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High heat resistivity

Eriedel-Crafts reaction of naphthalene or tetrahydronaphthalene derivatives with those of styrene or alkylbenzenes has been used in the preparation of high viscous fluids for traction drive (195). Similarly, Eriedel-Crafts reaction of tetraline and a-methylstyrene followed by catalytic hydrogenation provided l-(l-decalyl)-2-cyclohexyl propane, which is used as a highly heat resistant fluid (196). [Pg.563]

The materials of constmction of the radiant coil are highly heat-resistant steel alloys, such as Sicromal containing 25% Cr, 20% Ni, and 2% Si. Triethyi phosphate [78-40-0] catalyst is injected into the acetic acid vapor. Ammonia [7664-41-7] is added to the gas mixture leaving the furnace to neutralize the catalyst and thus prevent ketene and water from recombining. The cmde ketene obtained from this process contains water, acetic acid, acetic anhydride, and 7 vol % other gases (mainly carbon monoxide [630-08-0][124-38-9] ethylene /74-< 3 -/7, and methane /74-< 2-<7/). The gas mixture is chilled to less than 100°C to remove water, unconverted acetic acid, and the acetic anhydride formed as a Hquid phase (52,53). [Pg.475]

Most processors of fiber-reinforced composites choose a phenol formaldehyde (phenoHc) resin because these resins are inherently fire retardant, are highly heat resistant, and are very low in cost. When exposed to flames they give off very Htde smoke and that smoke is of low immediate toxicity. PhenoHc resins (qv) are often not chosen, however, because the resole types have limited shelf stabiHty, both resole and novolac types release volatiles during their condensation cure, formaldehyde [50-00-0] emissions are possible during both handling and cure, and the polymers formed are brittle compared with other thermosetting resins. [Pg.19]

Ring Liners. Liners are either cellulose, which readily absorbs water, or ceramic, which does not absorb water or investment Uquid (123). Both are available in many si2es. Ceramic liners are made from fibers of alumino-siUcate glass derived from kaolin. The principal components in the glass are alumina, 47—65 wt %, and siUca, 35—50 wt %. Ceramic liners are highly heat resistant to 1300°C. Reports suggest that the fiber from ceramic ring liners may be a possible health risk (124). [Pg.478]

Polymers with no pretence of high heat resistance but which complement the existing range of thermoplastics used mainly in light engineering application, e.g. phenoxies and aromatic polyesters. [Pg.611]

The high heat resistance produced by adding phenolic resins to solvent-borne CR adhesives is due to the formation of the infusible resinate, which reduces the thermoplasticity of the adhesive and provides good bond strength up to 80°C (Table 11). The resinate also increases the adhesive bond strength development by accelerating solvent release. 4 phr of magnesium oxide for 40 phr of phenolic resin are sufficient to produce a room temperature reaction. A small amount of water (1-2 phr) is necessary as a catalyst for the reaction. Furthermore, the solvent... [Pg.662]

Ethylene-acrylic acid ester copolymerisate, EEA, shows high heat resistance and high elasticity at low temperatures. [Pg.1075]

Those with transparency capabilities provide many different products that include toys, protective shields (high heat resistance, gunfire, etc.), transportation vehicle lighting, camera lenses, eyeglasses, contact lenses, etc. When transparency is needed in conjunction with toughness, plastic materials are the preferred candidates. Add to the capability of providing simple to very complex shapes. [Pg.23]

Polysulfone It is a high performance amorphous plastic that is tough, highly heat resistant, strong and stiff. Products are transparent and slightly clouded amber in color. Material exhibits notch sensitivity and is attacked by ketones, esters, and aromatic hydrocarbons. Other similar types in this group include polyethersulfone, polyphenyl-sulfone, and polyarylsulfone. Use includes medical equipment, solar-heating applications and other performance applications where flame retardance, autoclavability and transparency are needed. [Pg.429]

Alkyd They are easy to mold, have high heat resistance, and excellent electrical performance, and may be light-colored. [Pg.430]

Phenolic resins Good acid resistance, good electrical properties (except arc resistance), high heat resistance Compression molding, continuous lamination... [Pg.440]

It should be noted that fibres with high heat resistance can be also obtained by treating modified fibres of type 6, containing hydroxyimino groups, with Fe3 and Ni2+ salts, which is again explained by the formation of intermolecular chemical bonds. [Pg.105]

Combining the processes of crosslinking and cyclization provides the possibility of obtaining modified PAN fibres which have a very high heat resistance and preserve 95-97% of their strength at 180-200 °C. [Pg.123]

Single-crystal diamond is the ideal material with remarkable optical properties, high heat resistance, extreme hardness, and excellent chemical resistance. But, because of its high cost and size limitation, it is only used in exceptional cases, such as the window... [Pg.414]

Items 1 and 2 are experimentally measurable, but it should be borne in mind that highly heat-resistant seals may come at, or near, their glass transition temperature (Tg) during a cooling event, and the coefficient of thermal expansion changes in this region. [Pg.629]

One of the earliest and most popular systems investigated are the highly heat-resistant poly(w-carborane-siloxane)s. A review of the general literature on the methods used in the synthesis of these materials is reported in the following sections. [Pg.99]

High heat resistance and oil resistance. Self extinguishing. Relatively poor cold performance. High cost. Slightly inferior heat and chemical resistance to the fluorocarbon terpolymers. [Pg.113]

P.O.72 is also recommended for paste- and liquid packaging inks as well as for decorative inks. It exhibits a clean yellowish orange shade, excellent fastness properties and very high heat resistance. [Pg.362]

Similar organic-inorganic systems, which were ultimately crosslinked by sol-gel chemistry, were prepared with cores composed of high- Tg dendrimers [69, 70]. Tough materials with high heat resistance were obtained. Also, coreshell structures were prepared via silylation, or hyrosilylation. The resulting structures were further crosslinked to give supramolecular assemblies [71]. [Pg.135]

CHDM copolyesters containing residues of 2,6-naphthalenedicarboxylate, 4,4 -biphenyldicarboxylic acid and CHDM are reported to exhibit high heat resistance [91]. [Pg.288]

Oligo(organylsilsesquioxanes) and their homo derivatives can be used for the preparation of ladder polymers displaying a very high heat resistance and thermo-oxidative resistance... [Pg.234]


See other pages where High heat resistivity is mentioned: [Pg.295]    [Pg.292]    [Pg.278]    [Pg.307]    [Pg.86]    [Pg.185]    [Pg.272]    [Pg.274]    [Pg.266]    [Pg.566]    [Pg.746]    [Pg.1075]    [Pg.432]    [Pg.659]    [Pg.87]    [Pg.121]    [Pg.26]    [Pg.155]    [Pg.380]    [Pg.99]    [Pg.126]    [Pg.285]    [Pg.301]    [Pg.302]    [Pg.646]    [Pg.18]   
See also in sourсe #XX -- [ Pg.51 ]




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