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The Processes-Based Attributes of Four Major Surface Melting Events over the Antarctic Ross Ice Shelf 被引量:1
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作者 Wenyi LI Yuting WU Xiaoming HU 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2023年第9期1662-1670,共9页
The Ross-Amundsen sector is experiencing an accelerating warming trend and a more intensive advective influx of marine air streams.As a result,massive surface melting events of the ice shelf are occurring more frequen... The Ross-Amundsen sector is experiencing an accelerating warming trend and a more intensive advective influx of marine air streams.As a result,massive surface melting events of the ice shelf are occurring more frequently,which puts the West Antarctica Ice Sheet at greater risk of degradation.This study shows the connection between surface melting and the prominent intrusion of warm and humid air flows from lower latitudes.By applying the Climate Feedback-Response Analysis Method(CFRAM),the temporal surge of the downward longwave(LW)fluxes over the surface of the Ross Ice Shelf(RIS)and adjacent regions are identified for four historically massive RIS surface melting events.The melting events are decomposed to identify which physical mechanisms are the main contributors.We found that intrusions of warm and humid airflow from lower latitudes are conducive to warm air temperature and water vapor anomalies,as well as cloud development.These changes exert a combined impact on the abnormal enhancement of the downward LW surface radiative fluxes,significantly contributing to surface warming and the resultant massive melting of ice. 展开更多
关键词 Ross Ice Shelf(RIS) surface melting warm and humid air advection downward longwave radiation Climate Feedback-Response Analysis Method(CFRAM)
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Surface Integrity of Inconel 738LC Parts Manufactured by Selective Laser Melting Followed by High-speed Milling
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作者 Guanhui Ren Sai Guo Bi Zhang 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2023年第1期65-79,共15页
This study is concerned with the surface integrity of Inconel 738LC parts manufactured by selective laser melting(SLM)followed by high-speed milling(HSM).In the investigation process of surface integrity,the study emp... This study is concerned with the surface integrity of Inconel 738LC parts manufactured by selective laser melting(SLM)followed by high-speed milling(HSM).In the investigation process of surface integrity,the study employs ultradepth three-dimensional microscopy,laser scanning confocal microscopy,scanning electron microscopy,electron backscatter diffractometry,and energy dispersive spectroscopy to characterize the evolution of material microstructure,work hardening,residual stress coupling,and anisotropic effect of the building direction on surface integrity of the samples.The results show that SLM/HSM hybrid manufacturing can be an effective method to obtain better surface quality with a thinner machining metamorphic layer.High-speed machining is adopted to reduce cutting force and suppress machining heat,which is an effective way to produce better surface mechanical properties during the SLM/HSM hybrid manufacturing process.In general,high-speed milling of the SLM-built Inconel 738LC samples offers better surface integrity,compared to simplex additive manufacturing or casting. 展开更多
关键词 surface integrity Inconel 738LC Selective laser melting High-speed milling
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Laser surface melting AZ31B magnesium alloy with liquid nitrogen-assisted cooling 被引量:7
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作者 崔泽琴 施海霞 +1 位作者 王文先 许并社 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2015年第5期1446-1453,共8页
