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Interplay of laser power and pore characteristics in selective laser melting of ZK60 magnesium alloys:A study based on in-situ monitoring and image analysis
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作者 Weijie Xie Hau-Chung Man Chi-Wai Chan 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2024年第4期1346-1366,共21页
This study offers significant insights into the multi-physics phenomena of the SLM process and the subsequent porosity characteristics of ZK60 Magnesium(Mg)alloys.High-speed in-situ monitoring was employed to visualis... This study offers significant insights into the multi-physics phenomena of the SLM process and the subsequent porosity characteristics of ZK60 Magnesium(Mg)alloys.High-speed in-situ monitoring was employed to visualise process signals in real-time,elucidating the dynamics of melt pools and vapour plumes under varying laser power conditions specifically between 40 W and 60 W.Detailed morphological analysis was performed using Scanning-Electron Microscopy(SEM),demonstrating a critical correlation between laser power and pore formation.Lower laser power led to increased pore coverage,whereas a denser structure was observed at higher laser power.This laser power influence on porosity was further confirmed via Optical Microscopy(OM)conducted on both top and cross-sectional surfaces of the samples.An increase in laser power resulted in a decrease in pore coverage and pore size,potentially leading to a denser printed part of Mg alloy.X-ray Computed Tomography(XCT)augmented these findings by providing a 3D volumetric representation of the sample internal structure,revealing an inverse relationship between laser power and overall pore volume.Lower laser power appeared to favour the formation of interconnected pores,while a reduction in interconnected pores and an increase in isolated pores were observed at higher power.The interplay between melt pool size,vapour plume effects,and laser power was found to significantly influence the resulting porosity,indicating a need for effective management of these factors to optimise the SLM process of Mg alloys. 展开更多
关键词 selective laser melting(slm) Magnesium(Mg)alloys Biodegradable implants POROSITY In-situ monitoring
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Selective Laser Melting of Novel SiC and TiC Strengthen 7075 Aluminum Powders for Anti-Cracks Application
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作者 Yingjie Li Hanlin Liao 《Journal of Materials Science and Chemical Engineering》 2024年第4期136-142,共7页
The aerospace and military sectors have widely used AA7075, a type of 7075 aluminum alloy, due to its exceptional mechanical performance. Selective laser melting (SLM) is a highly effective method for producing intric... The aerospace and military sectors have widely used AA7075, a type of 7075 aluminum alloy, due to its exceptional mechanical performance. Selective laser melting (SLM) is a highly effective method for producing intricate metallic components, particularly in the case of aluminum alloys like Al-Si-Mg. Nevertheless, the production of high-strength AA7075 by SLM is challenging because of its susceptibility to heat cracking and elemental vaporization. In this study, AA7075 powders were mechanically mixed with SiC and TiC particles. Subsequently, this new type of AA7075 powder was effectively utilized in green laser printing to create solid components with fine-grain strengthening microstructures consisting of equiaxial grains. These as-printed parts exhibit a tensile strength of up to 350 MPa and a ductility exceeding 2.1%. Hardness also increases with the increasing content of mixed powder, highlighting the essential role of SiC and TiC in SLM for improved hardness and tensile strength performance. . 展开更多
关键词 selective laser melting (slm) AA 7075 Fine Grain Strengthen TiC SIC Green laser
