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Pitching

Crude tar is normally distilled in continuous plant into distillate fractions which can vary in boiling range and in name, leaving pitch as a residue. [Pg.103]

The standard NF T 65-004 classifies the types of composite bitumen it distinguishes three grades of bitumen-tars by their pseudo-viscosities and two grades of bitumen-coal tar pitch by their penetrabilities. [Pg.288]

Figure 9 A five-fold VIGRAL pitch-catch scanning anangement... Figure 9 A five-fold VIGRAL pitch-catch scanning anangement...
Shortcomings of Wang s method like limited pitch of the spiral and blurring in the vertical direction can be improved by the CFBP-algorithm [10], where gaps in the spiral sampling pattern are filled using X-rays measured from the opposite side. [Pg.494]

We recall that, for flat array, the steered angle beam, 9, depends only on ultrasound celerity in the propagation medium, ci, the time delay between each element, 5t, and the pitch element, p, through the relation ... [Pg.822]

The use of Lamb waves offers the possibility of rapid long-range in-service inspection. Receiver and transmitter probes are positioned single sided - access is only required from one side of the specimen - in a pitch-catch-arrangement, the receiver being outside tbe field of the specular reflection. [Pg.845]

Fig.l shows the outline of the experimential device in the pseudo-bonding The specimen of an upper part and a lower part are made with the lathe And V defect (pitch 0 25mm and 0.1 mm in depth) with the lathe shown in Fig.2 was installed on the bonding surface of a lower specimen. The initialized various contact surface are ground... [Pg.849]

Figure C 1.4.7. Spatial variation of the polarization from tire field resulting from two counteriDropagating, circularly polarized fields witli equal amplitude but polarized in opposite senses. Note tliat tire polarization remains linear but tliat tire axis rotates in tire x-y plane witli a helical pitch along tire z axis of lengtli X. Figure C 1.4.7. Spatial variation of the polarization from tire field resulting from two counteriDropagating, circularly polarized fields witli equal amplitude but polarized in opposite senses. Note tliat tire polarization remains linear but tliat tire axis rotates in tire x-y plane witli a helical pitch along tire z axis of lengtli X.
As witli tlie nematic phase, a chiral version of tlie smectic C phase has been observed and is denoted SniC. In tliis phase, tlie director rotates around tlie cone generated by tlie tilt angle [9,32]. This phase is helielectric, i.e. tlie spontaneous polarization induced by dipolar ordering (transverse to tlie molecular long axis) rotates around a helix. However, if tlie helix is unwound by external forces such as surface interactions, or electric fields or by compensating tlie pitch in a mixture, so tliat it becomes infinite, tlie phase becomes ferroelectric. This is tlie basis of ferroelectric liquid crystal displays (section C2.2.4.4). If tliere is an alternation in polarization direction between layers tlie phase can be ferrielectric or antiferroelectric. A smectic A phase foniied by chiral molecules is sometimes denoted SiiiA, altliough, due to the untilted symmetry of tlie phase, it is not itself chiral. This notation is strictly incorrect because tlie asterisk should be used to indicate the chirality of tlie phase and not tliat of tlie constituent molecules. [Pg.2549]

It is available in ultra pure form. Indium is a very soft, silvery-white metal with a brilliant luster. The pure metal gives a high-pitched "cry" when bent. It wets glass, as does gallium. [Pg.116]

Fig. 4.23 Adsorption isotherms of butane vapour at difTerent temperatures on a sample of carbon (prepared by heating a mixture of coke and pitch at 600°C), burnt off by 0.27%. Fig. 4.23 Adsorption isotherms of butane vapour at difTerent temperatures on a sample of carbon (prepared by heating a mixture of coke and pitch at 600°C), burnt off by 0.27%.
Fig. 5.14 Adsorption isotherms of water on carbon in (a) to f) with corresponding isotherms of nitrogen in (a), (c) and (J), and of benzene in (f>). (a) Charcoal (b) active carbon AY8 (c) charcoal A (J) charcoal (e) a coal tar pitch kilned at 1200°C (/) a charcoal (S600H). (Redrawn from the diagrams in the original papers.)... Fig. 5.14 Adsorption isotherms of water on carbon in (a) to f) with corresponding isotherms of nitrogen in (a), (c) and (J), and of benzene in (f>). (a) Charcoal (b) active carbon AY8 (c) charcoal A (J) charcoal (e) a coal tar pitch kilned at 1200°C (/) a charcoal (S600H). (Redrawn from the diagrams in the original papers.)...
Pitch control Pitched blade turbine Pit furnace Pi theorem Pitocin... [Pg.767]

