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基于J-C模型的45钢本构参数识别及验证 被引量:27
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作者 魏刚 张伟 邓云飞 《振动与冲击》 EI CSCD 北大核心 2019年第5期173-178,共6页
使用万能材料试验机、霍普金森拉杆(SHTB)和Taylor撞击试验研究了调质处理的45钢在常温~1 000℃、应变率10^(-4)~10~3 s^(-1)下的力学行为。拟合试验数据,结合Taylor撞击试验反算,得到了J-C本构相关参数和C-L断裂准则的模型参数。通... 使用万能材料试验机、霍普金森拉杆(SHTB)和Taylor撞击试验研究了调质处理的45钢在常温~1 000℃、应变率10^(-4)~10~3 s^(-1)下的力学行为。拟合试验数据,结合Taylor撞击试验反算,得到了J-C本构相关参数和C-L断裂准则的模型参数。通过对高速下Taylor撞击试验中弹体变形和断裂的数值仿真与试验结果的比较,验证了模型及参数对预测调质处理的45钢动态大变形和断裂的有效性。 展开更多
关键词 固体力学 J-C本构模型 C-L断裂准则 Taylor撞击试验 45钢
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高强38CrSi钢力学性能测试及本构关系研究 被引量:7
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作者 魏刚 张伟 邓云飞 《振动与冲击》 EI CSCD 北大核心 2019年第18期179-184,共6页
使用万能材料试验机、霍普金森拉杆(SHTB)和Taylor杆撞击试验研究了淬火加中温回火处理的高强38CrSi钢在常温~700℃的准静态、动态力学性能。基于试验数据,对Johnson-Cook(J-C)本构模型中的温度软化项做了轻微修改。结合Taylor杆撞击试... 使用万能材料试验机、霍普金森拉杆(SHTB)和Taylor杆撞击试验研究了淬火加中温回火处理的高强38CrSi钢在常温~700℃的准静态、动态力学性能。基于试验数据,对Johnson-Cook(J-C)本构模型中的温度软化项做了轻微修改。结合Taylor杆撞击试验反算,得到了修改的J-C本构相关参数和Cockroft-Latham(C-L)断裂准则的模型参数。通过对高速下Taylor杆撞击试验中弹体变形和断裂的数值仿真与试验结果的比较,验证了模型及参数对预测高强38CrSi钢动态大变形和断裂的有效性。 展开更多
关键词 力学性能测试 高强38CrSi钢 Johnson-Cook本构模型 Cockroft-Latham断裂准则
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接触力模型对含间隙铰接副多体系统分析的影响 被引量:10
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作者 杨芳 陈渭 李培 《西安交通大学学报》 EI CAS CSCD 北大核心 2017年第11期106-117,共12页
为研究接触力模型对含间隙铰接副多体系统动力学分析结果的影响,分析了不同接触力模型中阻尼系数和耗散能的计算方法及其优缺点,并以单球碰撞为例对比分析了各模型耗散能的大小。在此基础上,以含间隙铰接副曲柄滑块机构为例,研究了不同... 为研究接触力模型对含间隙铰接副多体系统动力学分析结果的影响,分析了不同接触力模型中阻尼系数和耗散能的计算方法及其优缺点,并以单球碰撞为例对比分析了各模型耗散能的大小。在此基础上,以含间隙铰接副曲柄滑块机构为例,研究了不同接触力模型对多体系统动力学计算的效率、稳定性及结果的影响。计算结果表明:接触力模型中耗散能的增加可以使多体系统动力学计算结果更快趋于稳定;选取适当的接触力模型可改善动力学方程的求解效率及结果稳定性。针对不同恢复系数,从稳定性、计算效率及适用范围三方面考虑,得出了相应的更具优势的接触力模型。 展开更多
关键词 多体系统 间隙铰接副 能量耗散 接触力
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新型中央分隔带护栏多目标优化设计 被引量:5
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作者 卢积健 雷正保 《振动与冲击》 EI CSCD 北大核心 2023年第13期163-169,共7页
鉴于目前中央分隔带护栏常发生立柱绊阻现象,设计了一种新型中央分隔带护栏。采用显式非线性有限元模拟对新型中央分隔带护栏的碰撞安全性进行评估,分析了乘员碰撞速度(v),乘员碰撞后加速度(a),驶出角(exit angle,EA),车辆离去距离(d)... 鉴于目前中央分隔带护栏常发生立柱绊阻现象,设计了一种新型中央分隔带护栏。采用显式非线性有限元模拟对新型中央分隔带护栏的碰撞安全性进行评估,分析了乘员碰撞速度(v),乘员碰撞后加速度(a),驶出角(exit angle,EA),车辆离去距离(d)以及最大横向位移(maximun lateral displacement,MD)等碰撞后动力学响应。综合考虑,选择乘员碰撞y方向加速度(a y)、车辆离去距离(d)作为目标函数,通过构建RBF(radial basis function)代理模型以减少计算成本;最后使用多目标遗传算法进行优化,获得护栏最佳设计参数;在小型客车、中型客车、大型货车碰撞下,新型中央分隔带护栏显示出良好的导向能力。有限元模拟结果表明,该护栏可有效预防立柱绊阻现象,车辆离去距离仅为2.06 m,乘员碰撞y方向加速度为118.2 m/s 2,满足SB级护栏防护要求。 展开更多
关键词 中央分隔带护栏 代理模型 优化设计 绊阻现象 多目标遗传算法
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激波管聚酯膜片变形过程分析 被引量:4
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作者 何起光 张伟 +1 位作者 陈小伟 徐剑鹏 《爆炸与冲击》 EI CAS CSCD 北大核心 2019年第3期70-76,共7页
使用聚酯薄膜作为激波管膜片,通过施加不同压力的激波管实验,获得了膜片厚度及多张膜片的组合方式对膜片所能承受最大压力的影响。利用高速相机对激波管膜片从开始变形到破坏的全过程进行拍摄,使用三维DIC软件获得膜片在变形过程中的位... 使用聚酯薄膜作为激波管膜片,通过施加不同压力的激波管实验,获得了膜片厚度及多张膜片的组合方式对膜片所能承受最大压力的影响。利用高速相机对激波管膜片从开始变形到破坏的全过程进行拍摄,使用三维DIC软件获得膜片在变形过程中的位移场。实验发现了膜片会出现圆弧反翘并快速破坏的特别现象,并以此为特征将变形过程分为2个阶段。给出任意厚度膜片第1阶段圆弧变形的数学规律及第2阶段圆弧反翘的形状特征,以及全过程中膜片厚度变化的数学规律。 展开更多
关键词 激波管 膜片变形 聚酯薄膜 三维DIC
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Chlorella across latitudes: investigating biochemical composition and antioxidant activities for biotechnological applications 被引量:1
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作者 Chloe Zi-En WONG Ming-Li TEOH +3 位作者 Sook Wah CHAN Nallammai SINGARAM Wendy Ming-Yen TEOH John BEARDALL 《Advances in Polar Science》 CSCD 2023年第4期340-351,共12页
