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Effects of Raster Orientation, Infill Rate and Infill Pattern on the Mechanical Properties of 3D Printed Materials


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1. Ziemian, C., M. Sharma, and S. Ziemian, Anisotropic mechanical properties of ABS parts fabricated by fused deposition modelling, in Mechanical engineering. 2012, InTech.10.5772/34233Search in Google Scholar

2. Melenka, G.W., et al., Evaluation and prediction of the tensile properties of continuous fiber-reinforced 3D printed structures. Composite Structures, 2016. 153: p. 866-875.10.1016/j.compstruct.2016.07.018Search in Google Scholar

3. Zou, R., et al., Isotropic and anisotropic elasticity and yielding of 3D printed material. Composites Part B: Engineering, 2016. 99: p. 506-513.10.1016/j.compositesb.2016.06.009Search in Google Scholar

4. Liljenhjerte, J., P. Upadhyaya, and S. Kumar, Hyperelastic strain measurements and constitutive parameters identification of 3d printed soft polymers by image processing. Additive Manufacturing, 2016. 11: p. 40-48.10.1016/j.addma.2016.03.005Search in Google Scholar

5. Croccolo, D., M. De Agostinis, and G. Olmi, Experimental characterization and analytical modelling of the mechanical behaviour of fused deposition processed parts made of ABS-M30. Computational Materials Science, 2013. 79: p. 506-518.10.1016/j.commatsci.2013.06.041Open DOISearch in Google Scholar

6. Ahn, S.-H., et al., Anisotropic material properties of fused deposition modeling ABS. Rapid prototyping journal, 2002. 8(4): p. 248-257.10.1108/13552540210441166Open DOISearch in Google Scholar

7. Rodrı́guez, J.F., J.P. Thomas, and J.E. Renaud, Design of Fused-Deposition ABS Components for Stiffness and Strength. Journal of Mechanical Design, 2003. 125(3): p. 545-551.10.1115/1.1582499Search in Google Scholar

8. Li, L., et al., Composite modeling and analysis for fabrication of FDM prototypes with locally controlled properties. Journal of manufacturing processes, 2002. 4(2): p. 129-141.10.1016/S1526-6125(02)70139-4Search in Google Scholar

9. Dawoud, M., I. Taha, and S.J. Ebeid, Mechanical behaviour of ABS: An experimental study using FDM and injection moulding techniques. Journal of Manufacturing Processes, 2016. 21: p. 39-45.10.1016/j.jmapro.2015.11.002Search in Google Scholar

10. Ahn, S.H., et al., Anisotropic Tensile Failure Model of Rapid Prototyping Parts - Fused Deposition Modeling (FDM). International Journal of Modern Physics B, 2003. 17(08n09): p. 1510-1516.10.1142/S0217979203019241Search in Google Scholar

11. Sood, A.K., R.K. Ohdar, and S.S. Mahapatra, Parametric appraisal of mechanical property of fused deposition modelling processed parts. Materials & Design, 2010. 31(1): p. 287-295.10.1016/j.matdes.2009.06.016Search in Google Scholar

12. Tymrak, B.M., M. Kreiger, and J.M. Pearce, Mechanical properties of components fabricated with opensource 3-D printers under realistic environmental conditions. Materials & Design, 2014. 58: p. 242-246.10.1016/j.matdes.2014.02.038Search in Google Scholar

13. Montero, M., et al., Material characterization of fused deposition modeling (FDM) ABS by designed experiments. Society of Manufacturing Engineers, 2001. 10(13552540210441166).Search in Google Scholar