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RDX基PBX在高温条件下热损伤表征试验研究
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作者 吴艳青 潘帅 江鹏 《安全与环境学报》 CAS CSCD 北大核心 2024年第3期891-897,共7页
炸药热损伤特征及演化行为对装药安全性具有重要影响。为探究高聚物黏结剂炸药(Polymer Binder Explosive,PBX)在不同温度载荷下的内部损伤和演化行为,对无约束状态下炸药进行烤燃试验,使用分析天平监测炸药的质量变化,并采用显微镜和... 炸药热损伤特征及演化行为对装药安全性具有重要影响。为探究高聚物黏结剂炸药(Polymer Binder Explosive,PBX)在不同温度载荷下的内部损伤和演化行为,对无约束状态下炸药进行烤燃试验,使用分析天平监测炸药的质量变化,并采用显微镜和扫描电子显微镜等技术对炸药样品的表面和内部损伤进行表征。结果表明:温度越高,炸药的质量损失越大且损失速率越快;加热过程中黏结剂先发生熔化,随着加热时间变长和温度升高,黏结剂熔化程度增大,流动性增强,气体从炸药表面孔洞内逸出,孔洞增多且尺寸变大;温度越高炸药内部出现的孔隙越多,孔隙尺寸越大,孔隙主要是由于气体从试样内部逸出形成;炸药内部比表面积变化趋势为上升—下降—上升,其变化趋势受到化学反应速率和黏结剂的流动及损失影响。黏结剂材料的热稳定性是影响炸药热损伤演化行为的重要因素。 展开更多
关键词 安全工程 高聚物黏结剂炸药(pbx) 烤燃 热损伤 细观表征
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基于深度学习的PBX裂纹像素级识别方法
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作者 吕亮亮 张伟斌 +4 位作者 李公平 潘小东 张才鑫 杨亚飞 张催 《含能材料》 EI CAS CSCD 北大核心 2024年第5期545-553,共9页
高聚物粘结炸药(Polymer Bonded Explosive,PBX)内部裂纹对其性能及可靠性具有明显影响,裂纹的精确识别是PBX内部质量检测的关键。针对PBX内部裂纹识别,基于U-Net和SegNet两种像素级图像识别网络,建立了5种深度学习网络,对比研究了网络... 高聚物粘结炸药(Polymer Bonded Explosive,PBX)内部裂纹对其性能及可靠性具有明显影响,裂纹的精确识别是PBX内部质量检测的关键。针对PBX内部裂纹识别,基于U-Net和SegNet两种像素级图像识别网络,建立了5种深度学习网络,对比研究了网络连接方式和预训练模型对裂纹识别的影响。基于CT获取的PBX裂纹图建立了数据集,对5种网络进行了训练,采用准确率(A)、F1值(F1)和平均交并比(MIoU)指标对网络进行了评估,在此基础上选择细节识别性能最优的网络用于PBX裂纹的识别和量化分析。结果表明,针对裂纹像素级识别,U-Net型网络优于Seg-Net型网络,网络中Concatenate操作比Pooling Indices操作保留更多图像细节信息,采用预训练模型MobileNet和ResNet可以提高网络训练速度,但导致其裂纹像素级识别性能降低。利用建立的识别方法开展PBX裂纹识别研究,实现了对PBX裂纹的像素级识别,裂纹检出率0.9570,单像素识别准确率为0.9936,MIoU为0.9873,相对裂纹面积为0.7585。 展开更多
关键词 高聚物粘结炸药(pbx) CT图像 深度学习 像素级裂纹识别
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浇注PBX替代材料的准静态压缩力学行为及本构模型标定
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作者 李思涵 王克俭 +2 位作者 牛余雷 黄翰哲 马梓煜 《含能材料》 EI CAS CSCD 北大核心 2024年第4期397-407,共11页
为研究高聚物粘结炸药(PBX)的准静态压缩行为,对两种典型配方(含铝粉与否)的浇注PBX替代材料在不同应变率下进行单轴准静态压缩试验,并对其力学性能进行了对比分析。同时基于朱‑王‑唐(ZWT)模型提出一种新模型来描述材料的准静态压缩行为... 为研究高聚物粘结炸药(PBX)的准静态压缩行为,对两种典型配方(含铝粉与否)的浇注PBX替代材料在不同应变率下进行单轴准静态压缩试验,并对其力学性能进行了对比分析。同时基于朱‑王‑唐(ZWT)模型提出一种新模型来描述材料的准静态压缩行为,通过遗传算法获取本构模型参数,并使用Fortran语言在Abaqus有限元软件的用户材料子程序(UMAT)接口中进行本构模型的建立。结果表明:浇注PBX替代材料的准静态压缩过程可分为弹性压缩、应力衰减以及失稳破坏3个阶段;准静态压缩力学行为与应变率有明显的相关性,随着应变率的提高,材料的有效压缩应变基本不变,而压缩模量、屈服强度和压缩强度的对数与应变率对数近似呈现出线性关系;铝粉的加入使浇注PBX替代材料压缩模量、屈服强度和压缩强度均有所提升。新构建的本构模型能较好描述浇注PBX替代材料的准静态压缩行为,使用有限元软件对本构模型普适性进行验证,得到仿真计算结果与试验结果间可决系数R^(2)均大于0.98,吻合程度较高。 展开更多
关键词 浇注高聚物粘结炸药(pbx)替代材料 准静态压缩 本构模型 UMAT
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子弹撞击下CL-20基PBX装药响应研究
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作者 焦纲领 陈鹏万 +2 位作者 刘睿 王志浩 张雪丽 《南京理工大学学报》 CAS CSCD 北大核心 2024年第2期127-133,共7页
为了提高战斗部安全性,指导CL-20基PBX炸药在战斗部装药中的应用和设计,开展了基于子弹撞击试验的典型战斗部撞击响应特性研究。进行了子弹撞击试验,通过分析战斗部响应后的超压数据、验证板穿孔、试验影像和试验样品回收等,评估了子弹... 为了提高战斗部安全性,指导CL-20基PBX炸药在战斗部装药中的应用和设计,开展了基于子弹撞击试验的典型战斗部撞击响应特性研究。进行了子弹撞击试验,通过分析战斗部响应后的超压数据、验证板穿孔、试验影像和试验样品回收等,评估了子弹撞击战斗部的反应等级。结果表明,子弹撞击试验中,子弹速度为836 m/s,战斗部在子弹撞击下发生了爆轰等级的反应。此外,开展了不同撞击条件下战斗部安全性数值模拟,研究了不同撞击速度下战斗部的反应过程。结果表明,子弹以850 m/s和750 m/s撞击时,战斗部分别发生爆轰和燃烧等级的反应。该研究为典型战斗部的撞击响应预测及反应等级评价提供了数据支撑。 展开更多
关键词 战斗部 子弹撞击 试验评估 数值模拟 反应等级 CL-20基pbx装药 点火增长模型 冲击波超压
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PBX内部裂纹水浸超声全聚焦成像方法研究
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作者 甘仁杰 禹利达 +3 位作者 李海宁 张伟斌 李卫彬 杨占锋 《含能材料》 EI CAS CSCD 北大核心 2024年第4期353-359,共7页
高聚物粘结炸药(PBX)的内部裂纹检测对其使用安全性和结构完整性评价具有重要意义和工程应用价值。为了提高PBX内部裂纹缺陷的成像检测精度和图像质量,研究了曲面修正水浸超声全聚焦成像方法,并在此基础上进一步结合了延迟乘和波束形成(... 高聚物粘结炸药(PBX)的内部裂纹检测对其使用安全性和结构完整性评价具有重要意义和工程应用价值。为了提高PBX内部裂纹缺陷的成像检测精度和图像质量,研究了曲面修正水浸超声全聚焦成像方法,并在此基础上进一步结合了延迟乘和波束形成(DMAS)技术,通过水浸法对Φ100.0 mm的半圆柱PBX的底部裂纹缺陷进行了超声成像检测研究,实现了对曲面构形PBX底部裂纹缺陷的高精度成像表征。实验结果表明,传统全聚焦成像算法的裂纹缺陷高度测量误差为12.0%,图像信噪比为1.37 dB;曲面修正后的裂纹缺陷高度测量误差为3.6%,图像信噪比为2.13 dB;而曲面修正结合DMAS算法成像的裂纹缺陷高度测量误差仅为0.4%,图像信噪比为5.32 dB。 展开更多
