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Easy-to-clean cooking surface and electric household appliance comprising same.

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Food cooking surface for kitchen utensils or cooking appliances, characterised in that the cooking surface is a metallic compound containing, by weight, at least 50% cobalt and at least 18% chromium. Advantageously, the compound comprises at least 5% of one or more metals from tungsten, nickel and molybdenum.

Easy-to-Clean Cooking Surface and Electrical Household Appliance Comprising same.

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Food cooking surface for a kitchen utensil or a cooking appliance, characterized in that said cooking surface is a compound prepared from an alloy whereof the main constituents are zirconium and cobalt.

Easy-to-clean cooking surface and electrical household appliance comprising same.

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Food cooking surface for a kitchen utensil or a cooking appliance, characterized in that said cooking surface is a compound prepared from an alloy whereof the main constituents are zirconium and cobalt.

Easy-to-clean surfaces

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Brillux polyurethane powder coatings are shown to be readily cleanable when a proprietary additive is included. Details are given of the so-called soot cleanability test with photos showing test panels. Full details of test procedure are given and applications include exterior architectural cladding, outdoor furniture, garden tools and medical fixtures.

Easy-to-clean, mechanically stable coating composition for metallic surfaces with increased chemical resistance and process for coating a substrate using said composition.

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Optically clear coating made from a composition comprising a triazine ring containing silane resin. The coating is obtained on a metallic substrate and has a unique combination of properties that includes a rigid structure, hydrophobicity/easy-to-clean, adhesion to bright chrome, abrasion resistance and high chemical resistance. The coating composition comprises (A) a mixture of at least one hydrolysable silane and one hydrolysable metal compound, the compounds of said mixture being partly or fully hydrolyzed and partly or fully condensed, and (B) at least one triazine ring derivative, selected from derivatives having formula (C(O)N)3(R<4>D)3 and derivatives having formula (C(O)N)3(R<5>P)p(R<4>D)3-p, wherein R<4> is selected from optionally substituted n- or isoalkylene groups, D is OH, in case mixture (A) comprises a silane having a (protected) isocyanato group, or is NCO, in case mixture (A) comprises a silane having a hydroxy group, R<5> is independently selected from optionally substituted n- or isoalkylene groups, P is (-P'R<4>) (C(O)N)3(R<4>D)2 wherein P' is an alkylene, alkylenearylenealkylene, alkylenearylene or arylene group which can be substituted and/or wherein the carbon chain may be interrupted with a variety of atoms or groups, and p is 1 or 2.

Eaton Meets Twelve Point Plan for Plating Zinc Cadmium & Tin

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Case history of the Eaton Plating line. Cyanide Zn was replaced by non-CN (bright Cl). Silver was largely replaced by tin. Comments on effluent treatment & air pollution. No refs.

EB-preheating of turbine blades - the completion of EB-technology for thermal barrier coating

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SURF EB-PVD zirconia thermal barrier coatings have several advantages over coatings deposited with other techniques. Therefore EB-PVD coaters for deposition onto turbine blades are becoming of increasing interest. This applies to pilot coaters as well as to production coaters. Electron beams do not generate evaporation process, they are also suitable for preheating turbine blades. By EB-preheating process different parts of partially masked rotating turbine blades can be heated uniformly and faster than by radiation heating. Possibility of unretarded EB-guidance creates opportunity to generate very fast alternating heating patterns with matched changes of power distribution on several parts of turbine blade. Developed EB-heating technology permits for blades weighing > 7 kg temp increase to 1000 °C in < 15 min. shortening vacuum cycle time per charge and increasing capacity of coating plant. Modern conception of EB-PVD production coater for zirconia thermal barrier coating on turbine blades is introduced.

EB-PVD technology in the gas turbine industry: present and future.

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Overview focussed on MCrAlY and ceramic thermal barrier coatings, suggests the future lies with graded thermal barrier coatings. Present technology and possible future developments are reviewed.

EB-PVD Yttria and Ceria/yttria-stabilized zirconia thermal barrier coatings - crystal habit and phase composition

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Ebonex electrode technology

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Titanium suboxide electrode anode manufacturing patents incl. US 4422917 (Ebonex ceramic electrodes); 4971666 (Redox electrode); 4936970 (Redox), 4964966 (cathodic protection anode); 5173215 (particle & polymer matrix cable composites); Electrochemical ion exchange (AEA filed patents); 4596641; 4548695 (electrodes for EIX); 4790918 (EIX)

Ebony coloured tin-nickel-copper alloy plating

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Tin-nickel-copper alloy electroplating using a pyrophosphate-based electrolyte is discussed. Variations in phase compositions with conditions and thickness of deposit were determined.

EC Legislation on Discarded Chemicals

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Note on EC legislation proposed to harmonise procedures for disposing of waste chemicals.

EC-STM Studies of Te and CdTe Atomic Layer Formation from a Basic Tellurium Solution.

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JES

ECCA Autumn Meeting

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European Coil Coating Ass'n meeting where topics incl. extreme weather resistant copolymer coatings, growing market use of coated steel for roofing, 118 coil coating lines in Europe, powder coated coil and economic vs. ecological factors.

Eccentricity effect of micropatterned surface on contact angle.

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Static and dynamic contact angle measurements showed that increasing the extent of offset of micropillars in adjacent rows, i.e, the degree of eccentricity, up to 0.6 micrometres, on a silica substrate, markedly decreased the contact angle for water. Increasing the separation between micropillars had the same effect. Furthermore, contact angle hysteresis, at the maximum eccentricity, increased more with more closely-spaced micropillars. Hydrophobicity was most marked with zero eccentricity, the effect being greatest with closer spacing. The micropillars of the positive photoresists were 7 to 6 micrometric-sided squares, 8 micrometres high, with 1.5 or 2.5 micrometre separation, respectively.