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PREDICTION OF RESIDUAL STRESS BY SIMULATION OF THE ROLLED JOINT MANUFACTURING PROCESS FOR STEAM GENERATORS

机译:蒸汽发生器轧制接头制造工艺仿真预测残余应力

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Boiler tubes in steam generators are typically installed by a roller expanding process which plastically deforms the tube against the tubesheet to create an interference fit. Such connections necessarily involve residual stresses upon which operating loads are applied. An understanding of the rolling process, and quantitative knowledge of the residual stresses produced by it, are important factors in establishing the integrity of the rolled joint under operating conditions. Previous work has established that 3-D finite element modelling of the rolling process can practically determine the residual stress distribution. The purpose of this work is to develop a detailed numerical model to simulate rolling steam generator tubes into a tubesheet with a triangular hole pattern, and to obtain the resulting residual stress distribution. The boiler tube, tubesheet and three rollers are all modelled as separate components, connected by sliding contact surfaces. Several cases are evaluated, to address variation in key manufacturing tolerances in steam generator rolled joints.
机译:蒸汽发生器中的锅炉管通常由辊膨胀过程安装,该辊膨胀过程塑性使管抵靠管板的管以产生过盈配合。这种连接必须涉及施加运行负载的残余应力。理解滚动过程和对其产生的残余应力的定量知识是在操作条件下建立轧制接头的完整性的重要因素。以前的工作已经确定了轧制过程的3-D有限元建模,几乎可以确定残留应力分布。这项工作的目的是开发一种详细的数控模型,以将滚动蒸汽发生器管模拟成带三角形孔图案的管板,并获得所得到的残余应力分布。锅炉管,管板和三个滚子全部建模为单独的部件,通过滑动接触表面连接。评估了几个案例,以解决蒸汽发生器轧制接头中的关键制造公差的变化。

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