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Assessing and predicting the performance of bearings in debris-contaminated lubrication environment

机译:评估和预测岩浆污染润滑环境中轴承的性能

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Many lubrication environments in various equipment applications are inherently contaminated with debris and require mechanical components that are, as much as possible, resistant to the potential detrimental effects of debris particles. Many design engineers and lubricant specialists often overlook potential relationships between the various component failure modes, lubricant debris contamination level and the engineering solutions that are created to overcome them. Various methods for evaluating the effectiveness of debris-resistant bearings have been proposed for development. Some of these methods have become standard methods within each bearing manufacturer's organization. Using an experimental method, performance evaluation results of tapered roller bearings in the areas of material fatigue will be discussed. The potential performance advantages will be placed in context of understanding the performance needs in the application. Once evaluations methods are well established to select bearings and component materials, the user is faced with assessing severity and detrimental effects of a specific application's lubricant contamination on bearing performance. Many analysis tools have been suggested for determining this impact, including particle analysis for size distribution, type of material and contamination level. A novel approach for determining severity of damage has been investigated which attempts to integrate these typical tools with actual damage to functional surfaces. It seeks to provide a practical approach and is appropriately labeled Debris Signature Analysis (SM). Data from these surface analysis methods will be used to briefly demonstrate a new bearing life prediction model.
机译:各种设备应用中的许多润滑环境本质上被碎片污染,并且需要尽可能地抵抗碎片颗粒的可能性有害影响的机械部件。许多设计工程师和润滑剂专家通常忽略了各种部件故障模式,润滑油碎片污染水平和创建的工程解决方案之间的潜在关系。已经提出了用于评估耐碎轴承有效性的方法进行开发。其中一些方法已成为每个轴承制造商组织内的标准方法。使用实验方法,将讨论材料疲劳区域中锥形滚子轴承的性能评估结果。潜在的性能优势将放置在理解应用中的性能需求的背景下。一旦评估方法,选择轴承和成分材料,使用者面临评估特定应用润滑剂污染对轴承性能的严重程度和不利影响。已经提出了许多分析工具来确定这种影响,包括尺寸分布,材料类型和污染水平的粒子分析。研究了确定损坏严重程度的新方法,该方法试图将这些典型工具集成,并对功能表面的实际损坏集成。它寻求提供一种实用的方法,并适当标记的碎片签名分析(SM)。来自这些表面分析方法的数据将用于简要展示一种新的轴承寿命预测模型。

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