Laser surface melting(LSM) is a high-energy surface treatment that allows modification of the microstructure and surface properties of Mg alloys. In the present work, an attempt of LSM on magnesium alloy with liquid... Laser surface melting(LSM) is a high-energy surface treatment that allows modification of the microstructure and surface properties of Mg alloys. In the present work, an attempt of LSM on magnesium alloy with liquid nitrogen-assisted cooling(LNSC) was carried out to get the higher cooling rate and improve the surface properties. The experimental results were compared with those of Ar gas protection at room temperature. The samples after LSM with LNSC resulted in a thinner melted layer, a highly homogeneous, refined melted microstructure and formed a lot of worm-like nanocrystals and local amorphous structures. Microhardness of the melted layer with LNAC was improved to HV 90-148 as compared to HV 65-105 of the samples with Ar gas protection. The corrosion resistance of the melted layer in a 3.5% Na Cl solution(mass fraction) was improved because of the grain refinement and redistribution of β-Mg17Al12 phases following rapid quenching associated with the process. 展开更多
关键词 magnesium alloy laser surface melting liquid nitrogen-assisted cooling MICROHARDNESS corrosion resistance
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Electrochemical Performance of Surface-Modified LiMn_2O_4 Prepared by a Melting Impregnation Method 被引量:3
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作者 Jian TU Xinbing ZHAO Gaoshao CAO Tiejun ZHU Dagao ZHUANG diangping TU 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2006年第4期433-436,共4页
The surface of as-prepared LiMn2O4 was modified with ZnO, Al2O3, CoO and LiCoO2 using a simple nitrate melting impregnation method. Transmission electron microscopy (TEM) studies indicated that oxide nano- particles... The surface of as-prepared LiMn2O4 was modified with ZnO, Al2O3, CoO and LiCoO2 using a simple nitrate melting impregnation method. Transmission electron microscopy (TEM) studies indicated that oxide nano- particles in the range of 10~50 nm are coated on the surface of the spinel. The surface modified samples show better capacity retention than the unmodified LiMn2O4 spinel at both room temperature and 55℃. Among these samples, the ZnO-modified LiMn2O4 shows the best combination of a high capacity and a low capacity fading rate of 0.036% per cycle at room temperature and 0.064% per cycle at 55℃. The improvement for surface modified LiMn2O4 can be attributed to the inhibition of Mn dissolution and O losses on the surface. 展开更多
关键词 LiMn2O4 spinel surface modification melting impregnation Cathode materials Lithium-ion batteries
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Effects of selective laser melting parameters on surface quality and densification behaviours of pure nickel 被引量:7
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作者 Tian-yang YUE Sheng ZHANG +4 位作者 Chao-yue WANG Wei XU Yi-di XU Yu-sheng SHI Yong ZANG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2022年第8期2634-2647,共14页
The effects of laser power and scanning speed on the forming characteristic of scanning tracks,densification behaviours and surface roughness of pure nickel fabricated with selective laser melting(SLM)were studied.The... The effects of laser power and scanning speed on the forming characteristic of scanning tracks,densification behaviours and surface roughness of pure nickel fabricated with selective laser melting(SLM)were studied.The results indicate that the scanning tracks showed continuous,regular and flat surface with increasing laser power and decreasing scanning speed in a specific range,which could avoid the defects(like holes and balling structures)forming in SLM processing.The optimal process window was identified as the scanning speed of 900 mm/s and the laser power of 255−275 W by comparing the surface qualities and densification behaviours.With the suitable processing parameters,the relative density could achieve 99.16%,the tensile strength was(359.49±2.74)MPa,and the roughnesses of the top and side surfaces were(12.88±2.23)and(14.98±0.69)μm,respectively. 展开更多
关键词 selective laser melting pure nickel scanning track DENSIFICATION surface roughness
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Tensile behavior of Ti-6Al-4V alloy fabricated by selective laser melting: effects of microstructures and as-built surface quality 被引量:11
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作者 pan tao huai-xue li +3 位作者 bai-ying huang quan-dong hu shui-li gong qing-yan xu 《China Foundry》 SCIE 2018年第4期243-252,共10页
