The Experts below are selected from a list of 24 Experts worldwide ranked by ideXlab platform
Lichuan Wang - One of the best experts on this subject based on the ideXlab platform.
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Low-Stress Mechanical Property Study of Various Functional Fabrics for Tactile Property Evaluation
Materials (Basel Switzerland), 2018Co-Authors: Melkie Getnet Tadesse, Ladislav Nagy, Vincent Nierstrasz, Carmen Loghin, Yan Chen, Lichuan WangAbstract:Functional finishing brings an alteration on the Mechanical and surface properties of textilematerials and henceforth influences the tactile properties. In this work, Kawabata evaluation systems(KE ...
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Low-Stress Mechanical Property Study of Various Functional Fabrics for Tactile Property Evaluation
MDPI AG, 2018Co-Authors: Melkie Getnet Tadesse, Ladislav Nagy, Vincent Nierstrasz, Carmen Loghin, Yan Chen, Lichuan WangAbstract:Functional finishing brings an alteration on the Mechanical and surface properties of textile materials and henceforth influences the tactile properties. In this work, Kawabata evaluation systems (KES) for fabrics were utilized to notice the changes in the tactile properties of fabrics resulting from different finishing types such as inkjet printing, screen printing, and coating. The effects of functional finishing on the fabric’s tactile Property were inconsistent with reference to the course of decrease or increase being dependent on the types of finishes. The findings showed that KES can be employed as a promising tool to sort out the suitable functional finishing types in terms of tactile properties. Amongst the implemented finishing types, inkjet printing offered superior tactile properties with respect to tensile energy (softness), shear rigidity, compressional softness, bending stiffness (drapability), and surface properties. The KES results confirmed that low-Stress Mechanical properties are strongly associated with the tactile Property and might assist as a quality profile data source for guaranteeing the production and development of a virtuous quality product. The result encourages further utilization of the KES for functional fabric tactile Property evaluation
Melkie Getnet Tadesse - One of the best experts on this subject based on the ideXlab platform.
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Low-Stress Mechanical Property Study of Various Functional Fabrics for Tactile Property Evaluation
Materials (Basel Switzerland), 2018Co-Authors: Melkie Getnet Tadesse, Ladislav Nagy, Vincent Nierstrasz, Carmen Loghin, Yan Chen, Lichuan WangAbstract:Functional finishing brings an alteration on the Mechanical and surface properties of textilematerials and henceforth influences the tactile properties. In this work, Kawabata evaluation systems(KE ...
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Low-Stress Mechanical Property Study of Various Functional Fabrics for Tactile Property Evaluation
MDPI AG, 2018Co-Authors: Melkie Getnet Tadesse, Ladislav Nagy, Vincent Nierstrasz, Carmen Loghin, Yan Chen, Lichuan WangAbstract:Functional finishing brings an alteration on the Mechanical and surface properties of textile materials and henceforth influences the tactile properties. In this work, Kawabata evaluation systems (KES) for fabrics were utilized to notice the changes in the tactile properties of fabrics resulting from different finishing types such as inkjet printing, screen printing, and coating. The effects of functional finishing on the fabric’s tactile Property were inconsistent with reference to the course of decrease or increase being dependent on the types of finishes. The findings showed that KES can be employed as a promising tool to sort out the suitable functional finishing types in terms of tactile properties. Amongst the implemented finishing types, inkjet printing offered superior tactile properties with respect to tensile energy (softness), shear rigidity, compressional softness, bending stiffness (drapability), and surface properties. The KES results confirmed that low-Stress Mechanical properties are strongly associated with the tactile Property and might assist as a quality profile data source for guaranteeing the production and development of a virtuous quality product. The result encourages further utilization of the KES for functional fabric tactile Property evaluation
Chen Yan - One of the best experts on this subject based on the ideXlab platform.
