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Synthesis of Polymer Nanocomposites for Selective Laser Sintering (SLS)
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作者 Md Saidin Wahab Kenneth William Dalgamo Bob Cochrane 《Journal of Mechanics Engineering and Automation》 2011年第2期100-107,共8页
This paper presents initial development of polymer application. PNC materials containing a polyamide (PA) and nano to improve the mechanical properties. Commercial polyamide 6 nanocomposites (PNC) material for rap... This paper presents initial development of polymer application. PNC materials containing a polyamide (PA) and nano to improve the mechanical properties. Commercial polyamide 6 nanocomposites (PNC) material for rapid manufacturing (RM) particles (5 wt%) were produced by solution blending with the aim (PA6) was dissolved in formic acid (HCO2H) together with two different types of nano particle materials: yttrium stabilised zirconia (YSZ) and Hectorite clay (Benton 166) and spray-dried to create powder, creating powder with particle sizes in the range of 10-40 μm. The materials were processed on a CO2 selective laser sintering (SLS) experimental machine. Mechanical properties of the PNCs were evaluated and the results were compared with the unfilled base polymer. Good dispersion of additives was achieved by solution blending, however the PA6 was degraded during the material preparation and spray drying process which resulted in the formation of porous structure and low strength. However the addition of 5 (wt%) nano particles in the PA6 has shown to increase strength by an average of 50-60%. Further work on powder preparation is required in order to fully realize these performance benefits. 展开更多
关键词 Rapid manufacturing (RM) layer manufacturing (LM) selective laser sintering (sls polymer nanocomposite (PNC).
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Computational Analysis of Selective Laser Sintering of Inconel 625
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作者 Bin Xiao Byoung Hee You Tongdan Jin 《Frontiers in Heat and Mass Transfer》 EI 2024年第2期417-432,共16页
A two-dimensional multi-physics finite element model is developed to simulate the Selective Laser Sintering(SLS)process using Inconel 625 powders.The validity of the developed model is first assessed by comparing its ... A two-dimensional multi-physics finite element model is developed to simulate the Selective Laser Sintering(SLS)process using Inconel 625 powders.The validity of the developed model is first assessed by comparing its results with experimental data.Various factors such as phase transition,recoil pressure,surface tension,and theMarangoni force are considered.The study’s findings underscore that the morphology and thermal-fluid dynamics of the molten pool in the SLS process are predominantly shaped by the influence of the Marangoni force and recoil pressure acting on its surface.The recoil pressure at the front of the laser spot rises exponentially with temperature,making the liquid metal move downward,and creating a depression at the pool’s head.It also causes particles to splash from the pool’s rear edge.The study explores the influence of the backward Marangoni force,where hightemperature liquid flows from the front to the rear of the molten pool,creating a vortex and moving the pool in the rear.Process parameters like laser intensity,scan speed,and spot size were analyzed.The findings indicate that higher laser power lower scanning speed and laser beam spot size lead to increased width and depth of the molten pool. 展开更多
关键词 selective laser sintering(sls) molten pool recoil pressure marangoni effect
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Selective laser sintering mechanism of polymer-coated molybdenum powder 被引量:7
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作者 白培康 王文峰 《中国有色金属学会会刊:英文版》 EI CSCD 2007年第3期543-547,共5页
