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TEM STUDY OF BONDING LAYERS IN DISSIMILAR ALLOY EXPLOSIVE BONDING JOINTS
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作者 ZHOU Bangxin SHENG Zhongqi PENG Feng Southwest Center for Nuclear Reactor Engineering Research and Design,Chengdu,China P.O.Box 291-601,Chengdu,Sichuan,China 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 1989年第4期237-243,共7页
The bonding layers in dissimilar alloy explosive bonding joints,γ/α stainless steels, copper/carbon steel and brass/γ-stainless steel have been studied by means of TEM tech- nique.The results show that the bonding ... The bonding layers in dissimilar alloy explosive bonding joints,γ/α stainless steels, copper/carbon steel and brass/γ-stainless steel have been studied by means of TEM tech- nique.The results show that the bonding is obtained by diffusion and local melting at the con- tact surface.The structure of bonding layer not only responds to the compositions of the bond- ing alloys,but also the difference between their thermal conductivities,melting points and recrystallization temperatures,Because of the small molten region and fast cooling rate,the structure of molten region could be amorphous or microcrystals,and both stable and metastable phases exsist. 展开更多
关键词 explosive bonding electron microscope bonding layer
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A novel diffusion model considering curvature radius at the bonding interface in a titanium/steel explosive clad plate 被引量:5
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作者 Hai-tao Jiang Qiang Kang Xiao-qian Yan 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2015年第9期956-965,共10页
This article introduces an element diffusion behavior model for a titanium/steel explosive clad plate characterized by a typical curved interface during the heat-treatment process. A series of heat-treatment experimen... This article introduces an element diffusion behavior model for a titanium/steel explosive clad plate characterized by a typical curved interface during the heat-treatment process. A series of heat-treatment experiments were conducted in the temperature range from 750℃ to 950℃, and the effects of heat-treatment parameters on the microstructural evolution and diffusion behavior were investigated by optical microscopy, scanning electron microscopy, X-ray diffraction analysis, and electron-probe microanalysis. Carbon atoms within the steel matrix were observed to diffuse toward the titanium matrix and to aggregate at the bonding interface at 850℃ or lower; in contrast, when the temperature exceeded 850℃, the mutual diffusion of Ti and Fe occurred, along with the diffusion of C atoms, resulting in the for- marion of Ti-Fe intermetallics (Fe2Ti/FeTi). The diffusion distances of C, Ti, and Fe atoms increased with increasing heating temperature and/or holding time. On the basis of this diffusion behavior, a novel diffusion model was proposed. This model considers the effects of various factors, including the curvature radius of the curved interface, the diffusion coefficient, the heating temperature, and the holding rime. The experimental results show good agreement with the calculated values. The proposed model could clearly provide a general prediction of the elements' diffusion at both straight and curved interfaces. 展开更多
关键词 explosive bonding metal cladding diffusion models INTERFACES heat treatment
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Bioinspired interface design for enhancing the mechanical properties of energetic composites by developing a root-soil interlocked structure
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作者 Zhipeng Liu Wenbin Yang +1 位作者 Zhijian Yang Guansong He 《Defence Technology(防务技术)》 2026年第2期1-13,共13页
The interfacial structure and its regulation play a crucial role in determining the overall performance of advanced functional composites.Weak interfacial interactions between carbon fibers and the matrix present a cr... The interfacial structure and its regulation play a crucial role in determining the overall performance of advanced functional composites.Weak interfacial interactions between carbon fibers and the matrix present a critical challenge limiting the general performance and functional applications of carbon fiberreinforced composites.In this paper,a novel strategy for bioinspired root-soil interfacial structure was presented to enhance the mechanical properties of polymer bonded explosives.A multiscale nanowire heterostructure was constructed through the in-situ growth of morphologically controllable zinc oxide nanowires on the carbon fiber surface via a facile hydrothermal method,with polydopamine as the interfacial reinforcement layer.This structure emulated the function of the"root",and combined with a network-distributed polymer binder representing the"soil",formed a robust root-soil interlocking interfacial structure within the polymer bonded explosives.Due to the multiscale interfacial reinforcement structure,the tensile strength of the polymer bonded explosives was visibly increased by 41%,the strain at the break by 110%,and the creep resistance by 51%with only 0.4 wt%filler adopted.The thermal stress resistance was improved by 57%owing to the synergistic enhancement of thermal conductivity and mechanical properties.This study provides new perspectives and insights for designing and constructing high-performance polymer bonded explosives and other functional composites. 展开更多
