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Failure analysis of a pressure vessel subjected to an internal blast load

机译:内部辐射载荷对压力容器的故障分析

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摘要

The objective of the current work is to model a stainless steel (SA 316L) autoclave explosion and rupture that occurred during a research laboratory experiment designed to study the thermal decomposition of ammonium tetrathiomolybdate in the presence of dimethylsulfoxide (DSMO) in the autoclave. A finite element analysis is conducted to better understand the cause of failure of the autoclave and with the objective to investigate whether the incident was caused by static overpressure or an internal blast load. The empirical CONWEP blast loading model is used to model the internal blast load. The constitutive behavior of the autoclave material is modelled using the Johnson-Cook (JC) plasticity and material failure model, which both account for the effect of strain rate and temperature. By conducting uniaxial tensile tests and tests on notched ring specimens cut from the autoclave, the true stress-strain curve and the ductile failure locus of the autoclave material are established, respectively, which are used to obtain the constants of the JC plasticity and failure model, respectively. The result of the finite element analysis revealed that a blast load from an equivalent TNT charge of 0.042 kg, which resulted from the decomposition of DMSO at high temperature, predicted markedly well the structural response and subsequent failure of the autoclave observed in the post-incident investigation.
机译:目前的工作的目的是模拟一种不锈钢(SA 316L)高压釜爆炸和破裂,所述研究实验室实验期间,设计用于研究高压釜中二甲基磺酰氧化物(DSMO)存在的氨基硫钼酸铵的热分解。进行有限元分析以更好地了解高压灭菌器失效的原因,并且目的是研究事件是由静态过压或内部爆破载荷引起的。经验考虑爆炸加载模型用于模拟内部爆炸载荷。使用Johnson-Cook(JC)可塑性和材料故障模型来建模高压釜材料的组成行为,其既考虑了应变速率和温度的影响。通过在从高压釜中切割的缺口环样品上进行单轴拉伸试验并进行测试,分别建立了高压釜材料的真正应力 - 应变曲线和延展性衰竭轨迹,其用于获得JC塑性和失效模型的常数, 分别。有限元分析的结果显示,从0.042kg的等效TNT电荷的爆炸载荷导致DMSO在高温下的分解,预测到事故后观察到的高压釜的结构应答和随后的失效调查。

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