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Effect of pulse current and its application direction on the size effect of nanocrystalline nickel foil
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作者 WANG Yi-yan LI Chao +2 位作者 CHEN Zi-shuai DU Jin-yang LI Feng 《Journal of Central South University》 2025年第7期2416-2431,共16页
In order to gain a deeper understanding of the effect of pulsed current on the mechanical properties and size effect of nanocrystalline Ni foils,nanocrystalline Ni foils with different grain thickness-to-grain size ra... In order to gain a deeper understanding of the effect of pulsed current on the mechanical properties and size effect of nanocrystalline Ni foils,nanocrystalline Ni foils with different grain thickness-to-grain size ratios(λ)were prepared using pulsed electrodeposition in this paper and unidirectional tensile experiments were carried out at room temperature with different currents and their applied directions.The experimental results show that the nanocrystalline Ni foil produces an obvious electroplasticity effect after applying the current field,and when 300<λ<1100,the current weakens the size effect of nanocrystalline Ni foils to a certain extent,and the angle between the current direction and the deformation direction also affects the mechanical response of nanocrystalline Ni foils,and when the angle between the current direction and the deformation direction is 0°,electroplasticity effect is the best,and the current has the most significant effect of abating the size effect of the material.The mechanism of unidirectional tensile deformation of nanocrystalline Ni foils under the effect of pulsed current was analyzed using TEM and TKD.It was found that the applied pulse current increased the activity of the nanocrystalline boundaries,promoted the movement of dislocations,and reduced the tendency of dislocation entanglement.The higher the peak current density and the smaller the angle between the direction of the current and the direction of deformation,the smaller the grain boundary orientation difference,the more dispersed the grain orientation,and the lower the density of geometrically necessary dislocations(GND)in the deformed nanocrystalline foil,the more significant the effect on material plasticity improvement. 展开更多
关键词 nanocrystalline Ni foil size effect electroplasticity effect current direction
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Web知识规则提取的FOIL算法改进 被引量:3
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作者 金莉 卢正鼎 +1 位作者 叶卫国 文坤梅 《小型微型计算机系统》 CSCD 北大核心 2004年第3期419-421,共3页
将一阶学习的 FOIL 算法应用到 Web知识规则的提取是当前学习 Web知识所普遍采用的方法 .本文在 FOIL算法的基础上进行了改进 ,提出了基于网页间联系的新的路径学习算法 。
关键词 一阶学习 foil算法 爬山搜索 WEB 知识规则提取 路径学习算法
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基于FOIL算法的一阶规则集学习器设计方法 被引量:1
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作者 徐彤 张莉 谢波 《空军工程大学学报(自然科学版)》 CSCD 北大核心 2005年第6期80-83,共4页
对FOIL算法进行了深入剖析,提出了一种基于该算法利用V isual Prolog实现一阶规则集学习器的设计方法,给出了实现学习器的关键代码和试验结果,验证了该方法在一阶规则集提取中的有效性。
关键词 foil 一阶规则 序列覆盖 HORN子句 VISUAL PROLOG
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Optimization Design of Exploding Foil Bridge Shape
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作者 钱勇 褚恩义 +3 位作者 谢高第 任西 宋琛 窦春亚 《Defence Technology(防务技术)》 SCIE EI CAS 2010年第2期140-143,共4页
