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Oven, ovens

In order to answer these questions, the kinetic and network structure models were used in conjunction with a nonlinear least squares optimization program (SIMPLEX) to determine cure response in "optimized ovens ". Ovens were optimized in two different ways. In the first the bake time was fixed and oven air temperatures were adjusted so that the crosslink densities were as close as possible to the optimum value. In the second, oven air temperatures were varied to minimize the bake time subject to the constraint that all parts of the car be acceptably cured. Air temperatures were optimized for each of the different paints as a function of different sets of minimum and maximum heating rate constants. [Pg.268]

C. Methyl 3,3-dimethyl-4-oxobutanoate (3). A 50-mL flask, connected to a gas bubbler and equipped with a magnetic stirring bar, is charged with 20 mL of dichloromethane (or tetrahydrofuran), 2.16 g (10.0 mmol) of siloxycyclopropane 2 and 3.64 g (30.0 mmol) of triethylamine hydrofluoride (NEt3-HF) prepared in situ (Note 15). This mixture is stirred for 1 hr at room temperature (Note 16) and diluted with 20 mL of water. The aqueous phase is extracted with three 20-mL portions of dichloromethane. The combined organic phases are dried with magnesium sulfate, filtered, and concentrated on a rotary evaporator (bath temperature below 40°C). Crude product 3 is distilled with a Kugelrohr oven (oven temperature 105°C, 10 mm) to provide 1.26 g (87%) of pure 3 as a colorless liquid (Note 17). [Pg.232]

Drenching, spraying and dipping offer the advantages of varying contact times and concentrations to suit a specific product. These are more cost-effective methods because of the opportunity to recycle and reuse the smoke flavouring. Also, since smoke is applied to the product before it goes into the oven, oven cleanup costs are minimised. [Pg.304]

Tubular Ovens - Ovens that have cylindrical shapes. [Pg.546]

If splitting is desirable the films are often slit into a number of tapes before stretching in ordef to minimise transverse orientation during stretching. The distance between the feeding and traction rolls is increased to a few metres and the film is heated in infra-red ovens or, more often, in hot air circulating ovens. Ovens with a symmetrical air circulation have a certain advantage over ovens with an asymmetrical circulation. ... [Pg.439]

Oven drying (hydration stoppage) Removal of water from hydrated samples by circulating a warm, dry air flow through the oven. Oven temperatures are between 60 and 105°C. Drying is considered complete when the sample reaches constant mass. [Pg.506]

At low pressures, it is often permissible to neglect nonidealities of the vapor phase. If these nonidealities are not negligible, they can have the effect of introducing a nonrandom trend into the plotted residuals similar to that introduced by systematic error. Experience here has shown that application of vapor-phase corrections for nonidealities gives a better representation of the data by the model, oven when these corrections... [Pg.106]

The composition of coal tar varies with the carbonization method but consists, largely, of mononuclear and polynuclear aromatic compounds and their derivatives. Coke oven tars are relatively low in aliphatic and phenolic content while low-temperature tars have much higher contents of both. [Pg.103]

A bitumen sample is oxidized at high temperature under well defined conditions and its physical characteristics are measured before and after this artificiai ageing process. The method is defined in France as AFNOR T 66-032 and in the USA by ASTM D 2872 (Rolling Thin-Film Oven Test). [Pg.290]

RTFOT rolling thin film oven test... [Pg.503]

Figure B2.5.12 shows the energy-level scheme of the fine structure and hyperfme structure levels of iodine. The corresponding absorption spectrum shows six sharp hyperfme structure transitions. The experimental resolution is sufficient to detennine the Doppler line shape associated with the velocity distribution of the I atoms produced in the reaction. In this way, one can detennine either the temperature in an oven—as shown in Figure B2.5.12 —or the primary translational energy distribution of I atoms produced in photolysis, equation B2.5.35. Figure B2.5.12 shows the energy-level scheme of the fine structure and hyperfme structure levels of iodine. The corresponding absorption spectrum shows six sharp hyperfme structure transitions. The experimental resolution is sufficient to detennine the Doppler line shape associated with the velocity distribution of the I atoms produced in the reaction. In this way, one can detennine either the temperature in an oven—as shown in Figure B2.5.12 —or the primary translational energy distribution of I atoms produced in photolysis, equation B2.5.35.
In most laboratories, drying ovens maintained at about 50° are available for the final drying of glass apparatus of all kinds. [Pg.40]

