Open Journal of Civil Engineering

Open Journal of Civil Engineering

ISSN Print: 2164-3164
ISSN Online: 2164-3172
www.scirp.org/journal/ojce
E-mail: ojce@scirp.org
"Application of the Combined Method for Evaluating the Compressive Strength of Concrete on Site"
written by Samia Hannachi, Mohamed Nacer Guetteche,
published by Open Journal of Civil Engineering, Vol.2 No.1, 2012
has been cited by the following article(s):
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[1] Assessment and Evaluation the Compressive Strength in Concrete Structures Usingthe in-Situ, Methods
[2] Evaluación de la resistencia a compresión de una estructura de hormigón armado utilizando diferentes métodos de estimación de SonReb
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[3] Evaluation of the compressive strength of a reinforced concrete structure using different SonReb estimation methods
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[4] Assessment of high-temperature damaged concrete using non-destructive tests and artificial neural network modelling
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[5] Investigation for estimating of concrete strength by the maturity method and the rebound hammer test
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[6] Developing SonReb models to predict the compressive strength of concrete using different percentage of recycled brick aggregate
Canadian Journal of Civil …, 2022
[7] Influence of coarse aggregate size and content on the properties of recycled aggregate concrete using non-destructive testing methods
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[8] Modelagem Matemática de Ensaios Não Destrutivos para Determinação da Resistência à Compressão do Concreto
… Series of the …, 2021
[9] Evaluation of Concrete Strength by Combined NDT Techniques: Practice, Possibilities and Recommendations
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[10] Ultrasonic testing of concrete structures: a review
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[11] 3D Printing of Portland Cement Using a Binder Jetting System
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[12] Compressive Strength of Concrete containing Eggshell Powder as Partial Cement Replacement
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[13] Assessment of Compressive Strength for RC Building Using the Non-Destructive Test and the SonReb Method: A Case Study
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[14] Çimento Esaslı Harçların Fiziksel ve Mekanik Özeliklerinde Polivinil Alkol (PVA) Liflerin Etkisi
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[15] The Relationship Between Concrete Strengths Obtained by Destructive and Non-destructive Methods
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[16] Performance Study of Eco-Concrete Based on Waste Demolition as Recycled Aggregates
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[17] Experimental Investigation on the Properties of a Recycled Aggregate Concrete Based on Waste of the Industrial Mineral Additions
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[18] STUDY OF CONCRETE STRENGTH AND INTEGRITY USING ULTRASONIC PULSE VELOCITY TEST
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[19] Conservation of 20th Century Concrete Buildings-The Case of the Strahov Stadium in Prague
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[20] Correlation of Non-destructive with Mechanical Tests for Self-Compacting Concrete (SCC)
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[21] Evaluation of Concrete Quality for Reinforced Concrete Frame Members Exposed to Natural Fires at Early Ages Using in situ Test Methods
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[22] Conservation of 20 th Century Concrete Buildings: The Case of the Strahov Stadium in Prague
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[23] Critical Appraisal of the Comparison of Mechanical and Non-destructive Testing of Concrete
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[24] Effect of the position of core on the strength of concrete of columns in existing structures
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[25] Potential Use of Small Diameter Concrete Cores for In-situ Compressive Strength Assessment
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[26] Utilization of clinker (industrial waste) as a coarse aggregate substitution on the lightweight concrete
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[27] Evaluation of concrete made with stone and brick aggregate using non-destructive testing
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[28] Non-destructive assessment of concrete deterioration by ultrasonic pulse velocity: A review
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[29] Review of non-destructive testing methods for physical condition monitoring in the port industry
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[30] Effect of Partial Replacement of Fly Ash and Expanded Polystyrene waste on Properties of Geopolymer Concrete Bricks
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[31] In-Situ Testing of Concrete Structures–A Review
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[32] Recent advances in non-destructive testing of concretes and structures: An outlook
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[33] Statistical Equations to Estimate the In-situ Concrete Compressive Strength from Non-destructive Tests
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[34] BETONARME YAPILARDA JEOFİZİK YÖNTEMLERLE BETON KALİTESİ VE YAPI DONATI DURUMUNUN ARAŞTIRILMASI
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[35] A Computational Investigation for Two-Dimensional Eddy Current Testing Problems Using Subregion Finite Element Method
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[36] The Effect of Different Equations and Methods on R-Square Values of Ndt Correlations
