高分子材料是应用最早,也是目前应用最广泛的选择性激光烧结(SLS)成形材料,利用SLS工艺可以成形各种结构复杂的高分子制件,广泛用于航空、力学、医疗等领域.文中介绍了SLS用高分子材料的最新研究进展,并对其未来研究趋势进行了展望.
参考文献
[1] | H. C. H. Ho;I. Gibson;W. L. Cheung .Effects of energy density on morphology and properties of selective laser sintered polycarbonate[J].Journal of Materials Processing Technology,1999(0):204-210. |
[2] | Y Shi;J Chen;Y Wang;Z Li;S Huang .Study of the selective laser sintering of polycarbonate and postprocess for parts reinforcement[J].Proceedings of the Institution of Mechanical Engineers, Part L. Journal of Materials: Design and Application,2007(l1):37-42. |
[3] | Haizhong Zheng;Jian Zhang;Shiqiang Lu .Effect of core-shell composite particles on the sintering behavior and properties of nano-Al_2O_3/polystyrene composite prepared by SLS[J].Materials Letters,2006(9/10):1219-1223. |
[4] | Shi YS;Wang Y;Chen JB;Huang SH .Experimental investigation into the selective laser sintering of high-impact polystyrene[J].Journal of Applied Polymer Science,2008(1):535-540. |
[5] | R. S. Evans;D. L. Bourell;J. J. Beaman;M. L. Campbell .Rapid manufacturing of silicon carbide composites[J].Rapid prototyping journal,2005(1):37-40. |
[6] | Alua E. Tontowi;T. H. C. Childs .Density prediction of crystalline polymer sintered parts at various powder bed temperatures[J].Rapid prototyping journal,2001(3):180-184. |
[7] | T. H. C. Childs;A. E. Tontowi .Selective laser sintering of a crystalline and a glass-filled crystalline polymer: experiments and simulations[J].Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture,2001(B11):1481-1495. |
[8] | Suman Das;Scott J. Hollister;Colleen Flanagan;Adebisi Adewunmi;Karlin Bark;Cindy Chen;Krishnam Ramaswamy;Daniel Rose;Erwin Widjaja .Freeform fabrication of nylon-6 tissue engineering scaffolds[J].Rapid prototyping journal,2003(1):43-49. |
[9] | H. Zarringhalam;N. Hopkinson;N.F. Kamperman;J.J. de Vlieger .Effects of processing on microstructure and properties of SLS Nylon 12[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2006(1/2):172-180. |
[10] | Jorge Ramos-Grez;Antonio Amado-Becker;Maria Jose Yanez;Yolanda Vargas;Luis Gaete .Elastic tensor stiffness coefficients for SLS Nylon 12 under different degrees of densification as measured by ultrasonic technique[J].Rapid prototyping journal,2008(5):260-270. |
[11] | H. Chung;S. Das .Processing and properties of glass bead particulate-filled functionally graded Nylon-11 composites produced by selective laser sintering[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2006(2):226-234. |
[12] | Alida Mazzoli;Giacomo Moriconi;Marco Giuseppe Pauri .Characterization of an aluminum-filled polyamide powder for applications in selective laser sintering[J].Materials & Design,2007(3):993-1000. |
[13] | M. M. Savalani;L. Hao;Y. Zhang;K. E. Tanner;R. A. Harris .Fabrication of porous bioactive structures using the selective laser sintering technique[J].Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine,2007(h8):873-886. |
[14] | Zhang Y;Hao L;Savalani MM;Harris RA;Tanner KE .Characterization and dynamic mechanical analysis of selective laser sintered hydroxyapatite-filled polymeric composites.[J].Journal of biomedical materials research, Part A,2008(3):607-616. |
[15] | Xiaoyu Meng;Zhe Wang;Zhongfu Zhao .Morphology evolutions of organically modified montmorillonite/poly amide 12 nanocomposites[J].Polymer: The International Journal for the Science and Technology of Polymers,2007(9):2508-2519. |
[16] | Kim J;Creasy TS .Selective laser sintering characteristics of nylon 6/clay-reinforced nanocomposite[J].Polymer Testing,2004(6):629-636. |
[17] | Rimell J.T.;Marquis P.M. .Selective Laser Sintering of Ultra High Molecular Weight Polyethylene for Clinical Applications[J].Journal of biomedical materials research, Part B. Applied biomaterials,2000(4):414-420. |
[18] | L. Hao;M. M. Savalani;Y. Zhang;K. E. Tanner;R. A. Harris .Selective laser sintering of hydroxyapatite reinforced polyethylene composites for bioactive implants and tissue scaffold development[J].Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine,2006(h4):521-531. |
[19] | Simpson RL;Wiria FE;Amis AA;Chua CK;Leong KF;Hansen UN;Chandrasekaran M;Lee MW .Development of a 95/5 poly(L-lactide-co-glycolide)/hydroxylapatite and beta-tricalcium phosphate scaffold as bone replacement material via selective laser sintering.[J].Journal of biomedical materials research, Part B. Applied biomaterials,2008(1):17-25. |
[20] | Wiria FE;Chua CK;Leong KF;Quah ZY;Chandrasekaran M;Lee MW .Improved biocomposite development of poly(vinyl alcohol) and hydroxyapatite for tissue engineering scaffold fabrication using selective laser sintering[J].Journal of Materials Science. Materials in Medicine,2008(3):989-996. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%