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由运动内热源引起的磁热黏弹性问题的研究 被引量:3
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作者 宋亚勤 张元冲 +1 位作者 徐红玉 卢秉恒 《力学学报》 EI CSCD 北大核心 2005年第4期501-510,共10页
在具有两个热松弛时间的广义热弹性理论下,研究了处于定常磁场中的均布各向同性黏弹性半空间中,由以均匀速度运动的线热源引起的瞬态波问题.通过引入黏弹性向量势和热黏弹性标量势,问题退化为求解3个偏微分方程.运用Laplace变换(对时间... 在具有两个热松弛时间的广义热弹性理论下,研究了处于定常磁场中的均布各向同性黏弹性半空间中,由以均匀速度运动的线热源引起的瞬态波问题.通过引入黏弹性向量势和热黏弹性标量势,问题退化为求解3个偏微分方程.运用Laplace变换(对时间变量)和Fourier变换(对一个空间变量),得到了变换域内应力和位移的解析表达式.采用级数展开法,得到了边界位移在小时间范围内的近似解,给出了解的近似范围,同时还研究了两种特例:(1)热源静止不动,(2)不考虑热松弛时间的影响.最后对于丙烯酸塑料介质给出了数值结果. 展开更多
关键词 广义磁热黏弹性 运动热源 LAPLACE变换 FOURIER变换 级数展开法
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Study on generalized magneto-thermoelastic problems by FEM in time domain 被引量:10
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作者 Xiaogeng Tian Yapeng Shen 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2005年第4期380-387,共8页
This paper presents an investigation of temperature, displacement, stress, and induced magnetic field in a half space perfectly-conductive plate. Finite element equations regarding generalized magneto-thermoelasticity... This paper presents an investigation of temperature, displacement, stress, and induced magnetic field in a half space perfectly-conductive plate. Finite element equations regarding generalized magneto-thermoelasticity problems with two relaxation times (i.e., the G-L theory) are derived using the principle of virtual work. For avoiding numerical complication involved in inverse Laplace and Fourier transformation and low precision thereof, the equations are solved directly in time-domain. As a numerical example, the derived equation is used to investigate the generalized magneto-thermoelastic behavior of a semi-infinite plate under magnetic field and subjecting to a thermal shock loading. The results demonstrate that FEM can faithfully predict the deformation of the plate and the induced magnetic field, and most importantly can reveal the sophisticated second sound effect of heat conduction in two-dimensional generalized thermoelastic solids, which is usually difficult to model by routine transformation methods. A peak can be observed in the distribution of stress and induced front and the magnitude of magnetic field at the heat wave the peak decreases with time, which can not be obtained by transformation methods. The new method can also be used to study generalized piezo-thermoelastic problems. 展开更多
关键词 Generalized magneto-thermoelasticity Finite element method Principle of virtual work Time domain Second sound effect
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