Dissolve 8 8 g. (9 0 ml.) of cyclohexanone in 50 ml. of glacial acetic acid, add 8 ml. of phenylhydrazine, and boil the solution under reflux for 5 minutes. Cool the solution, when the tetrahydrocarbazole will crystallise out. Filter at the pump, drain well, and recrystallise either from aqueous ethanol or (better) from aqueous acetic acid. The recrystallisation should be performed rapidly, for the tetrahydrocarbazole undergoes atmO" spheric oxidation in hot solutions after recrystallisation, the compound should be dried in a vacuum desiccator and not in an oven. Repeated recrystallisation should be avoided. The tetrahydrocarbazole, after thorough drying, is obtained as colourless crystals, m.p. 118° yield of recrystallised material, 11 g. [Pg.295]

Many chloroplatinates separate from aqueous solution with water of crystallisation. If this is suspected, the chloroplatinate should be dried to constant weight in the oven before analysis, to ensure elimination of water of crystallisation. Aniline, p-toluidine and pyridine all give anhydrous chloroplatinates, and can be conveniently used in the above determination no attempt should be made to recryrtallise their chloroplatinates. [Pg.450]


See other pages where Oven, ovens is mentioned: [Pg.181]    [Pg.55]    [Pg.340]    [Pg.24]    [Pg.191]    [Pg.64]    [Pg.330]    [Pg.595]    [Pg.24]    [Pg.442]    [Pg.55]    [Pg.340]    [Pg.24]    [Pg.191]    [Pg.64]    [Pg.181]    [Pg.330]    [Pg.595]    [Pg.24]    [Pg.442]    [Pg.81]    [Pg.88]    [Pg.103]    [Pg.106]    [Pg.326]    [Pg.385]    [Pg.28]    [Pg.73]    [Pg.1914]    [Pg.2390]    [Pg.2760]    [Pg.347]    [Pg.19]    [Pg.112]    [Pg.259]    [Pg.420]    [Pg.422]    [Pg.422]    [Pg.424]    [Pg.446]    [Pg.449]    [Pg.468]    [Pg.470]    [Pg.472]   
See also in sourсe #XX -- [ Pg.69 , Pg.120 , Pg.122 , Pg.130 , Pg.201 , Pg.206 , Pg.216 , Pg.218 , Pg.219 , Pg.291 , Pg.292 , Pg.295 , Pg.296 ]




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Acid Digestion Using Microwave Oven

