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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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Study on theoretical model for electrical explosion resistivity of Al/Ni reactive multilayer foil
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作者 Zehao Wang Tao Wang +2 位作者 Pengfei Xue Mingyu Li Qingxuan Zeng 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第2期348-356,共9页
Al/Ni reactive multilayer foil(RMF)possesses excellent comprehensive properties as a promising substitute for traditional Cu bridge.A theoretical resistivity model of Al/Ni RMF was developed to guide the optimization ... Al/Ni reactive multilayer foil(RMF)possesses excellent comprehensive properties as a promising substitute for traditional Cu bridge.A theoretical resistivity model of Al/Ni RMF was developed to guide the optimization of EFIs.Al/Ni RMF with different bilayer thicknesses and bridge dimensions were prepared by MEMS technology and electrical explosion tests were carried out.According to physical and chemical reactions in bridge,the electrical explosion process was divided into 5 stages:heating of condensed bridge,vaporization and diffusion of Al layers,intermetallic combination reaction,intrinsic explosion,ionization of metal gases,which are obviously shown in measured voltage curve.Effects of interface and grain boundary scattering on the resistivity of film metal were considered.Focusing on variations of substance and state,the resistivity was developed as a function of temperature at each stage.Electrical explosion curves were calculated by this model at different bilayer thicknesses,bridge dimensions and capacitor voltages,which showed an excellent agreement with experimental ones. 展开更多
关键词 al/Ni reactive multilayer foil Electrical explosion Resistivity model Phase transition CalCULATION
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Micro-aluminum powder with bi-or tri-component alloy coating as a promising catalyst:Boosting pyrolysis and combustion of ammonium perchlorate
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作者 Chao Wang Ying Liu +6 位作者 Mingze Wu Jia Li Ying Feng Xianjin Ning Hong Li Ningfei Wang Baolu Shi 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第3期100-113,共14页
A novel design of micro-aluminum(μAl)powder coated with bi-/tri-component alloy layer,such as:Ni-P and Ni-P-Cu(namely,Al@Ni-P,Al@Ni-P-Cu,respectively),as combustion catalysts,were introduced to release its huge energ... A novel design of micro-aluminum(μAl)powder coated with bi-/tri-component alloy layer,such as:Ni-P and Ni-P-Cu(namely,Al@Ni-P,Al@Ni-P-Cu,respectively),as combustion catalysts,were introduced to release its huge energy inside Al-core and promote rapid pyrolysis of ammonium perchlorate(AP)at a lower temperature in aluminized propellants.The microstructure of Al@Ni-P-Cu demonstrates that a three-layer Ni-P-Cu