Wykaz publikacji wybranego autora

Łukasz Pieczonka, dr hab. inż., prof. AGH

profesor nadzwyczajny

Wydział Inżynierii Mechanicznej i Robotyki
WIMiR-krm, Katedra Robotyki i Mechatroniki


  • 2018

    [dyscyplina 1] dziedzina nauk inżynieryjno-technicznych / inżynieria mechaniczna


[poprzednia klasyfikacja] obszar nauk technicznych / dziedzina nauk technicznych / mechanika


Identyfikatory Autora Informacje o Autorze w systemach zewnętrznych

ORCID: 0000-0003-3623-3984 orcid iD

ResearcherID: C-9685-2011

Scopus: 57195677839

PBN: 5e709276878c28a0473960da

OPI Nauka Polska

System Informacyjny AGH (SkOs)




1
  • Air-coupled ultrasound for nondestructive testing of materials
2
  • An approach to the automated characterization of out-of-plane and in-plane local defect resonances
3
  • Analysis of elastic nonlinearity for impact damage detection in composite laminates
4
  • Analysis of vibro-acoustic modulations in nonlinear acoustics used for impact damage detection – numerical and experimental study
5
6
  • Assessing the scaling subtraction method for impact damage detection in composite plates
7
  • Badania nieniszczące metodą termografii skaningowej
8
  • Bayesian parameter identification of orthotropic composite materials using Lamb waves dispersion curves measurement
9
  • Continuum damage mechanics model for injection molded composites
10
  • Czy można odwrócić czas?
11
  • Damage detection in composite panels based on mode-converted Lamb waves sensed using 3D laser scanning vibrometer
12
  • Damage identification in frame structures using high-speed digital image correlation and local modal filtration
13
  • Damage imaging in a laminated composite using an air-coupled time reversal mirror
14
  • Damage imaging in composites using nonlinear vibro-acoustic wave modulations
15
  • Data processing scheme for laser spot thermography applied for nondestructive testing of composite laminates
16
  • Efficient swept sine chirp excitation in the non-linear vibro-acoustic wave modulation technique used for damage detection
17
  • Enhanced nonlinear crack-wave interactions for structural damage detection based on guided ultrasonic waves
18
  • Estimating the penetration depth and orientation of stress corrosion cracks using time-reversal acoustics
19
  • Evaluation of disbonds at various interfaces of adhesively bonded aluminum plates using all-optical excitation and detection of zero-group velocity Lamb waves
20
21
  • Experimental investigations of contact-type damage nonlinearity
22
23
  • Force identification based on response signals captured with high-speed three-dimensional digital image correlation
24
  • Generation of higher harmonics in longitudinal vibration of beams with breathing cracks
25