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Laser-induced microjet-assisted ablation for high-quality microfabrication 被引量:11
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作者 Yang Guo Pei Qiu +1 位作者 Shaolin Xu Gary J Cheng 《International Journal of Extreme Manufacturing》 SCIE EI CAS 2022年第3期122-130,共9页
Liquid-assisted laser ablation has the advantage of relieving thermal effects of common laser ablation processes, whereas the light scattering and shielding effects by laser-induced cavitation bubbles, suspended debri... Liquid-assisted laser ablation has the advantage of relieving thermal effects of common laser ablation processes, whereas the light scattering and shielding effects by laser-induced cavitation bubbles, suspended debris, and turbulent liquid flow generally deteriorate laser beam transmission stability, leading to low energy efficiency and poor surface quality. Here, we report that a continuous and directional high-speed microjet will form in the laser ablation zone if laser-induced primary cavitation bubbles asymmetrically collapse sequentially near the air-liquid interface under a critical thin liquid layer. The laser-induced microjet can instantaneously and directionally remove secondary bubbles and ablation debris around the laser ablation region, and thus a very stable material removal process can be obtained. The shadowgraphs of high-speed camera reveal that the average speed of laser-induced continuous microjet can be as high as 1.1 m sin its initial 500 μm displacement. The coupling effect of laser ablation, mechanical impact along with the collapse of cavitation bubbles and flushing of high-speed microjet helps achieve a high material removal rate and significantly improved surface quality. We name this uncovered liquid-assisted laser ablation process as laser-induced microjet-assisted ablation(LIMJAA) based on its unique characteristics. High-quality microgrooves with a large depth-to-width ratio of 5.2 are obtained by LIMJAA with a single-pass laser scanning process in our experiments. LIMJAA is capable of machining various types of difficult-to-process materials with high-quality arrays of micro-channels, square and circle microscale through-holes. The results and disclosed mechanisms in our work provide a deep understanding of the role of laser-induced microjet in improving the processing quality of liquid-assisted laser micromachining. 展开更多
关键词 liquid-assisted laser ablation laser-induced microjet cavitation bubbles laser microfabrication
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Comparative investigation of microjetting generated from monocrystalline tin surface and polycrystalline tin surface under plane impact loading 被引量:1
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作者 Shao-Wei Sun Guan-Qing Tang +2 位作者 Ya-Fei Huang Liang-Zhi Cao Xiao-Ping Ouyang 《Chinese Physics B》 SCIE EI CAS CSCD 2021年第10期410-417,共8页
With considering the scattering effect of grain boundary and the grain orientation,the molecular dynamics is used for the first time to comparatively investigate microjetting generated by monocrystalline tin surface a... With considering the scattering effect of grain boundary and the grain orientation,the molecular dynamics is used for the first time to comparatively investigate microjetting generated by monocrystalline tin surface and polycrystalline tin surface under plane impact loading in this work.The research results show