ANALISIS SIFAT MEKANIK KOMPOSIT SANDWICH SERAT KARBON TWILL 3K/DIVINYCELL FOAM DENGAN VARIASI METODE FABRIKASI

Kamila Nurul Aini, Arif Tjahjono, Nurul Lailatul Muzayadah, Afid Nugroho, Taufiq Satrio Nurtiasto
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Abstract

Sandiwch composite  is a type of structural composite material composed of a strong facesheet and a low-density core material. Sandwich composites have a high mechanical properties with their lightweight structure, so this material can be applied to aircraft structures. This study aims to determine the mechanical properties of carbon fiber sandwich composite twill 3K/divinycelll foam with various fabrication methods. The fabrication methods used vacuum bagging methods, and vacuum assisted resin infusion method. Mechanical tests conducted are flatwise compressive with ASTM C364 standard, edgewise compressive with ASTM C365 standard, flexural three point bending with ASTM C393 standard, and tensile strength with ASTM D3039 standard. In addition, scanning electron microscope test were also conducted to determine the morphology of the surface of the material and the bond between the fiber and the matrix. The results were obtained that vacuum asssisted resin infusion method has the most optimum mechanical with a high value in each test, such as the result of flexural three point bending of 47,51 MPa is better when  compared with the result of vacuum bagging method of 18,70 MPa. Scanning electron microscope test results also showed that the vacuum assisted resin infusion method has the best morphology with perfect  bond between matrix and fiber. So that it can be concluded that the most optimal mechanical properties  of sandwich composites are produced by vacuum asssisted resin infusion method.
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分析三k泡沫碳纤维泡沫复合机械性能
三明治复合材料是一种由强面材和低密度芯材组成的结构复合材料。夹层复合材料结构轻量化,具有较高的力学性能,可应用于飞机结构。本研究旨在测定不同制备方法下碳纤维夹层复合斜纹布3K/divinycell泡沫材料的力学性能。制备方法采用真空装袋法和真空辅助树脂灌注法。采用ASTM C364标准进行平压试验,ASTM C365标准进行边压试验,ASTM C393标准进行三点弯曲试验,ASTM D3039标准进行抗拉强度试验。此外,还进行了扫描电镜测试,以确定材料表面的形貌和纤维与基体之间的结合。结果表明,真空辅助树脂灌注法具有最佳的力学性能,在各项试验中均有较高的力学值,47、51 MPa的三点弯曲效果优于18、70 MPa的真空装袋法。扫描电镜测试结果也表明,真空辅助树脂灌注法具有最佳的形貌,基质与纤维结合良好。因此,真空辅助树脂注入法可以获得最佳的夹层复合材料力学性能。
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