Selective laser melting (SLM) is a powerful additive manufacturing (AM) technology, of which the most prominent advantage is the ability to produce components with a complex geometry. The service performances of t... Selective laser melting (SLM) is a powerful additive manufacturing (AM) technology, of which the most prominent advantage is the ability to produce components with a complex geometry. The service performances of the SLM-processed components depend on the microstructure and surface quality. In this work, the microstructures, mechanical properties, and fracture behaviors of SLM-processed Ti-6AI-4V alloy under machined and as-built surfaces after annealing treatments and hot isostatic pressing (HIP) were investigated. The microstructures were analyzed by optical microscope (OM), scanning electron microscope (SEM) and transmission electron microscopy (TEM). The mechanical properties were measured by tensile testing at room temperature. The results indicate that the as-deposited microstructures are characterized by columnar grains and fine brittle martensite and the as- deposited properties present high strength, low ductility and obvious anisotropy. After annealing at 800-900~C for 2-4 h and HIP at 920~C/100MPa for 2 h, the brittle martensite could be transformed into ductile lamellar (a+~) microstructure and the static tensile properties of SLM-processed Ti-6AI-4V alloys in the machined condition could be comparable to that of wrought materials. Even after HIP treatment, the as-built surfaces could decrease the ductility and reduction of area of SLM-processed fi-6AI-4V alloys to 9.2% and 20%, respectively. The crack initiation could occur at the columnar grain boundaries or at the as-built surfaces. The lamellar (a+13) microstructures and columnar grains could hinder or distort the crack propagation path during tensile tests. 展开更多
关键词 selective laser melting TI-6AL-4V MICROSTRUCTURE mechanical properties FRACTURE surface quality
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Experimental study on mechanism of influence of laser energy density on surface quality of Ti-6Al-4V alloy in selective laser melting 被引量:6
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作者 SHI Wen-tian LI Ji-hang +3 位作者 LIU Yu-de LIU Shuai LIN Yu-xiang HAN Yu-fan 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第10期3447-3462,共16页
This experiment obtained different laser energy density(LED) by changing SLM molding process parameters.The surface morphology, surface quality, and microstructure of as-fabricated samples were studied. The effects of... This experiment obtained different laser energy density(LED) by changing SLM molding process parameters.The surface morphology, surface quality, and microstructure of as-fabricated samples were studied. The effects of scanning speed, hatching space, and laser power on surface quality were analyzed, and the optimal LED range for surface quality was determined. The results show that pores and spherical particles appear on the sample’s surface when low LED is applied, while there are lamellar structures on the sides of the samples. Cracks appear on the sample’s surface,and the splash phenomenon increases when a high LED is taken. At the same time, a large amount of unmelted powder adhered to the side of the sample. The surface quality is the best when the LED is 150-170 J/mm^(3). The preferred hatch space is currently 0.05-0.09 mm, the laser power is 200-350 W, and the average surface roughness value is(15.1±3) μm.The average surface hardness reaches HV404±HV3, higher than the forging standard range of HV340-HV395.Increasing the LED within the experiment range can increase the surface hardness, yet an excessively high LED will not further increase the surface hardness. The microstructure is composed of needle-like α’-phases with a length of about 20μm, in a crisscross ‘N’ shape, when the LED is low. The β-phase grain boundary is not obvious, and the secondaryphase volume fraction is high;when the LED is high, the α’-phase of the microstructure is in the form of coarse slats, and the secondary-phase is composed of a small amount of secondary α’-phase, the tertiary α’-phase and the fourth α’-phase disappear, and the volume fraction of the secondary-phase becomes low. 展开更多
关键词 laser energy density surface quality selective laser melting TI-6AL-4V MICROSTRUCTURE
