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David Shepherd - Development of Non-Destructive Ultrasonic Detection Methods of Macrozones within Titanium Alloys

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Alessandro Piglione - Microstructures and fatigue behaviour of Ni single crystals made by casting and additive manufacturing

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Fatigue striations in a nickel single-crystal after a rotating-bending fatigue test.
Fatigue striations in a nickel single-crystal after a rotating-bending fatigue test.

Alexander Bergsmo - Experimental and Modelling Methodologies for Investigation of Fatigue Crack Nucleation

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Armin Daszki - Nucleation kinetics of Lead-free solder joints

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how to play minecraft cracked multiplayer lan Lead-free solders, which have been developed to substitute lead based alloys, suffer greatly from anisotropy compared to the original tin-lead alloys due to the tetragonal crystal structure of the majority component, βSn. Additionally βSn suffers from nucleating difficulties usually leading to a single nucleation event which results in a single βSn grain, cyclic-twinned βSn grains, and/or interlaced-twinned βSn grain morphology. This nucleation-difficulty phenomena is seen clearly when repeatedly melting and solidifying Sn-based alloys and measuring the nucleation undercooling. The stochastic value of the nucleation undercooling can vary (depending on sample purity and size) from 45K to 80K, this is in stark comparison to the melting which is seen to always happen at a fixed repeatable value. Nucleation kinetics will be studied in lead-free solders, with and without soldering substrates, in order to understand fundamental nucleation laws with experimental data, as well as the implication of nucleation onset on the resulting microstructure. By understanding the nucleation phenomena of βSn in lead free solders we seek to control the microstructure sufficiently to alter the mechanical, and electrical properties of solder joints to improve reliability of electrical devices. Finally, the gained knowledge of nucleation in the studied system will be generalised and extended to any system. 

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Ben Poole - The Temperature Sensitivity of Galling in Hard-facing Alloys

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Bogdan Dovgyy - Use of Machine Learning to design alloys for additive manufacturing

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Figure 1. (a) Alloy development cycle for additive manufacturing, (b) scanning strategy-microstructure relationship of a selected multi-component alloy.
Figure 1. (a) Alloy development cycle for additive manufacturing, (b) scanning strategy-microstructure relationship of a selected multi-component alloy.

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crack nanjing swansoft cnc simulator  Stress relaxation cracking (SRC) is a degradation mechanism which occurs in stainless steels and nickel alloys between 550° C and 750°C operation temperature. SRC is a failure mode which can occur during post-weld heat treatment, within 1 to 2 years of service. Cracked regions are located in the heat treatment affected zone (HAZ) or in cold deformed areas subject to long term annealing. An intergranular crack is developed due to high temperature relaxation of internal stress causes local deformation within the microstructure, i.e. a creep failure mechanism.

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Figure: ARGUS forescatter diode images revealing orientation contrast of Ni based 800H alloy samples, heat treated at different conditions: (i) as received, (ii)at 650°C 168hr, (iii) at ~980°C 3hr and (iv)at 1200°C 48hr

Hannah Lord - Microstructure Effects on Fatigue in (New) Titanium Alloys

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Dr Ioannis Bantounas – Effect of Microstructure & Micro-Mechanisms Responsible for High Temperature Mechanical Properties of Co-Based Superalloys

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Backscattered electron micrograph showing secondary and tertiary gamma prime precipitates in a Co-based superalloy.

Jana Smutna - Understanding the role of hydrogen-dislocation interactions...

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Jedsada Lertthanasarn - Multiscale hierarchical lattices: Crystal plasticity-based FEM modelling

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Liuqing Peng - Reactions between liquid AZ91 and mild steel crucibles

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SEM image of a typical microstructure of AZ91 and mild steel crucible after isothermal holding

Minsoo Jin - Rapid solidification microstructure formation in cubic and non-cubic alloys fabricated by selective laser melting

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Peilong Dong - Atmospheric Stress Corrosion Cracking of Low Carbon Austenitic Stainless Steels...

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Samuel Rogers - Alloy Conceptual Design and the Fundamental Mechanisms of Galling & Wear in the PWR Environment

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Tom Bellamy - The role of pores with regards to plastic deformation and fatigue crack initiation in single crystal nickel superalloys.

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Tom McAuliffe - Deformation mechanisms in Co/Ni-base superalloys

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Figure 1: Secondary electron image of the ɣ’ distribution in a Co/Ni-base superalloy (Knop et al, “A new polycrystalline Co-Ni superalloy” JOM, vol. 66, no. 12, pp. 2495-2501, 2014)

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Xinping Fan - Strain partitioning in dual phase titanium alloys for aerospace applications

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sony vegas 9 pro keygen download Dwell fatigue was one of the major causes for crack initiation on aeroengine discs, which lead to the reduction of service life. Cold dwell fatigue (CDF) was a complex deformation process that can take place at room temperature. This project is aiming to understand the role of microstructure on damage accumulation in Ti-624x series, with controlled microstructures, and understand how they perform in complex cyclic loading regimes. Major characterisation techniques will be high spatial resolution digital image correlation and high resolution electron backscatter diffraction. Experimental results combined with crystal plasticity modelling will be used to understand the strain partitioning in Ti-624x alloys.

