Studi Eksperimen Non-Destructive Test dengan Metode Semi-Direct pada Beton
Iskandar Yasin, Sarjanawiyata Tamansiswa University-Indonesia, Indonesia
Zainul Faizien Haza, Sarjanawiyata Tamansiswa University-Indonesia
Abstract
Keywords
Full Text:
PDFReferences
M. Kazemi, R. Madandoust, and J. de Brito, “Compressive strength assessment of recycled aggregate concrete using Schmidt rebound hammer and core testing,” Constr. Build. Mater., vol. 224, no. July, pp. 630–638, 2019, doi: 10.1016/j.conbuildmat.2019.07.110.
Breysse D., Balayssac J.P. Strength Assessment in Reinforced Concrete Structures: From Research to Improved Practices [J]. Construction and Building Materials, 2018, V182: 1-9.
Lee T., Lee J., Choi H. Assessment of Strength Development at Hardened Stage on High-Strength Concrete Using NDT. Applied Science, 2020, V10: 1-15.
Kaplan M F. The Relation Between Ultrasonic Pulse Velocity and the Compressive Strength of Concretes Having the Same Workability but Different Mix Proportions. Magazine of Concrete Research, 1960, V12(34):1-8.
Carcano R S, Moreno E.I. Evaluation of concrete made with crushed limestone aggregate based on ultrasonic pulse velocity. Construction and Building Materials, 2008, V22: 1225–1231.
Naffa S O., Goueygou M., Piwakowski B., Bodin F B. Detection of chemical damage in concrete using ultrasound. Ultrasonics, 2002, V40: 247–251.
Jain A., Kathuria A., Kumar A., et al. Combined Use of Non-Destructive Tests for Assessment of Strength of Concrete in Structure. The 2nd International Conference on Rehabilitation and Maintenance in Civil Engineering. Procedia Engineering, 2013, V54: 241 – 251.
F Ma’arif., Z Gao., F LI. Investigation of concrete quality using Discrete Element Method (DEM). Journal of Physics: Conference Series, International Conference on Technology and Vocational Teachers (ICTVT) , IOP Publishing, 2021, V1883: 012053.
Qasrawi H Y., Concrete strength by Combined Nondestructive Methods Simply and Reliably Predicted. Cement and Concrete Research, V30: 739-746
Carrillo J., Ramirez J., Marriaga J. L. Modulus of elasticity and Poisson's Ratio of Fiber-Reinforced Concrete in Colombia from Ultrasonic Pulse Velocities [J]. Journal of Building Engineering, 2019, V23: 18-26.
Ma’arif F., Gao Z., Li F. The Modelling of Compressive Strength of Concrete on Discrete Element Method. Journal of Physics, 2021, V1845: 012079
ASTM C597-16. Standard Test Method for Pulse Velocity through Concrete. American Society for Testing and Materials International, 2016, V04.02.
Chih-Hung Chiang, Po-Chih Chen, Semi-direct measurements of ultrasonic pulse velocity in proposed concrete reference specimens. https://www.ndt.net/apcndt2001/papers/1207/1207.htm
ASTM C469 / C469M-14e1. Standard Test Method for Static Modulus of Elasticity and Poisson's Ratio of Concrete in Compression [B]. ASTM International, 2016, v04.02.
Faqih Ma’arif, Priyosulistyo Priyosulistyo, Ashar Saputra. The Effect of Variation Concrete Cube of Axial Load on Ultrasonic Pulse Velocity Transmitter
F Ma’Arif, Z Gao, F Li, HU Ghifarsyam. The New Analysis of Discrete Element Method Using ARM Processor.
F Ma’arif, Z Gao, F Li, HRC Priyosulityo. Experiment Study of Ultrasonic Pulse Velocity Test of R/C Column Under Axial Load Variation
Al-Mufti R L., Fried A N. The Early Age Non-Destructive Testing of Concrete Made with Recycled Concrete Aggregate [J]. Construction and Building Materials, 2012, V37: 379-386.
Faqih Ma'arif Agus Santoso, Slamet Widodo. Prediction of Lighweight Concrete Panel Homogeneity by Ultrasonic Pulse Velocity (UPV).
Faqih Ma’arif, Slamet Widodo, Agus Santoso. Analisis Homogenitas Self Compacting Mortar Menggunakan Serat Polypropylene Berdasarkan Kecepatan Perambatan Gelombang Ultrasonik (UPVM).
DOI: https://doi.org/10.21831/inersia.v18i1.49118
Refbacks
- There are currently no refbacks.
Copyright (c) 2022 Faqih Ma'arif, Iskandar Yasin, Zainul Faizien Haza
This work is licensed under a Creative Commons Attribution 4.0 International License.