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全新航空航天材料与工艺基础张彦华 编著9787512419247
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Introduction0.1 Evolution of aerospace materials0.2 Engineering materials and process0.3 The materials process for aerospace structuresChapter 1 Structure of Materials1.1 Introduction1.2 Atomic structure1.3 Atomic bonding1.3.1 Ionic bonding1.3.2 Covalent bonding1.3.3 Metallic bonding1.3.4 Van der Waals bonding1.4 Crystal structure of metals1.4.1 Atomic arrangements in materials1.4.2 Metallic crystalline structures1.5 Crystal defects1.5.1 Point defects1.5.2 Linear defects—dislocations1.5.3 Planar defects1.5.4 Bulk defects1.6 Alloys and microstructure1.6.1 Alloying1.6.2 Phases1.6.3 MicrostructureChapter 2 Mechanical Properties of Materials2.1 Introduction2.2 Tensile properties2.2.1 Stress and strain2.2.2 The tensile test2.. Yield point2.2.4 Ultimate tensile strent. Ductility and strain hardening..1 Ductility..2 Strain hardening2.4 Hardness2.4.1 Brinell hardness test2.4.2 Rockwell hardness test2.4.3 Vickers and Knoop hardness tests2.5 Creep and stress rupture properties2.5.1 Creep properties2.5.2 Stress rupture properties2.6 Toughness2.6.1 Impact toughness2.6.2 Fracture toughness2.7 Fatigue properties2.7.1 Nature of fatigue failure2.7.2 Factors affecting fatigue life2.7.3 S—N fatigue properties2.7.4 Fatigue crack growth rateChapter 3Sodiiction and Phase Diagrams3.1 Introduction3.2 Phase diagram3.2.1 Common terms3.2.2 Isomorphous3.. Eutectic3.2.4 Peritectic reaction3.2.5 Eutectoid3.3 Fe—C phase diagram and microstructure3.3.1 Fe—C phase diagram3.3.2 Fe—C alloys microstructureChapter 4Ferrous Alloys4.1 Introduction4.2 Classification of ferrous alloys4.3 Alloy steels4.3.1Alloying elements in steel4.3.2 High—Strent&nsp;Low—Alloy (HSLA) steels4.3.3 High—alloy steels4.3.4 Stainless steels4.3.5 Tool steels4.3.6 Ultra—hi&nsp;strent&nsp;steels4.4 Heat treatments4.4.1 Transformation diagrams4.4.2 Types of heat treatment4.5 Surface hardening4.5.1 Surface quenching4.5.2 Carburizing and nitridingChapter 5Non—ferrous Alloys5.1 Introduction5.2 Aluminum and aluminum alloys5.2.1 Physical metallurgy of aluminum5.2.2 Aluminum alloy designations5.3 Copper and its alloys5.4 Magnesium alloys5.5 Titanium and its alloys5.5.1 Develomn&bsp;and application of titanium alloys5.5.2 Metallurgy of titanium alloys5.6 Superalloys5.6.1 Nickel and nickel alloys5.6.2 Cobalt—based superalloys5.6.3 Iron—based superalloysChapter 6 Polymer, Ceramic and Coite Materials6.1 Introduction6.2 Polymer6.2.1 Polymer structure and synthesis6.2.2 Polymer crystallinity6.. Mechanical behavior of polymers6.2.4 Characteristics and typical applications of few plastic materials6.3 Ceramics6.3.1 Structures of ceramic materials6.3.2 Ceramic processing6.3.3 General properties of ceramics6.3.4 Common structural ceramics6.4 Coite6.4.1 Coite structure6.4.2 General types of matrix materials6.4.3 ReinforcementsChapter 7 Casting Processes7.1 Introduction7.2 Sand casting7.3 Investment casting7.4 Die casting7.5 Permanent mold casting7.6 Centrifugal casting7.7 Casting techniques for single—crystal components7.8 Casting microstructure and defectsChapter 8Deformation Forming Processes8.1 Introduction8.2 Plastic deformation and formability8.3 Bulk deformation processes8.3.1 Forging processes8.3.2 Extrusion and drawing processes8.3.3 Rolling processes8.4 Sheet metal forming8.4.1 Blanking and piercing8.4.2 Bending8.4.3 Stamping or deep drawing8.4.4 Stretch forming8.4.5 Hydroforming8.4.6 Metal spinning……Chapter 9 Welding ProcessesChapter 10 Materials Selection for Aerospace Structural ApplicationReferences
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