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Impact of Application of Selected Composite Materials on the Weight and Vibroactivity of the Upper Gearbox Housing

机译:所选复合材料的应用对上部变速箱壳体的重量和振动性的影响

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摘要

In this paper, exploratory studies on the application of fibre-reinforced polymer composites in the construction of gearbox housing elements that are used for transport means, as an alternative to traditionally used materials, were undertaken. Composite materials with three types of reinforcement were used: a glass-chopped strand mat, glass fabric, and carbon fabric. The manufactured elements were subjected to weight assessment and vibroactivity tests, including the recording of vibration and noise. The obtained results were compared to the values recorded for housings made of steel. It has been found that composite housings, while maintaining geometric similarity, are characterised by at least 60% lower weight compared to steel housings. It has been shown that in the frequency range below 1 kHz, composite housings are characterised by the presence of resonant frequencies with higher amplitudes than steel housings. At higher frequency ranges—above 1 kHz—composite housings had a lower vibroactivity level than steel housing. They allowed a significant reduction in the level of vibration and noise in this frequency range. The results obtained indicate that composite gearbox housings can be a good alternative to steel-based solutions.
机译:在本文中,对纤维增强聚合物复合材料在变速箱外壳元件构造中的应用进行了探索性研究,该变速箱外壳元件是用于代替传统使用的材料的运输工具。使用具有三种增强类型的复合材料:玻璃短切毡,玻璃织物和碳纤维织物。对制造的元件进行重量评估和振动测试,包括振动和噪音的记录。将获得的结果与钢制外壳记录的值进行比较。已经发现,与钢制外壳相比,复合材料外壳在保持几何相似性的同时,其重量要低至少60%。已经表明,在低于1 kHz的频率范围内,复合材料外壳的特征是存在共振频率,其振幅比钢外壳高。在较高的频率范围(高于1 kHz),复合材料外壳的振动度低于钢制外壳。它们使该频率范围内的振动和噪声水平大大降低。获得的结果表明,复合齿轮箱壳体可以替代钢基解决方案。

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