材料科学与工程基础13317.pptx
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1、Fundamentals of materials science and engineeringChapter 1 Introduction to Materials Science and EngineeringHave You Ever Wondered?What do materials scientists and engineers study?What do materials scientists and engineers study?How sheet steel can be processed to produce a high-strengthHow sheet st
2、eel can be processed to produce a high-strength,lightweightlightweight,energy absorbingenergy absorbing,malleablemalleable(可塑的,可锻的)(可塑的,可锻的)material used in the manufacture of car chassismaterial used in the manufacture of car chassis(底盘)(底盘)?Can we make flexible and lightweight electronic circuitsC
3、an we make flexible and lightweight electronic circuits using plastics?using plastics?What is a“smart material”?What is a“smart material”?outlinen nWhat is Materials Science and Engineering?n nClassification of Materialsn nEnvironmental and Other Effectsn nMaterials Design and Selection1-1 What is M
4、aterials Science and Engineering?n n1.Definition Materials Science and Engineering(MSE)is an interdisciplinary field concerned with inventing new materials and improving previously known materials by developing a deeper understanding of the microstructure-composition-synthesis-processing relationshi
5、p.The term Composition Means the chemical make-up of a materialStructureA description of the arrangement of atoms,as seen at different levels of detail.SynthesisRefers to how materials are made from naturally occuring or man-made chemicals.ProcessingMeans how materials are shaped into useful compone
6、nts to cause changes in the properties of different materials.Figure Application of the tetrahedron of materials science and engineering to sheet steels for automotive chassis.Note that the microstructure-synthesis and processing-composition are all interconnected and affect the performance-to-cost
7、ratioComposition;Strength;Weight;Energy absorption properties;Malleability(formability)Strength-to-weight ratio is the strength of a material divided by its density;materials with a high strength-to-weight ratio are strong but lightweight.Figure Application of the tetrahedron of materials science an
8、d engineering to semiconducting polymers for microelectronics.rubst 结实的;耐用的;坚固的 Synthesis and processing How can pure,homogeneous,and fine powders of well-defined stoichiometry be made?How do we make long lengths of wires?Figure Application of the tetrahedron of materials science and engineering to
9、ceramic superconductorsceramic superconductors.Note that the microstructure-synthesis and processing-composition are all interconnected and affect the performance-to-cost ratio What is the current carrying capacity?What is the cast of cooling and fabrication?Microstructure What features of the struc
10、ture limit the current carrying capacity?What is the texture of the material?Composition YBa2Cu3O7-x YBa2Ca3Cu4O11 YSr2Ca2Cu3O10Performance Cast Tetrahedron of MSE2.Materials Sciencen nThe emphasis is on the underlying relationships between the synthesis and processing,structure,and properties of ma
11、terials.3.Materials Engineeringn n The focus is on how to translate or transform materials into a useful device or structure.Application OF Tetrahedron:a sample product ceramic superconductors invented in 1986(1)DISCOVERY(2)LIMITATION(3)IMPROVEMENT(4)SOLUTION(5)BRITTLE(6)SOLUTION 1-2 Classification
12、Of Materialsn nAccording to different propertiesn nFunctional Classification of Materialsn nClassification of Materials Based on Structure(microstructure)Classification Classification Properties Properties ApplicationApplication Metals Metals good electrical and thermal conductivity automobile engin
13、e good electrical and thermal conductivity automobile engine(steels,aluminum,relatively high strength,stiffness,aircraft,electrical(steels,aluminum,relatively high strength,stiffness,aircraft,electrical magnesium)ductivity,formability conductor wiremagnesium)ductivity,formability conductor wireCeram
14、ics Ceramics high melting point,strength,hardness house computer chip high melting point,strength,hardness house computer chip (Si,SiO(Si,SiO2 2,Al,Al2 2O O3 3,capacitors,electrical insulation ,capacitors,electrical insulation ,MgO,SiC,Si,MgO,SiC,Si3 3N N4 4)sanitaryware,abrasive )sanitaryware,abras
15、ive Polymers Polymers electrical resistivity,thermal insulation,food packaging electrical resistivity,thermal insulation,food packaging low strength liquid crystal displays low strength liquid crystal displays (LCD)(LCD)SemiconductorSemiconductor (Silicon,GaAs)convert electrical signals to light tra
16、nsistors,diodes(Silicon,GaAs)convert electrical signals to light transistors,diodes lasers,etc integrated circuits lasers,etc integrated circuitsCompositesComposites high hardness,good shock resistance,sports equipment,fiberglass high hardness,good shock resistance,sports equipment,fiberglass high s
17、trength-to-weight ratio aircraft,matrix high strength-to-weight ratio aircraft,matrix1.According to different properties1.According to different propertiesBiomaterials 生物功能性生物功能性(biofunctionability)和生物相容性(biocompatibility)metallic,ceramic,polymer materials finger joint teeth 手指关节Figure Representativ
18、e strengths of various categories of materials聚醚酮树脂聚乙烯环氧树脂芳纶纤维聚酰亚胺 聚酯纤维,涤纶2.Functional Classification of Materialsn nAerospaceAerospace(航空航天)(航空航天)light materials light materialsn nBiomedical MaterialsBiomedical Materialsn nElectronic MaterialsElectronic Materialsn nEnergy Technology and Environment
19、al TechnologyEnergy Technology and Environmental Technologyn nMagnetic MaterialsMagnetic Materialsn nPhotonic or Optical Materials(Photonic or Optical Materials(光学材料)光学材料)n nSmart MaterialsSmart Materialsn nStructural MaterialsStructural MaterialsStructuralSteel Aluminum alloysConcrete FiberglassPla
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