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Multiple-response optimization for melting process of aluminum melting furnace based on response surface methodology with desirability function 被引量:3
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作者 周孑民 王计敏 +2 位作者 闫红杰 李世轩 贵广臣 《Journal of Central South University》 SCIE EI CAS 2012年第10期2875-2885,共11页
To reduce the fuel consumption and emissions and also enhance the molten aluminum quality, a mathematical model with user-developed melting model and burning capacity model, were established according to the features ... To reduce the fuel consumption and emissions and also enhance the molten aluminum quality, a mathematical model with user-developed melting model and burning capacity model, were established according to the features of melting process of regenerative aluminum melting furnaces. Based on validating results by heat balance test for an aluminum melting furnace, CFD (computational fluid dynamics) technique, in association with statistical experimental design were used to optimize the melting process of the aluminum melting furnace. Four important factors influencing the melting time, such as horizontal angle between burners, height-to-radius ratio, natural gas mass flow and air preheated temperature, were identified by PLACKETT-BURMAN design. A steepest descent method was undertaken to determine the optimal regions of these factors. Response surface methodology with BOX-BEHNKEN design was adopted to further investigate the mutual interactions between these variables on RSD (relative standard deviation) of aluminum temperature, RSD of furnace temperature and melting time. Multiple-response optimization by desirability function approach was used to determine the optimum melting process parameters. The results indicate that the interaction between the height-to-radius ratio and horizontal angle between burners affects the response variables significantly. The predicted results show that the minimum RSD of aluminum temperature (12.13%), RSD of furnace temperature (18.50%) and melting time (3.9 h) could be obtained under the optimum conditions of horizontal angle between burners as 64°, height-to-radius ratio as 0.3, natural gas mass flow as 599 m3/h, and air preheated temperature as 639 ℃. These predicted values were further verified by validation experiments. The excellent correlation between the predicted and experimental values confirms the validity and practicability of this statistical optimum strategy. 展开更多
关键词 aluminum melting furnace melting process response surface methodology desirability function multiple response parameter optimization numerical simulation PLACKETT-BURMAN design BOX-BEHNKEN design
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Surface modification of biomedical Mg-Ca and Mg-Zn-Ca alloys using selective laser melting: Corrosion behaviour, microhardness and biocompatibility 被引量:3
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作者 Xiyu Yao Jincheng Tang +5 位作者 Yinghao Zhou Andrej Atrens Matthew S.Dargusch Bjoern Wiese Thomas Ebel Ming Yan 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2021年第6期2155-2168,共14页
Magnesium alloys such as Mg–Ca and Mg–Zn–Ca are good orthopaedic materials;however their tendency to corrode is high.Herein we utilize selective laser melting(SLM)to modify the surface of these Mg alloys to simulta... Magnesium alloys such as Mg–Ca and Mg–Zn–Ca are good orthopaedic materials;however their tendency to corrode is high.Herein we utilize selective laser melting(SLM)to modify the surface of these Mg alloys to simultaneously improve the corrosion behaviour and microhardness.The corrosion rate decreased from 2.1±0.2 mm/y to 1.0±0.1 mm/y for the laser-processed Mg–0.6Ca,and from 1.6±0.1 mm/y to 0.7±0.2 mm/y for laser-processed Mg–0.5Zn–0.3Ca.The microhardness increased from 46±1 HV to 56±1 HV for Mg–0.6Ca,and from 47±3 HV to 55±3 HV for Mg–0.5Zn–0.3Ca.In addition,good biocompatibility remained in the laser processed Mg alloys.The improved properties are attributed to laser-induced grain refinement,confined impurity elements,residual stress,and modified surface chemistry.The results demonstrated the potential of SLM as a surface engineering approach for developing advanced biomedical Mg alloys. 展开更多
