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  1. Fully-matching results

  2. Powder bed fusion

    https://www.doitpoms.ac.uk/tlplib/add_manuf/powder_bed.php
    Once a layer is formed, the build platform is lowered by an amount equal to one layer and new powder is spread over previous layers either by a blade or roller.
  3. Avoiding electromigration problems

    https://www.doitpoms.ac.uk/tlplib/electromigration/avoid_problems.php
    Problems with integration and material characterization arising from rapid introduction of new materials and processes, which are necessary to meet conductivity requirements and reduce dielectric permittivity. ... Achieving necessary reliability by using
  4. Dislocation generation

    https://www.doitpoms.ac.uk/tlplib/work_harden/generation.php
    The loop continues to expand, and a new dislocation line is formed.
  5. Copper based alloys

    https://www.doitpoms.ac.uk/tlplib/microstructural_exam/cualloys.php
    Below 415C the equilibrium solid phase is η The peritectic transformation begins to take place at 415C; the new phase precipitates heterogeneously on the surface of ε precipitates.
  6. Applications

    https://www.doitpoms.ac.uk/tlplib/superconductivity/applications.php
    This allows for a powerful new technique in neurological research and investigations of the brain.
  7. Representing stress as a tensor

    https://www.doitpoms.ac.uk/tlplib/metal-forming-1/stress_tensor.php
    stress state seen with respect to these new axes.
  8. Overview of Plasticity and its Representation with Constitutive Laws

    https://www.doitpoms.ac.uk/tlplib/mechanical_testing_metals/plasticity.php
    This is a consequence of competition between the creation of new dislocations, and inhibition of their mobility (by forming tangles etc), and processes (such as climb and cross-slip) that will
  9. The bi-material strip

    https://www.doitpoms.ac.uk/tlplib/thermal-expansion/bimaterial-strip.php
    The bi-material strip. The bi-material strip. When a component made up of two different materials bonded together is heated or cooled, a misfit is generated between the new dimensions
  10. • Electrode materials

    https://www.doitpoms.ac.uk/tlplib/fuel-cells/sofc_electrode_materials.php
    A new material: La. 0.8. Sr. 0.2. MnO. 3. (LSM) has the suitable properties: good electronic conductivity and matching heat expansion coefficient.
  11. Lithium batteries

    https://www.doitpoms.ac.uk/tlplib/batteries/batteries_lithium.php
    Rechargeable batteries. Li-ion batteries are now used in very high volumes in a number of relatively new applications, such as in mobile phones, laptops, cameras and many other consumer products.
  12. Properties of FDM Prints

    https://www.doitpoms.ac.uk/tlplib/add_manuf/fdm.php
    effectively gives a new raster angle when loading the sample e.g.
  13. Indentation Plastometry

    https://www.doitpoms.ac.uk/tlplib/mechanical_testing_metals/plastometry.php
    Measurement of the full profile now forms the basis of a new methodology for obtaining complete (true) stress-strain curves from indentation experiments.
  14. Proton exchange membrane fuel cells (PEMFCs)

    https://www.doitpoms.ac.uk/tlplib/fuel-cells/low_temp_pem.php
    There is lots of development still to be done in this area before we meet a new industry standard.
  15. Full Record for Video 72

    https://www.doitpoms.ac.uk/vidlib/full_record.php?id=72
    View video in new window.
  16. • Electrolyte

    https://www.doitpoms.ac.uk/tlplib/fuel-cells/sofc_electrolyte.php
    There are two main groups of such ion conductors: fluorite structured and perovskite structured, besides new materials such as hexagonal structured oxides.
  17. Micrograph 289

    https://www.doitpoms.ac.uk/miclib/micrograph.php?id=289
    Search. Dissemination of IT for the Promotion of Materials Science (DoITPoMS). Micrograph 289. Micrograph 289. is available on downloading images. 2004-2024 University of Cambridge. Except where otherwise noted, content is licensed under a.
  18. Micrograph 3

    https://www.doitpoms.ac.uk/miclib/micrograph.php?id=3
    Search. Dissemination of IT for the Promotion of Materials Science (DoITPoMS). Micrograph 3. Micrograph 3. is available on downloading images. 2004-2024 University of Cambridge. Except where otherwise noted, content is licensed under a.
  19. Micrograph 1

    https://www.doitpoms.ac.uk/miclib/micrograph.php?id=1
    Search. Dissemination of IT for the Promotion of Materials Science (DoITPoMS). Micrograph 1. Micrograph 1. is available on downloading images. 2004-2024 University of Cambridge. Except where otherwise noted, content is licensed under a.
  20. Micrograph 2

    https://www.doitpoms.ac.uk/miclib/micrograph.php?id=2
    Search. Dissemination of IT for the Promotion of Materials Science (DoITPoMS). Micrograph 2. Micrograph 2. is available on downloading images. 2004-2024 University of Cambridge. Except where otherwise noted, content is licensed under a.
  21. Micrograph 4

    https://www.doitpoms.ac.uk/miclib/micrograph.php?id=4
    Search. Dissemination of IT for the Promotion of Materials Science (DoITPoMS). Micrograph 4. Micrograph 4. is available on downloading images. 2004-2024 University of Cambridge. Except where otherwise noted, content is licensed under a.

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