Aerosol Oven Cleaner

Aerosol Oven Release

Ageing ovens

Aging oven-accelerated

Aging test, oven

Air impingement ovens

Air-Flow Oven

Air-oven test

Annealing oven

Asphalt thin-film oven test

Atomic oven

Baking oven, three-tier tortilla

Baking ovens

Band drying oven

Batch ovens

Beehive oven

Binder oven

Broida oven

Byproducts coke oven battery

Byproducts coke oven battery heating walls

Byproducts coke oven battery ovens

Cereal oven-puffed

Coke oven benzole

Coke oven emissions

Coke oven emissions, carcinogenic

Coke oven gas

Coke oven gas, purification

Coke oven light oils

Coke oven, benzene

Coke oven, benzene release

Coke oven, construction

Coke ovens

Coke ovens, Semet—Solvay

Coke-oven charges

Coke-oven workers

Coking oven gas

Column Oven Temperature Control

Column oven

Column oven, supercritical fluid

Column oven, supercritical fluid Columns

Column oven, supercritical fluid chromatography

Column oven, test

Continuous process drying ovens

Convection ovens

Convection ovens limitations

Convection soldering oven

Conventional oven, heating

Cookies ovens

Cryogenic oven trapping

Cure, oven optimization

Curing ovens

Cylindrical rotary ovens

Deck ovens

Density oven-dry

Domestic MW oven

Domestic microwave oven

Domestic ovens

Dryers ovens

Drying oven

Drying ovens contact

Drying ovens for

Drying ovens tunnel

Drying vacuum oven

Dual Ovenables

Dual ovenable containers

Dual-ovenable tray

Dutch oven

Effect of Oven Temperature Ramp Rate

Effusive oven

Electric ovens

External Thermal Oven

Extraction Vessel and Oven

Festooning oven

Flash-drying oven

Forced air convection ovens

Furnace, Kiln, and Oven Heat Losses

Furnaces and ovens

Furnaces ovens

Gas convection oven

Graphite oven

Hazards and Precautions in the Use of Microwave Ovens

Heat Saving in Direct-Fired Low-Temperature Ovens

Heat-pipe oven

Heavy Duty Oven Cleaner

High Caustic Oven Cleaner

High-performance liquid chromatography column ovens

Hot-air ovens

How fast does the air in an oven warm up

Hybridization ovens

Impingement ovens

Influence of Hydrocarbon Partial Pressure in the Cracking Oven

Infrared ovens

Knudsen oven

Long Oven Cycle

MICROWAVE OVEN HEATING

Microwave Ovens and Reactors - Background

Microwave drying oven

Microwave oven checking

Microwave oven components

Microwave oven digestion

Microwave oven effect

Microwave oven extraction

Microwave oven field distribution

Microwave oven mode stirrer

Microwave oven retrieval

Microwave oven synthesis

Microwave oven technique

Microwave oven, holes

Microwave ovens

Microwave ovens, and

Microwave-assisted organic synthesis domestic ovens

Microwave-oven market

Microwaves microwave oven

Mobile phase oven, column

Modified commercial microwave ovens

Modified domestic oven

Multimode microwave ovens

Non-Caustic Oven Cleaner

OVEN STABILITY

Of column oven

Oven Emissions

Oven Temperature Programming

Oven ageing insulation

Oven ageing test

Oven aging

Oven aging technique

Oven cleaners

Oven cleaners, chemicals

Oven cycle optimization

Oven dried pulp

Oven dry soil

Oven drying study

Oven drying systems

Oven dwell time

Oven effect

Oven forming

Oven heating

Oven heating temperature distribution

Oven panels

Oven predrying

Oven reflow soldering

Oven safety

Oven spring

Oven sterilization

Oven sterilization stages

Oven storage test

Oven temperature

Oven temperature control

Oven temperature control chromatography

Oven temperature control considerations

Oven temperature control isothermal operation

Oven temperature control separations

Oven temperature control, subambient

Oven temperature oxidation

Oven temperature products

Oven temperature profiles, for

Oven temperature ramp rates

Oven temperature, variations

Oven thermostats

Oven, Grill and Drain Cleaners

Oven, self-cleaning

Oven, wood chips

Oven-baked products

Oven-cured system

Oven-gas

Oven-puffed

Oven-rise recorders

Ovenable Tray

Ovens

Ovens

Ovens for Oxidation

Ovens, supercritical fluid chromatography

Packaging dual-ovenable tray

Paint drying ovens

Paraffin Embedding in Vacuum-Microwave Oven

Pitch coking in horizontal chamber ovens

Polypropylene oven ageing

Post cure oven

Process equipment ovens

Rack ovens

Rapid Staining of Thin Resin Sections in Microwave Oven

Rates oven, warming

Recirculating oven

Reflow oven

Rocking oven machine

Rolling thin film oven test

Rotary oven, continuous

Rotospeed rocking oven machine

Samples oven dried

Schaal oven test

Sekisui foaming oven

Sekisui foaming oven for polyolefin foams

Self-cleaning of Ovens

Sintering ovens

Standard Test Method for Thermal-Oxidative Stability of Polypropylene Using a Specimen Rotator Within an Oven

Temperature column oven

Temperature inside oven

Tenter dryer oven

The Amount of Air in Oven-Dry Wood

The Column Oven

The valve oven

Thermostatically controlled oven

Thin-film oven test

Thin-film oven test (AASHTO

Travelling ovens

Trim Article and Fully Cure Molding in Oven

Tube oven

Tunnel oven process

Tunnel ovens

Use of Robax as Oven and Fireplace Sight Panels

Vacuum oven

Volatilization oven-dried” calculations

Why does a sausage become warm when placed in an oven

Why does food get hot in a microwave oven

Wood, Paper, Before Bonding, Ovens

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