that when the impact velocity is low,the scattering effect of grain boundary and different grain orientations in a polycrystalline tin will cause the sample to melt inhomogeneously,leading the shock wave front to attenuate,meanwhile,the inhomogeneous melting can result in jet deviating.Comparing with monocrystalline tin,the jet head velocity,jet velocity coefficient,and jet mass coefficient of polycrystalline tin at low impact velocity are all low.Moreover,as the impact velocity increases,this influence decreases and the microjetting results of polycrystalline tin and monocrystalline tin tend to be consistent with each other. 展开更多
关键词 molecular dynamics shock wave microjetting monocrystalline tin polycrystalline tin
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Multi-Schlieren CT Measurements of Supersonic Microjets from Circular and Square Micro Nozzles 被引量:2
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作者 Ahmad Zaid Nazari Yojiro Ishino +6 位作者 Yuta Ishiko Fumiya Ito Harumi Kondo Ryoya Yamada Takanori Motohiro Yoshiaki Miyazato Shinichiro Nakao 《Journal of Flow Control, Measurement & Visualization》 2020年第3期77-101,共25页
Instantaneous three-dimensional (3D) density distributions of a shock-cell structure of perfectly and imperfectly expanded supersonic microjets escaping into an ambient space are measured. For the 3D observation of su... Instantaneous three-dimensional (3D) density distributions of a shock-cell structure of perfectly and imperfectly expanded supersonic microjets escaping into an ambient space are measured. For the 3D observation of supersonic microjets, non-scanning 3D computerized tomography (CT) technique using a 20-directional quantitative schlieren optical system with flashlight source is employed for simultaneous schlieren photography. The 3D density distributions data of the microjets are obtained by 3D-CT reconstruction of the projection’s images using maximum likelihood-expectation maximization. Axisymmetric convergent-divergent (Laval) circular and square micro nozzles with operating nozzle pressure ratio 5.0, 4.5, 4.0, 3.67, and 3.5 have been studied. This study examines perfectly expanded, overexpanded, and underexpanded supersonic microjets issued from micro nozzles with fully expanded jet Mach numbers <em>M</em><em><sub>j</sub></em> ranging from 1.47 - 1.71, where the design Mach number is <em>M<sub>d</sub></em> = 1.5. A complex phenomenon for free square microjets called axis switching is clearly observed with two types “upright” and “diagonal” of “cross-shaped”. The initial axis-switching is 45<span style="white-space:nowrap;">°</span> within the first shock-cell range. In addition, from the symmetry and diagonal views of square microjets for the first shock-cells, two different patterns of shock waves are viewed. The shock-cell spacing and supersonic core length for all nozzle pressure ratios are investigated and reported. 展开更多
关键词 Supersonic microjet Multi-Directional Quantitative Schlieren Optical System Three-Dimensional (3D) Measurement Computerized Tomography (CT) Circular and Square Micro Laval Nozzles
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Numerical Analysis of a Microjet-Based Method for Active Flow Control in Convergent-Divergent Nozzles with a Sudden Expansion 被引量:1
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作者 Abdul Aabid Sher Afghan Khan Muneer Baig 《Fluid Dynamics & Materials Processing》 EI 2022年第6期1877-1900,共24页
