Tensile, Bending Testing on Straw Fiber Composites 00 and 900 Angle Orientations with Polyester Matrix

G. Gundara, Nifal Nugraha, Acep Wagiman
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Abstract

Currently, the development of science and technology continues to develop in all fields, such as vehicle construction, building construction, industry, and also the field of materials engineering, especially composites. Composite materials generally consist of two elements, namely fibers as a filler and a binding material for these fibers which is called a matrix. In composites, the main element is fiber, while the binding material uses polymer material which is easy to form and has high binding power. The aim of this research is to determine the effect of straw fiber length oriented at 0° and 90° angles in polyester matrix composites on tensile and bending strength. The influence of straw fiber length provides a value for maximum tensile strength with a value of 28.604 Mpa with a fiber length of 15 mm and an angle of 0°. Meanwhile, the angle direction of 900 has a greater value at a fiber length of 10 mm, amounting to 19.619 MPa. The influence of straw fiber length provides a value for maximum bending strength with a value of 86.29 MPa with a fiber length of 10 mm and an angle of 0°. Meanwhile, the maximum tensile strength value at an angle of 900 with a fiber length of 15 mm is 40.02 MPa
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聚酯基质秸秆纤维复合材料 00 角和 900 角方向的拉伸和弯曲测试
目前,科学技术在各个领域都在不断发展,如车辆制造、建筑施工、工业以及材料工程领域,尤其是复合材料。复合材料一般由两种元素组成,即作为填充物的纤维和与这些纤维结合的材料(称为基体)。在复合材料中,主要元素是纤维,而结合材料则使用聚合物材料,这种材料易于成型且结合力强。本研究旨在确定聚酯基复合材料中以 0° 和 90° 角定向的稻草纤维长度对拉伸和弯曲强度的影响。在纤维长度为 15 毫米、角度为 0° 的情况下,秸秆纤维长度对最大拉伸强度的影响值为 28.604 兆帕。同时,当纤维长度为 10 毫米时,角度方向 900 的值更大,达到 19.619 兆帕。在纤维长度为 10 毫米、角度为 0° 时,秸秆纤维长度对最大弯曲强度的影响值为 86.29 兆帕。同时,纤维长度为 15 毫米、角度为 900 时的最大抗拉强度值为 40.02 兆帕
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