michael kassner

michael kassner

University of Southern California

H-index: 48

North America-United States

About michael kassner

michael kassner, With an exceptional h-index of 48 and a recent h-index of 27 (since 2020), a distinguished researcher at University of Southern California, specializes in the field of materials science.

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

Magnetron Sputtering as a Microstructural Screening Tool for Laser Additive Manufacturing: Study on Ni Superalloys

Mg effect on the cryogenic temperature toughness of Al-Mg alloys

The creep and fracture behavior of additively manufactured Inconel 625 and 718

Comments on the Mechanism of Detachment in Creep of Dispersion Strengthened Alloys at High Temperatures

X-Ray Diffraciton and the Existence of Long Range Internal Stresses

Large-Strain Softening of Metals at Elevated Temperatures by Deformation Texture Development

The creep and fracture properties of additively manufactured inconel 625

Effect of post‐heat treatment on the tensile and cryogenic impact toughness properties of inconel 718 manufactured by selective laser melting

michael kassner Information

University

Position

Choong Hoon Cho Chair and Professor of Materials Science and Mechanical Engineering at

Citations(all)

10595

Citations(since 2020)

3452

Cited By

8553

hIndex(all)

48

hIndex(since 2020)

27

i10Index(all)

115

i10Index(since 2020)

58

Email

University Profile Page

Google Scholar

michael kassner Skills & Research Interests

materials science

Top articles of michael kassner

Title

Journal

Author(s)

Publication Date

Magnetron Sputtering as a Microstructural Screening Tool for Laser Additive Manufacturing: Study on Ni Superalloys

Advanced Engineering Materials

Daniel C Goodelman

Michael E Kassner

Andrea M Hodge

2024/1/29

Mg effect on the cryogenic temperature toughness of Al-Mg alloys

Materials & Design

Kwangtae Son

Michael E Kassner

Tae-Kyu Lee

Ji-Woon Lee

2022/12/1

The creep and fracture behavior of additively manufactured Inconel 625 and 718

Materials at High Temperatures

ME Kassner

KT Son

KA Lee

Tae-Hoon Kang

R Ermagan

2022/11/2

Comments on the Mechanism of Detachment in Creep of Dispersion Strengthened Alloys at High Temperatures

Metals

Michael E Kassner

Theophil Oros

Praveen Kumar

2022/7/13

X-Ray Diffraciton and the Existence of Long Range Internal Stresses

M A Delos-Reyes

M E Kassner

Lyle E Levine

2021/10/12

Large-Strain Softening of Metals at Elevated Temperatures by Deformation Texture Development

Metals

Michael E Kassner

Roya Ermagan

2021/6/30

The creep and fracture properties of additively manufactured inconel 625

Materialia

Kwang-tae Son

TQ Phan

Lyle Levine

Kyu-Sik Kim

Kee-Ahn Lee

...

2021/3

Effect of post‐heat treatment on the tensile and cryogenic impact toughness properties of inconel 718 manufactured by selective laser melting

Advanced Engineering Materials

So‐Yeon Park

Kyu‐Sik Kim

Min‐Cheol Kim

Michael E Kassner

Kee‐Ahn Lee

2021/3

Frustration of the dislocation density in NaCl and its implication on “Harper-Dorn” creep

Materials Science and Engineering: A

Shobhit Pratap Singh

Praveen Kumar

Michael E Kassner

2021/1/2

The creep behavior of additively manufactured Inconel 625

Advanced Engineering Materials

Kwang‐Tae Son

Michael E Kassner

Kee Ahn Lee

2020/1

Determination of Long-Range Internal Stresses in Cyclically Deformed Copper Single Crystals Using Convergent Beam Electron Diffraction

Crystals

Roya Ermagan

Maxime Sauzay

Matthew H Mecklenburg

Michael E Kassner

2020/11/24

High-temperature tensile and high cycle fatigue properties of inconel 625 alloy manufactured by laser powder bed fusion

Additive Manufacturing

Kyu-Sik Kim

Tae-Hoon Kang

Michael E Kassner

Kwang-Tae Son

Kee-Ahn Lee

2020/10/1

New developments in understanding Harper–Dorn, five-power law creep and power-law breakdown

Metals

Michael E Kassner

2020/9/25

The low-stress and high-temperature creep in LiF single crystals: An explanation for the So-called Harper-Dorn creep

Materialia

Shobhit Pratap Singh

Praveen Kumar

Michael E Kassner

2020/9/1

Assessment of Internal Stresses Using Dislocation Dipole Heights in Cyclically Deformed [001] Copper Single Crystals

Metals

Roya Ermagan

Maxime Sauzay

Michael Ernest Kassner

2020/4/15

Erratum to “The low-stress and high-temperature creep in LiF single crystals: An explanation for the So-called Harper-Dorn creep”[Materialia 13 (2020) 10086]

Materialia

Shobhit Pratap Singh

Praveen Kumar

Michael E Kassner

2020/12/1

See List of Professors in michael kassner University(University of Southern California)

Co-Authors

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