关键词 Mg alloys Selective laser melting surface modification Corrosion behaviour MICROHARDNESS
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Effect of laser surface melting on surface integrity of Al-4.5Cu composites reinforced with SiC and MoS2 被引量:3
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作者 Praveen Kumar BANNARAVURI Anil Kumar BIRRU Uday Shanker DIXIT 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2020年第2期344-362,共19页
Two types of composites were prepared with Al-4.5Cu alloy as a matrix using stir casting method.One was reinforced with 10wt.%of Si C and 2wt.%of MoS2.The other was reinforced with 10wt.%of Si C and 4wt.%of MoS2.Their... Two types of composites were prepared with Al-4.5Cu alloy as a matrix using stir casting method.One was reinforced with 10wt.%of Si C and 2wt.%of MoS2.The other was reinforced with 10wt.%of Si C and 4wt.%of MoS2.Their surfaces were remelted using a CO2 laser beam with an objective to study the influence of laser surface melting(LSM).The topography,microhardness,corrosion resistance and wear resistance of the laser melted surfaces were studied.Overall surface integrity after LSM was compared with as-cast surface.LSM enhanced the microhardness and wear resistance of the surface in each case.Porosity of the laser melted surface was low and corrosion resistance was high.Thus,LSM can be conveniently applied to enhancing the surface integrity of the aluminium composites.However,there is an optimum laser specific energy,around 38 J/m^2 in this study,for obtaining the best surface integrity. 展开更多
关键词 aluminium composites silicon carbide molybdenum disulfide laser surface melting MICROHARDNESS corrosion resistance
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Surface Integrity of Ultrasonically-Assisted Milled Ti6Al4V Alloy Manufactured by Selective Laser Melting 被引量:3
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作者 Sai Guo Wei Du +2 位作者 Qinghong Jiang Zhigang Dong Bi Zhang 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2021年第4期42-55,共14页
The Ti6Al4V parts produced by the existing selective laser melting(SLM)are mainly confronted with poor surface finish and inevitable interior defects,which substantially deteriorates the mechanical properties and perf... The Ti6Al4V parts produced by the existing selective laser melting(SLM)are mainly confronted with poor surface finish and inevitable interior defects,which substantially deteriorates the mechanical properties and performances of the parts.In this regard,ultrasonically-assisted machining(UAM)technique is commonly introduced to improve the machining quality due to its merits in increasing tool life and reducing cutting force.However,most of the previous studies focus on the performance of UAM with ultrasonic vibrations applied in the tangential and feed directions,whereas few of them on the impact of ultrasonic vibration along the vertical direction.In this study,the effects of feed rate on surface integrity in ultrasonically-assisted vertical milling(UAVM)of the Ti6Al4V alloy manufactured by SLM were systemically investigated compared with the conventional machining(CM)method.The results revealed that the milling forces in UAVM showed a lower amplitude than that in CM due to the intermittent cutting style.The surface roughness values of the parts produced by UAVM were generally greater than that by CM owing to the extra sinusoidal vibration textures induced by the milling cutter.Moreover,the extra vertical ultrasonic vibration in UAVM was beneficial to suppressing machining chatter.As feed rate increased,surface microhardness and thickness of the plastic deformation zone in CM raised due to more intensive plastic deformation,while these two material properties in UAVM were reduced owing to the mitigated impact effect by the high-frequency vibration of the milling cutter.Therefore,the improved surface microhardness and reduced thickness of the subsurface deformation layer in UAVM were ascribed to the vertical high-frequency impact of the milling cutter in UAVM.In general,the results of this study provided an in-depth understanding in UAVM of Ti6Al4V parts manufactured by SLM. 展开更多
关键词 Ultrasonically-assisted vertical milling surface integrity TI6AL4V Selective laser melting
