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Electronic textiles connectors

Flame retardants - [TEXTILES-FINISHING] (Vol 23) - [ALUMENUMCOMPOUNDS - INTRODUCTION] (Vol2) -antimony as [ANTIMONY AND ANTIMONY ALLOYS] (Vol 3) -antimony compds as [ANTIMONY COMPOUNDS] (Vol 3) -antimony compds as [ANTIMONY COMPOUNDS] (Vol 3) -based on ammonium sulfamate [SULFAMIC ACID AND SULFAMATES] (Vol 23) -bromine in [BROMINE] (Vol 4) -in electronic applications [PACKAGING - ELECTRONIC MATERIALS] (Vol 17) -iron fluoride in mfg of [FLUORINE COMPOUNDS, INORGANIC - IRON] (Vol 11) -nickel compounds as [NICKEL COMPOUNDS] (Vol 17) -phosphorus for [PHOSPHORUS] (Vol 18) -polycarbonates in [POLYCARBONATES] (Vol 19) -from propylene oxide [PROPYLENE OXIDE] (Vol 20) -for rubbers [RUBBERCHEMICALS] (Vol 21) -use m electrical connectors [ELECTRICAL CONNECTORS] (Vol 9)... [Pg.404]

Major polymer applications composites, textiles, brush bristles, tire cords, electrical and electronics (connectors, circuit breakers, capacitor housings), automotive (distributor caps, mirror housings, door knobs), housewares, lighting, power tools, sporting goods, plumbing... [Pg.638]

Brominated flame retardants (BFRs) are a structurally diverse group of compounds including aromatics, cyclic aliphatics, phenolic derivatives, ahphatics, and phthahc anhydride derivatives (Figure 31.3). The most common BFRs are tetrabromobisphenol A (TBBPA), polybrominated diphenyl ethers (PBDE), hexabromocyclododecane (HBCD), and polybrominated biphenyls (PBB). The primary use of TBBPA is as reactive additive in epoxy resin circuit boards, while decabromodiphenyloxide (DBDO) is primarily used in high impact polystyrene for electronic enclosures. PBDEs are typically used as the additive type of flame retardant in high impact polystyrene, acrylonitrile butadiene styrene, flexible polyurethane foam, textile coatings, wire and cable insulation and electrical connectors. [Pg.1202]

PIT Trichosporum Arthrobacter, Aspergillus niger, Rhizopus delemar Huang and Byrne (1980), Witt et td. (1995), Nagata et al. (1997), Muller et al. (2001) Carpet fiber, textiles, films, engineering thermoplastics, electronic connectors, wire harnesses Yang et eil. (2002), Chen et eil. (2(X)4), Chuah et al. (2001)... [Pg.8]

This is mainly due to the difficulty and cost in reaching the high standards of flame retardancy required in electronics and building industries with PP compoimds. The cause of this difficulty is the high crystallinity and flammability of PP. FRPP applications are foimd in various fields such as electrical, covering lamp sockets, coil bobbins, connectors, TV yokes and, to a lesser extent wire and cable pipes for water discharge fibres in textile products film and sheets for roofing. [Pg.64]

Various electronic part classifications that can be included in smart textiles are presented below, according to four principal recurring topics peripherals, processing data, connectors and energy. A short description of these components is provided below, in order to better understand the objectives of research undertaken at the present time on the electronics related to oneself. [Pg.6]


See other pages where Electronic textiles connectors is mentioned: [Pg.315]    [Pg.76]    [Pg.77]    [Pg.2091]    [Pg.2]    [Pg.654]    [Pg.27]    [Pg.10]    [Pg.209]    [Pg.177]   
See also in sourсe #XX -- [ Pg.195 , Pg.196 ]

See also in sourсe #XX -- [ Pg.195 , Pg.196 ]




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