优化超声波焊接参数,提高焊缝性能

IF 1 4区 工程技术 Q3 MATERIALS SCIENCE, TEXTILES International Journal of Clothing Science and Technology Pub Date : 2023-11-14 DOI:10.1108/ijcst-06-2023-0079
S. Raja Balasaraswathi, Jonalee D. Bajpai
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引用次数: 0

摘要

目的超声波焊接是一种新兴的服装制造技术。但目前在产业用纺织品领域的应用探索较多,在服装领域的探索较少。本研究的目的是通过分析不同参数对超声波焊接在服装上的影响,探讨超声波焊接在服装上的应用。本研究分析了超声焊接参数(压力、焊接速度、超声功率)对焊缝性能(焊缝强度、焊缝破裂强度、焊缝厚度、焊缝刚度)的影响。采用Box-Behnken试验设计对参数进行优化,以获得更好的焊缝性能。发现超声波接缝的性能受焊接和织物性能的影响。超声焊接的接缝在舒适性能方面表现出更好的性能,而功能性能则低于常规接缝。研究结果清晰地勾勒出不同参数对针织物超声焊缝性能的影响程度,对超声焊接制造方法在服装制造中的应用有很大的帮助。
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Optimization of ultrasonic welding parameters for better seam performance
Purpose Ultrasonic welding is an emerging apparel manufacturing technique. However, the applications are widely explored in the field of technical textiles, with less exploration in the apparel endues. The purpose of this study is to explore the application of ultrasonic welding in apparel by analyzing the impacts of different parameters. Design/methodology/approach This study analyzed the influence of ultrasonic welding parameters, including pressure, welding speed and ultrasonic power on the seam performances (seam strength, seam bursting strength, seam thickness and seam stiffness). The parameters are optimized using Box–Behnken experimental design to achieve better seam performances. Findings The properties of ultrasonic seams are influenced by welding and fabric properties. Ultrasonically welded seams showed better performances in the case of comfort properties of seams, whereas the functional properties are lesser compared to conventional seams. Originality/value The findings of the research clearly outline the level of influence of different parameters on the performance of the ultrasonically welded seams in knitted fabrics, which can greatly help in applying ultrasonic welding manufacturing methods in apparel manufacturing.
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来源期刊
CiteScore
2.40
自引率
8.30%
发文量
51
审稿时长
10 months
期刊介绍: Addresses all aspects of the science and technology of clothing-objective measurement techniques, control of fibre and fabric, CAD systems, product testing, sewing, weaving and knitting, inspection systems, drape and finishing, etc. Academic and industrial research findings are published after a stringent review has taken place.
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