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Friction-Induced Vibrations during Tightening of Bolted Jointsa??Analytical and Experimental Results

机译:螺栓连接紧固过程中的摩擦振动分析和实验结果

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Bolted joints are one of the most used machine elements. Holding together structures of all sizes, the integrity rests on their shoulders. Thus, an accurate and reliable assembly of the joint is crucial. While it is the aim to not experience friction-induced vibrations at all, at some situations, it is unavoidable. These cases, however, have yet been out of the focus of control algorithms due to the volatile nature of the process. This contribution delivers analytical and experimental results for the occurrence of friction-induced vibrations during tightening of bolted joints. Previous findings of system characteristic constants could be validated, which can be used to monitor the tightening process even while strong vibrations during the tightening process occur. Additionally, a real-time algorithm is presented which allows for an advanced process monitoring and control by identifying process characteristics based on which predictions of the process can be made. These measures significantly improve the capabilities to reach the target values of the tightening process.
机译:螺栓连接是最常用的机械元件之一。将各种尺寸的结构保持在一起,完整性靠在他们的肩膀上。因此,准确,可靠地组装接头至关重要。尽管其目的是完全不经受摩擦引起的振动,但在某些情况下,这是不可避免的。但是,由于过程的易变性,这些情况尚未成为控制算法的重点。该贡献为拧紧螺栓接头期间因摩擦引起的振动的发生提供了分析和实验结果。系统特征常数的先前发现可以得到验证,即使在拧紧过程中发生剧烈振动时,也可以将其用于监视拧紧过程。另外,提出了一种实时算法,该实时算法通过识别可基于哪个过程进行预测的过程特征来进行高级过程监视和控制。这些措施大大提高了达到拧紧过程目标值的能力。

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