断层(地质)
更安全的
可靠性工程
计算机科学
故障检测与隔离
机制(生物学)
钥匙(锁)
灾难性故障
工程类
控制工程
计算机安全
地质学
哲学
物理
地震学
执行机构
电气工程
认识论
热力学
作者
Xihui Liang,Ming J. Zuo,Zhipeng Feng
标识
DOI:10.1016/j.ymssp.2017.05.024
摘要
Gearbox is widely used in industrial and military applications. Due to high service load, harsh operating conditions or inevitable fatigue, faults may develop in gears. If the gear faults cannot be detected early, the health will continue to degrade, perhaps causing heavy economic loss or even catastrophe. Early fault detection and diagnosis allows properly scheduled shutdowns to prevent catastrophic failure and consequently result in a safer operation and higher cost reduction. Recently, many studies have been done to develop gearbox dynamic models with faults aiming to understand gear fault generation mechanism and then develop effective fault detection and diagnosis methods. This paper focuses on dynamics based gearbox fault modeling, detection and diagnosis. State-of-art and challenges are reviewed and discussed. This detailed literature review limits research results to the following fundamental yet key aspects: gear mesh stiffness evaluation, gearbox damage modeling and fault diagnosis techniques, gearbox transmission path modeling and method validation. In the end, a summary and some research prospects are presented.
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