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Future soldier clothing Submitted by- Vikas Kr. Singh 2013TTZ8288
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Future Soldier

Dec 13, 2015

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Vikas Singh

Future trends in soldier clothing.
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Page 1: Future Soldier

Future soldier clothing

Submitted by-

Vikas Kr. Singh

2013TTZ8288

Page 2: Future Soldier

Requirements of military textiles• Light weight and low bulk

• High durability and dimensional stability

• Cleanable

• Good handle and drape

• Low noise

• Antistatic

• Camouflaged

Page 3: Future Soldier

Camouflage in Military TextilesThe word camouflage comes from the French word ‘camoufler’ (to disguise) and

was first introduced by the French during World War I

• Observation by eye/photography for military surveillance

• Devices operate on ultraviolet (UV), Near Infra Red (NIR), Far Infra Red (FIR), radar

wavebands.

• Observation and detection should occur at as long a range as possible

• It should be a passive process

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Ultraviolet waveband

• Snow has high reflectance in all visible and UV region

• 98%-99% reflectance depending upon temperature of snow

• Objects easily observable in photography

• Titanium dioxide works well in visible band and Barium Sulphate in UV.

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Visible waveband

• To mimic natural/even artificial backgrounds, not just in terms of colour, but also patterns, gloss and texture

• Textile coloration- functional , NOT aesthetic purposes

• Depends on environment, vegetation, season of year etc

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Near infrared waveband

• Observed by Image intensifiers monoculars, binoculars, or low-light television systems.

• Each colour has to meet a specified reflectance value.

Page 8: Future Soldier

Far infrared waveband

• Also called Thermal waveband.

• At higher temperatures the emittance is at shorter wavelengths.

• Amount of emitted radiation is proportional to the fourth power of the absolute temperature T, and the emissivity h of the material

Requirements

1. Reduce the temperature of the target

2. Reduce the emissivity of the target

Shiny surfaces have poor emmisivity.

Textiles aluminium foil green coat

Page 9: Future Soldier

Pillars of research in soldier uniform

1. Camouflage

2. Handle and transportation.

3. Ballistic protection.

4. Communication technology.

5. Health Hazard management.

Page 10: Future Soldier

Ballistic protection

• Use of composite materials and high performance fibres.

• Use of nano fibres to enhance inter-yarn friction instead of silica based systems.

• Intensive research in field of shear thickening fluids.

• Reducing the threat from high energy projectiles from rifles/assault rifles/shattered

granades etc.

• Carbon nanotubes based conductive textiles can help in camouflage also.

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CNT based thickening fluid coating performance during ballistic test.

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Communication Technology

• Integrated electronics in textiles.

• Helmets and body back used for fitting the equipments

• Use of advanced 4G technology (advancement of 3G)

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4G helps in

• Enhanced vision (friend and foe unit)

• Navigation in battlefield

• Health parameters display and report in real time.

• Planning and executing the strategy.

• Foldable screens and displays.

# Communication technology has provided

the soldiers an edge over the other

limitations of battlefield advancements

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Foldable OLED displays

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Health hazard management

• Real time display of body parameters to health team and doctors.

• Nervous response based body frames.

• Integrated kit for blood coagulation and antiseptic treatment.

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References1. Roland, C. M., et al. "Factors influencing the ballistic impact resistance of elastomer-

coated metal substrates." Philosophical Magazine 93.5 (2013): 468-477.

2. Wang, Shi-Ming, et al. "High performance visible and near-infrared region electrochromic smart windows based on the different structures of polyoxometalates." Electrochimica Acta 113 (2013): 240-247.

3. Nakad, Zahi, et al. "Networking in E-textiles." Computer communications 33.6 (2010): 655-666.

4. Kelly, Fern M., et al. "Polyaniline: Application as solid state electrochromic in a flexible textile display." Displays (2012).

5. Yin, Xia, Qun Chen, and Ning Pan. "Feasibility of perspiration based infrared Camouflage." Applied Thermal Engineering 36 (2012): 32-38.

6. Yin, Xia, Qun Chen, and Ning Pan. "A study and a design criterion for multilayer-structure in perspiration based infrared camouflage." Experimental Thermal and Fluid Science (2013).

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7. http://english.pravda.ru/science/tech/11-02-2013/123751-soldiers_future-0/

8. http://interestingengineering.com/super-soldiers-are-about-to-arrive-soon/

9. http://usmilitary.about.com/od/armyweapons/a/futureuniform.htm

10. http://www.wired.co.uk/news/archive/2013-02/19/mit-smart-fibres

11. http://www.youtube.com/watch?v=2Ysb-Oko3Bg&list=WL5xIY7Ay8BPaP6TttEMZvVdNxEg0Tlo2w

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Thank You