shell,with the thickness of~100 nm,is uniformly supported byμAl carrier(fuel unit),which has an amorphous surface with a thickness of~2.3 nm(catalytic unit).The peak temperature of AP with the addition of Al@Ni-P-Cu(3.5%)could significantly drop to 316.2℃ at high-temperature thermal decomposition,reduced by 124.3℃,in comparison to that of pure AP with 440.5℃.It illustrated that the introduction of Al@Ni-P-Cu could weaken or even eliminate the obstacle of AP pyrolysis due to its reduction of activation energy with 118.28 kJ/mol.The laser ignition results showed that the ignition delay time of Al@Ni-P-Cu/AP mixture with 78 ms in air is shorter than that of Al@Ni-P/AP(118 ms),decreased by 33.90%.Those astonishing breakthroughs were attributed to the synergistic effects of adequate active sites on amorphous surface and oxidation exothermic reactions(7597.7 J/g)of Al@Ni-P-Cu,resulting in accelerated mass and/or heat transfer rate to catalyze AP pyrolysis and combustion.Moreover,it is believed to provide an alternative Al-based combustion catalyst for propellant designer,to promote the development the propellants toward a higher energy. 展开更多
关键词 Micro-aluminum powder(μal) Nano-sized alloy coating Combustion catalyst Ammonium perchlorate Pyrolysis behavior Ignition and combustion
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An example of earthquake nucleation of the strong continental earthquakes 被引量:1
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作者 CHEN Xue-zhong 《Acta Seismologica Sinica(English Edition)》 CSCD 2001年第2期225-229,共5页
  Introduction   The study on earthquake nucleation is widely concerned by seismologists in the world. The experimental and theoretical studies indicate that earthquakes should be preceded by quasi-static slip wit...   Introduction   The study on earthquake nucleation is widely concerned by seismologists in the world. The experimental and theoretical studies indicate that earthquakes should be preceded by quasi-static slip within a nucleation zone (Oh-naka, 1992; Dodge, Beroza, 1995; Dodge, et al, 1996; Ohnaka, Kuwahara, 1990; Yamashita, Ohnaka, 1991). The earthquake nucleation process means a transition from quasi-static to quasi-dynamic rupture process, and it itself is a short-term precursor. Immediate foreshocks are local dynamic instabilities that occur during the transition from the quasi-static to the quasi-dynamic nucleation of the dynamic instability (Ohnaka, 1992). According to the recent theoretical study, immediate foreshocks can be regarded as the localized fractures accompanied by the quasi-static nucleation process of a large earthquake (Shibazaki, Matsu'ura, 1995). Therefore, foreshocks could occur during the nucleation process. The nucleation of earthquakes can be illuminated through analyzing foreshock activity in detail. Detection of the nucleation process by means of a foreshock study is a potential tool for earthquake