Search Results - "BERNTHALER, T."

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  1. 1

    Hardness of WC-Co hard metals: Preparation, quantitative microstructure analysis, structure-property relationship and modelling by Kresse, T., Meinhard, D., Bernthaler, T., Schneider, G.

    “…Different commercial WC-Co hard metals with carbide grain sizes ranging from ultrafine to coarse and Co contents between 4.2 and 25 wt.% have been investigated…”
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    Journal Article
  2. 2

    Analysis of the 3D microstructure of experimental cathode films for lithium‐ion batteries under increasing compaction by KUCHLER, K., PRIFLING, B., SCHMIDT, D., MARKÖTTER, H., MANKE, I., BERNTHALER, T., KNOBLAUCH, V., SCHMIDT, V.

    Published in Journal of microscopy (Oxford) (01-11-2018)
    “…Summary It is well known that the microstructure of electrodes in lithium‐ion batteries has an immense impact on their overall performance. The compaction load…”
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  3. 3

    Characterization of degeneration phenomena in lithium-ion batteries by combined microscopic techniques by Golla-Schindler, U., Zeibig, D., Prickler, L., Behn, S., Bernthaler, T., Schneider, G.

    Published in Micron (Oxford, England : 1993) (01-10-2018)
    “…•Combined computer tomography, light microscopy and electron microscopy.•Detector strategies in SEM applied on degeneration effects in lithium-ion…”
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  4. 4

    On the mechanical properties of sintered metallic fibre structures by Veyhl, C., Fiedler, T., Jehring, U., Andersen, O., Bernthaler, T., Belova, I.V., Murch, G.E.

    “…The present study investigates mechanical properties of a novel sintered metallic fibre structure with different relative densities (i.e. 0.19, 0.27, and…”
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  5. 5

    Mechanical properties and micro-deformation of sintered metallic hollow sphere structure by Fiedler, T., Veyhl, C., Belova, I.V., Bernthaler, T., Heine, B., Murch, G.E.

    Published in Computational materials science (01-06-2013)
    “…•Finite element analysis using volume meshes based on μCT data.•Verification using experimental data.•Determination of effective mechanical…”
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  6. 6

    On the thermal conductivity of sintered metallic fibre structures by Veyhl, C., Fiedler, T., Andersen, O., Meinert, J., Bernthaler, T., Belova, I.V., Murch, G.E.

    “…The present paper investigates the anisotropic thermal conductivity of a novel sintered metallic fibre structure with different porosities (i.e. 51.9%, 74.9%,…”
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  7. 7

    Numerical analyses of the thermal conductivity of random hollow sphere structures by Fiedler, T., Löffler, R., Bernthaler, T., Winkler, R., Belova, I.V., Murch, G.E., Öchsner, A.

    Published in Materials letters (31-05-2009)
    “…This paper presents Lattice Monte Carlo (LMC) and Finite Element (FE) analyses on the effective thermal conductivity of sintered Metallic Hollow Spheres…”
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  8. 8

    Strengthening mechanism of PDLLA coated titania foam by Fiedler, T., Fisher, M., Roether, J.A., Belova, I.V., Samtleben, T., Bernthaler, T., Murch, G.E., Boccaccini, A.R.

    Published in Mechanics of materials (01-02-2014)
    “…•Mechanical characterisation of innovative third generation biomaterial.•Use of micro-computed tomography for the geometrical characterisation of the complex…”
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  9. 9

    Additive manufacturing of soft magnetic materials and components by Goll, D., Schuller, D., Martinek, G., Kunert, T., Schurr, J., Sinz, C., Schubert, T., Bernthaler, T., Riegel, H., Schneider, G.

    Published in Additive manufacturing (01-05-2019)
    “…Additive manufacturing of soft magnetic materials and components based on laser powder bed fusion (L-PBF) offers new opportunities for soft magnetic core…”
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