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Detonation and shock wave front temperature measurement by two-wave pyrometer based on optical fibers

机译:基于光纤的双波高温计测量爆轰和冲击波前沿温度

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In this work we employed two-wave optical pyrometer to record characteristics of light emission and brightness temperature in shock and detonation waves. Light is transmitted to photoelectronic multiplier (PEM) over a fiber light conductor (FLC) with its end located in the immediate neighbourhood of a light source. Error in brightness temperature determination does not exceed value AT=±5%. Limit space resolution of the technique is X=50|am at brightness temperature T=2500K. Time resolution reaches value t=lns. The paper presents data on character of luminescence and brightness temperature of detonation front (PF) in plastic high-explosive (HE), mitromethane. mixture of trinitrotoluol with RDX. and HE basing on TATB. This has been demonstrated that existence of micropores with air in solid HE because of intensive light flashes can exceed integral brightness of detonation front luminescence significantly

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