首页> 外文会议>2009 WASE International Conference on Information Engineering(2009年国际信息工程会议)(ICIE 2009)论文集 >Analysis of Steady Thermal Stress in a ZrO2/FGM/Ti-6Al-4V Composite ECBF Plate with Temperature-Dependent Material Properties by NFEM
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Analysis of Steady Thermal Stress in a ZrO2/FGM/Ti-6Al-4V Composite ECBF Plate with Temperature-Dependent Material Properties by NFEM

机译:基于温度特性的ZrO2 / FGM / Ti-6Al-4V复合ECBF板的稳态热应力分析

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摘要

A NFE model is constructed to analyze the heating steady thermal stress in a ZrO2/FGM/Ti-6AI-4V composite ECBF plate considered temperature dependency. From numerical calculation, when T0=300K Ta=670 and Tb=1 070K, the stress distributions in the plate were obtained. The results are as follows. The change of the FGM layer thickness is little effect on the stress in metal layer. Compared with M=0.1, when M=10, the stress difference on the ceramic surface is 133.9MPa, and the tensile stress at the interface between FGM and ceramic layers reduces by 52.3%. Compared with .4=3.99, when A=0, the tensile stress on the ceramic surface reduces by 96.2%. When T0=300K, Ta=100K, compared with Tb=1 800K, when Tb=1050K, the tensile stress in the plate reduces by 84.1%, and the maximum stress difference on the surface of ceramics is 1610.8MPa. Compared with the nongraded two-layered ceramic/metal composite plate, the thermal stress of ZrO2/FGM/Ti-6AI-4V composite ECBF plate is very gentle and smooth. The stress in graded three-layered composite plate considered temperature dependency becomes small obviously, and the maximum tensile stress on the metal surface reduces by 30.1%, and the maximum compressive stress on the ceramic surface reduces by 9.49%. The results provide the foundations of theoretical calculation for the design and application of the composite plate.
机译:构造了一个NFE模型,以分析ZrO2 / FGM / Ti-6AI-4V复合ECBF板中考虑温度依赖性的加热稳态热应力。通过数值计算,当T0 = 300K Ta = 670和Tb = 1 070K时,获得了板中的应力分布。结果如下。 FGM层厚度的变化对金属层中的应力影响很小。与M = 0.1相比,当M = 10时,陶瓷表面的应力差为133.9MPa,FGM与陶瓷层之间的界面处的拉应力降低了52.3%。与.4 = 3.99相比,当A = 0时,陶瓷表面的拉应力降低了96.2%。当T0 = 300K,Ta = 100K时,与Tb = 1800K相比,当Tb = 1050K时,板中的拉应力降低84.1%,陶瓷表面的最大应力差为1610.8MPa。与未分级的两层陶瓷/金属复合板相比,ZrO2 / FGM / Ti-6AI-4V复合ECBF板的热应力非常平稳。考虑温度依赖性的梯度三层复合板的应力明显变小,金属表面的最大拉应力降低30.1%,陶瓷表面的最大压应力降低9.49%。研究结果为复合板的设计和应用提供了理论计算依据。

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