材料科学
活塞(光学)
热冲击
热膨胀
有限元法
复合材料
联轴节(管道)
铝
合金
热的
GSM演进的增强数据速率
压力(语言学)
极限抗拉强度
应力场
结构工程
热力学
工程类
物理
哲学
光学
波前
电信
语言学
作者
Ziliang Li,Ye Zhu,Peiyou Xiong,Hongguo Zheng,Jun Wang
摘要
Abstract In this study, a magneto‐thermo‐structural coupling finite element method was proposed to calculate the electromagnetic field, temperature field, stress field, and strain field of an aluminum alloy piston during thermal shock process. The computed temperature results at the measurement points of T3 and T4 agree well with the measured data. The concept of tensile strain energy density was proposed as a thermal fatigue damage parameter, and the thermal fatigue life of the piston was predicted on the basis of the calculated results by magneto‐thermo‐structural coupling analysis and tensile strain energy density‐life equation; the discrepancy between the predicted life and the experimental one is 16%. The thermal fatigue failure mechanism of the piston was also clarified. High cyclic stresses occur on the edge of Si due to the difference in thermal expansion coefficient of Al and Si; micro cracks first originate on the edge of Si, then grow through combining other micro cracks, and eventually form macro cracks.
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