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作 者:王俊飞[1] 姚峰林[2] 佘占蛟 许章亮 WANG Junfei;YAO Fenglin;SHE Zhanjiao;XU Zhangliang(Engineering & Technical College, Chengdu University of Technology, Leshan Sichuan 614000, China;School of Mechanical Engineering, Taiyuan University of Science and Technology, Taiyuan Shanxi 030024, China;Material Science and Engineering School, Southwest Jiaotong University, Chengdu Sichuan 611756, China)
机构地区:[1]成都理工大学工程技术学院,四川乐山614000 [2]太原科技大学机械工程学院,山西太原030024 [3]西南交通大学材料科学与工程学院,四川成都611756
出 处:《机床与液压》2019年第15期189-193,共5页Machine Tool & Hydraulics
基 金:国家自然科学基金资助项目(51575370);太原科技大学博士后启动基金项目(20142020);太原重型机械协同创新基金项目(20172003)
摘 要:齿轮箱作为机械设备中的关键部件,其安全服役性能评估及寿命预测环节是非常重要的。因此,设计了一套基于冲击脉冲法的齿轮箱轴承故障检测系统。探究了检测系统的设计原理,并进行硬件选型(如NI四通道数据采集卡、加速度传感器等)、软件模块设计(如数据采集模块、分析和处理模块等)。根据车间现场条件制定齿轮箱轴承跑合检测试验方案,分别测试了不同返修级别(4级修、5级修)的齿轮箱轴承。对检测结果进行分析,表明:所设计的齿轮箱轴承检测系统能够实现对不同返修级别的齿轮箱轴承系统进行故障状态甄别,具有较高的稳定性,可为初步判定不同返修级别的齿轮箱轴承中磨损程度或故障状态提供数据支撑。Gearbox considered as the key components of machinery equipment, the link of security service performance evaluation and life prediction are very important. Therefore, a set of gear box bearing fault detection system based on shock pulse method is designed . First of all, the design principle of testing system was explored, and hardware selection (such as National Instrument(NI) four-channel data acquisition card, acceleration sensor, etc.) and software module design (such as data acquisition module, analysis and processing module, etc.) were also completed. Secondly, according to the workshop site conditions, the testing plan for gearbox bearing running-in was finished, and the different level of repair (level 4 and level 5) gearbox bearing were tested. The analysis of the test results shows that the gear box bearing detection system designed can identify the fault status of the gear box bearing system with different repair levels, and has a high stability. It can provide data support for the initial judgment of the wear degree or failure state of the gear box bearing with different repair levels.
分 类 号:TH133.33[机械工程—机械制造及自动化]
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