The exploding foil,which is a main influence factor of exploding foil initiator(EFI),was studied to improve the utilization rate of energy in EFI.The burst currents of three bridge foils with different shapes were mea... The exploding foil,which is a main influence factor of exploding foil initiator(EFI),was studied to improve the utilization rate of energy in EFI.The burst currents of three bridge foils with different shapes were measured,and the sensitivity of initiation charge made of HNS-IV was tested by slappers.The test results show that,for O-shaped bridge foil,the burst current density is maximal,and the initiating voltage at 50% of firing probability of HNS-IV is minimal.The O-shaped bridge foil can be used to improve the utilization rate of energy in EFI and reduce the firing energy. 展开更多
关键词 electrical engineering exploding foil bridge foil burst current density slapper velocity
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基于GDT的对FOIL系统的改进
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作者 沈奕 滑峰 刘椿年 《北京工业大学学报》 CAS CSCD 北大核心 2005年第2期204-209,共6页
为了能更有效地处理含有噪音数据的数据集,提出了一个基于GDT(general distribution table)的对FOIL系统的改进方法,该方法利用GDT的思想、规则强度等概念,考虑到数据由噪音引起的不确定性.通过对FOIL系统算法的改进,能够很好地解决FOI... 为了能更有效地处理含有噪音数据的数据集,提出了一个基于GDT(general distribution table)的对FOIL系统的改进方法,该方法利用GDT的思想、规则强度等概念,考虑到数据由噪音引起的不确定性.通过对FOIL系统算法的改进,能够很好地解决FOIL系统对含有噪音训练例集的学习能力,提高FOIL的学习精度.同时,通过例子阐述了该方法的实施过程,分析表明:该算法是一种新的有效地处理含有噪音数据的一阶谓词学习系统. 展开更多
关键词 foil系统 GDT(general DISTRIBUTION table)方法 规则强度
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A micro-chip exploding foil initiator based on printed circuit board technology 被引量:9
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作者 Zhi Yang Peng Zhu +4 位作者 Qing-yun Chu Qiu Zhang Ke Wang Hao-tian Jian Rui-qi Shen 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2022年第8期1435-1444,共10页
Conventional exploding foil initiator (EFI) in ignition or detonation applications hosts many performance advantages, but was hindered by the bulky, inaccurate, inefficient and expensive shortcomings. We highlight a n... Conventional exploding foil initiator (EFI) in ignition or detonation applications hosts many performance advantages, but was hindered by the bulky, inaccurate, inefficient and expensive shortcomings. We highlight a novel micro-chip exploding foil initiator (McEFI) using printed circuit board (PCB) technology. The structural parameters were determined based on energy coupling relationship at the component interfaces. Next, the prototype McEFI has been batch-fabricated using PCB technology, with a monolithic structure of 7.0 mm (l) × 4.5 mm (w) × 4.0 mm (δ). As expected, this PCB-McEFI illustrated the successful firing validations for explosives pellets. This paper has addressed the cost problem in both military munitions and civil markets wherever reliable, insensitive and timing-dependent ignition or detonation are involved. 展开更多
关键词 Exploding foil initiator Printed circuit board Monolithic structure Firing validations
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Fabrication and Testing of Metal Foil Planar Switch 被引量:5
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作者 ZENG Qingxuan LV Junjun LI Mingyu 《Defence Technology(防务技术)》 SCIE EI CAS 2013年第2期104-109,共6页