predic-tion. The nucleation process of Izu peninsula earthquake with M=7.0 on January 14, 1978 is revealed by Ohnaka with foreshock activities. It was observed that the nucleation zone indicated by foreshocks grew at a rate of 1~40 cm/s before reaching a diameter of 10 km. The depths of foreshocks do not change much more, keep within 10 km. Recently, Hurukawa have studied the nucleation process of Off-Etorofu earthquake with MW=7.9 on December 3, 1995. The results show distinctly the nucleation process before the main shock. In the nucleation process, rupture started at the deepest point of the foreshock area, and then propagated to the shallow depth with the apparent ve-locity of 5~20 cm/s (Hurukawa, 1998). Rastogi and Mandal (1998) studied the rupture nucleation process of five Koyna medium-sized main shocks using the time-space patterns of foreshocks. They found that the nucleation zone grew at a rate of 0.5~10 cm/s until it finally attained a diameter of about 10 km before the occurrence of the main shock and the fracture nucleated at shallow depths and gradually deepened, the main shock occurred at the deepest point of the nucleation zone, that is, at the depth of about 8~11 km. Foreshock distribution showed a good agreement with the preslip model of earthquake nucleation (Rastogi, Mandal, 1998).…… 展开更多
关键词 strong continental EARTHQUAKE FORESHOCK EARTHQUAKE NUCLEATION 分类号:P315.75 文献标识码:A 文章编号:1000-9116(2001)01-0225-05 Introduction The study on EARTHQUAKE NUCLEATION is widely concerned by seismologists in the world. The experimental and theoretical studies indicate that earthquakes should be preceded by QUASI-STATIC slip within a NUCLEATION zone (Oh-naka 1992 Dodge Beroza 1995 Dodge et al 1996 Ohnaka Kuwahara 1990 Yamashita Ohnaka 1991). The EARTHQUAKE NUCLEATION PROCESS means a transition from QUASI-STATIC to quasi-dynamic rupture process and it itself is a short-term precursor. Immediate FORESHOCKS are local dynamic instabilities that occur during the transition from the QUASI-STATIC to the quasi-dynamic NUCLEATION of the dynamic instability (Ohnaka 1992). According to the recent theoretical study immediate FORESHOCKS can be regarded as the localized fractures accompanied by the QUASI-STATIC NUCLEATION PROCESS of a large EARTHQUAKE (Shibazaki Matsu'ura 1995). Therefore FORESHOCKS could occur during the NUCLEATION process. The NUCLEATION of earthquakes can be illuminated through analyzing FORESHOCK activity in detail. Detection of the NUCLEATION PROCESS by means of a FORESHOCK study is a potential tool for EARTHQUAKE predic-tion. The NUCLEATION PROCESS of Izu peninsula EARTHQUAKE with M=7.0 on January 14 1978 is revealed by Ohnaka with FORESHOCK activities. It was observed that the NUCLEATION zone indicated by FORESHOCKS grew at a rate of 1~40 cm/s before reaching a diameter of 10 km. The depths of FORESHOCKS do not change much more keep within 10 km. Recently Hurukawa