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Frotirne tkanine s povečano elastičnostjo
ID Bratić, Ana Maria (Author), ID Bizjak, Matejka (Mentor) More about this mentor... This link opens in a new window

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Abstract
V diplomskem delu so bile raziskane fizikalno-mehanske lastnosti frotirnih tkanin s povečano elastičnostjo. Frotirne tkanine se ločijo od ostalih tkanin po konstrukciji, saj imajo še dodatno zančno osnovo, ki tvori značilne zanke na eni ali obeh straneh tkanine. Klasičen frotir je izdelan iz bombažne preje in ima kompaktno, neelastično strukturo. V diplomskem delu smo raziskali različne frotirne tkanine s povečano elastičnostjo, ki so imele različne deleže oplaščene bombažne preje s PBT-filamentnim jedrom v smeri votka. Elastičnost frotirnih tkanin se razvije po termični obdelavi vzorcev v vreli vodi zaradi prisotnosti PBT-filamenta. V eksperimentalnem delu smo opravili preiskave na šestih frotirnih tkaninah pred obdelavo in po njej v vreli vodi, ko se razvije elastičnost. Analizirali smo osnovne fizikalno-mehanske lastnosti: gostoto osnovnih in votkovnih niti, stkanje in skrčenje, ploščinsko maso, debelino, zračno prepustnost, pretržno trdnost in pretržni raztezek, razpočno trdnost, odpornost proti drgnjenju, vpojnost smo preverili s kapilarnim dvigom. Rezultati preiskav so pokazali, da se je pri vseh vzorcih po pranju ploščinska masa povečala zaradi skrčenja, posledično se je povečala tudi debelina. Zračna prepustnost se je po pranju zmanjšala pri skoraj vseh vzorcih. Pretržna sila v smeri osnove in votka se je po pranju pri večini vzorcev povečala, podobno je bilo tudi s pretržnim raztezkom. Razpočna trdnost oziroma sila, ki je bila potrebna za razpok tkanine, je bila večja po pranju pri skoraj vseh vzorcih. Test kapilarnega dviga je pokazal, da vzorci po pranju navzemajo več tekočine. Pri merjenju odpornosti proti drgnjenju so vzorci po pranju izgubili več mase, njihova površina se je hitreje poškodovala.

Language:Slovenian
Keywords:frotir, elastičnost, preja PBT/Co, fizikalno-mehanske lastnosti
Work type:Bachelor thesis/paper
Organization:NTF - Faculty of Natural Sciences and Engineering
Year:2019
PID:20.500.12556/RUL-109591 This link opens in a new window
Publication date in RUL:06.09.2019
Views:2040
Downloads:259
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Secondary language

Language:English
Title:Terry fabrics with increased elasticity
Abstract:
In this diploma thesis, the physical and mechanical properties were researched of terry fabrics with increased elasticity. Terry fabrics differ from other fabrics mainly due to the construction itself as it also has added looped warp which shapes the signature loop on the surface of terry fabrics on one or both sides. Terry fabrics are usually made from cotton yarns and have compact and inelastic structure. In the diploma thesis, analysis was conducted on different terry fabrics with increased elasticity which have different ratios of sheathed cotton yarns with PBT filaments core in the weft direction. Elasticity of terry fabrics is developed after treatment in boiling water due to the presence of the PBT filaments. In the experimental section we conducted research on six terry fabrics, before and after treatment in boiling water, when elasticity developes. We analysed and determined basic physical mechanical properties of the fabric: density of warp and weft, warp and weft crimp, surface mass, fabric thickness, air permeability, tensile strength and elongation, bursting strength, abrasion resistance, absorbency was tested with capillary lift. The findings of the research showed us, after washing the surface mass increased due to crimping which lead to fabric thickness increasing as well. Air permeability decreased after washing in most samples. The breaking force in the warp and weft direction increased after wash in most samples, similar results occur with elongation. Bursting strength or the force required to crack the fabric was greater after the washing in most samples. The capillary lift showed the capability to absorb moisture has increased after the wash. When conducting abrasion resistance test, samples which were washed experienced bigger mass loss and their surface deteriorated quicker.

Keywords:terry fabric, elasticity, PBT/Co yarn, physical and mechanical properties

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