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Materials Technology

  • Home MaTe
  • Research
    • Research programs
    • Group publications
      • Posters
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        • Polymer Technology
          • Foam
          • HoneyComb
          • Semicrystalline polymer during uniaxial tension
          • Voided polycarbonate
          • Voided polystyrene
          • Voided polystyrene with rubber
          • Mapping Method
          • Blobs in cavity
          • Crystallization of a melt
          • Stratified structures in a Kenics mixer
          • Kenics mixer
          • Nucleation, grow, gravity induced flow
          • Flow past a confined cylinder
          • Binodal decomposition
          • Spinodal decompostion
          • Phase separation
          • Spinodal decomposition under shear
          • Blob deformation and breakup
          • Systems of continuous phase
          • Systems of continuous phase 2
          • Drop deformation and breakup in shear
          • The breakup stage
          • Drop-to-drop interaction in shear
          • Formation of a foam drop
          • Crossection of a foam drop
          • Foam drop containing 4 equal-sized inner drops
          • Foam drop containing 8 inner drops
          • Viscoelastic effects in Polymer Coextrusion
        • Cell and tissue engineering
          • Swelling hydrogel experiment
          • Stented heart valve
          • Collagen
          • Stentless heart valve
          • Fluid structure interaction in a tri-leaflet, stented aortic heart valve
        • Mechanics of Materials
          • Miniature mixed mode bending setup
          • SelfAdaptiveCZ
          • Brain slice
          • Aluminum extrusion die
          • Velocity in the die
          • Delamination in an IC
          • Blanking
          • Indentation
          • Crack growth
          • Crack growth 2
          • Necking
        • Orthopaedic Biomechanics
          • Cell damage
          • Free swelling of 3D intervertebral disc model
        • Cardiovascular Biomechanics
          • Pulsatile flow in curved tube
        • Microsystems
          • Artificial Cilia for Active Micro-Fluidic Mixing
          • Strong vortical flows generated by a swarm of rotating particle chains
          • Disaggregation of micro-particle clusters by induced magnetic dipole-dipole repulsion near a physical surface
          • Chaotic fluid mixing by alternating micro-particle topologies to enhance biochemical reactions
          • Numerical and Experimental study of a rotating magnetic particle chain in a viscous fluid
          • Longer cilia formation
          • Magnetic artificial cilia
  • Laboratories
    • Labs overview
      • Microscopie-laboratorium
  • Innovation
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  • About the MaTe group
    • Mission and vision
    • Staff
      • Staff Polymer Technology
      • Staff Mechanics of Materials
      • Structure and Rheology of Complex Fluids
      • Microsystems
      • Staff Soft Tissue Biomechanics & Engineering
      • Staff Cardiovascular Biomechanics
      • Staff Orthopaedic Biomechanics
    • BSc courses
      • Polymer Technology
      • Mechanics of Materials
      • Soft Tissue Biomechanics & Engineering
        • 8MB00 - Mechanics
        • 8TB00 - Continuum mechanics
        • 8QB01 - Pericardial patches
        • 8WA00 - Heart and lung
        • 8QA11 - Tissue damage: simulate, visualize and analyze
        • 8MC00 - Numerical analysis of continua
        • 8WC00 - Regeneration
      • Cardiovascular Biomechanics
        • 0LAUA0 - Project on Clinical Use of Physiological Modeling
        • 8P079 - Minor project Biomedical physiology
        • 8Z036 - BMT Science class: Prof. van de Vosse
        • 8QA03 - Mechanics of a Blood Vessel
        • 8VB20 - Model based cardiovascular pathophysiology
        • 8VB10 - Measurements and modeling in the clinic
        • 8VB00 - Transport Physics
        • 3D030 - Flow and diffusion
        • 0LAB0 - Introduction to Modeling: dynamic systems
        • 3NBB0 - Applied Physical Sciences formal
      • Orthopaedic Biomechanics
        • 8MB00 - Mechanics
        • 8W230 - Thermodynamics
        • 8W330 - Immunology and Infection
        • 8W130 - Tissue engineering
        • 8W280 - Tissue mechanics
        • 8QB01 - Pericardial patches
        • 8TB00 - Continuum mechanics
        • 8TA00 - Cell and tissue
    • MSc courses
      • Polymer Technology
      • Mechanics of Materials
      • Soft Tissue Biomechanics & Engineering
        • 8W100 - Numerical Analysis of Continua II
        • 8W030 - Numerical analysis of continua I
        • 8W300 - Stem cells
        • 8S130 - Course molecular and cell biological techniques
      • Cardiovascular Biomechanics
        • 8W320 - Vascular mechanics
        • 8W220 - Cardiovascular Biomechanics: special topics
        • 8F250 - Clinical module Cardiovascular diseases B
        • 8F110 - Clinical module Cardiovascular diseases A
        • 8W310 - Cardiovascular fluid-structure interaction
        • 8W160 - Cardiac Modeling
        • 8W270 - Fluid biomechanics
        • 8W110 - Pathophysiology of the cardiovascular system
        • 8W090 - Cardiovascular fluid mechanics
      • Orthopaedic Biomechanics
        • 8R000 - Introduction to Regenerative Medicine and Technology
        • 8S130 - Course molecular and cell biological techniques
        • 8F170 - Clinical module Orthopaedics
        • 8W060 - Biological mixtures
        • 8W130 - Tissue engineering
        • 8W280 - Tissue mechanics
        • 8W080 - Bone Mechanics
        • 8W010 - Cartilage mechanics
      • Microsystems
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Innovation

Currently the following information is available:

  • Cooperation with industry
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Navigatieadres

De Zaale

Eindhoven

Telefoonnummer: +31 (0)40 247 9111

Contact

Postadres

Postbus 513

5600 MB Eindhoven

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