Modelling slip bands and short crack growth in Ni-based superalloys using discrete crystal plasticity PhD

    Modelling slip bands and short crack growth in Ni-based superalloys using discrete crystal plasticity PhD at Loughborough University

    Modelling slip bands and short crack growth in Ni-based superalloys using discrete crystal plasticity PhD at Loughborough University

    Loughborough University offers the PhD of Modelling slip bands and short crack growth in Ni-based superalloys using discrete crystal plasticity PhD as a full-time degree delivered on campus at its Loughborough campus in United Kingdom. Taught in English and completed over 3 year(s), the program equips students with the theoretical knowledge and practical skills required for modelling slip bands and short crack growth in ni-based superalloys using discrete crystal plasticity phd and related professional fields.

    About Modelling slip bands and short crack growth in Ni-based superalloys using discrete crystal plasticity PhD

    Project details

    In metal fatigue, microplastic strain localisation leads to the formation of discrete slip bands, which contribute to the initiation and propagation of short cracks. While these phenomena are well-documented experimentally, their modelling remains time-consuming and limited to small volumes, not practical for engineering applications. Hence, there is an imminent need for methods that predict the development of such deformation states and provide early signs of damage in structural components.

    This project aims to investigate the initiation and evolution of slip bands and their role in the formation of short fatigue cracks in Ni-based superalloys. The project work plan offers a unique opportunity for skills acquisition as it combines experimentation and advanced numerical simulations. Novel numerical tools (peridynamics, phase-field method) will be used with established crystal plasticity theories to describe the deformation at the microscale. In parallel, state-of-the-art experimentation (SEM/TEM) will be employed to study the low-cycle fatigue behaviour of these alloys under room and high temperatures. These datasets will be further used to calibrate and validate the numerical models developed in this project.

    The produced results are expected to directly impact the design of safety-critical components, such as gas turbine blades.

    Requirements and Admission Criteria for Modelling slip bands and short crack growth in Ni-based superalloys using discrete crystal plasticity PhD at Loughborough University

    Entry Requirements

    For Saudi Arabia, the GPA requirements are: First-class honours (70%) requires 3.5, Upper second-class honours (60%) requires 3.0, Lower second-class honours (50%) requires 2.8.\nFor Jordan, the GPA requirements are: First-class honours (70%) requires 3.5, Upper second-class honours (60%) requires 3 or 3.5/5 or 75%, Lower second-class honours (50%) requires 2.5 (or 3.0/5) / 63%.

    English Program Requirements

    • The standard University IELTS English language requirement is 6.5 overall with 6.0 in each individual element (reading, writing, listening and speaking).
    • Some Schools/Departments may require higher levels of English language than those specified.
    • The requirements needed will be sent to you in your offer communication.

    Fee Information

    Modelling slip bands and short crack growth in Ni-based superalloys using discrete crystal plasticity PhD at Loughborough University
    Loughborough University
    Loughborough University
    United Kingdom

    United Kingdom, Loughborough

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