Javascript must be enabled to continue!
Digital Three-dimensional Smocking Design
View through CrossRef
We develop an optimization-based method to model
smocking
, a surface embroidery technique that provides decorative geometric texturing while maintaining stretch properties of the fabric. During smocking, multiple pairs of points on the fabric are stitched together, creating non-manifold geometric features and visually pleasing textures. Designing smocking patterns is challenging, because the outcome of stitching is unpredictable: The final texture is often revealed only when the whole smocking process is completed, necessitating painstaking physical fabrication and time consuming trial-and-error experimentation. This motivates us to seek a digital smocking design method. Straightforward attempts to compute smocked fabric geometry using surface deformation or cloth simulation methods fail to produce realistic results, likely due to the intricate structure of the designs, the large number of contacts and high-curvature folds. We instead formulate smocking as a graph embedding and shape deformation problem. We extract a coarse graph representing the fabric and the stitching constraints and then derive the graph structure of the smocked result. We solve for the three-dimensional embedding of this graph, which in turn reliably guides the deformation of the high-resolution fabric mesh. Our optimization based method is simple, efficient, and flexible, which allows us to build an interactive system for smocking pattern exploration. To demonstrate the accuracy of our method, we compare our results to real fabrications on a large set of smocking patterns.
Association for Computing Machinery (ACM)
Title: Digital Three-dimensional Smocking Design
Description:
We develop an optimization-based method to model
smocking
, a surface embroidery technique that provides decorative geometric texturing while maintaining stretch properties of the fabric.
During smocking, multiple pairs of points on the fabric are stitched together, creating non-manifold geometric features and visually pleasing textures.
Designing smocking patterns is challenging, because the outcome of stitching is unpredictable: The final texture is often revealed only when the whole smocking process is completed, necessitating painstaking physical fabrication and time consuming trial-and-error experimentation.
This motivates us to seek a digital smocking design method.
Straightforward attempts to compute smocked fabric geometry using surface deformation or cloth simulation methods fail to produce realistic results, likely due to the intricate structure of the designs, the large number of contacts and high-curvature folds.
We instead formulate smocking as a graph embedding and shape deformation problem.
We extract a coarse graph representing the fabric and the stitching constraints and then derive the graph structure of the smocked result.
We solve for the three-dimensional embedding of this graph, which in turn reliably guides the deformation of the high-resolution fabric mesh.
Our optimization based method is simple, efficient, and flexible, which allows us to build an interactive system for smocking pattern exploration.
To demonstrate the accuracy of our method, we compare our results to real fabrications on a large set of smocking patterns.
Related Results
Dynamic modeling of deformation in traditional smocking in apparel
Dynamic modeling of deformation in traditional smocking in apparel
Traditional smocking, as a cultural heritage, has been widely employed in the design of modern apparel for its unique aesthetics. However, it often faces deformation when worn by a...
Computational Smocking through Fabric‐Thread Interaction
Computational Smocking through Fabric‐Thread Interaction
AbstractWe formalize Italian smocking, an intricate embroidery technique that gathers flat fabric into pleats along meandering lines of stitches, resulting in pleats that fold and ...
Access Denied
Access Denied
Introduction
As social-distancing mandates in response to COVID-19 restricted in-person data collection methods such as participant observation and interviews, researchers turned t...
Fabric Tessellation: Realizing Freeform Surfaces by Smocking
Fabric Tessellation: Realizing Freeform Surfaces by Smocking
We present a novel method for realizing freeform surfaces with pieces of flat fabric, where curvature is created by stitching together points on the fabric using a technique known ...
Innovative Application and Design of Smocking Technology in Local Chinese Clothing Brands
Innovative Application and Design of Smocking Technology in Local Chinese Clothing Brands
Abstract
This study explores the innovative application and design of smocking technology in local Chinese clothing brands, emphasizing the technique’s evolution ...
PENGAPLIKASIAN TEKNIK SMOCKING PADA BUSANA DEMI-COUTURE
PENGAPLIKASIAN TEKNIK SMOCKING PADA BUSANA DEMI-COUTURE
In the development of fabric manipulating techniques, there are several types of fabric processing techniques in the community that can be used as decorative elements in decorating...
The influence of micro influencers and digital marketing on product purchasing decisions at tiktok shop in bengkulu city
The influence of micro influencers and digital marketing on product purchasing decisions at tiktok shop in bengkulu city
THE INFLUENCE OF MICRO-INFLUENCERS AND DIGITAL MARKETING ON PURCHASE DECISIONS OF TIKTOK SHOP CUSTOMERS IN BENGKULU CITY
Andhes Tiani Putri, Meylaty F
12Faculty Of Economic
E...