A type of polymer-coated molybdenum powder used in selective laser sintering technology was prepared by coating polymer on molybdenum particles and frozen grinding techniques, with the maximum particle diameter of 71 ... A type of polymer-coated molybdenum powder used in selective laser sintering technology was prepared by coating polymer on molybdenum particles and frozen grinding techniques, with the maximum particle diameter of 71 μm. The laser sintering experiments of polymer-coated molybdenum powder were conducted by using the self-developed selective laser sintering machine (HLRP-350I). The method of microscopic analysis was used to investigate the dynamic laser sintering process of polymer-coated molybdenum powder. Based on the study, the laser sintering mechanisms of polymer-coated molybdenum powder were presented. It is found that the mechanism is viscous flow when the laser sintering temperature is between 100 ℃ and 160 ℃, which can be described by a two-sphere model; and the mechanism is melting /solidification when the temperature is above 160 ℃. 展开更多
关键词 激光烧结 聚合体 钼元素 溶解方法
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IGNITING SHS BY LASER AND ITS APPLICATION TO SELECTIVE LASER SINTERING OF METALLIC POWDER MATERIAL 被引量:1
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作者 Y.S.Shi S.C.Chen X.L.Lu S.H.Huang 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2004年第5期694-704,共11页
How to directly fabricate metallic functional parts with selective laser sintering (SLS) process is a potential technique that scientists are researching. Existent problems during directly fabricating metal part by us... How to directly fabricate metallic functional parts with selective laser sintering (SLS) process is a potential technique that scientists are researching. Existent problems during directly fabricating metal part by use of SLS are analyzed. For the sake of solving the problems, a new idea of adding self-propagating high-temperature synthesis (SHS) material into metallic powder material to form new type of SLS metallic powder material is put forward. This powder material can release controllable amount of heat during its interaction with the laser beam energy to reduce the requirement to laser power during directly sintering metallic part, to prolong the time of metallic liquid phase existing, and to improve the intensity and accuracy of SLS part. For this reason, SHS material′s interaction with the CO2 laser beam energy is researched, which proves that CO2 laser beam energy may instantly ignite SHS reaction. On the basis of the above-mentioned researches, the effect of sintering the metal powder material mixing SHS material with CO2 laser is also researched, which shows: there is an optimal blending ratio of various material in the new metallic powder material. Under the optimal blending ratio and SLS process parameters, this new metallic powder material can indeed release amount of heat and SHS reaction may be controlled within the laser sintering. This research result makes it possible that the metallic part is directly sintered with small CO2 laser (less than 50W), which may greatly reduce the volume, cost and running expenditure of SLS machine, be propitious to application. 展开更多
关键词 selective laser sintering (sls) self-propagating high-temperaturesynthesis (SHS) ignition time metallic powder material metallic part
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STUDY ON SELECTIVE LASER SINTERING OF METALLIC POWDERS 被引量:1
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作者 YuChengye HuangYinhui +2 位作者 ZhangJianfeng ShenYifu ZhaoJianfeng 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2002年第1期77-83,共7页
A series of experiments are carried out with selective laser sintering(SLS) for copper,copper-nickel powder matetials.The phenomena of the sintering process is ana-lyzed,the influence of techmological parameters is di... A series of experiments are carried out with selective laser sintering(SLS) for copper,copper-nickel powder matetials.The phenomena of the sintering process is ana-lyzed,the influence of techmological parameters is dis-cussed in detail,By means of SEM with energy spectrum system and X-ray diffraction spectrum,the morphology of the microstructure and the compositions of the different zones are analyzed,the mechanism of the laser sintering metallic powders is preliminarily explored,All those above lay the foundations for the forming metal parts by laser sintering metallic powders. 展开更多
