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Modelling and neutron diffraction characterization of the interfacial bonding of spray formed dissimilar steels

  • T. L. Lee
  • , J. Mi
  • , S. Ren
  • , S. Zhao
  • , J. Fan
  • , S. Kabra
  • , S. Zhang
  • , P. S. Grant

Research output: Contribution to journalArticlepeer-review

14 Scopus citations

Abstract

The spray forming of thick, dissimilar steel clad tubes with the objective of achieving a high integrity metallurgical bond across the cladding-substrate interface able to withstand residual stresses and subsequent thermo-mechanical processing was investigated by large scale experiments, modelling and extensive microstructural characterization including microscopy, X-ray tomography, neutron scattering and mechanical testing. The simulated residual stress distributions across the cladding-substrate interface, accounting for any as-sprayed porosity and the distribution of martensitic and retained austenite phases, were compared with neutron diffraction measurements and differences used to infer the load transfer behaviour and thus the mechanical integrity of the interface. The mechanical properties of the interfaces were then also measured directly by shear testing. The link between substrate pre-heating, the spray forming temperature, and the resulting preform temperature, porosity, phase fractions, residual stress, strength and integrity of the interface were established and quantified explicitly.

Original languageEnglish
Pages (from-to)318-330
Number of pages13
JournalActa Materialia
Volume155
DOIs
StatePublished - Aug 15 2018
Externally publishedYes

Funding

The authors would like to acknowledge the funding from Baosteel Co. Ltd. Shanghai, China and the neutron beam time at ENGIN-X of ISIS Neutron Source, STFC Rutherford Appleton Laboratory, UK (Experiment No: RB1310425, RB1320313, RB1510231 and RB1810002). Dr. J. Fife from Paul Scherrer Institute is acknowledged for her support on the TOMCAT beamline, Swiss Light Source (Proposal No. 20141167 and 20150177). T.L. Lee gratefully acknowledges the University of Hull PhD Studentship awarded from 2011 to 2015. J. Mi also would like to acknowledge the financial support by the Royal Society Industry Fellowship awarded from 2012 to 2016. The authors would like to acknowledge the funding from Baosteel Co. Ltd. Shanghai, China and the neutron beam time at ENGIN-X of ISIS Neutron Source , STFC Rutherford Appleton Laboratory, UK (Experiment No: RB1310425 , RB1320313 , RB1510231 and RB1810002 ). Dr. J. Fife from Paul Scherrer Institute is acknowledged for her support on the TOMCAT beamline, Swiss Light Source (Proposal No. 20141167 and 20150177 ). T.L. Lee gratefully acknowledges the University of Hull PhD Studentship awarded from 2011 to 2015. J. Mi also would like to acknowledge the financial support by the Royal Society Industry Fellowship awarded from 2012 to 2016.

Keywords

  • Dissimilar steels
  • Finite element modelling
  • Neutron diffraction
  • Residual stresses
  • Spray forming

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