CHARACTERIZATION OF COMPOSITE CONTAINING LDPE (LOW DENSITY POLY ETHYLENE) AND MODIFIED PINEAPPLE LEAF FIBER

Lestari Wardani, Noerati Noerati, D. Sugiyana
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引用次数: 1

Abstract

CHARACTERIZATION OF COMPOSITE CONTAINING LDPE ( LOW DENSITY POLY ETHYLENE) AND MODIFIED PINEAPPLE LEAF FIBER. Pineapple leaf fiber could be used as a reinforcing material in natural fiber composites production with a synthetic polymer matrix. The typical problem in this process was the weak bond between the fiber component and the matrix. This study aimed to improve the bonds strength between pineapple leaf fibers and the polymer matrix of LDPE (Low Density Poly Ethylene) by modifying pineapple leaf fibers. The modification of pineapple leaf fibers was carried out through an enzymatic process using the xylanase enzyme. A modified fiber was then used as a fiber component in the composite using a commercial LDPE plastic matrix. Composites were made by the sandwich method using a hotpress machine at a temperature of 130 °C for 10 minutes. The evaluation of the composites were carried out by testing the tensile strength properties using the Tensolab tool and thermal properties using the TGA (Thermal Gravimetry Analysis) instrument. The results of the mechanical properties test of the composite showed the modified pineapple leaf fiber-based composite had a better tensile strength (34.3 MPa) than the untreated pineapple leaf fiber-based composite (30.2 MPa). The results of the thermal properties test showed the decreasing of the mass occurred at temperature of 300-350 °C due to degradation of the fiber,and it completely degraded at temperature of 450 °C.
含ldpe(低密度聚乙烯)与改性菠萝叶纤维复合材料的表征
含ldpe(低密度聚乙烯)与改性菠萝叶纤维复合材料的表征。菠萝叶纤维可作为增强材料用于合成聚合物基天然纤维复合材料的生产。该工艺的典型问题是纤维组件与基体之间的弱结合。本研究旨在通过对菠萝叶纤维进行改性,提高菠萝叶纤维与聚合物基体LDPE(低密度聚乙烯)之间的结合强度。利用木聚糖酶对菠萝叶纤维进行了酶促改性。然后将改性纤维用作使用商用LDPE塑料基体的复合材料中的纤维组分。复合材料采用夹芯法,在热压机上在130℃的温度下加工10分钟。通过Tensolab工具测试复合材料的拉伸强度性能,使用热重分析仪(TGA)测试热性能,对复合材料进行了评估。力学性能测试结果表明,改性菠萝叶纤维基复合材料的抗拉强度(34.3 MPa)高于未经处理的菠萝叶纤维基复合材料(30.2 MPa)。热性能测试结果表明,在300-350℃温度下,由于纤维的降解,质量出现下降,在450℃温度下完全降解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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