International Academic Conference on Applied Research in Engineering, Science & Technology, 2018
[37] Development of Prediction Models for Mechanical Properties and Durability of Concrete Using Combined Nondestructive Tests
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[38] Adapting ANNs in SONREB Test to Estimate Concrete Compressive Strength
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[39] ANALISIS PENGARUH KELEMBABAN BENDA UJI TERHADAP KUAT TEKAN DAN KUAT TARIK BELAH BETON MUTU TINGGI DENGAN METODE DESTRUCTIVE …
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[40] Comparison of Non-Destructive and Destructive Testing on Concrete: A Review. Tr Civil Eng & Arch 3 (1)-2018
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[41] Моделирование прочностных и деформационных свойств сталефиброшлакобетона при осевом растяжении и сжатии с учетом возраста бетона
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[42] Testing of concrete by rebound method: Leeb versus Schmidt hammers
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[43] ANALISIS PENGARUH KELEMBABAN BENDA UJI TERHADAP KUAT TEKAN DAN KUAT TARIK BELAH BETON MUTU TINGGI DENGAN METODE …
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[44] Evaluation of statistical parameters of concrete strength from secondary experimental test data
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[45] Mechanical Properties Of Lightweight Aggregates Concrete Made With Cameroonian Volcanic Scoria: Destructive And Non-Destructive Characterization
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[46] Effects of Sand Quality on Strength Properties of Concrete: A Case Study on Nairobi City County and Its Environs
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[47] Интеллектуальная поддержка принятия решений в системе управления процессом формирования оптимального химического состава отливок из чугуна
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[48] Analisis Pengaruh Kelembaban Benda Uji Terhadap Kuat Tekan Dan Kuat Tarik Belah Beton Mutu Tinggi Dengan Metode Destructive Dan Non Destructive Tests …
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[49] FACULTAD DE INGENIERÍA CULIACÁN
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[50] Static and Dynamic Indicators for Composite Bridges
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[51] Evaluation of maximum and minimum corrosion rate of steel rebars in concrete structures, based on laboratory measurements on drilled cores
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[52] On-site strength assessment of limestone based concrete slabs by combining non-destructive techniques
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[53] Utilization of Combined NDT in the Concrete Strength Evaluation of Core Specimen from Existing Building
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[54] Accuracy in Predicting the Compressive Strength of Concrete Using SonReb Method
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[55] Review of Non-Destructive Tests for Evaluation of Historic Masonry and Concrete Structures
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[56] A Decision Support System for the Condition Assessment of Distressed Concrete Buildings
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[57] ИНТЕЛЛЕКТУАЛЬНАЯ ПОДДЕРЖКА ПРИНЯТИЯ РЕШЕНИЙ В СИСТЕМЕ УПРАВЛЕНИЯ ПРОЦЕССОМ ФОРМИРОВАНИЯ СТРУКТУРЫ И СВОЙСТВ КОМПОЗИЦИОННЫХ МАТЕРИАЛОВ
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[58] Assessment of in-situ compressive concrete strength by means of various non/semi-destructive and destructive techniques
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[59] Post-installed screws for in-situ assessment of mortar strength
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[60] of the Research Paper
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[61] Étude de caractérisation et corrélation aux moyens des essais non-destructifs (NDT) et essai direct d'un béton à haute performance (BHP) à base de matériaux locaux
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[62] Help-UltrasonicWaveAttenuationasaParameterforConcreteStrengthPrediction
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[63] Ultrasonic Wave Attenuation as a Parameter for Concrete Strength Prediction
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[64] Statistical Modeling and Prediction of Compressive Strength of High Performance Concrete
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[65] Experimental studies in Ultrasonic Pulse Velocity of roller compacted concrete pavement containing fly ash and M-sand
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[66] Vidivelli B and Subbulakshmi T
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[67] Advancing concrete strength prediction using non-destructive testing: Development and verification of a generalizable model
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[68] Ultrasonic Pulse Velocity Investigation of Polypropylene and Steel Fiber Reinforced Concrete
International Journal of Civil and Environmental Engineering, 2016
[69] Relationship between Ultrasonic Pulse Velocity and Compressive Strength for Roller Compacted Concrete containing GGBS
International Journal of Applied Engineering Research, 2016
[70] Koreksi Pembacaan Ultrasonic Pulse Velocity (UPV) Terhadap Kesalahan Akibat Ketidakstabilan Posisi Tranducer
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[71] Korelasi Nilai Kuat Tekan Beton Antara Hammer Test, Ultrasonic Pulse Velocity (UPV) Dan Compression Test
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[72] Evaluation of Dynamic Elastic Modulus of Roller Compacted Concrete Containing GGBS and M-Sand
J. Civ. Eng, 2015
[73] Non Destructive Testing for In place strength of RC Structures by Combined Methods.
