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Structural Optimum Design and Analysis of the Mast of Rotary Drilling Rig Based on Finite Element Method

机译:基于有限元法的旋挖钻机桅杆结构优化设计与分析

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The objective of this study to minimize the mast deformation by structural optimization of the mast of rotary drilling rig in order to better control its functional operation and improve its performance. For this purpose, a novel optimization scheme for the mast of rotary drilling rig is formulated using 3D graphics software Pro/E together with Finite Element Method. Back sliding wheel installed on the mast is firstly proved to reduce the deformation of the mast of rotary drilling rig effectively. The position of back sliding wheel relative to the mast of rotary drilling rig is adjusted, together with the position of pulley yoke, to obtain the minimum deformation of the mast of rotary drilling rig, which improves the stability of the mast of rotary drilling rig. Optimization efficiency and computational accuracy are demonstrated numerically.
机译:这项研究的目的是通过对旋挖钻机的桅杆进行结构优化来最大程度地减少桅杆变形,以便更好地控制其功能运行并提高其性能。为此,使用3D图形软件Pro / E和有限元方法制定了一种新型的旋转钻机桅杆优化方案。首先证明了安装在桅杆上的后滑动轮可有效减少旋转钻机桅杆的变形。调整后滑动轮相对于旋转钻机的桅杆的位置,以及滑轮轭的位置,以获得旋转钻机的桅杆的最小变形,从而提高了旋转钻机的桅杆的稳定性。通过数值证明了优化效率和计算精度。

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