4.2 Article

Clothing Pressure Modeling Using the Modified Laplace's Law

Journal

CLOTHING AND TEXTILES RESEARCH JOURNAL
Volume 38, Issue 2, Pages 134-147

Publisher

SAGE PUBLICATIONS INC
DOI: 10.1177/0887302X19880270

Keywords

clothing pressure; young modulus; flexiforce sensor; knitted garment; strain

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Today, various kinds of pressure garments are designed for specific applications in medical and sports fields. Knitted garments are the most used in these applications due to their high extensibility. The objective of the investigation reported in this article was to develop a theoretical relationship based on Laplace's law, which describes the compression behavior of knitted compression samples in quasi-static deformation from an initially relaxed state to an extended state. Even though several researchers have used Laplace's law, there is some discord between theoretical and experimental results. So, it is essential to pinpoint the most important parameters that influence the mechanical properties of the compression knitted garment in order to better describe the interface pressure it applies to the human body. Fabric parameters that influenced the interface pressure, such as elasticity modulus, strain, and thickness, were determined and integrated into Laplace's law.

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