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Effects of heat input on layer heterogeneity of selective laser melting Ti-6Al-4V components 被引量:2
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作者 陈昌荣 刘畅 +4 位作者 王乾廷 练国富 黄旭 冯美艳 戴继成 《China Welding》 CAS 2023年第3期51-66,共16页
Due to the layer-by-layer manufacturing characteristics,metallurgical process of selective laser melting(SLM)is inherently dif-ferent in the building direction because of varying conditions,thereby resulting inter-lay... Due to the layer-by-layer manufacturing characteristics,metallurgical process of selective laser melting(SLM)is inherently dif-ferent in the building direction because of varying conditions,thereby resulting inter-layer heterogeneity.To mitigate such anisotropy,it is of great significance to understand the effects of processing parameters on the property evolution and thus metallurgy of fabrication process.This research proposes one-factor-at-a-time experiment to investigate the influences of laser power and scanning speed on the surface qual-ity,microstructures and mechanical properties of selective laser melted Ti-6Al-4V parts.Surface quality is assessed by roughness around the printings while mechanical properties are evaluated through microhardness and tensile strengths.Phases in microstructure are quantified by XRD to correlate with mechanical properties.Fracture morphology is analyzed to understand the effect of defects and microstructure on mechanical performance.The optimized parameter corresponding to best surface quality and mechanical properties has been found respect-ively in laser power of 190 W and scanning speed of 800 mm/s.After optimization,surface roughness has decreased by 44.47%for upper surface.Yielding strength,tensile strength and elongation rate have improved by 13.17%,43.34%and 64.51%,respectively,with similar hardness and Young’s modulus.In addition,heterogeneity of mechanical properties has great improvement by a range of 31.63%-92.68%. 展开更多
关键词 selective laser melting TI-6AL-4V inter-layer heterogeneity tensile properties heat input
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Microstructure,Properties and Crack Suppression Mechanism of High-speed Steel Fabricated by Selective Laser Melting at Different Process Parameters
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作者 Wenbin Ji Chuncheng Liu +1 位作者 Shijie Dai Riqing Deng 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2023年第2期91-105,共15页
To enrich material types applied to additive manufacturing and enlarge application scope of additive manufacturing in conformal cooling tools,M2 high-speed steel specimens were fabricated by selective laser melting(SL... To enrich material types applied to additive manufacturing and enlarge application scope of additive manufacturing in conformal cooling tools,M2 high-speed steel specimens were fabricated by selective laser melting(SLM).Effects of SLM parameters on the microstructure and mechanical properties of M2 high-speed steel were investigated.The results showed that substrate temperature and energy density had significant influence on the densification process of materials and defects control.Models to evaluate the effect of substrate temperature and energy density on hardness were studied.The optimized process parameters,laser power,scan speed,scan distance,and substrate temperature,for fabricated M2 are 220 W,960 mm/s,0.06 mm,and 200℃,respectively.Based on this,the hardness and tensile strength reached 60 HRC and 1000 MPa,respectively.Interlaminar crack formation and suppression mechanism and the relationship between temperature gradient and thermal stress were illustrated.The inhibition effect of substrate temperature on the cracks generated by residual stresses was also explained.AM showed great application potential in the field of special conformal cooling cutting tool preparation. 展开更多
关键词 selective laser melting High-speed steel Mechanical properties MICROSTRUCTURE Interlaminar cracks