关键词 selective laser sintering METALLIC powder mi-crostructure METALLIC parts 激光选区烧结 金属粉末 显微组织 金属零件
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Numerical simulation of temperature field during selective laser sintering of polymer-coated molybdenum powder 被引量:3
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作者 白培康 程军 +1 位作者 刘斌 王文峰 《中国有色金属学会会刊:英文版》 CSCD 2006年第B02期603-607,共5页
The technology of length-alterable line-scanning laser sintering was introduced. Based on the research of laser heating property, powder thermal physics parameters and laser sintering process, a numerical model of the... The technology of length-alterable line-scanning laser sintering was introduced. Based on the research of laser heating property, powder thermal physics parameters and laser sintering process, a numerical model of the temperature field during length-alterable line-scanning and laser sintering of polymer-coated molybdenum powder was presented. Finite element method (FEM) was used to simulate the temperature field during laser sintering process. In order to verify the simulated results, a measuring system was developed to study the laser sintering temperature field. Infrared meter was introduced to measure the surface temperature of sintering powder; the temperature of its inside part was measured by thermocouple. The measured results were compared with the numerical simulation results; the conformity between them is good and the relative error is less than 5%. 展开更多
关键词 聚合物覆层钼粉 选择性激光烧结 温度场 数值模拟 粉末冶金
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Selective laser sintering of polymer-coated Al_2O_3/ZrO_2/TiC ceramic powder 被引量:2
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作者 白培康 程军 刘斌 《中国有色金属学会会刊:英文版》 CSCD 2005年第2期261-265,共5页
A type of polymer-coated Al2O3/ZrO2/TiC ceramic powder was prepared. The laser sintering mechanism of polymer-coated Al2O3/ZrO2/TiC powder was investigated by studying the dynamic laser sintering process. It is found ... A type of polymer-coated Al2O3/ZrO2/TiC ceramic powder was prepared. The laser sintering mechanism of polymer-coated Al2O3/ZrO2/TiC powder was investigated by studying the dynamic laser sintering process. It is found that the mechanism is viscous flow when the sintering temperature is between 80 ℃ and 120 ℃, and it is melting/solidification when the temperature is above 120 ℃. The process parameters of selective laser sintering were optimized by using ortho-design method. The results show that the optimal parameters include laser power of 14 W, scanning velocity of 1 400 mm/s, preheating temperature of 50 ℃ and powder depth of 0.15 mm. A two-step post-treatment process is adopted to improve the mechanical properties of laser sintered part, which includes polymer debinding and high temperature sintering. After vacuum sintering for 2 h at 1 650 ℃, the bending strength and fracture toughness of Al2O3/ZrO2/TiC ceramic part reach 358 MPa and 6.9 MPa·m1/2, respectively. 展开更多
关键词 激光烧结 聚合电镀 氧化铝 碳化钛 陶瓷粉末 被动处理工艺 机械性质
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Direct Slicing Based on Material Performance and Process Parameters for Selective Laser Sintering
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作者 MA Liang BIN Hong-zan 《International Journal of Plant Engineering and Management》 2006年第4期221-226,共6页
Direct slicing from GAD models to generate sectional contours of the part to be sintered for Selective Laser Sintering (SLS) may overcome inherent disadvantages of using a Stereo Lithography (STL) format. In this ... Direct slicing from GAD models to generate sectional contours of the part to be sintered for Selective Laser Sintering (SLS) may overcome inherent disadvantages of using a Stereo Lithography (STL) format. In this paper, a direct slicing procedure is proposed for Selective Laser Sintering based on material performance and process parameters. Slicing thickness depends on the 3 D geometric model, material performance and process parameters. The relationship among material performance, process parameters and the largest slicing thickness is established using analysis of a sintering temperature field. A dynamic linked library is developed to realize direct slicing from a CAD model. 展开更多
