功能梯度材料夹杂物对薄板和圆孔圆柱壳应力集中的影响

E. Hart, V. Hudramovich, V.I. Terokhin
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引用次数: 1

摘要

学,特别是航天火箭工程、石油天然气工程、电力工程、建筑等。在它们的板和壳部件中存在开口导致局部应力急剧增加,在某些条件下,这可能引发破坏性过程。使用具有一定机械性能的功能梯度材料(fgm)可以显著降低局部集中点附近以开口、切口、圆角、凹槽等形式出现的应力集中。本文介绍了带圆形开口和环形FGM夹杂物的薄板和薄壁圆柱壳的应力场和应变场的计算机模拟和有限元分析结果。研究了FGM夹杂物尺寸及其弹性模量变化规律对开口附近应力应变集中的影响。得到了局部应力集中区的应力应变强度分布。研究发现,具有一定力学性能的环形FGM夹杂物可使应力集中系数降低30%以上。在这种情况下,还观察到开口附近应变强度的成比例下降。FGM夹杂物弹性模量和夹杂物宽度的变化规律不仅对应力和应变集中水平有显著影响,而且对应力和应变模式也有显著影响。大规模计算实验结果表明,FGM环形夹杂物降低了开口周围的应力和应变强度。因此,在带开口的板和圆柱壳中使用环形FGM增强材料,可以控制局部应力和应变集中区的应力和应变强度的分布和大小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of a functionally graded material inclusion on the stress concentration in thin plates and cylindrical shells with a circular opening
ology, in particular, space-rocket engineering, oil-and-gas engineering, power engineering, construction, etc. The presence of openings in their plate and shell components leads to a sharp increase in local stresses, which, under certain conditions, may trigger destructive processes. The use of functionally graded materials (FGMs) with certain mechanical properties can significantly reduce the stress concentration in the vicinity of local concentrators in the form of openings, cutouts, fillets, grooves, etc. This paper presents the results of computer simulation and finite element analysis of the stress and strain fields of thin plates and thin-walled cylindrical shells with a circular opening and an annular FGM inclusion surrounding it. The effect of the dimensions of the FGM inclusion and the law of variation of its elastic modulus on the stress and strain concentration in the vicinity of the opening was studied. The stress and strain intensity distribution in local stress concentration zones was obtained. It was found that an annular FGM inclusion with certain mechanical properties can reduce the stress concentration factor by more than 30%. In this case, a proportional decrease in strain intensity in the vicinity of the opening is also observed. The law of variation of the elastic modulus of the FGM inclusion and the inclusion width have a significant effect not only on the level of stress and strain concentration, but also on the stress and strain pattern. The results of the large-scale computational experiments show that an FGM annular inclusion reduces both the stress and the strain intensity around the opening. Therefore, the use of annular FGM reinforcements in plates and cylindrical shells with openings makes it possible to control the distribution and magnitude of the stress and strain intensities in local stress and strain concentration zones.
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