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FINITE ELEMENT ANALYSIS OF A PRESSURE VESSEL SUBJECTED TO AN INTERNAL BLAST LOAD

机译:内部爆破载荷对压力容器的有限元分析

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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 dimethyl sulfoxide (DSMO) in an autoclave. The explosion was believed to have occurred because DMSO was used in excess in the experiment and heated beyond its decomposition temperature. The aim of the current study is to investigate the effect of internal blast load on a pressure vessel made of stainless steel AISI 316L through finite element analysis. Numerical simulation using FEA is performed to better understand the cause of failure of the pressure vessel. The finite element model predicts very well the structural response and subsequent failure of the actual incident and the results reveal that the root cause to failure was an internal blast load, which arose from the decomposition of DMSO at high temperature.
机译:目前工作的目的是为在研究实验室实验期间模拟一种不锈钢SA 316L高压灭菌和破裂,该试验设计用于研究高压釜中二甲基亚砜(DSMO)在硫砜(DSMO)存在下的铵硫化钼酸铵的热分解。据信爆炸已经发生,因为DMSO在实验中过量使用并加热超出其分解温度。目前研究的目的是探讨通过有限元分析的由不锈钢AISI 316L制成的压力容器对压力容器的影响。进行使用FEA的数值模拟以更好地理解压力容器的故障原因。有限元模型预测了实际事件的结构响应和随后的失败,结果表明,根本原因是失效的是内部爆破载荷,从高温下从DMSO的分解产生的内部鼓胀。

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