期刊文献+
共找到5篇文章
< 1 >
每页显示 20 50 100
复合故障状态下行星齿轮-转子耦合系统振动响应特性研究
1
作者 周博虎 李国彦 +1 位作者 任昱霖 熊晓燕 《机电工程》 CAS 北大核心 2023年第10期1471-1482,共12页
目前,国内外学者对齿轮-转子耦合系统的动力学特性进行了研究,但是上述研究均没有考虑行星齿轮-转子复合故障状态。为此,以单级行星齿轮箱为例,通过构建含转子偏心和齿根裂纹故障的行星齿轮-转子耦合系统动力学模型,对复合故障状态下的... 目前,国内外学者对齿轮-转子耦合系统的动力学特性进行了研究,但是上述研究均没有考虑行星齿轮-转子复合故障状态。为此,以单级行星齿轮箱为例,通过构建含转子偏心和齿根裂纹故障的行星齿轮-转子耦合系统动力学模型,对复合故障状态下的行星齿轮-转子耦合系统振动响应特性进行了仿真分析和实验研究。首先,采用了集中参数法和Timoshenko梁理论,考虑了时变啮合刚度、支撑刚度、阻尼、陀螺效应、传动轴柔性等因素,建立了含转轴偏心-齿根裂纹复合故障的行星齿轮-转子耦合系统动力学模型;然后,采用了时间历程、频谱、轴心轨迹及相轨迹等方法,并根据其数值分析了不同故障对系统动态特性的影响,研究了偏心状态下裂纹扩展对系统振动响应特性的影响;最后,采用不同裂纹故障测试实验,验证了模型的准确性。研究结果表明:转轴偏心对啮合振动的影响显著,在行星轮系故障特性的分析中不可忽视;偏心-裂纹耦合影响下,系统振动响应由不平衡振动、正常啮合振动、故障冲击振动多源耦合而成,频谱中出现了转频f_( r)、啮合谐波kf _(m)以及复杂边带成分kf _(m)±f _(r)、kf _(m)±f _(r)±nf _(sc),并且随着裂纹程度的加大,调制现象更加明显。该研究结果可以为行星齿轮-转子系统复合故障诊断提供一定的理论依据。 展开更多
关键词 齿轮传动 行星齿轮-转子耦合系统动力学模型 多源耦合振动 齿根裂纹扩展 转轴偏心 复合故障振动特性
下载PDF
电力系统次同步振荡对风力发电机轴系疲劳损伤影响的可靠性分析 被引量:7
2
作者 田宽引 王鹏 +2 位作者 韩肖清 秦文萍 梁琛 《太阳能学报》 EI CAS CSCD 北大核心 2017年第3期586-592,共7页
为了分析电力系统发生次同步振荡时对双馈风力发电机轴系疲劳损伤程度的影响,根据2 MW级双馈风力发电机轴系机械结构,运用三质块等效数学模型,通过PSCAD软件仿真得到电力系统发生次同步振荡时风力发电机的电磁扭矩。基于雨流计数法按照... 为了分析电力系统发生次同步振荡时对双馈风力发电机轴系疲劳损伤程度的影响,根据2 MW级双馈风力发电机轴系机械结构,运用三质块等效数学模型,通过PSCAD软件仿真得到电力系统发生次同步振荡时风力发电机的电磁扭矩。基于雨流计数法按照电磁扭矩振荡模型制作等效载荷谱。利用Solid Works软件建立风力发电机轴系变速齿轮有限元模型,并用ANSYS软件对其模型进行网格划分与静强度分析。基于S-N曲线理论与Miner线性疲劳累积损伤方法,通过Ncode软件计算风力发电机轴系齿轮在次同步振荡扭振载荷作用下的疲劳损伤程度。分析不同次同步振荡时长对风力发电机轴系齿轮部分疲劳损伤程度的影响。分析结果有助于预测风力发电机轴系齿轮部分使用寿命,提高风电系统安全可靠性。 展开更多
关键词 双馈风力发电机 次同步振荡 行星齿轮模型 有限元分析 疲劳可靠性
下载PDF
应用型本科院校一线教师教学创新行动的生成机制与表征 被引量:3
3
作者 李彬彬 张迎新 《中国职业技术教育》 北大核心 2022年第8期60-68,共9页
采用扎根理论范式,借鉴计划行为理论框架,系统探讨了应用型本科一线教师教学创新行动各影响因素之间的内在过程逻辑以及作用机制,构建了一线教师教学创新的动态行星齿轮结构理论模型。模型表明:教学创新态度、教学创新能力和教学创新氛... 采用扎根理论范式,借鉴计划行为理论框架,系统探讨了应用型本科一线教师教学创新行动各影响因素之间的内在过程逻辑以及作用机制,构建了一线教师教学创新的动态行星齿轮结构理论模型。模型表明:教学创新态度、教学创新能力和教学创新氛围三个行星齿轮的转动与居于中心位置的太阳轮——教学创新行为的旋转方向和旋转速度彼此间互相影响;一线教师的教学创新行动表征包括教师的课堂教学创新、教学学术实践和教学创新精进。基于应用型本科教学生态现实背景,提出提升一线教师教学创新的可行性建议。 展开更多
关键词 教学创新 扎根理论 应用型本科 行星齿轮结构模型
下载PDF
Analysis of lubrication performance for internal meshing gear pair considering vibration 被引量:3
4
作者 JIAN Guang-xiao WANG You-qiang +2 位作者 ZHANG Ping LI Yun-kai LUO Heng 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第1期126-139,共14页
The thermal elasto-hydrodynamic lubrication characteristics of the internal meshing gears in a planetary gear train under vibrations were examined considering the influence of the modification coefficient and time-var... The thermal elasto-hydrodynamic lubrication characteristics of the internal meshing gears in a planetary gear train under vibrations were examined considering the influence of the modification coefficient and time-varying meshing stiffness.Based on dynamic theory of the gear system,a dynamic model of the planetary gear train was established.The lubrication performances of modified gear systems under vibrations and static loads were analyzed.Compared with other transmission