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EN
Heat and mass transfer properties of textile fabrics determine thermal comfort. This paper introduces a statistical study on the contribution of yarn fineness to the heat and mass transfer properties of single jersey cotton and polyester fabrics through relevant measurements. It is observed that yarn fineness affects those properties at different levels in differing fiber types.
EN
The spontaneous wetting and drying of flat porous samples of linen, cotton and synthetic textiles were studied using dynamic neutron radiography (DNR). The progress of the wetting process of the media was delineated from the obtained neutron dynamical radiography images. The results of the investigation reveal a non-classical behaviour of kinetics of wicking of these materials. The character of the wetting kinetics is discussed in terms of the fractal character of the tortuosity of fabric capillaries.
3
Content available remote Mechanism of Electrical Conductivity in Metallic Fiber-Based Yarns
EN
We explore the conductive mechanism of yarns made from metallic fibers and/or traditional textile fibers. It has been proposed for the first time, to our knowledge, that probe span length plays a great role in the conductivity of metallic fiber-based yarns, which is determined by the probability and number of conductive fibers appearing on a cross section and their connecting on two neighboring sections in a yarn’s longitudinal direction. The results demonstrate that yarn conductivity is negatively influenced to a large extent by its length when metallic fibers are blended with other nonconductive materials, which is beyond the scope of conductivity theory for metal conductors. In addition, wicking and wetting performances, which interfere with fiber distribution and conductive paths between fibers, have been shown to have a negative influence on the conductivity of metallic fiber-based yarns with various structures and composed of different fiber materials. Such dependence of the conductivity on the probe span length, as well as on the moisture from air and human body, should get attention during investigation of the conductivity of metallic fiber-based composites in use, especially in cases in which conductive yarns are fabricated into flexible circuit boards, antennas, textile electrodes, and sensors.
4
Content available remote Liquid Moisture Transportation Properties of Functional Underwears: Part 1
EN
This study investigates the effect of material composition on moisture management properties. Fiber type has significant influence on the moisture management properties of knitted fabrics. In this article, single jerseys knitted fabric samples with different yarn compositions were prepared. Liquid moisture transportation properties including wetting time, absorption rate, spreading speed, one-way transportation capability, and OMMC were evaluated by Moisture Management Tester (MMT) and vertical wicking was evaluated using thermography system and image analysis. Knitted sample having fine cotton yarns with coolmax and micro denier multifilament polypropylene showed best liquid transportation properties. There is a strong co-relation between OMMC and accumulative oneway transport index with vertical wicking of knitted samples.
EN
Eri silk, a wild silk variety available in the northeastern states of India, has better softness, tensile and thermal properties. The present study aimed to develop different knitted structures and investigate the influence of knitting process variables on the thermal comfort and wicking properties. Knitted single jersey and single pique fabric structures were produced with two sets of yarns - 25 Tex and 14.32 Tex with three levels of loop length. Thermal properties of the fabric were analysed using an Alambeta instrument, and the wicking ability was measured with a vertical wicking tester. Thermal comfort properties of eri silk were also compared with those of conventional mulberry silk, with the experiment result revealing that eri silk has better comfort values. A statistically significant correlation is found between knitting process parameters viz. the yarn count, loop length knitting structure and the thermal and wickability values of the fabrics.
PL
Jedwab „Eri”, odmiana dzikiego jedwabiu dostępna w północno-wschodnich stanach Indii ma bardzo dobrą miękkość, właściwości rozciągające i termiczne. Przedstawione badania miały na celu opracowanie różnych dzianych struktur i zbadanie wpływu zmiennych procesów dziania na komfort cieplny i właściwości przenoszenia wilgoci. Dzianiny single jersey i pojedyncze struktury typu „pique” zostały wyprodukowane z dwóch zestawów przędz 25 i 14,32 tex. Właściwości termiczne zostały przeanalizowane za pomocą przyrządu Alambeta, a zdolność odprowadzania wilgoci mierzona była za pomocą testera przenoszenia pionowego. Jedwab „Eri” porównano z konwencjonalnym jedwabiem morowym i stwierdzono, że ma on lepsze parametry komfortu cieplnego. Występowała istotna korelacja pomiędzy parametrami procesu dziania (liczebność przędzy, długość pętli, struktura dziania) a właściwościami termicznymi i zdolnością odprowadzania wilgoci.
EN
Using biotechnology during textile processing has been known for years due to its environmental benefits and special performance of enzymes in comparison with the conventional processing of textiles. This paper deals with the bioscouring of cotton fabric with acid and neutral pectinases in comparison with alkali scouring. Variations in technological procedures, as expressed through pad-roll and exhaustion, were also identified for the bioscouring of cotton fabrics. The varied impacts of alkali, acid, and neutral pectinases on the properties of cotton fabrics throughout the processing technology were evaluated for electrokinetic phenomena, hydrophilicity, mechanical and chemical degradation, inorganic residues, and whiteness.
PL
Biotechnologie dla obróbki tekstyliów stosowane są z powodzeniem od lat ze względu na brak negatywnego oddziaływania na środowisko oraz korzystne oddziaływanie enzymów na właściwości obrabianych tekstyliów w stosunku do technologii konwencjonalnych. Praca dotyczy odtłuszczania bawełnianej tkaniny za pomocą kwasowej i neutralnej pektynazy w porównaniu z odtłuszczaniem zasadowym. Badano również szereg modyfikacji tej technologii. Wpływ zasadowej, kwasowej i neutralnej obróbki tych tkanin badano poprzez zjawiska elektrokinetyczne, hydrofilowość, mechaniczną i chemiczną degradację oraz biel obrobionych tkanin.