Tracer technology Tracheography Trachoma Track pitch Traction Tractors... [Pg.1005]

Furfuryl alcohol alone, or in combination with other cross-linkable binders such as phenoHc reins, chemical by-products and pitch, catalyzed with acid, gives carbon yields of 35—56%. Furfural together with cyclohexanone, pitch, or phenoHc resins gives, under acid catalysis, yields of 35—55% carbon under basic catalysis yields of 5—50% are achieved. FurfuryHdeneacetone resins (13 and 14), catalyzed by acid or base, give carbon yields of 48—56 and... [Pg.81]

For nosetip materials 3-directional-reinforced (3D) carbon preforms are formed using small cell sizes for uniform ablation and small pore size. Figure 5 shows typical unit cell dimensions for two of the most common 3D nosetip materials. Carbon-carbon woven preforms have been made with a variety of cell dimensions for different appHcations (27—33). Fibers common to these composites include rayon, polyacrylonitrile, and pitch precursor carbon fibers. Strength of these fibers ranges from 1 to 5 GPa (145,000—725,000 psi) and modulus ranges from 300 to 800 GPa. [Pg.5]

Variable Air Flow Fans. Variable air flow fans are needed ia the process iadustry for steam or vapor condensing or other temperature critical duties. These also produce significant power saviags. Variable air flow is accompHshed by (/) variable speed motors (most commonly variable frequency drives (VFDs) (2) variable pitch fan hubs (J) two-speed motors (4) selectively turning off fans ia multiple fan iastaHations or (5) variable exit louvers or dampers. Of these methods, VFDs and variable pitch fans are the most efficient. Variable louvers, which throttle the airflow, are the least efficient. The various means of controlling air flow are summarized ia Table 3. [Pg.111]


See other pages where Pitching is mentioned: [Pg.61]    [Pg.103]    [Pg.106]    [Pg.115]    [Pg.195]    [Pg.316]    [Pg.287]    [Pg.166]    [Pg.169]    [Pg.170]    [Pg.170]    [Pg.472]    [Pg.722]    [Pg.819]    [Pg.822]    [Pg.2465]    [Pg.2544]    [Pg.2565]    [Pg.96]    [Pg.76]    [Pg.232]    [Pg.441]    [Pg.534]    [Pg.607]    [Pg.706]    [Pg.767]    [Pg.767]    [Pg.79]    [Pg.292]    [Pg.338]    [Pg.5]    [Pg.230]    [Pg.108]    [Pg.111]   


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6-45° pitched blade turbine-type impeller

