The Experts below are selected from a list of 4542 Experts worldwide ranked by ideXlab platform

Fangqiong Tang - One of the best experts on this subject based on the ideXlab platform.

  • Fabrication of Fast‐Absorbing and Quick‐Drying Wool Fabrics with Good Washing Durability
    ChemSusChem, 2010
    Co-Authors: Dong Chen, Longfei Tan, Huiyu Liu, Fangqiong Tang
    Abstract:

    functionalities, clothing Comfort is a fundamental and universal need for their wearer. Development of textiles with good water absorption and quick drying ability has great importance for improving clothing thermophysiological Comfort and wearing performance by adjusting the transport of heat and Moisture through a fabric, which was usually achieved using synthetic fibers. [4] Wool, one of the best natural insulating fibers, has an inherent deficiency in heat and Moisture Comfort because of the presence of a hydrophobic fatty layer that surrounds each fiber. [5] We have already developed an effective method to obtain superhydrophilic wool fabric by coating silica nanoparticles on the surface of wool, changing both surface energy and roughness of wool fabric. [6] Thanks to the silica layer’s chemical stability and optical transparence, the superhydrophilic property is environment stable while the color and morphology of pristine wool fabric is unaffected. However, washing fastness is a problem because the coalesce force between the fiber and the silica nanoparticles is weak and only meets the need of dry cleaning. Although wool clothes are traditionally washed by dry cleaning, machine-washable wool clothes are a growing trend because they avoid the use of environmentally hazardous dry-cleaning solvents, and make washing easier and more convenient. Developing machine-washable wool textile and maintaining new functions endowed by nanoparticles is an important goal in the research area of the wool textile industry. There is still a great challenge to graft functional inorganic nanoparticles on the surface of wool fibers by a durable coalesce force. Therefore, developing an effective approach to enhance the coalesce force between nanoparticles and wool fibers has great significance both in scientific and real applications. We adopted a simple and effective method to functionalize reactive monolayer on wool fiber surface by chemical bonding and then graft ultrathin silica nanoparticles layer by an in situ growth method. Among the various materials used for fabrication of reactive monolayer, alkylsilane is promising for practical applications because of its marked mechanical and chemical stability, which is attributed to the strong immobilization through siloxane bonding. [7] Furthermore, the in situ growth process in this work is an effective strategy to introduce ultrathin inorganic nanoparticles on the fiber surface. Differing from the coating method reported previously, the in situ

Kai Yang - One of the best experts on this subject based on the ideXlab platform.

  • Dynamic Moisture Comfort Property of Fine Denier Polypropylene Fabric in Different Wind Speed Conditions
    Research Journal of Applied Sciences Engineering and Technology, 2013
    Co-Authors: Kai Yang, Ming-li Jiao, Luoyan Hu, Hongyan Tu
    Abstract:

    In order to study the Moisture Comfort property of fine denier polypropylene fiber fabric in different wind speed conditions, dynamic experiments were performed using Textile-Microclimate Measuring Instrument in climate chamber. The relative humidity variation curves of inner and outer surfaces of test fabrics were tested and the comprehensive index was introduced to evaluate fabric's dynamic Moisture Comfort property. Results show that under four different environmental wind speed conditions, the dynamic Moisture Comfort property of fine denier polypropylene fiber fabric is much better than other fiber fabrics. In addition, grey mathematics theory was introduced to establish models to predict dynamic experiment's results using static descriptive parameters. Four prediction models of dynamic comprehensive index were established and the predictive precision is much higher.

  • Moisture Comfort Property of Fine Denier Polypropylene Fiber in Different Environmental Temperature Conditions
    Advanced Materials Research, 2012
    Co-Authors: Kai Yang, Ming-li Jiao, Hongyan Tu
    Abstract:

    Moisture handling property of clothes using fiber is an important factor determininig clothes Comfort property. In this paper, the Moisture Comfort property of fine denier polypropylene fiber fabric in different environmental temperature conditions was studied. By Textile-Microclimate Measuring Instrument, five kinds of test fabrics' dynamic experiments were performed in four different environmental temperature conditions. And fabrics' dynamic comprehensive index was obtained to characterize fabrics' dynamic Moisture Comfort property. Then, grey system theory was introduced to establish models that could describe the relationship between the static parameters and the dynamic comprehensive index. Results show that the dynamic Moisture Comfort property of fine denier polypropylene fiber fabric is the best. And fabrics with lower thickness, lower weight, and higher vertical wicking height will be more Moisture-Comfortable.

