首页|Thermal and mechanical behavior of casting copper alloy wheel during wheel and belt continuous casting process

Thermal and mechanical behavior of casting copper alloy wheel during wheel and belt continuous casting process

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To investigate the thermal and mechanical behavior of casting wheel,a two-dimensional thermo-elastic-plastic finite element model was used to predict the temperature,stress and distortion distribution of the casting wheel during the wheel and belt continuous casting process.The effects of grinding thickness and casting speed on the thermal and mechanical behaviors of the center of the hot face of the casting wheel were discussed in detail.In each rotation,the casting wheel passes through four different spray zones.The results show that the temperature distribution of the casting wheel in different spray zones is similar,the temperature of the hot face is the highest and the temperature reaches the peak in the spray zone Ⅲ.The stress and distortion depend on the temperature distribution,and the maximum stress and distortion of the hot face are 358.2 MPa and 1.82 mm,respectively.The temperature at the center of the hot face decreases with increasing grinding thickness and increases with increasing casting speed.

casting wheelfinite element modelgrinding thicknesscasting speedhot facespray zones

Kun Gao、Yan Peng

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School of Mechanical Engineering,Yanshan University,Qinhuangdao 066004,Hebei,China

国家自然科学基金Innovative Research Groups Project of the Natural Science Foundation of Hebei ProvinceCentral Government Guides Local Science and Technology Development Fund Project

U20A20289E2021203011206Z1601G

2024

中国铸造
沈阳铸造研究所

中国铸造

CSTPCDEI
影响因子:0.299
ISSN:1672-6421
年,卷(期):2024.21(1)
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