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Analysis of Thermal Shock on the Failure of Thin-Walled Vessel under Thermo-Solid Coupled Load

机译:热固耦合载荷下薄壁容器失效的热冲击分析

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It is significant to study the structure safety of thin walled vessel under thermo-solid coupled load. In allusion to a thin-walled vessel of failure receiving low-frequency and high-temperature thermal shock and pressure load, direct coupling model, temperature related material model and Finite Element Method(FEM) were applied to calculate the response of transient temperature field and transient stress field, based on which the influence of temperature load on failure of the vessel was analyzed. It shows that the node temperature response of the vessel cross-section has obvious thermal-shock characteristics that high temperature of inner wall and large gradient of transient temperature appear; transient peak thermal stress caused by thermal shock is obviously higher than that caused by internal pressure, and the periodic coupled stress plays an important role in the formation of cracks distributing around the placket of the vessel.
机译:研究薄壁容器在热固耦合载荷下的结构安全性具有重要意义。针对薄壁容器承受低频和高温热冲击和压力载荷的故障,采用直接耦合模型,温度相关材料模型和有限元法(FEM)计算瞬态温度场的响应。瞬态应力场,在此基础上分析了温度载荷对容器失效的影响。结果表明,容器截面的节点温度响应具有明显的热激特性,即内壁温度高,瞬态温度梯度大。由热冲击引起的瞬态峰值热应力明显高于由内部压力引起的瞬态峰值热应力,周期性耦合应力在形成分布在容器门襟周围的裂纹中起着重要作用。

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