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METHOD OF FABRICATING A HIGHLY POLYMERIC FIBER OF BORON CARBIDE
A highly polymeric fiber of boron carbide fabricated from the following components: 50-60 parts of boron carbide, 150-193 parts of highly polymeric ethylene emulsion with a concentration of 40%-50%, 116 parts of hydrochloric acid with a concentration of 37%, 3-5 parts of antioxidant, and 7 parts of catalyst, and it is fabricated from the following way: a 2500-2800°C high-temperature high-pressure furnace, a high temperature-resistant spinning furnace. The resultant material exhibits performances such as resistance against high temperature and low temperature, anti-acid and anti-base performance, extensibility, wear resistance and anti-impact capability, and resistance against ultraviolet. The highly polymeric fiber of boron carbide may be used in fields such as firearms manufacture, maritime rescue, fire protection and fire fight, anti-bullet and anti-explosion armor, biochemical nuclear industry treatment, and may be extensively applied to civil use, aerospace, military fairs and national defense. The material is recyclable and pollution-free.
METHOD OF FABRICATING A HIGHLY POLYMERIC FIBER OF BORON CARBIDE
A highly polymeric fiber of boron carbide fabricated from the following components: 50-60 parts of boron carbide, 150-193 parts of highly polymeric ethylene emulsion with a concentration of 40%-50%, 116 parts of hydrochloric acid with a concentration of 37%, 3-5 parts of antioxidant, and 7 parts of catalyst, and it is fabricated from the following way: a 2500-2800°C high-temperature high-pressure furnace, a high temperature-resistant spinning furnace. The resultant material exhibits performances such as resistance against high temperature and low temperature, anti-acid and anti-base performance, extensibility, wear resistance and anti-impact capability, and resistance against ultraviolet. The highly polymeric fiber of boron carbide may be used in fields such as firearms manufacture, maritime rescue, fire protection and fire fight, anti-bullet and anti-explosion armor, biochemical nuclear industry treatment, and may be extensively applied to civil use, aerospace, military fairs and national defense. The material is recyclable and pollution-free.
METHOD OF FABRICATING A HIGHLY POLYMERIC FIBER OF BORON CARBIDE
HERSTELLUNGSVERFAHREN EINER HOCHPOLYMEREN FASER AUS BORCARBID
METHOD DE FABRICATION D'UNE FIBRE HAUTEMENT POLYMÉRISÉE AU CARBURE DE BORE
XIA HUASONG (Autor:in) / XIA KANGKAI (Autor:in)
27.09.2017
Patent
Elektronische Ressource
Englisch
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