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Prognosis of Dimensional Stability and Mass per Unit Area of Single Jersey Cotton Knitted Fabric with Fuzzy Inference System [Napoved Dimenzijske Stabilnosti in PloščInske Mase BombažNega Levo-Desnega Pletiva S Sistemom Mehkega Sklepanja]

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dc.contributor.author Smriti, Shamima Akter
dc.contributor.author Belal, Shah Alimuzzaman
dc.contributor.author Haque, Md. Mahbubul
dc.contributor.author Hossain, Md. Ismail
dc.contributor.author Farzana, Nawshin
dc.contributor.author Haque, Abu Naser Md Ahsanul
dc.date.accessioned 2021-10-14T10:38:32Z
dc.date.available 2021-10-14T10:38:32Z
dc.date.issued 2019-09-07
dc.identifier.uri http://dspace.daffodilvarsity.edu.bd:8080/handle/123456789/6263
dc.description.abstract Endeavour has been made in this research work using experimental data for constructing a fuzzy inference model based on the Mamdani approach to prognosticate the shrinkage and mass per unit area of a single jersey cotton knitted fabric. To control the dimensional stability of the cotton knitted fabric in advance, an artifi cial intelligent system is required in the knitting industry which simulates all product and process variables and is able to give human-like decisions in advance. The most important controlling parameters of knitted fabric properties such as stitch length, yarn count and overfeed percentage in stenter were considered as input variables, and mass per unit area, lengthwise shrinkage and widthwise shrinkage as output variables. Overall, 35 experiments were conducted to construct the model, varying different parameters. The applicability of the model was validated by comparing the results from 15 newly conducted experiments. The coeffi cient of determination of predicted and actual data for mass per unit area, lengthwise shrinkage and widthwise shrinkage were 0.97, 0.99 and 0.99, respectively which validates the model relatively effectively for an industrial application. The proposed model can assist a fabric manufacturer by taking a decision in selecting knitting and fi nishing parameters prior to producing the fabric. Moreover, it can reduce the time and energy required, and waste produced in the process by skipping the sample development step before bulk production. en_US
dc.language.iso en_US en_US
dc.publisher Tekstilec, University of Ljubljana en_US
dc.subject Stenter machine en_US
dc.subject Membership function en_US
dc.subject Fuzzy prediction en_US
dc.subject Overfeed en_US
dc.title Prognosis of Dimensional Stability and Mass per Unit Area of Single Jersey Cotton Knitted Fabric with Fuzzy Inference System [Napoved Dimenzijske Stabilnosti in PloščInske Mase BombažNega Levo-Desnega Pletiva S Sistemom Mehkega Sklepanja] en_US
dc.type Article en_US


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