关键词 高聚物粘结炸药(pbx) 曲面修正成像算法 延迟乘和波束形成(DMAS)技术 裂纹
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裂纹长度对PBX代用材料表观断裂韧性Kc的影响
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作者 单骏鹏 王山 +2 位作者 邓鹏飞 唐维 文乾乾 《含能材料》 EI CAS CSCD 北大核心 2024年第5期528-536,共9页
表观断裂韧性(Kc)是表征高聚物粘结炸药(PBX)抵抗裂纹萌生和裂纹扩展的重要材料性能,研究表观断裂韧性Kc的尺寸效应对预测不同尺度的PBX的起裂及失效行为具有重要意义。通过中心裂纹巴西圆盘(CSTBD)试验,对PBX代用材料的表观断裂韧性Kc... 表观断裂韧性(Kc)是表征高聚物粘结炸药(PBX)抵抗裂纹萌生和裂纹扩展的重要材料性能,研究表观断裂韧性Kc的尺寸效应对预测不同尺度的PBX的起裂及失效行为具有重要意义。通过中心裂纹巴西圆盘(CSTBD)试验,对PBX代用材料的表观断裂韧性Kc的尺寸效应特性进行研究,通过断裂试验研究了不同裂纹长度(2,4,6,8,10 mm)对CSTBD试样表观断裂韧性Kc的影响。并采用了传统的最大切应力(MTS)准则以及考虑Willimas级数高阶项系数和断裂扩展区(FPZ)长度预估模型的修正最大切应力(MMTS)准则,对PBX代用材料的表观断裂韧性Kc的尺寸效应解释。结果发现,随着裂纹长度的增加,Kc从0.139 MPa·m0.5增长至0.251 MPa·m0.5,并且随着裂纹长度的增加Kc趋于稳定。在使用A3项修正的FPZ长度预估模型下,相较于传统的MTS准则,使用MMTS准则能够很好地解释PBX代用材料表观断裂韧性Kc的尺寸效应。 展开更多
关键词 高聚物粘结炸药(pbx) 表观断裂韧性 断裂过程区 尺寸效应 修正最大切应力(MMTS)
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小药量RDX基PBX的热爆炸特性及对大药量热安全性的预测
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作者 柴悦 姜林 +3 位作者 李宓 马腾 吴星亮 徐森 《爆破器材》 CAS CSCD 北大核心 2024年第3期17-25,共9页
为研究高聚物黏结炸药(PBX)的热分解特性和热安全性,探究了2种小药量试验对PBX的自加速分解温度(SADT)预测的准确性。采用差示扫描量热仪(DSC)和绝热加速量热仪(ARC)同时研究了一种典型RDX基PBX的热分解行为,分别计算了PBX的热动力学及... 为研究高聚物黏结炸药(PBX)的热分解特性和热安全性,探究了2种小药量试验对PBX的自加速分解温度(SADT)预测的准确性。采用差示扫描量热仪(DSC)和绝热加速量热仪(ARC)同时研究了一种典型RDX基PBX的热分解行为,分别计算了PBX的热动力学及热安全性参数。基于Semenov理论,进一步计算得到2种热分析方法下PBX的SADT,并结合等温储存试验验证了结果的准确性。DSC分析得到,PBX的活化能为125.70 kJ/mol,热爆炸临界温度为460.08 K,10 g量级的不归还温度T_(NR)为417.22 K,SADT为405.72 K;ARC分析得到,10 g量级的PBX的T_(NR)为427.97 K,SADT为421.57 K。通过7 d恒温热爆炸试验,确定PBX的最小SADT为418.15 K,证明基于ARC的小药量试验预测大药量样品的热安全性更符合实际情况。可用于解决炸药在储存、生产、运输和使用等过程中的安全问题。 展开更多
关键词 高聚物黏结炸药(pbx) 热分解特性 热动力学 热安全性 自加速分解温度(SADT)
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塔里木盆地西南部晚白垩世——早古新世沉积环境演化:来自皮山PBX1井的地化证据
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作者 岳勇 蒋恕 +1 位作者 田景春 林新 《中国地质》 CAS CSCD 北大核心 2024年第2期592-605,共14页
【研究目的】白垩纪与古近纪之交发生过地质历史上重大的灾变和异常事件,致使K/Pg界线成为全球最重要的地质界线之一。通过对塔里木盆地晚白垩世—早古新世沉积环境的研究,有助于重建特提斯北部盆地群塔里木盆地的古环境。【研究方法】... 【研究目的】白垩纪与古近纪之交发生过地质历史上重大的灾变和异常事件,致使K/Pg界线成为全球最重要的地质界线之一。通过对塔里木盆地晚白垩世—早古新世沉积环境的研究,有助于重建特提斯北部盆地群塔里木盆地的古环境。【研究方法】本文通过塔里木盆地西南部PBX1井岩心的地球化学元素敏感指标研究K/Pg上下环境的变化。【研究结果】晚白垩世晚期古气候属于干热型,早古新世呈现短暂温湿型。古盐度由晚白垩世正常海洋环境向早古新世半咸水、海陆过渡盐湖环境转换,K/Pg界线位置处,古盐度达到最低值。氧化-还原环境由晚白垩世富氧→贫氧的弱氧化-弱还原环境经历了K/Pg事件之后短暂向早古新世富氧环境转化,而后整体上由贫氧的弱氧化-弱还原环境向极贫氧的还原环境演化。【结论】PBX1井地球化学元素敏感指标揭示了中生代—新生代之交灾变异常事件在塔里木盆地响应特征,也是特提斯洋北部盆地群晚白垩世—早古新世沉积环境演化的有效证据。 展开更多
关键词 环境演化 干热型 湿热型 白垩纪—古近纪界线 pbx1井 地质调查工程 塔西南
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低速撞击下PBX炸药黏弹塑性细观损伤点火模型研究
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作者 王昕捷 王心宇 +1 位作者 丁凯 黄风雷 《北京理工大学学报》 EI CAS CSCD 北大核心 2024年第2期123-134,共12页
为研究塑性黏结炸药PBX-9501在低速撞击条件下的力学变形、损伤以及温升情况,发展了基于黏塑性演化方程以及复杂应力状态下微裂纹形核、演化机制的非线性黏弹塑性细观损伤力热化学耦合模型.通过分析低速撞击试验中力学变形-损伤对炸药... 为研究塑性黏结炸药PBX-9501在低速撞击条件下的力学变形、损伤以及温升情况,发展了基于黏塑性演化方程以及复杂应力状态下微裂纹形核、演化机制的非线性黏弹塑性细观损伤力热化学耦合模型.通过分析低速撞击试验中力学变形-损伤对炸药宏细观温升的影响,可确定炸药发生点火的主导机制及点火速度阈值,结果表明:撞击速度为59 m/s时PBX-9501炸药呈现大变形与破碎响应特征,顶部位置微裂纹和微孔洞演化程度最高,裂纹摩擦热点机制对炸药热点温升起主要作用;随着撞击速度增大,微裂纹热点机制仍为点火主导机制,可预测得到PBX-9501炸药点火临界撞击速度为120~125 m/s. 展开更多
关键词 pbx-9501 低速撞击 微裂纹演化 黏塑性
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基于新型聚氨酯弹性体材料在PBX炸药载体中的应用
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作者 杨金想 孙晓乐 +2 位作者 杨丰友 毕晓露 万力伦 《兵工自动化》 北大核心 2024年第1期26-29,66,共5页
