Creativity of Nanofiber Materials and Application in the Expressive Power of Manual Tie-Dyeing Process

Traditional printing and tie-dyeing are an important part of Chinese handicrafts. It consists of three main techniques: batik, tie-dye, and multi-layer dyeing. Among the traditional printing and dyeing techniques, tie-dyeing creates an ever-changing visual artistic effect due to the diversity of its...

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Main Authors: Jing Wen, Xueqing Lu, Mai Jiang, Xiaohua Shao
Format: Article
Language:English
Published: Wiley 2022-01-01
Series:Advances in Materials Science and Engineering
Online Access:http://dx.doi.org/10.1155/2022/9339362
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author Jing Wen
Xueqing Lu
Mai Jiang
Xiaohua Shao
author_facet Jing Wen
Xueqing Lu
Mai Jiang
Xiaohua Shao
author_sort Jing Wen
collection DOAJ
description Traditional printing and tie-dyeing are an important part of Chinese handicrafts. It consists of three main techniques: batik, tie-dye, and multi-layer dyeing. Among the traditional printing and dyeing techniques, tie-dyeing creates an ever-changing visual artistic effect due to the diversity of its production methods. In modern society with the unprecedented development of technology and information, people’s life rhythm has accelerated, and the opposite “slow fashion” has become popular. More and more people are focusing more on the traditional craft of tie-dyeing. In contemporary fiber art, raw materials have become the soul and foundation of fiber art. This is also the difference between modern fiber art and traditional textile art. Entering the new era, the demand for textiles by people of all countries is also increasing, new functional requirements are put forward for textiles, and functional textiles emerge as the times require. The creative display of nanofibers is a comprehensive grasp of the properties of the fibrous material. It is the creativity and expression generated under the premise of understanding the type, shape, craft, and expression of fiber. It fully reflects the characteristics of the material itself, and it is also the designer’s ideological expression of the texture and shape of the material. It is then materialized into a certain connotation by appropriate technical means. In this paper, manual tie-dyeing is applied to nanofiber materials, making full use of the advantages of modern nanomaterials to promote the development of fabric tie-dyeing technology. In the performance test of the transmittance of nanomaterials to ultraviolet rays, it can be found that the transmittance of nanomaterials through the tie-dyeing process is lower for optical fibers with shorter wavelengths. When the wavelength of ultraviolet light is 313 nm, the transmittance of ZnO to ultraviolet light is 0. When the ultraviolet wavelength is 435 nm, the transmittance of ZnO to ultraviolet light is 45%.
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spelling doaj-art-a94efbfe3dea46eb871ac20a449250902025-08-20T03:39:36ZengWileyAdvances in Materials Science and Engineering1687-84422022-01-01202210.1155/2022/9339362Creativity of Nanofiber Materials and Application in the Expressive Power of Manual Tie-Dyeing ProcessJing Wen0Xueqing Lu1Mai Jiang2Xiaohua Shao3School of Fine ArtsSchool of Fine ArtsSchool of Computer Science and EngineeringSchool of Fine ArtsTraditional printing and tie-dyeing are an important part of Chinese handicrafts. It consists of three main techniques: batik, tie-dye, and multi-layer dyeing. Among the traditional printing and dyeing techniques, tie-dyeing creates an ever-changing visual artistic effect due to the diversity of its production methods. In modern society with the unprecedented development of technology and information, people’s life rhythm has accelerated, and the opposite “slow fashion” has become popular. More and more people are focusing more on the traditional craft of tie-dyeing. In contemporary fiber art, raw materials have become the soul and foundation of fiber art. This is also the difference between modern fiber art and traditional textile art. Entering the new era, the demand for textiles by people of all countries is also increasing, new functional requirements are put forward for textiles, and functional textiles emerge as the times require. The creative display of nanofibers is a comprehensive grasp of the properties of the fibrous material. It is the creativity and expression generated under the premise of understanding the type, shape, craft, and expression of fiber. It fully reflects the characteristics of the material itself, and it is also the designer’s ideological expression of the texture and shape of the material. It is then materialized into a certain connotation by appropriate technical means. In this paper, manual tie-dyeing is applied to nanofiber materials, making full use of the advantages of modern nanomaterials to promote the development of fabric tie-dyeing technology. In the performance test of the transmittance of nanomaterials to ultraviolet rays, it can be found that the transmittance of nanomaterials through the tie-dyeing process is lower for optical fibers with shorter wavelengths. When the wavelength of ultraviolet light is 313 nm, the transmittance of ZnO to ultraviolet light is 0. When the ultraviolet wavelength is 435 nm, the transmittance of ZnO to ultraviolet light is 45%.http://dx.doi.org/10.1155/2022/9339362
spellingShingle Jing Wen
Xueqing Lu
Mai Jiang
Xiaohua Shao
Creativity of Nanofiber Materials and Application in the Expressive Power of Manual Tie-Dyeing Process
Advances in Materials Science and Engineering
title Creativity of Nanofiber Materials and Application in the Expressive Power of Manual Tie-Dyeing Process
title_full Creativity of Nanofiber Materials and Application in the Expressive Power of Manual Tie-Dyeing Process
title_fullStr Creativity of Nanofiber Materials and Application in the Expressive Power of Manual Tie-Dyeing Process
title_full_unstemmed Creativity of Nanofiber Materials and Application in the Expressive Power of Manual Tie-Dyeing Process
title_short Creativity of Nanofiber Materials and Application in the Expressive Power of Manual Tie-Dyeing Process
title_sort creativity of nanofiber materials and application in the expressive power of manual tie dyeing process
url http://dx.doi.org/10.1155/2022/9339362
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AT xiaohuashao creativityofnanofibermaterialsandapplicationintheexpressivepowerofmanualtiedyeingprocess