Wood Residue of Jatobá (Hymenaea courbaril) and Short Fiber of Malva in Composites

Q4 Social Sciences
Deibson Silva Da Costa, Wassim Raja El Banna, Roberto Tetsuo Fujiyama
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引用次数: 0

Abstract

Theoretical reference: The composites are formed by combining two or more materials, enabling improvements in properties and a variety of applications. These materials are highlighted by presenting low cost and enabling environmentally friendly alternatives. Method: Quantitative study, In this work, composites of polyester matrix reinforced by mauve fibers, jatoba wood residues and hybrid mauve/residue system, were analyzed mechanically and microstructurally. The fabrication of the composites began with the cut of the mauve fibers in the lengths of 5, 10 and 15 mm. In the manufacture of the specimens, terephthalic polyester resin was used with incorporation of fibers and residue. The specimens were produced in silicone molds, for the tensile strength tests and scanning electron microscopy (SEM) analysis. Results and conclusion: From the results obtained in the tensile test, it is observed that the resistance of the composites with mauve fibers of 15 mm (25,09 MPa) and hybrids in the proportions of 75% fiber/25% residue (26,06 MPa). In the microstructural characterization, the composites analyzed presented factors that contributed to the improvement and reduction of performance in the results of tensile strength. Implications of the research: It presents important and overwhelming results on composite materials with wood waste and mallow fibers, providing an alternative for inserting waste and fibers into materials with good properties and low cost. Originality/value: The compounds stand out for their simple and viable manufacturing method, in addition to superior results in relation to proven properties. Given the need to search for new materials with good properties and with minimal impacts on the environment.
蚕豆叶木渣与Malva短纤维复合材料的研究
理论参考:复合材料是由两种或两种以上的材料组合而成的,可以改善性能和各种应用。这些材料因其低成本和环保替代品而备受关注。方法:对紫红色纤维增强聚酯基复合材料、紫红色木渣和紫红色/紫红色复合材料进行力学和微观结构分析。复合材料的制造从切割长度为5、10和15毫米的紫红色纤维开始。在样品的制造中,使用了纤维和残留物掺入的对苯二甲酸聚酯树脂。样品在硅胶模具中制作,用于拉伸强度测试和扫描电子显微镜(SEM)分析。结果与结论:从拉伸试验结果可以看出,紫红色纤维为15 mm (25,09 MPa)的复合材料和75%纤维/25%残渣(26,06 MPa)混合的复合材料的抗拉性能较好。在微观组织表征方面,分析了复合材料抗拉强度提高和降低的因素。研究意义:在木材废料和锦葵纤维复合材料方面取得了重要的、压倒性的成果,为将废料和纤维插入性能良好、成本较低的材料中提供了另一种选择。原创性/价值:这些化合物因其简单可行的制造方法而脱颖而出,除了与已证明的性能相关的优越结果之外。考虑到需要寻找具有良好性能且对环境影响最小的新材料。
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来源期刊
Revista de Gestao Social e Ambiental
Revista de Gestao Social e Ambiental Social Sciences-Geography, Planning and Development
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