关键词 Carbon fibers Interface/interphase Polymer bonded explosives Surface modification Mechanical properties
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Thermal decomposition and kinetics of plastic bonded explosives based on mixture of HMX and TATB with polymer matrices 被引量:11
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作者 Arjun Singh Tirupati C.Sharma +3 位作者 Mahesh Kumar Jaspreet Kaur Narang Prateek Kishore Alok Srivastava 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2017年第1期22-32,共11页
This work describes thermal decomposition behaviour of plastic bonded explosives(PBXs) based on mixture of 1,3,5,7-tetranitro-1,3,5,7-tetrazocane(HMX) and 2,4,6-triamino-1,3,5-trinitrobenzene(TATB)with Viton A as poly... This work describes thermal decomposition behaviour of plastic bonded explosives(PBXs) based on mixture of 1,3,5,7-tetranitro-1,3,5,7-tetrazocane(HMX) and 2,4,6-triamino-1,3,5-trinitrobenzene(TATB)with Viton A as polymer binder. Thermal decomposition of PBXs was undertaken by applying simultaneous thermal analysis(STA) and differential scanning calorimetry(DSC) to investigate influence of the HMX amount on thermal behavior and its kinetics. Thermogravimetric analysis(TGA) indicated that the thermal decomposition of PBXs based on mixture of HMX and TATB was occurred in a three-steps. The first step was mainly due to decomposition of HMX. The second step was ascribed due to decomposition of TATB, while the third step was occurred due to decomposition of the polymer matrices. The thermal decomposition % was increased with increasing HMX amount. The kinetics related to thermal decomposition were investigated under non-isothermal for a single heating rate measurement. The variation in the activation energy of PBXs based on mixture of HMX and TATB was observed with varying the HMX amount. The kinetics from the results of TGA data at various heating rates under non-isothermal conditions were also calculated by Flynn—Wall—Ozawa(FWO) and Kissinger-Akahira-Sunose(KAS)methods. The activation energies calculated by employing FWO method were very close to those obtained by KAS method. The mean activation energy calculated by FWO and KAS methods was also a good agreement with the activation energy obtained from single heating rate measurement in the first step decomposition. 展开更多
关键词 Plastic bonded explosives Thermogravimetric analysis Differential scanning calorimeter Thermal decomposition KINETICS
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Ultrasonic Evaluation of the Impact Damage of Polymer Bonded Explosives 被引量:3
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作者 陈鹏万 戴开达 +1 位作者 黄风雷 丁雁生 《Journal of Beijing Institute of Technology》 EI CAS 2004年第3期242-246,共5页
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... 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.. 展开更多
关键词 polymer bonded explosives impact damage ultrasonic evaluation
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Deformation and Failure of Polymer Bonded Explosives 被引量:2
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作者 陈鹏万 黄风雷 丁雁生 《Journal of Beijing Institute of Technology》 EI CAS 2004年第1期43-47,共5页
The deformation and failure of pressed polymer bonded explosives under different types of loads including tension, compression and low velocity impact are presented. Brazilian test is used to study the tensile propert... The deformation and failure of pressed polymer bonded explosives under different types of loads including tension, compression and low velocity impact are presented. Brazilian test is used to study the tensile properties. The microstructure of polymer bonded explosives and its evolution are studied by use of scanning electronic microscopy and polarized light microscopy. Polishing techniques have been developed to prepare samples for microscopic examination. The failure mechanisms of polymer bonded explosives under different loads are analyzed. The results show that interfacial debonding is the predominant failure mode in quasi-static tension, while extensive crystal fractures are induced in compression. With the increase of strain rate, more crystal fractures occur. Low velocity impact also induces extensive crystal fractures. 展开更多