A method based on microjets is implemented to control the flow properties in a convergent-divergent nozzle undergoing a sudden expansion.Three different variants of this active control technique are explored numerical... A method based on microjets is implemented to control the flow properties in a convergent-divergent nozzle undergoing a sudden expansion.Three different variants of this active control technique are explored numerically by means of a finite-volume method for compressible fluid flow:with the first one,the control is implemented at the base,with the second at the wall,while the third one may be regarded as a combination of these.When jets are over-expanded,the control is not very effective.However,when a favourable pressure gradient is established in the nozzle,the control becomes effective,leading to an increase in the base pressure. 展开更多
关键词 Base pressure supersonic flow CFD mach number microjet control
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Multi-frequency focusing of microjets generated by polygonal prisms
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作者 Yu-Jing Yang De-Long Zhang Ping-Rang Hua 《Chinese Physics B》 SCIE EI CAS CSCD 2022年第3期248-258,共11页
We systematically investigate the power distribution characteristics of microjets generated by prismatic scatterers with different shapes at sub-THz region(λ = 8.57 mm). Among these prismatic scatterers, the hexagona... We systematically investigate the power distribution characteristics of microjets generated by prismatic scatterers with different shapes at sub-THz region(λ = 8.57 mm). Among these prismatic scatterers, the hexagonal-type one shows better focusing feature than the others. Aiming at the hexagonal-type one, we propose a double-layer scatterer composed of a Teflon hexagonal prism as an outer layer and a semiconductor cuboid as an inner layer. Aiming at the double-layer scatterer, we further study the effects of refractive index, size, and shape of the inner cuboid on microjet’s features. The study allows us to present an optimized double-layer scatterer, which has a side length λ/2(λ) and a refractive index 2.0(1.4) for the inner(outer) layer. We show that the optimized scatterer can produce an ultra-strong, ultra-narrow microjet with a power enhancement of;0 and a full width at half maximum(FWHM) of;0.26λ, and the microjet is just located at the output face. The microjet keeps compact within the distance range of λ from the output face. These features and effects are explained from the viewpoint of ray optics theory. According to the optimized double-layer scatterer, we further study the multi-frequency focusing features of the microjets, and find that the microjet remains good features at harmonic frequencies 2f_(0) and 3f_(0). In addition, we investigate the effect of an Au sphere presence in the center of the microjet on the power distribution. The results show that a spherical dark spot with a size similar to that of the Au sphere emerges in the area where the Au sphere is placed. The feature can be used to measure the size of a metallic particle. 展开更多
关键词 photonic microjet hexagonal prism harmonical frequencies localized surface plasmon resonance
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Direct numerical simulation of shock wave/boundary layer interaction controlled by steady microjet in a compression ramp