为提高高聚物粘结炸药(polymer bonded explosive,PBX)炸药载体的力学强度,在炸药的粘结剂体系中引入聚氨酯弹性材料进行聚醚/聚酯粘结剂高强度载体设计。通过调控聚氨酯弹性体制备过程中多元醇的比例和分子量、固化剂的种类,利用旋转... 为提高高聚物粘结炸药(polymer bonded explosive,PBX)炸药载体的力学强度,在炸药的粘结剂体系中引入聚氨酯弹性材料进行聚醚/聚酯粘结剂高强度载体设计。通过调控聚氨酯弹性体制备过程中多元醇的比例和分子量、固化剂的种类,利用旋转流变仪和多功能万能材料试验机开展材料固化速率性能分析和固化后聚氨酯弹性体对端羟基聚丁二烯(hydroxyl-terminatedpolybutadiene,HTPB)粘结剂体系力学强度影响规律分析。结果表明:PCL_PTMG聚氨酯弹性体拉伸强度的大小与固化剂的固化速率相关;改变聚酯聚醚分子量对弹性体抗拉强度的影响不大;当聚酯聚醚的比例为4:1时,弹性体抗拉力学强度最优;聚氨酯弹性体增大了HTPB粘结剂体系强度。 展开更多
关键词 pbx炸药载体 聚氨酯弹性体 固化速率 力学强度 HTPB粘结剂
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冲击加载下PBX界面对热点形成和安全性影响
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作者 夏全志 吴艳青 +2 位作者 柴传国 杨昆 黄风雷 《兵工学报》 EI CAS CSCD 北大核心 2024年第6期1840-1853,共14页
高聚物粘结炸药(Polymer-Bonded Explosive,PBX)界面结构对其热点形成和冲击安全性有显著影响。为研究冲击条件下PBX点火响应过程,通过图像数字化建模和矢量化技术,建立反映PBX真实细观结构特征的有限元模型。考虑材料内部摩擦生热、晶... 高聚物粘结炸药(Polymer-Bonded Explosive,PBX)界面结构对其热点形成和冲击安全性有显著影响。为研究冲击条件下PBX点火响应过程,通过图像数字化建模和矢量化技术,建立反映PBX真实细观结构特征的有限元模型。考虑材料内部摩擦生热、晶体变形温升以及晶体放热反应过程,对PBX冲击载荷下热点形成进行数值仿真,并引入热点密度作为依据来判断材料是否点火,进一步研究晶体表面粗糙度和晶体包覆缺陷对材料点火感度与安全性的影响。试验结果表明:在冲击加载过程中,PBX内部热量前期主要来源于摩擦生热和晶体变形温升;当温度逐渐升高后,热量主要来源于晶体放热反应;材料发生点火的临界热点密度为0.68 mm-2,降低晶体表面粗糙度并提高晶体表面包覆质量,有助于抑制热点的形成,使材料降感,进而提升PBX安全性;研究结果可用于高能炸药的点火感度及安全性评估,并指导其生产加工与制备工艺。 展开更多
关键词 高聚物粘结炸药 冲击点火 热点 界面结构 安全性
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Dinitrophenyl-oxadiazole compounds:Design strategy,synthesis,and properties of a series of new melt-cast explosives
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作者 Bao-long Kuang Ting-wei Wang +6 位作者 Cong Li Mou Sun Qamar-un-Nisa Tariq Chao Zhang Zhi-ming Xie Zu-jia Lu Jian-guo Zhang 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第5期100-107,共8页
Melt-cast explosives are the most widely used energetic materials in military composite explosives,researchers have been unremittingly exploring high-energy and insensitive melt-cast explosives.In this work,a series o... Melt-cast explosives are the most widely used energetic materials in military composite explosives,researchers have been unremittingly exploring high-energy and insensitive melt-cast explosives.In this work,a series of dinitrophenyl-oxadiazole compounds were designed and prepared.These compounds have an ideal low melting point(80-97℃),good detonation performance(detonation velocity D=6455-6971 m/s,detonation pressure P=18-19 GPa)and extreme insensitive nature(impact sensitivity≥60 J,friction sensitivity>360 N).All these compounds were well characterized by nuclear magnetic resonance,fourier transform infrared spectroscopy,elemental analysis.Compounds 2,3 were unambiguously confirmed by X-ray single crystal diffraction analysis.As a result,their overall properties are superior to traditional melt-cast explosives trinitrotoluene(TNT)and dinitroanisole(DNAN)which may have excellent potential applications in insensitive melt-cast explosives. 展开更多
关键词 Dinitrophenyl-oxadiazole Melt-cast explosive Low sensitivity
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Theoretical analysis of the elastic Kelvin-Helmholtz instability in explosive weldings
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作者 Yuanbo Sun Jianning Gou +5 位作者 Cheng Wang Qiang Zhou Rui Liu Pengwan Chen Tonghui Yang Xiang Zhao 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第2期521-528,共8页