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Effects of laser surface melting on crystallographic texture, microstructure, elastic modulus and hardness of Ti-30Nb-4Sn alloy 被引量:2
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作者 Leonardo FANTON Nelson Batista de LIMA +3 位作者 Emilio Rayon ENCINAS Vicente Amigo BORRAS Conrado Ramos Moreira AFONSO Joao Batista FOGAGNOLO 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2020年第2期392-404,共13页
The biocompatibility of orthopedic implants is closely related to their elastic modulus and surface properties.The objective of this study was to determine the effects of cold rolling,recrystallization and laser surfa... The biocompatibility of orthopedic implants is closely related to their elastic modulus and surface properties.The objective of this study was to determine the effects of cold rolling,recrystallization and laser surface melting(LSM)on the microstructure and mechanical properties of a biphase(α″+β)Ti-30Nb-4Sn alloy.X-ray diffraction(XRD)texture analysis of the cold-rolled substrate revealed the[302]α″//ND texture component,while analysis of the recrystallized substrate showed the[302]α″//ND and[110]α″//ND components.Theβ-phase texture could not be directly measured by XRD,but the presence of the[111]β//ND texture component was successfully predicted by considering the orientation relationship between theα″andβphases.Nanoindentation measurements showed that the elastic modulus of the cold-rolled substrate(63GPa)was lower than that of the recrystallized substrate(74GPa).Based on the available literature and the results presented here,it is suggested that this difference is caused by the introduction of crystal defects during cold deformation.The combined nanoindentation/EBSD analysis showed that the nanoindentation results are not affected by crystal orientation.LSM of the deformed alloy produced changes in hardness,elastic modulus and crystallographic texture similar to those produced by recrystallization heat treatment,creating a stiffness gradient between surface and substrate. 展开更多
关键词 titanium alloy cold rolling laser surface melting RECRYSTALLIZATION crystallographic texture stiffness-graded material
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Thermodynamics of Molten Pool Predicted by Computational Fluid Dynamics in Selective Laser Melting of Ti6Al4V:Surface Morphology Evolution and Densification Behavior 被引量:1
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作者 Donghua Dai Dongdong Gu +3 位作者 Qing Ge Chenglong Ma Xinyu Shi Han Zhang 《Computer Modeling in Engineering & Sciences》 SCIE EI 2020年第9期1085-1098,共14页
The three-dimensional physical model of the randomly packed powder material irradiated by the laser beam was established,taking into account the transformation of the material phase,the melt spreading and the interact... The three-dimensional physical model of the randomly packed powder material irradiated by the laser beam was established,taking into account the transformation of the material phase,the melt spreading and the interaction of the free surface of the molten pool and the recoiling pressure caused by the material evaporation during the selective laser melting.Influence of the processing parameters on the thermal behavior,the material evaporation,the surface morphology and the densification behavior in the connection region of the molten pool and the substrate was studied.It was shown that the powder material underwent the transformation from the partial melting state to the complete melting state and finally to the overheating state with the applied laser energy density increasing from 167 J/mm^(3) to 417 J/mm^(3).Therefore,the solidified track ranged from the discontinuous tracks with the rough surface to the continuous tracks with residual porosities,then to the continuous and dense tracks and terminally to the fluctuated tracks with the increase in the laser energy density.Meanwhile,the laser energy effect depth was maintained the positive relationship with the laser energy density.The vortex velocity obtained in the free surface of the molten pool towards to the rear region in the opposite laser scan direction promoted the melt convection to the edge region of the molten pool as the laser energy density was higher than 277 J/mm^(3),demonstrating the efficient energy dissipation from the center of the irradiation region to the whole part of the molten pool and the attendant production of the sufficient melt volume.Therefore,the efficient spreading of the molten pool and the metallurgical bonding ability of the melt with the substrate was obtained at the optimized laser energy density of 277 J/mm^(3).However,the severe material evaporation would take place as the melt was overheated,resulting in the formation of the residual pores and poor surface quality. 展开更多
