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Optical Fiber Preform Market Strategy, Market Driving Factors and Consumption Forecast to 2017-2022

Optical Fiber Preform Market Trend, Optical Fiber Preform Market Growth, Optical Fiber Preform Market Research Report, Optical Fiber Preform Market Share, Optical Fiber Preform Market Analysis

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<strong>Optical</strong> <strong>Fiber</strong> <strong>Preform</strong> <strong>Market</strong> <strong>Strategy</strong>, <strong>Market</strong> <strong>Driving</strong><br />

<strong>Fac<strong>to</strong>rs</strong> <strong>and</strong> <strong>Consumption</strong> <strong>Forecast</strong> <strong>to</strong> <strong>2017</strong>-<strong>2022</strong><br />

<strong>Optical</strong> <strong>Fiber</strong> <strong>Preform</strong> <strong>Market</strong> report includes in-depth analysis of<br />

industry by recent technologies, trends, opportunities, challenges, key<br />

players <strong>and</strong> business strategies considering types, segment <strong>and</strong> future<br />

analysis.<br />

Global <strong>Optical</strong> <strong>Fiber</strong> <strong>Preform</strong> <strong>Market</strong> is segmented, By End User Industry in<strong>to</strong> Telecom Industry, Power<br />

Industry, Petroleum Industry, Submarine Cable, Other. St<strong>and</strong>ard optical fibers are made by first<br />

building a large-diameter "preform" with a carefully controlled refractive index profile, <strong>and</strong> then<br />

"pulling" the preform for forming the long, thin optical fiber. The preform is generally made by 3<br />

chemical vapor deposition methods; viz vapor axial deposition, outside vapor deposition, <strong>and</strong> inside<br />

vapor deposition.<br />

Browse Full Research Report @<br />

https://www.millioninsights.com/industry-reports/optical-fiber-preform-market<br />

With inside vapor deposition, the preform starts as a hollow glass tube approximately 40 centimeters<br />

(16 in) long, which is placed horizontally <strong>and</strong> rotated gradually on a lathe. Gases such as germanium<br />

tetrachloride (GeCl4) or silicon tetrachloride (SiCl4) are injected with oxygen at the end of the tube.<br />

The gases are then heated by means of an outside hydrogen burner, thereby bringing the


temperature of the gas up <strong>to</strong> 1,900 K (1,600 °C, 3,000 °F), where the tetrachloride’s react with oxygen<br />

for producing produce silica or Germania (germanium dioxide) particles in the optical fiber perform<br />

industry.<br />

In vapor axial or outside vapor deposition, the glass is formed by flame hydrolysis, a reaction wherein<br />

germanium tetrachloride <strong>and</strong> silicon tetrachloride are oxidized by reaction with water (H2O) in an<br />

oxyhydrogen flame. In outside vapor deposition, the glass is deposited on<strong>to</strong> a solid rod, which is<br />

removed before additional dispensation. In vapor axial deposition, a short seed rod is used, <strong>and</strong> a<br />

porous preform, whose length is not limited by the size of the source rod, is built up on its end. The<br />

porous preform is consolidated in<strong>to</strong> a solid, transparent preform by heating <strong>to</strong> about 1,800 K (1,500<br />

°C, 2,800 °F).<br />

Request Sample Copy of this <strong>Market</strong> Research @<br />

https://www.millioninsights.com/industry-reports/optical-fiber-preform-market/request-sample<br />

Typical communications fiber makes use of a circular preform. For certain applications such as doubleclad<br />

fibers, the other form is preferred. Herein, an asymmetric shape improves the filling fac<strong>to</strong>r for<br />

laser pumping in the <strong>Optical</strong> <strong>Fiber</strong> <strong>Preform</strong> <strong>Market</strong>.However, careful polishing of the preform is<br />

important, since any defects of the preform superficial affect the optical <strong>and</strong> mechanical possessions<br />

of the subsequent fiber. In particular, the preform for the test-fiber shown in the figure was not<br />

polished well, <strong>and</strong> cracks are seen with the confocal optical microscope.<br />

<strong>Optical</strong> <strong>Fiber</strong> <strong>Preform</strong> <strong>Market</strong> is segmented, By Product in<strong>to</strong> outside chemical Vapor Deposition,<br />

Vapor Phase Axial Deposition, Modified Chemical Vapor Deposition (PCVD), <strong>and</strong> Modified Chemical<br />

Vapor Deposition. Global <strong>Optical</strong> <strong>Fiber</strong> <strong>Preform</strong> <strong>Market</strong> is segmented, By Geographical Region in<strong>to</strong><br />

North America, China, Europe, Southeast Asia, <strong>and</strong> India. <strong>Optical</strong> <strong>Fiber</strong> <strong>Preform</strong> industry Key Players<br />

includes Prysmian, Shin-Etsu, Furukawa Electric, Sumi<strong>to</strong>mo Electric, Heng<strong>to</strong>ng Optic-electric Co., Ltd.,<br />

Fujikura <strong>and</strong> OFS Fitel.<br />

Geographically, this report is segmented in<strong>to</strong> several key Regions, with production, consumption,<br />

revenue (million USD), market share <strong>and</strong> growth rate of <strong>Optical</strong> <strong>Fiber</strong> <strong>Preform</strong> in these regions,<br />

from 2012 <strong>to</strong> <strong>2022</strong> (forecast), covering<br />

• United States<br />

• EU<br />

• China


• Japan<br />

• South Korea<br />

• Taiwan<br />

See More Reports of this Category by Million Insights @<br />

https://www.millioninsights.com/industry/advanced-materials<br />

Global <strong>Optical</strong> <strong>Fiber</strong> <strong>Preform</strong> market competition by <strong>to</strong>p manufacturers, with production, price,<br />

revenue (value) <strong>and</strong> market share for each manufacturer; the <strong>to</strong>p players including<br />

• YOFC<br />

• CORNING<br />

• Prysmian<br />

• Shin-Etsu<br />

• Furukawa Electric<br />

• Sumi<strong>to</strong>mo Electric<br />

• Heng<strong>to</strong>ng Optic-electric Co., Ltd.<br />

• Fujikura<br />

• OFS Fitel<br />

• Fasten Group<br />

• <strong>Fiber</strong>home<br />

• Fu<strong>to</strong>ng<br />

• Jiangsu Zhongtian Technology<br />

On the basis of product, this report displays the production, revenue, price, market share <strong>and</strong><br />

growth rate of each type, primarily split in<strong>to</strong><br />

• Outside Chemical Vapour Deposition (OVD) Type<br />

• Vapour Phase Axial Deposition (VAD) Type<br />

• Plasma Activated Chemical Vapour Deposition (PCVD) Type<br />

• Modified Chemical Vapour Deposition (MCVD) Type<br />

On the basis on the end users/applications, this report focuses on the status <strong>and</strong> outlook for<br />

major applications/end users, consumption (sales), market share <strong>and</strong> growth rate of <strong>Optical</strong> <strong>Fiber</strong><br />

<strong>Preform</strong> for each application, including<br />

• Telecom Industry<br />

• Power Industry


• Petroleum Industry<br />

• Submarine Cable<br />

• Other<br />

Read Detail <strong>Market</strong> Research Report @<br />

https://www.millioninsights.com/industry-reports/optical-fiber-preform-market<br />

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