With the present day rise of interest in acquiring sustainability in the pharmaceutical industry,there has been an emphasis on finding natural resources to replace the use of synthetic compounds used in products.Micro... With the present day rise of interest in acquiring sustainability in the pharmaceutical industry,there has been an emphasis on finding natural resources to replace the use of synthetic compounds used in products.Microalgae have garnered significant attention owing to their natural and sustainable capability to produce a diverse array of bioactive compounds.Therefore,this study aims to evaluate the biochemical composition and antioxidant properties of Chlorella strains from a tropical region(Chlorella UMACC 051 and Chlorella UMACC 038)and a polar region(Chlorella UMACC 250 and Chlorella UMACC 234).The cultures were grown for 10 d.At the end of the experiment,the specific growth rate,chlorophyll-a content,carotenoid content,biomass,and biochemical composition such as carbohydrate,protein and lipid content were determined.In addition,the phytochemical properties were determined using a total phenolic assay while the antioxidant activities were determined using 2,2-diphenyl-1-picrylhydrazyl(DPPH).Of all Chlorella strains tested,the tropical Chlorella UMACC 051 showed the fastest growth rate and biomass while the polar Chlorella UMACC 234 contained the highest pigment content and tropical Chlorella UMACC 038 has the highest total phenolic content.The biochemical composition analysis showed all strains have a high lipid content ranging from 45.36%to 60.30%dry weight.All Chlorella strains exhibited a small amount of antioxidant activity(15.42%to 30.15%)and total phenolic content ranging from 1.91±0.04 to 4.43±0.10 mg GAE·g–1 dry weight.The results indicated that polar Chlorella UMACC 234 has the most potential in containing significant amounts of bioactive compounds. 展开更多
关键词 CHLORELLA POLAR TROPICAL biochemical composition total phenolic content DPPH
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一种弹体入水冲击波阴影成像可视化系统及其试验研究
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作者 赵庚 陈拓 +2 位作者 姜雄文 郭子涛 张伟 《爆炸与冲击》 EI CAS CSCD 北大核心 2022年第2期117-125,共9页
扩大成像视野对于开展充水容器中弹体入水冲击波传播及弥散方面的可视化研究具有重要的实际意义。阴影成像技术适用于大视野实验,且对流场冲击波和扰动的可视化研究具有简单性和通用性,其中直接阴影成像最为简单,但可靠点光源的缺乏是... 扩大成像视野对于开展充水容器中弹体入水冲击波传播及弥散方面的可视化研究具有重要的实际意义。阴影成像技术适用于大视野实验,且对流场冲击波和扰动的可视化研究具有简单性和通用性,其中直接阴影成像最为简单,但可靠点光源的缺乏是阻碍其发展应用的瓶颈。因此基于国产短弧氙灯管,自制了短弧氙灯点光源,根据阴影成像原理,设计出一种弹体入水冲击波阴影成像可视化系统,详细介绍了其组成和运行原理。利用该系统对高速弹体入水进行了试验研究,获得了弹体入水冲击波的阴影成像和冲击波信号的压力时程曲线,通过阴影成像和冲击波信号相结合分析了弹体入水冲击波的传播特性,并进行了理论验证。结果表明:该弹体入水冲击波阴影成像可视化系统具有可靠性和设计的合理性。弹体高速入水后,初始冲击波的强度最大,随着冲击波的传播,冲击波强度逐渐降低,水中冲击波的传播速度不断降低,球形冲击波的半径逐渐增大。 展开更多
关键词 弹体入水 冲击波 阴影成像 短弧氙灯 可视化系统
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Coat-and-print patterning of silver nanowires for flexible and transparent electronics 被引量:7
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作者 Weiwei Li Azat Meredov Atif Shamim 《npj Flexible Electronics》 SCIE 2019年第1期149-155,共7页
Silver nanowires(Ag NWs)possess excellent optoelectronic properties,which have led to many technology-focused applications of transparent and flexible electronics.Many of these applications require patterning of Ag NW... Silver nanowires(Ag NWs)possess excellent optoelectronic properties,which have led to many technology-focused applications of transparent and flexible electronics.Many of these applications require patterning of Ag NWs into desired shapes,for which maskbased and printing-based techniques have been developed and widely used.However,there are still several limitations associated to these techniques.These limitations,such as complicated patterning procedures,limited patterning area,and compromised optical transparency,hamper the efficient fabrication of high-performance Ag NW patterns.Here,we propose a coat-and-print approach for effectively patterning Ag NWs.We printed a polymer-based ink on the spin-coated Ag NW films.The ink acts as a protective layer to help remove excess Ag NWs from the substrate and then dissolves itself into an organic solvent.In