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Book Fatigue Crack Detection on Structural Steel Members by Using Ultrasound Excited Thermography   Erkennung Von Erm  dungsrissen in Stahlbauteilen Durch Ultraschallangeregte Thermografie

Download or read book Fatigue Crack Detection on Structural Steel Members by Using Ultrasound Excited Thermography Erkennung Von Erm dungsrissen in Stahlbauteilen Durch Ultraschallangeregte Thermografie written by Robin Marc Plum and published by . This book was released on 2020-10-09 with total page 356 pages. Available in PDF, EPUB and Kindle. Book excerpt: Ultrasound excitation of structural steel members leads to localised energy dissipation at existent fatigue cracks and thus allows for thermographic flaw detection. Essential effects on the defect-selective heating, such as flaw size, plate thickness, crack mouth opening or static preload, are systematically investigated. Laser vibrometry measurements of the crack edges, theoretical modelling of frictional heating and numerical simulations contribute to the understanding of the involved physics. This work was published by Saint Philip Street Press pursuant to a Creative Commons license permitting commercial use. All rights not granted by the work's license are retained by the author or authors.

Book Fatigue crack detection on structural steel members by using ultrasound excited thermography   Erkennung von Ermuedungsrissen in Stahlbauteilen durch ultraschallangeregte Thermografie

Download or read book Fatigue crack detection on structural steel members by using ultrasound excited thermography Erkennung von Ermuedungsrissen in Stahlbauteilen durch ultraschallangeregte Thermografie written by Plum, Robin Marc and published by KIT Scientific Publishing. This book was released on 2015-08-27 with total page 360 pages. Available in PDF, EPUB and Kindle. Book excerpt: Ultrasound excitation of structural steel members leads to localised energy dissipation at existent fatigue cracks and thus allows for thermographic flaw detection. Essential effects on the defect-selective heating, such as flaw size, plate thickness, crack mouth opening or static preload, are systematically investigated. Laser vibrometry measurements of the crack edges, theoretical modelling of frictional heating and numerical simulations contribute to the understanding of the involved physics.