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Fracture mechanics in fatigue calculations as the assistance in structural design. Case study

机译:疲劳力学中的断裂力学作为结构设计的辅助手段。案例分析

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A case study originated from a request to perform fatigue calculations on a partial penetration weld in a steel casting on a new heavy lift ship. The ship has a special lifting system for lifting and transporting topsides of offshore oil/gas platforms. There are many sizes of offshore platforms so the lift system is designed to move along the vessel on rails, which are part of the main deck of the ship hull. The loads passing into the rails during lift operations are large, and massive steel castings of complex shapes are used to distribute these loads into the hull. The castings are very thick so it is difficult to achieve full penetration welds, and therefore the initial design proposed partial penetration welds. In order to decide if the partial penetration welds were adequate, a fatigue assessment was carried out using a fracture mechanics approach based on BS7910. Different possibilities of the bevelling of castings edges in preparation for welding were considered in the stress analysis and in the crack growth estimations. In the areas of the ship hull which experienced high dynamic stress ranges none of the different possibilities showed acceptable fatigue life, and would demand re-design. The stress intensity factors obtained through the extensive finite element analysis were compared with the analytical solutions available in literature. Both results showed good correspondence.
机译:案例研究源于要求对新的重型起重船上的钢铸件中的部分熔透焊缝进行疲劳计算的要求。该船具有特殊的提升系统,用于提升和运输海上石油/天然气平台的顶部。离岸平台有多种尺寸,因此提升系统被设计为沿着轨道在船体上移动,这些轨道是船体主甲板的一部分。在提升操作过程中传递到轨道上的负载很大,并且使用复杂形状的大型钢铸件将这些负载分配到船体中。铸件非常厚,因此很难实现全熔透焊缝,因此最初的设计提出了部分熔透焊缝。为了确定局部渗透焊缝是否合适,使用了基于BS7910的断裂力学方法进行了疲劳评估。在应力分析和裂纹扩展估算中考虑了在准备焊接时对铸件边缘进行倒角的可能性。在承受高动态应力范围的船体区域,没有任何一种不同的可能性显示出可接受的疲劳寿命,因此需要重新设计。通过广泛的有限元分析获得的应力强度因子与文献中提供的分析解决方案进行了比较。两种结果均显示出良好的对应性。

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