香蕉皮在开发低可燃聚酯复合材料中的应用

IF 0.7 Q3 MATERIALS SCIENCE, TEXTILES TEKSTILEC Pub Date : 2022-12-14 DOI:10.14502/tekstilec.65.2022074
Ferdausee Rahman Anannya, F. Afroz, G. Kibria, M. L. Rahman, Nasrin Jamine, M. Mahmud
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引用次数: 2

摘要

本研究试图在结构中使用农业废弃香蕉皮来生产一种廉价的聚酯复合材料。香蕉纤维在复合材料中用作增强材料,但香蕉皮以前从未与聚酯一起使用过。由于结构中的水分增加,复合材料的热性能和可燃性得到改善的可能性,以及香蕉皮的纤维素部分的成炭能力或由于结构中存在碳水化合物而产生高度可燃材料的可能性是假设。为了解决第二个假设,加入了三水合铝(ATH)。复合材料的抗拉强度从38.02 MPa急剧下降到16.72 MPa,主要是由于组分之间缺乏化学键合。与仅添加ATH时相比,添加香蕉皮和ATH后,冲击强度和弯曲强度有所提高,分别达到10.92 kg/cm和49 MPa。然而,这些结果仍然不如纯聚酯的性能。可燃性和耐热性的结果符合第二种假设,因为阻燃性是由ATH的存在控制的。吸收性能几乎未受影响。
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Use of Banana Peel in the Development of a Less Flammable Polyester Composite
This study attempted to produce a cheap polyester composite material using an agricultural waste banana peel in the structure. Banana fibre has been used in composites as reinforcements, but banana peel has never been used with polyester before. The possibility of improved thermal and flammability properties of a composite due to increased moisture in the structure, and the char-forming ability of the cellulosic part of banana peel or the production of highly flammable material due to the presence of carbohydrates in the structure were the assumptions. To tackle the second assumption, aluminium trihydrate (ATH) was added. The handmade composites showed a drastic drop in tensile strength from 38.02 MPa to 16.72 MPa due to a lack of chemical bonding between the constituents. The impact and flexural strength showed some improvement with the addition of banana peel, along with ATH, to record results of 10.92 kg/cm and 49 MPa, respectively, after the initial drop that occurred when only ATH was added. However, these results were still inferior to the properties of pure polyester. The results of flammability and thermal resistance matched the second assumption, as flame retardancy was kept under control by the presence of ATH. The absorbency properties remained almost unaffected.
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来源期刊
TEKSTILEC
TEKSTILEC MATERIALS SCIENCE, TEXTILES-
CiteScore
1.30
自引率
14.30%
发文量
22
审稿时长
12 weeks
期刊最新文献
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