  • Study on the Effect of Cotton Fabric's Weight on its Dynamic Heat and Moisture Comfort Property
    Advanced Materials Research, 2011
    Co-Authors: Kai Yang, Ming-li Jiao, Zheng Wang
    Abstract:

    A series of experiments was performed on studying the dynamic heat and Moisture transferring procedure and evaluating heat and Moisture Comfort properties of different weight cotton fabrics. In experiments, the real time changes of temperature and relative humidity in inner and outer surfaces of different cotton fabrics were measured using self-made textile-microclimate measuring instrument. Then, the temperature and relative humidity in inner surface of fabric, and the difference of temperature and relative humidity between inner and outer surfaces of fabric were analyzed. Finally, in order to evaluate cotton fabric's dynamic heat Comfort property and dynamic Moisture Comfort property comprehensively, two dynamic values were introduced to make evaluation. Results show that as the increase of cotton fabric's weight, fabric will have better thermal insulation performance and worse Moisture permeability performance.

  • Study on Dynamic Moisture Comfort Property of Fabric in Different Environmental Temperature Conditions
    Advanced Materials Research, 2011
    Co-Authors: Kai Yang, Ming-li Jiao, Ying Xiong, Weiyuan Zhang
    Abstract:

    Moisture handling property of fabric has been regarded as a major factor in the Comfort performance of clothing in normal use. Especially in different environmental temperature conditions, fabric’s Moisture Comfort property has different manifestation. In this paper, a series of experiments and analyses were performed on studying the dynamic Moisture transferring procedure and evaluating Moisture Comfort property of fabric under different environmental temperature conditions. By Textile-Microclimate Measuring Instrument, five different fiber fabrics’ dynamic experiments were performed in different environmental temperature conditions. By measuring the real time changes of relative humidity in inner and outer surfaces of test fabrics, fabrics’ dynamic comprehensive index was obtained to characterize fabrics’ dynamic Moisture Comfort property under different temperature conditions. Finally, grey system theory was introduced to establish models that could describe the relationship between the static parameters and the dynamic comprehensive index. The grey interrelationship analysis was performed firstly to find out the static parameters that have high degree of association with dynamic comprehensive index. And then the grey mathematics modeling method was performed to establish models predicting the dynamic comprehensive index using static parameters. In three different temperature conditions, three different prediction models were built and high predictive precision was obtained.

  • Study on Dynamic Heat-Moisture Comport Properties of Moisture Transported and Dry-Fast Fiber
    Advanced Materials Research, 2011
    Co-Authors: Kai Yang, Ming-li Jiao
    Abstract:

    A series of experiments was performed on studying the dynamic heat and Moisture transferring procedure and evaluating heat-Moisture Comfort properties of functional Moisture transported and dry-fast fiber in wearing conditions that produce continued sweat. Experiments were performed in two different environmental conditions, which were the most Comfortable condition and an extremely unComfortable condition for humans. The real time changes of temperature and relative humidity in inner and outer surfaces of different fiber fabrics were measured using self-made textile-microclimate measuring instrument. Then, fabric’s comprehensive heat-Moisture Comfort properties were obtained. Results show that fine denier polypropylene fiber as a newly Moisture transported and dry-fast functional fiber has better heat-Moisture Comfort properties than other conventional fibers, and it is more suitable for sportswear fabric.

Weiyuan Zhang - One of the best experts on this subject based on the ideXlab platform.

  • Study on Dynamic Moisture Comfort Property of Fabric in Different Environmental Temperature Conditions
    Advanced Materials Research, 2011
    Co-Authors: Kai Yang, Ming-li Jiao, Ying Xiong, Weiyuan Zhang
    Abstract:

    Moisture handling property of fabric has been regarded as a major factor in the Comfort performance of clothing in normal use. Especially in different environmental temperature conditions, fabric’s Moisture Comfort property has different manifestation. In this paper, a series of experiments and analyses were performed on studying the dynamic Moisture transferring procedure and evaluating Moisture Comfort property of fabric under different environmental temperature conditions. By Textile-Microclimate Measuring Instrument, five different fiber fabrics’ dynamic experiments were performed in different environmental temperature conditions. By measuring the real time changes of relative humidity in inner and outer surfaces of test fabrics, fabrics’ dynamic comprehensive index was obtained to characterize fabrics’ dynamic Moisture Comfort property under different temperature conditions. Finally, grey system theory was introduced to establish models that could describe the relationship between the static parameters and the dynamic comprehensive index. The grey interrelationship analysis was performed firstly to find out the static parameters that have high degree of association with dynamic comprehensive index. And then the grey mathematics modeling method was performed to establish models predicting the dynamic comprehensive index using static parameters. In three different temperature conditions, three different prediction models were built and high predictive precision was obtained.