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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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Design and Manufacture of Bionic Porous Titanium Alloy Spinal Implant Based on Selective Laser Melting(SLM) 被引量:2
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作者 Xiaojun Chen Di Wang +4 位作者 Wenhao Dou Yimeng Wang Yongqiang Yang Jianhua Wang Jie Chen 《Computer Modeling in Engineering & Sciences》 SCIE EI 2020年第9期1099-1117,共19页
In order to meet the clinical requirements of spine surgery,this paper proposed the exploratory research of computer-aided design and selective laser melting(SLM)fabrication of a bionic porous titanium spine implant.T... In order to meet the clinical requirements of spine surgery,this paper proposed the exploratory research of computer-aided design and selective laser melting(SLM)fabrication of a bionic porous titanium spine implant.The structural design of the spinal implant is based on CT scanning data to ensure correct matching,and the mechanical properties of the implant are verified by simulation analysis and laser selective melting experiment.The surface roughness of the spinal implant manufactured by SLM without post-processing is Ra 15μm,and the implant is precisely jointed with the photosensitive resin model of the upper and lower spine.The surface micro-hardness of the implant is HV 373,tensile strengthσ_(b)=1238.7 MPa,yield strengthσ_(0.2)=1043.9 MPa,the elongation is 6.43%,and the compressive strength of porous structure under 84.60%porosity is 184.09 MPa,which can meet the requirements of the reconstruction of stable spines.Compared with the traditional implant and intervertebral fusion cage,the bionic porous spinal implant has the advantages of accurate fit,porous bionic structure and recovery of patients,and the ion release experiment proved that implants manufactured by SLM are more suitable for clinical application after certain treatments.The elastic modulus of the sample is improved after heat treatment,mainly because the microstructure of the sample changes fromα’phase toα+βdual-phase after heat treatment.In addition,the design of high-quality bionic porous spinal implants still needs to be optimized for the actual needs of doctors. 展开更多
关键词 selective laser melting(slm) titanium spinal implant bionic porous
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WE43镁合金SLM成形数值模拟及试验验证
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作者 门正兴 王亮 +4 位作者 李坤 陈雯 吉辰 李子澈 屈仁春 《精密成形工程》 北大核心 2024年第4期138-146,共9页
目的研究WE43镁合金激光选区熔化(SLM)成形过程、成形后变形及应力分布的变化规律,得到SLM态WE43常温拉伸力学模型。方法采用SLM方法制备了WE43镁合金悬臂梁及拉伸试样,通过对比悬臂梁局部切割翘曲试验结果与数值模拟结果,得到WE43镁合... 目的研究WE43镁合金激光选区熔化(SLM)成形过程、成形后变形及应力分布的变化规律,得到SLM态WE43常温拉伸力学模型。方法采用SLM方法制备了WE43镁合金悬臂梁及拉伸试样,通过对比悬臂梁局部切割翘曲试验结果与数值模拟结果,得到WE43镁合金固有应变模型,实现WE43镁合金SLM成形过程的模拟及变形预测;对SLM态WE43镁合金开展拉伸试验,使用金相显微镜及扫描电镜进行微观组织及断口形貌观察;采用Normalized Cockcroft&Latham模型对拉伸试验进行模拟,实现SLM态WE43常温拉伸过程分析。结论常温SLM态WE43的抗拉强度为313 MPa,屈服强度为236 MPa,延伸率为7.6%,试样中存在不规则孔洞缺陷;在SLM成形过程中,WE43镁合金固有应变值exx、eyy、ezz分别为−0.0025、−0.0025、−0.0115,悬臂梁最大翘曲高度为1.99 mm,模拟结果显示未切割悬臂梁最大等效应力为12.3 MPa;当NC&L断裂准则临界损伤值为0.1时,WE43常温拉伸过程模拟结果与试验结果最为接近,预测准确率为93%。 展开更多
关键词 WE43 激光选区熔化 固有应变 数值模拟
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基于医学CT与SLM技术的踝关节骨骼逆向建模与制备
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作者 赵丽 刘江豪 +2 位作者 徐洋洋 刘旭波 余廷 《热加工工艺》 北大核心 2024年第13期85-88,93,共5页
基于医学CT与3D打印技术实现了骨骼重建与制造。通过对病人踝关节骨骼原始CT数据的采集,运用医学逆向工程软件Mimics及Geomagic软件对骨骼分别进行三维模型重建和骨骼曲面修复、优化,得到了骨面较为光滑平整的踝关节模型。通过对骨骼模... 基于医学CT与3D打印技术实现了骨骼重建与制造。通过对病人踝关节骨骼原始CT数据的采集,运用医学逆向工程软件Mimics及Geomagic软件对骨骼分别进行三维模型重建和骨骼曲面修复、优化,得到了骨面较为光滑平整的踝关节模型。通过对骨骼模型进行静力学分析,说明在人体结构生物力学条件下,所建立的踝关节三维模型满足力学要求。通过实验获得了TC4钛合金激光选区熔化(SLM)技术的优化工艺参数为激光功率240 W,扫描速度800 mm/s,扫描间距为0.12 mm,铺粉厚度为0.05 mm。采用该工艺参数和所建立的踝关节模型,实现了TC4钛合金踝关节3D打印逆向制造,所得制品的形状与组织成分优,满足医学使用要求。 展开更多
关键词 医学CT 3D打印 踝关节骨骼 逆向建模 激光选区熔化(slm)
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基于离散元法的SLM刮刀倾角对粉末铺展行为的影响研究
