REG NASA-LLIS-0846-2000 Lessons Learned Wear Particle Analysis Using Ferrography.pdf
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1、Best Practices Entry: Best Practice Info:a71 Committee Approval Date: 2000-04-20a71 Center Point of Contact: KSCa71 Submitted by: Wil HarkinsSubject: Wear Particle Analysis Using Ferrography Practice: Use Ferrography to diagnose equipment problems and predict equipment failure before it occurs.Progr
2、ams that Certify Usage: This practice has been used on KSC Payload Facility Crane Gear Reducers.Center to Contact for Information: KSCImplementation Method: This Lesson Learned is based on Maintainability Technique number AT-6 from NASA Technical Memorandum 4628, Recommended Techniques for Effective
3、 Maintainability.Benefit:Ferrography provides early detection of abnormal wear of the lubricated critical internal components of mechanical systems. Analyzes the debris in system lubricants. Shows particle size, shape and color as well as quantity. Reveals which system component is wearing, and to w
4、hat degree, and pinpoints the cause of the wear.Implementation Method:Ferrography is a very useful and comprehensive analysis for trending and reporting. At a minimum, Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-the user can obtain an analytical
5、means of monitoring the wear condition; and, at the same time, accrue the necessary sample points required to establish a wear particle concentration baseline and retain the presence of non-magnetic particles for visual inspection and evaluation.The advantage of Ferrography over other preventive mai
6、ntenance systems is its capacity to detect a broader range of types and sizes (0.1-500 microns) of wear particles. A micron is one millionth of a meter. Ferrographic analysis encompasses wear (metallic and non-metallic), contaminant (crystals, water, and organic and inorganic compounds), and lubrica
7、nt (friction polymers) monitoring.Typical wear problems identified by Ferrography; gear teeth wear through excessive load or speed, misalignments, fractures, rolling contact failure, water in the oil or poor lubricant condition, oil additive depletion, outside contaminants such as sand or dust, cam
8、shaft and cylinder wall failure, oil filter failure. There are many others.Industrial application of Ferrography entails the non-interruptive machine condition monitoring of heavily used lubricated mechanical systems. Hence, an operational baseline can easily be established by sampling every 50-500
9、hours of operation (approximately every one to three months, depending on system criticality), and used for quantitative trending analysis. Any anomalies in the wear particle concentration, especially in the generation rate of large particles (20 microns), is symptomatic of the onset of failure. For
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