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Paint deposition pattern modeling and estimation for robotic air spray painting on free-form surface using the curvature circle method

机译:曲率圆法在自由曲面上进行机器人空气喷涂的涂料沉积模式建模和估计

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摘要

Purpose - The purpose of this paper is to establish a paint deposition pattern model applied to robotic air spray painting in order to achieve the accuracy and uniformity of paint film thickness on free-form surface. Design/methodology/approach - The paper opts for an exploratory study using the curvature circle method for air spray painting on free-form surface to construct a spray gun model. First, a paint deposition pattern model of ellipse dual-b distribution is fitted on the basic of experimental data from robotic air spray painting. Second, a spray gun model is proposed using the curvature circle method for air spray painting on free-form surface. The theoretical result is coincident with the film thickness in verification experiment spraying a cylinder surface. The biggest error of the sample points between the theoretical and experimental results is less than 4μm, thereby the correctness and effectiveness of the proposed model is validated. Findings - The paper provides a specific theoretical and methodological support for the realization of process planning and simulation system in surface spray manufacturing. It will make the future developed system meet the actual processing requirement. At the same time, it is more representative. Originality/value - The paper finds an approach to solve paint deposition pattern model suitable to free-form surface. The present method can be applied to the complex reality of topological relation for actual workpiece surface to be painted.
机译:目的-本文的目的是建立适用于自动喷涂的涂料沉积模式模型,以实现自由曲面上漆膜厚度的准确性和均匀性。设计/方法/方法-本文选择使用曲率圆方法进行探索性研究,以在自由曲面上进行空气喷涂,以构建喷枪模型。首先,基于机器人空气喷涂的实验数据,建立了椭圆双b分布的涂料沉积模式模型。其次,提出了一种使用曲率圆法的喷枪模型,用于在自由曲面上进行空气喷涂。理论结果与喷涂气缸表面的验证实验中的膜厚一致。理论和实验结果之间的最大采样点误差小于4μm,从而验证了所提模型的正确性和有效性。研究结果-本文为表面喷涂制造过程计划和仿真系统的实现提供了特定的理论和方法学支持。它将使将来开发的系统满足实际的处理要求。同时,它更具代表性。独创性/价值-本文找到一种方法来解决适合自由曲面的油漆沉积图案模型。本方法可以应用于实际待喷涂工件表面的拓扑关系的复杂现实。

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