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作者 李雯 刘其鹏 +3 位作者 高月华 楚锡华 张昭 王振军 《力学学报》 EI CAS CSCD 北大核心 2024年第3期774-784,共11页
刮刀倾角对选区激光熔化过程粉末铺展行为有重要影响.基于离散元法建立铺粉数值模型,对不同刮刀倾角的铺粉过程及粉层质量进行模拟研究.针对不同的刮刀倾角,提出一个量化指标对粉层铺展的致密度和均匀性进行综合评估,获得刮刀倾角对粉... 刮刀倾角对选区激光熔化过程粉末铺展行为有重要影响.基于离散元法建立铺粉数值模型,对不同刮刀倾角的铺粉过程及粉层质量进行模拟研究.针对不同的刮刀倾角,提出一个量化指标对粉层铺展的致密度和均匀性进行综合评估,获得刮刀倾角对粉层质量的影响规律.根据颗粒分布及运动特征将粉堆颗粒体系划分为底层区、斜坡区、刮刀影响区和内部区4个区域.针对各区域进行铺粉过程动力学机理的深入研究,包括颗粒运动轨迹和速度场、刮刀前方剪切带、颗粒间力链分布及演化等.研究发现:刮刀倾角小于0时,颗粒体系难以形成完整的环流运动,剪切带较小,流向沉积层的颗粒较少,颗粒间强力链较少,刮刀间隙前方易形成力拱导致颗粒堵塞,进而形成空斑使得沉积层的致密度和均匀性较低.刮刀倾角大于0时,颗粒体系的环流运动较充分,剪切带较大,流向沉积层的颗粒增多,随倾角增大强力链增多,刮刀压实作用增强,有利于沉积层致密度和均匀性的提高.本研究为优化工艺参数、提高粉层沉积质量提供了理论基础. 展开更多
关键词 选区激光熔化 离散单元法 铺粉过程 刮刀倾角 流动机理
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SLM成形IN738LC合金的微动磨损行为及磨损机理
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作者 胡勇 张旭 +2 位作者 贾慧斌 王少辉 柴利强 《中国有色金属学报》 EI CAS CSCD 北大核心 2024年第4期1393-1404,共12页
本文通过高精度微动摩擦磨损试验机(SRV-V),以球/平面点接触模式对选区激光熔化(SLM)技术制备的IN738LC合金进行切向微动磨损实验,系统研究了恒定载荷条件下(50 N),不同位移幅值(50、100、150、200μm)试样的微动磨损行为及其磨损机理... 本文通过高精度微动摩擦磨损试验机(SRV-V),以球/平面点接触模式对选区激光熔化(SLM)技术制备的IN738LC合金进行切向微动磨损实验,系统研究了恒定载荷条件下(50 N),不同位移幅值(50、100、150、200μm)试样的微动磨损行为及其磨损机理。结果表明:随着位移幅值增加,试样的摩擦因数和磨损体积逐渐增大,微动磨损运行状态由混合区逐渐转变为完全滑移区,50μm试样的磨损机理为轻微氧化磨损和疲劳磨损,200μm试样的磨损机理转变为氧化磨损、疲劳磨损和磨粒磨损。此外,磨痕中的微裂纹分布强烈依赖于微动区类型,即微裂纹出现在黏着区域和滑移区域的交界位置及完全滑移区域内。由于磨痕边缘存在犁削作用,磨痕形状由圆形变为椭圆形。 展开更多
关键词 选区激光熔化 IN738LC合金 微动磨损 位移幅值 磨损机理
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Defect Formation Mechanisms in Selective Laser Melting:A Review 被引量:63
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作者 Bi Zhang Yongtao Li Qian Bai 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2017年第3期515-527,共13页
Defect formation is a common problem in selective laser melting (SLM). This paper provides a review of defect formation mechanisms in SLM. It sum- marizes the recent research outcomes on defect findings and classifi... Defect formation is a common problem in selective laser melting (SLM). This paper provides a review of defect formation mechanisms in SLM. It sum- marizes the recent research outcomes on defect findings and classification, analyzes formation mechanisms of the common defects, such as porosities, incomplete fusion holes, and cracks. The paper discusses the effect of the process parameters on defect formation and the impact of defect formation on the mechanical properties of a fabri- cated part. Based on the discussion, the paper proposes strategies for defect suppression and control in SLM. 展开更多
关键词 selective laser melting Process parameters -Defect Mechanical properties
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Influence of graphene oxide(GO)on microstructure and biodegradation of ZK30-xGO composites prepared by selective laser melting 被引量:6
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作者 Jun-Xi Tao Ming-Chun Zhao +5 位作者 Ying-Chao Zhao Deng-Feng Yin Long Liu Chengde Gao Cijun Shuai Andrej Atrens 《Journal of Magnesium and Alloys》 SCIE EI CAS 2020年第3期952-962,共11页
Different graphene oxide(GO)contents were chosen as the addition to prepare ZK30-xGO composites by selective laser melting(SLM).The microstructure and biodegradation of the SLMed ZK30-xGO composites were investigated.... Different graphene oxide(GO)contents were chosen as the addition to prepare ZK30-xGO composites by selective laser melting(SLM).The microstructure and biodegradation of the SLMed ZK30-xGO composites were investigated.The results indicated that(i)SLM effectively produced a small grain size,(ii)the incorporation of GO into ZK30 caused a further decrease in grain size,and(iii)GO has a strong effect on the formation of the MgZn2 precipitates.The SLMed ZK30-0.6GO had the lowest biodegradation rate,which is attributed to the fact that the effect of the increased grain refinement and decreased amount of the MgZn?precipitates counteracted the effect of the increased GO content on the biodegradation rate.Furthermore,the SLMed ZK30-xGO composites had good cytocompatibility.This work provided a novel approach to the composition design and fabrication of novel biodegradable GO reinforced Mg-based biomedical implants. 展开更多
