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Failure analysis for cylindrical explosion containment vessels

机译:圆柱形爆炸安全壳的失效分析

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The elastic or elastic-plastic dynamical response of the explosion containment vessels (ECVs) subject to the impulsive loading have been studied intensively, however the dam-age mechanism of ECVs is still scarcely investigated. In this work two cylindrical explosion containment vessels under the different explosion loads are tested. The overpressure is measured and compared with the numerical result. The damage mechanism of adiabatic shear band is successfully applied to explain the failure mode of the ECVs, where the insta-bility analysis for the thermo-viscoplastic constitutive law is conducted to yield a rate-dependent failure criterion. Based on the overpressure analysis and rate-dependent failure criterion, the shear failure mode of ECVs is studied for the first time, including the potential initial flaw in the meso-scale in the vessel. The failure analysis indicated that the rate-dependent failure criterion governs the damage mode of the vessel with the impulsive loading however the initial flaw is mainly to ignite the shear band, which has minor influ-ence to the final failure mode of the vessel. The simulated fracture profile shows a good agreement with the experimental result.
机译:爆炸容器(ECV)承受脉冲载荷的弹性或弹塑性动力响应已得到深入研究,但仍很少研究ECV的损坏机理。在这项工作中,测试了在不同爆炸载荷下的两个圆柱形防爆壳。测量过压并将其与数值结果进行比较。成功地将绝热剪切带的破坏机理用于解释ECV的破坏模式,并通过热粘塑性本构定律的不稳定性分析得出速率相关的破坏准则。基于超压分析和速率相关的破坏准则,首次研究了ECV的剪切破坏模式,包括容器中尺度的潜在初始缺陷。失效分析表明,与速率有关的失效准则决定了冲击载荷对船舶的破坏模式,但初始缺陷主要是点燃剪切带,对剪切带的最终破坏模式影响较小。模拟的断裂轮廓与实验结果吻合良好。

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