关键词 polymer bonded explosives DEFORMATION FAILURE MICROSTRUCTURE Brazilian test
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Lower limit law of welding windows for explosive welding of dissimilar metals 被引量:4
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作者 Chang-gen Shi Xuan Yang +2 位作者 Yu-heng Ge Jun You Hong-bao Hou 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2017年第8期852-857,共6页
The influence of explosive charge thickness on the quality of explosive welding of dissimilar metals was investigated.The lower limit law should be followed in the course of explosive welding.Three welding experiments... The influence of explosive charge thickness on the quality of explosive welding of dissimilar metals was investigated.The lower limit law should be followed in the course of explosive welding.Three welding experiments of stainless steel(410S)and steel(Q345R)were carried out in three different kinds of explosive charge thicknesses,namely 15,25and 35mm.Interfaces of morphology and mechanical properties of three samples were observed and tested.It was found that micro and small wavy bonding is mainly formed for charge thickness of 15mm whose strength is the highest with minor deformation and few defects in the interface;small and middle wavy bonding are mainly formed for charge thickness of 25 mm whose strength is comparatively mediocre;big wavy bonding is mainly formed for charge thickness of 35 mm whose strength is the lowest.The cause of high bonding strength of the micro and small wavy interface was analyzed and verified on the basis of the results of Electron Probe Micro-Analyzer(EPMA)tests of three selected samples. 展开更多
关键词 explosive welding Welding window Lower limit law Cladding plate bonding interface
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Nacre-inspired interface structure design of polymer bonded explosives toward significantly enhanced mechanical performance
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作者 Peng Wang You-long Chen +6 位作者 Li Meng Yin-shuang Sun Yu Dai Xin Li Jie Chen Zhi-jian Yang Guan-song He 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2023年第9期83-92,共10页
Realizing effective enhancement to the structure of interface region between explosive crystals and polymer binder plays a key role in improving the mechanical properties of the current polymer bonded explosives(PBXs)... Realizing effective enhancement to the structure of interface region between explosive crystals and polymer binder plays a key role in improving the mechanical properties of the current polymer bonded explosives(PBXs).Herein,inspired by the structure of natural nacre which possesses outstanding mechanical performance,a kind of nacre-like structural layer is constructed in the interface region of PBXs composites,making use of two-dimensional graphene sheets and one-dimensional bio-macromolecules of cellulose as inorganic and organic building blocks,respectively.Our results reveal that the constructed nacre-like structural layer can effectively improve the interfacial strength and then endow the PBXs composites with significantly enhanced mechanical properties involving of creep resistance,Brazilian strength and fracture toughness,demonstrating the obvious advantage of such bioinspired interface structure design strategy.In addition,the thermal conduction performance of PBXs composites also exhibits noticeable enhancement due to the remarkable phonon transport capability endowed by the asdesigned nacre-like structural layer.We believe this work provides a novel design route to conquer the issue of weak interfacial strength in PBXs composites and greatly increase the comprehensive properties for better meeting the higher requirements proposed to the explosive part of weapon equipment in new era. 展开更多
关键词 Polymer bonded explosives Nacre-like structural layer GRAPHENE CELLULOSE Mechanical properties
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Self-healed microcracks in polymer bonded explosives via thermoreversible covalent bond and hydrogen actions
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作者 Yu-bin Li Xu Zhao +5 位作者 Ya-jun Luo Zhi-jian Yang Li-ping Pan Cheng-cheng Zeng Cong-mei Lin Xue Zheng 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2023年第10期183-194,共12页
