Application of Digital Pattern Techniques in Ready to Wear Fashion Based on CLO3D Software
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Yaumatul Mustaghfiroh, Noor Laila Ramadhani

Application of Digital Pattern Techniques in Ready to Wear Fashion Based on CLO3D Software

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Introduction

Application of digital pattern techniques in ready to wear fashion based on clo3d software. Learn digital pattern techniques for ready-to-wear fashion using CLO3D software. Improve design efficiency, reduce waste, and enhance fashion education with this validated guide.

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Abstract

Abstract. Fashion patterns serve as the basic templates for garment creation, playing a crucial role in ensuring the fit and comfort of the resulting clothing. Advances in digital technology, particularly in fashion, have significantly transformed the design and production processes. CLO3D software allows designers to create fashion patterns in a digital 3D format, which accelerates design, reduces costs, and supports sustainability by minimizing waste. This research employs the Research and Development (R&D) method to develop a user guide for using CLO3D. The research findings indicate that digital pattern techniques enhance efficiency, accuracy, and creativity in design. Validation of the user guide by experts shows a high level of validity with a consensus index of 1.0, indicating its relevance and effectiveness in learning. This study concludes that CLO3D not only improves the quality of designs but also contributes significantly to education and skill development in the fashion field.


Review

This paper addresses a highly relevant and timely topic in the fashion industry: the application of digital pattern techniques using CLO3D software for ready-to-wear fashion. The abstract effectively highlights the significant benefits of this technology, including accelerated design, cost reduction, and improved sustainability through waste minimization. The research's focus on developing a user guide through a Research and Development (R&D) method suggests a practical and educational contribution, aiming to facilitate the adoption of these advanced digital tools within the industry and academic settings. A primary strength of this study lies in its methodological approach to developing a concrete educational resource. The successful validation of the CLO3D user guide by experts, indicated by an impressive consensus index of 1.0, strongly underscores its perceived relevance and effectiveness as a learning tool. The stated findings regarding enhanced efficiency, accuracy, and creativity in design are compelling and align with the promise of digital transformation in fashion. These outcomes position CLO3D as a valuable asset for improving design quality and significantly contributing to education and skill development within the evolving fashion landscape. While the development and expert validation of the user guide are commendable, the abstract could be strengthened by providing more explicit detail on *how* the research findings regarding "efficiency, accuracy, and creativity in design" were derived. Beyond the validation of the guide itself, a clearer articulation of the methodology used to assess these specific design enhancements would enhance the paper's robustness. Future research could further elaborate on the empirical impact of CLO3D by including case studies, comparative analyses with traditional pattern-making methods, or quantitative data demonstrating actual cost savings and waste reduction in real-world ready-to-wear production. Detailing the structure and key features of the user guide would also provide readers with a better understanding of its practical application.


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