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作者 Ruoye XIAO Dong SUN Jian YU 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2024年第10期83-102,共20页
Shock wave/boundary layer interaction in a 24°turning angle of the compression ramp at Mach number 2.9 controlled by steady microjet is investigated using direct numerical simulation.Three different jet spacings ... Shock wave/boundary layer interaction in a 24°turning angle of the compression ramp at Mach number 2.9 controlled by steady microjet is investigated using direct numerical simulation.Three different jet spacings which are termed as sparse,moderate and dense are considered,and the induced vortex system and shock structures are compared.A moderate jet spacing configuration is found to generate counter-rotating vortex pairs that transport high-momentum fluid towards the vicinity of wall and strengthen the boundary layer to resist separation,reducing the separation region.The dense jet spacing configuration creates a larger momentum deficit region,reducing the friction downstream of the corner.Analysis of pressure and pressure gradient reveals that dense jet spacing configuration reduces the intensity of separation shock.The impact of varying jet spacings on the turbulent kinetic energy transport mechanism is also investigated by decomposing the budget terms in the transport equation.Furthermore,the spectral characteristics of the separation region are studied using power spectral density and dynamic mode decomposition methods,revealing that moderate jet spacing configuration suppresses low-frequency fluctuations in the separation region. 展开更多
关键词 Shock wave/boundary layer interaction Compression ramp Steady microjet Different jet spacings Direct numerical simulation
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Design and simulation of a liquid-microjet time-of-flight mass spectrometer with a femtosecond laser ionization source
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作者 Jinyou Long Jie Wei +2 位作者 Yaping Wang Song Zhang Bing Zhang 《Chinese Journal of Chemical Physics》 CSCD 2024年第6期797-806,I0042,共11页
A liquid-microjet(LJ)linear time-of-flight(TOF)mass spectrometer,coupled with a femtosecond laser ionization source,has been designed for direct measurements of mass spectra of liquid aqueous solutions.Two main featur... A liquid-microjet(LJ)linear time-of-flight(TOF)mass spectrometer,coupled with a femtosecond laser ionization source,has been designed for direct measurements of mass spectra of liquid aqueous solutions.Two main features of our designed spectrometer involve the coupling of a liquid microjet nozzle to a conventional ion optics and the application of femtosecond pulses for mass spectral ionization.The detailed design,construction,and simulation of this new spectrometer are presented.More importantly,we combined the experimental tests with the simulated electric fields and ion trajectories to investigate the performance of the designed spectrometer,especially the kind of disturbances of the nozzle electric field on the conventional ion optics.In our current design,the optimal E/R(E:extractor,R:repeller)electrode voltage ratio was found to be∼0.71 when the voltages on the R,E and G(ground)electrodes were set to be 1500,1060 and 0 V,respectively,whilst the voltage on the N nozzle electrode was required to be around 1250 V.The capability of the designed spectrometer has been demonstrated by recording the simulated mass spectra of the water,benzene and cytidine with their mass/charge ratios of 18,76 and 243,respectively.This work shall be helpful for the development of new all-liquid-phase mass spectral technology to be employed in the diagnosis of diseases by the mass analysis of human body fluids. 展开更多
