全回转浮式起重机卸载计算分析OA
臂架是全回转浮式起重机的重要工作部件,臂架通过变幅绳的拉力获得起升重物的幅度和高度.当臂架仰角较高时,如果吊重突然卸落势必会造成结构向后反弹而危害起重机安全.为研究臂架在卸载过程中的动力学行为,文中建立了简明的力学模型,利用能量守恒原理推导出臂架在后仰时对防倾覆支架的最大撞击力;建立有限元模型并通过瞬态动力学分析,获得防倾覆支架在卸载后的受力变化过程,验证了手工计算的准确性.计算结果显示相对误差较小,说明手工推导的过程相对可靠,实用性比较强.通过有限元模型仿真,分析了臂架主管和支管在卸载后轴向力的变化过程,发现部分构件在卸载过程中受力有明显的增多,这说明对结构进行突然卸载工况下的校核非常有必要.
The boom is a critical working component of a full-circle slewing floating crane,and the amplitude and lifting height are controlled by the luffing rope tension.When the boom elevation is large,a sudden drop of the lifted load can cause the structure to rebound backward and threaten crane safety.To investigate the dynamic response of the boom during unloading,a simplified mechanical model was established and the maximum impact force exerted by the boom on the anti-tipping stop was derived by energy conservation.A finite element model was then built,and transient dynamic analysis gave the stress-time history of the anti-tipping stop after load release,confirming the accuracy of the hand calculation.The small relative error shows the analytical derivation is reliable and practical.Finite element simulations further trace the axial-force evolution in the boom's main and branch chords after unloading,revealing noticeable stress increases in several members and demonstrating the necessity of checking the structure against sudden load release.
隋振华
上海振华重工集团设计研究总院 上海 200125
机械制造
浮式起重机臂架卸载动力学模型
floating craneboomunloadingdynamicsmodel
《起重运输机械》 2026 (2)
28-33,6
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