基于三维结构的密封面宏观引线结构分析方法

Q3 Engineering
Maximilian Engelfried, Matthias Baumann, F. Bauer
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引用次数: 2

摘要

弹性体旋转轴密封件的密封失效通常是由于轴端面上的铅引起的。在密封技术中,“引线”一词包括密封面上的所有结构,这些结构能够通过密封接触向轴向输送流体,从而破坏密封机制。引线结构是在轴表面的制造过程中或整个处理过程中产生的。它们有各种形状和大小。根据引线结构的特点,有几种专门的测量和评价方法,必须结合使用。然而,并不是所有类型的铅都可以用目前已知的方法覆盖。目前的技术状况是基于频率和基于模型的分析方法,它们只能检测到周期性铅结构。由于功能原理,非周期性和随机分布的铅结构不能被检测到。本文提出了一种基于光学形貌测量数据的宏观引线结构结构评价方法。这允许检测所有已知类型的轴表面宏观铅,并在未来测量微观和宏观铅与一个单一的测量程序。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Three-dimensional structure-based approach for the analysis of macroscopic lead structures on sealing counterfaces
The seal failure of an elastomer rotary shaft seal is often caused due to lead on the shaft counterface. In sealing technology, the term ‘lead’ includes all structures on sealing counterfaces that are capable of transporting fluid in axial direction through the sealing contact and thus disrupting the sealing mechanism. Lead structures are created during the manufacturing process of the shaft surface or throughout the handling. They occur in various shapes and sizes. Depending on the characteristics of the lead structures, several specialized measurement and evaluation methods exist which have to be applied in combination. However, not all types of lead can be covered with the methods known so far. State of the art are frequency-based and model-based analysis methods, which are only able to detect periodic lead structures. Aperiodic and stochastically distributed lead structures cannot be detected due to the functional principle. This article provides an approach for a structure-based evaluation of macroscopic lead structures based on optical topography measurement data. This allows to detect all known types of macroscopic lead on the shaft surface and in future to measure microscopic and macroscopic lead with a single measurement procedure.
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来源期刊
International Journal of Metrology and Quality Engineering
International Journal of Metrology and Quality Engineering Engineering-Safety, Risk, Reliability and Quality
CiteScore
1.70
自引率
0.00%
发文量
8
审稿时长
8 weeks
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