Title: Selective Laser Sintering of Bio-Metal Scaffold
Abstract: This study presents a fabrication process of bone scaffold model with titanium biomedical materials by rapid prototyping (RP) technique. A RP machine with Nd:YAG laser (120W) was developed to produce bone scaffolds using a selective laser sintering (SLS) technology. The slurry state of biomedical material consists of titanium powder and silica sol mixed at 2 g: 1 g weight ratio was used in the proposed process. This biomedical titanium slurry was solidified after scanning by a laser beam. The process parameters of laser were tuned at a laser power of 15W, a frequency of 16KHz and a scanning speed of 100 mm/s to build the titanium biomedical bone model within 3 hrs. Experimental results show that the compressive strength was 142 MPa after post treatment at 900. The mechanical strength of these titanium biomedical material specimens by post sintering process is enhanced. Using this RP machine of layer additive processing, a bone scaffold with complex shape structure can be constructed. Therefore, this process has a greater potential for fabrication bio-metal bone scaffold in tissue engineering.