关键词 Mg alloy ZK30-xGO composite selective laser melting(slm) BIODEGRADATION CYTOCOMPATIBILITY
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Development of Micro Selective Laser Melting:The State of the Art and Future Perspectives 被引量:13
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作者 Balasubramanian Nagarajan Zhiheng Hu +2 位作者 Xu Song Wei Zhai Jun Wei 《Engineering》 SCIE EI 2019年第4期702-720,共19页
Additive manufacturing(AM)is gaining traction in the manufacturing industry for the fabrication of components with complex geometries using a variety of materials.Selective laser melting(SLM)is a common AM technique t... Additive manufacturing(AM)is gaining traction in the manufacturing industry for the fabrication of components with complex geometries using a variety of materials.Selective laser melting(SLM)is a common AM technique that is based on powder-bed fusion(PBF)to process metals;however,it is currently focused only on the fabrication of macroscale and mesoscale components.This paper reviews the state of the art of the SLM of metallic materials at the microscale level.In comparison with the direct writing techniques that are commonly used for micro AM,micro SLM is attractive due to a number of factors,including a faster cycle time,process simplicity,and material versatility.A comprehensive evaluation of various research works and commercial systems for the fabrication of microscale parts using SLM and selective laser sintering(SLS)is conducted.In addition to identifying existing issues with SLM at the microscale,which include powder recoating,laser optics,and powder particle size,this paper details potential future directions.A detailed review of existing recoating methods in powder-bed techniques is conducted,along with a description of emerging efforts to implement dry powder dispensing methods in the AM domain.A number of secondary finishing techniques for AM components are reviewed,with a focus on implementation for microscale features and integration with micro SLM systems. 展开更多
关键词 ADDITIVE manufacturing selective laser melting MICROFABRICATION Hybrid processing Powder-bed RECOATING
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In uence of Particle Size on Laser Absorption and Scanning Track Formation Mechanisms of Pure Tungsten Powder During Selective Laser Melting 被引量:7
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作者 Jiayao Zhang Dongdong Gu +4 位作者 Ying Yang Hongmei Zhang Hongyu Chen Donghuai Dai Kaijie Lin 《Engineering》 SCIE EI 2019年第4期736-745,共10页
A three-dimensional laser absorption model based on ray tracing was established to describe the coupled interaction of a laser beam with particles in the powder layers of pure tungsten(W)material processed by selectiv... A three-dimensional laser absorption model based on ray tracing was established to describe the coupled interaction of a laser beam with particles in the powder layers of pure tungsten(W)material processed by selective laser melting(SLM).The influence of particle size on the powder-to-laser absorptivity and underlying absorption behavior was investigated.An intrinsic relationship between the absorption,distribution of absorbed irradiance within the powder layers,and surface morphology and geometric characteristics(e.g.,contact angle,width and height of tracks,and remelted depth)of the laser scanning tracks is presented here.Simulation conclusions indicate that the absorptivity of the powder layers considerably exceeds the single powder particle value or the dense solid material value.With an increase in particle size,the powder layer absorbs less laser energy.The maximum absorptivity of theWpowder layers reached 0.6030 at the particle size of 5 lm.The distribution of laser irradiance on the particle