KnitScape: Computational Design and Yarn-Level Simulation of Slip and Tuck Colorwork Knitting Patterns
Hannah Twigg-Smith, Emily Whiting, Nadya Peek
摘要
Slipped and tucked stitches introduce small areas of deformation that compound and result in emergent textures on knitted fabrics. When used together with color changes and ladders, these can also produce dramatic colorwork and openwork effects. However, designing slip and tuck colorwork patterns is challenging due to the complex interactions between operations, yarns, and deformations. We present KnitScape, a browser-based tool for design and simulation of stitch patterns for knitting. KnitScape provides a design interface to specify 1) operation repeats, 2) color changes, and 3) needle positions. These inputs are used to build a graph of yarn topology and run a yarn-level spring simulation. This enables visualization of the deformation that arises from slip and tuck operations. Through its design tool and simulation, KnitScape enables rapid exploration of a complex colorwork design space. We demonstrate KnitScape with a series of example swatches.
问问这篇 Paper
问问你的智能体。
Lune 读过与它相关的顶会 Paper,每个回答都会注明依据哪几篇。
相关 Paper
- Computational Illusion KnittingAmy Zhu, Yuxuan Mei, Benjamin T. Jones, Zachary Tatlock 等SIGGRAPH 2024 · 被引用 11 次
- What's in a cable? Abstracting Knitting Design Elements with Blended Raster/Vector PrimitivesHannah Twigg-Smith, Yuecheng Peng, Emily Whiting, Nadya PeekUIST 2024 · 被引用 11 次
- Mechanics-aware deformation of yarn pattern geometryGeorg Sperl, Rahul Narain, Chris WojtanSIGGRAPH 2021 · 被引用 18 次
- KnitKit: a flexible system for machine knitting of customizable textilesGeorges Nader, Yu Han Quek, Pei Zhi Chia, Oliver Weeger 等SIGGRAPH 2021 · 被引用 20 次
- Real-Time Knit Deformation and RenderingTao Huang, Haoyang Shi, Mengdi Wang, Yuxing Qiu 等SIGGRAPH 2025 · 被引用 3 次