this way,we can take advantage of both coating-based techniques(lead to Ag NWs with high transparency)and printing-based techniques(efficiently pattern diverse shapes).The resultant Ag NW patterns exhibit comparable conductivity(sheet resistance:7.1 to 30 Ohm/sq)and transparency(transmittance:84 to 95%atλ=550 nm)to those made by conventional coating methods.In addition,the patterned Ag NWs exhibit robust mechanical stability and reliability,surviving extensive bending and peeling tests.Due to higher conductivity,efficient patterning ability and inherent transparency,this material system and application method is highly suitable for transparent and flexible electronics.As a proof of concept,this research demonstrates a wide-band antenna,operating in the mm-wave range that includes the 5G communication band.The proposed antenna exhibits a wide bandwidth of 26 GHz(from 17.9 GHz to 44 GHz),robust return loss under 1000 cyclic bending(bending radius of 3.5 mm),and decent transparency over the entire visible wavelength(86.8%transmittance atλ=550 nm).This work’s promising results indicate that this method can be adapted for roll-to-roll manufacturing to efficiently produce patterned and optically transparent devices. 展开更多
关键词 NANOWIRES transparent TRANSPARENCY
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Screen printing of silver nanowires: balancing conductivity with transparency while maintaining flexibility and stretchability 被引量:7
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作者 Weiwei Li Shuai Yang Atif Shamim 《npj Flexible Electronics》 SCIE 2019年第1期106-113,共8页
Printing metal nanowires are particularly attractive as compared to conventional coating methods due to the ease of processing,direct patterning,and large-scale fabrication capability.However,it is still challenging t... Printing metal nanowires are particularly attractive as compared to conventional coating methods due to the ease of processing,direct patterning,and large-scale fabrication capability.However,it is still challenging to print metal nanowire patterns that simultaneously have high conductivity,high transparency,flexibility,and stretchability.Three steps have been taken in this work to balance the transparency and conductivity of the screen-printed flexible and stretchable silver nanowire films,(1)selection of the ink formulation,(2)optimization of the printing parameters,and(3)posttreatment with a laser.The as-obtained silver nanowire patterns are large-area and demonstrate an ultralow sheet resistance of 1.9 ohm/sq,high transmittance(73%)at the wavelength of 550 nm,and an ultrahigh figure of merit(~136)as compared to the printed silver nanowire electrodes in the literature.The screenprinted transparent patterns exhibit excellent electrical stability and mechanical repeatability when subjected to 1000 bending cycles with a bending radius of 28 mm and 1000 stretch-release cycles with 10%strain,which makes the transparent patterns suitable for the fabrication of flexible,transparent microwave absorbers.The absorption performance of the prepared frequency selective surface absorbers indicates no obvious degradation after various manipulating configurations and multiple bending and stretching cycles.The results are promising enough to make this ink and screen-printing process suitable for many applications of flexible,stretchable,and transparent electronics. 展开更多
关键词 NANOWIRES silver PRINTING
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Fully inkjet-printed microwave passive electronics 被引量:1
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作者 Garret McKerricher Mohammad Vaseem Atif Shamim 《Microsystems & Nanoengineering》 EI CSCD 2017年第1期423-429,共7页
