Structural materials used for safety critical applications require high strength and simultaneously high resistance against crack growth, referred to as damage tolerance. However, the two properties typically exclude each other and research efforts towards ever stronger materials are hampered by drastic loss of fracture resistance. Therefore, future development of novel ultra-strong bulk materials requires a fundamental understanding of the toughness determining mechanisms. As model material we use today's strongest metallic bulk material, namely, a nanostructured pearlitic steel wire, and measured the fracture toughness on micron-sized specimens in different crack growth directions and found an unexpected strong anisotropy in the fracture ...
The work of Frommeyer on electrical conductivity measurements in pearlitic steels is reviewed to pro...
The paper focuses on the effective resistance and the near-threshold growth mechanisms in theferriti...
© 2020 We investigate the possibility of achieving high fracture toughness and high strength by the ...
Structural materials used for safety critical applications require high strength and simultaneously ...
Steel wires are widely used in various industrial applications. Hence, the drawing process and the r...
Microstructural refinement to the nanoscale imparts tremendous strength to metals while following th...
Pearlitic steels with their lamellar microstructure of thin Fe3C lamellae embedded in the α-Fe matri...
International audiencePushing the internal or external dimensions of metallic alloys down to the nan...
Publishing the internal or external dimensions of metallic alloys down to the nanometer scale gives ...
Strengthening of metals through nanoscale grain boundaries and coherent twin boundaries is manifeste...
In situ micro-cantilever fracture testing is used to demonstrate changes in fracture behavior of nan...
Few engineering materials are limited by their strength; rather they are limited by their resistance...
The mechanical properties of materials strongly depend on their microstructure. Therefore, engineeri...
AbstractMicromechanical experiments with 3 × 3 × 6 μm3 sized micro pillars were used to examine orie...
Strengthening materials traditionally involves the controlled creation of internal defects and bound...
The work of Frommeyer on electrical conductivity measurements in pearlitic steels is reviewed to pro...
The paper focuses on the effective resistance and the near-threshold growth mechanisms in theferriti...
© 2020 We investigate the possibility of achieving high fracture toughness and high strength by the ...
Structural materials used for safety critical applications require high strength and simultaneously ...
Steel wires are widely used in various industrial applications. Hence, the drawing process and the r...
Microstructural refinement to the nanoscale imparts tremendous strength to metals while following th...
Pearlitic steels with their lamellar microstructure of thin Fe3C lamellae embedded in the α-Fe matri...
International audiencePushing the internal or external dimensions of metallic alloys down to the nan...
Publishing the internal or external dimensions of metallic alloys down to the nanometer scale gives ...
Strengthening of metals through nanoscale grain boundaries and coherent twin boundaries is manifeste...
In situ micro-cantilever fracture testing is used to demonstrate changes in fracture behavior of nan...
Few engineering materials are limited by their strength; rather they are limited by their resistance...
The mechanical properties of materials strongly depend on their microstructure. Therefore, engineeri...
AbstractMicromechanical experiments with 3 × 3 × 6 μm3 sized micro pillars were used to examine orie...
Strengthening materials traditionally involves the controlled creation of internal defects and bound...
The work of Frommeyer on electrical conductivity measurements in pearlitic steels is reviewed to pro...
The paper focuses on the effective resistance and the near-threshold growth mechanisms in theferriti...
© 2020 We investigate the possibility of achieving high fracture toughness and high strength by the ...