surface was sensitive to particle size,azimuthal angle,and the position of the powder particles on the substrate.The maximum irradiance in the powder layers decreased from 1.117×10^–3 to 0.85×10^–3W·μm^-2 and the contour of the irradiance distribution in the center of the irradiated area gradually contracted when the particle size increased from 5 to 45 lm.An experimental study on the surface morphologies and cross-sectional geometric characteristics of SLM-fabricated W material was performed,and the experimental results validated the mechanisms of the powder-to-laser-absorption behavior that were obtained in simulations.This work provides a scientific basis for the application of the ray-tracing model to predict the wetting and spreading ability of melted tracks during SLM additive manufacturing in order to yield a sound laser processability. 展开更多
关键词 selective laser melting(slm) Tungsten RAY-TRACING model ABSORPTIVITY laser SCANNING TRACKS
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In situ monitoring methods for selective laser melting additive manufacturing process based on images-A review 被引量:4
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作者 Bo Wu Xiao-yuan Ji +5 位作者 Jian-xin Zhou Huan-qing Yang Dong-jian Peng Ze-ming Wang Yuan-jie Wu Ya-jun Yin 《China Foundry》 SCIE CAS 2021年第4期265-285,共21页
Selective laser melting(SLM)has been widely used in the fields of aviation,aerospace and die manufacturing due to its ability to produce metal components with arbitrarily complex shapes.However,the instability of SLM ... Selective laser melting(SLM)has been widely used in the fields of aviation,aerospace and die manufacturing due to its ability to produce metal components with arbitrarily complex shapes.However,the instability of SLM process often leads to quality fluctuation of the formed component,which hinders the further development and application of SLM.In situ quality control during SLM process is an effective solution to the quality fluctuation of formed components.However,the basic premise of feedback control during SLM process is the rapid and accurate diagnosis of the quality.Therefore,an in situ monitoring method of SLM process,which provides quality diagnosis information for feedback control,became one of the research hotspots in this field in recent years.In this paper,the research progress of in situ monitoring during SLM process based on images is reviewed.Firstly,the significance of in situ monitoring during SLM process is analyzed.Then,the image information source of SLM process,the image acquisition systems for different detection objects(the molten pool region,the scanned layer and the powder spread layer)and the methods of the image information analysis,detection and recognition are reviewed and analyzed.Through review and analysis,it is found that the existing image analysis and detection methods during SLM process are mainly based on traditional image processing methods combined with traditional machine learning models.Finally,the main development direction of in situ monitoring during SLM process is proposed by combining with the frontier technology of image-based computer vision. 展开更多
关键词 selective laser melting(slm) forming process IMAGES in situ monitoring molten pool region monitoring scanned layer and powder layer monitoring
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Anisotropy in mechanical properties and corrosion resistance of 316L stainless steel fabricated by selective laser melting 被引量:7
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作者 Xiao-qing Ni De-cheng Kong +5 位作者 Ying Wen Liang Zhang Wen-heng Wu Bei-bei He Lin Lu De-xiang Zhu 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2019年第3期319-328,共10页
