This is a page describing data taken during an experiment at the ISIS Neutron and Muon Source. Information about the ISIS Neutron and Muon Source can be found at https://www.isis.stfc.ac.uk.
Deformation Behaviour of Novel BCC-Superalloys for High Temperature Application
Abstract: A range of body-centered cubic (BCC) superalloys for high-temperature applications are being developed by the Materials for Extreme Environments group at the University of Birmingham. In this proposal, we intend to perform in-situ loading experiments on Cr-, Fe- and W-based BCC superalloys strengthened by coherent B2 intermetallic nanoprecipitates. This study aims to investigate the phase evolution and optimal value of lattice misfit for increasing the load transfer from matrix to precipitates and combat softening at high temperatures. The in-situ compressive loading experiments will be conducted from room temperature to 900 ?C at Engin-X. The results of this study will provide insights into the micromechanical behaviour of these novel alloys.
Public release date: 27 November 2027
Principal Investigator: Dr Muhammad Naeem
Experimenter: Ms Sophia von Tiedemann
Experimenter: Dr Matthew Lloyd
Experimenter: Dr Liliana Romero Resendiz
Experimenter: Dr David Collins
Experimenter: Dr Alexander Knowles
Local Contact: Dr Tung Lik Lee
DOI: 10.5286/ISIS.E.RB2410287-2
Parent DOI: 10.5286/ISIS.E.RB2410287
ISIS Experiment Number: RB2410287
Part Number: 2
This dataset is NOT yet publicly available.
The release date is: 27 November 2027
Date of Experiment: 24 November 2024
Publisher: STFC ISIS Neutron and Muon Source
Data format: RAW/Nexus
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Data Citation
The recommended format for citing this dataset in a research
publication is as:
[author], [date], [title], [publisher],
[doi]
For Example:
Dr Muhammad Naeem et al; (2024): Deformation Behaviour of Novel BCC-Superalloys for High Temperature Application, STFC ISIS Neutron and Muon Source, https://doi.org/10.5286/ISIS.E.RB2410287-2
Data is released under the CC-BY-4.0 license.