By considering the joint effects of the Kelvin-Helmholtz(KH) and Rayleigh-Taylor(RT) instabilities, this paper presents an interpretation of the wavy patterns that occur in explosive welding. It is assumed that the el... By considering the joint effects of the Kelvin-Helmholtz(KH) and Rayleigh-Taylor(RT) instabilities, this paper presents an interpretation of the wavy patterns that occur in explosive welding. It is assumed that the elasticity of the material at the interface effectively determines the wavelength, because explosive welding is basically a solid-state welding process. To this end, an analytical model of elastic hydrodynamic instabilities is proposed, and the most unstable mode is selected in the solid phase. Similar approaches have been widely used to study the interfacial behavior of solid metals in high-energy-density physics. By comparing the experimental and theoretical results, it is concluded that thermal softening,which significantly reduces the shear modulus, is necessary and sufficient for successful welding. The thermal softening is verified by theoretical analysis of the increase in temperature due to the impacting and sliding of the flyer and base plates, and some experimental observations are qualitatively validated.In summary, the combined effect of the KH and RT instabilities in solids determines the wavy morphology, and our theoretical results are in good qualitative agreement with experimental and numerical observations. 展开更多
关键词 explosive welding Hydrodynamic instabilities ELASTICITY
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Assessing the energy release characteristics during the middle detonation reaction stage of aluminized explosives
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作者 Kun Yang Lang Chen +3 位作者 Danyang Liu Bin Zhang Jianying Lu Junying Wu 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第3期270-277,共8页
Afterburning behind the detonation front of an aluminized explosive releases energy on the millisecond timescale,which prolong the release of detonation energy and the energy release at different stages also shows sig... Afterburning behind the detonation front of an aluminized explosive releases energy on the millisecond timescale,which prolong the release of detonation energy and the energy release at different stages also shows significant differences.However,at present,there are few effective methods for evaluating the energy release characteristics of the middle reaction stage of such explosives,which can have a duration of tens to hundreds of microseconds.The present work demonstrates an approach to assessing the midstage of an aluminized explosive detonation based on a water push test employing a high degree of confinement.In this method,the explosive is contained in a steel cylinder having one end closed that is installed at the bottom of a transparent water tank.Upon detonation,the gaseous products expand in one direction while forcing water ahead of them.The resulting underwater shock wave and the interface between the gas phase products and the water are tracked using an ultra-high-speed framing and streak camera.The shock wave velocity in water and the expansion work performed by the gaseous detonation products were calculated to assess the energy release characteristics of aluminized explosives such as CL-20 and RDX in the middle stage of the detonation reaction.During the middle stage of the detonation process of these aluminized explosives,the aluminum reaction reduced the attenuation of shock waves and increased the work performed by gas phase products.A higher aluminum content increased the energy output while the presence of oxidants slowed the energy release rate.This work demonstrates an effective means of evaluating the performance of aluminized explosives. 展开更多
关键词 Aluminized explosive Non-ideal detonation Water push test Energy release
