Matches in SemOpenAlex for { <https://semopenalex.org/work/W2741888214> ?p ?o ?g. }
- W2741888214 endingPage "435" @default.
- W2741888214 startingPage "429" @default.
- W2741888214 abstract "The aim of this study is to control if the steam ironing effect applied on cotton clothing can persist in different climatic conditions. For this purpose, the effect of steam ironing process on the sorption isotherms of plain weave fabrics made of cotton was investigated. An experimental device conceived around a magnetic suspension balance was used to regulate temperature at two levels (25 °C and 35 °C). Using the same proportions of mixed air, relative humidities can reach fixed values between 3% and 97%. Two successive cycles of continuous adsorption/desorption water vapor were used. The sorption isotherms of the ironed and non-ironed fabrics are compared. They define three sorption zones depending on the nature of links between structure and water vapor. The results show that the adsorption isotherm of the ironed fabrics is lower than the non-ironed one during the initial two zones of the sigmoid. Then, they are superposed in the last sector of the adsorption isotherm and during the entire desorption phase. Therefore, the ironing can reduce the sorption capacity of cotton at low and moderate relative humidities. A second adsorption/desorption cycle is performed on the same samples to prove that the ironing effect is completely cancelled." @default.
- W2741888214 created "2017-08-08" @default.
- W2741888214 creator A5018174950 @default.
- W2741888214 creator A5021292718 @default.
- W2741888214 creator A5030218222 @default.
- W2741888214 creator A5063438843 @default.
- W2741888214 date "2017-11-01" @default.
- W2741888214 modified "2023-10-14" @default.
- W2741888214 title "Comparison between sorption isotherms of non-ironed and steam-ironed plain weave fabrics" @default.
- W2741888214 cites W1964167305 @default.
- W2741888214 cites W1964883498 @default.
- W2741888214 cites W1967626832 @default.
- W2741888214 cites W1968496122 @default.
- W2741888214 cites W1968744402 @default.
- W2741888214 cites W1971571919 @default.
- W2741888214 cites W1975911801 @default.
- W2741888214 cites W1979416922 @default.
- W2741888214 cites W1988443812 @default.
- W2741888214 cites W1989732909 @default.
- W2741888214 cites W1990545057 @default.
- W2741888214 cites W1994317074 @default.
- W2741888214 cites W2001142639 @default.
- W2741888214 cites W2001433054 @default.
- W2741888214 cites W2010371618 @default.
- W2741888214 cites W2012490499 @default.
- W2741888214 cites W2013894936 @default.
- W2741888214 cites W2014472408 @default.
- W2741888214 cites W2016059642 @default.
- W2741888214 cites W2023371625 @default.
- W2741888214 cites W2024953405 @default.
- W2741888214 cites W2026394790 @default.
- W2741888214 cites W2027751173 @default.
- W2741888214 cites W2027807816 @default.
- W2741888214 cites W2028607501 @default.
- W2741888214 cites W2028891926 @default.
- W2741888214 cites W2029389878 @default.
- W2741888214 cites W2034006547 @default.
- W2741888214 cites W2036647193 @default.
- W2741888214 cites W2042279208 @default.
- W2741888214 cites W2045046934 @default.
- W2741888214 cites W2047384118 @default.
- W2741888214 cites W2049155221 @default.
- W2741888214 cites W2054296163 @default.
- W2741888214 cites W2056781113 @default.
- W2741888214 cites W2056785485 @default.
- W2741888214 cites W2056789237 @default.
- W2741888214 cites W2062325685 @default.
- W2741888214 cites W2071848596 @default.
- W2741888214 cites W2073060332 @default.
- W2741888214 cites W2082265359 @default.
- W2741888214 cites W2087381530 @default.
- W2741888214 cites W2099218365 @default.
- W2741888214 cites W2099753114 @default.
- W2741888214 cites W2147646555 @default.
- W2741888214 cites W2208331752 @default.
- W2741888214 cites W2252233456 @default.
- W2741888214 cites W2272378527 @default.
- W2741888214 cites W2279159495 @default.
- W2741888214 cites W2401346405 @default.
- W2741888214 cites W2434770025 @default.
- W2741888214 cites W2465372572 @default.
- W2741888214 cites W2513911424 @default.
- W2741888214 cites W821768477 @default.
- W2741888214 cites W843007777 @default.
- W2741888214 doi "https://doi.org/10.1016/j.applthermaleng.2017.07.179" @default.
- W2741888214 hasPublicationYear "2017" @default.
- W2741888214 type Work @default.
- W2741888214 sameAs 2741888214 @default.
- W2741888214 citedByCount "2" @default.
- W2741888214 countsByYear W27418882142020 @default.
- W2741888214 countsByYear W27418882142023 @default.
- W2741888214 crossrefType "journal-article" @default.
- W2741888214 hasAuthorship W2741888214A5018174950 @default.
- W2741888214 hasAuthorship W2741888214A5021292718 @default.
- W2741888214 hasAuthorship W2741888214A5030218222 @default.
- W2741888214 hasAuthorship W2741888214A5063438843 @default.
- W2741888214 hasConcept C121332964 @default.
- W2741888214 hasConcept C127413603 @default.
- W2741888214 hasConcept C133347239 @default.
- W2741888214 hasConcept C147534773 @default.
- W2741888214 hasConcept C150394285 @default.
- W2741888214 hasConcept C159985019 @default.
- W2741888214 hasConcept C162711632 @default.
- W2741888214 hasConcept C178790620 @default.
- W2741888214 hasConcept C185592680 @default.
- W2741888214 hasConcept C192562407 @default.
- W2741888214 hasConcept C42360764 @default.
- W2741888214 hasConcept C43617362 @default.
- W2741888214 hasConcept C58445606 @default.
- W2741888214 hasConcept C97355855 @default.
- W2741888214 hasConceptScore W2741888214C121332964 @default.
- W2741888214 hasConceptScore W2741888214C127413603 @default.
- W2741888214 hasConceptScore W2741888214C133347239 @default.
- W2741888214 hasConceptScore W2741888214C147534773 @default.
- W2741888214 hasConceptScore W2741888214C150394285 @default.
- W2741888214 hasConceptScore W2741888214C159985019 @default.
- W2741888214 hasConceptScore W2741888214C162711632 @default.
- W2741888214 hasConceptScore W2741888214C178790620 @default.