Fully inkjet-printed three-dimensional(3D)objects with integrated metal provide exciting possibilities for on-demand fabrication of radio frequency electronics such as inductors,capacitors,and filters.To date,there ha... Fully inkjet-printed three-dimensional(3D)objects with integrated metal provide exciting possibilities for on-demand fabrication of radio frequency electronics such as inductors,capacitors,and filters.To date,there have been several reports of printed radio frequency components metallized via the use of plating solutions,sputtering,and low-conductivity pastes.These metallization techniques require rather complex fabrication,and do not provide an easily integrated or versatile process.This work utilizes a novel silver ink cured with a low-cost infrared lamp at only 80℃,and achieves a high conductivity of 1×10^(7) S m^(−1).By inkjet printing the infrared-cured silver together with a commercial 3D inkjet ultraviolet-cured acrylic dielectric,a multilayer process is demonstrated.By using a smoothing technique,both the conductive ink and dielectric provide surface roughness values of <500 nm.A radio frequency inductor and capacitor exhibit state-of-the-art quality factors of 8 and 20,respectively,and match well with electromagnetic simulations.These components are implemented in a lumped element radio frequency filter with an impressive insertion loss of 0.8 dB at 1 GHz,proving the utility of the process for sensitive radio frequency applications. 展开更多
关键词 CAPACITOR filter INDUCTOR inkjet printing multi-jet radio frequency SILVER
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Flexible and reconfigurable radio frequency electronics realized by high-throughput screen printing of vanadium dioxide switches 被引量:1
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作者 Weiwei Li Mohammad Vaseem +1 位作者 Shuai Yang Atif Shamim 《Microsystems & Nanoengineering》 EI CSCD 2020年第1期369-380,共12页
Smart materials that can change their properties based on an applied stimulus are in high demand due to their suitability for reconfigurable electronics,such as tunable filters or antennas.In particular,materials that... Smart materials that can change their properties based on an applied stimulus are in high demand due to their suitability for reconfigurable electronics,such as tunable filters or antennas.In particular,materials that undergo a metal–insulator transition(MIT),for example,vanadium dioxide(VO 2)(M),are highly attractive due to their tunable electrical and optical properties at a low transition temperature of 68°C.Although deposition of this material on a limited scale has been demonstrated through vacuum-based fabrication methods,its scalable application for large-area and high-volume processes is still challenging.Screen printing can be a viable option because of its high-throughput fabrication process on flexible substrates.In this work,we synthesize high-purity VO 2(M)microparticles and develop a screen-printable VO 2 ink,enabling the large-area and high-resolution printing of VO 2 switches on various substrates.The electrical properties of screen-printed VO 2 switches at the microscale are thoroughly investigated under both thermal and electrical stimuli,and the switches exhibit a low ON resistance of 1.8 ohms and an ON/OFF ratio of more than 300.The electrical performance of the printed switches does not degrade even after multiple bending cycles and for bending radii as small as 1mm.As a proof of concept,a fully printed and mechanically flexible band-pass filter is demonstrated that utilizes these printed switches as reconfigurable elements.Based on the ON and OFF conditions of the VO 2 switches,the filter can reconfigure its operating frequency from 3.95 to 3.77 GHz without any degradation in performance during bending. 展开更多
关键词 dioxide VANADIUM BENDING
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