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Power loss reduction in timing chain drives by adjusted tensioning and surface structuring

机译:通过调整张紧和表面结构减小正时链驱动的功率损耗

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Purpose Energy losses in a timing chain drives are caused by friction in chain-rail contacts. To improve the efficiency, the Chair of Machine Elements and Transmission Technology at the University of Kaiserslautern developed various experimental and simulative analysis tools as a part of the German Research Foundation (DFG)-funded 1551 priority program and the DFG Collaborative Research Centre CRC 926. With these tools, various approaches for improving the efficiency were investigated. This paper aims to illustrate the approaches and present the results achieved within the framework of the above-mentioned priority program. Design/methodology/approach A towed cylinder head test rig is used for efficiency tests on timing chain drives. In addition to the experiments, a multi-body simulation model of the timing drive was developed and used. Findings It was possible to find positive approaches to reduce friction power by adapting the chain tensioning force as required. This was ensured for both the stationary operating points and the transient operating processes. An efficiency improvement of up to 10 per cent could be detected. Furthermore, a possibility was found to improve the frictional power by a targeted lubrication of the chain-rail contact. Here, the efficiency could be improved by 5-6 per cent. In addition, various structures were examined on a microscopic and macroscopic level. Neutral to negative results were achieved here. Originality/value This paper makes a contribution to improve the energy efficiency of timing chain drives. Different approaches have been investigated and evaluated.
机译:定时链驱动器中的目的能量损失是由链轨接触的摩擦引起的。为了提高效率,KaisersLautern大学机器元件和传输技术的椅子开发了各种实验和模拟分析工具作为德国研究基金会(DFG)的一部分 - 废弃的1551优先计划和DFG协作研究中心CRC 926。通过这些工具,研究了各种提高效率的方法。本文旨在说明该方法,并展示了在上述优先计划的框架内实现的结果。设计/方法/接近牵引式圆筒头试验台用于定时链驱动器上的效率测试。除了实验之外,开发并使用了定时驱动器的多体仿真模型。结果可以找到通过根据需要调整链张力的摩擦力来减少摩擦力的阳性方法。确保静止操作点和瞬态操作流程确保了这一点。可以检测到高达10%的效率提高。此外,发现可能是通过链轨接触的目标润滑改善摩擦力。在这里,效率可以提高5-6%。此外,在微观和宏观水平上检查各种结构。这里实现了中性到负面结果。原创性/值本文为提高定时链驱动器的能效做出了贡献。已经调查和评估了不同的方法。

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