关键词 Liquid microjet TIME-OF-FLIGHT Mass spectrometer Aqueous solution
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Study of Rectangular Underexpanded Microjets
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作者 Shota Yoshimi Shinichiro Nakao Yoshiaki Miyazato 《Open Journal of Fluid Dynamics》 CAS 2023年第2期122-131,共10页
The underexpanded microjet emerging from a rectangular convergent nozzle with a high aspect ratio at the nozzle exit is investigated numerically using the Reynolds-averaged Navier-Stokes (RANS) simulation with the Men... The underexpanded microjet emerging from a rectangular convergent nozzle with a high aspect ratio at the nozzle exit is investigated numerically using the Reynolds-averaged Navier-Stokes (RANS) simulation with the Menter’s shear stress transport (SST) k-ω turbulence model. The simulation is performed at the nozzle pressure ratio of 5.0 to produce a strong shock and it is validated by a comparison with a rainbow schlieren picture of the microjet. The three-dimensional structure of the shock-containing rectangular microjet is demonstrated using the isopycnic surface and bright-field schlieren representations. 展开更多
关键词 microjets Rainbow Schlieren RANS Simulation Rectangular Nozzle Shock Waves
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Features of Combustion of a Mixture of a Hydrogen Microjet with Various Gases
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作者 Victor Kozlov Yuriy Litvinenko +1 位作者 Andrey Shmakov Alexander Pavlenko 《Frontiers in Heat and Mass Transfer》 EI 2024年第6期1695-1717,共23页
The objective of the present study is an experimental investigation of diffusion combustion of round microjets,i.e.,mixtures of hydrogen with methane,helium,and nitrogen.It is found that the evolution of burning micro... The objective of the present study is an experimental investigation of diffusion combustion of round microjets,i.e.,mixtures of hydrogen with methane,helium,and nitrogen.It is found that the evolution of burning microjets is associated with generation of a“bottleneck flame region”close to the nozzle exit,as it was observed earlier during hydrogen combustion.Combustion of a mixture of hydrogen and methane with increasing flow velocity occurs with the transformation of the torch.At first,a torch stabilized on the nozzle is observed,then it is divided into a stabilized part in contact with the nozzle and into a raised part of the torch.The combustion process occurs in two areas.A further increase in velocity promotes the breakdown of the raised torch,but maintains combustion in the nozzle area.The results on hydrogen/methane combustion are obtained in a smaller range of the microjet velocity than those of a hydrogen microjet.Somewhat similar data are derived for other gas additives.To make combustion of gas mixtures more stable with increasing microjet velocity,one has to increase the portion of hydrogen in the gas mixture or reduce the fractions of other gas additives. 展开更多
关键词 Round microjet diffusion combustion of gas mixtures “bottleneck flame region” shadowgraph flow patterns
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High-repetition-rate(kHz) targets and optics from liquid microjets for high-intensity laser–plasma interactions 被引量:5
