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Thermal Fatigue Life Evaluation of Epoxy Resin/Si Joint under Mineral Oil Condition

机译:矿物油条件下环氧树脂/硅接头的热疲劳寿命评估

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摘要

Thermal fatigue life of epoxy resin/Si joint under mineral oil condition including impurities was evaluated by diffusion-structure coupled FEM analysis. The mass of the mineral oil impurities in epoxy resin increases with an increase in the number of thermal cycles by the diffusion phenomenon. An increase in the mass of the impurities in the resin causes swelling, which increases the stress intensity factor range Delta K-i at the joint interface. Delta K-i under the mineral oil condition increases by 1.5 times compared to that under air atmosphere. Swelling significantly shortened the thermal fatigue life under the mineral oil condition. Thus, swelling by diffusion of mineral oil impurities into epoxy resin becomes a dominant factor over thermal fatigue life of the joint.
机译:通过扩散结构耦合有限元分析评估了环氧树脂/硅接头在矿物油条件下(包括杂质)的热疲劳寿命。环氧树脂中的矿物油杂质的质量随着由扩散现象引起的热循环次数的增加而增加。树脂中杂质质量的增加会导致溶胀,从而增加接头界面处的应力强度因子范围Delta K-i。与空气气氛相比,矿物油条件下的Delta K-i增加了1.5倍。膨胀大大缩短了矿物油条件下的热疲劳寿命。因此,矿物油杂质扩散到环氧树脂中引起的溶胀成为接头热疲劳寿命的主要因素。

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