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Key Engineering Materials
The determination of drying period, compressive strength, and air-dry density represent crucial parameters for assessing the quality and performance of earthen construction materials. This paper explores the possibilities of using the ultrasonic method as a non-destructive testing technique applied to earthen materials (specimens, elements, or ...
Bogdan Bolborea +7 more
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The determination of drying period, compressive strength, and air-dry density represent crucial parameters for assessing the quality and performance of earthen construction materials. This paper explores the possibilities of using the ultrasonic method as a non-destructive testing technique applied to earthen materials (specimens, elements, or ...
Bogdan Bolborea +7 more
openaire +1 more source
Further Investigation Regarding the Use of Ultrasonic Pulse Velocity (UPV) on Earthen Elements
Key Engineering MaterialsThe assessment of compressive strength, and air-dry density constitutes essential parameters for evaluating the quality and performance of earthen construction materials. To ascertain these properties, this study investigates the potential application of ultrasonic testing as a non-destructive evaluation technique for earthen materials, including ...
Bogdan Bolborea +4 more
openaire +1 more source
Detection of Concrete Surface Crack Depth Using Ultrasonic Pulse Velocity (UPV) Methods
2022B. M. K. L. K. Basnayake +2 more
openaire +1 more source
Evaluation of concrete paving block strength through ultrasonic pulse velocity (UPV) measurements
4th International Civil Engineering & Architecture Conference Volume 1: Civil EngineeringBircan Arslannur, Muhammed A. Özdemir
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Assessment of strength properties of cemented paste backfill by ultrasonic pulse velocity test
Ultrasonics, 2014Tekin Yilmaz +2 more
exaly
Evaluation of concrete degradation depending on heating conditions by ultrasonic pulse velocity
Construction and Building Materials, 2018Gyuyong Kim +2 more
exaly
Concrete Quality Designation based on Ultrasonic Pulse Velocity
Construction and Building Materials, 2016Bernard Giroux, Patrice Rivard
exaly

