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Study on cook-off characteristics and thermal safety venting area of RBOE charge 被引量:1
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作者 Kebin Zhang Wenbin Li +3 位作者 Changfang Zhao Zhifang Wei Shuxia Zhang Jin Li 《Defence Technology(防务技术)》 2025年第1期271-287,共17页
RBOE is a new type of DNAN-based high-energy melt-cast mixed explosive,whose safety under thermal stimulation is significantly affected by heating conditions and venting area of the warhead.Based on the thermal decomp... RBOE is a new type of DNAN-based high-energy melt-cast mixed explosive,whose safety under thermal stimulation is significantly affected by heating conditions and venting area of the warhead.Based on the thermal decomposition reaction characteristics and combustion characteristics of each component of RBOE explosive,the cook-off calculation models of RBOE warhead before and after ignition were established.In addition,closed and vented warheads were designed,as well as fast and slow cook-off test devices.The cook-off characteristics and thermal safety venting area of RBOE warhead were extensively studied.The results showed that the closed RBOE warhead underwent deflagration reaction under both slow and fast cook-off conditions.The calculation result of the shell wall temperature before slow cookoff ignition response of the warhead was 454.06 K,with an error of+1.75%compared to the test result of462.15 K,and the temperature rise rate calculated was in good agreement with the test.The calculated ignition time of RBOE warhead under fast cook-off was 161 s,with an error of+8.8%compared to the test result of 148 s,which verified the accuracy of cook-off model of RBOE warhead before ignition.According to the cook-off calculation model of the warhead after ignition and cook-off test of the vented warhead,it was determined that the thermal safety venting area was 1124.61 mm^(2)for fast cook-off and 530.66 mm~2 for slow cook-off,effectively preventing the reaction of warhead above combustion.Therefore,this study provides a scientific basis for the thermal safety design and evaluation of insensitive warheads. 展开更多
关键词 rboe explosive Cook-off model Temperature distribution Pressure growth Venting area
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基于mass_flux法的炸药火烧试验与数值仿真 被引量:6
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作者 王帅 智小琦 +2 位作者 贾秋琳 王雪 周捷 《兵器装备工程学报》 CAS 北大核心 2020年第8期1-6,共6页
为了研究炸药火烧试验中炸药响应特性进而对炸药的安全使用提供技术支持,用装填RBOE炸药的某型155 mm战斗部进行火烧试验。在此基础上,分别采用试验和美军标2105-D中的火焰温度曲线数据对装填炸药为RBOE的某型155 mm战斗部进行数值仿真... 为了研究炸药火烧试验中炸药响应特性进而对炸药的安全使用提供技术支持,用装填RBOE炸药的某型155 mm战斗部进行火烧试验。在此基础上,分别采用试验和美军标2105-D中的火焰温度曲线数据对装填炸药为RBOE的某型155 mm战斗部进行数值仿真分析。通过实验和数值仿真得到装有RBOE炸药的某型155 mm战斗部火烧试验的响应时间是230 s,响应温度为280.2℃,响应等级为爆轰反应。炸药在火烧过程中,其外表面相当于受到了高温冲击,在短时间内达到点火温度发生点火反应。响应时间随热质量通量的增加而减小且减小速率逐渐下降,响应温度随热质量通量的增加而上升且上升速率逐渐下降。 展开更多
关键词 炸药火烧试验 rboe炸药 155 mm战斗部 数值仿真 热质量通量
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