Microforming Technology

- Theory, Simulation and Practice

  • Format
  • Bog, paperback
  • Engelsk

Beskrivelse

Microforming Technology: Theory, Simulation and Practice addresses all aspects of micromanufacturing technology, presenting detailed technical information and the latest research developments. The book covers fundamentals, theory, simulation models, equipment and tools design, practical micromanufacturing procedures, and micromanufacturing-related supporting systems, such as laser heating system, hydraulic system and quality evaluation systems. Newly developed technology, including micro wedge rolling, micro flexible rolling and micro hydromechanical deep drawing, as well as traditional methods, such as micro deep drawing, micro bending and micro ultrathin strip rolling, are discussed. This will be a highly valuable resource for those involved in the use, study and design of micro products and micromanufacturing technologies, including engineers, scientists, academics and graduate students.

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Detaljer
  • SprogEngelsk
  • Sidetal470
  • Udgivelsesdato25-03-2017
  • ISBN139780128112120
  • Forlag Academic Press Inc
  • FormatPaperback
Størrelse og vægt
  • Vægt750 g
  • coffee cup img
    10 cm
    book img
    15,2 cm
    22,9 cm

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    Geometry Electricity Finite element method Mechanics Microstructure Oxidation Simulation models Friction Copper Hydrodynamics Dislocations Dynamics Numerical integration Mechanical properties Lubrication Simulation Stainless steel Plasticity theory Boundary conditions Heat transfer Crystal plasticity theory Deformation Texture Constitutive equation Springback Dirichlet tessellation Finite element model Finite Element Simulation Size effects Constitutive model Scaling Laws Grain-size Material Heterogeneity Microforming Foil Phenomenological Theory Cross-section Asymmetrical rolling Characteristic ratio Couple stress theory Composite model Counter pressure Design and manufacture Crystal plastic deformation Density size effects Electrostatic force Friction behavior Electron backscatter diffraction (EBSD) Crystallographic plane Cup quality Friction size effects Grain heterogeneity Grain shape Grain size effects Heating temperature Earing Laser Beam Laser power Electromagnetic Force laser heating Length scale Foil rolling Mechanism-based theory Micro deep drawing Micro bending Microstructure size effects Micro ultrathin strip Microforming system Micro hydromechanical deep drawing (MHDD) Micro ultrathin strip rolling Flow Stress Forming limit Micro cross wedge rolling Micro flexible rolling Mesoscopic model Micro compression machine Micro cross wedge rolling (MCWR) Micro deep drawing (MDD) Microforming concept One-stroke forming Higher-order stress Rate independent theory Phosphor bronze foil Rate dependent theory Polycrystal model Roll Flattening Stress scatter Roll Gap Rolling limit Surface asperity Surface Layer Model Micro compression Micro tensile test Micro sheet Microstructural refinement Micro V-Bending Micro hydromechanical deep drawing Recrystallization Texture Strain gradient Shape size effects

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