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Computational implementation of the rigid finite element method in the statics and dynamics analysis of forest cranes

机译:刚性有限元方法在林木起重机静力学和动力学分析中的计算实现

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A general mathematical model of a forest crane for statics and dynamics analysis is presented in the paper. This model allows to take into account the crane's flexible connections with the ground, the flexibility of its links and drives. The rigid finite element method is used to discretize the flexible links. Joint coordinates and homogeneous transformation matrices are used to describe the geometry of the system. Equations of motion are derived using the formalism of Lagrange equations. As an example, a forest crane built of eight links is presented. It is assumed that only one selected link of the crane is flexible. The influence of the flexibility of the link on the movements of load and driving torques in the revolute joints and the driving force in the prismatic joint are analyzed. The results may have practical significance, e.g. in terms of the selection of drives.
机译:提出了一种用于森林起重机静力学和动力学分析的通用数学模型。该模型可以考虑到起重机与地面的柔性连接,其连杆和驱动器的灵活性。刚性有限元方法用于离散化柔性连杆。联合坐标和齐次变换矩阵用于描述系统的几何形状。运动方程式是使用拉格朗日方程式的形式导出的。例如,介绍了一个由八个链节构成的森林起重机。假定起重机的只有一个选定的连杆是柔性的。分析了链节柔性对旋转关节中的载荷和驱动扭矩的运动以及棱柱形关节中的驱动力的影响。结果可能具有实际意义,例如在选择驱动器方面。

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