提出新方法生成更平滑均匀的螺旋加工路径,提升复杂曲面加工效率与质量。
Topology-Preserving Scalar Field Optimization for Boundary-Conforming Spiral Toolpaths on Multiply Connected Freeform Surfaces
- 通过保拓扑变形优化生成连续无交叉的边界对齐路径
- 加工效率提升14.24%,波纹高度均匀性提高5.70%
- 适合高精度复杂曲面零件的高效数控加工
多连通自由曲面广泛存在于工业构件中,传统刀具路径常出现断续、急转弯、波纹高度不均和边界覆盖不全等问题。本文提出一种标量场变分优化方法,生成连续、边界对齐且不自交的刀具路径,具有更平滑过渡、更均匀间距和更少冗余路径长度。首先通过共形切口映射构建无奇点的初始标量场,其等值线满足边界对齐。优化过程被重构为受边界同步更新控制的保拓扑网格变形,将路径连续性、边界对齐性和非自交性转化为迭代过程中持续保持的网格形状约束。结果实现全局最优路径间距与更好的波纹高度均匀性,同时保持轨迹平滑。铣削实验表明,相比现有基于共形切口映射的方法,本方法使加工效率提升14.24%,波纹高度均匀性改善5.70%,铣削振动减少超过10%。该策略为复杂多连通自由曲面高绩效加工提供了有效解决方案。
原文摘要 · Abstract (English)
Multiply connected freeform surface features are widely encountered in industrial components, where toolpath generation often suffers from discontinuities, sharp turns, non-uniform scallop heights, and incomplete boundary coverage. This paper proposes a scalar-field variational optimization method for milling that produces continuous, boundary-conforming, and non-self-intersecting toolpaths with smoother transitions, more uniform spacing, and reduced redundant path length. A feasible singularity-free initial scalar field with boundary-conforming iso-level sets is first constructed via conformal slit mapping. The optimization is then reformulated as a topology-preserving mesh deformation process governed by boundary-synchronous updates, whereby the continuity, boundary-conformity, and non-self-intersection requirements of the toolpath are converted into mesh-shape constraints maintained throughout the iterative optimization. As a result, the proposed method achieves globally optimized path spacing and improved scallop-height uniformity while preserving trajectory smoothness. Milling experiments show that, compared with a state-of-the-art conformal slit mapping-based method, the proposed approach improves machining efficiency by 14.24%, enhances scallop-height uniformity by 5.70%, and reduces milling impact-induced vibrations by over 10%. The proposed strategy provides an effective solution for high-performance machining of complex multiply connected freeform components.
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