A metal foil spark gap switch is fabricated by using magnetron sputtering deposition technology and standard microelectronic technology. The switch has two main electrodes and a trigger electrode. Stylus profiler is e... A metal foil spark gap switch is fabricated by using magnetron sputtering deposition technology and standard microelectronic technology. The switch has two main electrodes and a trigger electrode. Stylus profiler is employed to measure the distance between the main electrodes and the dimensions of the trigger electrode. The discharge characteristics of the metal foil spark gap switch are discussed. The switch has short delay time and low time jitter. When it is fired by a conventional capacitive discharge unit (CDU), the firing circuit has low inductance and resistance. Because of its low profile structure, it can be easily integrated with the bridge foil used in a conventional exploding foil initiator system (EFIS). 展开更多
关键词 applied physics metal foil spark gap switch firing circuit
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Design, fabrication and performance test of an integrated exploding foil initiator system 被引量:5
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作者 Zehao Wang Pengfei Xue +1 位作者 Qingxuan Zeng Mingyu Li 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第12期125-135,共11页
The integration method of exploding foil initiator system(EFIs) used to be researched to broaden its application range in military and aerospace in the last few decades.In order to lower the firing voltage below 1 kV,... The integration method of exploding foil initiator system(EFIs) used to be researched to broaden its application range in military and aerospace in the last few decades.In order to lower the firing voltage below 1 kV,an integrated EFIs with enhanced energy efficiency was designed.Corresponding exploding foil initiator chips were fabricated in batch via micro electromechanical systems technology by integrating a unified foil,a flyer layer and a barrel on a glass substrate successively,meanwhile its package of the whole system was proposed at a volume of 2.194 cm^(3).The structural parameters were determined by predicted performance including flyer velocity,impact behavior and conduction property via the proposed theoretical models and the static electric field simulation.As expect,this integrated EFIs exhibited excellent functions,which could accelerate the flyer to a terminal velocity over 4 km/s and preeminently initiate HNS-IV pellet at a circuit of 0.24 μF/0.9 kV.Furthermore,the theoretical design,fabrication and performance test have been all included to validate the feasibility of this integrated EFIs that was beneficial for its commercial development in the future. 展开更多
关键词 Exploding foil initiator system INTEGRATION Planar trigger switch Micro electromechanical systems Flyer velocity Shock initiation
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Preliminary discussion on the ignition mechanism of exploding foil initiators igniting boron potassium nitrate 被引量:3
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作者 Haotian Jian Guoqiang Zheng +4 位作者 Lejian Chen Zheng Ning Guofu Yin Peng Zhu Ruiqi Shen 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第2期222-231,共10页
