The new tool insert design for prevention the rotation of horizontal wire during shear testing of welded fabric
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Many new requirements in the field of experimental mechanics, like testing of metallic materials, emphasize traceability and accuracy of test results as the end goal. These requirements have energy efficiency context too, due to the increase of mass productions of many finished and semi-finished products based on steel metallurgy. Combined, both of the above-noted perspectives impose the need for improvements of some of the existing test methods. This paper describes one such improvement, the developing of the new insert tool for testing of shear strength of the welded fabric, for civil engineering. The developed tool allows repeated testing of welded joints sampled from the welded fabric of different dimensions without tool changes and is generally related with the procedure for the determination of shear strength properties of different sizes of wires used for welded fabric. The construction of the tool insert allows aiming high operation safety and higher accuracy of results, which ...is described in detail. The paper also presents experimental results and the Finite Element Analysis performed in order to verify the impact of insert tool application on the testing results. The obtained results and conclusion about the possible contributions of the developed insert tool for extensively testing of welded fabric for civil engineering are discussed.
Кључне речи:
Welded fabric / Shear strength / Prestressing steel / Finite Element AnalysisИзвор:
Metallurgical and Materials Engineering, 2019, 25, 2, 163-170Издавач:
- Savez inženjera metalurgije Srbije, Beograd
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- Верзија документа
https://metall-mater-eng.com/index.php/home/article/view/425
Институција/група
Institut za ispitivanje materijalaTY - JOUR AU - Atanasovska, Ivana AU - Momčilović, Dejan AU - Ristić, Ognjen PY - 2019 UR - http://rims.institutims.rs/handle/123456789/356 AB - Many new requirements in the field of experimental mechanics, like testing of metallic materials, emphasize traceability and accuracy of test results as the end goal. These requirements have energy efficiency context too, due to the increase of mass productions of many finished and semi-finished products based on steel metallurgy. Combined, both of the above-noted perspectives impose the need for improvements of some of the existing test methods. This paper describes one such improvement, the developing of the new insert tool for testing of shear strength of the welded fabric, for civil engineering. The developed tool allows repeated testing of welded joints sampled from the welded fabric of different dimensions without tool changes and is generally related with the procedure for the determination of shear strength properties of different sizes of wires used for welded fabric. The construction of the tool insert allows aiming high operation safety and higher accuracy of results, which is described in detail. The paper also presents experimental results and the Finite Element Analysis performed in order to verify the impact of insert tool application on the testing results. The obtained results and conclusion about the possible contributions of the developed insert tool for extensively testing of welded fabric for civil engineering are discussed. PB - Savez inženjera metalurgije Srbije, Beograd T2 - Metallurgical and Materials Engineering T1 - The new tool insert design for prevention the rotation of horizontal wire during shear testing of welded fabric EP - 170 IS - 2 SP - 163 VL - 25 DO - 10.30544/425 ER -
@article{ author = "Atanasovska, Ivana and Momčilović, Dejan and Ristić, Ognjen", year = "2019", abstract = "Many new requirements in the field of experimental mechanics, like testing of metallic materials, emphasize traceability and accuracy of test results as the end goal. These requirements have energy efficiency context too, due to the increase of mass productions of many finished and semi-finished products based on steel metallurgy. Combined, both of the above-noted perspectives impose the need for improvements of some of the existing test methods. This paper describes one such improvement, the developing of the new insert tool for testing of shear strength of the welded fabric, for civil engineering. The developed tool allows repeated testing of welded joints sampled from the welded fabric of different dimensions without tool changes and is generally related with the procedure for the determination of shear strength properties of different sizes of wires used for welded fabric. The construction of the tool insert allows aiming high operation safety and higher accuracy of results, which is described in detail. The paper also presents experimental results and the Finite Element Analysis performed in order to verify the impact of insert tool application on the testing results. The obtained results and conclusion about the possible contributions of the developed insert tool for extensively testing of welded fabric for civil engineering are discussed.", publisher = "Savez inženjera metalurgije Srbije, Beograd", journal = "Metallurgical and Materials Engineering", title = "The new tool insert design for prevention the rotation of horizontal wire during shear testing of welded fabric", pages = "170-163", number = "2", volume = "25", doi = "10.30544/425" }
Atanasovska, I., Momčilović, D.,& Ristić, O.. (2019). The new tool insert design for prevention the rotation of horizontal wire during shear testing of welded fabric. in Metallurgical and Materials Engineering Savez inženjera metalurgije Srbije, Beograd., 25(2), 163-170. https://doi.org/10.30544/425
Atanasovska I, Momčilović D, Ristić O. The new tool insert design for prevention the rotation of horizontal wire during shear testing of welded fabric. in Metallurgical and Materials Engineering. 2019;25(2):163-170. doi:10.30544/425 .
Atanasovska, Ivana, Momčilović, Dejan, Ristić, Ognjen, "The new tool insert design for prevention the rotation of horizontal wire during shear testing of welded fabric" in Metallurgical and Materials Engineering, 25, no. 2 (2019):163-170, https://doi.org/10.30544/425 . .