Kerf-Canceling Mechanisms: Making Laser-Cut Mechanisms Operate across Different Laser Cutters
Thijs Roumen, Ingo Apel, Jotaro Shigeyama, Muhammad Abdullah, Patrick Baudisch
Abstract
Getting laser-cut mechanisms, such as those in micro-scopes, robots, vehicles, etc., to work, requires all their components to be dimensioned precisely. This precision, however, tends to be lost when fabricating on a differ-ent laser cutter, as it is likely to remove more or less mate-rial (aka 'kerf'). We address this with what we call kerf-canceling mechanisms. Kerf-canceling mechanisms replace laser-cut bearings, sliders, gear pairs, etc. Unlike their tradi-tional counterparts, however, they keep working when manufactured on a different laser cutter and/or with different kerf. Kerf-canceling mechanisms achieve this by adding an additional wedge element per mechanism. We have created a software tool KerfCanceler that locates traditional mecha-nisms in cutting plans and replaces them with their kerf-canceling counterparts. We evaluated our tool by converting 17 models found online to kerf-invariant models; we evaluated kerf-canceling bearings by testing with kerf values ranging from 0mm and 0.5mm and find that they perform reliably independent of this kerf.
Ask about this paper
Ask your agent about it.
Lune has read the top-tier papers around this one, so every answer names the papers it rests on.
Your agent calls
Lunesearch_papers
Free to start. No credit card required.
Terminal
Install the CLIlune papers get 6157ce15-5a48-4633-97ec-cfa49810f0e4Cited by top-tier papers11
- SensiCut: Material-Aware Laser Cutting Using Speckle Sensing and Deep LearningMustafa Doga Dogan, Steven Vidal Acevedo Colon, Varnika Sinha, Kaan Aksit et al.UIST 2021 · 40 citations
- FoolProofJoint: Reducing Assembly Errors of Laser Cut 3D Models by Means of Custom Joint PatternsKeunwoo Park, Conrad Lempert, Muhammad Abdullah, Shohei Katakura et al.CHI 2022 · 25 citations
- Assembler3: 3D Reconstruction of Laser-Cut ModelsThijs Roumen, Yannis Kommana, Ingo Apel, Conrad Lempert et al.CHI 2021 · 22 citations
- HingeCore: Laser-Cut Foamcore for Fast AssemblyMuhammad Abdullah, Romeo Sommerfeld, Bjarne Sievers, Leonard Geier et al.UIST 2022 · 21 citations
- Skinergy: Machine-Embroidered Silicone-Textile Composites as On-Skin Self-Powered Input SensorsTianhong Catherine Yu, Nancy Wang, Sarah Ellenbogen, Hsin-Liu Cindy KaoUIST 2023 · 20 citations
Related papers
- Kerfmeter: Automatic Kerf Calibration for Laser CuttingShohei Katakura, Martin Taraz, Muhammad Abdullah, Paul Methfessel et al.CHI 2023 · 5 citations
- LamiFold: Fabricating Objects with Integrated Mechanisms Using a Laser cutter Lamination WorkflowDanny Leen, Nadya Peek, Raf RamakersUIST 2020 · 25 citations
- Roadkill: Nesting Laser-Cut Objects for Fast AssemblyMuhammad Abdullah, Romeo Sommerfeld, Laurenz Seidel, Jonas Noack et al.UIST 2021 · 31 citations
- Flaticulation: Laser Cutting Joints with Articulated AnglesChiao Fang, Vivian Hsinyueh Chan, Lung-Pan ChengUIST 2022 · 10 citations
- FastForce: Real-Time Reinforcement of Laser-Cut StructuresMuhammad Abdullah, Martin Taraz, Yannis Kommana, Shohei Katakura et al.CHI 2021 · 19 citations