关键词 selective laser sintering sls) direct slicing slicing thickness
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Morphology and Mechanical Properties of PS/Al_2O_3 Nanocomposites Based on Selective Laser Sintering 被引量:7
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作者 Zhifeng XU Jian ZHANG +2 位作者 Haizhong ZHENG Changchun CAI Yinhui HUANG 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2005年第6期866-870,共5页
Selective laser sintering (SLS) is a new process to prepare the polystyrene (PS)/Al2O3 nanocomposites. In this paper, with different laser power and other processing parameters unchanged, the morphology, density a... Selective laser sintering (SLS) is a new process to prepare the polystyrene (PS)/Al2O3 nanocomposites. In this paper, with different laser power and other processing parameters unchanged, the morphology, density and mechanical properties of the sintered specimens were investigated. It was found that nano-sized inorganic particles are uniformly located in the PS matrix and the maximum density of the sintered specimens with pure PS powder reaches 1.07 g/cm^3, higher than 1.04 g/cm^3 that of the sintered specimens with mixture powder. Due to strengthening and toughness of the nano-sized Al2O3 inorganic particles, the maximum notched impact strength and tensile strength of the sintered part mixed with nano-sized inorganic particles are improved greatly from 7.5 to 12.1 kJ/m^2 and from 6.5 to 31.2 MPa, respectively, under the same sintering condition. 展开更多
关键词 selective laser sintering (sls NANOCOMPOSITES Polystyrene (PS) Nano-Al2O3 Laser power Mechanical properties MORPHOLOGY
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Advances in selective laser sintering of polymers 被引量:9
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作者 Wei Han Lingbao Kong Min Xu 《International Journal of Extreme Manufacturing》 SCIE EI CAS 2022年第4期20-56,共37页
Polymers are widely used materials in aerospace,automotive,construction,medical devices and pharmaceuticals.Polymers are being promoted rapidly due to their ease of manufacturing and improved material properties.Resea... Polymers are widely used materials in aerospace,automotive,construction,medical devices and pharmaceuticals.Polymers are being promoted rapidly due to their ease of manufacturing and improved material properties.Research on polymer processing technology should be paid more attention to due to the increasing demand for polymer applications.Selective laser sintering(SLS)uses a laser to sinter powdered materials(typical polyamide),and it is one of the critical additive manufacturing(AM)techniques of polymer.It irradiates the laser beam on the defined areas by a computer-aided design three-dimensional(3D)model to bind the material together to create a designed 3D solid structure.SLS has many advantages,such as no support structures and excellent mechanical properties resembling injection moulded parts compared with other AM methods.However,the ability of SLS to process polymers is still affected by some defects,such as the porous structure and limited available types of SLS polymers.Therefore,this article reviews the current state-of-the-art SLS of polymers,including the fundamental principles in this technique,the SLS developments of typical polymers,and the essential process parameters in SLS.Furthermore,the applications of SLS are focused,and the conclusions and perspectives are discussed. 展开更多
关键词 selective laser sintering additive manufacturing laser powder bed fusion 3D printing POLYMER
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Prediction of Sintering Strength for Selective Laser Sintering of Polystyrene Using Artificial Neural Network 被引量:4