  • Evaluation and Prediction of Dynamic Moisture Comfort Property of Fine Denier Fiber Fabric
    Advanced Materials Research, 2010
    Co-Authors: Kai Yang, Ming-li Jiao, Weiyuan Zhang
    Abstract:

    Fine denier fiber fabric has unique wicking effect and good hydrophobic property, which can keep dry and Moisture Comfortable when people are in heavy and continued sweat. This paper studied the dynamic Moisture Comfort property of fine denier fiber fabric compared with conventional fiber fabrics. Firstly, a series of experiments was performed on studying the dynamic Moisture transferring procedure and evaluating Moisture Comfort property of fine denier fiber fabrics in two different environmental conditions, which were the most Comfortable condition and an extremely unComfortable condition for humans. Then, by measuring the real time changes of relative humidity in inner and outer surfaces of test fabrics, fabrics’ dynamic comprehensive index was obtained to characterize fabrics’ dynamic Moisture Comfort property. Finally, grey system theory was introduced to establish prediction models that could describe the relationship between fabric’s static parameters and dynamic comprehensive index. Results show that fine denier fiber fabric has better Moisture Comfort property than conventional fiber fabrics.

  • study of the effect of material assembly on the Moisture and thermal protective performance of firefighter clothing
    Fibres & Textiles in Eastern Europe, 2009
    Co-Authors: Weiyuan Zhang
    Abstract:

    Heat protection and Moisture Comfort are important for firefighter protective clothing. In this study, the thermal protective performance (TPP) and water vapour transmission rate (WVTR) were measured for 16 assemblies. It was established that outer heat resistant fabric and the Moisture barrier have significant effects on the TPP rating of assemblies. The Moisture barrier also has a strong influence on the water vapour transmission rate of assemblies, and the WVTR of three-layer assemblies is much lower than that of single layer material. At the same time, the low Moisture permeability of any layer will lead to a low WVTR of the turnout system. Considering thermal protection and Moisture Comfort, the optimal assembly of the overall materials is A1B1C2.

  • Analysis and Prediction of the Dynamic Heat - Moisture Comfort Property of Fabric
    Fibres & Textiles in Eastern Europe, 2008
    Co-Authors: Kai Yang, Ming-li Jiao, Yi-song Chen, Weiyuan Zhang
    Abstract:

    A series of experiments and analyses were performed to study the dynamic heat and Moisture transferring procedure as well as evaluate the heat-Moisture Comfort property of fabric in wearing conditions that produce continued sweat. By measuring five static indexes of ten different fabrics, which involved static heat-Moisture transmission through fabric, as well as two dynamic comprehensive indexes obtained from the dynamic curves using a self-made microclimate measuring apparatus, the relation between the static indexes and dynamic comprehensive indexes was established.In addition, an evaluation and prediction system for the dynamic heat-Moisture Comfort property of the textile was formulated by means of the grey system theory. For two different environmental conditions: the most Comfortable ones, and an extremely unComfortable condition for humans, four different prediction models were built, and high predictive precision was obtained.

  • Hierarchical Cluster Analysis on Coolmax/Cotton Double-faced Effect Knitted Fabric's Subjective Sensations in Different Sports Conditions
    2008 International Symposium on Information Science and Engineering, 2008
    Co-Authors: Weiyuan Zhang
    Abstract:

    Clothing Comfort is a state of satisfaction indicating physiological, psychological and physical balance among the person. Subjective experiment is rated an end-use performance test to collect the Comfort sensation of wears. In this paper, 20 samples are chosen including 10 kinds of coolmax/cotton double-faced effect knitted fabrics for sportswear developed by Textile Institute of DongHua University and 10 kinds of knitted fabrics selected from the market for comparative analysis. Then subjective experiment with four processes rest, walking, running and rest is taken and questionnaire is designed to test 10 Comfort properties of knitwear fabric including thermal, Moisture, clinging, stifling, rough, soft, drape, prickle, tight and overall Comfort. Through analysis of the overall evaluation, the 10 kinds of coolmax/cotton double-faced effect knitted fabric clothing have been proved to have good heat-Moisture Comfort in heavy sports. The other 9 kinds of subjective sensations are divided into heat-Moisture sensation, tactile sensation and pressure sensation by cluster analysis. Based on the three classification criteria, the cluster results of the 20 kinds of clothing at the four different experimental stages are analyzed and the subjective Comfort of the double-faced effect knitted fabrics are evaluated.