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作者 K.M.George J.T.Morrison +11 位作者 S.Feister G.K.Ngirmang J.R.Smith A.J.Klim J.Snyder D.Austin W.Erbsen K.D.Frische J.Nees C.Orban E.A.Chowdhury W.M.Roquemore 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2019年第3期121-141,共21页
High-intensity laser–plasma interactions produce a wide array of energetic particles and beams with promising applications.Unfortunately,the high repetition rate and high average power requirements for many applicati... High-intensity laser–plasma interactions produce a wide array of energetic particles and beams with promising applications.Unfortunately,the high repetition rate and high average power requirements for many applications are not satisfied by the lasers,optics,targets,and diagnostics currently employed.Here,we aim to address the need for high-repetition-rate targets and optics through the use of liquids.A novel nozzle assembly is used to generate highvelocity,laminar-flowing liquid microjets which are compatible with a low-vacuum environment,generate little to no debris,and exhibit precise positional and dimensional tolerances.Jets,droplets,submicron-thick sheets,and other exotic configurations are characterized with pump–probe shadowgraphy to evaluate their use as targets.To demonstrate a highrepetition-rate,consumable,liquid optical element,we present a plasma mirror created by a submicron-thick liquid sheet.This plasma mirror provides etalon-like anti-reflection properties in the low field of 0.1%and high reflectivity as a plasma,69%,at a repetition rate of 1 k Hz.Practical considerations of fluid compatibility,in-vacuum operation,and estimates of maximum repetition rate are addressed.The targets and optics presented here demonstrate a potential technique for enabling the operation of laser–plasma interactions at high repetition rates. 展开更多
关键词 HIGH intensity HIGH REPETITION rate LASER-PLASMA interaction LIQUID droplet LIQUID microjet LIQUID sheet plasma mirror target
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Mitigation of Combustion Instability and NO_(x)Emissions by Microjets in Lean Premixed Flames with Different Swirl Numbers 被引量:3
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作者 ZHOU Hao HU Liubin 《Journal of Thermal Science》 SCIE EI CAS CSCD 2023年第4期1697-1709,共13页
Swirl combustion serves as a helpful flame stabilization method,which also affects the combustion and emission characteristics.This article experimentally investigated the effects of CO_(2)microjets on combustion inst... Swirl combustion serves as a helpful flame stabilization method,which also affects the combustion and emission characteristics.This article experimentally investigated the effects of CO_(2)microjets on combustion instability and NO_(x)emissions in lean premixed flames with different swirl numbers.The microjets’control feasibility was examined from three variables of CO_(2)jet flow rate,thermal power,and swirl angles.Results indicate that microjets can mitigate the combustion instability and NO_(x)emissions in lean premixed burners with different swirl numbers and thermal power.Still,the damping effect of microjets in low swirl intensity is better than that in high swirl intensity.The damping ratio of pressure amplitude can reach the maximum of 98%,and NO_(x)emissions can realize the maximum reduction of 10.1×10^(−6)at the swirl angle of 30°.Besides,the flame macrostructure switches from an inverted cone shape to a petal shape,and the flame length reduction at low swirl intensity is higher than that of high swirl intensity.This research clarified the control differences of mitigation of combustion instability and NO_(x)emissions by microjets in lean premixed flames with different swirl numbers,contributing to the optimization of microjets control and the construction of high-performance burners. 展开更多
