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Ultrasonic Evaluation of the Impact Damage of Polymer Bonded Explosives
作者姓名:陈鹏万  戴开达  黄风雷  丁雁生
作者单位:[1]StateKeyLaboratoryforthePreventionandControlofExplosionDisasters,BeijingInstituteofTechnology,Beijing100081,China [2]InstituteofMechanics,ChineseAcademyofSciences,Beijing100080,China
摘    要:The damage properties of polymer bonded explosives under dynamic loading were studied by using ultrasonic evaluation. Explosive samples were damaged by a low-velocity gas gun at different impact velocities. Ultrasonic examination was carried out with a pulse through-transmission method. Spectra analyses were carried outby using fast Fourier transform. Characteristic ultrasonic parameters, including ultrasonic velocities, attenuation coefficients, spectra area and master frequency, were obtained. The correlation between the impact damage and ultrasonic parameters was analyzed. A damage coefficient D was defined by considering a combination of ultrasonic velocity and amplitude. The results show that ultrasonic parameters can be used to quantitatively assess the damage extent in impacted plastic bonded explosives.

关 键 词:聚合物连接爆炸物  损坏影响  超声鉴定  快速傅立叶变换
收稿时间:2004/4/20 0:00:00

Ultrasonic Evaluation of the Impact Damage of Polymer Bonded Explosives
CHEN Peng-wan,DAI Kai-d,HUANG Feng-lei and DING Yan-sheng.Ultrasonic Evaluation of the Impact Damage of Polymer Bonded Explosives[J].Journal of Beijing Institute of Technology,2004,13(3):242-246.
Authors:CHEN Peng-wan  DAI Kai-d  HUANG Feng-lei and DING Yan-sheng
Affiliation:1. State Key Laboratory for the Prevention and Control of Explosion Disasters, Beijing Institute of Technology, Beijing 100081, China
2. Institute of Mechanics, Chinese Academy of Sciences, Beijing 100080, China
Abstract:The damage properties of polymer bonded explosives under dynamic loading were studied by using ultrasonic evaluation. Explosive samples were damaged by a low-velocity gas gun at different impact velocities. Ultrasonic examination was carried out with a pulse through-transmission method. Spectra analyses were carried out by using fast Fourier transform. Characteristic ultrasonic parameters, including ultrasonic velocities, attenuation coefficients, spectra area and master frequency, were obtained. The correlation between the impact damage and ultrasonic parameters was analyzed. A damage coefficient D was defined by considering a combination of ultrasonic velocity and amplitude. The results show that ultrasonic parameters can be used to quantitatively assess the damage extent in impacted plastic bonded explosives.
Keywords:polymer bonded explosives  impact damage  ultrasonic evaluation
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