EN
This paper investigated the wicking and drying behaviour of polyester woven fabrics. The effects of yarn type, weft density, weave structure, thickness and air permeability were evaluated by the application of vertical wicking, transfer wicking and drying tests. Correlation analysis and two sided independent t-tests of the data obtained from experiments and the evaluations reveal that the texturizing process - the alteration of the arrangement and packing of yarns by changing the weft density and weave type, are influential with respect to the wicking performance. Moreover the drying behaviour is influenced by the thickness of the fabric, air permeability and yarn type used in the fabric.
PL
W pracy badano zwilżanie (efekt kapilarny) i suszenie tkanin poliestrowych. Badano wpływ typu włókna, gęstość wątku, rodzaj splotu, grubość i przepuszczalność powietrza. Wykonano analizę korelacji i dwustronny t-test. Wyniki wykazały wpływ konfiguracji i upakowania przędz na zwilżanie uwidaczniające się przy zmianie gęstości wątku oraz typu splotu. Ponadto stwierdzono, że zachowanie się tkanin przy suszeniu zależy od ich grubości, przepuszczalności powietrza oraz typu zastosowanych przędz dla otrzymania danej tkaniny.
EN
The effect of oxygen plasma treatment on two polyester fibre types, polylactic acid and standard polyester, and the influence on their respective wetting characteristics is investigated. A novel analytical system, based on image analysis, was developed for measuring the rate of spreading and dynamic movement of liquid over the fabrics. The techniques of X-ray Photoelectron Spectroscopy (XPS) and Scanning Electron Microscopy (SEM) were utilized to examine the nature of the surface modifications after the plasma treatment. The analyses showed that the oxygen plasma treatment abraded the surface of the PLA fibres, but did not alter their chemical nature, whilst the surfaces of the PET fibres were less abraded, but had enhanced polarity due to an increase in carbonyl groups. The increased surface abrasion made little difference to the wetting or wicking rates of water on PLA fibres, but the increased polarity made a large difference to the rates on PET fibres.
EN
The moisture transmission behaviour of a clothing assembly plays a very important role in influencing its efficiency with respect to thermophysiological body comfort. This paper is in two parts. Part I deals with the processes involved in moisture transmission and the factors at play. Part II is concerned with selecting the measurement techniques which are of great importance in determining fabric factors that influence comfort. The instruments and methods used for testing purposes should adequately simulate the exact conditions for which the fabric will be used, in order to determine the effectiveness of that fabric for a particular wearing situation and environmental condition. The testing methods used and the apparatus developed by different researchers for determining moisture transmission through textiles by different mechanisms are discussed in this paper. Moreover, this part of the paper deals with the mathematical models of liquid and vapour transport through textile materials developed by several scientists in order to understand the exact phenomena involved and to predict the factors affecting the transmission under a particular condition.
EN
Moisture transmission through textiles has a great influence on the thermo-physiological comfort of the human body which is maintained by perspiring both in vapour and liquid form. The clothing to be worn should allow this perspiration to be transferred to the atmosphere in order to maintaining the thermal balance of the body. Diffusion, absorption-desorption and convection of vapour perspiration along with wetting and wicking of liquid perspiration play a significant role in maintaining thermo-physiological comfort. The scientific understanding of the processes involved in moisture transmission through textiles and the factors affecting these processes are important to designing fabrics and clothing assemblies with efficient moisture transfer in different environment and workload conditions. This paper is in two parts.Part I focuses on the moisture transmission through textile materials and it discusses the processes involved in moisture transmission and the key influencing factors at play to maintaining comfort. It is underlined that the processes which play the major role in moisture transmission in a particular situation are dependant on the moisture content of the fabric, the type of material used, the perspiration rate and the atmospheric conditions, such as humidity, temperature and wind speed. Part II is concerned with the selection of the measurement techniques which are of great importance in determining fabric factors that influence comfort. The instruments and methods used for testing purposes should adequately simulate the exact conditions for which the fabric will be used, in order to determine the effectiveness of that fabric for a particular wearing situation and environmental condition. The testing methods used and the apparatus developed by different researchers for determining moisture transmission through textiles by different mechanisms are discussed in this paper. Moreover, this part of the paper deals with the mathematical models of liquid and vapour transport through textile materials developed by several scientists in order to understand the exact phenomena involved and to predict the factors affecting the transmission under a particular condition. When designing the comfort of a clothing product for a particular application, the requirements may result from needs concerning the application, the individual wearer and the environmental conditions.
11
Content available remote Gas flow around and through textile structures during plasma treatment
EN
An experimental plasma reactor has been developed that enables the study of aspects related to the flow of a gas around and into textile structures while they are treated in a plasma at reduced pressure. A selection of experiments draws attention to the fact that even at reduced pressure a textile forms a barrier for a gas containing plasma-created species, resulting in an 'edge effect'. It is also shown how basic variations in the structure of a textile influence the penetration of the treatment effect. The ratio of textile thickness to its porosity is proposed as a simple rule of thumb for assessing the effect of penetration and etching efficiency.
12
Content available remote Wicking and wetting in textiles
EN
The proposed model is based on the simplified description of the thread structure, and it works with the textile description of thread st ructure. The following textile parameters are used in the model: fineness of fibres, and number of fibres at the cross-section in the bundle and the filling. The formation of the liquid in the longitudinal textile is described in detail, and particular phenomena are discussed. Important parameters are used in the model of wicking. The parameters with very small influence in usual threads are disregarded. The proposed wicking model allows a functional dependence of suction height on the parameters of the fibre bundl e to be expressed in analytical form.
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