Exploding foil initiator(EFI)is a kind of advanced device for initiating explosives,but its function is unstable when it comes to directly igniting pyrotechnics.To solve the problem,this research aims to reveal the ig... Exploding foil initiator(EFI)is a kind of advanced device for initiating explosives,but its function is unstable when it comes to directly igniting pyrotechnics.To solve the problem,this research aims to reveal the ignition mechanism of EFIs directly igniting pyrotechnics.An oscilloscope,a photon Doppler velocimetry,and a plasma spectrum measurement system were employed to obtain information of electric characteristics,impact pressure,and plasma temperature.The results of the electric characteristics and the impact pressure were inconsistent with ignition results.The only thing that the ignition success tests had in common was that their plasma all had a relatively long period of high-temperature duration(HTD).It eventually concludes that the ignition mechanism in this research is the microconvection heat transfer rather than the shock initiation,which differs from that of exploding foil initiators detonating explosives.Furthermore,the methods for evaluating the ignition success of semiconductor bridge initiators are not entirely applicable to the tests mentioned in this paper.The HTD is the critical parameter for judging the ignition success,and it is influenced by two factors:the late time discharge and the energy of the electric explosion.The longer time of the late time discharge and the more energy of the electric explosion,the easier it is to expand the HTD,which improves the probability of the ignition success. 展开更多
关键词 Exploding foil initiator PDV Plasma spectrum Ignition mechanism Boron potassium nitrate
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Silane coupling agent treated copper foil as a current collector for silicon anode 被引量:3
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作者 MENG Xiang-juan ZENG Xiao-min +8 位作者 JIANG Wei LI Si-yuan DU Qiao-kun JI Ze-kai ZHU Wei-wei LIU Chuang LIANG Cheng-du LING Min YAN Li-jing 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第11期3620-3629,共10页
Since the volume variation of silicon particles during cycling,the binding spots between Cu current collector and silicon anode raised to be one of the critical binding problems.In this work,an amino-modified Cu curre... Since the volume variation of silicon particles during cycling,the binding spots between Cu current collector and silicon anode raised to be one of the critical binding problems.In this work,an amino-modified Cu current collector(Cu^(*))is fabricated to tackle this issue.The amino groups on Cu^(*)surface increase its hydrophilicity,which is conducive to the curing process of aqueous slurry on its surface.Meanwhile,these amino groups can form abundant amide bonds with carboxyl groups from the adopted polyacrylic acid(PAA)binder.The combined action composed of the covalent bond and mechanical interlocking could reduce the contact loss inside the electrode.However,high concentration silane coupling agent treatment will weaken the surface roughness of Cu^(*)and weaken mechanical interlocking.What is more,the insulation of silane coupling agent reduces the conductivity of Cu and increases the impedance of battery.Considering the effect of silane coupling agent comprehensively,electrochemical performance of Cu^(*)-0.05%is best. 展开更多
关键词 lithium ion batteries silicon anodes Cu foils surface modification
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Ultrafine microstructure and texture evolution of aluminum foil by asymmetric rolling 被引量:1
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作者 SONG Meng LIU Xiang-hua +1 位作者 LIU Xin LIU Li-zhong 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第12期2783-2792,共10页
