Potentialities of cellulose nanofibers (CNFs) in low density polyethylene (LDPE) composites
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作者:
Agnes, Erick Afonso
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State Univ Midwest, Grad Program Forestry Sci, Irati, PR, Brazil
Fed Inst Santa Catarina, Blumenal, SC, BrazilState Univ Midwest, Grad Program Forestry Sci, Irati, PR, Brazil
Agnes, Erick Afonso
[1
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Hillig, Everton
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State Univ Midwest, Grad Program Forestry Sci, Irati, PR, BrazilState Univ Midwest, Grad Program Forestry Sci, Irati, PR, Brazil
Hillig, Everton
[1
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Zattera, Ademir Jose
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Univ Caxias do Sul, Proc & Technol Engn Program, Caxias Do Sul, RS, BrazilState Univ Midwest, Grad Program Forestry Sci, Irati, PR, Brazil
Zattera, Ademir Jose
[2
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Beltrami, Lilian Rossa
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Univ Caxias do Sul, Proc & Technol Engn Program, Caxias Do Sul, RS, BrazilState Univ Midwest, Grad Program Forestry Sci, Irati, PR, Brazil
Beltrami, Lilian Rossa
[2
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Covas, Jose Antonio
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Univ Minho, Dept Polymer Engn, Guimaraes, PortugalState Univ Midwest, Grad Program Forestry Sci, Irati, PR, Brazil
Covas, Jose Antonio
[3
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Hilliou, Loic
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Univ Minho, Dept Polymer Engn, Guimaraes, PortugalState Univ Midwest, Grad Program Forestry Sci, Irati, PR, Brazil
Hilliou, Loic
[3
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Sousa, Joao Duarte
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Univ Minho, Dept Polymer Engn, Guimaraes, PortugalState Univ Midwest, Grad Program Forestry Sci, Irati, PR, Brazil
Sousa, Joao Duarte
[3
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Calado, Leonor
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Univ Minho, Dept Polymer Engn, Guimaraes, PortugalState Univ Midwest, Grad Program Forestry Sci, Irati, PR, Brazil
Calado, Leonor
[3
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Pinto, Mario
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Univ Minho, Dept Polymer Engn, Guimaraes, PortugalState Univ Midwest, Grad Program Forestry Sci, Irati, PR, Brazil
Pinto, Mario
[3
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Lucas, Abdoral de Andrade
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Fed Inst Santa Catarina, Blumenal, SC, BrazilState Univ Midwest, Grad Program Forestry Sci, Irati, PR, Brazil
Lucas, Abdoral de Andrade
[4
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机构:
[1] State Univ Midwest, Grad Program Forestry Sci, Irati, PR, Brazil
[2] Univ Caxias do Sul, Proc & Technol Engn Program, Caxias Do Sul, RS, Brazil
[3] Univ Minho, Dept Polymer Engn, Guimaraes, Portugal
The growing demand for polymeric materials has made them significant in both industry and the environment, and the task of making them sustainable is becoming increasingly challenging. Cellulose presents an opportunity to minimize the effect of nondegradable materials. Cellulose nanofibers (CNFs) are a class of cellulose fibers with superior performance due to their high strength and stiffness combined with low weight and biodegradability. This work aimed to produce composites using low-density polyethylene (LDPE) as a matrix and CNFs from Pinus sp. (Pinus) and Eucalyptus sp. (Eucalyptus) as reinforcements. The CNFs were obtained by mechanical defibrillation of the cellulose, and subsequently, the water was removed by centrifugation to produce a master with CNFs and LDPE using a thermokinetic homogenizer. The master was milled and blended with LDPE to obtain booster concentrations of 1, 2 and 3% by weight (wt%). To characterize the composites, tensile and flexural tests and thermal and rheological analyses were performed. An increase of between 3 and 4% in the crystallinity of the composite was observed with the addition of Pinus CNF, and a decrease of 2 to 3% in the crystallinity index was observed with the addition of Eucalyptus CNF. The thermal stability increased for all the compositions. For the mechanical properties, increasing the CNF content increased the stiffness and tensile strength. In general, this process is an effective alternative for producing composites of LDPE with cellulose nanofibers.