Pilkington浮法玻璃生产介绍课件.ppt
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1、1A member of NSG Group2Application of Inorganic Chemistry in IndustryFlat Glass and Coatings On GlassDr Troy ManningAdvanced Technologist,On-line CoatingsPilkington European Technical CentreHall LaneLathomUKtroy.manningpilkington3OutlineOverview of Flat Glass industry and NSG/PilkingtonFlat Glass ma
2、nufactureFloat Glass ProcessCoating technology within the glass industryChemical Vapour DepositionExamples of on line coating applicationsLow Emissivity/Solar ControlSelf CleaningSummarySuggested Reading4Global Flat Glass MarketGlobal Market 37 million tonnes(4.4 billion sq.m)Building Products 33 m
3、tonnes-Automotive 4m tonnesOf which 24 million =high quality float glass 3 million =sheet 2 million =rolled 8 million =lower quality float(mostly China)Global Value At primary manufacture level 15 billionAt processed level 50 billion5NSG and Pilkington combinedA global glass leader the pure play in
4、Flat GlassCombined annual sales c.4 billionEqual to Asahi Glass in scale,most profitable in Flat GlassOwnership/interests in 46 float lines6.4 million tonnes annual outputWidened Automotive customer base36,000 employees worldwideManufacturing operations in 26 countriesSales in 130+countries6Manufact
5、ure of Flat Glass Four main methods Plate Glass(1688)molten glass poured on to a flat bed,spread,cooled and polished Sheet Glass(1905)continuous sheet of glass drawn from tank of molten glass Rolled Glass(1920)molten glass poured onto to two rollers to achieve an even thickness,making polishing easi
6、er.Used to make patterned and wired glass.Float Glass(1959)molten glass poured onto bed of molten tin and drawn off in continuous ribbon.Gives high quality flat glass with even thickness and fire polish finish.320 float-glass lines worldwide7Melting furnaceFloat bathCooling lehrContinuos ribbon of g
7、lassCross cuttersLarge plate lift-off devicesSmall plate lift-off devicesRaw material feedThe Float-Glass ProcessOperates non-stop for 10-15 years6000 km/year0.4 mm-25 mm thick,up to 3 m wide8The Float Glass Process9Raw materials10Melting Furnace11Float Bath12Float Glass Plant13The Float-Glass Proce
8、ssFine-grained ingredients,closely controlled for quality,are mixed to make batch,which flows as a blanket on to molten glass at 1500 C in the melter.The furnace contains 2000 tonnes of molten glass.After about 50 hours,glass from the melter flows gently over a refractory spout on to the mirror-like
9、 surface of molten tin,starting at 1100C and leaving the float bath as a solid ribbon at 600C.Despite the tranquillity with which float glass is formed,considerable stresses are developed in the ribbon as it cools.14Raw MaterialsOxide%in glass Raw material sourceSiO272.2SandNa2O13.4Soda Ash(Na2CO3)C
10、aO8.4Limestone(CaCO3)MgO4.0Dolomite(MgCO3.CaCO3)Al2O31.0Impurity in sand,Feldspar or CalumiteFe2O30.11Impurity in sand or Rouge(Fe2O3)SO30.20Sodium sulphateC0.00Anthracite15Raw materials SiO2Very durable,BUT high melting point(1700C)!+Na2OMelts at a lower temperature,BUT dissolves in water!+CaOMore
11、durable,BUT will not form in bath without crystallisation+MgOGlass stays as a super-cooled liquid in bath,no crystallisation+Al2O3Adds durability+Fe2O3Adds required level of green colour for customer16Chemistry of GlassImportant glassmaking chemistry:basic reactionsNa2CO3 +SiO2 1500C Na2SiO3 +CO2Na2
12、SiO3 +x SiO2 Na2SO4 (Na2O)(SiO2)(x+1)Digestion17Composition of Glass18Structure of GlassRandom network of SiO4-tetrahedral units.Na-O enter Si-O network according to valency Network FormersCa and Mg Network Modifiers make structure more complex to prevent crystallisation 19Body-tinted GlassIonResult
13、ing Colour of GlassFerrous(Fe2+)BlueFerric(Fe3+)YellowFe2+Fe3+GreenSelenium(SeO2)BronzeCobalt(Co2+)Grey/BlueNickel(Ni2+)Grey20CIE L a*b*colour space21CIE L a*b*colour space22Functions of a Window Light in homes,offices Light out shops,museum displays Heat in heating dominated climates Heat out cooli
14、ng dominated climates Can change properties of glass by applying coatings to the surface23Making a window functional-coatings A wide variety of coating technologies are utilised by the glass industry Spray Pyrolysis Powder Spray Chemical Vapour Deposition Sputter Coating Thermal Evaporation Coatings
15、 Sol Gel Coatings These are applied On Line i.e.as the glass is produced on the float line Off Line i.e.coating not necessarily produced at the same location24Variations of CVD Atmospheric Pressure APCVD Low Pressure-LPCVD Aerosol Assisted-AACVD Metalorganic MOCVD Combustion/Flame CCVD Hot Wire/Fila
16、ment HWCVD/HFCVD Plasma Enhanced-PECVD Laser Assisted LACVD Microwave Assisted MWCVD Atomic Layer Deposition ALD25Chemical Vapour Deposition26Chemical Vapour DepositionMain gas flow regionGas Phase ReactionsSurface DiffusionDesorption of Film PrecursorBy ProductsDiffusion to surface27Chemical Vapour
17、 DepositionAnimation kindly supplied by Dr.Warren Cross,University of Nottingham28CVD processes and parametersProcessParametersTransportPrecursorsGas phase reactionPressure,temperature,flow conditions,boundary layer thickness,gas phase concentration,precursors,carrier gasDiffusionPressure,temperatur
18、e,flow conditions,boundary layer thickness,gas phase concentrationAdsorptionTemperature,gas phase concentration,number and nature of sitesSurface reactionTemperature,nature of surfaceDesorption of by-productsTemperature,pressure,nature of surfaceDiffusion to lattice siteTemperature,surface mobility,
19、number of vacant sites29CVD Precursor Properties Volatile gas,liquid,low melting point solid,sublimable solid Pure Stable under transport React/Decompose cleanly to give desired coating minimise contaminants Can be single source or dual/multi-source30CVD Precursors Single Source pyrolysis(thermal de
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