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Heating fabrics

Nylon. Nylons comprise a large family of polyamides with a variety of chemical compositions (234,286,287). They have excellent mechanical properties, as well as abrasion and chemical resistance. However, because of the need for improved performance, many commercial nylon resins are modified by additives so as to improve toughness, heat fabrication, stabiUty, flame retardancy, and other properties. [Pg.421]

General-Purpose Polystyrene. Polystyrene is a high molecular weight M = 2 — 3 x 10 ), crystal-clear thermoplastic that is hard, rigid, and free of odor and taste. Its ease of heat fabrication, thermal stabiUty, low specific gravity, and low cost result in mol dings, extmsions, and films of very low unit cost. In addition, PS materials have excellent thermal and electrical properties that make them useful as low cost insulating materials (see Insulation, ELECTRIC Insulation, thermal). [Pg.505]

Another possible method of hot mercerization consists of wet-in-wet impregnation of fabric immediately after washing at 95 C and a subsequent hot squeezing with high speed steam injected. The heated fabric is then impregnated with caustic solution at 30 C in the first step and 20 C in the second step. These offer the stabilisation. Sequence is normally carried out under tension controlled condition. [Pg.307]

MAJOR APPLICATIONS At present there are no commercial applications for polypyrrole. It does show potential for use in display devices, chemical sensors, electrodes in batteries, drug carriers, heating fabrics, deionizers, and as a catalyst. [Pg.810]

PROPERTIES OF SPECIAL INTEREST Crystal clear thermoplastic, hard, rigid, free of odor and taste, ease of heat fabrication, thermal stability, low specific gravity, excellent thermal and electrical properties for insulating purpose, and low cost. [Pg.829]

Textile electronics is another exciting area of apphcation. Fibrous diodes and transistors have already been developed in different laboratories. Flexible sensors and actuators (textile displays, heating fabrics) will in the future be part of our clothes, car interiors and home textiles. Therefore, flexible textile-based electronic circuits will be fully integrated to fabrics and connected to databases and servers making possible new ways to utilize clothing and other textiles. [Pg.4]

Hamdani, S., Potluri, P., Fernando, A., 2013. Thermo-mechanical behavior of textile heating fabric based on silver coated polymeric yam. Materials 6, 1072—1089. [Pg.28]

Figure 6.3 Flexible polymer-based heated fabric by EX02. Figure 6.3 Flexible polymer-based heated fabric by EX02.
Sometimes black polyester yams are used, because the colour black is known for its ability to retain heat, which is needed for heating fabrics. The heating elements would produce heat at certain areas in the fabric, and in non-heating areas, the heat is retained by the black polyester yams. This translates to fewer heating elements and less power consumption of the fabric. In other cases, a combination of colours can be used in... [Pg.122]

The main applications of polymer-based heating systems include heated gloves and heated fabrics. [Pg.128]

Heating fabrics have been developed with heating elements knitted with FabRoc yam for the number of different applications. In the example given in Figure 6.18 four heater elements are used for heating. [Pg.129]

Figure 6.18 Heated fabric square-boxed design. Figure 6.18 Heated fabric square-boxed design.
Influence of functional treatments of textiles on the heat and moisture transfer process, such as waterproof fabric, moisture management treatment, PCM coating and heating fabrics. [Pg.189]


See other pages where Heating fabrics is mentioned: [Pg.153]    [Pg.419]    [Pg.421]    [Pg.419]    [Pg.421]    [Pg.505]    [Pg.27]    [Pg.24]    [Pg.253]    [Pg.161]    [Pg.1173]    [Pg.144]    [Pg.5195]    [Pg.7864]    [Pg.22]    [Pg.269]    [Pg.118]    [Pg.129]    [Pg.129]    [Pg.131]   
See also in sourсe #XX -- [ Pg.269 , Pg.270 ]




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