关键词 Additive manufacturing melt convection surface morphology densification behavior numerical simulation
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Molecular dynamics simulation of surface melting behaviours of the V(110) plane
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作者 阳喜元 胡望宇 +1 位作者 袁晓俭 蔡新华 《Chinese Physics B》 SCIE EI CAS CSCD 2008年第7期2633-2638,共6页
The modified analytic embedded-atom method and molecular dynamics simulations are applied to the investigation of the surface premelting and melting behaviours of the V(110) plane by calculating the interlayer relax... The modified analytic embedded-atom method and molecular dynamics simulations are applied to the investigation of the surface premelting and melting behaviours of the V(110) plane by calculating the interlayer relaxation, the layer structure factor and atomic snapshots in this paper. The results obtained indicate that the premelting phenomenon occurs on the V(110) surface at about 1800K and then a liquid-like layer, which approximately keeps the same thickness up to 2020K, emerges on it. We discover that the temperature 2020K the V(110) surface starts to melt and is in a completely disordered state at the temperature of 2140K under the melting point for the bulk vanadium. 展开更多
关键词 surface melting V(110) planet the modified analytic embedded-atom method MOLECULARDYNAMICS
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Surface treatment of 0Cr19Ni9 stainless steel SMAW joint by plasma melting
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作者 罗伟 栾景飞 严密 《Journal of Zhejiang University Science》 CSCD 2002年第3期272-277,共6页
Micro plasma arc surface melting of 0Cr19Ni9 shielded metal arc welding joint with a micro plasma arc welder produced a thin surface melted layer with a refined microstructure. The surface treatment changed the anod... Micro plasma arc surface melting of 0Cr19Ni9 shielded metal arc welding joint with a micro plasma arc welder produced a thin surface melted layer with a refined microstructure. The surface treatment changed the anodic polarization behavior in 0.5 mol/L H 2SO 4 solution. The polarization tests showed that for the as welded joint both the heat affected zone and the weld metal decreased in resistance to corrosion compared with the as received parent material while for the micro plasma arc surface melted joint the corrosion resistance increased significantly. This increase in corrosion resistance is attributed to the rapid solidification of the melted layer. Rapid solidification of the melted layer refines its microstructure, decreases its microsegregation, and inhibits the precipitation of chromium carbides at the grain boundaries. 展开更多
关键词 surface melting Stainless steels Plasma arc Welding joint
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Assessment of Greenland surface melt algorithms based on DMSP and SMOS data
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作者 LI Qian WANG Che +2 位作者 ZHANG Tong CHENG Wei DING Minghu 《Advances in Polar Science》 CSCD 2023年第3期177-189,共13页
Satellite-borne microwave radiometers provide essential measurements to study the surface melt state of ice sheets. Therefore, selecting suitable microwave radiometer data is critical to characterize the spatial distr... Satellite-borne microwave radiometers provide essential measurements to study the surface melt state of ice sheets. Therefore, selecting suitable microwave radiometer data is critical to characterize the spatial distribution of surface melt. In this study, we investigated the Greenland Ice Sheet and evaluated the usefulness, as climate indicators, of data acquired by microwave radiometers onboard the F17 satellite of the United States of America Defense Meteorological Satellite Program(DMSP) and the Soil Moisture