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OPTIMIZED BOLT TIGHTENING SEQUENCES IN BOLTED JOINTS USING SUPERELEMENT FE MODELING TECHNIQUE

机译:使用超有限元建模技术优化螺栓连接中的螺栓拧紧顺序

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A lot of effort is put to achieve bolt preload uniformity during the assembly process of offshore bolted joint connections resulting in potentially high economic costs and project delays. The complexity of this operation is due to the effect of the elastic interaction between the different joint elements which causes load variations of adjacent bolts whenever a bolt is tightened. As a consequence, it is difficult to achieve a uniform target load in the bolts. In order to avoid this phenomenon, tightening sequences of a large number of passes are usually carried out until a uniform target load is achieved. This solution is neither practical nor efficient when treating hundreds or even thousands of bolted joints due to the large assembly time needed. Several methods were developed to study the effect of the elastic interaction and minimize the assembly time. These methods usually predict the loss of load of every bolt during the tightening sequence, and thus calculate the tightening loads that will provide a uniform final load at the end of the sequence. As a result, an optimized tightening sequence is achieved, which provides a uniform final load distribution in only one or two tightening passes. However, several complex and costly analyses are previously necessary for such purpose. Based on these traditional methods, this paper presents a new and more efficient optimization methodology to achieve assembly bolt load uniformity. The method is based on the use of superelement technique and is capable of producing similar results with computational costs reduced by 30 times as compared to the more conventional Finite Element (FE) modeling. The results were satisfactorily validated with the latter as well as with tests conducted on a NPS 4 class 900 bolted joint.
机译:在海上螺栓连接的组装过程中,为实现螺栓预紧均匀性付出了很多努力,这导致潜在的高昂经济成本和工程延误。该操作的复杂性归因于不同接头元件之间的弹性相互作用的影响,每当拧紧螺栓时,该相互作用都会导致相邻螺栓的载荷变化。结果,难以在螺栓中获得均匀的目标载荷。为了避免这种现象,通常执行多次通过的拧紧顺序,直到获得均匀的目标载荷为止。由于需要大量的组装时间,因此在处理数百甚至数千个螺栓连接时,这种解决方案既不实用,也不高效。开发了几种方法来研究弹性相互作用的影响并最大程度地减少组装时间。这些方法通常可以预测在拧紧顺序期间每个螺栓的负载损失,从而计算出可以在顺序结束时提供均匀最终负载的拧紧负载。结果,实现了优化的拧紧顺序,该拧紧顺序仅在一次或两次拧紧过程中提供了均匀的最终载荷分布。但是,为此,以前必须进行几项复杂且成本高昂的分析。基于这些传统方法,本文提出了一种新的,更有效的优化方法,以实现装配螺栓载荷的均匀性。该方法基于超元素技术的使用,与更传统的有限元(FE)建模相比,能够产生相似的结果,且计算成本降低了30倍。后者以及在NPS 4 class 900螺栓连接上进行的测试均令人满意地验证了结果。

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