Maik Trautmann

About Maik Trautmann

Maik Trautmann, With an exceptional h-index of 7 and a recent h-index of 6 (since 2020), a distinguished researcher at Technische Universität Chemnitz, specializes in the field of Composites, Hybrid Laminates, Fibre Coating.

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

Very high cycle fatigue assessment of thermoplastic-based hybrid fiber metal laminate by using a high-frequency resonant testing system

Effect of Milling Time and Reinforcement Volume Fraction on Microstructure and Mechanical Properties of SiCp-Reinforced AA2017 Composite Powder Produced …

Fatigue condition monitoring of notched thermoplastic-based hybrid fiber metal laminates using electrical resistance measurement and digital image correlation

Joining of Macroscopic 3D Steel Transition Wire Structures to Steel Sheets: Study on the Mechanical, Microstructural, and Phase Characteristics of Brazed and Glued Joints

Influencing the size and shape of high-energy ball milled particle reinforced aluminum alloy powder

Yttria-Coated Tungsten Fibers for Use in Tungsten Fiber-Reinforced Composites: A Comparative Study on PVD vs. CVD Routes

Mechanical properties of thermoplastic-based hybrid laminates with regard to layer structure and metal volume content

Influence of aluminum surface treatment on tensile and fatigue behavior of thermoplastic-based hybrid laminates

Maik Trautmann Information

University

Position

Group of Composites and Material Compounds

Citations(all)

153

Citations(since 2020)

125

Cited By

67

hIndex(all)

7

hIndex(since 2020)

6

i10Index(all)

5

i10Index(since 2020)

4

Email

University Profile Page

Google Scholar

Maik Trautmann Skills & Research Interests

Composites

Hybrid Laminates

Fibre Coating

Top articles of Maik Trautmann

Very high cycle fatigue assessment of thermoplastic-based hybrid fiber metal laminate by using a high-frequency resonant testing system

International Journal of Fatigue

2024/4/28

Effect of Milling Time and Reinforcement Volume Fraction on Microstructure and Mechanical Properties of SiCp-Reinforced AA2017 Composite Powder Produced …

Materials

2024/1/16

Maik Trautmann
Maik Trautmann

H-Index: 5

Guntram Wagner
Guntram Wagner

H-Index: 16

Fatigue condition monitoring of notched thermoplastic-based hybrid fiber metal laminates using electrical resistance measurement and digital image correlation

Journal of Composite Materials

2023/7

Joining of Macroscopic 3D Steel Transition Wire Structures to Steel Sheets: Study on the Mechanical, Microstructural, and Phase Characteristics of Brazed and Glued Joints

Metals

2022/6/29

Maik Trautmann
Maik Trautmann

H-Index: 5

Guntram Wagner
Guntram Wagner

H-Index: 16

Influencing the size and shape of high-energy ball milled particle reinforced aluminum alloy powder

Materials

2022/4/21

Maik Trautmann
Maik Trautmann

H-Index: 5

Guntram Wagner
Guntram Wagner

H-Index: 16

Yttria-Coated Tungsten Fibers for Use in Tungsten Fiber-Reinforced Composites: A Comparative Study on PVD vs. CVD Routes

Coatings

2021/9/16

Maik Trautmann
Maik Trautmann

H-Index: 5

Guntram Wagner
Guntram Wagner

H-Index: 16

Mechanical properties of thermoplastic-based hybrid laminates with regard to layer structure and metal volume content

Metals

2020/10/28

Influence of aluminum surface treatment on tensile and fatigue behavior of thermoplastic-based hybrid laminates

Materials

2020/7/10

See List of Professors in Maik Trautmann University(Technische Universität Chemnitz)