Gerhard Leichtfried

About Gerhard Leichtfried

Gerhard Leichtfried, With an exceptional h-index of 21 and a recent h-index of 17 (since 2020), a distinguished researcher at Universität Innsbruck, specializes in the field of additive manufacturing, laser melting, electron beam melting, molybdenum, tungsten.

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

Experimental verification of additively manufactured stacked multi-wedge acoustic black holes in beams for low frequency

Advancements in metal additive manufacturing: In-situ heat treatment of aluminium alloys during the laser powder bed fusion process

Microstructural evolution and mechanical properties of Ti-6Al-4V in situ alloyed with 3.5 wt.% Cu by laser powder bed fusion

Solute-induced grain refinement and defect suppression in boron-modified molybdenum manufactured via laser powder-bed fusion

Enhancing equiaxed grain formation in a high-alloy tool steel using dual laser powder bed fusion

Deformation and fatigue behaviour of additively manufactured Scalmalloy® with bimodal microstructure

Systematic approach to process parameter optimization for laser powder bed fusion of low-alloy steel based on melting modes

Molybdenum alloy Mo-Ti-Zr-C adapted for laser powder bed fusion with refined isotropic microstructure and excellent high temperature strength

Gerhard Leichtfried Information

University

Position

Professor der Werkstoffwissenschaften;

Citations(all)

3039

Citations(since 2020)

1617

Cited By

1738

hIndex(all)

21

hIndex(since 2020)

17

i10Index(all)

35

i10Index(since 2020)

22

Email

University Profile Page

Google Scholar

Gerhard Leichtfried Skills & Research Interests

additive manufacturing

laser melting

electron beam melting

molybdenum

tungsten

Top articles of Gerhard Leichtfried

Experimental verification of additively manufactured stacked multi-wedge acoustic black holes in beams for low frequency

Mechanical Systems and Signal Processing

2024/2/15

Martin Brunner
Martin Brunner

H-Index: 36

Gerhard Leichtfried
Gerhard Leichtfried

H-Index: 11

Advancements in metal additive manufacturing: In-situ heat treatment of aluminium alloys during the laser powder bed fusion process

Materials Science and Engineering: A

2024/1/14

Microstructural evolution and mechanical properties of Ti-6Al-4V in situ alloyed with 3.5 wt.% Cu by laser powder bed fusion

Journal of Electronic Materials

2016/10

Solute-induced grain refinement and defect suppression in boron-modified molybdenum manufactured via laser powder-bed fusion

International Journal of Refractory Metals and Hard Materials

2023/12/1

Gerhard Leichtfried
Gerhard Leichtfried

H-Index: 11

Enhancing equiaxed grain formation in a high-alloy tool steel using dual laser powder bed fusion

Additive Manufacturing

2023/7/25

Gerhard Leichtfried
Gerhard Leichtfried

H-Index: 11

Deformation and fatigue behaviour of additively manufactured Scalmalloy® with bimodal microstructure

International Journal of Fatigue

2023/7/1

Systematic approach to process parameter optimization for laser powder bed fusion of low-alloy steel based on melting modes

The International Journal of Advanced Manufacturing Technology

2023/6

Gerhard Leichtfried
Gerhard Leichtfried

H-Index: 11

Molybdenum alloy Mo-Ti-Zr-C adapted for laser powder bed fusion with refined isotropic microstructure and excellent high temperature strength

International Journal of Refractory Metals and Hard Materials

2023/6/1

Gerhard Leichtfried
Gerhard Leichtfried

H-Index: 11

Microstructure of a modulated Ti-6Al-4V–Cu alloy fabricated via in situ alloying in laser powder bed fusion

Materialia

2023/5/1

Gerhard Leichtfried
Gerhard Leichtfried

H-Index: 11

Editorial special issue 20th plansee seminar

International Journal Of Refractory Metals & Hard Materials

2023/4/25

Jose Garcia
Jose Garcia

H-Index: 3

Daniele Mari
Daniele Mari

H-Index: 16

Gerhard Leichtfried
Gerhard Leichtfried

H-Index: 11

Additively manufactured component and production method therefor

2023/1/31

Processing of Aluminum Alloy 6182 with High Scanning Speed in LPBF by In-Situ Alloying with Zr and Ti Powder

Alloys

2022/12/8

Gerhard Leichtfried
Gerhard Leichtfried

H-Index: 11

An improved process scan strategy to obtain high-performance fatigue properties for Scalmalloy®

Materials & Design

2022/12/1

Crack-free in situ heat-treated high-alloy tool steel processed via laser powder bed fusion: microstructure and mechanical properties

Heliyon

2022/8/1

Gerhard Leichtfried
Gerhard Leichtfried

H-Index: 11

Unique microstructure evolution of a novel Ti-modified Al-Cu alloy processed using laser powder bed fusion

Materials Today Communications

2022/6/1

Philipp Mair
Philipp Mair

H-Index: 1

Gerhard Leichtfried
Gerhard Leichtfried

H-Index: 11

Processability of high-strength aluminum 6182 series alloy via laser powder bed fusion (LPBF)

The International Journal of Advanced Manufacturing Technology

2022/4/1

Gerhard Leichtfried
Gerhard Leichtfried

H-Index: 11

Microstructural features and mechanical properties of a novel Ti-and Zr-modified Al-Mn alloy processed by laser powder bed fusion

Journal of Materials Research and Technology

2020/9/1

Grain refinement mechanisms of alloying molybdenum with carbon manufactured by laser powder bed fusion

Materials & Design

2022/3/1

Dependence of mechanical properties and microstructure on solidification onset temperature for Al2024–CaB6 alloys processed using laser powder bed fusion

Materials Science and Engineering: A

2022/1/26

Additively manufactured refractory metal component, additive manufacturing process and powder

2022/1/20

See List of Professors in Gerhard Leichtfried University(Universität Innsbruck)