Yitong Shi - Environmental Effects on Cracking in Titanium Alloys

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Jingwei Xian - The nucleation and growth of Cu6Sn5 in solders

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Abigail Ackerman - Secondary Alpha in Ti-6Al-2Sn-4Zr-6Mo

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Alexander Foden – Improving Techniques for High Resolution Electron Backscatter Diffraction

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Bo Chen - The Analysis of Fatigue Crack Nucleation & Propagation in Powder Nickel Superalloys using Crystal Plasticity Finite Element Modelling...

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Chong Zhao - Study of Micro Mechanical Deformation in Hardfacing Alloy

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phuong phap cracking la gi Hardfacing alloys have excellent corrosion and wear resistance. Cobalt base hardfacing alloys have good hard facing capacity and are widely used in nuclear applications. However, radiation from Cobalt is hazardous for both workers and plant materials so a non-radiative iron base hardfacing alloy is designed to replace traditional cobalt base alloys. This project will observe the sliding wear behaviour in this material. Mechanical properties, such as shear strength, elastic strain and galling resistance in increasing temperatures will be studied. These mechanical properties shall be compared with other hardfacing alloys and the relationship between chemical compositions and mechanical properties shall be investigated.

Chris Collins - The effect of nitrogen on Ti-6Al-4V

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Claire Trant - Fatigue in Gamma Titanium Aluminide

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David Wilson - Microstructurally sensitive modelling methodologies for crack nucleation and growth in Zr alloys

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Felicity Dear - Fundamental mechanisms in titanium alloys

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tips to crack amie Factors controlling and contributing to dwell fatigue are of primary interest, including slip behaviours and solute site partitioning within ordered Ti3Al precipitates. Atomic-scale structure and chemistry will be observed using techniques such as atom probe tomography and ALCHEMI, while dislocation behaviours will be studied using mechanical testing and TEM. Control of texture forms another aspect of the project, to be addressed with EBSD and fatigue testing.

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Dr Guang Zeng - Intermetallic nucleation and growth in Magnesium alloy solidification

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Hikmatyar Hasan - Multi-scale modelling of high-temperature deformation mechanisms in Co-Al-W-based superalloys

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Jim Hickey – H2S Corrosion of High Strength Steels

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Figure 1 – Inverse Pole Figure Map (Z – perpendicular to sample surface) of a sample of interstitial free steel that has been rolled then annealed at 700 ⁰C for 48 hours. The map is of the rolled surface with the rolling direction depicted.
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Ning Hou - Directional Solidification of Eutectic Pb-free Solders

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Dr Sergey Belyakov – Optimising Sn-Cu-Ni solders for reflow and micro-joints

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  • S.A. Belyakov, C.M. Gourlay, NiSn4 formation during solidification of Sn-Ni alloys. Intermetallics. 25 pp. 48-59, 2012
  • S.A. Belyakov, C.M. Gourlay, NiSn4 formation in Ni-Sn and ENIG-Sn couples. Journal of Electronic Materials. 41(12) pp. 3331- 3341, 2012
  • S.A. Belyakov, C.M. Gourlay, Role of Fe impurities in the nucleation of metastable NiSn4, Intermetallics. 37, pp. 32-41, 2013

Simon Wyatt - Understanding Crystallographic Texture Evolution in Two-Phase (hcp/bcc) Alloys

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Dr Sudha Joseph - Dwell fatigue crack initiation in compressor disc alloy Ti-6262Si

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Tianhong Gu - EBSD studies of the evolution of microstructure and damage during the thermal cycling of Pb-free solder materials

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William White - Discrete dislocation dynamics coupled with discrete solute diffusion to model the effect of hydrogen in steel

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Dr Claudia Gasparrini - Neutron irradiation damage of nuclear reactor pressure vessel steels

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Dr Daniel King - Atomic scale modelling of nano-solute-vacancy clusters in reactor pressure vessel steels

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Graphical abstract of a recent publication “D.J.M. King, P.A. Burr, S.C. Middleburgh, T.M. Whiting, M.G. Burke, M.R. Wenman. The formation and structure of Fe-Mn-Ni-Si solute clusters and G-phase precipitates in steels. Journal of Nuclear Materials. 2018. https://doi.org/10.1016/j.jnucmat.2018.03.050” that investigates the structure of FexMn6Ni16Si7 clusters in A508 steel.

Filippo Vecchiato - Microstructural evolution of 316l stainless steel in laser powder bed fusion

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Dr Yilun Xu - Crystal Plasticity Modelling of Electronic Solder Joint Performance

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