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Combination of Nitrogen-Rich Skeleton and Coordination Group:Synthesis of a High-Energy Primary Explosive Based on 1H-Tetrazole-5-Carbohydrazide
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作者 Tingwei Wang Zujia Lu +6 位作者 Shu Bu Baolong Kuang Lu Zhang Zhenxin Yi Kun Wang Shunguan Zhu Jianguo Zhang 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第1期271-277,共7页
The high energy coordination compounds Cu(TZCA)_(2)(ClO_(4))_(2)(ECCs-1) was prepared by 1H-tetrazole-5-carbohydrazide(TZCA) with a high energy skeleton and a strong coordination ability group.At the same time,the rea... The high energy coordination compounds Cu(TZCA)_(2)(ClO_(4))_(2)(ECCs-1) was prepared by 1H-tetrazole-5-carbohydrazide(TZCA) with a high energy skeleton and a strong coordination ability group.At the same time,the reaction activity of the ligand was explored,and the single crystal structure of it and intermediate were obtained.The structures of all substances were characterized by IR and EA.And the structure and composition of ECCs-1 are confirmed by ESP,AC,SEM and ICP-OES.Physical and chemical properties tests show that ECCs-1 has an acceptable thermal stability(T_(d)=177℃) and extremely sensitive mechanical stimulation(IS=1 J,FS=5 N).The comprehensive performance test results show that ECCs-1 has excellent initiation ability.In addition,the decomposition mechanism of ECCs-1 is explored from two aspects of experiment and theoretical calculation. 展开更多
关键词 1H-tetrazole-5-carbohydrazide Primary explosive Decomposition mechanism Coordination polymers Laser
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Shock-induced energy localization and reaction growth considering chemical-inclusions effects for crystalline explosives
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作者 Ruqin Liu Yanqing Wu +3 位作者 Xinjie Wang Fenglei Huang Xiaona Huang Yushi Wen 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第3期278-294,共17页
Chemical inclusions significantly alter shock responses of crystalline explosives in macroscale gap experiments but their microscale dynamics origin remains unclear.Herein shock-induced energy localization,overall phy... Chemical inclusions significantly alter shock responses of crystalline explosives in macroscale gap experiments but their microscale dynamics origin remains unclear.Herein shock-induced energy localization,overall physical responses,and reactions in a-1,3,5-trinitro-1,3,5-triazinane(a-RDX)crystal entrained various chemical inclusions were investigated by the multi-scale shock technique implemented in the reactive molecular dynamics method.Results indicated that energy localization and shock reaction were affected by the intrinsic factors within chemical inclusions,i.e.,phase states,chemical compositions,and concentrations.The atomic origin of chemical-inclusions effects on energy localization is dependent on the dynamics mechanism of interfacial molecules with free space volume,which includes homogeneous intermolecular compression,interfacial impact and shear,and void collapse and jet.As introducing various chemical inclusions,the initiation of those dynamics mechanisms triggers diverse decay rates of bulk RDX molecules and hereby impacts on growth speeds of final reactions.Adding chemical inclusions can reduce the effectiveness of the void during the shock impacting.Under the shockwave velocity of 9 km/s,the parent RDX decay rate in RDX entrained amorphous carbon decreases the most and is about one fourth of that in RDX with a vacuum