ISSUE 02FRIDAY, JUNE 5, 2026PRINT 06.2026

GEOMDIGEST

THE INSIDER PUBLICATION FOR COMPUTATIONAL GEOMETRY & DESIGN

Knowledge Graph

Paper Index

Search computational fabrication papers, source venues, authors, implementations, and code availability from the GEOMDIGEST knowledge graph.

1,417Papers
102,687Citations
1Artifacts
Corpus Strata
Venue / year coverage instrument
Lime height = indexed papersOrange mark = citation concentrationClick any cell to filter
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234 indexed papers
Data-Driven and Knowledge-Guided Approach for NC Machining Process Planning
2023 / Computer-Aided Design / 13 citations
No code
ZeFan Han, Rui Huang, Bo Huang, Junfeng Jiang, Xiuling Li
XVoxel-Based Parametric Design Optimization of Feature Models
2023 / Computer-Aided Design / 13 citations
No code
Ming Li, Chengfeng Lin, Wei Chen, Yusheng Liu, Shuming Gao, and 1 more
Implicit Functionally Graded Conforming Microstructures
2023 / Computer-Aided Design / 13 citations
No code
Qingqi Hong, Gershon Elber, Myung-Soo Kim
Semantic-driven Graph Transformations in Floor Plan Design
2023 / Computer-Aided Design / 13 citations
No code
Grażyna Ślusarczyk, Barbara Strug, Anna Paszyńska, Ewa Grabska, Wojciech Palacz
Automatic Cable Harness Layout Routing in a Customizable 3D Environment
2023 / Computer-Aided Design / 13 citations
No code
Thomas Karlsson, Edvin Åblad, Tomas Hermansson, Johan S. Carlson, G. Tenfält

Designing cable harnesses can be time-consuming and complex due to many design and manufacturing aspects and rules. Automating the design process can help to fulfil these rules, speed up the process, and optimize the design. To accommodate this, we formulate a...

Collision-Conscious Multi-Pass Flank Milling of Complicated Parts Based on Stripification
2023 / Computer-Aided Design / 11 citations
No code
Dong He, Zhaoyu Li, Xiangyu Li, Yamin Li, Kai Tang
Simplification of 3D CAD Model in Voxel Form for Mechanical Parts Using Generative Adversarial Networks
2023 / Computer-Aided Design / 11 citations
No code
Hyunoh Lee, Jinwon Lee, Soonjo Kwon, Karthik Ramani, Hyung‐gun Chi, and 1 more
High-Order Mesh Morphing for Boundary and Interface Fitting to Implicit Geometries
2023 / Computer-Aided Design / 10 citations
No code
Jorge Barrera, Tzanio Kolev, Ketan Mittal, Vladimir Tomov
IF-TONIR: Iteration-free Topology Optimization based on Implicit Neural Representations
2023 / Computer-Aided Design / 10 citations
No code
Jiangbei Hu, Ying He, Baixin Xu, Shengfa Wang, Na Lei, and 1 more
Computing smooth preferred feed direction fields with high material removal rates for efficient CNC tool paths
2023 / Computer-Aided Design / 10 citations
No code
Zi-Rui Wang, Shibo Liu, Ligang Liu, Qiang Zou, Xiao‐Ming Fu
Towards <mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" display="inline" id="d1e1719" altimg="si25.svg"><mml:msup><mml:mrow><mml:mi>G</mml:mi></mml:mrow><mml:mrow><mml:mn>1</mml:mn></mml:mrow></mml:msup></mml:math>-Continuous Multi-Strip Path-Planning for 5-Axis Flank CNC Machining of Free-Form Surfaces Using Conical Cutting Tools
2023 / Computer-Aided Design / 9 citations
No code
Kanika Rajain, Michal Bizzarri, Miroslav Lávička, Jiří Kosinka, Michael Bartoň

Existing flank milling path-planning methods typically lead to tiny gaps or overlaps between neighboring paths, which causes artifacts and imperfections in the workpiece. We propose a new multi-strip path-planning method for 5-axis flank milling of free-form s...

The deep neural network solver for B-spline approximation
2023 / Computer-Aided Design / 9 citations
No code
Zepeng Wen, Jiaqi Luo, Hongmei Kang
A Simple Point-based Iso-Scallop Tool Path Planning Method for Noisy Point Clouds with High Robustness and Controlled Errors
2023 / Computer-Aided Design / 8 citations
No code
Guoyue Luo, Qiang Zou
An Improved Explicit Reference Modeling Methodology for Parametric Design
2023 / Computer-Aided Design / 8 citations
No code
Aritz Aranburu, Jorge D. Camba, Daniel Justel, Manuel Contero
Fast High-Order Mesh Correction for Metric-Based Cavity Remeshing and a Posteriori Curving of <mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" display="inline" id="d1e841" altimg="si179.svg"><mml:msup><mml:mrow><mml:mi>P</mml:mi></mml:mrow><mml:mrow><mml:mn>2</mml:mn></mml:mrow></mml:msup></mml:math> Tetrahedral Meshes
2023 / Computer-Aided Design / 8 citations
No code
Lucien Rochery, Adrien Loseille
Global Continuous Toolpath Planning with Controllable Local Directions
2023 / Computer-Aided Design / 8 citations
No code
Yingxin Ma, Yuan Yao, Jinxiu Yang, Hang Zhang, Beishui Liao
Fast Reconstruction of Microstructures with Ellipsoidal Inclusions Using Analytical Descriptors
2023 / Computer-Aided Design / 8 citations
No code
Paul Seibert, Markus Husert, Maximilian P. Wollner, Karl A. Kalina, Markus Kästner
Fabrication-aware strip-decomposable quadrilateral meshes
2023 / Computer-Aided Design / 8 citations
No code
Ioanna Mitropoulou, Amir Vaxman, Olga Diamanti, Benjamin Dillenburger

Strip-decomposable quadrilateral (SDQ) meshes, i.e., quad meshes that can be decomposed into two transversal strip networks, are vital in numerous fabrication processes; examples include woven structures, surfaces from sheets, custom rebar, or cable-net struct...

A compact yet flexible design space for large-scale nonperiodic 3D woven composites based on a weighted game for generating candidate tow architectures
2023 / Computer-Aided Design / 8 citations
No code
Zhen-Pei Wang, Brian N. Cox, Shemuel Joash Kuehsamy, Mark Hyunpong Jhon, Olivier Sudre, and 2 more
Multicomponent Topology Optimization Method Considering Stepwise Linear Assemblability with a Fictitious Physical Model
2023 / Computer-Aided Design / 7 citations
No code
R. Hirosawa, Masaki Noda, Kei Matsushima, Yuki Noguchi, Takayuki Yamada

This paper proposes a multicomponent topology optimization method that considers assemblability. Generally, it is difficult to consider assemblability in topology optimization; however, in this study, we achieve it by introducing a fictitious physical model. T...

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