Computational Investigation of the Effect of Reinforcement Schemes and Angles on the Stress-Strain State and Strength of Composite Cylinders Under Axisymmetric Internal Explosion. Part 3. Results of Calculations for Two-Layer Cylinders with Orthogonal and Combined Reinforcement of the Layers

被引:0
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作者
P. P. Lepikhin
V. A. Romashchenko
O. S. Beiner
S. A. Tarasovskaya
机构
[1] National Academy of Sciences of Ukraine,Pisarenko Institute of Problems of Strength
来源
Strength of Materials | 2019年 / 51卷
关键词
application package; two-layer wound composite hollow cylinder; internal explosive loading; stress-strain state; strength; reinforcement patterns and angles;
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摘要
The effect of reinforcement patterns and angles on the stress-strain state and strength of two-layer wound composite cylinders of finite length with orthogonal reinforcement and two types of combined reinforcement of the layers under axisymmetric internal explosion has been numerically investigated. Using the data presented in Part 2, a comparative analysis of the effect of winding angles on strength for five different reinforcement patterns has been performed according to three failure criteria for an anisotropic material. The obtained results allow one to choose reinforcement patterns and angles, which ensure the highest and lowest initial strengths of the cylinder, according to the maximum stress and strain criteria and the generalized von Mises criterion, as well as circumferential stiffness.
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页码:698 / 706
页数:8
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