Mechanical properties and microstructure of laser sintered and starch consolidated iron-based powders
暂无分享,去创建一个
[1] O. Lyckfeldt,et al. Water-based processing of high-speed steel utilising starch consolidation , 2003 .
[2] Terry T. Wohlers,et al. State of the industry : 1999 worldwide progress report : rapid prototyping & tooling , 1999 .
[3] R. German. Sintering theory and practice , 1996 .
[4] Duc Truong Pham,et al. Rapid Manufacturing: The Technologies and Applications of Rapid Prototyping and Rapid Tooling , 2001 .
[5] José M.F. Ferreira,et al. Processing of porous ceramics by ‘starch consolidation’ , 1998 .
[6] Sture Hogmark,et al. Thermal fatigue cracking of surface engineered hot work tool steels , 2005 .
[7] S. Suresh. Fatigue of materials , 1991 .
[8] L. Nyborg,et al. Effect of vacuum annealing and nitrogen alloying on gas atomised M4 high speed steel powder , 2006 .
[9] James C. Newman,et al. An empirical stress-intensity factor equation for the surface crack , 1981 .
[10] W. Pabst,et al. Characterization of different starch types for their application in ceramic processing , 2006 .
[11] K. Osakada,et al. The manufacturing of hard tools from metallic powders by selective laser melting , 2001 .
[12] R. K. Dube. Further Literary and Documentary Evidence for Powder Technology in Ancient and Medieval India , 1993 .
[13] Ichirou Yamaguchi. Encoder and strain gauge using laser speckle , 1989 .
[14] Jeremy Fairbank,et al. Historical Perspective , 1987, Do We Really Understand Quantum Mechanics?.
[15] P. H. Shipway. Tribology: Friction and Wear of Engineering Materials , 1992 .
[16] J. Ferreira,et al. Processing of porous cordierite bodies by starch consolidation , 1998 .
[17] S. Magalhaes. Surface Composition and Microstructure Control during Pressureless Forming and Sintering of Ferrous Powder Metallurgy Materials , 2003 .
[18] W. Pabst,et al. Starch swelling and its role in modern ceramic shaping technology , 2003 .