A200 pitch

ACS Symposium Series American Chemical Society: Washington fluorinated-pitch

Active pitches

Adaptive pitch

Additives pitch

Aircraft control systems pitch

Anode binder pitch

Anode binder pitch properties

Anthracene-derived pitch

Anthracene-derived pitch products

Aromatic pitch

Asphalt and pitches

Associated with the Carbonization of Pitch Fibers

Associated with the Preparation of Pitch Precursors

Auger pitch

Beach pitch

Blade pitch

Blade pitch increase

Blade pitch setting

Carbon Fibers from Isotropic Pitch

Carbon Fibers from Pitch

Carbon fabrication from pitch, steps

Carbon fiber pitch-based

Carbon fibers from mesophase pitch

Carbon from anisotropic mesophase pitch

Carbon from isotropic pitch

Carbon pitch workers

Carbon pitch-based

Carbon yield from pitches

Carbonization temperature pitches

Caulking with pitch

Cholesteric liquid crystal pitch dependence

Cholesteric pitch

Cholesteric pitch composition

Cholesteric pitch dependence

Cholesteric pitch temperature

Cholesteric pitch with time, change

Cholesterics pitch

Circular pitch

Coal pitch, roofers

Coal tar pitch volatiles

Coal tar pitch volatility

Coal-derived pitch coke

Coal-tar pitch

Coatings continued pitch

Coatings pitch polyurethane

Coiled coil structures pitch angle

Colored fluorinated pitch

Composition dependence, chiral nematic pitche

Concentration Dependence of the Pitch

Concentration dependence, pitch

Control fan pitch

Controllable-pitch fans

Conveyor pitch

Copper Tough-pitch

Diametrical pitch

Double helix pitch

Electrolytic tough-pitch copper

Elevator pitch

Epoch detection pitch-synchronous analysis

Ethylene tar pitch

Ex-Pitch

Extended pitch

FO and pitch

Fan blade pitch

Fiber Production using a Pitch based Precursor

Fibers from Pitch Fiber spinning

Fibers from isotropic pitches

Fibers pitch-based

Fluorinated pitch

Fluorinated-pitch PTFE)

Fluorinated-pitch chemical crosslinking

Frequency (Pitch)

Gear teeth circular pitch

Gear teeth diametric pitch

Gear teeth pitch diameter

Gear teeth pitch measurements

Glance pitch

Grid hole pitch

Half pitch

Hard carbons pitch-based

Helical pitch

Helicates pitch

Helices pitch

Hole pitch

Impeller pitch blade

Impeller pitched-blade

Impellers pitched blade turbine

Interconnects pitch

Investigation of the Helical Pitch

Isotropic pitch fibers

Isotropic pitch, viscosity-temperature

Isotropic pitch-based carbon fibers

Japan pitch-based carbon fiber

Linear-prediction speech analysis pitch

Liquid crystals pitch length

Liquid fluorinated pitch

Liquid pitch melts

Liquid pitch oil

Long pitch

Longitudinal pitch

Measurement of the Helical Pitch

Mesogenic pitch

Mesophase formation pitch-solvent interactions

Mesophase pitch carbon fiber heat-treatment temperatures

Mesophase pitch carbon fiber properties

Mesophase pitch carbon fiber structure

Mesophase pitch carbon fibers

Mesophase pitch fibers

Mesophase pitch fibre

Mesophase pitch process

Mesophase pitch rheological properties

Mesophase pitch structural models

Mesophase pitch, coalescence

Mesophase pitch, development

Mesophase pitch, processability

Mesophase pitch-based carbon fibers

Mesophase-pitch-precursor

Methods of Measuring the Pitch

Mineral Pitch

Molecular Mass Dependence of the Pitch

Molecular repeat distances and pitches

Molecular weight pitch

Monolith pitch

Mother pitch

Musical pitch

Naphthalene-derived pitch

Naphthol pitch

PITCH fibre

Passive pitches

Pencil pitch

Petroleum pitches

Phase diagram pitch

Physical Properties of Pitch-Based Carbon Fibers

Pine pitch

Pine pitch analysis

Pine root pitch

Pitch

Pitch

Pitch Accents and Boundary tones

Pitch Brewers

Pitch Burgundy

Pitch Control at the Blade Root

Pitch Shift

Pitch accents

Pitch adjustment rate

Pitch and coal tar

Pitch and epoch detection

Pitch angle

Pitch aromaticity

Pitch ash reduction

Pitch based carbon fibers (pbcf)

