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SRM绕组连接方式对轴承可靠性影响的研究 被引量:1
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作者 顾灶根 李宁 刘闯 《微电机》 2017年第1期21-25,共5页
在SRM轴承的疲劳寿命威布尔分布模型基础上,建立疲劳应力-寿命三参数可靠性预计模型。针对实际运行过程中存在的转子偏心现象,建立转子小偏心情况下绕组不同连接方式的有限元模型,并分析电机绕组的不同连接方式对径向力的影响,然后对轴... 在SRM轴承的疲劳寿命威布尔分布模型基础上,建立疲劳应力-寿命三参数可靠性预计模型。针对实际运行过程中存在的转子偏心现象,建立转子小偏心情况下绕组不同连接方式的有限元模型,并分析电机绕组的不同连接方式对径向力的影响,然后对轴承载荷进行分析后,认为SRM轴承载荷近似为正弦分布。通过对绕组串、并联时的电磁力进行对比分析,发现绕组并联时电机转子所受的单边磁拉力较串联时小,由此可知绕组并联方式有利于提高了轴承的使用寿命。最后运用疲劳应力-寿命三参数模型对轴承进行可靠性预计,并运用Matlab/Simulink得到绕组串、并联下的可靠度曲线。 展开更多
关键词 开关磁阻电机 轴承 可靠性 疲劳应力-寿命模型
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Low cycle fatigue behavior of zirconium−titanium−steel composite plate 被引量:1
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作者 Bin-bin ZHOU Peng YU +3 位作者 Le CHANG Chang-yu ZHOU Cheng YE Bo-jun ZHANG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2022年第5期1530-1547,共18页
The low cycle fatigue behavior of zirconium−titanium−steel composite plate under symmetrical and asymmetric stress control was studied.The effects of mean stress and stress amplitude on cyclic deformation,ratcheting e... The low cycle fatigue behavior of zirconium−titanium−steel composite plate under symmetrical and asymmetric stress control was studied.The effects of mean stress and stress amplitude on cyclic deformation,ratcheting effect and damage mechanism were discussed in detail.The results show that under symmetric stress control,the forward ratcheting deformation is observed.Under asymmetric stress control,the ratcheting strain increases rapidly with mean stress and stress amplitude increasing.Under high stress amplitude,the influence of mean stress is more significant.In addition,by studying the variation of strain energy density,it is found that the stress amplitude mainly promotes the fatigue damage,while the mean stress leads to the ratcheting damage.In addition,fractographic observation shows that the crack initiates in the brittle metal compound at the interface,and the steel has higher resistance to crack propagation.Finally,the accuracy of life prediction model considering ratcheting effect is discussed in detail,and a high-precision life prediction model directly based on mean stress and stress amplitude is proposed. 展开更多
关键词 zirconium−titanium−steel composite plate low cycle fatigue behavior fatigue damage mean stress ratcheting effect life prediction model
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