have studied the NUCLEATION PROCESS of Off-Etorofu EARTHQUAKE with MW=7.9 on December 3 1995. The results show distinctly the NUCLEATION PROCESS before the main shock. In the NUCLEATION process rupture started at the deepest point of the FORESHOCK area and then propagated to the shallow depth with the apparent ve-locity of 5~20 cm/s (Hurukawa 1998). Rastogi and Mandal (1998) studied the rupture NUCLEATION PROCESS of five Koyna medium-sized main shocks using the time-space patterns of foreshocks. They found that the NUCLEATION zone grew at a rate of 0.5~10 cm/s until it finally attained a diameter of about 10 km before the occurrence of the main shock and the fracture nucleated at shallow depths and gradually deepened the main shock occurred at the deepest point of the NUCLEATION zone that is at the depth of about 8~11 km. FORESHOCK distribution showed a good agreement with the preslip model of EARTHQUAKE NUCLEATION (Rastogi Mandal 1998).……
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Al⁃W合金燃料的氧化过程及性能提升机理
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作者 胡敖博 刘津阁 +4 位作者 赵超越 陈鹏 李鹏 孙兴昀 蔡水洲 《含能材料》 EI CSCD 2024年第1期20-30,共11页
为阐明Al‐W合金燃料氧化性能的提升机理,结合铝热还原与超高温气雾化法制备Al‐20W与Al‐30W合金燃料,并通过热重/差热热分析、X射线衍射仪、扫描电子显微镜/能量色散谱仪对其氧化过程进行研究。结果表明,Al‐20W与Al‐30W合金燃料均... 为阐明Al‐W合金燃料氧化性能的提升机理,结合铝热还原与超高温气雾化法制备Al‐20W与Al‐30W合金燃料,并通过热重/差热热分析、X射线衍射仪、扫描电子显微镜/能量色散谱仪对其氧化过程进行研究。结果表明,Al‐20W与Al‐30W合金燃料均含有亚稳态Al/W合金相,随温度升高Al/W合金相的种类与形态发生转变。2种合金燃料具有优于单质Al燃料的氧化性能,分别在1300℃与1500℃完全氧化,氧化产物WO_(3)全部挥发。W的存在提升了Al‐W合金燃料的氧化性能,机理为WO_(3)的挥发提供O_(2)扩散进入颗粒内部的通道;WO_(3)作为“氧运输船”向单质Al传输O,促进单质Al的氧化;WO_(3)发生进一步的化学反应,最终以气态形式挥发,促进含W相的氧化。 展开更多
关键词 金属材料 al‐W合金燃料 al/W合金相 氧化过程 提升机理
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不同加热环境下钛表面Ni/Al涂层制备与高温氧化性
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作者 李光全 李德元 +1 位作者 张楠楠 范喜宁 《表面技术》 EI CAS CSCD 2024年第1期192-201,共10页
目的 研究大气与真空加热处理后Ni/Al涂层的金属间化合物析出规律,以及扩散层的生长速度,从而确定涂层的抗氧化性能。方法 分别采用电弧喷涂技术和等离子喷涂技术在纯钛基体表面制备Ni/Al涂层。将样品分别在大气条件和真空条件下进行加... 目的 研究大气与真空加热处理后Ni/Al涂层的金属间化合物析出规律,以及扩散层的生长速度,从而确定涂层的抗氧化性能。方法 分别采用电弧喷涂技术和等离子喷涂技术在纯钛基体表面制备Ni/Al涂层。将样品分别在大气条件和真空条件下进行加热处理,使Ni/Al涂层原位反应生成Ni-Al金属间化合物,并进行涂层抗氧化性试验。结果 Ni/Al涂层在大气环境700℃加热处理后,形成以Al_(2)O_(3)、Ni2Al3和富Al相NiAl3相为主的扩散层;在真空环境700℃加热处理后,形成以Ni2Al3、NiAl3相为主的扩散层。通过扩散反应动力学分析发现,真空热处理比大气热处理后Ni和Al之间的反应扩散系数更高,扩散系数为89.731μm2/h。氧化增重试验表明,真空处理后,Ni/Al涂层由于金属间化合物层较厚,且具有大量的高熔点的Ni2Al3相,并且经过800℃下氧化200h后,涂层未发生失效。结论 真空环境下加热处理原位反应后,Ni/Al复合涂层的扩散速率更高,更容易形成Ni-Al金属间化合物,获得更厚的金属间化合物层。与大气热处理相比,经过真空热处理后的涂层有更良好的抗高温氧化能力。 展开更多
关键词 Ni/al涂层 等离子喷涂 电弧喷涂 Ni-al金属间化合物 高温氧化 热处理
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孔隙和α-Al(Fe/Mn)Si相对高压压铸Al-7Si-0.2Mg合金塑性的影响
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作者 杨雨童 黄诗尧 +4 位作者 郑江 杨莉 程晓农 陈睿凯 韩维建 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2024年第2期378-391,共14页