关键词 combustion instability swirl numbers thermal power CO_(2)microjets NO_(x)emissions lean premixed flame
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原油储罐重质沉积物超声波空化微射流清洗实验及数值模拟
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作者 贾文龙 肖欢 +3 位作者 冷翔宇 黄巧竞 刘程玮 吴瑕 《化工学报》 北大核心 2025年第3期1288-1296,共9页
针对原油重质沉积物超声波空化微射流清洗作用机理不明确、微射流对沉积物的冲击作用缺乏定量表征等问题,建立了超声波空化微射流冲击清洗重质沉积物的仿真模型,通过数值仿真和实验研究了超声波空化微射流对沉积物的清洗机理及规律。结... 针对原油重质沉积物超声波空化微射流清洗作用机理不明确、微射流对沉积物的冲击作用缺乏定量表征等问题,建立了超声波空化微射流冲击清洗重质沉积物的仿真模型,通过数值仿真和实验研究了超声波空化微射流对沉积物的清洗机理及规律。结果表明:超声波空化微射流存在高度随机性,导致沉积物表面形成大量不均匀凹坑,凹坑直径近似呈GEVⅡ分布;沉积物内部及壁面黏结处出现扩展性裂纹,促使沉积物剥离;沉积物表面凹坑直径和深度与超声波声压呈线性增大规律,超声波对凹坑深度的影响大于直径的影响。超声波功率从100 W增大到300 W,声压从100 kPa增加至200 kPa,超声波作用60 s,实验得到凹坑平均直径从6.10μm增大至7.38μm,平均深度从1.18μm增加至3.46μm;数值仿真计算凹坑直径从9.60μm增大至9.80μm,平均深度从1.42μm增加至3.89μm。 展开更多
关键词 石油 沉积物 超声波 空化 微射流 清洗 数值模拟
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萝北某石墨尾矿提取石墨制备石墨烯实验研究 被引量:2
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作者 孟凡娜 张海军 +1 位作者 张晓臣 阚侃 《矿产保护与利用》 2025年第1期70-76,共7页
石墨烯独特的结构特性与优异的理化性质,使其具有广阔的应用前景。以萝北某石墨尾矿为对象,采用粉碎、超声剥离、重力沉降,提取石墨尾矿中石墨微纳米片,然后进行提纯剥离制备石墨烯。结果表明,研磨获得d50为2.5μm左右的尾矿颗粒,超声... 石墨烯独特的结构特性与优异的理化性质,使其具有广阔的应用前景。以萝北某石墨尾矿为对象,采用粉碎、超声剥离、重力沉降,提取石墨尾矿中石墨微纳米片,然后进行提纯剥离制备石墨烯。结果表明,研磨获得d50为2.5μm左右的尾矿颗粒,超声剥离处理6 min,重力沉降进行石墨富集,获得石墨微片碳含量最高达9.72%,石墨回收率达80.01%,石墨微片经提纯后得到固定碳含量为98.1%、层数约为20层左右的石墨微纳米片。采用高压微射流均质机进行剥离制备多层石墨烯,石墨微片、水及分散剂配比为0.2 mg:1 mL:0.001 mg,高压微射流均质机的压力80 MPa,进行高压分散循环25次后,剥离得到的石墨烯片厚度在10层以下、片径在3μm以上,制成具有较高晶体质量的石墨烯。石墨尾矿制备石墨烯既有利于拓展石墨烯原料范围又有利于实现石墨尾矿的资源化利用。 展开更多
关键词 石墨尾矿 超声剥离 重力沉降 石墨微纳米片 高压微射流均质机 石墨烯
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黏弹性流体内近刚性边界单空化泡动力学特性数值模拟
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作者 曾添宝 郑智颖 +1 位作者 何志博 黄勇浩 《哈尔滨工业大学学报》 北大核心 2025年第10期1-11,共11页
空化在医学领域已被应用于组织消融和结石破碎等治疗过程中。考虑到在医学领域的应用中,空化通常发生在具有黏弹性效应的人体内环境液体中,对黏弹性流体中空化泡动力学特性的研究将为医学领域空化的合理应用提供支持。为此,采用数值模... 空化在医学领域已被应用于组织消融和结石破碎等治疗过程中。考虑到在医学领域的应用中,空化通常发生在具有黏弹性效应的人体内环境液体中,对黏弹性流体中空化泡动力学特性的研究将为医学领域空化的合理应用提供支持。为此,采用数值模拟的方法,通过开源计算流体力学平台Open FOAM开发黏弹性流体中可压缩气-液两相流求解器,对不同流变学参数下黏弹性流体中刚性边界附近单空化泡进行数值模拟,并与牛顿流体中相应工况进行对比,分析流体黏弹性效应对空化泡动力学特性的影响。结果表明:流体黏弹性效应将抑制空化泡的生长以及溃灭时形成射流的强度,并减小空化过程对边界产生的压力载荷;且发现流体黏弹性效应对空化泡的抑制作用受流体流变学特性影响,当松弛时间增加时,空化泡在生长初期储存更多弹性势能,并在后期释放,使空化泡生长过程延长,最大尺寸增大;而当迁移系数增加时,空化泡在生长过程中能量耗散增加,空化泡的最大尺寸减小;空化泡溃灭时形成射流的速度和对边界的冲击压力,随空化泡与边界之间距离的增加而先增大后减小。本研究可为黏弹性流体中空化泡的应用提供理论支持,也可以促进在化工乳化、海水淡化、石油运输等领域空化的合理利用及有效防治。 展开更多
关键词 水动力学 黏弹性流体 空化泡动力学 流变学参数 微射流
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微射流的形成及动力学特性数值模拟研究
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作者 杨焱焱 李福宝 +1 位作者 霍英妲 高敬凯 《辽宁化工》 2025年第6期943-947,共5页
微射流产生于空泡溃灭前期,随着空泡的收缩,其上部会蓄积能量,变得扁平,这时候微射流出现,随着压力的继续变化,受压面继续凹陷直至微射流击穿空泡而溃灭。实验主要对微射流的产生以及速度场、温度场和压力场在空泡溃灭不同时期的大小进... 微射流产生于空泡溃灭前期,随着空泡的收缩,其上部会蓄积能量,变得扁平,这时候微射流出现,随着压力的继续变化,受压面继续凹陷直至微射流击穿空泡而溃灭。实验主要对微射流的产生以及速度场、温度场和压力场在空泡溃灭不同时期的大小进行模拟研究。研究表明:空泡距离壁面越远,产生微射流的时间越短,最大微射流速度和压强也随之越大;空泡的大小的变化对微射流影响也很大,空泡半径越小,微射流产生的时间以及最大速度会变慢且变小;当环境压力逐渐增大时,最大微射流速度以及溃灭压力均会呈现出大幅度的增长趋势。特别值得注意的是,在γ=2.0的情况下,溃灭压力的增量近乎达到了1倍之多,这种变化是极为显著的。 展开更多