AA1060 aluminum foil was rolled from 4 mm to 20 μm by asymmetric rolling without intermediate annealing. The microstructures and textures were investigated. The original coarse grains with an average grain size of 60... AA1060 aluminum foil was rolled from 4 mm to 20 μm by asymmetric rolling without intermediate annealing. The microstructures and textures were investigated. The original coarse grains with an average grain size of 60 μm were refined to fine equiaxed grains with an average grain size of about 500 nm with mainly large grain boundaries. During the rolling, the intensities of copper texture C-{112}<111> and brass texture B-{011}<211> gradually increased, and most crystallites aggregated along the β and τ orientation lines. The orientation intensity reached the maximum value 26 when the foil was rolled to 500 μm, but significantly decreased to 16 when the thickness became 20 μm, and the texture mainly consisted of a rotation cubic texture RC-{100}<011>. With the combined forces including drawing, compressing and shearing, severe plastic deformation was obtained during the asymmetric rolling, promoting dynamic recrystallization at room temperature. Because of a combined force in the deformation zone and shear force along the normal direction, dynamic recrystallization occurs during the asymmetric rolling; therefore, the average grain size is significantly refined. The texture intensity of ultrathin strip first increases, i.e., work hardening, and then decreases mainly because of dynamic recrystallization. 展开更多
关键词 asymmetric ROLLING AA1060 aluminum foil TEXTURE EVOLUTION dynamic RECRYSTALLIZATION
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Experimental and numerical studies of titanium foil/steel explosively welded clad plate 被引量:1
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作者 Zhi-xiong Bi Xue-jiao Li +7 位作者 Ke Yang Rong Kai Quan Wang Meng-ben Xu Ting-zhao Zhang Xian-de Dai Jing-ye Qian Yong Wu 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2023年第7期192-202,共11页
Ti/Fe clad plate had attracted extensive attention because of its important application. In order to reduce the titanium layer thickness, the explosive welding of TA1 titanium foil to Q235 steel plate was carried out.... Ti/Fe clad plate had attracted extensive attention because of its important application. In order to reduce the titanium layer thickness, the explosive welding of TA1 titanium foil to Q235 steel plate was carried out. The interfacial bonding performance was analyzed by micromorphology analysis and mechanical property test, and the formation process of interfacial wave and molten block in the vortex was simulated by smoothed particle hydrodynamics(SPH) method. The results showed that salt as pressure transfer layer used in explosive welding could play a good buffer effect on the collision between flyer and base layers. Regular waveforms were formed on the bonding interface, and the titanium foil/steel clad plate exhibited good welding quality and bonding property. The crest of the observed interfacial wave moved 200 μm from the beginning to the final formation, and it was important of jet on the formation of interfacial waveform. The interface was mainly bonded in the form of molten layer, and the grains near the interface were streamlined. Molten block containing intermetallic compounds and metal oxides appeared in the vortex of wave crest. 展开更多