types,the best lubrication effect could be produced by the positive transmission.A thicker lubricating oil film could be formed,and the friction coefficient and oil film flash temperature are the smallest.Increasing modification coefficient improves the lubrication performance continuously but intensifies the engage-in and tooth-change impact.For the planetary and inner gears,the increase in the modification coefficient also leads a decrease in the oil film stiffness. 展开更多
关键词 internal meshing gears dynamic model modification coefficient lubrication performance oil film stiffness
下载PDF
Bifurcation and chaos study on transverse-torsional coupled 2K-H planetary gear train with multiple clearances 被引量:4
5
作者 盛冬平 朱如鹏 +2 位作者 靳广虎 陆凤霞 鲍和云 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第1期86-101,共16页
A new non-linear transverse-torsional coupled model was proposed for 2K-H planetary gear train, and gear's geometric eccentricity error, comprehensive transmission error, time-varying meshing stiffness, sun-planet... A new non-linear transverse-torsional coupled model was proposed for 2K-H planetary gear train, and gear's geometric eccentricity error, comprehensive transmission error, time-varying meshing stiffness, sun-planet and planet-ring gear pair's backlashes and sun gear's bearing clearance were taken into consideration. The solution of differential governing equation of motion was solved by applying variable step-size Runge-Kutta numerical integration method. The system motion state was investigated systematically and qualitatively, and exhibited diverse characteristics of bifurcation and chaos as well as non-linear behavior under different bifurcation parameters including meshing frequency, sun-planet backlash, planet-ring backlash and sun gear's bearing clearance. Analysis results show that the increasing damping could suppress the region of chaotic motion and improve the system's stability significantly. The route of crisis to chaotic motion was observed under the bifurcation parameter of meshing frequency. However, the routes of period doubling and crisis to chaos were identified under the bifurcation parameter of sun-planet backlash; besides, several different types of routes to chaos were observed and coexisted under the bifurcation parameter of planet-ring backlash including period doubling, Hopf bifurcation, 3T-periodic channel and crisis. Additionally, planet-ring backlash generated a strong coupling effect to system's non-linear behavior while the sun gear's bearing clearance produced weak coupling effect. Finally, quasi-periodic motion could be found under all above–mentioned bifurcation parameters and closely associated with the 3T-periodic motion. 展开更多
关键词 planetary gear train BIFURCATION CHAOS transverse-torsional coupling BACKLASH bearing clearance
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部