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Experimental Assessment of Time-Limited Operation and Rectification of a Bridge Crane

机译:桥式起重机限时整改的实验评估

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摘要

This paper describes a problem related to a casting bridge crane with a combined load of 200/50/12.5 t and a span of 18.6 m, working in a heavy metallurgical operation. Due to the specific stress of the structure after its long-term operation, longitudinal fillet welds between the upper flange and the web of the main box beam on the rail side of the 200 t trolley were irreparably damaged. As a result, the cross-section of the main beam had opened, thereby substantially reducing its strength and stiffness. This resulted in a disproportionate increase and undesirable redistribution of stresses in the beam and, at the same time, an increase in the probability of acute fatigue or the loss of stability of the elastic beam shape. Therefore, the rectification of the damaged load-bearing structure was carried out by specific structural modifications. Critical load-bearing elements were subjected to complicated strength and fatigue life analyses before and after rectification. These analyses were supported by experimental measurements. The applied modifications resulted in a partial strengthening of the lifting device with the possibility of its further operation, but only in a limited mode, with a limited period of operation with a time limit of 2 years and a reduced total load capacity of 150 t. The applied methods are also applicable for the fatigue analysis of load-bearing elements and equipment for bridge, gantry and tower cranes, crane tracks, road and railway bridges and support structures under machinery and other devices with a dominant transverse and rotating effect.
机译:本文描述了一个与200/50 / 12.5 t的组合载荷,跨度为18.6 m的铸造桥式起重机有关的问题,该起重机在重型冶金作业中工作。由于该结构经过长期运行后会产生特定的应力,因此200 t小车的导轨侧上凸缘和主箱形梁腹板之间的纵向角焊缝受到了不可弥补的破坏。结果,主梁的横截面已经打开,从而大大降低了其强度和刚度。这导致梁中应力不成比例的增加和不希望的重新分布,同时导致急性疲劳的可能性增加或弹性梁形状的稳定性丧失。因此,通过特定的结构修改来对受损的承重结构进行校正。在矫正前后,对关键的承重元件进行了复杂的强度和疲劳寿命分析。这些分析得到实验测量的支持。所进行的修改导致了提升装置的部分加强,使其有可能进一步操作,但只能在有限的模式下,在有限的运行期间内进行,使用期限为2年,降低的总负载能力为150吨。所应用的方法还适用于桥梁,龙门和塔式起重机,起重机轨道,公路和铁路桥梁以及在机械和其他装置下具有主要横向和旋转作用的支撑结构的承重元件和设备的疲劳分析。

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