Modeling of non-planar slicer for improved surface quality in material extrusion 3D printing
Shadman Tajwar Shahid

TL;DR
This paper presents a universal algorithm for generating non-planar extruder paths in material extrusion 3D printing, significantly improving surface quality on complex shapes by combining planar and non-planar layers.
Contribution
It introduces a novel, adaptable algorithm for non-planar slicing that enhances surface accuracy and handles complex geometries better than existing methods.
Findings
Improved surface quality measured by reduced Chamfer Distance.
Algorithm successfully processes complex shapes with enhanced surface accuracy.
Generated non-planar paths conform to object surfaces, reducing the staircase effect.
Abstract
This paper introduces an algorithm to generate a 3D extruder path, combining classic planar and non-planar layers to enhance the surface quality and accuracy of complex 3D printed parts. Material extrusion 3D printing, due to its layer-by-layer construction method, produces parts with a discretization effect commonly referred to as the "staircase" effect, particularly on near-flat surfaces. The algorithm addresses this issue using a mixed-layer approach that uses 3D non-planar layers for the surfaces that would benefit from non-planar printing, and planar layers for the remaining regions. Existing studies have demonstrated similar combined layer methods but are often limited in the variety and complexity of shapes they can process due to their inherent slicing techniques. This algorithm presents a universal approach to non-planar extruder path generation by identifying the non-planar…
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Taxonomy
TopicsAdditive Manufacturing and 3D Printing Technologies · Injection Molding Process and Properties · Manufacturing Process and Optimization
