Modern Ceramic Vase Design Based on Parametric Methods

ZHANG Ting, ZHANG Yawen, FAN Yaqi

Packaging Engineering ›› 2025, Vol. 46 ›› Issue (24) : 446-462.

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Packaging Engineering ›› 2025, Vol. 46 ›› Issue (24) : 446-462. DOI: 10.19554/j.cnki.1001-3563.2025.24.038
Design Discussion

Modern Ceramic Vase Design Based on Parametric Methods

  • ZHANG Ting1,2,*, ZHANG Yawen1, FAN Yaqi1
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Abstract

The work aims to explore new ways to enhance the diversity and innovation speed of ceramic vases through parametric design methods to deal with the problems of monotonous shapes and slow innovation speed in the design and production of traditional ceramic vases. Guided by style features, the key parameters that affected the shape and decoration of ceramic vases were extracted, and a parametric design framework for ceramic vases was constructed in combination with the morphological gene network model. In terms of form, Bezier curves were employed to segment the ceramic vases, with adjustments to curve parameters to generate diverse shapes. For decorative design, a parameter-to-mapping relationship model of decorative techniques was developed, utilizing generative algorithms combined with perturbation algorithms to achieve the parametric generation of water ripple textures. Experiments showed that by adjusting the parameters of Bezier curves, various shapes of ceramic vases could be effectively generated. In decorative design, by controlling the coordinates of interference points and the parameters of concavity and convexity, the decorative effect could be flexibly adjusted, achieving complex and fine structural design. This integration of traditional ceramic culture with digital technology not only enhances production efficiency and reduces costs but also opens up new avenues for innovation in vase design, supporting more diverse and refined product development.

Key words

modern ceramic vase / parametric design / style features / form / decoration

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ZHANG Ting, ZHANG Yawen, FAN Yaqi. Modern Ceramic Vase Design Based on Parametric Methods[J]. Packaging Engineering. 2025, 46(24): 446-462 https://doi.org/10.19554/j.cnki.1001-3563.2025.24.038

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