Ming-li Jiao - One of the best experts on this subject based on the ideXlab platform.

  • Dynamic Moisture Comfort Property of Fine Denier Polypropylene Fabric in Different Wind Speed Conditions
    Research Journal of Applied Sciences Engineering and Technology, 2013
    Co-Authors: Kai Yang, Ming-li Jiao, Luoyan Hu, Hongyan Tu
    Abstract:

    In order to study the Moisture Comfort property of fine denier polypropylene fiber fabric in different wind speed conditions, dynamic experiments were performed using Textile-Microclimate Measuring Instrument in climate chamber. The relative humidity variation curves of inner and outer surfaces of test fabrics were tested and the comprehensive index was introduced to evaluate fabric's dynamic Moisture Comfort property. Results show that under four different environmental wind speed conditions, the dynamic Moisture Comfort property of fine denier polypropylene fiber fabric is much better than other fiber fabrics. In addition, grey mathematics theory was introduced to establish models to predict dynamic experiment's results using static descriptive parameters. Four prediction models of dynamic comprehensive index were established and the predictive precision is much higher.

  • Moisture Comfort Property of Fine Denier Polypropylene Fiber in Different Environmental Temperature Conditions
    Advanced Materials Research, 2012
    Co-Authors: Kai Yang, Ming-li Jiao, Hongyan Tu
    Abstract:

    Moisture handling property of clothes using fiber is an important factor determininig clothes Comfort property. In this paper, the Moisture Comfort property of fine denier polypropylene fiber fabric in different environmental temperature conditions was studied. By Textile-Microclimate Measuring Instrument, five kinds of test fabrics' dynamic experiments were performed in four different environmental temperature conditions. And fabrics' dynamic comprehensive index was obtained to characterize fabrics' dynamic Moisture Comfort property. Then, grey system theory was introduced to establish models that could describe the relationship between the static parameters and the dynamic comprehensive index. Results show that the dynamic Moisture Comfort property of fine denier polypropylene fiber fabric is the best. And fabrics with lower thickness, lower weight, and higher vertical wicking height will be more Moisture-Comfortable.

  • Study on the Effect of Cotton Fabric's Weight on its Dynamic Heat and Moisture Comfort Property
    Advanced Materials Research, 2011
    Co-Authors: Kai Yang, Ming-li Jiao, Zheng Wang
    Abstract:

    A series of experiments was performed on studying the dynamic heat and Moisture transferring procedure and evaluating heat and Moisture Comfort properties of different weight cotton fabrics. In experiments, the real time changes of temperature and relative humidity in inner and outer surfaces of different cotton fabrics were measured using self-made textile-microclimate measuring instrument. Then, the temperature and relative humidity in inner surface of fabric, and the difference of temperature and relative humidity between inner and outer surfaces of fabric were analyzed. Finally, in order to evaluate cotton fabric's dynamic heat Comfort property and dynamic Moisture Comfort property comprehensively, two dynamic values were introduced to make evaluation. Results show that as the increase of cotton fabric's weight, fabric will have better thermal insulation performance and worse Moisture permeability performance.

  • Study on Dynamic Moisture Comfort Property of Fabric in Different Environmental Temperature Conditions
    Advanced Materials Research, 2011
    Co-Authors: Kai Yang, Ming-li Jiao, Ying Xiong, Weiyuan Zhang
    Abstract:

    Moisture handling property of fabric has been regarded as a major factor in the Comfort performance of clothing in normal use. Especially in different environmental temperature conditions, fabric’s Moisture Comfort property has different manifestation. In this paper, a series of experiments and analyses were performed on studying the dynamic Moisture transferring procedure and evaluating Moisture Comfort property of fabric under different environmental temperature conditions. By Textile-Microclimate Measuring Instrument, five different fiber fabrics’ dynamic experiments were performed in different environmental temperature conditions. By measuring the real time changes of relative humidity in inner and outer surfaces of test fabrics, fabrics’ dynamic comprehensive index was obtained to characterize fabrics’ dynamic Moisture Comfort property under different temperature conditions. Finally, grey system theory was introduced to establish models that could describe the relationship between the static parameters and the dynamic comprehensive index. The grey interrelationship analysis was performed firstly to find out the static parameters that have high degree of association with dynamic comprehensive index. And then the grey mathematics modeling method was performed to establish models predicting the dynamic comprehensive index using static parameters. In three different temperature conditions, three different prediction models were built and high predictive precision was obtained.

