Thermal and sound insulation properties of chiengora blended nonwoven fabrics

被引:0
|
作者
Surjit, R. [1 ]
Murugan, R. [2 ]
Karthik, T. [2 ]
机构
[1] PSG Coll Technol, Dept Fash Technol, Coimbatore 641004, Tamil Nadu, India
[2] PSG Coll Technol, Dept Text Technol, Coimbatore 641004, Tamil Nadu, India
关键词
Chiengora/polyester fabric; Noise reduction coefficient; Nonwoven fabric; Sound insulation; Thermal insulation; Wool/polyester fabric; FIBERS; WOOL;
D O I
暂无
中图分类号
TB3 [工程材料学]; TS1 [纺织工业、染整工业];
学科分类号
0805 ; 080502 ; 0821 ;
摘要
A novel animal fibre chiengora has been explored for its potential application in textile. Chiengora fibres are made into nonwoven fabrics by blending with polyester fibre in different proportions for their better strength. Nonwoven fabrics are also produced from wool and polyester blends in different proportions for comparison. Hair of Lhasa Apso breed dog is chosen to blend with polyester to produce the nonwoven fabric and is analysed for its thermal and sound insulation characteristics. It is observed that 100% chiengora nonwoven fabric has thermal insulation value of 0.211 clo which is 42% higher than that of 100% wool nonwoven fabric (0.121 clo). The 70:30 chiengora/polyester fabric shows a thermal insulation values of 0.141 do which is higher than 100% wool nonwoven fabric. The chiengora nonwoven fabrics also possess similar sound insulation properties like wool [noise reduction coefficient value (NRC) of 0.23 for chiengora and 0.22 for wool]. The increase in the chiengora and wool content in the blends reduces the tensile strength, tear strength and air permeability of the nonwoven fabrics. It is concluded that the chiengora blended nonwoven fabrics could be used as an effective padding material because of their better thermal insulation and sound absorption properties.
引用
收藏
页码:306 / 313
页数:8
相关论文
共 50 条
  • [21] An investigation in structural parameters of needle-punched nonwoven fabrics on their thermal insulation property
    L. Raeisian
    Z. Mansoori
    R. Hosseini-Abardeh
    R. Bagherzadeh
    [J]. Fibers and Polymers, 2013, 14 : 1748 - 1753
  • [22] An Investigation in Structural Parameters of Needle-Punched Nonwoven Fabrics on Their Thermal Insulation Property
    Raeisian, L.
    Mansoori, Z.
    Hosseini-Abardeh, R.
    Bagherzadeh, R.
    [J]. FIBERS AND POLYMERS, 2013, 14 (10) : 1748 - 1753
  • [23] Thermal comfort properties of nonwoven fabrics used in surgical gowns
    Eryuruk, S. H.
    Kayaoglu, B. Karaguzel
    Altay, P.
    [J]. AEGEAN INTERNATIONAL TEXTILE AND ADVANCED ENGINEERING CONFERENCE (AITAE 2018), 2018, 459
  • [24] Sound-Absorption Properties of Kapok Fiber Nonwoven Fabrics at Low Frequency
    Liu, Xueting
    Yan, Xiong
    Li, Li
    Zhang, Huiping
    [J]. JOURNAL OF NATURAL FIBERS, 2015, 12 (04) : 311 - 322
  • [25] Sound Absorption Properties of Polyester Fibers Needle-punched Nonwoven Fabrics
    Guan, Ketian
    Zhuang, Xupin
    Jiao, Xiaoning
    Li, Menqin
    Li, Hongjun
    Cheng, Bowen
    [J]. ADVANCED TEXTILE MATERIALS, PTS 1-3, 2011, 332-334 : 1300 - +
  • [26] Influence of the Structure of Woven Fabrics on Their Thermal Insulation Properties
    Matusiak, Malgorzata
    Sikorski, Krzysztof
    [J]. FIBRES & TEXTILES IN EASTERN EUROPE, 2011, 19 (05) : 46 - 53
  • [27] Influence of the structure of woven fabrics on their thermal insulation properties
    Matusiak, Malgorzata
    Sikorski, Krzysztof
    [J]. Fibres and Textiles in Eastern Europe, 2011, 88 (05): : 46 - 53
  • [28] Thermal insulation properties of multifunctional metal composite fabrics
    Roh, Jung-Sim
    Chi, Yong-Seung
    Kang, Tae Jin
    [J]. SMART MATERIALS AND STRUCTURES, 2009, 18 (02)
  • [29] Study on Thermal Insulation Properties of Aluminised Aramid Fabrics
    Cai, Guangming
    Wang, Hao
    Luo, Zhenghua
    Wang, Xin
    [J]. FIBRES & TEXTILES IN EASTERN EUROPE, 2015, 23 (04) : 52 - 56
  • [30] Analysis of physical and thermal properties of chiengora fibers
    Ramamoorthy, Surjit
    Ramadoss, Murugan
    Ramasamy, Rathinamoorthy
    Thangavel, Karthik
    [J]. JOURNAL OF NATURAL FIBERS, 2020, 17 (02) : 246 - 257