关键词 Explosive welding Pressure transfer layer Titanium foil Simulation Bonding property
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Investigation on the exploding foil initiators ignition enhanced by explosion-electricity coupling 被引量:1
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作者 Songmao Zhao Haotian Jian +3 位作者 Ke Wang Zheng Ning Peng Zhu Ruiqi Shen 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第12期1-11,共11页
Explosion-electricity coupling(EEC) is a technical method to induce electric energy into the plasma material produced by explosion to improve the output of explosion.Exploding foil initiator(EFI) which could produce p... Explosion-electricity coupling(EEC) is a technical method to induce electric energy into the plasma material produced by explosion to improve the output of explosion.Exploding foil initiator(EFI) which could produce plasma during electric explosion can serve as a good carrier for studying the EEC.To investigate the enhancement ability and mechanism of EEC in EFI ignition performance,a kind of EFI chips which could realize the EEC effect was designed and fabricated to observe the characteristics of current and voltage,flyer and plasma temperature during Boron Potassium Nitrate(BPN) ignition of the EFI.It was found that the EEC could enhance EFI ignition in terms of energy utilization,ignition contact surface,and high-temperature sustainability of plasma:firstly,the EEC prolonged the late time discharge(LTD) phase of the electric explosion,making the energy of capacitor effectively utilized;secondly,the EEC could create a larger area of ignition contact surface;last of all,the EEC effect enhanced its hightemperature sustainability by sustaining continuous energy input to plasma.It also was found that the ignition voltage of BPN could be reduced by nearly 600 V under the condition of 0.4 μF capacitance.The research has successfully combined EEC with EFI,revealing the behavioral characteristics of EEC and demonstrating its effective enhancement of EFI ignition.It introduces a new approach to improving EFI output,which is conducive to low-energy ignition of EFI,and expected to take the ignition technology of EFI to a new level. 展开更多
关键词 Exploding foil initiator Explosion-electricity coupling PLASMA Ignition mechanism Boron potassium nitrate
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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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单频/双频狭缝超声设备压电-声-结构仿真模拟计算与试验
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作者 程宇 石小龙 +2 位作者 伍娟 刘伟民 马海乐 《农业机械学报》 北大核心 2025年第4期493-500,共8页
超声是一种有工业应用前景的食品物理加工技术。为开发适合食品加工的超声设备,利用COMSOL多物理场仿真软件对狭缝式连续超声设备在单频(28、40 kHz)和双频(28/40 kHz)模式下的声场分布进行了数值模拟计算,并通过铝箔腐蚀试验对仿真模... 超声是一种有工业应用前景的食品物理加工技术。为开发适合食品加工的超声设备,利用COMSOL多物理场仿真软件对狭缝式连续超声设备在单频(28、40 kHz)和双频(28/40 kHz)模式下的声场分布进行了数值模拟计算,并通过铝箔腐蚀试验对仿真模型计算的准确性进行了验证。仿真结果表明,单频超声声场在换能器正下方产生负相位声压,在换能器周围辐射交汇区域形成振动稳定的正相位声压。铝箔腐蚀结果证实铝箔表面在负相位声压区呈现不规则波浪型形变,在正相位声压区呈现颗粒状点蚀。通过仿真数据计算超声声场在换能器正下方以及换能器周围辐射区域绝对总声压的相对标准差得出28 kHz最低相对标准差为0.764,40 kHz最低相对标准差为0.960,28/40 kHz最低相对标准差为0.658。28/40 kHz双频超声最低相对标准差是28 kHz单频超声声场的86.1%,是40 kHz单频超声声场的68.5%。研究表明双频超声声场分布更为均匀。本研究可以为研发高效的食品超声加工装备提供依据,为狭缝连续式超声用于食品加工提供指导。 展开更多
关键词 双频超声 铝箔腐蚀 相位声压 声场分布 数值仿真
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启停阶段多叶型波箔气体动压轴承顶箔结构研究
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作者 肖云峰 张樱瀚 +2 位作者 张志莲 邓瑞洋 孙鑫悦 《润滑与密封》 北大核心 2025年第7期1-7,共7页
