Multi-Axis Support-Free Printing of Freeform Parts with Lattice Infill Structures
Yamin Li, Kai Tang, Dong He, Xiangyu Wang

TL;DR
This paper introduces a novel multi-axis lattice infill generation method for freeform parts that ensures self-supporting and support-free boundaries, reducing overhang supports and improving surface quality in additive manufacturing.
Contribution
The paper presents a new lattice infill algorithm based on geodesic distance fields for multi-axis printing, enabling support-free boundary surfaces and continuous printing paths.
Findings
Supports self-supporting infill structures
Reduces support material and post-processing
Improves surface quality and printing efficiency
Abstract
In additive manufacturing, infill structures are commonly used to reduce the weight and cost of a solid part. Currently, most infill structure generation methods are based on the conventional 2.5-axis printing configuration, which, although able to satisfy the self-supporting condition on the infills, suffer from the well-known stair-case effect on the finished surface and the need of extensive support for overhang features. In this paper, based on the emerging continuous multi-axis printing configuration, we present a new lattice infill structure generation algorithm, which is able to achieve both the self-supporting condition for the infills and the support-free requirement at the boundary surface of the part. The algorithm critically relies on the use of three mutually orthogonal geodesic distance fields that are embedded in the tetrahedral mesh of the solid model. The intersection…
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Taxonomy
TopicsAdditive Manufacturing and 3D Printing Technologies · 3D Shape Modeling and Analysis · Manufacturing Process and Optimization