The corrosion behavior and mechanical properties of 316 L stainless steel(SS) fabricated via selective laser melting(SLM) were clarified by potentiodynamic polarization measurements, immersion tests, and tensile exper... The corrosion behavior and mechanical properties of 316 L stainless steel(SS) fabricated via selective laser melting(SLM) were clarified by potentiodynamic polarization measurements, immersion tests, and tensile experiments. The microstructural anisotropy of SLMed 316 L SS was also investigated by electron back-scattered diffraction and transmission electron microscopy. The grain sizes of the SLMed 316 L SS in the XOZ plane were smaller than those of the SLMed 316 L SS in the XOY plane, and a greater number of low-angle boundaries were present in the XOY plane, resulting in lower elongation for the XOY plane than for the XOZ plane. The SLMed 316 L was expected to exhibit higher strength but lower ductility than the wrought 316 L, which was attributed to the high density of dislocations. The pitting potentials of the SLMed 316 L samples were universally higher than those of the wrought sample in chloride solutions because of the annihilation of MnS or(Ca,Al)-oxides during the rapid solidification. However, the molten pool boundaries preferentially dissolved in aggressive solutions and the damage of the SLMed 316 L in FeCl3 solution was more serious after long-term service, indicating poor durability. 展开更多
关键词 selective laser melting mechanical property corrosion resistance 316L STAINLESS steel ANISOTROPY MOLTEN POOL boundary
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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 the SLM... 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-6 Al-4 V 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 asdeposited properties present high strength, low ductility and obvious anisotropy. After annealing at 800-900°C for 2-4 h and HIP at 920°C/100 MPa for 2 h, the brittle martensite could be transformed into ductile lamellar(α+β) microstructure and the static tensile properties of SLM-processed Ti-6 Al-4 V 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 Ti-6 Al-4 V 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(α+β) 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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Enhanced mechanical properties and formability of 316L stainless steel materials 3D-printed using selective laser melting 被引量:6
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作者 Xiao-qin Yang Ying Liu +3 位作者 Jin-wen Ye Ren-quan Wang Ting-chuan Zhou Bin-yang Mao 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2019年第11期1396-1404,共9页
This study is conducted to develop an innovative and attractive selective laser melting(SLM)method to produce 316 L stainless steel materials with excellent mechanical performance and complex part shape.In this work,t... This study is conducted to develop an innovative and attractive selective laser melting(SLM)method to produce 316 L stainless steel materials with excellent mechanical performance and complex part shape.In this work,the subregional manufacturing strategy,which separates the special parts from the components using an optimized process,was proposed.The results showed that produced 316 L materials exhibited superior strength of^755 MPa and good ductility.In the as-built parts,austenite with preferred orientation of the(220)plane,δ-ferrite,and a small amount of CrO phases were present.In addition,the crystal size was fine,which contributed to the enhancement of the parts’mechanical properties.The structural anisotropy mechanism of the materials was also investigated for a group of half-sized samples with variable inclination directions.This technique was used to fabricate a set of impellers with helical bevels and high-precision planetary gears,demonstrating its strong potential for use in practical applications. 展开更多
关键词 316L STAINLESS steel selective laser melting FORMABILITY mechanical properties microstructure
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Metal-ceramic Bond Mechanism of the Co-Cr Alloy Denture with Original Rough Surface Produced by Selective Laser Melting 被引量:7
