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Stripping dynamics

The electron jump mechanism, (see 1), has long been invoked71,2 in a highly simplified manner to explain the stripping dynamics of alkali atom-halogen molecule reactions M + X2. Electron transfer occurs in the entrance valley of the covalent M + X2 potential surface near the intersection with the ionic M+ + X2 potential surface. The M - X2 internuclear distance R at the intersection Rc is roughly estimated... [Pg.304]

Fig. I Echo dynamic curve from lower crack edge of a 10 mm vertical strip-like crack at centre... Fig. I Echo dynamic curve from lower crack edge of a 10 mm vertical strip-like crack at centre...
Rheometric Scientific markets several devices designed for characterizing viscoelastic fluids. These instmments measure the response of a Hquid to sinusoidal oscillatory motion to determine dynamic viscosity as well as storage and loss moduH. The Rheometric Scientific line includes a fluids spectrometer (RFS-II), a dynamic spectrometer (RDS-7700 series II), and a mechanical spectrometer (RMS-800). The fluids spectrometer is designed for fairly low viscosity materials. The dynamic spectrometer can be used to test soHds, melts, and Hquids at frequencies from 10 to 500 rad/s and as a function of strain ampHtude and temperature. It is a stripped down version of the extremely versatile mechanical spectrometer, which is both a dynamic viscometer and a dynamic mechanical testing device. The RMS-800 can carry out measurements under rotational shear, oscillatory shear, torsional motion, and tension compression, as well as normal stress measurements. Step strain, creep, and creep recovery modes are also available. It is used on a wide range of materials, including adhesives, pastes, mbber, and plastics. [Pg.202]

The apex (often referred to as bead filler) compound must be formulated for excellent dynamic stiffness to facilitate stress distribution and provide good car handling properties. The bead insulation compound must possess good adhesion to this most important component for enclosing the pHes of the tire and holding the tine to the rim. The chafer/rim strip compound protects the pHes from rim abrasion and seals the tire to the rim. [Pg.248]

In another case where the twin-screw extruder was used, the rubber and plastic were melt mixed with all ingredients in a similar manner as described in blend compositions for static vulcanizations. The product was then dumped, cooled, and granulated. The premixed granules were then fed into a twin-screw extruder where a very narrow temperature profile was maintained with a relative high compression (2 1), and the screw speed was adjusted depending on the final torque and the flow behavior of the extruded stock. The stock was cured by shear force and temperature enforced by the twin-screw extruder. The dynamically crosslinked blend was taken out in the form of a strip or solid rod to determine the... [Pg.467]

A typical Worthington BDC plate valve in closed position. All passageways, lift clearances, springs and plates have been dynamically designed and individually selected for maximum flow efficiencies. The individual spring plate valve offers both efficiency and reliability advantages over valves that have flexing strips or plates. [Pg.380]

Each process parameter directly affects both the machinery dynamics and the vibration profiles. For example, the line tension, strip width, and hardness of the incoming strip radically affect the vibration profile generated by a continuous process line in a steel mill. With few exceptions, process variations such as these must be considered in the vibration analysis. [Pg.714]

The process of viscoelastic braking just described has certain parallels with the dynamic adhesion of elastomers. When, for example, a rubber strip is peeled from a rigid substrate, the effective, or apparent, work of adhesion, W, is usually much greater than the intrinsic, or reversible, energy of adhesion, Wq, given by the Dupre equation [15] ... [Pg.290]

When a zinc strip is dipped into the solution, the initial rates of these two processes are different. The different rates of reaction lead to a charge imbalance across the metal-solution interface. If the concentration of zinc ions in solution is low enough, the initial rate of oxidation is more rapid than the initial rate of reduction. Under these conditions, excess electrons accumulate in the metal, and excess cationic charges accumulate in the solution. As excess charge builds, however, the rates of reaction change until the rate of reduction is balanced by the rate of oxidation. When this balance is reached, the system is at dynamic equilibrium. Oxidation and reduction continue, but the net rate of exchange is zero Zn (.S ) Zn (aq) + 2 e (me t a i)... [Pg.1379]

An analogous dynamic equilibrium is established when a strip of copper is dipped in a dilute solution of copper suifate Cu (. ) Cu (a q) + 2 e me t a 1) Once again, nothing appears to happen at the macroscopic... [Pg.1380]

GP 1] [R 13] So-called micro-strip electrodes (MSE) can act as electrically steerable catalysts when used to switch on and off the conversion of ammonia at moderate voltages, several hundred volts (6 vol.-% NHj, 88 vol.-% O2, balance He 0.51 ms 260-380 °C) [75]. Thereby, NO formation was observed. By emitting and accelerating electrons in the range of mA cm current density from the solid to the gas phase, radicals were formed, typically much more than the number of released electrons, e.g. 10 radicals per electron. This efficient use of energy is referred to as dynamic catalysis. The gas phase near the electrodes contains hot and cold radicals, thus providing a two-temperature system. [Pg.295]

Gas phase stripping (purge-and-trap) techniques can iaq>rove the yield of organic volatiles from water or biological fluids by facilitating the transfer of volatiles from the liquid to the gas phase it is also more suitable than dynamic headspace sampling when the sample volume is restricted (320 23,347-351). Tbe technique is used routinely in many laboratorl B for the analysis... [Pg.419]

Nitric oxide is dissociatively chemisorbed at Ru(0001) at 295 K, with Zambelli et al.n establishing the role of a surface step in the dynamics of the dissociation process. Figure 8.3 shows an STM image taken 30min after exposure of the ruthenium surface to nitric oxide at 315 K. There is clearly a preponderance of dark features concentrated around the atomic step (black strip), which are disordered nitrogen adatoms, while the islands of black dots further away... [Pg.139]


See other pages where Stripping dynamics is mentioned: [Pg.686]    [Pg.720]    [Pg.721]    [Pg.270]    [Pg.449]    [Pg.467]    [Pg.139]    [Pg.344]    [Pg.346]    [Pg.297]    [Pg.248]    [Pg.254]    [Pg.449]    [Pg.467]    [Pg.344]    [Pg.346]    [Pg.156]    [Pg.49]    [Pg.686]    [Pg.720]    [Pg.721]    [Pg.270]    [Pg.449]    [Pg.467]    [Pg.139]    [Pg.344]    [Pg.346]    [Pg.297]    [Pg.248]    [Pg.254]    [Pg.449]    [Pg.467]    [Pg.344]    [Pg.346]    [Pg.156]    [Pg.49]    [Pg.349]    [Pg.513]    [Pg.90]    [Pg.238]    [Pg.505]    [Pg.506]    [Pg.284]    [Pg.293]    [Pg.319]    [Pg.594]    [Pg.116]    [Pg.53]    [Pg.233]    [Pg.415]    [Pg.418]    [Pg.926]    [Pg.927]   
See also in sourсe #XX -- [ Pg.19 , Pg.49 , Pg.176 ]




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