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Application of the Real Fabric Frictional Speeds to the Fabric Sound Analysis using Water Repellent Fabrics SCIE SCOPUS KCI

Title
Application of the Real Fabric Frictional Speeds to the Fabric Sound Analysis using Water Repellent Fabrics
Authors
Yang, YKim, CPark, JYou, HCho, G
Date Issued
2009-08
Publisher
KOREAN FIBER SOC
Abstract
This study aims to determine fabric frictional speeds between the arm and the trunk when people walk (1.3 m/s), jog (2.5 m/s) and run (4.5 m/s), and to apply the measured speeds to setting a Sound generator for each motion to obtain fabric rustling sounds. By analyzing body motions captured by the Falcon motion analysis system and a camcorder, it was identified that the friction between the arm and trunk Occurred within 10 degrees Of Shoulder angle along the center line of the trunk in the sagittal plane and the maximum frictional speed occurred at the elbow within the shoulder friction range. The averages (SDs) of maximum frictional speed at the elbow were found 0.63 m/s (0.17) at walking, 1.1 m/s (0.25) at jogging, and 1.98 m/s (0.35) at running. The frictional Sounds of three coated nylon fabrics were obtained using these predetermined speeds. We calculated sound characteristics Such as the sound pressure levels (SPL) and Zwicker's psychoacoustic parameter using 1/3 octave band analysis. The SPL values ranged from 74.2 dB at running to 79.0 dB at jogging, which was about the same noise level as in the busy street. The values of loudness (Z) at walking and jogging were higher than that at running, but the fluctuation strength (Z) increased in the order of walking, jogging, and running
Keywords
Fabric frictional speed; Motion analysis; Octave band analysis; Sound pressure level; Zwicker' s psychoacoustic parameter; WARP KNITTED FABRICS; RUSTLING SOUNDS; PARAMETERS; WALKING
URI
https://oasis.postech.ac.kr/handle/2014.oak/27539
DOI
10.1007/S12221-009-0557-Z
ISSN
1229-9197
Article Type
Article
Citation
FIBERS AND POLYMERS, vol. 10, no. 4, page. 557 - 561, 2009-08
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유희천YOU, HEECHEON
Dept. of Industrial & Management Eng.
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