Polymeric materials used for the polymer bonded explosive(PBX)or other energetic composite materials(ECMs)that simultaneously possess excellent mechanical properties and high self-healing ability,convenient healing,an... Polymeric materials used for the polymer bonded explosive(PBX)or other energetic composite materials(ECMs)that simultaneously possess excellent mechanical properties and high self-healing ability,convenient healing,and facile fabrication are always a huge challenge.Herein,self-healing linear polyurethane elastomers(PTMEG2000-IPDI-DAPU,denoted as 2I-DAPU)with high healing efficiency and mechanical properties were facilely fabricated by constructing reversible covalent bonds and dynamic hard domains into polymer chains.Furthermore,a TATB-based PBX using as-prepared 2I-DAPU polymer as the binder was constructed,disclosing an excellent self-healing property to heal cracks generated during fabrication,transportation and storage.The damage healing manner of such a PBX sample was investigated by means of prefabricated damage through mechanical load,heal treatment via heating at high temperature,and CT-scanning the inner structure and mechanical property characterization via Brazilian test.The self-healing mechanism of internal damage in PBX was preliminarily explored.We propose that this 2I-DAPU binder with Diels-Alder bonds could generate plentiful active surface groups resulting from damage and drive self-healing at fitting temperature and increase the slightly packed hard phase via incorporating a small amount of hydrogen bonds.This work may offer a novel strategy for improving mechanical property and healing ability in the field of self-healing material which could help expand its applications with enhanced versatility in mechanical-enhanced functional materials. 展开更多
关键词 Polymer bonded explosives Self-healing polymers Diels-alder(DA)bonds H-BOND
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X-Ray Measurement of Residual Stress in Plastic Bonded Explosives
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作者 Yong Zhihua Zhu Shifu +3 位作者 Zhao Beijun Chen Jinghua Zhang Weibin Wei Xingwen 《Journal of Rare Earths》 SCIE EI CAS CSCD 2006年第z1期179-181,共3页
The X-ray diffractive technology was adopted for tentative study of plastic bonded explosive.The datum of some new diffractive peaks in standard PDF cards were added.The effects of strain to interplanar distance and c... The X-ray diffractive technology was adopted for tentative study of plastic bonded explosive.The datum of some new diffractive peaks in standard PDF cards were added.The effects of strain to interplanar distance and crystal size of the explosive were studied.The results show that grain size of plastic bonded explosive is decreasing with the increasing of the pressure,and the residual stress of the explosive is draw stress. 展开更多
关键词 residual stress X-ray diffractive technology plastic bonded explosive
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PBX模拟材料压剪应力状态下的幂函数M-C强度准则与失效特性
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作者 贾东 高洋 +3 位作者 陈勇梅 周燕良 郝志明 黄西成 《含能材料》 EI CAS CSCD 北大核心 2020年第1期32-37,共6页
为了研究高聚物粘结炸药(PBX)在压剪复合应力状态下的强度特性,采用变角剪切加载方法进行了0°,15°,30°,45°,60°,75°以及90°的压剪实验研究;建立了PBX模拟材料的幂函数Mohr-Coulomb(M-C)准则,并对其... 为了研究高聚物粘结炸药(PBX)在压剪复合应力状态下的强度特性,采用变角剪切加载方法进行了0°,15°,30°,45°,60°,75°以及90°的压剪实验研究;建立了PBX模拟材料的幂函数Mohr-Coulomb(M-C)准则,并对其围压强度进行了预测;利用SEM对压剪加载下的细观失效特性进行了分析。结果表明,PBX模拟材料在加载角度θ为0°,15°,30°,45°时主要表现为沿压剪面剪切的破坏模式,在θ为60°,75°,90°时表现为剪切和张裂的混合破坏模式;在剪切破坏模式下,随着压应力的增加,PBX模拟材料剪切强度呈非线性增加的趋势,细观损伤会从颗粒剪断、破碎逐步发展到次生裂纹的形成与贯通。分析发现,幂函数M-C模型适用于描述PBX模拟材料剪切强度的非线性变化规律,拟合得到的强度准则能较为准确地预测不同围压下的轴向压缩强度;压应力增加引起的内摩擦阻力增大和颗粒破碎、次生裂纹等引起的内摩擦系数降低是导致PBX模拟材料剪切破坏强度随压应力增加而非线性增加的重要原因。 展开更多
关键词 PBX(polymer bonded explosive)模拟材料 压剪实验 幂函数Mohr-Coulomb(M-C)准则 失效特性
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Molecular dynamics simulation of mechanical properties of TATB/fluorine-polymer PBXs along different surfaces 被引量:20
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作者 XIAO Jijun HUANG Yucheng +1 位作者 HU Yingjie XIAO Heming 《Science China Chemistry》 SCIE EI CAS 2005年第6期504-510,共7页
The mechanical properties of PBXs composed of the well-known insensitive explo-sive TATB(1,3,5-Triamino-2,4,6-trinitrobenzene)crystal and four kinds of typical fluo-rine-polymers,i.e.poly(vinylidene difluoride)(PVDF),... The mechanical properties of PBXs composed of the well-known insensitive explo-sive TATB(1,3,5-Triamino-2,4,6-trinitrobenzene)crystal and four kinds of typical fluo-rine-polymers,i.e.poly(vinylidene difluoride)(PVDF),polychlorotrifluoroethylene(PCTFE),fluo-rine rubber(F2311)and fluorine resin(F2314)individually,have been simulated by molecular dy-namics(MD)method.The results show that the mechanical properties of TATB can be effectively improved by blending with a small amount of fluorine-polymers.Different mechanical properties of PBXs are obtained by putting fluorine-polymer binders parallel to different crystalline surfaces.The whole effect of improving mechanical properties is found to be(010)?(100)>(001). 展开更多
关键词 TATB polymer bonded explosives mechanical properties molecular dynamics.