采用高压压铸工艺制备两批次不同尺寸的Al-7Si-0.2Mg(质量分数,%)合金,获得显微组织和孔隙非均匀分布的薄壁铸件,并对比研究孔隙和显微组织对铸态合金塑性的影响。结果表明:不同铸件和不同位置样品的伸长率有较大波动(9.7%~17.9%)。当... 采用高压压铸工艺制备两批次不同尺寸的Al-7Si-0.2Mg(质量分数,%)合金,获得显微组织和孔隙非均匀分布的薄壁铸件,并对比研究孔隙和显微组织对铸态合金塑性的影响。结果表明:不同铸件和不同位置样品的伸长率有较大波动(9.7%~17.9%)。当合金存在大面积孔隙时,有效承载面积减小导致由孔隙产生的应力集中使合金伸长率显著降低。当合金只存在小面积孔隙时,塑性变形过程中合金中的α-Al(Fe/Mn)Si相先于共晶硅相发生脆性断裂,α-Al(Fe/Mn)Si相的数量密度对伸长率的波动起主导作用,具有高数量密度α-Al(Fe/Mn)Si相试样的伸长率显著降低。此外,局部较高的冷却速率导致铸件α-Al(Fe/Mn)Si相数量密度的增加。 展开更多
关键词 高压压铸 al-7Si-0.2Mg合金 孔隙 α-al(Fe/Mn)Si相 塑性
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Artificial Neural Network and Fuzzy Logic Based Techniques for Numerical Modeling and Prediction of Aluminum-5%Magnesium Alloy Doped with REM Neodymium
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作者 Anukwonke Maxwell Chukwuma Chibueze Ikechukwu Godwills +1 位作者 Cynthia C. Nwaeju Osakwe Francis Onyemachi 《International Journal of Nonferrous Metallurgy》 2024年第1期1-19,共19页
In this study, the mechanical properties of aluminum-5%magnesium doped with rare earth metal neodymium were evaluated. Fuzzy logic (FL) and artificial neural network (ANN) were used to model the mechanical properties ... In this study, the mechanical properties of aluminum-5%magnesium doped with rare earth metal neodymium were evaluated. Fuzzy logic (FL) and artificial neural network (ANN) were used to model the mechanical properties of aluminum-5%magnesium (0-0.9 wt%) neodymium. The single input (SI) to the fuzzy logic and artificial neural network models was the percentage weight of neodymium, while the multiple outputs (MO) were average grain size, ultimate tensile strength, yield strength elongation and hardness. The fuzzy logic-based model showed more accurate prediction than the artificial neutral network-based model in terms of the correlation coefficient values (R). 展开更多
关键词 al-5%Mg alloy NEODYMIUM Artificial Neural Network Fuzzy Logic Average Grain Size and Mechanical Properties
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Mg-Al-Gd铸造合金的相平衡及凝固行为
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作者 仇成亮 刘树红 +1 位作者 黄金辉 杜勇 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2024年第4期1091-1109,共19页
采用CALPHAD(CALculation of PHAse Diagrams)方法重新对Mg-Al-Gd三元系进行评估,获得一套自洽的热力学参数。用Mg_(x)(TM,Mg)_(6)(RE,Mg)_(8)热力学模型(TM=过渡金属,RE=稀土金属)描述长周期堆积有序相14H和18R。计算代表性的等温截面... 采用CALPHAD(CALculation of PHAse Diagrams)方法重新对Mg-Al-Gd三元系进行评估,获得一套自洽的热力学参数。用Mg_(x)(TM,Mg)_(6)(RE,Mg)_(8)热力学模型(TM=过渡金属,RE=稀土金属)描述长周期堆积有序相14H和18R。计算代表性的等温截面、垂直截面、液相线投影图和相关的零变量反应,与实验数据进行比较,表明所得热力学参数的可靠性。绘制了整个三元体系的反应图,并对几种Mg-Al-Gd合金的Scheil凝固路径和相分数进行计算和分析,清楚地描述了凝固过程中各相的形成以及γ和LPSO相的相分数随Gd成分的变化,这些是影响Mg-Al-Gd合金的显微硬度、极限抗拉强度和屈服强度的重要因素。 展开更多
关键词 热力学模型 CalPHAD Mg-al-Gd体系 LPSO 希尔凝固
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Fe-Al-V三元系富铁角热力学优化
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作者 吴通 刘璇 +1 位作者 郑伟森 何燕霖 《上海金属》 CAS 2024年第2期89-94,共6页
采用CALPHAD方法对Fe-Al-V三元系富铁角进行热力学优化,并首次提出采用三亚点阵模型描述三元金属间化合物L21相,即(Fe)2(Al,Fe)1(Fe,V)1。基于可靠的边界二元系热力学描述,结合Fe-Al-V三元系富铁角试验数据,通过优化获得了一套自洽准确... 采用CALPHAD方法对Fe-Al-V三元系富铁角进行热力学优化,并首次提出采用三亚点阵模型描述三元金属间化合物L21相,即(Fe)2(Al,Fe)1(Fe,V)1。基于可靠的边界二元系热力学描述,结合Fe-Al-V三元系富铁角试验数据,通过优化获得了一套自洽准确的热力学模型参数。优化的模型参数可较满意地重现Fe-Al-V三元系富铁角的相平衡关系,弥补了商业数据库无法对其进行描述的不足,为钒微合金化轻质钢的设计开发提供可靠的理论基础。 展开更多
