Pier Luigi Fenelli

Pier Luigi Fenelli

Milano
2029 follower Oltre 500 collegamenti

Informazioni

Continuously seeking for challenges.

Attività

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Esperienza

  • Grafico McKinsey & Company
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    San Francisco, California, Stati Uniti d'America

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    Milano, Lombardia, Italia

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    Milano, Lombardia, Italia

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    Kuala Lumpur, Malaysia

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    Cardiff, Regno Unito

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    Florence Area, Italy

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    Naples Area, Italy

Formazione

Licenze e certificazioni

  • Grafico Operations Management Leadership Program

    Operations Management Leadership Program

    GE

    Emissione:
  • Grafico Lean & Six Sigma Green Belt

    Lean & Six Sigma Green Belt

    Lean Six Sigma Institute LLC

    Emissione:
    ID credenziale 684280-778685-212679992
  • Grafico Digital Data Analyst

    Digital Data Analyst

    GE Digital

    Emissione:
  • IELTS

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    Emissione: Scadenza:
  • TOEFL

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    Emissione: Scadenza:

Pubblicazioni

  • Improving the damage resistance of Thin-ply CFRP laminates through micro-structure design

    Elsevier - In preparazione (2018)

    Bio-inspired patterns of micro-cuts perpendicular to the fibre direction in thin-ply CFRP laminates have been used to increase the translaminar fracture toughness of the material. An analytical model to predict the probability of bundle pull-out during translaminar crack propagation was developed and validated through an experimental parametric study. The model was used to design three hierarchical patterns of micro-cuts and the patterns have been tested using Compact Tension specimens. The…

    Bio-inspired patterns of micro-cuts perpendicular to the fibre direction in thin-ply CFRP laminates have been used to increase the translaminar fracture toughness of the material. An analytical model to predict the probability of bundle pull-out during translaminar crack propagation was developed and validated through an experimental parametric study. The model was used to design three hierarchical patterns of micro-cuts and the patterns have been tested using Compact Tension specimens. The increase in fracture toughness for the three patterns was +15%, +60% and +214% when compared with the baseline material, thereby demonstrating the potential of engineering the fracture surface in CFRPs through well-designed patterns of micro-cuts to improve the damage tolerance of the material.

Corsi

  • Technical Workshop

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Progetti

  • Consultant and Client Project - Alternative Compressor Vibration and Transmissibility Analysis

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    Altri creatori
  • FE Analysis of a Pressure Vessel

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    Altri creatori
  • Propulsion Technology

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    Altri creatori

Riconoscimenti e premi

  • Impact Award

    GE Aviation

Lingue

  • English

    Conoscenza madrelingua o bilingue

  • Italian

    Conoscenza madrelingua o bilingue

  • German

    Conoscenza lavorativa limitata

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