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作者 ZHANG Sheng LI Yong +3 位作者 HAO Liang XU Tian WEI Qingsong SHI Yusheng 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2014年第1期69-78,共10页
The porcelain fracture caused by low metal-ceramic bond strength is a critical issue in porcelain fused to metal(PFM) restorations. Surface roughening methods, such as sand blasting, acid etching and alkaline degrea... The porcelain fracture caused by low metal-ceramic bond strength is a critical issue in porcelain fused to metal(PFM) restorations. Surface roughening methods, such as sand blasting, acid etching and alkaline degreasing for the metal matrix are used to increase bond strength. However, the metal matrix of PFM processed by selective laser melting(SLM) has natural rough surface. To explore the effect of the original roughness on metal-ceramic bond strength, two groups of specimen are fabricated by SLM. One group of specimen surface is polished smooth while another group remains the original rough surface. The dental porcelain is fused to the specimens' surfaces according to the ISO 9693:1999 standard. To gain the bond strength, a three-point bending test is carried out and X ray energy spectrum analysis(EDS), scanning electron microscope(SEM) are used to show fracture mode. The results show that the mean bond strength is 116.5 16 MPa of the group with rough surface(Ra= 17.2), and the fracture mode is cohesive. However, when the surface is smooth (Ra =3.8), the mean bond strength is 74.5 MPa _+ 5 MPa and the fracture mode is mixed. The original surface with prominent structures formed by the partly melted powder particles, not only increases surface roughness but also significantly improves the bond strength by forming strong mechanical lock effect. Statistical analysis (Student's t-test) demonstrates a significant difference (p〈0.05) of the mean value of bond strength between the two groups. The experiments indicate the natural rough surface can enhance the metal-ceramic bond strength to over four times the minimum value (25 MPa) of the ISO 9693:1999 standard. It is found that the natural rough surface of SLM-made PFM can eliminate the porcelain collapse defect produced by traditional casting method in PFM restorations. 展开更多
关键词 selective laser meltingslm Co-Cr alloy metal-ceramic bond strength
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Microstructure and properties of Ag/SnO2 functional material manufactured by selective laser melting 被引量:6
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作者 Yuanjie Zhang Bo Song +1 位作者 Xiao Zhao Yusheng Shi 《Nano Materials Science》 CAS 2019年第3期208-214,共7页
Ag/SnO2,as a promising and environment-friendly electrical contact material,is widely applied in low-voltage apparatus.But the properties of Ag/SnO2 composites is difficult to improve due to the poor distribution phas... Ag/SnO2,as a promising and environment-friendly electrical contact material,is widely applied in low-voltage apparatus.But the properties of Ag/SnO2 composites is difficult to improve due to the poor distribution phases and difficult component design.In this work,the Ag/SnO2 composites are prepared by selective laser melting.To get better performance,Ag/SnO2 composites with different energy density were studied.The microstructure was observed by field emission scanning electron microscope.In addition,reinforced SnO2 phase was characterized by X-ray diffraction and transmission electron microscope.The results indicated that the microstructure,relative density and hardness of are influenced by energy density,while Ag/SnO2 composites with homogeneous microstructure,high relative density,higher hardness and lower electrical resistivity can be obtained by proper energy density(E?68 J/mm^3). 展开更多
关键词 selective laser melting AG/SNO2 COMPOSITES Electrical CONTACT material
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