关键词 Fe-al-V 计算热力学 等温截面 CalPHAD方法
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镀铝对CoCrNiAlY-YSZ-LaMgAl_(11)O_(19)双陶瓷热障涂层高温抗氧化行为的影响
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作者 解志文 陶浩天 +3 位作者 刘天新 陈永君 胡素影 马北一 《航空制造技术》 CSCD 2024年第4期58-63,共6页
采用电弧离子镀(AIP)技术在CoCrNiAlY-YSZ-LaMA双陶瓷涂层表面沉积一层Al镀层,利用XRD、SEM和EDS等微尺度分析表征方法,全面解析涂层在大气暴露过程中的高温氧化行为。研究结果表明,未镀铝LaMA层在氧化过程中发生严重体积收缩,导致纵向... 采用电弧离子镀(AIP)技术在CoCrNiAlY-YSZ-LaMA双陶瓷涂层表面沉积一层Al镀层,利用XRD、SEM和EDS等微尺度分析表征方法,全面解析涂层在大气暴露过程中的高温氧化行为。研究结果表明,未镀铝LaMA层在氧化过程中发生严重体积收缩,导致纵向微裂纹萌生和扩展。这些微裂纹成为氧气向内部扩散的通道,导致涂层呈现持续氧化增重趋势、TGO快速生长和严重的元素扩散,并最终加剧涂层断裂失效。但镀铝涂层样品表现出更好的高温抗氧化性能与结构稳定性,高温氧化过程中,表面Al镀层与氧气发生原位反应生成致密Al2O3屏障层,有效阻止或延迟氧气内部渗透,使TGO缓慢生长,其氧化增重从20h时的8.59mg/cm^(2)略微上升到80h时的9.46mg/cm^(2)。本研究结果为双陶瓷热障涂层的延寿设计与界面热生长应力调控开辟出全新技术途径和理论视野。 展开更多
关键词 双陶瓷热障涂层 al镀层 高温抗氧化性能 热生长氧化物(TGO) 结构稳定性
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超声振动辅助车削SiCp/Al切屑形成机理及表面粗糙度研究
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作者 林洁琼 于行 +2 位作者 周岩 谷岩 周晓勤 《表面技术》 EI CAS CSCD 2024年第6期144-156,共13页
目的研究切屑形成机理对加工过程的影响。方法超声振动辅助车削技术通过刀具振动的拟间歇切削特征控制切屑尺寸和切屑形态,从而提高了加工表面质量。针对SiCp/Al复合材料的切屑形成机理,探究常规车削和超声振动辅助车削的切屑形成过程... 目的研究切屑形成机理对加工过程的影响。方法超声振动辅助车削技术通过刀具振动的拟间歇切削特征控制切屑尺寸和切屑形态,从而提高了加工表面质量。针对SiCp/Al复合材料的切屑形成机理,探究常规车削和超声振动辅助车削的切屑形成过程。研究了颗粒分布对第一变形区变形阶段的影响,以及不同加工方式下切削参数对切屑形态的影响。最后,描述了切屑自由表面和刀-屑接触界面的颗粒损伤形式,以直观地描述常规车削与超声振动辅助车削SiCp/Al复合材料加工中切屑的形成过程。结果通过测试加工后工件表面形貌发现超声振动辅助车削的切屑更加连续、切屑尺寸较小的加工表面粗糙度更小,常规车削的表面粗糙度为0.805μm,超声振动辅助车削的表面粗糙度为0.404μm,超声振动辅助车削比常规车削的表面粗糙度降低了49.8%。结论与常规车削相比,超声振动辅助车削有利于减小切屑厚度。超声振动辅助车削得到的切屑更加连续,避免了切屑碎裂,促进了切屑的顺利排出。通过对切屑形态进行研究,选择最优切削参数可以有效提高工件表面质量。 展开更多
关键词 超声振动辅助车削 SICP/al 切屑形成机理 颗粒损伤 表面完整性 粗糙度
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碳纳米管增韧Al-Mg合金复合材料的制备与性能研究
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作者 晏丽琴 黄勇 《功能材料》 CAS CSCD 2024年第1期1212-1216,共5页
选择碳纳米管为增强相,通过搅拌铸造法制备了碳纳米管增韧Al-Mg合金复合材料,研究了碳纳米管的添加量对复合材料力学性能、微观组织以及韧性的影响,并探究了碳纳米管对Al-Mg合金的增韧机理。结果表明,掺入适量的碳纳米管后细化了Al-Mg... 选择碳纳米管为增强相,通过搅拌铸造法制备了碳纳米管增韧Al-Mg合金复合材料,研究了碳纳米管的添加量对复合材料力学性能、微观组织以及韧性的影响,并探究了碳纳米管对Al-Mg合金的增韧机理。结果表明,掺入适量的碳纳米管后细化了Al-Mg合金复合材料的晶粒,晶粒尺寸约为80μm,当碳纳米管的添加量为0.8%(质量分数)时,复合材料的断口形貌最均匀。随着碳纳米管添加量的增大,复合材料的抗拉强度、断裂伸长率、硬度均表现出先增大后降低的趋势,当碳纳米管的添加量为0.8%(质量分数)时,抗拉强度、断裂伸长率和硬度均达到了最大值,分别为208.6 MPa、15.8%和53.1 HB。适量碳纳米管的添加显著改善了Al-Mg合金的韧性,使断裂延伸率逐渐增大,屈服阶段延长,韧性得到提高,这是因为适量的碳纳米管添加后能够与合金发生较好的结合,并贯穿于合金的裂纹中,发挥出了桥联作用,阻碍了裂纹的萌生和扩展,从而改善了Al-Mg合金复合材料的韧性,延缓了合金的失效过程,延长了合金的屈服阶段。综上分析可知,碳纳米管的最佳添加量为0.8%(质量分数)。 展开更多
关键词 碳纳米管 al-MG合金 力学性能 硬度 韧性
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Al-Mg系合金中合金化元素作用及其对力学性能的影响
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作者 赵飞 黄文森 《贵州师范大学学报(自然科学版)》 CAS 2024年第1期1-11,18,F0002,共13页
