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Nickel cathodes, cadmium coated

Quite recently, Troupel et al. have developed an effective synthesis of gem-difluoro-/ -oxonitriles using an electrogenerated base derived from phenyl bromide and a sacrificial magnesium anode together with a nickel cathode coated with a small deposit of cadmium as shown in Scheme 4.5 [34]. [Pg.22]

Electrophoresis coating Molybdenum Nickel Aluminum Cadmium Chromium Copper Brass Gold Silver Noble/cathodic Noble/cathodic Anodic Anodic Noble/cathodic Noble/cathodic Noble/cathodic Noble/cathodic Noble/cathodic 1-10 25.4-255 0.25 6.5 0.15-0.5 4-12.5 0.005-20 0.15-510 0.01 -30 0.25-760 0.07-0.1 1.8-2.5 0.03-0.8 0.75-20 0.1-1 2.5-25 Small parts... [Pg.354]

Zinc—Nickel. Steel has the best salt spray resistance when the nickel is 12—13% of the alloy. At increasing nickel contents, the deposit becomes more difficult to chromate and more noble, eventually becoming cathodic to steel. At those levels and above, corrosion resistance usually decreases and is dependent on a complete lack of porosity for protection of the steel. In efforts to replace cadmium and nickel—ca dmium diffused coatings in the aircraft industry, 2inc—nickel has insufficient wear properties for some appHcation, but is under study as an undercoat to various electroless nickel top coats (153). [Pg.165]

Rote et al. (1993, 1994) used a carotid thrombosis model in dogs. A calibrated electromagnetic flow meter was placed on each common carotid artery proximal to both the point of insertion of an intravascular electrode and a mechanical constrictor. The external constrictor was adjusted with a screw until the pulsatile flow pattern decreased by 25 % without altering the mean blood flow. Electrolytic injury to the intimal surface was accomplished with the use of an intravascular electrode composed of a Teflon-insulated silver-coated copper wire connected to the positive pole of a 9-V nickel-cadmium battery in series with a 250000 ohm variable resistor. The cathode was connected to a subcutaneous site. Injury was initiated in the right carotid artery by application of a 150 xA continuous pulse anodal direct current to the intimal surface of the vessel for a maximum duration of 3 h or for 30 min beyond the time of complete vessel occlusion as determined by the blood flow recording. Upon completion of the study on the right carotid, the procedure for induction of vessel wall injury was repeated on the left carotid artery after administration of the test drug. [Pg.285]

By providing a barrier between the substfate and the environment, or by cathodically protecting the substrate, metallic coatings protect the substrate from corrosion. Coatings of chromium, copper, and nickel provide increased wear resistance and good corrosion resistance. However, these noble metals make the combination of the substrate (mostly steel or an aluminum alloy) with the protective layer sensitive to galvanically induced local corrosion. Nonnoble metallic layers such as zinc or cadmium provide good cathodic protection but show poor wear resistance. [Pg.363]


See other pages where Nickel cathodes, cadmium coated is mentioned: [Pg.245]    [Pg.1251]    [Pg.75]    [Pg.334]    [Pg.182]    [Pg.556]    [Pg.344]    [Pg.100]    [Pg.1900]    [Pg.326]    [Pg.828]    [Pg.269]    [Pg.393]    [Pg.828]   
See also in sourсe #XX -- [ Pg.1251 ]




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Cadmium cathodes

Cadmium coatings

Cathode coatings

Coated cathodes

Nickel-cadmium

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