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A practical path planning methodology for wire and arc additive manufacturing of thin-walled structures

机译:薄壁结构的线和弧增材制造的实用路径规划方法

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摘要

This paper presents a novel methodology to generate deposition paths for wire and arc additive manufacturing (WAAM). The medial axis transformation (MAT), which represents the skeleton of a given geometry, is firstly extracted to understand the geometry. Then a deposition path that is based on the MAT is efficiently generated. The resulting MAT-based path is able to entirely fill any given cross-sectional geometry without gaps. With the variation of step-over distance, material efficiency alters accordingly for both solid and thin-walled structures. It is found that thin-walled structures are more sensitive to step-over distance in terms of material efficiency. The optimal step-over distance corresponding to the maximum material efficiency can be achieved for various geometries, allowing the optimization of the deposition parameters. Five case studies of complex models including solid and thin-walled structures are used to test the developed methodology. Experimental comparison between the proposed MAT-based path patterns and the traditional contour path patterns demonstrate significant improved performance in terms of gap-free cross-sections. The proposed path planning strategy is shown to be particularly beneficial for WAAM of thin-walled structures.
机译:本文提出了一种新颖的方法来生成用于导线和电弧增材制造(WAAM)的沉积路径。首先提取代表给定几何形状的骨架的中间轴变换(MAT)以了解几何形状。然后,有效地生成基于MAT的沉积路径。生成的基于MAT的路径能够完全填充任何给定的横截面几何形状而没有任何间隙。随着跨步距离的变化,实心和薄壁结构的材料效率都会相应变化。发现薄壁结构在材料效率方面对跨步距离更敏感。可以针对各种几何形状实现与最大材料效率相对应的最佳过渡距离,从而可以优化沉积参数。对包括实心和薄壁结构的复杂模型进行了五个案例研究,以测试所开发的方法。提出的基于MAT的路径模式与传统轮廓路径模式之间的实验比较证明,在无间隙横截面方面,性能得到了显着改善。实践证明,所提出的路径规划策略对于薄壁结构的WAAM特别有利。

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