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首页> 外文期刊>The Archive of Mechanical Engineering >Finite Element Modeling of Material Fatigue and Cracking Problems for Steam Power System HP Devices Exposed to Thermal Shocks
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Finite Element Modeling of Material Fatigue and Cracking Problems for Steam Power System HP Devices Exposed to Thermal Shocks

机译:遭受热冲击的蒸汽动力系统高压设备的材料疲劳和破裂问题的有限元建模

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The paper presents a detailed analysis of the material damaging process due to low-cycle fatigue and subsequent crack growth under thermal shocks and high pressure. Finite Element Method (FEM) model of a high pressure (HP) by-pass valve body and a steam turbine rotor shaft (used in a coal power plant) is presented. The main damaging factor in both cases is fatigue due to cycles of rapid temperature changes. The crack initiation, occurring at a relatively low number of load cycles, depends on alternating or alternating-incremental changes in plastic strains. The crack propagation is determined by the classic fracture mechanics, based on finite element models and the most dangerous case of brittle fracture. This example shows the adaptation of the structure to work in the ultimate conditions of high pressure, thermal shocks and cracking.
机译:本文介绍了由于低周疲劳以及随后在热冲击和高压下的裂纹扩展而造成的材料破坏过程的详细分析。提出了高压旁通阀体和汽轮机转子轴(在燃煤电厂中使用)的有限元方法(FEM)模型。两种情况下的主要破坏因素都是由于温度快速变化的循环而引起的疲劳。出现在相对较少数量的载荷循环下的裂纹萌生取决于塑性应变的交替变化或交替增量变化。裂纹扩展是由经典的断裂力学根据有限元模型和最危险的脆性断裂情况确定的。该示例说明了该结构在高压,热冲击和破裂的最终条件下的适应性。

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