void,and solid HMX and TATB inclusions are more reactive than amorphous carbon but less reactive than dry air or acetone inclusions.The lessdense shocking system denotes the greater increases in local temperature and stress,the faster energy liberation,and the earlier final reaction into equilibrium,revealing more pronounced responses to the present intense shockwave.The quantitative models associated with the relative system density(RD_(sys))were proposed for indicating energy-localization mechanisms and evaluating initiation safety in the shocked crystalline explosive.RD_(sys)is defined by the density ratio of defective RDX to perfect crystal after dynamics relaxation and reveals the global density characteristic in shocked systems filled with chemical inclusions.When RD_(sys)is below 0.9,local hydrodynamic jet initiated by void collapse dominates upon energy localization instead of interfacial impact.This study sheds light on novel insights for understanding the shock chemistry and physical-based atomic origin in crystalline explosives considering chemical-inclusions effects. 展开更多
关键词 Shock responses Energy localization Crystalline explosives Chemical inclusions Reactive molecular dynamics
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Asymptotic normality of error density estimator in stationary and explosive autoregressive models
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作者 WU Shi-peng YANG Wen-zhi +1 位作者 GAO Min HU Shu-he 《Applied Mathematics(A Journal of Chinese Universities)》 SCIE CSCD 2024年第1期140-158,共19页
In this paper,we consider the limit distribution of the error density function estima-tor in the rst-order autoregressive models with negatively associated and positively associated random errors.Under mild regularity... In this paper,we consider the limit distribution of the error density function estima-tor in the rst-order autoregressive models with negatively associated and positively associated random errors.Under mild regularity assumptions,some asymptotic normality results of the residual density estimator are obtained when the autoregressive models are stationary process and explosive process.In order to illustrate these results,some simulations such as con dence intervals and mean integrated square errors are provided in this paper.It shows that the residual density estimator can replace the density\estimator"which contains errors. 展开更多
关键词 explosive autoregressive models residual density estimator asymptotic distribution association sequence
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A CombustionModel for Explosive Charge Affected by a Bottom Gap in the Launch Environment
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作者 ShiboWu Weidong Chen +4 位作者 Jingxin Ma Lan Liu Shengzhuo Lu Honglin Meng Xiquan Song 《Computer Modeling in Engineering & Sciences》 SCIE EI 2024年第2期1207-1236,共30页
Launch safety of explosive charges has become an urgent problem to be solved by all countries in the world aslaunch situation of ammunition becomes consistentlyworse.However, the existing numericalmodels have differen... Launch safety of explosive charges has become an urgent problem to be solved by all countries in the world aslaunch situation of ammunition becomes consistentlyworse.However, the existing numericalmodels have differentdefects. This paper formulates an efficient computational model of the combustion of an explosive charge affectedby a bottom gap in the launch environment in the context of the material point method. The current temperatureis