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作者 王传洋 姜宁 +2 位作者 陈再良 陈瑶 董渠 《Journal of Donghua University(English Edition)》 EI CAS 2015年第5期825-830,共6页
In the present work,a study is made to investigate the effects of process parameters,namely,laser power,scanning speed,hatch spacing, layer thickness and powder temperature, on the tensile strength for selective laser... In the present work,a study is made to investigate the effects of process parameters,namely,laser power,scanning speed,hatch spacing, layer thickness and powder temperature, on the tensile strength for selective laser sintering( SLS) of polystyrene( PS). Artificial neural network( ANN) methodology is employed to develop mathematical relationships between the process parameters and the output variable of the sintering strength. Experimental data are used to train and test the network. The present neural network model is applied to predicting the experimental outcome as a function of input parameters within a specified range. Predicted sintering strength using the trained back propagation( BP) network model showed quite a good agreement with measured ones. The results showed that the networks had high processing speed,the abilities of error-correcting and self-organizing. ANN models had favorable performance and proved to be an applicable tool for predicting sintering strength SLS of PS. 展开更多
关键词 selective laser sintering(sls) polystyrene(PS) STRENGTH artificial neural network(ANN)
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Preparation of coated sand for selective laser sintering and optimization of baking process of sand moulds
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作者 Peng-wei Wang Rui-long Yu +6 位作者 Rui Tan Yan Wang Ying-wei Zhou Yue-ting Ma Yan-hai Li Jia-jun Liu Shao-kui Yin 《China Foundry》 SCIE EI CAS CSCD 2023年第6期519-525,共7页
A cold method was used to prepare coated sand for application in the selective laser sintering(SLS)process.Tensile strength,loss on ignition,gas evolution,and accuracy of the SLS samples were tested and analyzed,and t... A cold method was used to prepare coated sand for application in the selective laser sintering(SLS)process.Tensile strength,loss on ignition,gas evolution,and accuracy of the SLS samples were tested and analyzed,and the baking process was thoroughly investigated.Compared with coated sand prepared by the hot method,the cold method yields a more uniform and complete resin film on the sand's surface,resulting in enhanced tensile strength and accuracy.Additionally,the cold method requires a lower binder content to meet the same strength requirements,thereby minimizing gas evolution,reducing porosity defects,and ultimately improving casting quality.The coated sand samples prepared through the cold method exhibit superior accuracy,with a size error of within±0.4 mm.In contrast,the coated sand samples prepared by the hot method display a lower accuracy,with an average negative error of 2.1993 mm.The highest tensile strength could be attained by controlling the baking temperature within a suitable range(180-190°C),which can effectively reduce the generation of gas,thus contributing to improved overall performance. 展开更多
关键词 selective laser sintering(sls) coated sand cold method hot method BAKING
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Porous Polycarbonate Membranes with Ni and Cu Nano Catalytic Additives Fabricated by Selective Laser Sintering
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作者 Igor Vladimirovich Shishkovsky Angela Vladimirovna Bulanova Yuri Georgievich Morozov 《材料科学与工程(中英文B版)》 2012年第12期634-639,共6页
关键词 聚碳酸酯膜 纳米催化 激光合成 多孔 添加剂 烧结法 CU NI
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Investigating on casting mold (or core) making with coated sand by the selected laser sintering 被引量:6
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作者 Zitian FAN Naiyu HUANG +1 位作者 Yan LI Zhili LIU 《China Foundry》 SCIE CAS 2004年第2期122-126,共5页