为揭示启停阶段多叶型波箔气体动压轴承顶箔结构参数之间的变化关系,基于顶箔与转子接触且顶箔之间相互搭接的几何约束,建立轴承顶箔结构的数学模型,结合圆的参数方程求解顶箔的关键结构参数,分析轴承在启停阶段顶箔半径、厚度和数量对... 为揭示启停阶段多叶型波箔气体动压轴承顶箔结构参数之间的变化关系,基于顶箔与转子接触且顶箔之间相互搭接的几何约束,建立轴承顶箔结构的数学模型,结合圆的参数方程求解顶箔的关键结构参数,分析轴承在启停阶段顶箔半径、厚度和数量对展角和安装角的影响。结果表明:顶箔展角随着顶箔半径的增大呈现先递增后递减的变化规律,随着顶箔厚度的增加,顶箔展角的最大值逐渐减小且展角的变化范围缩小;顶箔展角随着顶箔厚度的增大而减小,且顶箔半径越小,顶箔展角对顶箔厚度的变化越敏感;安装角随着顶箔半径的增大呈抛物线式增加,随着顶箔厚度的增大呈线性减少;顶箔数量的增加会使得顶箔展角减小,但不会对安装角产生影响。 展开更多
关键词 多叶型波箔轴承 顶箔结构 启停阶段 顶箔展角 安装角
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圆箔压力热流计的研制与测试结果分析
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作者 朱新新 杨远剑 +2 位作者 王辉 李泽禹 罗跃 《实验流体力学》 北大核心 2025年第5期19-27,共9页
针对长时间变轨道试验中的热流测量需求,基于传统戈登计研制了一种可同时测量热流与压力的圆箔压力热流计。开展了辐射热流标定试验、电弧风洞平板比对试验与数值计算分析。新研制的圆箔压力热流计能够在电弧风洞多状态连续试验中同时... 针对长时间变轨道试验中的热流测量需求,基于传统戈登计研制了一种可同时测量热流与压力的圆箔压力热流计。开展了辐射热流标定试验、电弧风洞平板比对试验与数值计算分析。新研制的圆箔压力热流计能够在电弧风洞多状态连续试验中同时同点位测量平板模型的表面热流和压力,热流和压力测量重复性精度分别约为3.6%和1.9%。与塞块量热计相比,圆箔压力热流计测热流值平均偏低约14.7%。其原因有2点:一是在对流测量环境中,圆箔压力热流计的热流灵敏度系数降低;二是康铜片温度相对过高,形成局部热点,导致实际进入圆箔压力热流计的热流减小。最后,本文给出了圆箔压力热流计和传统戈登计在对流环境中进行热流测量的使用建议。 展开更多
关键词 圆箔压力热流计 热流测量 平板试验 灵敏度系数 局部热点 电弧风洞
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金属箔材高深宽比沟槽辊压-冲压新型复合成形工艺研究
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作者 李廷 位小记 +2 位作者 史永杰 肖卓 张春苗 《精密成形工程》 北大核心 2025年第9期233-240,共8页
目的针对当前辊压-冲压工艺在金属箔材加工中存在的拔模角度大、冲压整形易断裂等痛点,创新设计了一种高深宽比箔材沟槽阵列特征辊压-冲压复合成形工艺。方法设计采用不同尺寸的主辅辊压模具,同时仅对金属箔材一个沟槽特征进行成形,辊... 目的针对当前辊压-冲压工艺在金属箔材加工中存在的拔模角度大、冲压整形易断裂等痛点,创新设计了一种高深宽比箔材沟槽阵列特征辊压-冲压复合成形工艺。方法设计采用不同尺寸的主辅辊压模具,同时仅对金属箔材一个沟槽特征进行成形,辊压时金属箔材进料端处于自由补料阶段,从而使材料减薄率减小。在冲压阶段,利用辊压半成品回弹力实现自定位,有效提升定位精度,提升材料利用率。结果对0.1mm金属箔材进行成形试验,其设计特征如下:沟槽深度为2.2mm,槽脊与槽谷分别为3.1mm、2.9mm,沟槽特征32组。最终成品检验结果表明:长度、高度方向尺寸无偏差,最大减薄率仅为0.15%。结论增大辊压模具两者尺寸差能降低重合度以及金属箔材的辊压延伸率;在静态与动态双重视角下,利用机械辅助设计软件对主辅辊轮外部轮廓进行防干涉设计,能实现辊压模具轮廓精准设计;针对冲压模具,可采用自定位固定方式,实现精准定位。此新型辊压-冲压成形工艺为批量金属箔材产业化应用提供了有益参考。 展开更多
关键词 金属箔材 高深宽比 凸起高度 重合度 沟槽
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永磁-箔片混合轴承的承载特性
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作者 程文杰 薛世龙 +2 位作者 肖玲 冯圣 徐国徽 《轴承》 北大核心 2025年第8期14-21,共8页
针对箔片轴承承载能力低,且在启停阶段会与转子发生摩擦,降低轴承寿命的问题,提出了一种永磁-箔片混合轴承结构,建立了混合轴承的动力学模型,采用轨迹法分析了永磁轴承初始偏心距、转速、载荷对混合轴承-转子系统静态工作点、载荷分配... 针对箔片轴承承载能力低,且在启停阶段会与转子发生摩擦,降低轴承寿命的问题,提出了一种永磁-箔片混合轴承结构,建立了混合轴承的动力学模型,采用轨迹法分析了永磁轴承初始偏心距、转速、载荷对混合轴承-转子系统静态工作点、载荷分配比以及轴心轨迹的影响,并与箔片轴承-转子系统进行对比,结果表明:当永磁轴承初始偏心距为1.0 mm时,相较于箔片轴承,混合轴承的转子偏心率减小了0.05,偏位角增大了10.34°;在混合轴承-转子系统中,当永磁轴承初始偏心距从0.1 mm增至2.4 mm时,转子偏心率从0.88减至0.08,偏位角从15.12°增至89.5°,箔片轴承承担的载荷从98%降低至不足1%;当外载荷从80 N增至200 N时,永磁轴承初始偏心为0.5 mm和1.0 mm两种工况下,箔片轴承的承载力分别提高了122.5,123 N,增加的外载荷全部由箔片轴承承担;相较于箔片轴承,引入永磁轴承会加剧转子在不平衡质量力下竖直方向的振动,此外,随着永磁轴承初始偏心距的增加,不仅转子的工频幅值会增大,而且转子的瞬态响应时间也会延长。 展开更多
关键词 滑动轴承 磁力轴承 箔片轴承 偏心距 转速 轴心轨迹 承载力
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球面聚焦超声清洗仿真与实验研究
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作者 董颖怀 王安康 +1 位作者 王岩 李垚 《机械设计与制造》 北大核心 2025年第7期151-154,共4页
目前,常规的超声清洗设备多为规则的六边形,超声在清洗机槽内传播会形成驻波效应,导致清洗设备内声场分布不均匀,并且声波的相互抵消影响了清洗槽内的声压,不利于超声清洗。这里提出了一种球面式聚焦超声清洗的方法,经验证,此清洗方式... 目前,常规的超声清洗设备多为规则的六边形,超声在清洗机槽内传播会形成驻波效应,导致清洗设备内声场分布不均匀,并且声波的相互抵消影响了清洗槽内的声压,不利于超声清洗。这里提出了一种球面式聚焦超声清洗的方法,经验证,此清洗方式提高了超声清洗的效率。利用有限元软件COMSOL Multiphysics对聚焦超声声场模型进行研究,得到声场内声场分布;搭建聚焦超声清洗设备,利用铝箔腐蚀实验验证了清洗设备内的声压分布情况;通过对比清洗实验,对超声清洗设备的清洗效率进行研究,研究表明,聚焦超声清洗设备在清洗盲孔类零件时的清洗效率是普通超声清洗设备的1.6倍,在清洗通孔类零件时清洗效率是普通清洗设备的2.21倍。该设计被证实是进行超声清洗的有效途径,对聚焦超声清洗的研究有重要意义。 展开更多
关键词 聚焦超声 COMSOL Multiphysics 声压分布 铝箔腐蚀 清洗实验 清洗效率
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