Portada: Infraestructura para la Logística Sustentable 2050
DESTACADO | CPI Propone - Resumen Ejecutivo

Infraestructura para el desarrollo que queremos 2026-2030

Elaborado por el Consejo de Políticas de Infraestructura (CPI), este documento constituye una hoja de ruta estratégica para orientar la inversión y la gestión de infraestructura en Chile. Presenta propuestas organizadas en siete ejes estratégicos, sin centrarse en proyectos específicos, sino en influir en las decisiones de política pública para promover una infraestructura que conecte territorios, genere oportunidades y eleve la calidad de vida de la población.
ARTÍCULO
TITULO

Research on the Influence of Compression and Offset of Cushion Blocks on the Axial Strength of Transformers

Lu Sun    
Shuguo Gao    
Tianran Li    
Jiaxin Yao    
Ping Wang and Jianhao Zhu    

Resumen

The instability of the winding-cushion structure is one of the primary causes of transformer failures. Insulation cushion compression and offset are the predominant forms leading to structural instability. Therefore, this paper, using the SFSZ7-31500/110 transformer as an example, first derives the theoretical formula for mechanical stress calculation. It clarifies the key influencing parameters of the winding-cushion block structure on the axial bending stress of the winding. Subsequently, an electromagnetic force finite element calculation model is established to obtain the axial force distribution in the winding and the distribution of unbalanced displacement during short-circuit processes. Based on the force and offset distribution, a specific cushion block compression and offset test platform is constructed. By setting different cushion block variables, the effects of cushion block unbalanced height and cushion block offset on the winding?s bending elastic modulus are determined. Finally, a simulation model for stress calculation of the winding-cushion block structure is established, revealing the influence pattern of cushion block compression and offset instability on the axial strength of the winding. The results of this study indicate that the greater the uneven cushion block height, the lower the axial strength of the winding. Under the same cushion block offset angle, winding structures with non-uniform cushion block offsets exhibit the worst axial stability. When the offset angles are 30°, 45°, and 60°, the maximum axial bending stress of the winding increases by 1.73%, 3.46%, and 7.82%, respectively. Increasing the offset angle exacerbates the decrease in the axial strength of the winding up to a certain extent. The findings in this study have significant implications for enhancing a transformer?s short-circuit resistance.

Artículos similares

Hemos preparados una selección de otros artículos que pudieran ser de tu interés
Wanjun Zhang, Cunlin Xin and Shi Yu    
With the substantial increase in karst groundwater pollution, the pollution caused by heavy metal migration has become one of the hottest topics. The migration characteristics of heavy metals in karst groundwater are closely related to the geological env... ver más
Revista: Water
Minh-Hoang Nguyen, Tam-Tri Le and Quan-Hoang Vuong    
Modern society faces major environmental problems, but there are many difficulties in studying the nature?human relationship from an integral psychosocial perspective. We propose the ecomind sponge conceptual framework, based on the mindsponge theory of ... ver más
Revista: Urban Science
Yang Liu, Jinyuan Ma, Huanyu Song, Ziniu Qian and Xiao Lin    
This paper examined the coauthorship patterns in Chinese researchers? cross-border research collaboration in the social sciences based on articles and reviews indexed in the Scopus database (2010?2019). We explored the evolution of coauthorship patterns ... ver más
Revista: Sustainability
V. H. Sychenko,M. P. Bader,V. P. Semenchuk     Pág. 39 - 42
Research results of voltage autocontrol devices? ifluence on adjacent devices are considered.
Wenhua Yuan, Lianjie Ji, Long Meng, Min Fang and Xiangchi Zhang    
Pervious concrete is an innovative eco-friendly construction material. Through the application of mineral admixtures and microscopic analysis to optimize its performance and analyze its mechanisms, its traits as a sustainable building option may be furth... ver más
Revista: Buildings