Using a special coated sand as the material of the selected laser sintering (SLS), the authors test and investigate the strength change of the test samples in terms of different sintering parameters (scanning speed, l... Using a special coated sand as the material of the selected laser sintering (SLS), the authors test and investigate the strength change of the test samples in terms of different sintering parameters (scanning speed, laser power, sintering thickness, and so on). The characteristics of coated sand hardening by laser beam are analyzed. The sintered mold (or core) for given casting is poured with molten metal. 展开更多
关键词 rapid prototyping selected laser sintering(sls) laser scanning casting mold(core) technological parameters
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Microstructure of Selective Laser Sintered Polyamide 被引量:2
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作者 林柳兰 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2003年第3期60-63,共4页
The selective laser sintering (SLS) was used to prepare components from modified polyamide (PA) powder.The behaviour of the sintering process was analyzed.The influences of the fill laser power,powder bed temperature ... The selective laser sintering (SLS) was used to prepare components from modified polyamide (PA) powder.The behaviour of the sintering process was analyzed.The influences of the fill laser power,powder bed temperature and powder thickness were discussed in detail.By means of SEM,the morphology and the heat influence were analyzed.Results show that the powders were fused thoroughly which allowed a more dense structure to be built at a powder bed temperature of 98℃,fill laser power of 12W,slice thickness of 0.10mm and a default scanning speed of 1700mm/s. 展开更多
关键词 selective laser sintering POLYAMIDE powder MICROSTRUCTURE
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SLS成形件的收缩模型和翘曲模型 被引量:27
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作者 李湘生 韩明 +1 位作者 史玉升 黄树槐 《中国机械工程》 EI CAS CSCD 北大核心 2001年第8期887-889,共3页
快速成形的精度是快速成形技术发展和扩大其应用领域的关键 ,工艺误差是影响成形精度的关键之一 ,而成形件收缩和翘曲对其工艺精度起决定性的作用。通过建立 SL S成形过程的收缩模型研究了 SLS加工中成形件的收缩形式以及收缩规律 ,同... 快速成形的精度是快速成形技术发展和扩大其应用领域的关键 ,工艺误差是影响成形精度的关键之一 ,而成形件收缩和翘曲对其工艺精度起决定性的作用。通过建立 SL S成形过程的收缩模型研究了 SLS加工中成形件的收缩形式以及收缩规律 ,同时研究了收缩的不均匀性所引起的翘曲 ,建立了成形件的翘曲模型。发现烧结收缩与烧结程度密切相关 ,翘曲量与烧结收缩率成正比 ,与零件线尺寸成正比。这些研究结果为克服 SL S加工收缩引起的误差和收缩补偿提供了依据 ,为减少翘曲变形提供了一种方法。 展开更多
关键词 快速成形 sls 收缩模型 翘曲模型 激光选择烧结
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SLS成型机的粉末预热过程研究 被引量:8
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作者 李湘生 莫健华 +1 位作者 蔡道生 黄树槐 《华中理工大学学报》 EI CAS CSCD 北大核心 2001年第2期102-104,共3页
对成型机工作腔的一般预热方法的预热过程进行了分析 ,研究了辐射预热的热流密度对粉末预热温度的影响 ,提出了热流密度场模型 ,并与实验测得的预热温度场进行了比较 。
关键词 快速成型 激光选区烧结 热流密度 sls成型机 粉末预热过程 辐射预热 预热温度
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提高SLS覆膜砂铸型(芯)强度的措施 被引量:19
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作者 樊自田 黄乃瑜 +1 位作者 宋象军 陈宗孟 《特种铸造及有色合金》 CAS CSCD 北大核心 1999年第2期1-4,共4页
分析了影响覆膜砂铸型(芯)烧结强度的因素,详细地讨论了提高选择性激光烧结(SLS)覆膜砂铸型(芯)烧结强度的各种措施。从烧结方式上探讨了如何既提高SLS制件强度、又保证制件的成形速度和精度的问题。
关键词 快速成形 选择性激光烧结 覆膜砂铸型(芯) 烧结强度
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SLS高分子粉末材料的成型工艺参数及质量的比较研究 被引量:7
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作者 李小城 王鹏程 +2 位作者 肖军杰 朱福顺 杨艳 《塑料》 CAS CSCD 北大核心 2007年第1期66-71,76,共7页
介绍了选用PS基3种高分子粉末材料,在AFS-320快速成型机上采用正交试验法研究预热温度、激光功率、分层厚度、扫描速度等工艺参数对可烧结性能和烧结件质量的影响,获得了各材料的优化烧结工艺参数。并测试试样拉伸强度,比较了3种粉体的... 介绍了选用PS基3种高分子粉末材料,在AFS-320快速成型机上采用正交试验法研究预热温度、激光功率、分层厚度、扫描速度等工艺参数对可烧结性能和烧结件质量的影响,获得了各材料的优化烧结工艺参数。并测试试样拉伸强度,比较了3种粉体的工艺性能、成型质量、优缺点和用途范围,可为合理选用SLS高分子粉末材料提供参考依据。 展开更多
关键词 sls技术 高分子粉末材料 烧结工艺参数 成型质量
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基于SLS烧结覆膜砂工艺参数对成型尺寸精度的影响规律 被引量:15
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作者 芦刚 李康 +2 位作者 严青松 卢百平 徐帅 《铸造技术》 CAS 北大核心 2013年第3期314-316,共3页
研究了激光功率P、扫描速度V和预热温度T对SLS烧结覆膜砂制件尺寸的影响。结果表明,随着激光功率增加,成型尺寸呈增大趋势;当激光功率为55.5 W时成型平面XY方向尺寸精度较高;成型尺寸随着扫描速度增加越来越小,当扫描速度为3 500 mm/s... 研究了激光功率P、扫描速度V和预热温度T对SLS烧结覆膜砂制件尺寸的影响。结果表明,随着激光功率增加,成型尺寸呈增大趋势;当激光功率为55.5 W时成型平面XY方向尺寸精度较高;成型尺寸随着扫描速度增加越来越小,当扫描速度为3 500 mm/s时成型平面XY尺寸精度较高;当预热温度小于60℃时,预热温度对尺寸精度影响不大,当预热温度大于60℃时,成型尺寸随着预热温度的增加而增大。 展开更多
关键词 选择性激光烧结(sls) 覆膜砂 工艺参数 尺寸精度
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