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The performance improvement for polymer composite gears and theri application in EV lighweight gearbox design - 1=Energy 2=Polymer Materials

The performance improvement for polymer composite gears and theri application in EV lighweight gearbox design - 1=Energy 2=Polymer Materials
高分子复合材料齿轮的性能提升及其在电动汽车轻量化变速箱设计中的应用 - 1=能源 2=高分子材料
批准号:
2038206
负责人:
金额:
$0.0万
依托单位:
依托单位国家:
英国
项目类别:
Studentship
财政年份:
2018
资助国家:
英国
项目状态:
已结题
起止时间:
2018 至 --

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中文摘要
翻译
工程中对轻质和低碳应用的需求不断增加,导致聚合物的使用迅速增加。特别是,聚合物复合材料齿轮为高科技应用提供了巨大的潜力,并具有金属齿轮的独特优势:低成本和重量,高效率,运行安静,无需外部润滑等,它们现在被认为是从低功率,精密运动到高功率传输的应用,即使在医疗保健和汽车工程等具有挑战性的环境中。例如,在汽车工程中,有报告称,通过在动力传动系中使用聚合物齿轮而不是金属齿轮,质量减少了70%,惯性减少了80%,燃料消耗减少了9%。然而,尽管在聚合物复合材料齿轮方面取得了一些初步的研究进展,但还需要进行广泛的研究,以了解齿轮的热机械接触行为,注塑成型工艺及其性能预测,这最终将开辟一个新的应用范围。拟议的研究旨在充分了解聚合物复合材料齿轮的热机械性能,并通过注塑工艺控制,齿轮啮合错位,发动机测试和新的设计方法来提高动力传动系统中的齿轮负载能力。个人目标是;了解工艺和性能关系,以最佳优化聚合物复合材料齿轮注塑成型工艺的制造影响。使用新设计的试验台和现有的两个试验台,对聚合物复合材料齿轮的性能进行广泛的研究,特别是不对中和热效应。设计、测试摩托车轻量化变速箱,设计电动车变速箱。
英文摘要
The ever increasing demands for light weight and low carbon applications in engineering have resulted in a rapid increase in the use of polymers. In particular, polymer composite gears offer a huge potential for high-technology applications and have unique advantages over metal gears: low cost and weight, high efficiency, quietness of operation, functioning without external lubrication, etc. They are now considered for applications ranging from low-power, precision motion to high power transmission, even in such challenging environments as healthcare and automotive engineering. For example, there are reports in automotive engineering of 70% reduction in mass, 80% reduction in inertia and up to 9% lower fuel consumption by using polymer gears instead of metal ones in the power train. However, despite some initial research progress on polymer composite gears, extensive research needs to be carried out to understand the gears' thermal mechanical contact behaviour, their injection moulding process and their performance prediction which will ultimately open up a new range of applications. The proposed research aims to fully understand polymer composite gear thermal mechanical performance and enhance the gear loading capacities in power transmission systems through injection moulding process control, misaligned gear engagement, engine tests and new design methods. The individual objectives are; to understand the processing and property relationships to best optimise the manufacturing impacts of the injection moulding process for polymer composite gears. To extensively investigate polymer composite gear performance using the newly designed rig and the two existing test rigs, especially the misalignment and thermal effects. To design, test motorcycle lightweight gearbox and design gearbox for electric vehicles.
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