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Tires sidewalls

Blends of halogenated butyl mbber are used in tire sidewalls and tread compounds (97). In sidewalls, ozone resistance, crack cut growth, and... [Pg.486]

Resistances to ground were measured for a small van with four tread 4 polyester, 2 nylon ply tires (sidewall 6 polyester plies) showing the effect of ground surface [107]. The resistance at a source potential of 50 V was mea-... [Pg.216]

N330 82 102 Tire treads, tire carcasses (blended with less active carbon blacks), tire sidewalls, mechanical rubber goods... [Pg.167]

Tire sidewall rubber Real or plastic turquoise ... [Pg.451]

Hypalon . [DuPont DuPont UK] Cfalorosulfonated ptriyethylene elastomer used in jadeking aiiid insulation for wire/cable, soles and beds, automotive conqronents, coated fabrics, wh. tire sidewalls, sheet roofing, coatings, hose, linings. [Pg.178]

Neoprene. [DiiPont DuPont UK] Poly-chloroprene versatile synthetic rubber fw wire/cable industrial hose and belting automotive gaskets, seals, hose tire sidewalls molded and extruded goods cellular prods. adhesives, sealants, and protective coatings for shoe, home crafts, sporting goods. [Pg.247]

Royalene . [Uniroyal Uniroyal Chem. Ltd.] En3Mterpolymers us f(awire and cable, sponge, automotive weatherstrip, mechanical goods, coated fabrics, cellular goods, tire sidewalls, blending. [Pg.320]

The cross section of a passenger car tire has two main components, tread and sidewaU. Passenger car tire treads are reinforced with steel belts, whereas only liners support the sidewalls, as shown in Fig. 2. The strength of the tread is generally greater than the tire sidewall. [Pg.187]

Although the standard test conditions arc arbitrary, they were generally chosen to represent the deformations met in service. The bending and compression shear rubber tests correspond to tire sidewall flexing and the bulk deformations of a tire respectively. Other bending tests were intended to relate to the flexing of shoe materials or belting, and... [Pg.246]

Calcium carbonate is used as a low-cost filler in rubber products for static applications such as carpet underlay. Titanium dioxide finds extensive use in white products such as white tire sidewalls where appearance is important. [Pg.444]

Ultraviolet light initiates free radical oxidation at the exposed surface of an elastomeric product to generate a layer of oxidized rubber. Heat, moisture, or high humidity can then initiate crazing of the surface, which subsequently can be abraded off. Such degradation of the surface is more severe with nonblack stocks than with black compounds. Nonblack compounds such as white tire sidewalls thus require higher levels of nonstaining antioxidants than carbon black-loaded formulations. [Pg.445]

Natural rubber and polybutadiene blends tend to be used in tire sidewalls, which undergo flexing, and in tire treads, which have a lug pattern and contain high-stress zones at the base of the tread blocks. [Pg.446]

Multiple notable reviews of elastomer blends exist. The first general treatment of the subject by Hess et al. (1993) reviews the applications, analysis, and the properties of the immiscible elastomer blends. Two related treatments by Roland (1989) and Ngai and Roland (2004) exist and describe the physics of mixing immiscible polymer blends and a more recent account of the analytical methods. Mangaraj (2002) has a more detailed review of elastomer blends. Other reviews by Corish (1978) and McDonel et al. (1978) deal with specific aspects of elastomer blends. A publication by Zhang (2009) on specific EPDM blends with NR/BR for tire sidewall approaches this area from the view of a specific application. Less comprehensive accounts of this area are also described for polyolefin elastomer blends by Slusarski et al. (2003) and Feldman (2005). [Pg.552]

Lateral runout Difference between the maximum and minimum measurements parallel to the spin axis at the widest point of each tire sidewall when the tire is mounted on a wheel. [Pg.686]

Uses Chlorosulfonated PE in jacketing and insulation tor wire/cable, soles and heels, automotive components, coated fabrics, wh. tire sidewalls, sheet rooting liners and covers for reservoirs and waste containment ponds, protective and decorative coatings, hose, linings for chemicals processing equipment, industrial rolls, seals, gaskets, and diaphragms Features n. elastomer resist, to weather, ozone, oil, soivs., chemicals, heat, flame, and abrasion Properties Wh. chips. [Pg.419]

Uses Polychloroprene for wire/cable, hose, gaskets, seals, tire sidewalls, molded/extruded goods, cellular prods., adhesives, sealants, protective coatings, adhesive cements... [Pg.563]

Uses Polychloroprene for wire/cable, hose, gaskets, seals, tire sidewalls. [Pg.564]

Uses Polychloroprene for extruded goods requiring ultimate in surface appearance, for smooth calendered items needing to resist shrinkage, for wire/cable, hose, gaskets, seals, tire sidewalls, molded goods, cellular prods., adhesives, sealants, protective coatings Properties Lt. amber to creamy wh. chips Mooney vise. 43-52 (ML1 +4, 212 F)... [Pg.564]

Definition Elastomer vulcanized by sulfur systems vulcanizate offers low gas permeability, good weather/ozone resist., better chem./heat resist, than butyl rubber contains 1-2% chlorine Uses Rubber for tire inner tubes/liners, tire sidewalls, pharmaceutical stoppers, conveyor belts/hoses, anti vibration mounts, food/drug seals, adhesives in closure-sealing gaskets for food containers... [Pg.2205]

Part II Function/Application Index rubber, tire sidewalls... [Pg.5627]


See other pages where Tires sidewalls is mentioned: [Pg.2805]    [Pg.249]    [Pg.238]    [Pg.506]    [Pg.324]    [Pg.480]    [Pg.249]    [Pg.238]    [Pg.247]    [Pg.383]    [Pg.133]    [Pg.304]    [Pg.1295]    [Pg.3481]   
See also in sourсe #XX -- [ Pg.434 ]




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