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Curing process alloy

Sodium nitrate is also used in formulations of heat-transfer salts for he at-treatment baths for alloys and metals, mbber vulcanization, and petrochemical industries. A mixture of sodium nitrate and potassium nitrate is used to capture solar energy (qv) to transform it into electrical energy. The potential of sodium nitrate in the field of solar salts depends on the commercial development of this process. Other uses of sodium nitrate include water (qv) treatment, ice melting, adhesives (qv), cleaning compounds, pyrotechnics, curing bacons and meats (see Food additives), organics nitration, certain types of pharmaceutical production, refining of some alloys, recovery of lead, and production of uranium. [Pg.197]

Proof Casting of Dies and Molds. Low melting alloys make the process of diemaking faster and easier. The low temperature alloys can be cast into a mold pattern at virtually any point in the manufacturing process without long delays in production and without the possibility of heat distortion. These alloys produce a casting that is exact in detail, requires no curing time, and is completely reusable. [Pg.125]

This system involves the use of some form of heating by air or steam in a chamber in a manner such that the vulcanization occurs immediately after the rubber is formed in an extruder or calender. This is a suitable process for extruded profiles and calendered sheets and conveyor belts. Liquid curing method (LCM) is also a continuous process which involves the use of suitable hot liquid baths in which extruded profiles can be passed through and vulcanized continuously. Items can be cured rapidly at temperatures from 200°C to 300°C however the compounds must be suitably designed to prevent porosity as this is a common problem with any extrudate. Suitable materials for curing medium includes bismuth-tin alloys, an eutectic mixture of potassium nitrate and... [Pg.180]

Acrylic resins - [MAGNESIUMAND MAGNESIUM ALLOYS] (Vol 15) - [COATING PROCESSES - POWDER TECHNOLOGY] (Vol 6) -photocuring [RADIATION CURING] (Vol 20) -plasticization of [PLASTICIZERS] (Vol 19) -thiols m [THIOLS] (Vol 24)... [Pg.12]

F-treated intermetallics exhibit extremely high reactivity and selectivity to H2, even in CO and CO2 atmospheres. The treatment behaves as a curing effect of the external surface and creates a fluoride-rich layer with a Ni-enriched subsuperficial layer. The hydriding behavior is increased by the presence of microcracks running through the external layer the initial activation process is enhanced, even for Mg-based alloys. In addition, a protective effect is observed since the samples can be safely stored in air for long time without degradation or surface reactivity [116]. [Pg.483]

Batteries intended to be used within 2 or 3 months after manufacture are produced with lead—ealeium—tin alloys, filled with electrolyte and ready for use. In this case, the technological scheme in Fig. 2.52 is modified. The tank formation and plate drying steps are eliminated and plate curing is followed by battery assembly, the formation process being completed in the battery itself. [Pg.110]


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See also in sourсe #XX -- [ Pg.97 ]




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