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Simulative Calculation of Mechanical Property, Binding Energy and Detonation Property of TATB/Fluorine-polymer PBX 被引量:8
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作者 马秀芳 肖继军 +3 位作者 黄辉 居学海 李金山 肖鹤鸣 《Chinese Journal of Chemistry》 SCIE CAS CSCD 2006年第4期473-477,共5页
Molecular dynamics (MD) method was used to simulate 1,3,5-triamino-2,4,6-trinitrobenzene (TATB) coated with fluorine containing polymers. The mechanical properties and binding energies of PBXs were obtained. It wa... Molecular dynamics (MD) method was used to simulate 1,3,5-triamino-2,4,6-trinitrobenzene (TATB) coated with fluorine containing polymers. The mechanical properties and binding energies of PBXs were obtained. It was found that when the number of chain monomers of fluorine containing polymers was the same, the elasticity of TATB/F2314 was increased more greatly than others and the binding energy of TATB/F2311 was the largest among four PBXs. Detonation heat and velocity of such four PBXs were calculated according to theoretical and empirical formulas. The results show that the order of detonation heat is TATB〉TATB/PVDF〉TATB/F2311〉TATB/ F2314 〉 TATB/PCTFE while the order of detonation velocity is TATB/PVDF 〈 TATB/F2311 〈 TATB/F2314 〈 TATB/PCTFE 〈TATB. 展开更多
关键词 polymer bonded explosive molecular dynamics mechanical property binding energy detonation property
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Molecular dynamics simulations on the structures and properties ofε-CL-20-based PBXs——Primary theoretical studies on HEDM formulation design 被引量:18
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作者 XU XiaoJuan XIAO JiJun +2 位作者 HUANG Hui LI JinShan XIAO HeMing 《Science China Chemistry》 SCIE EI CAS 2007年第6期737-745,共9页
Five polymer bonded explosives(PBXs)with the base explosive epsilon-CL-20(hexanitrohexaazaisowurtzi-tane),the most important high energy density compound(HEDC),and five polymer binders(Estane 5703,GAP,HTPB,PEG,and F_(... Five polymer bonded explosives(PBXs)with the base explosive epsilon-CL-20(hexanitrohexaazaisowurtzi-tane),the most important high energy density compound(HEDC),and five polymer binders(Estane 5703,GAP,HTPB,PEG,and F_(2314))were constructed.Molecular dynamics(MD)method was employed to investigate their binding energies(E_(bind))<compatibility,safety,mechanical properties,and energetic properties.The information and rules were reported for choosing better binders and guiding formulation design of high energy density material(HEDM).According to the calculated binding energies,the ordering of compatibility and stability of the five PBXs was predicted as epsilon-CL-20/PEG<epsilon-CL-20/Estane5703≈epsilon-CL-20/GAP<epsilon-CL-20/HTPB<epsilon-CL-20/F_(2314).By pair correlation function g(r)analyses,hydrogen bonds and vdw are found to be the main interactions between the two components.The elasticity and isotropy of PBXs based epsilon-CL-20 can be obviously improved more than pure epsilon-CL-20 crystal.It is not by changing the molecular structures of epsilon-CL-20 for each binder to affect the sensitivity.The safety and energetic properties of these PBXs are mainly influenced by the thermal capability(C_p^(deg))and density(p)of binders,respectively. 展开更多
关键词 high energy density material(HEDM) hexanitrohexaazaisowurtzitane(CL-20) polymer bonded explosives(PBXs) molecular dynamics(MD) compatibility safety properties mechanical properties energetic properties
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