[1] | Das S.Physical aspects of process control in selective laser sintering of Metals. Advanced Engineering Materials, 2003, 5(10): 701-711 | [2] | Kruth JP, Wang X, Laoui T, et al.Lasers and materials in selective laser sintering. Assembly Automation, 2013, 23(4): 357-371 | [3] | Olakanmi EO, Cochrane RF, Dalgarno KW.A review on selective laser sintering/melting (SLS/SLM) of aluminium alloy powders: Processing, microstructure, and properties. Progress in Materials Science, 2015, 74: 401-477 | [4] | 卢秉恒, 李涤尘. 增材制造(3D打印)技术发展. 机械制造与自动化, 2013, 42(4): 99-101 | [4] | (Lu Bingheng,Li Dichen, et al.Development of the additive manufacturing (3D printing) technology. Machine Building and Automation, 20013, 42(4): 99-101 (in Chinese)) | [5] | 刘景博, 刘世锋, 刘全明等. 选区激光烧结用粉末材料研究进展. 兵器材料科学与工程, 2018, 41(4): 111-116 | [5] | (Liu Jingbo, Liu Shifeng, Liu Quanming, et al.Research progress in powder materials for selective laser sintering. Ordnance Material Science and Engineering, 2018, 41(4): 111-116 (in Chinese)) | [6] | 李湘生, 黄树槐, 黎建军等. 激光选区烧结中铺粉过程分析. 现代制造工程, 2008(2): 99-101 | [6] | (Li Xiangshen,Huang Shuhuai, Li Jianjun, et al.Investigation on powder paving process of SLS. Modern Manufacturing Engineering, 2008(2): 99-101 (in Chinese)) | [7] | 李湘生, 史玉升, 黄树槐. 激光选区烧结成形机的粉末预热研究. 机械工程学报, 2002, 38(3): 94-94 | [7] | (Li Xiangsheng, Shi Yusheng, Huang Shuhuai.Study on powder preheating of selective sintering laser. Journal of Mechanical Engineering, 2002, 38(3): 94-94 (in Chinese)) | [8] | Maarup C, Hjuler K, Dam-Johansen K.High temperature cement raw meal flowability. Powder Technology, 2014, 253: 686-690 | [9] | Krantz M, Zhang H, Zhu J.Characterization of powder flow: Static and dynamic testing. Powder Technology, 2009, 194(3): 239-245 | [10] | 季顺迎, 孙珊珊, 陈晓东. 颗粒材料剪切流动状态转变的环剪试验研究. 力学学报, 2016, 48(5): 1061-1072 | [10] | (Ji Shunying, Sun Shanshan, Chen Xiaodong.Shear cell test on transition of shear flow states of granular materials. Chinese Journal of} Theoretical and Applied Mechanics, 2016, 48(5): 1061-1072 (in Chinese)) | [11] | Goodridge RD, Tuck CJ, Hague RJM.Laser sintering of polyamides and other polymers. Progress in Materials Science, 2012, 57(2): 229-267 | [12] | Yang RY, Zou RP, Yu AB.Computer simulation of the packing of fine particles. Phys Rev E Stat Phys Plasmas Fluids Relat Interdiscip Topics, 2000, 62(3): 3900-3908 | [13] | Li Q, Rudolph V, Weigl B, et al.Interparticle van der Waals force in powder flowability and compactibility. International Journal of Pharmaceutics, 2004, 280(1): 77-93 | [14] | Steuben JC, Iliopoulos AP, Michopoulos J G.Discrete element modeling of particle-based additive manufacturing processes. Computer Methods in Applied Mechanics & Engineering, 2016, 305:537-561 | [15] | Ganeriwala R, Zohdi T I.Multiphysics modeling and simulation of selective laser sintering manufacturing processes. Procedia Cirp, 2014, 14: 299-304 | [16] | Tan YQ, Zheng JH, Gao W, et al.The effect of powder flowability in the selective laser sintering process. Springer Proceedings in Physics, 2016, 188: 629-636 | [17] | Chen H, Wei Q, Wen S, et al.Flow behavior of powder particles in layering process of selective laser melting: Numerical modeling and experimental verification based on discrete element method. International Journal of Machine Tools & Manufacture, 2017, 123: 146-159 | [18] | 向召伟, 殷鸣, 邓珍波等. 