铝镁合金是轻量化材料应用领域中一种重要的金属材料,属于中高强度铝合金,具有较高的塑性、良好的耐蚀性以及优良的焊接性等优势,目前在航空航天、交通运输和军工制造等领域具有广阔的应用前景。笔者综述了铝镁合金力学性能特点以及用途... 铝镁合金是轻量化材料应用领域中一种重要的金属材料,属于中高强度铝合金,具有较高的塑性、良好的耐蚀性以及优良的焊接性等优势,目前在航空航天、交通运输和军工制造等领域具有广阔的应用前景。笔者综述了铝镁合金力学性能特点以及用途,介绍了Al-Mg系合金中的强化机制,重点阐述了Al-Mg系合金中主合金化元素Mg及其含量对合金微观组织和力学性能的影响规律及机理,详细论述了Mn、Zr、Ti、Sc、Er、Y等微合金化元素的作用以及对Al-Mg系合金微观组织和力学性能的影响规律。最后,结合Al-Mg系合金当前研究现状,提出了今后值得研究的方向。 展开更多
关键词 al-Mg系合金 合金化 强化机制 力学性能
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Cu含量以及Cu/Mg比对Al-Si-Cu-Mg合金组织和力学性能的影响
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作者 顾琪 周鹏飞 《铸造》 CAS 2024年第2期180-186,共7页
研究了Cu含量和Cu/Mg比对Al-Si-Cu-Mg合金组织和力学性能的影响。结果表明Al-Si-Cu-Mg合金凝固组织是否形成Mg_(2)Si、Q-Al_(5)Cu_(2)Mg_(8)Si_(6)以及θ-Al_(2)Cu取决于Cu含量以及Cu/Mg比。当Cu/Mg比相对低时形成Mg_(2)Si中间相,而Cu/M... 研究了Cu含量和Cu/Mg比对Al-Si-Cu-Mg合金组织和力学性能的影响。结果表明Al-Si-Cu-Mg合金凝固组织是否形成Mg_(2)Si、Q-Al_(5)Cu_(2)Mg_(8)Si_(6)以及θ-Al_(2)Cu取决于Cu含量以及Cu/Mg比。当Cu/Mg比相对低时形成Mg_(2)Si中间相,而Cu/Mg比高时则倾向于生成Q-Al_(5)Cu_(2)Mg_(8)Si_(6)和θ-Al_(2)Cu相。当Cu/Mg比相同时,高Cu含量和高Mg含量都会促进Q相θ相的形成。通过观察T6热处理后的组织发现Cu含量以及Cu/Mg比控制了初生相的溶解以及析出相的形成,从而影响合金的强度与韧性。通过控制Cu含量及Cu/Mg比使Al-9Si-2Cu-0.5Mg合金中析出较少数量的初生相,再通过热处理析出大量的Q′强化相,使合金具有较高的强度和相对适中的伸长率。 展开更多
关键词 al-Si-Cu-Mg CU含量 Cu/Mg比 组织 力学性能
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T6态热挤压Al-5Cu-0.8Mg-0.15Zr-0.2Sc-0.5Ag合金的低周疲劳行为
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作者 王莹 陈立佳 +2 位作者 周舸 张浩宇 张思倩 《沈阳工业大学学报》 CAS 2024年第1期77-81,共5页
为了揭示经过T6处理的热挤压Al-5Cu-0.8Mg-0.15Zr-0.2Sc-0.5Ag合金在不同温度下的低周疲劳变形与断裂行为,对T6态热挤压合金进行了室温和200℃条件下的低周疲劳实验。结果表明:在室温和200℃下合金塑性应变幅与载荷反向周次之间服从Coff... 为了揭示经过T6处理的热挤压Al-5Cu-0.8Mg-0.15Zr-0.2Sc-0.5Ag合金在不同温度下的低周疲劳变形与断裂行为,对T6态热挤压合金进行了室温和200℃条件下的低周疲劳实验。结果表明:在室温和200℃下合金塑性应变幅与载荷反向周次之间服从Coffin-Manson公式,而弹性应变幅与载荷反向周次之间服从Basquin公式;合金在室温和200℃下低周疲劳变形时,在较低外加总应变幅下疲劳变形机制主要为平面滑移,而在较高外加总应变幅下疲劳变形机制主要为波状滑移;室温和200℃下合金的疲劳裂纹均萌生于疲劳试样表面并以穿晶方式扩展。 展开更多
关键词 al-CU-MG-AG合金 T6处理 低周疲劳 循环硬化 循环稳定 疲劳寿命 变形机制 疲劳断裂
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不同形貌Al-Fe金属的块体压制成形模拟研究
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作者 李振亮 王鑫 《制造技术与机床》 2024年第4期71-77,共7页
文章以含40%Al的Al-Fe复合金属为研究对象,对颗粒状和屑状40Al-Fe复合金属分别进行压制预变形,并对屑状40Al-Fe复合金属预制坯进行了二次热压缩变形,重点研究压制预变形及二次热压缩对Al-Fe复合金属成形性和界面影响。结果表明:压力为16... 文章以含40%Al的Al-Fe复合金属为研究对象,对颗粒状和屑状40Al-Fe复合金属分别进行压制预变形,并对屑状40Al-Fe复合金属预制坯进行了二次热压缩变形,重点研究压制预变形及二次热压缩对Al-Fe复合金属成形性和界面影响。结果表明:压力为16 MPa时,颗粒状40Al-Fe复合金属预制坯(密度为4.54 g/cm^(3))成形性良好且形成致密界面;压力为16 MPa时,屑状40Al-Fe复合金属预制坯(密度为3.50 g/cm3)可以成形但界面存在孔洞,Al屑主要为“片层状”“狗牙状”“圆圈状”“波浪状”,其经二次热压缩变形,“圆圈状”Al屑连成一个整体,“狗牙状”与“波浪状”Al屑均演变为“片层状”,而Fe屑仍为“片层状”“块状”,未发生明显变形。变形温度300℃、变形速率0.5 s^(-1)、变形程度0.1是目前生产工艺最佳参数,此时屑状40Al-Fe复合金属成形性最佳且界面结合良好(密度为4.66 g/cm^(3))。 展开更多
关键词 压制成形 al-Fe复合金属 界面
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激光选区熔化Al-Mg-Sc-Zr合金各向组织与损伤容限性能
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作者 冯振宇 陈翥仪 +2 位作者 张雪峰 夏晓宇 邹君 《航空材料学报》 CAS CSCD 2024年第1期143-151,共9页