computed accurately from the heat balance equation, and different physical states of the explosive charges areconsidered through various equations of state. Microcracks in the explosive charges are described with respectto the viscoelastic statistical crackmechanics (Visco–SCRAM) model. Themethod for calculating the temperatureat the bottomof the explosive charge with respect to the bottomgap is described. Based on this combustionmodel,the temperature history of a Composition B (COMB) explosive charge in the presence of a bottom gap is obtainedduring the launch process of a 155-mm artillery. The simulation results show that the bottom gap thickness shouldbe no greater than 0.039 cm to ensure the safety of the COM B explosive charge in the launch environment. Thisconclusion is consistent with previous results and verifies the correctness of the proposed model. Ultimately, thispaper derives amathematical expression for themaximumtemperature of the COMB explosive chargewith respectto the bottomgap thickness (over the range of 0.00–0.039 cm), and establishes a quantitative evaluationmethod forthe launch safety of explosive charges.The research results provide some guidance for the assessment and detectionof explosive charge safety in complex launch environments. 展开更多
关键词 Combustion model explosive charge safety launch environment bottom gap TEMPERATURE
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Micro defects formation and dynamic response analysis of steel plate of quasi-cracking area subjected to explosive load
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作者 Zheng-qing Zhou Ze-chen Du +5 位作者 Xiao Wang Hui-ling Jiang Qiang Zhou Yu-long Zhang Yu-zhe Liu Pei-ze Zhang 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第1期580-593,共14页
As the protective component,steel plate had attracted extensive attention because of frequently threats of explosive loads.In this paper,the evolution of microstructure and the mechanism of damage in the quasi-crackin... As the protective component,steel plate had attracted extensive attention because of frequently threats of explosive loads.In this paper,the evolution of microstructure and the mechanism of damage in the quasi-cracking area of steel plate subjected to explosive load were discussed and the relationships between micro defects and dynamic mechanical response were revealed.After the explosion experiment,five observation points were selected equidistant from the quasi-cracking area of the section of the steel plate along the thickness direction,and the characteristics of micro defects at the observation points were analyzed by optical microscope(OM),scanning electron microscope(SEM) and electron backscattered diffraction(EBSD).The observation result shows that many slip bands(SBs) appeared,and the grain orientation changed obviously in the steel plate,the two were the main damage types of micro defects.In addition,cracks,peeling pits,grooves and other lager micro defects were appeared in the lower area of the plate.The stress parameters of the observation points were obtained through an effective numerical model.The mechanism of damage generation and crack propagation in the quasicracking area were clarified by comparing the specific impulse of each observation point with the corresponding micro defects.The result shows that the generation and expansion of micro defects are related to the stress area(i.e.the upper compression area,the neutral plane area,and the lower tension area).The micro defects gather and expand at the grain boundary,and will become macroscopic damage under the continuous action of tensile stress.Besides,the micro defects at the midpoint of the section of the steel plate in the direction away from the explosion center(i.e.the horizontal direction) were also studied.It was found that the specific impulse at these positions were much smaller than that in the thickness direction,the micro defects were only SBs and a few micro cracks,and the those decreased with the increase of the distance from the explosion center. 展开更多
