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South Korea Develops Hidden Fibers For Military Use To Avoid Radar

2010/7/7 15:31:00 48

Fiber Korea

Korean Defense Minister Kim Tae wing sum

knowledge economy

The Minister Cui Kyung Hwan, on the 5 day, signed a "memorandum of understanding for military fiber technical cooperation" at the 30% hole fiber center. Accordingly, the two department will jointly develop the military high performance fusion fiber.


It is worth mentioning that the project has been jointly developed by the technology development department and the demand department, and a new Department has been established.

Cooperation mode

It has been well received.


According to the memorandum, the Ministry of knowledge economy will set up

Military fiber

First, support the technology development and standardize the uniform size.


From next year, imported military clothing and equipment with a scale of 80 billion won will be replaced by China.


With the opportunity of this cooperation, the South Korean government will develop step by step to avoid hidden stealth (Textile), smart clothing with information and communication functions, and breathable fabrics with enhanced cold and moisture permeability functions.


Supplement:


Recently, a garment company in Rushan exported to Korea a number of fabrics after being imported from Korea to make summer wear. The inspection failed by the Weihai inspection and Quarantine Bureau.


The fabric is cotton dyed woven plain cloth, 337 meters long and worth 674 dollars.

The inspection and Quarantine Bureau of Weihai carried out on-site appearance inspection and internal quality sampling of the imported fabric, and found that the fabric had been washed in Korea, and the safety index exceeded the Chinese standard, and it belonged to unqualified products.

At present, the Korean garment fabrics have been returned.


Recently, a world research team has developed a new method of producing glass nanofibers, which relies on "laser spinning" technology.

The team from University of Vigo, Rutgers University and Imperial College London in London, UK, successfully extracted nanofibers from bioactive glass.


One of the highlights of the new technology is the use of high-energy lasers for the front material.

Another important breakthrough is that new technologies have no harsh requirements for the production environment, which is difficult to achieve in the field of nanotechnology.

This material can be used in the medical field to promote bone regeneration, and can also be used to produce flame retardant fabrics, carbon dioxide capture systems and composite materials.

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