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Mechanical Measurement System and Precision Analysis for Tactile Property Evaluation of Porous Polymeric Materials

Tactile properties are one of the most important attributes of porous polymeric materials such as textiles, comprising a subjective evaluation index for textile materials and functional clothing, primarily affecting the sensation of comfort during the wearing of a garment. A new test method was prop...

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Autores principales: Yao, Bao-Guo, Peng, Yun-Liang, Yang, Yun-Juan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6415084/
https://www.ncbi.nlm.nih.gov/pubmed/30966408
http://dx.doi.org/10.3390/polym10040373
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author Yao, Bao-Guo
Peng, Yun-Liang
Yang, Yun-Juan
author_facet Yao, Bao-Guo
Peng, Yun-Liang
Yang, Yun-Juan
author_sort Yao, Bao-Guo
collection PubMed
description Tactile properties are one of the most important attributes of porous polymeric materials such as textiles, comprising a subjective evaluation index for textile materials and functional clothing, primarily affecting the sensation of comfort during the wearing of a garment. A new test method was proposed, and a mechanical measurement system was developed to objectively characterize the tactile properties of porous polymeric materials by simulating the dynamic contact processes during human skin contact with the materials and in consideration of different aspects of tactile sensations. The measurement system can measure the bending, compression, friction, and thermal transfer properties in one apparatus, and is capable of associating the objective measurements with the subjective tactile sensations. The test and evaluation method, the components of the mechanical measurement system, the definition and grading method of the evaluation indices, and the neural network prediction model from objective test results to subjective sensations of tactile properties were presented. The experiments were conducted for the objective tests and correlation tests. Seven types of porous polymeric sheet materials from seven categories for the tactile properties were cut to a size of 200 mm × 200 mm and tested. Each index of tactile properties was significantly different (P < 0.05) between different sheet materials. The correlations of bending, compression, friction, and thermal transfer properties with Kawabata KES test methods were analyzed. An intra-laboratory test was conducted and an analysis of the variance was performed to determine the critical differences of within laboratory precisions of the measurement system. This mechanical measurement system provides a method and system for objective measurement and evaluation of tactile properties of porous polymeric sheet materials in industrial application.
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spelling pubmed-64150842019-04-02 Mechanical Measurement System and Precision Analysis for Tactile Property Evaluation of Porous Polymeric Materials Yao, Bao-Guo Peng, Yun-Liang Yang, Yun-Juan Polymers (Basel) Article Tactile properties are one of the most important attributes of porous polymeric materials such as textiles, comprising a subjective evaluation index for textile materials and functional clothing, primarily affecting the sensation of comfort during the wearing of a garment. A new test method was proposed, and a mechanical measurement system was developed to objectively characterize the tactile properties of porous polymeric materials by simulating the dynamic contact processes during human skin contact with the materials and in consideration of different aspects of tactile sensations. The measurement system can measure the bending, compression, friction, and thermal transfer properties in one apparatus, and is capable of associating the objective measurements with the subjective tactile sensations. The test and evaluation method, the components of the mechanical measurement system, the definition and grading method of the evaluation indices, and the neural network prediction model from objective test results to subjective sensations of tactile properties were presented. The experiments were conducted for the objective tests and correlation tests. Seven types of porous polymeric sheet materials from seven categories for the tactile properties were cut to a size of 200 mm × 200 mm and tested. Each index of tactile properties was significantly different (P < 0.05) between different sheet materials. The correlations of bending, compression, friction, and thermal transfer properties with Kawabata KES test methods were analyzed. An intra-laboratory test was conducted and an analysis of the variance was performed to determine the critical differences of within laboratory precisions of the measurement system. This mechanical measurement system provides a method and system for objective measurement and evaluation of tactile properties of porous polymeric sheet materials in industrial application. MDPI 2018-03-27 /pmc/articles/PMC6415084/ /pubmed/30966408 http://dx.doi.org/10.3390/polym10040373 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Yao, Bao-Guo
Peng, Yun-Liang
Yang, Yun-Juan
Mechanical Measurement System and Precision Analysis for Tactile Property Evaluation of Porous Polymeric Materials
title Mechanical Measurement System and Precision Analysis for Tactile Property Evaluation of Porous Polymeric Materials
title_full Mechanical Measurement System and Precision Analysis for Tactile Property Evaluation of Porous Polymeric Materials
title_fullStr Mechanical Measurement System and Precision Analysis for Tactile Property Evaluation of Porous Polymeric Materials
title_full_unstemmed Mechanical Measurement System and Precision Analysis for Tactile Property Evaluation of Porous Polymeric Materials
title_short Mechanical Measurement System and Precision Analysis for Tactile Property Evaluation of Porous Polymeric Materials
title_sort mechanical measurement system and precision analysis for tactile property evaluation of porous polymeric materials
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6415084/
https://www.ncbi.nlm.nih.gov/pubmed/30966408
http://dx.doi.org/10.3390/polym10040373
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