金属-FGM-陶瓷EFBF复合板稳态热应力  

STEADY THERMAL STRESSES IN CERAMIC-FGM-METAL COMPOSITE PLATE UNDER EFBF MECHANICAL BOUNDARY CONDITIONS

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作  者:许杨健[1] 王玲玲[1] 栗东平[1] 

机构地区:[1]河北工程大学土木工程学院工程力学系,河北邯郸056038

出  处:《力学与实践》2008年第6期47-50,共4页Mechanics in Engineering

基  金:河北省教育厅自然科学基金资助项目(2003136);邯郸市科技局资助项目(0821120081-2).

摘  要:为研究金属-FGM-陶瓷EFBF复合板的稳态热应力,从热传导规律出发,结合热应力计算公式,建立了该复合板稳态热应力的研究模型,用有限元和辛普生法分析了T_a=500K和T_b=1800K时,该复合板的稳态热应力分布并与无梯度两层复合板的结果进行了比较.结果表明:FGM梯度层的厚度、组分和孔隙率对该EFBF复合板的热应力有不同程度的影响,此外,有梯度三层复合板的热应力比较缓和,最大拉应力减小29.18%.此结果为该复合板的设计和应用提供了准确的计算依据.In order to study the steady thermal stresses in ceramic-metal three-layered composite plate with an interlayer of FGM under EFBF mechanical boundary conditions, the analytical model for the steady thermal stresses in the composite plate was established, from heat conduction law and calculation formulas of thermal stresses. When Ta = 500 K and Tb = 1 800 K, the steady thermal stress distribution of the composite plate was analyzed by the FEM and the Simpson method, and results were compared with that of nongraded two-layered plate. The paper gives the effects of thickness and composition and porosity in FGM gradient layer on thermal stresses of the composite EFBF plate, and it is shown that the thermal stress in graded three-layered plate is not significant and the maximum tensile stress reduces by 29.18%. The results provide a reference for the design and applications of the composite plate.

关 键 词:金属-FGM-陶瓷复合板 稳态热应力 有限元法 

分 类 号:TG335.81[金属学及工艺—金属压力加工] TQ174.758[化学工程—陶瓷工业]

 

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