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Investigation of Thermal Residual Stresses in Co-Cured Aluminum/Composite Hybrid Shaft Using Finite Element Method

机译:用有限元法研究共固化铝/复合杂交轴热残余应力研究

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In this work, thermal residual stresses and deformation of an aluminum/composite hybrid shaft was studied using ABAQUS FEM software. First, the thermo-chemical model of the curing process was described, and the curing parameters were determined. Then, a FEM model of the co-cured aluminum/composite hybrid shaft was build up using ABAQUS FEM software. Finally, the distribution of the thermal residual stress and deformation in the co-cured aluminum/composite hybrid shaft due to curing was obtained, and the effect of cooling rate was analyzed. The results show that residual stresses can be reduced obviously by reasonable cooling rate. The cooling rate also affect the degree of cure which influenced the mechanic property of aluminum/composite hybrid structure directly.
机译:在这项工作中,使用ABAQUS FEM软件研究了铝/复合杂交轴的热残余应力和变形。 首先,描述了固化过程的热化学模型,并确定固化参数。 然后,使用ABAQUS FEM软件建立共固化铝/复合杂交轴的FEM模型。 最后,获得了通过固化的共固化铝/复合杂交轴中的热残余应力和变形的分布,分析了冷却速率的效果。 结果表明,通过合理的冷却速率可以明显降低残余应力。 冷却速率也影响了影响铝/复合杂交结构的机械性能的固化程度。

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