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温度边界条件对平面壁板热屈曲行为的影响研究
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作者 丁泽航 张天寅 韩先洪 《航空科学技术》 2024年第8期56-63,共8页
以高超声速飞行器为代表的高速航空器在飞行过程中其壁板结构易发生屈曲失稳,这种屈曲失稳与热效应紧密相关,因此温度边界条件会对结构的屈曲行为产生影响。本文通过一套自主设计的试验夹具,结合基于热力顺序耦合方式的静力弧长算法,研... 以高超声速飞行器为代表的高速航空器在飞行过程中其壁板结构易发生屈曲失稳,这种屈曲失稳与热效应紧密相关,因此温度边界条件会对结构的屈曲行为产生影响。本文通过一套自主设计的试验夹具,结合基于热力顺序耦合方式的静力弧长算法,研究了不同温度边界条件对平板屈曲行为的影响。结果表明,边界温度会显著影响极限屈曲载荷,且影响程度与力学边界条件相关;当边界与域内存在负温差(边界温度低于域内温度)时,温度影响的敏感程度更高;相比之下,边界温度影响区的宽度对壁板屈曲行为的影响较小。本文可为复杂壁板结构热屈曲行为的深入研究提供一定的参考依据。 展开更多
关键词 平板屈曲 热力耦合边界 弧长法 边界温度 极限屈曲载荷
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Thermal-hydro-mechanical coupling stress intensity factor of brittle rock 被引量:3
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作者 李鹏 饶秋华 +1 位作者 李卓 敬静 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2014年第2期499-508,共10页
A new calculation formula of THM coupling stress intensity factor was derived by the boundary collocation method, in which an additional constant stress function was successfully introduced for the cracked specimen wi... A new calculation formula of THM coupling stress intensity factor was derived by the boundary collocation method, in which an additional constant stress function was successfully introduced for the cracked specimen with hydraulic pressure applied on its crack surface. Based on the newly derived formula, THM coupling fracture modes (including tensile, shear and mixed fracture mode) can be predicted by a new fracture criterion of stress intensity factor ratio, where the maximum axial load was measured by self-designed THM coupling fracture test. SEM analyses of THM coupling fractured surface indicate that the higher the temperature and hydraulic pressure are and the lower the confining pressure is, the more easily the intergranular (tension) fracture occurs. The transgranular (shear) fracture occurs in the opposite case while the mixed-mode fracture occurs in the middle case. The tested THM coupling fracture mechanisms are in good agreement with the predicted THM coupling fracture modes, which can verify correction of the newly-derived THM coupling stress intensity factor formula. 展开更多
关键词 stress intensity factor thermal-hydro-mechanical coupling boundary collocation method fracture mechanism brittle rock
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