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临界距离法在铝锂合金多轴缺口疲劳寿命预测中的应用
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作者 龚帅 王文轩 +2 位作者 王英玉 姚卫星 游文 《固体力学学报》 CAS CSCD 北大核心 2023年第4期470-482,共13页
临界距离法以缺口根部附近区域某点、线、面或体上的应力特征值作为描述材料失效的参量,具有较好的物理意义.论文进行了2297铝锂合金缺口件的疲劳实验,然后介绍了适用于多轴缺口疲劳寿命预测的名义应力法和临界距离法,将临界距离定义为... 临界距离法以缺口根部附近区域某点、线、面或体上的应力特征值作为描述材料失效的参量,具有较好的物理意义.论文进行了2297铝锂合金缺口件的疲劳实验,然后介绍了适用于多轴缺口疲劳寿命预测的名义应力法和临界距离法,将临界距离定义为与疲劳寿命相关的函数,借助临界面法给出有效临界面多轴应力比的定义,并对Wöhler曲线中的相关参数进行修正.最后,论文应用临界距离法预测了带有不同几何形状缺口试件的多轴疲劳寿命,并与名义应力法的预测结果对比,结果表明,临界距离法的预测精度更高,有92%预测数据点在三倍误差分散带内. 展开更多
关键词 多轴疲劳 缺口 寿命预测 临界距离法 铝锂合金
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Coupled fluid-thermal investigation on non-ablative thermal protection system with spiked body and opposing jet combined configuration 被引量:5
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作者 Jie HUANG weixing yao Xianyang SHAN 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2019年第6期1390-1402,共13页
In this paper, a Non-Ablative Thermal Protection System(NATPS) with the spiked body and the opposing jet combined configuration is proposed to reduce the aerodynamic heating of the hypersonic vehicle, and the coupled ... In this paper, a Non-Ablative Thermal Protection System(NATPS) with the spiked body and the opposing jet combined configuration is proposed to reduce the aerodynamic heating of the hypersonic vehicle, and the coupled fluid-thermal numerical analysis is performed to study the thermal control performance of the NATPS. The results show that the spiked body pushes the bow shock away from the protected structure and thus reduces the shock intensity and the wall heat flux. In addition, the low temperature gas of the opposing jet separates the high temperature gas behind the shock from the nose cone of the spiked body, ensuring the non-ablative property of the spiked body. Therefore, the NATPS reduces the aerodynamic heating by the reconfiguration of the flow field, and the thermal control efficiency of the system is better than the Thermal Protection System(TPS) with the single spiked body and the single opposing jet. The influencing factors of the NATPS are analyzed. Both increasing the length of the spiked body and reducing the total temperature of the opposing jet can improve the thermal control performance of the NATPS and the nonablative property of the spiked body. However, increasing the heat conductivity coefficient of the spiked body can enhance benefit the non-ablative property of the spiked body, but has little influence on the thermal control performance of the NATPS. 展开更多
关键词 COUPLED method NON-ABLATIVE Opposing JET Spiked BODY THERMAL protection system
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