composites
Jesthi et al. Effect of carbon/glass fiber symmetric inter-ply sequence on mechanical properties of polymer matrix composites
ATE533368T1 (de) Schutzhelme
Sathish et al. Experimental testing on hybrid composite materials
WO2007097780A8 (en) Flexible ballistic composites resistant to liquid pick-up, method for manufacture and articles made therefrom
ATE82903T1 (de) Schichtstoff aus metallschichten und aus durchgehendem,faserverstaerkten,synthetischen,th rmoplastischen material und verfahren zu seiner herstellung.
MX2009009992A (es) Articulos resistentes a balas de material mixto de capas cruzadas.
BR8501446A (pt) Processo para produzir um tecido previamente preparado de matriz de resina de fibra interfolheada
DE602006004035D1 (de) Heisshärtende poly(thio)urethanformulierung mit mindestens einem blockcopolymer und verwendung dafürit verbesserter zähigkeit
WO2006135574A3 (en) Polypropylene fiber for reinforcement of matrix materials
Ben Abdallah et al. Effect of surface treatment in cork reinforced composites
ECSP20048857A (es) Proceso para obtener un material compuesto basado en fibras vegetales
Lin et al. High-performance transparent laminates based on highly oriented polyethylene films
Dubey et al. Flexural and impact properties of midrib of coconut palm leaves reinforced polyester
KR960703720A (ko) 섬유 강화 수지제의 장척체 및 이의 제조방법(Elongated body of fiber-reinforced resin and method of manufacturing the same)
KR930703149A (ko) 매트릭스가 폴리벤즈옥사졸 또는 폴리벤조티아졸을 함유하는 매트릭스 복합체
MX2022014306A (es) Material compuesto de fibra de vidrio.
KR102029382B1 (ko) 복합재 및 이의 제조방법
Muralidharan et al. Ply-stacking effects on mechanical properties of Kevlar-29/banana woven mats reinforced epoxy hybrid composites
FR2913910B1 (fr) Ensemble fibreux pour piece composite,piece composite et procede de fabrication d'une telle piece composite
Srinivasan et al. Investigation of flexural property of kenaf-flax hybrid composite