增材制造技术粉床的数值模拟与分析. 四川大学学报(工程科学版), 2016, 48(2): 191-197 | [18] | (Xiang Zhaowei,Yin Ming, Deng Zhenbo, et al.Simulation and analysis of powder bed for additive manufacturing. Journal of Sichan University(Engineering Science Edition), 2016, 48(2): 191-197 (in Chinese)) | [19] | Parteli EJR, Pöschel T.Particle-based simulation of powder application in additive manufacturing. Powder Technology, 2016, 288: 96-102 | [20] | Gady B, Schleef D, Reifenberger R, et al.Identification of electrostatic and van der Waals interaction forces between a micrometer-size sphere and a flat substrate. Physical Review B Condensed Matter, 1996, 53(12): 8065-8070 | [21] | Jia T, Zhang Y, Chen JK, et al.Dynamic simulation of granular packing of fine cohesive particles with different size distributions. Powder Technology, 2012, 218(1): 76-85 | [22] | Hamaker HC.The London-van der Waals attraction between spherical particles. Physica, 1937, 4(10): 1058-1072 | [23] | Greason WD.Investigation of a test methodology for triboelectrification. Electrical overstress/electrostatic Discharge Symposium Proceedings. IEEE, 2000, 49: 344-351 | [24] | Hughes FJ.Electrostatics: Principles, problems and applications. Physics Bulletin, 1987, 38(11): 424-424 | [25] | Jiang P, Bi H, Liang SC, et al.Hydrodynamic behavior of circulating fluidized bed with polymeric particles. Aiche Journal, 1994, 40(2): 193-206 | [26] | 魏征,孙岩,王再冉等. 轻敲模式下原子力显微镜的能量耗散. 力学学报, 2017, 49(6): 1301-1311 | [26] | (Wei Zheng,Sun Yan,Wang Zairan, et al.Energy dissipation in tapping mode atomic force microscopy. Chinese Journal of Theoretical and Applied Mechanics, 2017, 49(6): 1301-1311(in Chinese)) | [27] | Argento C, French RH.Parametric tip model and force--distance relation for hamaker constant determination from atomic force microscopy. Journal of Applied Physics, 1996, 80(11): 6081-6090 | [28] | 肖湘武. 考虑细观作用力的尼龙粉末选择性激光烧结铺粉工艺研究. [博士论文]. 湘潭:湘潭大学,2018 | [28] | (Xiao Xiangwu.Research on Paving Process of Nylon Powder Considering Mesoscopic forces in Selective Laser Sintering. [PhD Thesis]. Xiangtan: Xiangtan University, 2018 (in Chinese)) | [29] | Pei C, Wu CY, Adams M.DEM-CFD analysis of contact electrification and electrostatic interactions during fluidization. Powder Technology, 2016, 304: 208-217 | [30] | Pei C, Wu CY, England D, et al.Numerical analysis of contact electrification using DEM--CFD. Powder Technology, 2013, 248(2): 34-43 | [31] | Spierings AB, Voegtlin M, Bauer T, et al.Powder flowability characterisation methodology for powder-bed-based metal additive manufacturing. Progress in Additive Manufacturing, 2016, 1(1-2): 9-20 | [32] | Xiao X, Tan Y, Zhang H, et al.Experimental and DEM studies on the particle mixing performance in rotating drums: Effect of area ratio. Powder Technology, 2017, 314: 182-194 | [33] | 闫明,段文山,陈琼等.不同形状混合器中二元颗粒的分聚与混合研究.力学学报,2016,48(1): 64-75 | [33] | (Yan Ming, Duan Wenshan, Chen Qiong, et al.The segregation and mixing of binary granular systems in rotating mixer with different cross-sections. Chinese Journal of Theoretical and Applied Mechanics, }2016,48(1): 64-75(in Chinese)) |
|