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The Evaluation of Non-Destructive Tests for the Strength and Physical Properties of Granite, Marble, and Sandstone

A Case Study from North Pakistan

Bibliographic Data

ID15801740
AuthorsWaqas Ahmed (0000-0003-2154-7542, University of Peshawar), Niaz Ahmad (0000-0002-9391-2089, University of Peshawar), Hammad Tariq Janjuhah (0000-0002-1522-5988, Shaheed Benazir Bhutto University), Ihtisham Islam (0000-0003-2443-8034, Shaheed Benazir Bhutto University), Muhammad Sajid (0000-0001-9393-3165, University of Peshawar), George Kontakiotis (0000-0001-9371-6726, National and Kapodistrian University of Athens, corresponding author)
Year2023
Volume6
Issue1
Pages4-4
Publication date2023-01-04
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueQuaternary (JOURNAL)
Journal identifiersISSN: 2571-550X • E-ISSN: 2571-550X
PublisherMultidisciplinary Digital Publishing Institute (PUBLISHER • CH)
DOI10.3390/quat6010004
OpenAlexW4313574546
LanguageEN
References cited56

Nondestructive tests, commonly employed in rock mechanics, estimate mechanical parameters without affecting the rocks in situ properties. This study evaluates non-destructive tests (ultrasonic pulse velocity and Schmidt hammer) for forecasting the strength and physical properties of commonly used rocks. Weathering grades and moisture content are provided as variables that produce variances in both non-destructive tests. The coefficient of determination (R2) and subsequent empirical equations for the best-fit trend line are calculated using a simple regression method. The ultrasonic pulse velocity is found to be more efficient in estimating most of the physical properties (specific gravity, porosity, water absorption, and dry density) of granite, marble, and sandstone, with high correlation coefficients. Whereas the Schmidt hammer is found to be more reproducible in determining the strength (compressive and tensile) of granite, marble, and sandstone. The student’s t-test proved the sensitivity and correctness of the acquired equations from the suggested correlations, and agreement was established between measured and estimated plots of strength and physical properties. Although the student’s t-test confirms that the performance of all empirical models established in this study are significant, any non-destructive test with a low R2 value should be used with caution when estimating the studied properties

Absorption of water · Composite material · Compressive strength · Destructive testing · Geotechnical engineering · Hammer · Materials testing · Mineralogy · Porosity · Schmidt hammer · Ultimate tensile strength · Water content · Weathering · Materials Science · Mineral Processing and Grinding · Rock Mechanics and Modeling · Soil and Unsaturated Flow · Geology

Citation velocityhistorical
Highly citedNo

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