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A novel ballonet polishing tool and its robot control system for polishing the curved surface of mould

机译:一种新型的用于抛光模具曲面的圆头抛光工具及其机器人控制系统

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摘要

The curvature of polishing tool is not often accordant with the polished surface in polishing the curved surface of mould so that usually the smaller polishing tools are used for adapting the curvature change of the workpiece. A small polishing tool has often low polishing efficiency because of small contact area with the surface of workpiece. A larger rigid polishing tool often cannot have a good contact state with variable curved surface. In order to improve the efficiency and quality for the polishing curved surface of mould, a novel type of ballonet polishing tool is developed. The tool has a flexible ballonet covered polishing cloth in its head, which is of nicer flexibility so that it can accord with the variable curvature of curved surface of mould by controlling the air pressure of the ballonet. The advantage of the tool is that it has larger and submissive contact area with the polished surface in polishing so that it has higher polishing efficiency and also better polishing surface roughness and local curvature precision. In this paper, the principle of the tool and the robot system for controlling the pose of the tool are introduced. The simulation of the polishing track and the polishing experiment are achieved. In a polishing example, we obtain an R{sub}a of 0.042 urn surface roughness.
机译:在抛光模具的弯曲表面时,抛光工具的曲率通常不与抛光表面一致,因此通常使用较小的抛光工具来适应工件的曲率变化。小型抛光工具由于与工件表面的接触面积小而常常具有较低的抛光效率。较大的刚性抛光工具通常无法与可变曲面形成良好的接触状态。为了提高模具抛光曲面的效率和质量,开发了一种新型的圆头抛光工具。该工具的头部有一块柔软的用ballonet覆盖的抛光布,具有更好的柔韧性,因此可以通过控制ballonet的气压使其适应模具的可变曲面曲率。该工具的优点在于,它在抛光过程中与被抛光表面的接触面积更大且较小,因此它具有更高的抛光效率,并且抛光表面的粗糙度和局部曲率精度更高。本文介绍了工具的原理和控制工具姿态的机器人系统。进行了抛光轨迹的仿真和抛光实验。在抛光示例中,我们获得的R {sub} a为0.042微米表面粗糙度。

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