and Ocean Salinity(SMOS) satellite of the European Space Agency. First, surface melt was simulated using the DMSP dataset as input for a brightness temperature threshold algorithm, the Microwave Emission Model of Layered Snowpacks(MEMLS2), and the SMOS dataset as input for the L-band Specific MEMLS(LS-MEMLS). For accuracy evaluation, the simulation results were then compared with surface melt estimates derived from air temperature measurements at Automatic Weather Stations and from ice surface temperature measurements from the Moderate Resolution Imaging Spectroradiometer(MODIS) satellite-borne instrument. Our results show that global(over Greenland) MEMLS2 simulation performance(overall accuracy 83%) was higher than that of LS-MEMLS(overall accuracy 78%). However, in southeastern Greenland, MEMLS2 omission error was markedly higher than that of LS-MEMLS, whereas LS-MEMLS could detect longer-lasting surface melt than MEMLS2. This analysis showed that DMSP-based surface melt simulations are more accurate than SMOS-based simulations, thereby providing a data selection reference for surface melt studies of the Greenland Ice Sheet. 展开更多
关键词 Greenland Ice Sheet surface melt microwave radiometer MEMLS2 LS-MEMLS
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激光熔凝处理对P20钢组织及性能的影响
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作者 李勇 缪星旭 +3 位作者 张成佳 姜鹤明 王坤 王小瑾 《表面技术》 EI CAS CSCD 北大核心 2024年第9期209-215,共7页
目的提高P20模具钢的表面硬度和耐磨性能。方法采用激光熔凝技术对P20模具钢表面进行强化处理。通过硬度梯度检测和摩擦磨损测试,分别评价熔凝层的硬度分布特征和耐磨性能,并通过光学显微镜和扫描电子显微镜对熔凝层及磨痕形貌进行分析... 目的提高P20模具钢的表面硬度和耐磨性能。方法采用激光熔凝技术对P20模具钢表面进行强化处理。通过硬度梯度检测和摩擦磨损测试,分别评价熔凝层的硬度分布特征和耐磨性能,并通过光学显微镜和扫描电子显微镜对熔凝层及磨痕形貌进行分析。结果使用激光输出功率为500W、光斑直径为2.5mm、聚焦透镜距离为40 mm、扫描速度为6 mm/s、搭接率为45%、氮气保护的激光熔凝工艺所得熔凝层的组织细小,无脱碳、畸变、裂纹等缺陷,熔凝处理质量高。熔凝过程中单道激光熔凝层呈半椭圆形分布,最大深度为610~620μm。熔凝处理后表面硬度提升显著,熔凝层的硬度分布与熔凝层的区域位置有关,具有较高硬度且硬度保持基本稳定的熔凝层深度约为400μm;单道激光熔凝层最高硬度可达460~480HV,重叠影响区即双熔凝区的最高硬度在540~560HV之间,即熔凝层硬度普遍较基体硬度提高了60%以上。此外,P20模具钢经过激光熔凝处理后耐磨性能提升明显,其平均摩擦因数约为0.85,熔凝处理的磨损失重较未处理的试样减少了约61%,其磨损机制主要表现为磨粒磨损和少量的黏着磨损或剥落脱离。结论激光熔凝处理能够显著提高P20模具钢的表面硬度和耐磨性能,试验采用的激光熔凝工艺可在P20钢表面获得硬度较高且稳定可靠的熔凝层深度在400μm左右,能将P20模具钢的表面硬度及耐磨性提高60%以上。 展开更多
关键词 P20模具钢 激光熔凝 熔凝层 显微硬度 金相组织 摩擦磨损
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Inconel 718增材成形件的铣削分析及工艺参数优化
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作者 张乐 白海清 +3 位作者 张祎 贾宗强 周俊 任泽康 《制造技术与机床》 北大核心 2024年第8期143-149,共7页
鉴于激光选区熔化Inconel 718成形件的表面质量和尺寸精度难以满足精密零部件的使用要求,首先,通过铣削减材后处理工艺,分析了不同铣削参数(铣削速度v_(c)、铣削深度a_(p)、铣削宽度a_(e)、每齿进给量f_(z))组合对切削合力(F)、表面粗... 鉴于激光选区熔化Inconel 718成形件的表面质量和尺寸精度难以满足精密零部件的使用要求,首先,通过铣削减材后处理工艺,分析了不同铣削参数(铣削速度v_(c)、铣削深度a_(p)、铣削宽度a_(e)、每齿进给量f_(z))组合对切削合力(F)、表面粗糙度值(Ra)的影响规律,再基于灰色关联分析方法,将多目标转化为灰色关联度(GR)单一目标优化,采用逐步回归法建立GR二阶回归预测模型,最后利用粒子群算法得到最优参数组合。结果表明,对F影响的重要性依次为f_(z)、v_(c)、a_(p)、a_(e),对Ra影响的重要性依次为f_(z)、a_(p)、v_(c)、a_(e),铣削减材后Ra最大下降97.80%,平均下降94.03%;所建立预测模型最大误差不超过5%;GR最优解为0.817 3,所对应的最优铣削工艺参数组合为v_(c)=46.96 m/min、a_(p)=0.25 mm、a_(e)=2.90 mm、f_(z)=0.025 mm/z。 展开更多
关键词 激光选区熔化 铣削 表面粗糙度 灰色关联分析 粒子群算法
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超声滚压对激光选区熔化铝锂合金残余应力的影响模拟研究
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作者 张伟 李礼 +4 位作者 吴郡苓 戴凌 李鹏飞 张红梅 周建忠 《工具技术》 北大核心 2024年第10期67-74,共8页
研究了铝锂合金试样激光选区熔化残余应力分布以及超声滚压对其应力场的影响。先后建立了单道扫描模型、试样模型以及超声滚压模型;分析了单道扫描模型的温度历史,并将此温度历史扩展至试样的沉积层,最终通过热力耦合与显示动力学分析... 研究了铝锂合金试样激光选区熔化残余应力分布以及超声滚压对其应力场的影响。先后建立了单道扫描模型、试样模型以及超声滚压模型;分析了单道扫描模型的温度历史,并将此温度历史扩展至试样的沉积层,最终通过热力耦合与显示动力学分析获得激光选区熔化和超声滚压后的残余应力分布。结果表明,激光选区熔化试样顶部与四周出现了较大的残余拉应力;在超声滚压作用下,试样表层产生了高频振荡的应力场,并产生了较大的瞬时应力;试样表面残余拉应力转化为压应力,随着深度增加,残余压应力先增大后逐渐减小并逐渐转变为拉应力,最终恢复至激光选区熔化后的应力状态;模拟预测的结果与试验结果吻合较好,具有合理的精度。 展开更多
关键词 铝锂合金 激光选区熔化 超声滚压 残余应力 有限元分析
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选区激光熔化过程熔池缺陷的形成机理研究
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作者 周翔 江五贵 +2 位作者 李琦 陈韬 彭杰 《计算力学学报》 CAS CSCD 北大核心 2024年第5期816-821,850,共7页
采用三维高保真计算流体动力学模型,研究了镍基高温合金GH4169在SLM过程中的熔池流动和缺陷形成过程,揭示了剥蚀和球化等缺陷的形成机理。结果表明,熔池的驱动力主要为马兰戈尼力和表面张力,马兰戈尼力促使熔池由内而外流动,而表面张力... 采用三维高保真计算流体动力学模型,研究了镍基高温合金GH4169在SLM过程中的熔池流动和缺陷形成过程,揭示了剥蚀和球化等缺陷的形成机理。结果表明,熔池的驱动力主要为马兰戈尼力和表面张力,马兰戈尼力促使熔池由内而外流动,而表面张力导致熔池由外向内流动。剥蚀现象一般出现在熔池附近,当剥蚀区域较小时,剥蚀呈周期性出现和消失。而当剥蚀区域较大时,少量的熔融液体无法填充大区域的剥蚀,导致表面质量退化。当熔池的长深比小于3.4时,在高温区(马兰戈尼力为主要驱动力)与低温区(表面张力为主要驱动力)的交界处更容易发生球化现象。研究成果有助于指导工艺优化提升选区激光熔化成形件的表面质量。 展开更多
关键词 选区激光熔化 计算流体动力学 镍基高温合金 熔池缺陷 表面质量
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