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智能可穿戴监测服装性能评价模型的研究进展

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为促进可穿戴智能服装评价标准形成进而促进可穿戴智能服装产业化发展,系统介绍人体-织物数理模型及人体与织物间动态压力数值模拟的评价模型.基于弹性力学理论,探究静止状态下拉普拉斯数理模型的研究进展;介绍织物结构对接触压力的影响及织物结构的数值模拟,并进一步探究着装过程、运动状态下人体-织物间连续动态压力的数值模拟情况,以及数值模拟法与计算机技术结合的现状.最后讨论现阶段可穿戴智能服装评价模型的应用,并提出使用数值模拟法进行多物理场耦合、模拟加速度运动用于提高可穿戴智能服装可靠性评价标准的发展展望.
Research Progress of Smart Wearable Monitoring Clothing Performance Evaluation Model
In order to promote the development of wearable smart clothing evaluation standards and its industria-lization,the human body-fabric mathematical model and the evaluation model of the dynamic pressure between the human body and the fabric are systematically introduced.Based on the theory of elasticity,it explores the progress of the Laplace mathematical model in the static state,introduces the influence of the fabric structure on the contact pressure and the numerical simulation of the fabric structure,and further discusses the numerical simulation of dynamic pressure under dressing process and the movement state between the human body and the fabric,and the current situation of combining numerical simulation method with computer technology as well.Finally,this study discusses the application of the current wearable smart clothing evaluation model,and proposes the prospect of using numerical simulation method for multi-physics coupling and simulating acceleration motion to improve the reliability evaluation standard of wearable smart clothing.

Smart WearableSmart ClothingEvaluation ModelNumerical SimulationHuman Body-fabric ModelDynamic PressureReliability

赖燕珠、谢红

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上海工程技术大学纺织服装学院,上海 201620

智能可穿戴 智能服装 评价模型 数值模拟 人体-织物模型 动态压力 可靠性

国家重点研发计划主动健康和老龄化科技应对重点专项

2018YFC2000900

2024

针织工业
天津市针织技术研究所 中国纺织信息中心

针织工业

北大核心
影响因子:0.262
ISSN:1000-4033
年,卷(期):2024.(1)
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