Analysis of Dimensional Accuracy of ABS M30 Built Parts …
181
References
1. Anitha R, Arunachalam S, Radhakrishnan P (2001) Critical parameters influencing the quality
of prototypes in fused deposition modelling. J Mater Process Technol 118(1–3):385–388
2. Mohamed OA, Masood SH, Bhowmik JL (2016) Optimization of fused deposition modeling
process parameters for dimensional accuracy using I-optimality criterion. Measu, Eng Sci
Technol 81(1):174–196
3. Thrimurthulu KPPM, Pandey PM, Reddy NV (2004) Optimum part deposition orientation in
fused deposition modelling. Int J Mach Tools Manuf 44(6):585–594
4. Sood AK, Ohdar RK, Mahapatra SS (2009) Improving dimensional accuracy of fused
deposition modelling processed part using grey Taguchi method. Mater Des 30(10):4243–4252
5. Croccolo D, De Agostinis M, Olmi G (2013) Experimental characterization and analytical
modelling of the mechanical behaviour of fused deposition processed parts made of ABS-M30’.
Comput Mater Sci 79(11):506–518
6. Es-Said OS, Foyos J, Noorani R, Mendelson M, Marloth R, Pregger BA (2000) Effect of layer
orientation on mechanical properties of rapid prototyped samples. Mater Manuf Processes
15(1):107–122
7. Zhu Z, Anwer N, Mathieu L (2017) Deviation modeling and shape transformation in design
for additive manufacturing. Procedia CIRP 60(5):211–216
8. Galantucci LM, Lavecchia F, Percoco G (2009) Experimental study aiming to enhance the
surface finish of fused deposition modeled parts. CIRP Ann 58(1):189–192
9. Rattanawong W, Masood SH, Iovenitti P (2001) A volumetric approach to part-build
orientations in rapid prototyping. J Mater Process Technol 119(1–3):348–353
10. Mishra SB, Abhishek K, Satapathy MP, Mahapatra SS (2017) Parametric appraisal of
compressive strength of FDM build parts’. Mater Today: Proc 4(9):9456–9460
11. Panda SK, Padhee S, Sood AK, Mahapatra SS (2009) Optimization of fused deposition
modelling (FDM) process parameters using bacterial foraging technique. Intell Inf Manag
1(2):89–97
12. Chatterjee S (2014) A study on parametric appraisal of drilling on bio-compatible materials.
(Master of technology dissertation)
13. Chatterjee S, Mahapatra SS, Sahu AK, Bhardwaj VK, Choubey A, Upadhyay BN, Bindra KS,
Experimental and parametric evaluation of quality characteristics in Nd: YAG laser microdrilling of Ti6Al4V and AISI 316’. In: ASME 2017 gas turbine India conference. American
Society of Mechanical Engineers, pp V002T10A006-V002T10A006
14. Chatterjee S, Abhishek K, Mahapatra SS, Datta S, Yadav RK (2014) NSGA-II approach of
optimization to study the effects of drilling parameters in AISI-304 stainless steel. Procedia
Eng 97:78–84
181
References
1. Anitha R, Arunachalam S, Radhakrishnan P (2001) Critical parameters influencing the quality
of prototypes in fused deposition modelling. J Mater Process Technol 118(1–3):385–388
2. Mohamed OA, Masood SH, Bhowmik JL (2016) Optimization of fused deposition modeling
process parameters for dimensional accuracy using I-optimality criterion. Measu, Eng Sci
Technol 81(1):174–196
3. Thrimurthulu KPPM, Pandey PM, Reddy NV (2004) Optimum part deposition orientation in
fused deposition modelling. Int J Mach Tools Manuf 44(6):585–594
4. Sood AK, Ohdar RK, Mahapatra SS (2009) Improving dimensional accuracy of fused
deposition modelling processed part using grey Taguchi method. Mater Des 30(10):4243–4252
5. Croccolo D, De Agostinis M, Olmi G (2013) Experimental characterization and analytical
modelling of the mechanical behaviour of fused deposition processed parts made of ABS-M30’.
Comput Mater Sci 79(11):506–518
6. Es-Said OS, Foyos J, Noorani R, Mendelson M, Marloth R, Pregger BA (2000) Effect of layer
orientation on mechanical properties of rapid prototyped samples. Mater Manuf Processes
15(1):107–122
7. Zhu Z, Anwer N, Mathieu L (2017) Deviation modeling and shape transformation in design
for additive manufacturing. Procedia CIRP 60(5):211–216
8. Galantucci LM, Lavecchia F, Percoco G (2009) Experimental study aiming to enhance the
surface finish of fused deposition modeled parts. CIRP Ann 58(1):189–192
9. Rattanawong W, Masood SH, Iovenitti P (2001) A volumetric approach to part-build
orientations in rapid prototyping. J Mater Process Technol 119(1–3):348–353
10. Mishra SB, Abhishek K, Satapathy MP, Mahapatra SS (2017) Parametric appraisal of
compressive strength of FDM build parts’. Mater Today: Proc 4(9):9456–9460
11. Panda SK, Padhee S, Sood AK, Mahapatra SS (2009) Optimization of fused deposition
modelling (FDM) process parameters using bacterial foraging technique. Intell Inf Manag
1(2):89–97
12. Chatterjee S (2014) A study on parametric appraisal of drilling on bio-compatible materials.
(Master of technology dissertation)
13. Chatterjee S, Mahapatra SS, Sahu AK, Bhardwaj VK, Choubey A, Upadhyay BN, Bindra KS,
Experimental and parametric evaluation of quality characteristics in Nd: YAG laser microdrilling of Ti6Al4V and AISI 316’. In: ASME 2017 gas turbine India conference. American
Society of Mechanical Engineers, pp V002T10A006-V002T10A006
14. Chatterjee S, Abhishek K, Mahapatra SS, Datta S, Yadav RK (2014) NSGA-II approach of
optimization to study the effects of drilling parameters in AISI-304 stainless steel. Procedia
Eng 97:78–84
