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用于压力衣设计的压力预测模型。

Pressure prediction model for compression garment design.

作者信息

Leung W Y, Yuen D W, Ng Sun Pui, Shi S Q

机构信息

Department of Mechanical Engineering and †Institute of Textiles and Clothing, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong.

出版信息

J Burn Care Res. 2010 Sep-Oct;31(5):716-27. doi: 10.1097/BCR.0b013e3181eebea0.

Abstract

Based on the application of Laplace's law to compression garments, an equation for predicting garment pressure, incorporating the body circumference, the cross-sectional area of fabric, applied strain (as a function of reduction factor), and its corresponding Young's modulus, is developed. Design procedures are presented to predict garment pressure using the aforementioned parameters for clinical applications. Compression garments have been widely used in treating burning scars. Fabricating a compression garment with a required pressure is important in the healing process. A systematic and scientific design method can enable the occupational therapist and compression garments' manufacturer to custom-make a compression garment with a specific pressure. The objectives of this study are 1) to develop a pressure prediction model incorporating different design factors to estimate the pressure exerted by the compression garments before fabrication; and 2) to propose more design procedures in clinical applications. Three kinds of fabrics cut at different bias angles were tested under uniaxial tension, as were samples made in a double-layered structure. Sets of nonlinear force-extension data were obtained for calculating the predicted pressure. Using the value at 0° bias angle as reference, the Young's modulus can vary by as much as 29% for fabric type P11117, 43% for fabric type PN2170, and even 360% for fabric type AP85120 at a reduction factor of 20%. When comparing the predicted pressure calculated from the single-layered and double-layered fabrics, the double-layered construction provides a larger range of target pressure at a particular strain. The anisotropic and nonlinear behaviors of the fabrics have thus been determined. Compression garments can be methodically designed by the proposed analytical pressure prediction model.

摘要

基于拉普拉斯定律在压力服装上的应用,开发了一个预测服装压力的方程,该方程纳入了身体周长、织物横截面积、施加应变(作为缩减系数的函数)及其相应的杨氏模量。给出了使用上述参数预测服装压力的设计程序,用于临床应用。压力服装已广泛用于治疗烧伤疤痕。制作具有所需压力的压力服装在愈合过程中很重要。一种系统且科学的设计方法可以使职业治疗师和压力服装制造商定制具有特定压力的压力服装。本研究的目的是:1)开发一个包含不同设计因素的压力预测模型,以在制作前估计压力服装施加的压力;2)在临床应用中提出更多设计程序。对三种以不同斜裁角度裁剪的织物进行了单轴拉伸测试,双层结构的样品也进行了测试。获得了多组非线性力-伸长数据用于计算预测压力。以0°斜裁角度的值作为参考,在缩减系数为20%时,P11117型织物的杨氏模量变化高达29%,PN2170型织物为43%,AP85120型织物甚至为360%。比较单层和双层织物计算出的预测压力时,双层结构在特定应变下提供了更大范围的目标压力。由此确定了织物的各向异性和非线性行为。可以通过所提出的分析压力预测模型有条不紊地设计压力服装。

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