1. 特种电机与高压电器教育部重点实验室(沈阳工业大学),辽宁省,沈阳市,110870
2. 山东大学,山东省,济南市,250100
3. 特变电工衡阳变压器有限公司,湖南省,衡阳市,421007
纸质出版:2025
移动端阅览
张智翔, 陈德志, 张国臻, 等. 不同转速下轴承电蚀特性分析[J]. 中国电机工程学报, 2025,45(20):8213-8224.
ZHANG Zhixiang, CHEN Dezhi, ZHANG Guozhen, et al. Analysis of Electrical Corrosion Characteristics of Bearings at Different Speeds[J]. 2025, 45(20): 8213-8224.
张智翔, 陈德志, 张国臻, 等. 不同转速下轴承电蚀特性分析[J]. 中国电机工程学报, 2025,45(20):8213-8224. DOI: 10.13334/j.0258-8013.pcsee.242020.
ZHANG Zhixiang, CHEN Dezhi, ZHANG Guozhen, et al. Analysis of Electrical Corrosion Characteristics of Bearings at Different Speeds[J]. 2025, 45(20): 8213-8224. DOI: 10.13334/j.0258-8013.pcsee.242020.
在新能源汽车领域,电机轴承电腐蚀问题已成为影响其可靠性和寿命的重要因素之一,然而目前缺乏不同转速下轴承电腐蚀特性的研究。为此,该文基于轴承电腐蚀机理,构建电-热-腐蚀多物理场耦合有限元模型,对不同转速下轴承发生放电击穿时的电流密度、放电温度及腐蚀坑深度进行仿真分析,并搭建单体轴承电蚀试验平台,开展多转速工况下的电腐蚀实验,利用扫描电子显微镜对腐蚀形貌进行表征。结果表明,随着转速的增加,轴承电击穿时的电流密度和放电温度显著升高,电蚀坑深度加;高转速工况下轴承表面腐蚀点密集,电蚀坑面积呈指数式增大。该文可为新能源汽车电机轴承的设计优化与寿命预测提供理论依据和实验参考。
In the field of new energy vehicles
the issue of electrical erosion in motor bearings has become one of the key factors affecting reliability and service life of vehicles. However
there is currently a lack of research on the electrical erosion characteristics of bearings at different rotational speeds. This paper constructs an electro-thermal-erosion multi-physics coupling finite element model based on the the bearing electrical erosion mechanism. The model is used to simulate the current density
discharge temperature
and pit depth of bearings at different rotational speeds. Furthermore
a single bearing electrical erosion test platform is established to conduct experiments under multiple speed conditions
and scanning electron microscopy (SEM) is employed to characterize the corrosion morphology. The results show that as the rotational speed increases
the current density and discharge temperature during bearing electrical breakdown significantly increase
and the corrosion pit also deepens. Under high-speed conditions
the bearing surface exhibits a higher density of corrosion points
and the area of the electrical erosion pits increases exponentially. The findings of this paper provide theoretical support and experimental references for the design optimization and life prediction of electric motor bearings in new energy vehicles.
0
浏览量
118
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构
京公网安备11010802024621