研究激光选区熔化(selective laser melting,SLM)技术成形Al-Mg-Sc-Zr合金材料不同取向的显微组织特征、拉伸和损伤容限性能。结果表明:YZ截面为细小的等轴晶和粗大的柱状晶组成的双峰组织,XY截面由细小的等轴晶组成;0°和90°... 研究激光选区熔化(selective laser melting,SLM)技术成形Al-Mg-Sc-Zr合金材料不同取向的显微组织特征、拉伸和损伤容限性能。结果表明:YZ截面为细小的等轴晶和粗大的柱状晶组成的双峰组织,XY截面由细小的等轴晶组成;0°和90°方向屈服强度、抗拉强度均超过500 MPa,各向异性较小,但堆积层间存在的未熔合缺陷使得90°方向断裂伸长率明显低于0°方向;0°和90°CT试样K_(IC)分别为21.41 MPa·m^(1/2)和20.89 MPa·m^(1/2),在柱状晶区域裂纹扩展阻抗低,导致90°CT试样K_(IC)稍小;显微组织和缺陷是影响裂纹扩展性能各向异性的主要因素,在近门槛区未熔合缺陷起主导作用,当裂纹面平行于水平方向时裂纹扩展速率更快;在稳态扩展区显微组织的影响起主导作用,当裂纹面平行于水平方向时为穿晶断裂,裂纹扩展阻抗较高,裂纹扩展速率较低。 展开更多
关键词 激光选区熔化 al-MG-SC-ZR合金 显微组织 损伤容限性能 各向异性
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PF-LBM耦合模型下Al-Cu合金的枝晶生长和气泡形成
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作者 朱昶胜 雷瑶 +2 位作者 雷鹏 高梓豪 赵博睿 《兰州理工大学学报》 CAS 2024年第1期19-26,共8页
基于Shan-Chen多相流的格子玻尔兹曼方法模拟复杂多相流系统,探索气泡在液相中的生长和运动.研究了Al-4.0wt.%Cu合金在凝固过程中枝晶与气泡的相互作用,各向异性对凝固组织的影响以及枝晶与气泡共存时溶液密度的变化情况.结果表明:在定... 基于Shan-Chen多相流的格子玻尔兹曼方法模拟复杂多相流系统,探索气泡在液相中的生长和运动.研究了Al-4.0wt.%Cu合金在凝固过程中枝晶与气泡的相互作用,各向异性对凝固组织的影响以及枝晶与气泡共存时溶液密度的变化情况.结果表明:在定向凝固枝晶生长模型中,气泡先在枝晶底部析出,压差导致气泡上升,流动的过程中会与枝晶产生相互作用且会出现气泡合并与消失的情况,在枝晶间密集通道处大气泡会变成蠕虫形状.模拟区域的高长比会影响枝晶和气泡的生长情况,当高长比较小时更容易产生短而小的气泡,高长比较大时更容易产生蠕虫状气泡.在等轴枝晶生长模型中,气泡在枝晶间析出,随着枝晶的生长,气泡同样会发生合并与消失的情况,并且在受到挤压时发生形变. 展开更多
关键词 相场模拟 格子玻尔兹曼方法 气泡 al-4.0wt.%Cu合金
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HZSM-5 zeolites undergoing the high-temperature process for boosting the bimolecular reaction in n-heptane catalytic cracking
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作者 Chenggong Song Zhenzhou Ma +6 位作者 Xu Hou Hao Zhou Huimin Qiao Changchang Tian Li Yin Baitang Jin Enxian Yuan 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2024年第2期136-144,共9页
High-temperature treatment is key to the preparation of zeolite catalysts.Herein,the effects of hightemperature treatment on the property and performance of HZSM-5 zeolites were studied in this work.X-Ray diffraction,... High-temperature treatment is key to the preparation of zeolite catalysts.Herein,the effects of hightemperature treatment on the property and performance of HZSM-5 zeolites were studied in this work.X-Ray diffraction,N2physisorption,27Al magic angle spinning nuclear magnetic resonance(MAS NMR),and temperature-programmed desorption of ammonia results indicated that the hightemperature treatment at 650℃ hardly affected the inherent crystal and texture of HZSM-5zeolites but facilitated the conversion of framework Al to extra-framework Al,reducing the acid site and enhancing the acid strength.Moreover,the high-temperature treatment improved the performance of HZSM-5 zeolites in n-heptane catalytic cracking,promoting the conversion and light olefins yield while inhibiting coke formation.Based on the kinetic and mechanism analysis,the improvement of HZSM-5 performance caused by high-temperature treatment has been attributed to the formation of extra-framework Al,which enhanced the acid strength,facilitated the bimolecular reaction,and promoted the entropy change to overcome a higher energy barrier in n-heptane catalytic cracking. 展开更多
关键词 HZSM-5 N-HEPTANE Catalytic cracking High-temperature treatment Extra-framework al
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