Philipp Frankel

Philipp Frankel

Manchester University

H-index: 28

North America-United States

About Philipp Frankel

Philipp Frankel, With an exceptional h-index of 28 and a recent h-index of 26 (since 2020), a distinguished researcher at Manchester University, specializes in the field of materials science, nuclear materials, synchrotron x-ray diffraction.

His recent articles reflect a diverse array of research interests and contributions to the field:

Evolution of Zr (Fe, Cr) 2 second phase particles in Zircaloy-2 under heavy ion irradiation

Quantifying cracking and strain localisation in a cold spray chromium coating on a zirconium alloy substrate under tensile loading at room temperature

A spatially resolved analysis of dislocation loop and nanohardness evolution in proton irradiated Zircaloys

Fractional densities and character of dislocations in different slip modes from powder diffraction patterns

Identification, classification and characterisation of hydrides in Zr alloys

The role of hydrides and precipitates on the strain localisation behaviour in a zirconium alloy

Exploring the hydride-slip interaction in zirconium alloys

Characterization of Irradiation Damage Using X-Ray Diffraction Line-Profile Analysis

Philipp Frankel Information

University

Position

___

Citations(all)

2237

Citations(since 2020)

1527

Cited By

1381

hIndex(all)

28

hIndex(since 2020)

26

i10Index(all)

50

i10Index(since 2020)

46

Email

University Profile Page

Google Scholar

Philipp Frankel Skills & Research Interests

materials science

nuclear materials

synchrotron x-ray diffraction

Top articles of Philipp Frankel

Evolution of Zr (Fe, Cr) 2 second phase particles in Zircaloy-2 under heavy ion irradiation

Journal of Nuclear Materials

2024/4/16

Michael Preuss
Michael Preuss

H-Index: 28

Philipp Frankel
Philipp Frankel

H-Index: 20

Quantifying cracking and strain localisation in a cold spray chromium coating on a zirconium alloy substrate under tensile loading at room temperature

Journal of Nuclear Materials

2024/4/1

A spatially resolved analysis of dislocation loop and nanohardness evolution in proton irradiated Zircaloys

Acta Materialia

2024/2/27

Fractional densities and character of dislocations in different slip modes from powder diffraction patterns

Journal of Nuclear Materials

2024/2/1

Identification, classification and characterisation of hydrides in Zr alloys

Scripta Materialia

2024/1/1

The role of hydrides and precipitates on the strain localisation behaviour in a zirconium alloy

Acta Materialia

2023/12/1

Exploring the hydride-slip interaction in zirconium alloys

Acta Materialia

2023/12/1

Characterization of Irradiation Damage Using X-Ray Diffraction Line-Profile Analysis

2023/11/1

Understanding the Mechanistic Role of Lithium in Accelerated Corrosion of Zirconium Alloys Using Advanced Characterization and Atomistic Simulation

2023/11/1

Detecting irradiation-induced strain localisation on the microstructural level by means of high-resolution digital image correlation

Journal of Nuclear Materials

2023/7/1

Dislocation density transients and saturation in irradiated zirconium

International Journal of Plasticity

2023/5/1

Untangling competition between epitaxial strain and growth stress through examination of variations in local oxidation

Nature Communications

2023/1/17

Characterisation of hydride precipitation and reorientation in Zircaloy-4 at different metallurgical states

ASTM STP1645 20th Int. Symp. Zircon. Nucl. Ind.

2023

Simulation of crystal plasticity in irradiated metals: A case study on Zircaloy-4

Acta Materialia

2022/12/1

A novel method for radial hydride analysis in zirconium alloys: HAPPy

Journal of Nuclear Materials

2022/2/1

Dislocation loop line density analysis–fundamental differences between TEM and XRD

2022

Michael Preuss
Michael Preuss

H-Index: 28

Philipp Frankel
Philipp Frankel

H-Index: 20

Photon Irradiation Effects on Oxide Surface Electrochemistry and Oxide Microstructure of Zircaloy 4 in High-Temperature Water

2021/7/28

The effect of loading direction on slip and twinning in an irradiated zirconium alloy

2021/7/28

Toward a Mechanistic Understanding of Pellet Cladding Interaction Using Advanced 3D Characterization and Atomistic Simulation

2021/7/28

The importance of substrate grain orientation on local oxide texture and corrosion performance in α-Zr alloys

2021/7/28

See List of Professors in Philipp Frankel University(Manchester University)