Tensile Strength Comparison of Polymer Composite Materials Reinforced by Three Types of Bamboo Fiber Treated With 5% aq. NaOH Solution

Ahmad Nayan, M. Yusuf, D. Siska
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Abstract

The specimens were prepared with polyester polymer reinforced with natural fiber from three types of bamboo, namely Gigantochloa Apus, Bambusa vulgaris, and Bambusa blumeana. Their tensile properties were compared and investigated. In this paper, the specimen utilization of hand-wet layup processes of polyester resin with natural fibers. The fibers were treated with 5% NaOH solution to remove hemicellulose and create better debonding between matrix and fiber. Bamboo-reinforced composite of 3 types of bamboo with fractions 60% volume is thorn bamboo, Bambusa vulgaris, Gigantochloa Apus, and bamboo wipe without alkali. Of the three types of bamboo, the highest tensile strength of Gigantochloa Apus was soaked using NaOH with an average value of 37.06 MPa, with a tensile strain of 4.11%. In contrast, the lowest tensile strength value is Gigantochloa Apus which was not immersed in NaOH with an average of 13.79 MPa, a tensile strain of 2.54%. This matter shows the effect of immersion on tensile strength bamboo fiber composite. The results of the tensile strength of each type of bamboo obtained in this research, among others, bamboo thorn's tensile strength of 22.81 MPa, Bambusa vulgaris tensile strength of 16.69 MPa, bamboo apus 37.06 MPa, and Gigantochloa Apus without alkali 13.79 MPa. The observations show that Gigantochloa Apuscomposites are suitable for use as alternative tensile materials.
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5% aq. NaOH溶液处理三种竹纤维增强高分子复合材料的拉伸强度比较
以三种竹子(Gigantochloa Apus, Bambusa vulgaris, Bambusa blumeana)为材料,以天然纤维增强聚酯聚合物为材料制备样品。对其拉伸性能进行了比较和研究。本文对天然纤维与聚酯树脂的手工湿法铺层工艺进行了试验研究。用5%的氢氧化钠溶液处理纤维,去除半纤维素,使纤维与基体之间更好地脱粘。竹材增强复合材料的3种竹材的体积分数为60%,分别是刺竹、竹材、黄竹和无碱竹材。在3种竹中,NaOH浸泡的大褐藻抗拉强度最高,平均为37.06 MPa,拉伸应变为4.11%。拉伸强度最低的是未浸NaOH的Gigantochloa Apus,平均为13.79 MPa,拉伸应变为2.54%。研究了浸渍对竹纤维复合材料抗拉强度的影响。本研究得到的各类竹的抗拉强度结果,其中,竹刺的抗拉强度为22.81 MPa,竹笋的抗拉强度为16.69 MPa,竹竹的抗拉强度为37.06 MPa,无碱竹竹的抗拉强度为13.79 MPa。结果表明,巨绿藻apus复合材料适合作为替代拉伸材料使用。
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