关键词 explosive load Quasi-cracking area Micro defects Steel plate Dynamic response Numerical simulation
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Research on the quasi-isentropic driving model of aluminized explosives in the detonation wave propagation direction
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作者 Hongfu Wang Yan Liu +5 位作者 Fan Bai Chao He Yingliang Xu Qiang Zhou Chuan Xiao Fenglei Huang 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第2期596-618,共23页
Taking CL-20(Hexanitrohexaazaisowurtzitane)-based aluminized explosives with high gurney energy as the research object, this research experimentally investigates the work capability of different aluminized explosive f... Taking CL-20(Hexanitrohexaazaisowurtzitane)-based aluminized explosives with high gurney energy as the research object, this research experimentally investigates the work capability of different aluminized explosive formulations when driving metal flyer plates in the denotation wave propagation direction.The research results showed that the formulations with 43 μm aluminum(Al) powder particles(The particle sizes of Al powder were in the range of 2~43 μm) exhibited the optimal performance in driving flyer plates along the denotation wave propagation direction. Compared to the formulations with Al powder 13 μm, the formulations with Al powder 2 μm delivered better performance in accelerating metal flyer plates in the early stage, which, however, turned to be poor in the later stage. The CL-20-based explosives containing 25% Al far under-performed those containing 15% Al. Based on the proposed quasi-isentropic hypothesis, relevant isentropy theories, and the functional relationship between detonation parameters and entropy as well as Al reaction degree, the characteristic lines of aluminized explosives in accelerating flyer plates were theoretically studied, a quasi-isentropic theoretical model for the aluminized explosive driving the flyer plate was built and the calculation methods for the variations of flyer plate velocity, Al reaction degree, and detonation product parameters with time and axial positions were developed. The theoretical model built is verified by the experimental results of the CL-20-based aluminized explosive driving flyer plate. It was found that the model built could accurately calculate the variations of flyer plate velocity and Al reaction degree over time. In addition, how physical parameters including detonation product pressure and temperature varied with time and axial positions was identified. The action time of the positive pressure after the detonation of aluminized explosives was found prolonged and the downtrend of the temperature was slowed down and even reversed to a slight rise due to the aftereffect reaction between the Al powder and the detonation products. 展开更多
关键词 Aluminized explosive Flyer plate experiment Quasi-isentropic theoretical model Al reaction Driving characteristics
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