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首页> 外文期刊>Advanced Composite Materials: The Official Journal of the Japan Society of Composite Materials >Robotized Filament Winding of Full Section Parts: Comparison Between Two Winding Trajectory Planning Rules
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Robotized Filament Winding of Full Section Parts: Comparison Between Two Winding Trajectory Planning Rules

机译:完整截面零件的自动长丝缠绕:两个缠绕轨迹规划规则之间的比较

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摘要

Robotized filament winding technology involves a robot that winds a roving impregnated by resin on a die along the directions of stresses to which the work-piece is submitted in applications. The robot moves a deposition head along a winding trajectory in order to deposit roving. The trajectory planning is a very critical aspect of robotized filament winding technology, since it is responsible for both the tension constancy and the winding time. The present work shows two original rules to plan the winding trajectory of structural parts, whose shape is obtained by sweeping a full section around a 3D curve that must be closed and not crossing in order to assure a continuous winding. The first rule plans the winding trajectory by approximating the part 3D shape with straight lines; it is called the discretized rule. The second rule defines the winding trajectory simply by offsetting a 3D curve that reproduces the part 3D shape, of a defined distance; it is called the offset rule. The two rules have been compared in terms of roving tension and winding time. The present work shows how the offset rule enables achievement of both the required aims: to manufacture parts of high structural performances by keeping the tension on the roving near to the nominal value and to markedly decrease the winding time. This is the first step towards the optimization of the robotized filament winding technology.
机译:自动化的长丝缠绕技术涉及一种机器人,该机器人沿着应用程序中工件所承受的应力方向,将浸渍了树脂的粗纱绕在模具上。机械手沿着卷绕轨迹移动沉积头,以沉积粗纱。轨迹规划是自动长丝缠绕技术的一个非常关键的方面,因为它负责张力的恒定性和缠绕时间。当前工作显示了两个原始规则来规划结构零件的缠绕轨迹,其形状是通过围绕必须闭合且不交叉以确保连续缠绕的3D曲线扫掠整个截面而获得的。第一条规则通过用直线近似零件3D形状来规划绕组轨迹。这称为离散规则。第二条规则是通过简单地偏移3D曲线来定义绕组轨迹的,该3D曲线复制了定义距离的零件3D形状;这称为偏移规则。比较了这两个规则的粗纱张力和卷绕时间。本工作说明了偏移规则如何实现两个所需的目标:通过将粗纱上的张力保持在标称值附近来制造具有高结构性能的零件,并显着减少卷绕时间。这是朝着自动化长丝缠绕技术优化的第一步。

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