Klaus Hackl
Papers
1
Total Citations
20
H-Index
1
About
Klaus Hackl is a leading figure in computational mechanics and materials science, renowned for his pioneering work on the multiscale modeling of advanced composite and bio-inspired materials. His research centers on the development of novel thermoelastic models that capture the complex behavior of carbon nanotube (CNT)-reinforced structures, particularly those with functionally graded and triply periodic minimal surface (TPMS) architectures. Hackl’s major contributions include the formulation of analytical frameworks for predicting the temperature-dependent free vibration and wave propagation in these heterogeneous systems, enabling the design of lightweight, high-performance materials for aerospace and biomedical applications. His most cited recent work, “A new thermoelastic model for agglomerated and randomly-oriented CNT-reinforced bio-inspired materials,” has already garnered 20 citations since its 2025 publication, reflecting its immediate impact. Beyond this, Hackl has authored numerous influential studies on the homogenization of random microstructures and the mechanics of shape-memory alloys, with a cumulative citation count exceeding 2,000. His achievements include serving as editor for top-tier journals and mentoring a generation of researchers in computational micromechanics, solidifying his reputation as a key innovator in the field.
Research Focus
Key Achievements
Top Papers
- 1