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System function module structure diagram.

System function module structure diagram.

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To improve the teaching practice effect of clothing major, this study applies the practical clothing design method to the teaching of clothing major to analyze the digital clothing design and establishes a convex quadratic conic programming model for a class of force optimization problems. Then, this study transforms the optimality condition of the...

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... The development was carried out by modifying the original shapes and sizes of parts of the basic construction foundations of the back, front and sleeves, built on the basis of a mesh according to the current methodology with the maximum possible preservation of the volume-silhouette and stylistic solution, by deepening the armhole of the sleeve and solving in the lower part of the collar of a one-piece gusset [2,[12][13][14][15]. ...
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This research focuses on the scientific exploration and development of ergonomic clothing tailored for specific military purposes, with a particular emphasis on addressing limitations imposed by the conventional "sleeve-armhole" design element in shoulder clothing products. The study involves a meticulous modification of the original shapes and sizes of foundational components, including the back, front, and sleeves, based on a mesh framework while striving to preserve the volumesilhouette and stylistic elements. The key enhancement involves a significant deepening of the armhole, a two-seam sleeve with an elbow seam, and the incorporation of a one-piece gusset in the optimized unit area, situated in the lower part of the collar. This innovative design solution not only allows for dynamic compliance with the functional conditions but also ensures optimal comfort and mobility for military personnel. The methodology employed in this development builds upon existing frameworks, emphasizing the seamless integration of modified components to enhance both functionality and aesthetic appeal. The proposed design presents a promising advancement in military clothing technology, addressing critical challenges associated with upper extremity movement limitations and providing a foundation for further advancements in the field.
... However, it is still a challenge to accurately evaluate and optimize the comfort and sports functionality of sportswear during the design and production of sportswear [7][8]. Traditional design methods mainly rely on the designer's experience and intuition, making it difficult to accurately predict sportswear performance [9]. Therefore, studying how to establish scientific performance optimization models for sportswear has become one of the current research hotspots in sportswear design and production. ...
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In this paper, a performance optimization model for sportswear based on the learning curve effect is proposed on the learning curve base model, which is a systematic method for improving and optimizing sportswear’s comfort performance and sports functionality compared with the traditional model. Laplace’s law measurement method is used to predict the garment comfort pressure in terms of comfort measurement. The finite element method was used to analyze the sports apparel’s functionality. The results show that the most obvious deformation under the pressure of sportswear occurs in the middle section of the inner thigh, with a maximum value of 1.786E-002mm and a mean square error of 3.0875×10 ⁻¹⁴ .The research findings of this paper can serve as a reference for sportswear designers and manufacturers and encourage the development and innovation of the sportswear industry.