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WileyÊé¼®Ò»±¾£ºThe Science and Engineering of Thermal Spray Coatings
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³ö°æÉç: WileyBlackwell; 2nd Revised edition (2008Äê5ÔÂ19ÈÕ) ÍâÎÄÊéÃû: ÈÈÅçÍ¿¿ÆÑ§Ó빤³Ì ¾«×°: 656Ò³ ÓïÖÖ£º Ó¢Óï ISBN: 0471490490 ÌõÐÎÂë: 9780471490494 ÉÌÆ·³ß´ç: 16.1 x 4 x 23.5 cm ÉÌÆ·ÖØÁ¿: 1.1 Kg ASIN: 0471490490 Kurzbeschreibung Beginning with coverage of materials used, pre-spray treatment, and the techniques used, The Science and Engineering of Thermal Spray Coatings, Second Edition explores the physics and chemistry of spraying and discusses coatings build-up. Characterization methods and the properties of the applied coatings are presented, and the book concludes with a lengthy chapter on thermal spray applications, including aeronautics and space, automobiles, ceramics, chemicals, civil engineering, decorative coatings, electronics, energy generation and transport, iron and steel, medicine, mining, and the nuclear industries. Aus dem Inhalt Preface to the Second Edition. Preface to the First Edition. Acronyms, Abbreviations and Symbols. 1 Materials Used for Spraying. 1.1 Methods of Powders Production. 1.2 Methods of Powders Characterization. 1.3 Feeding, Transport and Injection of Powders. References. 2 Pre-Spray Treatment. 2.1 Introduction. 2.2 Surface Cleaning. 2.3 Substrate Shaping. 2.4 Surface Activation. 2.5 Masking. References. 3 Thermal Spraying Techniques. 3.1 Introduction. 3.2 Flame Spraying (FS). 3.3 Atmospheric Plasma Spraying (APS). 3.4 Arc Spraying (AS). 3.5 Detonation-Gun Spraying (D-GUN). 3.6 High-Velocity Oxy-Fuel (HVOF) Spraying. 3.7 Vacuum Plasma Spraying (VPS). 3.8 Controlled-Atmosphere Plasma Spraying (CAPS). 3.9 Cold-Gas Spraying Method (CGSM). 3.10 New Developments in Thermal Spray Techniques. References. 4 Post-Spray Treatment. 4.1 Heat Treatment. 4.2 Impregnation. 4.3 Finishing. References. 5 Physics and Chemistry of Thermal Spraying. 5.1 Jets and Flames. 5.2 Momentum Transfer between Jets or Flames and Sprayed Particles. 5.3 Heat Transfer between Jets or Flames and Sprayed Particles. 5.4 Chemical Modification at Flight of Sprayed Particles. References. 6 Coating Build-Up. 6.1 Impact of Particles. 6.2 Coating Growth. 6.3 Microstructure of the Coatings. 6.4 Thermally Sprayed Composites. References. 7 Methods of Coatings' Characterization. 7.1 Methods of Microstructure Characterization. 7.2 Mechanical Properties of Coatings. 7.3 Physical Properties of Coatings. 7.4 Electrical Properties of Coatings. 7.5 Magnetic Properties of Coatings. 7.6 Chemical Properties of Coatings. 7.7 Characterization of Coatings' Quality. References. 8 Properties of Coatings. 8.1 Design of Experiments. 8.2 Mechanical Properties. 8.3 Thermophysical Properties. 8.4 Electric Properties. 8.5 Magnetic Properties. 8.6 Optical Properties. 8.7 Corrosion Resistance. References. 9 Applications of Coatings. 9.1 Aeronautical and Space Industries. 9.2 Agroalimentary Industry. 9.3 Automobile Industry. 9.4 Ceramics Industry. 9.5 Chemical Industry. 9.6 Civil Engineering. 9.7 Decorative Coatings. 9.8 Electronics Industry. 9.9 Energy Generation and Transport. 9.10 Iron and Steel Industries. 9.11 Machine Building Industry. 9.12 Medicine. 9.13 Mining Industry. 9.14 Non-ferrous Metal Industry. 9.15 Nuclear Industry. 9.16 Paper Industry. 9.17 Printing and Packaging Industries. 9.18 Shipbuiding and Naval Industries. References. Index.[ À´×Ô¿ÆÑмÒ×å ²ÄÁϼÒ×å ] [ Last edited by ·Æ¸ê1986 on 2013-2-27 at 16:54 ] |
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