  • Study on Dynamic Heat-Moisture Comport Properties of Moisture Transported and Dry-Fast Fiber
    Advanced Materials Research, 2011
    Co-Authors: Kai Yang, Ming-li Jiao
    Abstract:

    A series of experiments was performed on studying the dynamic heat and Moisture transferring procedure and evaluating heat-Moisture Comfort properties of functional Moisture transported and dry-fast fiber in wearing conditions that produce continued sweat. Experiments were performed in two different environmental conditions, which were the most Comfortable condition and an extremely unComfortable condition for humans. The real time changes of temperature and relative humidity in inner and outer surfaces of different fiber fabrics were measured using self-made textile-microclimate measuring instrument. Then, fabric’s comprehensive heat-Moisture Comfort properties were obtained. Results show that fine denier polypropylene fiber as a newly Moisture transported and dry-fast functional fiber has better heat-Moisture Comfort properties than other conventional fibers, and it is more suitable for sportswear fabric.

Jian Wei Tao - One of the best experts on this subject based on the ideXlab platform.

  • ISCID (1) - Research on the Thermal-Wet Comfort Performance for the Knitting Sports Shoes
    2019 12th International Symposium on Computational Intelligence and Design (ISCID), 2019
    Co-Authors: Kun Chenl, Zi Min Jin, Jing Jin, Jian Wei Tao
    Abstract:

    The thermal and Moisture Comfort of knitted fabrics is an important indicator that must be studied. It is related to the regulation of the heat and humidity of the human body by the knitted fabric. Its thermal Comfort performance is mainly determined by the air content in the fabric, the density of the air, the static and active state of the air, its wet Comfort performance is mainly manifested in the human body in a high temperature and high humidity environment or the human body to perform vigorous activities, and the skin surface and the outside world The ability of the fabric to absorb Moisture, dissipate Moisture or conduct Moisture and convect and dehumidify when there is a humidity gradient in the environment [1]. Based on the above research, this paper comprehensively evaluate the thermal and Moisture Comfort of knitted fabrics by testing the thermal insulation, Moisture permeability, air permeability and wicking ability of fabrics of different tissue structures.

  • Silkworm Chrysalis Protein Seamless Sports Underwear Knitted Fabric Performance Comprehensive Evaluation
    2016 9th International Symposium on Computational Intelligence and Design (ISCID), 2016
    Co-Authors: Yuxiu Yan, Gao Zhiying, Jiawen Zao, Jian Wei Tao
    Abstract:

    With the improvement of people's living standard, people's demand for seamless sports underwear is not only limited to the sports function, but more attention to its thermal and Moisture Comfort. As a new type of raw materials, Pupa protein fiber has a good health performance, and favored by its excellent Moisture permeability. If the pupa protein fiber could be applied to seamless sports underwear development, it is not only to achieve functional sports underwear Comfort requirements, to meet the health needs of people, but also to deep the development of silkworm protein fibers, to lay a foundation for the future of textile technology and performance optimization of new materials. This study selected "Camille" pupa protein fiber as a sample, and put forward the method of blending and interwoven. Blending the pupa protein fiber modal and cotton at first, then intervened with nylon to improve its strength and elasticity. Through orthogonal experiment design, 9 groups of different raw materials, mixed proportion and structure of sample fabric are weaved. The relationship between veil material, interleaving ratio, structure and the performance of the fabric (Dimensional stability, pilling and abrasion resistance, air permeability, Moisture permeability, hygroscopicity, bursting strength) are found by orthogonal experiment. Finally, using the grey near optimal comprehensive evaluation method to get the best comprehensive performance of the fabric.

  • Research on Thermal and Moisture Comfort of Seamless Knitted Fabric Made of Triangle-Hollow Nylon
    Applied Mechanics and Materials, 2011
    Co-Authors: Zi Min Jin, Qiao Hua Shen, Ming Shan Fan, Jian Wei Tao
    Abstract:

    To research thermal and Moisture Comfort of seamless knitted fabric made of triangle-hollow nylon which is developed newly, the paper chooses triangle-hollow nylon, circle-hollow nylon and ordinary nylon as fiber material and every nylon adopts weft plain, one-and-one mock rib and one-and-three mock rib for test weaving. Then nine samples are obtained. The paper analyses their air permeability, Moisture permeability and warmth retention property. Result indicates that air permeability and Moisture permeability of seamless knitted fabric made of triangle-hollow nylon are better than that of two other kinds of nylon’s seamless knitted fabric.