31 |
Monitoring the Effects of Selective Laser Sintering (SLS) Build Parameters on Polyamide Using Near Infrared Spectroscopy Beard MA, Ghita OR, Evans KE Journal of Applied Polymer Science, 121(6), 3153, 2011 |
32 |
Nanostructural self-organization under selective laser sintering of exothermic powder mixtures Shishkovsky I, Morozov Y, Smurov I Applied Surface Science, 255(10), 5565, 2009 |
33 |
Stress-strain analysis of porous scaffolds made from titanium alloys synthesized via SLS method Shishkovsky I Applied Surface Science, 255(24), 9902, 2009 |
34 |
Numerical simulation of laser irradiation to a randomly packed bimodal powder bed Zhou JH, Zhang YW, Chen JK International Journal of Heat and Mass Transfer, 52(13-14), 3137, 2009 |
35 |
Statistical Evaluation of Laser Energy Density Effect on Mechanical Properties of Polyamide Parts Manufactured by Selective Laser Sintering Beal VE, Paggi RA, Salmoria GV, Lago A Journal of Applied Polymer Science, 113(5), 2910, 2009 |
36 |
Experimental investigation into the selective laser sintering of high-impact polystyrene Shi YS, Wang Y, Chen JB, Huang SH Journal of Applied Polymer Science, 108(1), 535, 2008 |
37 |
Ceramic components manufacturing by selective laser sintering Bertrand P, Bayle F, Combe C, Goeuriot P, Smurov I Applied Surface Science, 254(4), 989, 2007 |
38 |
Nanofractal surface structure under laser sintering of titanium and nitinol for bone tissue engineering Shishkovsky I, Morozov Y, Smurov I Applied Surface Science, 254(4), 1145, 2007 |
39 |
Metering and dispensing of powder; the quest for new solid freeforming techniques Yang S, Evans JRG Powder Technology, 178(1), 56, 2007 |
40 |
High-temperature infiltration of non-metallic articles produced via selective laser sintering Bourell DL, Evans RS, Barrows SL Materials Science Forum, 475-479, 2861, 2005 |