Physical and Mechanical Characterization of Titica Vine (Heteropsis flexuosa) Incorporated Epoxy Matrix Composites

被引:14
作者
Carneiro da Cunha, Juliana dos Santos [1 ]
Cassiano Nascimento, Lucio Fabio [1 ]
da Luz, Fernanda Santos [1 ]
Monteiro, Sergio Neves [1 ]
Lemos, Mauricio Ferrapontoff [2 ]
da Silva, Cristina Gomes [3 ]
Simonassi, Noan Tonini [4 ]
机构
[1] Mil Inst Engn IME, Dept Mat Sci, Praca Gen Tiburcio 80, BR-22290270 Urca, RJ, Brazil
[2] Brazilian Navy Res Inst IpqM, Mat Technol, Rua Ipiru 02, BR-21931095 Cacuia, RJ, Brazil
[3] Fed Univ Amazonas UFAM, Dept Mat Sci, Ave Gen Rodrigo Octavio Jordao Ramos 1200, BR-69067005 Manaus, Amazonas, Brazil
[4] State Univ Northern Rio de Janeiro UENF, Dept Mat Engn, Adv Mat Lab LAMAV, Ave Alberto Lamego 2000, BR-28013602 Campos Dos Goytacazes, Brazil
关键词
titica vine fiber; epoxy composite; natural fiber; chemical treatment; mechanical properties; NATURAL FIBERS; POLYMER COMPOSITES; LIGNOSULFONATE; REINFORCEMENT; BIOCOMPOSITES; POLYPROPYLENE; PERFORMANCE; CELLULOSE;
D O I
10.3390/polym13234079
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Titica vine (Heteropsis flexuosa) is a typical plant of the Amazon region commonly used for making baskets, bags, brooms and furniture, owing to its stiff fibers. In spite of its interesting properties, there is so far no reported information regarding the use of titica vine fibers (TVFs) in engineering composite materials. In this work, the TVF and its epoxy composites were for the first time physically, thermally and mechanically characterized. Additionally, the effect of two kinds of chemical treatments, one with sodium carbonate and one with calcium lignosulfonate, as well as different volume fractions, 10, 20, 30 and 40 vol%, of TVF-reinforced composites were assessed for corresponding basic properties. The thermogravimetric results of the composites reveal enhanced thermal stability for higher TVF content. In addition, the composite incorporated with 40 vol% of TVFs treated with sodium carbonate absorbed 19% more water than the composites with untreated fibers. By contrast, the calcium lignosulfonate treatment decreased water absorption by 8%. The Charpy and Izod impact tests showed that the composites, incorporated with the highest investigated volume fraction (40 vol%) of TVF, significantly increased the absorbed energy by 18% and 28%, respectively, compared to neat epoxy. ANOVA and Tukey statistical analyses displayed no direct influence of the chemical treatments on the energy absorption of the composites for either impact tests. SEM images revealed the main fracture mechanisms responsible for the performance of TVF composites.
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页数:19
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