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Low-Stress Mechanical Property Study of VariousFunctional Fabrics for Tactile Property Evaluation
'MDPI AG', 2018Co-Authors: Tadesse, Melkie Getnet, Nierstrasz Vincent, Loghin Carmen, Nagy Ladislav, Wang Lichuan, Chen YanAbstract:Functional finishing brings an alteration on the Mechanical and surface properties of textilematerials and henceforth influences the tactile properties. In this work, Kawabata evaluation systems(KES) for fabrics were utilized to notice the changes in the tactile properties of fabrics resultingfrom different finishing types such as inkjet printing, screen printing, and coating. The effects offunctional finishing on the fabric’s tactile Property were inconsistent with reference to the courseof decrease or increase being dependent on the types of finishes. The findings showed that KEScan be employed as a promising tool to sort out the suitable functional finishing types in termsof tactile properties. Amongst the implemented finishing types, inkjet printing offered superiortactile properties with respect to tensile energy (softness), shear rigidity, compressional softness,bending stiffness (drapability), and surface properties. The KES results confirmed that low-StressMechanical properties are strongly associated with the tactile Property and might assist as a qualityprofile data source for guaranteeing the production and development of a virtuous quality product.The result encourages further utilization of the KES for functional fabric tactile Property evaluation.Quality inspection and evaluation of functional or smart textile fabric surface by skin contact mechanic
Zhiqiang Kang - One of the best experts on this subject based on the ideXlab platform.
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Research on the bolting support by numerical simulation and the strata behavior law in 4303 upper gate road of coal
2012 International Symposium on Instrumentation & Measurement Sensor Network and Automation (IMSNA), 2012Co-Authors: Zhiqiang Kang, Wenjie Li, Xiaolong WangAbstract:Roadway bolt supporting, which relates the equations such as ground Stress, Mechanical Property of surrounding rock and bolt supporting structure, is an engineering problem of rock and structure coupling. Three-dimensional developing entry bolt supporting aided design system was developed by using ANSYS finite element software. Supporting function mechanics of coal roadway bolt supporting was analyzed and calculated. The effects of bolt supporting under similar conditions on roadway deformation, Stress and displacement field around the roadway were mainly studied. The simulation results were applied in bolt supporting engineering of a coal mine 4303 entity coal roadway, and excellent supporting results were obtained, which provides good experience for further generalization and application.
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Numerical Simulation and Engineering Application of Bolt’s Supporting in Tectonic Stress Field
Advanced Materials Research, 2011Co-Authors: Feng Nan, Zhiqiang KangAbstract:Roadway bolt supporting, which relates the equations such as ground Stress, Mechanical Property of surrounding rock and bolt supporting structure, is an engineering problem of rock and structure coupling. Three-dimensional developing entry bolt supporting aided design system was developed by using ANSYS finite element software. Supporting function mechanics of coal roadway bolt supporting was analyzed and calculated. The effects of bolt supporting under similar conditions on roadway deformation, Stress and displacement field around the roadway was mainly studied. The simulation results were applied in bolt supporting engineering of a coal mine 2395 entity coal roadway, and excellent supporting results were obtained which provides good experience for further generalization and application.
Vincent Nierstrasz - One of the best experts on this subject based on the ideXlab platform.
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Low-Stress Mechanical Property Study of Various Functional Fabrics for Tactile Property Evaluation
Materials (Basel Switzerland), 2018Co-Authors: Melkie Getnet Tadesse, Ladislav Nagy, Vincent Nierstrasz, Carmen Loghin, Yan Chen, Lichuan WangAbstract:Functional finishing brings an alteration on the Mechanical and surface properties of textilematerials and henceforth influences the tactile properties. In this work, Kawabata evaluation systems(KE ...
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Low-Stress Mechanical Property Study of Various Functional Fabrics for Tactile Property Evaluation
MDPI AG, 2018Co-Authors: Melkie Getnet Tadesse, Ladislav Nagy, Vincent Nierstrasz, Carmen Loghin, Yan Chen, Lichuan WangAbstract:Functional finishing brings an alteration on the Mechanical and surface properties of textile materials and henceforth influences the tactile properties. In this work, Kawabata evaluation systems (KES) for fabrics were utilized to notice the changes in the tactile properties of fabrics resulting from different finishing types such as inkjet printing, screen printing, and coating. The effects of functional finishing on the fabric’s tactile Property were inconsistent with reference to the course of decrease or increase being dependent on the types of finishes. The findings showed that KES can be employed as a promising tool to sort out the suitable functional finishing types in terms of tactile properties. Amongst the implemented finishing types, inkjet printing offered superior tactile properties with respect to tensile energy (softness), shear rigidity, compressional softness, bending stiffness (drapability), and surface properties. The KES results confirmed that low-Stress Mechanical properties are strongly associated with the tactile Property and might assist as a quality profile data source for guaranteeing the production and development of a virtuous quality product. The result encourages further utilization of the KES for functional fabric tactile Property evaluation