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Compression properties of three-dimensional I-shaped woven composites with basalt fiber filament tows

机译:玄武岩纤维丝束三维I型机织复合材料的压缩性能

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摘要

In order to improve the defect of incompleteness, three-dimensional I-shaped fabrics with basalt fiber filaments tows were woven on the semi-automatic loom by reasonable design. Three-dimensional I-shaped woven composites were prepared by the vacuum-assisted resin transfer molding process. The compressive behaviors of three-dimensional I-shaped woven composites with three different heights and thicknesses were studied. Through the evaluation of load–displacement curves and total energy absorption of the three-dimensional I-shaped woven composites, the results indicated when the thickness was fixed to 2?mm, the maximum compression load with height 20?mm raised 522.72?N as against that with height 60?mm and the maximum compression load with thickness 6?mm raised 2571.81?N as against that with thickness 2?mm. Consequently, the compression properties of three-dimensional I-shaped woven composites decreased with the increasing heights of the composites, while increased with the increasing thickness of the composites. Analyzing morphological characteristics of composites after fracture and load–displacement curves of composites, it was concluded that the compression failure modes had brittle fracture of the fiber bundle, cracking of the matrix, and a typical shear failure in the beam (A2). Despite the above-mentioned failure mechanisms, the three-dimensional I-shaped woven composite still had good integrity without delamination.
机译:为了改善不完全性的缺陷,通过合理的设计,将具有玄武岩纤维长丝束的三维I形织物织在半自动织机上。通过真空辅助树脂传递模塑工艺制备了三维工字型机织复合材料。研究了三种高度和厚度不同的三维工字型机织复合材料的压缩行为。通过评估三维I型编织复合材料的载荷-位移曲线和总能量吸收,结果表明,当将厚度固定为2?mm时,高度为20?mm的最大压缩载荷为522.72?N。相对于高度为60?mm的情况,最大压缩载荷为6?mm时提高了2571.81?N,而厚度为2?mm。因此,三维I形机织复合材料的压缩性能随复合材料高度的增加而降低,而随复合材料厚度的增加而增加。分析复合材料的断裂后的形态特征和复合材料的载荷-位移曲线,得出的结论是,压缩破坏模式具有纤维束的脆性断裂,基体开裂和梁的典型剪切破坏(A2)。尽管有上述失效机理,但三维I形编织复合材料仍具有良好的整体性而不会分层。

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