Research of mechanical stress at tension of quartz optical fiber (QOF)

The article presents the results of a study of the process of occurrence of mechanical stress and strain during stretching of a quartz optical fiber. The analysis and review of the current state of development of fiber-optic conductors is performed. The problems of occurrence of microcracks in the b...

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Main Authors: A. D. Mekhtiyev, A. A. Kovtun, V. V. Yugay, E. G. Neshina, R. Zh. Aimagambetova, A. D. Alkina
Format: Article
Language:English
Published: Croatian Metallurgical Society 2021-01-01
Series:Metalurgija
Subjects:
Online Access:https://hrcak.srce.hr/file/357491
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spelling doaj-5f7ba139ff044ebdbca47491dcdf559c2020-11-25T04:07:48ZengCroatian Metallurgical SocietyMetalurgija0543-58461334-25762021-01-01601-2121124Research of mechanical stress at tension of quartz optical fiber (QOF) A. D. Mekhtiyev0A. A. Kovtun1V. V. Yugay2E. G. Neshina3R. Zh. Aimagambetova4A. D. Alkina5National Research Tomsk Polytechnic University, Tomsk, Russia; S.Seifullin Kazakh Agro Technical University, Nur-Sultan, KazakhstanMilitary Engineering Institute of Radio Electronics and Communications, Almaty, KazakhstanKaraganda Technical University, Karaganda, KazakhstanKaraganda Technical University, Karaganda, KazakhstanKaraganda Technical University, Karaganda, KazakhstanKaraganda Technical University, Karaganda, KazakhstanThe article presents the results of a study of the process of occurrence of mechanical stress and strain during stretching of a quartz optical fiber. The analysis and review of the current state of development of fiber-optic conductors is performed. The problems of occurrence of microcracks in the body of optical fibers during mechanical loading during operation are considered. In the process of winding optical fibers and further operation, cracks occur. The conducted research allows us to solve an important production problem related to increasing the strength of optical fibers and reducing the number of microcracks. The object of scientific research is quartz optical fiber of the G652 standard, used for the production of fiber-optic cables. For optical fibers, the greatest danger is the stretching, which is observed when rewinding the fiber, during its cabling, during the laying and operation of the optical cable. It was found that the mechanical tensile strength of G652 optical fiber was from 4 482 to 4 808 MPa, and the number of cracks and their parameters affect the tensile strength of the fiber.https://hrcak.srce.hr/file/357491quartzoptical fiberstretchingcrackfatigue crack modelingmechanical stresses
collection DOAJ
language English
format Article
sources DOAJ
author A. D. Mekhtiyev
A. A. Kovtun
V. V. Yugay
E. G. Neshina
R. Zh. Aimagambetova
A. D. Alkina
spellingShingle A. D. Mekhtiyev
A. A. Kovtun
V. V. Yugay
E. G. Neshina
R. Zh. Aimagambetova
A. D. Alkina
Research of mechanical stress at tension of quartz optical fiber (QOF)
Metalurgija
quartz
optical fiber
stretching
crack
fatigue crack modeling
mechanical stresses
author_facet A. D. Mekhtiyev
A. A. Kovtun
V. V. Yugay
E. G. Neshina
R. Zh. Aimagambetova
A. D. Alkina
author_sort A. D. Mekhtiyev
title Research of mechanical stress at tension of quartz optical fiber (QOF)
title_short Research of mechanical stress at tension of quartz optical fiber (QOF)
title_full Research of mechanical stress at tension of quartz optical fiber (QOF)
title_fullStr Research of mechanical stress at tension of quartz optical fiber (QOF)
title_full_unstemmed Research of mechanical stress at tension of quartz optical fiber (QOF)
title_sort research of mechanical stress at tension of quartz optical fiber (qof)
publisher Croatian Metallurgical Society
series Metalurgija
issn 0543-5846
1334-2576
publishDate 2021-01-01
description The article presents the results of a study of the process of occurrence of mechanical stress and strain during stretching of a quartz optical fiber. The analysis and review of the current state of development of fiber-optic conductors is performed. The problems of occurrence of microcracks in the body of optical fibers during mechanical loading during operation are considered. In the process of winding optical fibers and further operation, cracks occur. The conducted research allows us to solve an important production problem related to increasing the strength of optical fibers and reducing the number of microcracks. The object of scientific research is quartz optical fiber of the G652 standard, used for the production of fiber-optic cables. For optical fibers, the greatest danger is the stretching, which is observed when rewinding the fiber, during its cabling, during the laying and operation of the optical cable. It was found that the mechanical tensile strength of G652 optical fiber was from 4 482 to 4 808 MPa, and the number of cracks and their parameters affect the tensile strength of the fiber.
topic quartz
optical fiber
stretching
crack
fatigue crack modeling
mechanical stresses
url https://hrcak.srce.hr/file/357491
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