Detail publikace

NDT of Mechanical Damaged Concrete Specimens by Nonlinear Acoustic Spectroscopy Method

MATYSÍK, M. PLŠKOVÁ, I. KOŘENSKÁ, M. KUCHARCZYKOVÁ, B.

Originální název

NDT of Mechanical Damaged Concrete Specimens by Nonlinear Acoustic Spectroscopy Method

Anglický název

NDT of Mechanical Damaged Concrete Specimens by Nonlinear Acoustic Spectroscopy Method

Jazyk

en

Originální abstrakt

Current research and development of non-linear ultrasonic spectroscopy methods shows these methods to be very promising for material testing and defectoscopy in the near future. Our experiments focused on the testing of lightweight concrete specimens using the single-frequency excitation method. We studied the concrete specimens structure after having been stressed by a mechanical force. Measurements were realized before and after mechanical loading.

Anglický abstrakt

Current research and development of non-linear ultrasonic spectroscopy methods shows these methods to be very promising for material testing and defectoscopy in the near future. Our experiments focused on the testing of lightweight concrete specimens using the single-frequency excitation method. We studied the concrete specimens structure after having been stressed by a mechanical force. Measurements were realized before and after mechanical loading.

Plný text v Digitální knihovně

Dokumenty

BibTex


@article{BUT47699,
  author="Michal {Matysík} and Iveta {Plšková} and Marta {Kořenská} and Barbara {Kucharczyková}",
  title="NDT of Mechanical Damaged Concrete Specimens by Nonlinear Acoustic Spectroscopy Method",
  annote="Current research and development of non-linear ultrasonic spectroscopy methods shows these methods to be very promising for material testing and defectoscopy in the near future. Our experiments focused on the testing of lightweight concrete specimens using the single-frequency excitation method. We studied the concrete specimens structure after having been stressed by a mechanical force. Measurements were realized before and after mechanical loading.",
  address="Ministry of Transport",
  chapter="47699",
  doi="10.5507/tots.2009.024",
  institution="Ministry of Transport",
  journal="TRANSACTIONS ON TRANSPORT SCIENCES",
  number="4",
  volume="2",
  year="2010",
  month="april",
  pages="166--171",
  publisher="Ministry of Transport",
  type="journal article - other"
}