Pitch biphenyls

Pitch blade turbines

Pitch blending studies

Pitch bond

Pitch carbonization

Pitch change

Pitch characteristic data

Pitch characteristics

Pitch characterization

Pitch chiral nematics

Pitch cholesteric phase

Pitch circle

Pitch coal derived

Pitch coaltar

Pitch coatings

Pitch coke

Pitch coking

Pitch coking in horizontal chamber ovens

Pitch coking value

Pitch color

Pitch composition

Pitch contour

Pitch contour analysis

Pitch contour shape [

Pitch control

Pitch control, additives

Pitch control, minerals

Pitch detection

Pitch detection/tracking

Pitch diameter

Pitch direction

Pitch distillation characteristics

Pitch distribution

Pitch electrically induced change

Pitch emulsions

Pitch epoxy coatings

Pitch feedstock properties

Pitch fibers

Pitch glass transition

Pitch height

Pitch inverse

Pitch inversion

Pitch isotropic

Pitch length

Pitch materials

Pitch mesophase

Pitch of a helix

Pitch of an Organ Pipe

Pitch of cholesteric

Pitch of cholesterics

Pitch of helix

Pitch per turn of helix

Pitch pocket

Pitch precursors

Pitch precursors properties

Pitch precursors solvent extracted

Pitch prill

Pitch problems

Pitch production from petroleum-based

Pitch pyrolysis

Pitch pyrolysis thermogravimetric

Pitch range

Pitch roofers

Pitch roofing

Pitch semi-coke

Pitch shift setting

Pitch shifting

Pitch smarts

Pitch smectic phases

Pitch solubility

Pitch solvent-extracted

Pitch stepped

Pitch studies

Pitch synchronous overlap and add (PSOLA)

Pitch temperature

Pitch terms Links

Pitch to diameter ratio

Pitch unwinding)

Pitch variations

Pitch viscosity pattern

Pitch volatility

Pitch weight

Pitch workers

Pitch, Ashland

Pitch, analysis

Pitch, burning

Pitch, carbon fibres manufactured from

Pitch, cellulose mesophases

Pitch, defined

Pitch, foundations

Pitch, in musical scales

Pitch, tube

Pitch-accent languages

Pitch-band

Pitch-based carbon fibres

Pitch-catch method

Pitch-coke graphite

Pitch-dependent

Pitch-fork bifurcation

Pitch-marking

Pitch-mesophase-coke transformation

Pitch-solvent interactions, effect

Pitch-synchronous overlap and add

Pitch-synchronous speech analysis

Pitch-to-solvent ratio

Pitched blade turbine, flow

Pitched blade turbine, flow simulation

Pitched blade turbine, trailing

Pitched blade turbines

Pitched-blade stirrer

Pitches definition

Pitches determination

Pitches ferroelectric devices

Pitches glass transition temperature

Pitches guest-host effect

Pitches pretreatment processes

Pitches unique properties

Pitches, fibers from

Pitching bacterial contamination

Pitching basics

Pitching rate

Pitching wild yeast contamination

Pitching yeast

Pitching yeast bacterial contamination

Pitching yeast fermentation

Plaster, Pitch

Polymer Carbon from pitch

Preparation of Mesophase Pitches

Pressure chiral nematic pitches

Propagation along the optic axis for wavelengths pitch

Propagation along the optic axis for wavelengths pitch analogy with Darwins dynamical theory of X-ray diffraction

Propeller pitch

Propellers variable-pitch propeller

Reactors pitched blade turbine

Residual pitch

Resins pine pitch

Reverse pitch

Reversed pitch element

Rheology, mesophase pitch

Roofing, pitch workers

Rotated square pitch

Screw flight pitch

Screw pitch

Screw, variable pitch

Short Pitch Chiral Smectic Liquid Crystals or Dopants

Short pitch

Short-pitch chiral nematics

Short-pitch chiral smectics

Sieve tray design hole pitch

Small devices pitch

Smectic spontaneous polarization, pitch

Solubility parameter pitch

Solvent-extracted petroleum pitch

Some factors influencing the pitch

Square pitch

Square pitch extruder screw

Square pitch screw

Square pitched screw

Steeped pitch

Stirred reactors, with pitched

Stirred reactors, with pitched blade turbine

Structure of Mesophase-Pitch Carbon Fibers

Structure of Pitch Precursor

Surface Treatment of Pitch based Carbon Fibers

Synthetic aromatic pitch

Talc for pitch control

Tall oil pitch

Tars and pitches

Temperature Dependence of the Pitch

Temperature chiral nematic pitches

Thermosetting of mesophase pitch

Thread pitch diameter

Time and Pitch scale modification of audio signals

Track pitch

Track-Level Key Changes (Pitch Shift)

Transformation diagram pitch

Transverse pitch

Triangular pitch

Tube pitch, heat exchanger

Ultra-fine pitch applications

Variable decreasing pitch

Variable pitch

Variable pitch extruder screw

Variable pitch fan

Variable reducing pitch screw

Viscosity, temperature dependence pitches

Voice pitch

White pitch

Wood pitch

Worm gears pitch

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