Influence of Alternating Temperature Levels on the Wear Behavior of Radial Lip Seals: Test Rig Design and Wear Analysis

Q4 Engineering Applied Engineering Letters Pub Date : 2021-01-01 DOI:10.18485/aeletters.2021.6.3.4
Lukas Merkle, Matthias Baumann, F. Bauer
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引用次数: 4

Abstract

Radial lip seals are a common seal type for various industrial applications. In retarder breaking systems for commercial vehicles, radial lip seals are exposed to very fast changing oil sump temperatures. Due to increasing demands, the elastomer seals are increasingly failing premature in such applications. It is assumed that this is caused in particular by the very high temperature gradients, that result from the fact that a lot of braking power is dissipated within a short time. This is the case, for example, when braking while driving downhill with heavy loads. Since the temperature gradient is of minor importance in many applications, there are no publications regarding the specific influence of high temperature gradients on the function of radial shaft seals. Therefore, a test rig with advanced heating and cooling capacities is developed. A comprehensive test series is carried out, with the main focus on the influence of high temperature gradients on the wear behavior of the seals. Test results show, that different temperature levels lead to a significant change of the wear behavior. Additionally, fast changing temperatures are adding additional tribological stress to the sealing system. ARTICLE HISTORY Received: 05.08.2021. Accepted: 10.09.2021. Available: 30.09.2021.
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交变温度水平对径向唇形密封磨损性能的影响:试验台设计与磨损分析
径向唇密封是一种常见的密封类型,用于各种工业应用。在商用车辆的缓速器制动系统中,径向唇密封暴露在非常快速变化的油底壳温度下。由于需求的增加,在此类应用中,弹性体密封越来越多地过早失效。假设这是由非常高的温度梯度引起的,这是由于大量制动功率在短时间内消散的事实造成的。例如,在载重下坡行驶时刹车就是这种情况。由于温度梯度在许多应用中不太重要,因此没有关于高温梯度对径向轴密封功能的具体影响的出版物。因此,开发了具有先进加热和冷却能力的试验台。进行了一系列综合试验,主要研究了高温梯度对密封磨损性能的影响。试验结果表明,不同的温度水平会导致磨损行为的显著变化。此外,快速变化的温度给密封系统增加了额外的摩擦应力。收稿日期:05.08.2021。接受:10.09.2021。可用:30.09.2021。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Applied Engineering Letters
Applied Engineering Letters Energy-Energy (all)
CiteScore
1.60
自引率
0.00%
发文量
5
审稿时长
7 weeks
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