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Stress and stability analysis of slewing motion for crawler crane mounted on flexible ground

机译:施加在柔性地面上的履带式起重机回转运动的应力与稳定性分析

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The ground deformation causes the increasing of crawler crane side loading, even leads to the boom stress failure or crane tipping failure during slewing motion. This paper established a flexible multibody dynamics simulation model considering the coupling effects of the crane mechanical structure flexibility, ground deformation, and load's dynamic pendulum motion. The model has been verified by analytical model based on Winkler foundation and experimental data. Then the simulation model has been further used to analyze the influence of different foundation modulus, slewing speeds, and lifting heights on the crane boom max stress and the tipping stability. The result offers the slewing speed threshold, which can prevent stress and tipping failures for the crawler crane mounted on flexible ground. The research provides reference for the design and safe operation of crawler cranes.
机译:地面变形导致履带式起重机侧加载的增加,甚至导致回转运动期间的臂力应力失效或起重机故障。 本文建立了一种柔性多体动力学仿真模型,考虑了起重机机械结构柔性,地面变形和负载动态摆动的耦合效果。 基于Winkler Foundation和实验数据的分析模型验证了该模型。 然后,仿真模型进一步用于分析不同基础模量,回转速度和提升高度对起重机动力最大应力和倾翻稳定性的影响。 结果提供了回转速度阈值,可以防止安装在柔性地上的履带式起重机的应力和倾斜故障。 该研究为履带式起重机的设计和安全操作提供了参考。

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