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[74] Improving Non-Destructive Concrete Strength Tests Using Support Vector Machines
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[75] Evaluation the Compressive Strength in Concrete Structures Using the In-situ Test Methods
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[76] INFLUENCE OF THE AGE OF FINE-GRAINED CINDER CONCRETE ON ITS STRENGTH CHARACTERISTICS.
Scientific Herald of the Voronezh State University of Architecture & Civil Engineering., 2015
[77] An Investigation of Physico-Mechanical Properties of Some Chosen Concrete Mixtures by Ultrasonic Pulse Velocity (UPV) Techniques
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[78] Use of the Schmidt rebound hammer for non destructive concrete structure testing in field
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[79] Study of the Physico-Mechanical Properties of a Recycled Concrete Incorporating Admixtures by the Means of NDT Methods
Procedia Engineering, 2015
[80] PENGGUNAAN METODE ULTRASONIC PULSE VELOCITY TEST UNTUK MEMPERKIRAKAN KEKUATAN DAN KESERAGAMAN MUTU BETON K 200 SECARA …
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[81] Влияние возраста мелкозернистого шлакобетона на его прочностные характеристики
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[82] Behavior of Self-compacting Concrete Incorporating Recycle Materials at High Temperatures
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[83] INFLUENCE DES ADDITIONS MINERALES SUR LE COMPORTEMENT AU JEUNE AGE ET A LONG TERME DES BETONS AUTOPLAÇANTS TRAITES …
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[84] Self Consolidating High Performance Palm Oil Fuel Ash and Pulverised Burnt Clay Blended Concrete
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[85] Évaluation non destructive des structures en béton armé
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[86] Comparison of Concrete Properties determined by Destructive and Non-Destructive Tests
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[87] Évaluation non destructive des structures en béton armé: étude de la variabilité spatiale et de la combinaison des techniques
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[88] Predictive equations for compressive strength of concrete based on Schmidt hammer rebound and ultrasonic pulse velocity data
Journal of Applied Science and Technology, 2013
[89] Effect of solid wastes on the characteristics behaviour of petroleum products soaked concrete–A Review
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[90] Prediction of Compressive Strength Using Artificial Neural Network
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[91] PERBANDINGAN KEKUATAN BETON BERDASARKAN HASIL ULTRASONIC PULSE VELOCITY TEST DENGAN UJI TEKAN (020M)
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[92] Predictive Equations for Compressive Strength of Concrete Based on Schmidt Hammer Rebound and Ultrasonic Pulse Velocity Data.
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[93] FORMULA TO DETERMINE CONCRETE STRENGTH
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[94] Perbandingan Kekuatan Beton Berdasarkan Hasil Ultrasonic Pulse Velocyty Test dengan Uji Tekan
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[95] PREDICTIVE EQUATIONS FOR COMPRESSIVE STRENGTH OF CONCRETE BASED ON SCHMIDT HAMMER REBOUND AND ULTRASONIC PULSE VELOCITY …
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[96] PERBANDINGAN ANTARA KONKRIT SIAP BANCUH DAN KONKRIT
[97] STRENGTH AND QUALITY EVALUATION OF CONCRETE ELEMENTS USING NON-DESTRUCTIVE TESTING PROCENA ČVRSTOĆE I KVALITETA …
[98] ИНТЕЛЛЕКТУАЛЬНАЯ ПОДДЕРЖКА ПРИНЯТИЯ РЕШЕНИЙ В СИСТЕМЕ УПРАВЛЕНИЯ ПРОЦЕССОМ ФОРМИРОВАНИЯ СТРУКТУРЫ И …
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