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Manufacturing and ultimate mechanical performance of carbon fibre-reinforced epoxy composite suspension push-rods for a Formula 1 racing car

机译:一级方程式赛车用碳纤维增强环氧复合材料悬架推杆的制造和极限机械性能

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摘要

The contemporary Formula 1 racing car makes extensive use of advanced composite materials in its construction. The design, manufacture, and ultimate performance under compression of composite suspension push-rods that typically could be used in a Grand Prix racing car are described in this present paper. An aerofoil cross section has been used based on different lay-ups of carbon/epoxy composite. One push-rod was manufactured using a uniform layup of unidirectional and woven cross-ply prepreg whilst a further three push-rods were manufactured with a tapered layup of unidirectional and woven cross-ply prepreg. Failure mechanisms including fibre microbuckling, fibre kinking and fibre fracture were observed whilst comparisons have been made between the experimentally observed failure strains and those that were predicted using simple buckling theory. The ultimate compressive strength of the structural component was significantly less than that of the carbon/epoxy composite.
机译:当代的一级方程式赛车在其构造中大量使用了先进的复合材料。本文介绍了通常可用于大奖赛赛车中的复合悬架推杆的设计,制造和最终压缩性能。根据碳/环氧复合材料的不同层积使用了翼型横截面。使用单向和编织的交叉预浸料的均匀叠层制造一个推杆,而另外三个推拉用单向和编织的交叉预浸料的锥形叠层制造。观察到了破坏机理,包括纤维微屈曲,纤维扭结和纤维断裂,同时对实验观察到的失效应变与使用简单屈曲理论预测的失效应变进行了比较。结构部件的极限抗压强度明显小于碳/环氧复合材料的抗压强度。

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