Title of article :
Electrical Energy Demand Modeling of 3D Printing Technology for Sustainable Manufacture
Author/Authors :
Balogun, V. A. Department of Mechanical & Mechatronics Engineering - Afe Babalola University, Ado Ekiti, Nigeria , Oladapo, B. I. Department of Mechanical & Mechatronics Engineering - Afe Babalola University, Ado Ekiti, Nigeria
Abstract :
The advent of 3D printers has been embraced globally within few years of its emergence. The surge in the acceptability of rapid manufacturing RM technology can be attributed to the depletion and cost of natural resources, waste reduction and sustainability criterion of manufactured parts. This rapidly evolving 3D printing technologies is predicted to grow exponentially especially for the manufacture of customized and geometrically complex products. Therefore, it is appropriate to consider and optimize the resource efficiency of 3D printing technologies at this early stage of this technology development. In this work, the direct electrical energy demand of 3D printing (i.e. fused deposition modeling) was studied and a generic model proposed. The developed model was further validated with the Stratasys Dimension SST FDM in order to evaluate and ascertain the generic application of the model. This work is a further contribution to the existing foundation for electrical energy demand modeling and optimization for the rapidly expanding 3D printing processes.
Farsi abstract :
ﻇﻬﻮر ﭘﺮﯾﻨﺘﺮﻫﺎي ﺳﻪ ﺑﻌﺪي 3D ( در ﺳﻄﺢ ﺟﻬﺎن در ﭼﻨﺪ ﺳﺎل اﺧﯿﺮ اﺳﺘﻔﺎده از آن را ﺑﺎ اﺳﺘﻘﺒﺎل ﭼﺸﻢﮔﯿﺮي ﻣﻮاﺟﻪ ﺳﺎﺧﺘه است اﺳﺖ. اﻓﺰاﯾﺶ ﭘﺬﯾﺮش اﺳﺘﺮاﺗﮋي ﺗﻮﻟﯿﺪ ﺳﺮﯾﻊ rm را ﻣﯽﺗﻮان ﺑﻪ ﮐﺎﻫﺶ ﻫﺰﯾﻨﻪ ﻣﻨﺎﺑﻊ ﻃﺒﯿﻌﯽ، ﮐﺎﻫﺶ ﭘﺲﻣﺎﻧﺪ و ﻣﻌﯿﺎرﻫﺎي
ﭘﺎﯾﺪاري ﻗﻄﻌﺎت ﺗﻮﻟﯿﺪ ﺷﺪه ﻧﺴﺒﺖ داد. ﺳﺮﻋﺖ رﺷﺪ اﯾﻦ ﻓﻨﺎوري )ﭼﺎپ ﺳﻪ ﺑﻌﺪي( در ﺣﺎل ﺗﺤﻮل، ﺑﻪوﯾﮋه ﺑﺮاي ﺗﻮﻟﯿﺪ ﻣﺤﺼﻮﻻت ﺳﻔﺎرﺷﯽ و ﺷﮑﻞﻫﺎي ﻫﻨﺪﺳﯽ ﭘﯿﭽﯿﺪه ﺑﻪ ﺻﻮرت ﻧﻤﺎﯾﯽ ﭘﯿﺶ ﺑﯿﻨﯽ ﺷﺪه اﺳﺖ. ﺑﻨﺎﺑﺮاﯾﻦ، ﻣﻨﺎﺳﺐ اﺳﺖ ﮐﻪ ﺑﺮاي ﺑﻬﯿﻨﻪ ﺳﺎزي ﺑﻬﺮهوري ﻣﻨﺎﺑﻊ ﻓﻨﺎوريﻫﺎي ﭼﺎپ ﺳﻪ ﺑﻌﺪي در اﯾﻦ ﻣﺮﺣﻠﻪ اوﻟﯿﻪ اﯾﻦ ﺗﻮﺳﻌﻪ ﻓﻨﺎوري اﻗﺪام ﺷﻮد. در اﯾﻦ ﻣﻘﺎله ﺗﻘﺎﺿﺎي ﻣﺴﺘﻘﯿﻢ اﻧﺮژي اﻟﮑﺘﺮﯾﮑﯽ )ﺑﻪ ﻋﻨﻮان ﻣﺜﺎل ﻣﺪل ﺳﺎزي رﺳﻮب ذوب(، ﻣﻮرد ﻣﻄﺎﻟﻌﻪ ﻗﺮار ﮔﺮﻓﺘﻪ و ﯾﮏ ﻣﺪل ﻋﻤﻮﻣﯽ اراﺋﻪ ﺷﺪه اﺳﺖ. ﺻﺤﻪﮔﺬاري ﻣﺪل ﻣﻮرد ﻧﻈﺮ ﺑﺎ ﻧﺮم اﻓﺰار SST FDM Stratasys اﻧﺠﺎم ﺷﺪ. اﯾﻦ ﮐﺎر ﮐﻤﮏ ﺑﯿﺸﺘﺮي به دادهﻫﺎي ﻣﻮﺟﻮد ﺑﺮاي ﻣﺪل ﺳﺎزي ﺗﻘﺎﺿﺎي اﻧﺮژي اﻟﮑﺘﺮﯾﮑﯽ و ﺑﻬﯿﻨﻪ ﺳﺎزي ﺑﺮاي ﺳﺮﻋﺖ در ﺣﺎل ﮔﺴﺘﺮش ﻓﺮآﯾﻨﺪﻫﺎي ﭼﺎپ ﺳﻪ ﺑﻌﺪي ﻣﯽﺑﺎﺷﺪ.
Keywords :
3D Printer , Printing Energy , Rapid Prototyping , Fused Deposition
Journal title :
International Journal of Engineering