关键词 微射流 动力学特性 空泡 数值模拟
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多孔微射流热沉沸腾传热特性研究
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作者 孙健 叶凡 +1 位作者 钟超 李杰 《制冷学报》 北大核心 2025年第5期166-174,共9页
随着计算机技术发展以及人工智能的应用,电子芯片越发趋向微型化、集成化,导致其单位体积发热量快速增加,从而影响正常运行。针对该问题,设计了一种阵列翅片式多孔微射流热沉,选用热稳定性和电绝缘性好的HFE-7100作为冷却工质,通过数值... 随着计算机技术发展以及人工智能的应用,电子芯片越发趋向微型化、集成化,导致其单位体积发热量快速增加,从而影响正常运行。针对该问题,设计了一种阵列翅片式多孔微射流热沉,选用热稳定性和电绝缘性好的HFE-7100作为冷却工质,通过数值模拟和实验研究相结合的方法,研究槽式翅片纵宽比、入口过冷度、入口体积流量、射流雷诺数等因素对微射流沸腾传热过程影响。结果表明:优化后纵宽比为0.5的结构在满足芯片冷却要求的同时具有更好的冷却效果。单相对流传热阶段,相同工况下,入口过冷度对换热影响较小,增大体积流量或射流雷诺数可强化对流传热,最大传热系数可达15724.40 W/(m^(2)·K)。但在射流沸腾阶段,沸腾起始点ONB对应的热流密度随入口过冷度的减小而减小,增大入口体积流量或射流雷诺数会抑制沸腾的发生,从而削弱换热,但相对单相对流传热阶段,传热系数仍提高20.6%。 展开更多
关键词 沸腾传热 微射流 电子芯片 两相流 强化传热
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不同均质处理对鱼皮骨汽爆高汤色泽及稳定性的影响
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作者 张国盛 刘月如 +4 位作者 李子娟 尹涛 尤娟 熊善柏 刘茹 《南方水产科学》 北大核心 2025年第6期1-9,共9页
针对淡水鱼糜副产物(鱼皮、鱼骨)利用率低及高汤体系稳定性差的问题,本研究采用蒸汽爆破法制备鱼皮骨高汤,比较了3种均质方式[胶体磨(JTM)、高压均质机(JZJ)、高压微射流纳米均质机(WSL)]处理不同时间(10、20、30、40、50 min)对汽爆高... 针对淡水鱼糜副产物(鱼皮、鱼骨)利用率低及高汤体系稳定性差的问题,本研究采用蒸汽爆破法制备鱼皮骨高汤,比较了3种均质方式[胶体磨(JTM)、高压均质机(JZJ)、高压微射流纳米均质机(WSL)]处理不同时间(10、20、30、40、50 min)对汽爆高汤色泽及稳定性的影响,旨在为提升产品品质与副产物高值化利用提供技术依据。结果表明:3种方式均质处理后汽爆高汤的亮度值(L*)和白度值(W)升高,黄蓝色度值(b*)降低,粒径减小,黏度和ζ-电位的绝对值增大,分散稳定性显著提升(p<0.05)。相较于JTM组,JZJ和WSL组能更显著地减少高汤中的脂肪球数量,降低脂肪球及鱼皮鱼骨微粒的粒径,并赋予高汤更高的L*和W值(p<0.05);WSL组微粒分布的均匀性更佳,但3组样品的平均粒径无显著差异。在相同均质时间下,WSL组样品的黏度、ζ-电位绝对值最大。背散射光强变化率(ΔBS)和Turbiscan稳定指数(TSI)值显示高汤样品稳定性从高到低的顺序为:WSL>JZJ>JTM,JTM、JZJ和WSL组样品分别为均质40、20和50 min的稳定性最佳。综合考虑,工业上宜选用高压均质机处理20 min。 展开更多
关键词 蒸汽爆破 汽爆高汤 均质 分散稳定性 白度 高压微射流 ζ-电位 工艺优化
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用脉冲激光同轴全息技术测量微射流 被引量:13
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作者 叶雁 郑贤旭 +4 位作者 李作友 李泽仁 钟杰 刘振清 罗振雄 《强激光与粒子束》 EI CAS CSCD 北大核心 2004年第2期159-162,共4页
 用脉冲激光同轴全息技术建立了全息照相系统和高精度同步时序系统,获得了采用爆轰加载产生高速运动的微射流全息图,并再现出微射流的全息像,得到粒子的大小和分布情况,从图像处理得到粒子尺寸的统计结果表明,最大尺寸在300μm左右,最...  用脉冲激光同轴全息技术建立了全息照相系统和高精度同步时序系统,获得了采用爆轰加载产生高速运动的微射流全息图,并再现出微射流的全息像,得到粒子的大小和分布情况,从图像处理得到粒子尺寸的统计结果表明,最大尺寸在300μm左右,最小尺寸在30μm左右。证明了研制的全息系统和测试技术可以测量高速的微射流场。 展开更多
关键词 同轴全息 微射流 干涉 粒子场 脉冲激光 全息照相系统 测量 高精度同步时序系统
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SPH方法对金属表面微射流的数值模拟 被引量:20
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作者 王裴 秦承森 +1 位作者 张树道 刘超 《高压物理学报》 EI CAS CSCD 北大核心 2004年第2期149-156,共8页
光滑粒子流体动力学(SmoothedParticleHydrodynamics)方法是一种无网格的拉氏计算方法,具有计算格式简单、易于计算大变形问题等优势。用二维SPH程序模拟了冲击加载下金属铝表面的沟槽状缺陷产生微射流的过程,得到了喷射物的总质量、最... 光滑粒子流体动力学(SmoothedParticleHydrodynamics)方法是一种无网格的拉氏计算方法,具有计算格式简单、易于计算大变形问题等优势。用二维SPH程序模拟了冲击加载下金属铝表面的沟槽状缺陷产生微射流的过程,得到了喷射物的总质量、最大速度和质量 速度曲线。还计算了相同深度、不同夹角的沟槽微射流,并与实验结果进行了比较。结果表明:计算得到的喷射物总质量和最大速度与实验结果符合较好,SPH方法对于估算金属表面的微射流提供了一种有效的数值模拟手段。 展开更多
关键词 微射流 SPH 沟槽缺陷 喷射量 质量-速度曲线 冲击波
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微磨料水射流技术及其应用 被引量:23
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作者 雷玉勇 蔡黎明 +1 位作者 邴龙健 唐令波 《西华大学学报(自然科学版)》 CAS 2009年第4期1-6,共6页
介绍了微磨料水射流技术及其在半导体制造工艺中的应用。在分析研究微磨料水射流技术国内外发展基础上,提出了微磨料水射流的产生方法及关键技术。对增压发生器的压力、喷嘴直径、微磨料粒子的精度、浆液磨料制备方法、浆液磨料的输送... 介绍了微磨料水射流技术及其在半导体制造工艺中的应用。在分析研究微磨料水射流技术国内外发展基础上,提出了微磨料水射流的产生方法及关键技术。对增压发生器的压力、喷嘴直径、微磨料粒子的精度、浆液磨料制备方法、浆液磨料的输送及质量流量的控制、工作平台的运动精度等关键技术进行了分析讨论。研究表明,为了产生射束直径100μm以下的微磨料水射流,必须采用湿式磨料,同时完全避免空气进入。采用300nm至8μm氧化铝浆液磨料和Ф40—50μm喷嘴,应用运载方法可以产生束径达Ф40-50μm级的微细加工磨料水射流。在同样水压力下,其切割的能量密度是普通磨料水射流的4~5倍。微磨料水射流在半导体材料加工、微型电子机械系统制造以及光学器件生产上具有广阔应用前景。 展开更多
关键词 微磨料水射流 浆液磨料 微细加工 微水射流
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