装配预应力双层管道的伽多林问题

IF 0.5 4区 工程技术 Q4 MECHANICS Journal of Applied Mechanics and Technical Physics Pub Date : 2024-01-15 DOI:10.1134/S002189442305022X
A. A. Burenin, A. V. Tkacheva
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摘要

摘要 本文提出了两个圆柱形管道收缩装配中受力状态演变的伽多林问题的解决方案。装配部件的材料采用理想弹性-粘弹性材料的数学模型进行描述。在装配体材料的接触面上指定了摩擦定律。屈服准则是最大八面体应力准则(von Mises 准则),其中屈服应力与局部温度有很大关系。在连续的时间步骤中,根据当时达到的温度分布计算时变热应力。计算得出的装配残余应力和装配干涉与一维问题的数值分析解法得出的值进行了比较。注意到由于忽略了边界条件中的奇异性,结构近端区域的配合干涉行为有所不同。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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GADOLIN PROBLEM OF ASSEMBLING A PRESTRESSED TWO-LAYER PIPE

This paper presents a solution to the Gadolin problem of the evolution of stressed states in the shrink-fit assembly of two cylindrical pipes. The materials of the assembly parts are described using the mathematical model of an ideal elastic-viscoplastic material. The friction law is specified on the contact surface of the materials of the assembly. The yield criterion is taken to be the maximum octahedral stress criterion (von Mises criterion) in which the yield stress depends significantly on the local temperature. Time-varying thermal stresses are calculated in successive time steps, depending on the temperature distribution reached by that time. The calculated residual stress and fit interference in the assembly are compared with the values obtained from a numerical-analytical solution of the one-dimensional problem. Differences in the behavior of the fit interference in the near-end region of the structure due to the neglect of the singularity in the boundary conditions are noted.

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来源期刊
CiteScore
1.20
自引率
16.70%
发文量
43
审稿时长
4-8 weeks
期刊介绍: Journal of Applied Mechanics and Technical Physics is a journal published in collaboration with the Siberian Branch of the Russian Academy of Sciences. The Journal presents papers on fluid mechanics and applied physics. Each issue contains valuable contributions on hypersonic flows; boundary layer theory; turbulence and hydrodynamic stability; free boundary flows; plasma physics; shock waves; explosives and detonation processes; combustion theory; multiphase flows; heat and mass transfer; composite materials and thermal properties of new materials, plasticity, creep, and failure.
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