Autor: |
Prajadhiama Keval P, Manurung Yupiter HP, Minggu Zaidi, Pengadau Fetisia HS, Graf Marcel, Haelsig Andre, Adams Tom-Eric, Choo Hui Leng |
Jazyk: |
English<br />French |
Rok vydání: |
2019 |
Předmět: |
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Zdroj: |
MATEC Web of Conferences, Vol 269, p 05003 (2019) |
Druh dokumentu: |
article |
ISSN: |
2261-236X |
DOI: |
10.1051/matecconf/201926905003 |
Popis: |
In this research, Wire Arc Additive Manufacturing is modelled and simulated to determine the most suitable bead modelling strategy. This analysis is aimed to predict distortion by means of thermomechanical Finite Element Method (FEM). The product model with wire as feedstock on plate as substrate and process simulation are designed in form of multi-layered beads and single string using MSC Marc/Mentat. This research begins with finding suitable WAAM parameters which takes into account the bead quality. This is done by using robotic welding system with 01.2mm filler wire (AWS A5.28 : ER80SNi1), shielding gas (80% Ar/ 20% CO2) and 6mm-thick low carbon steel as base plate. Further, modelling as well as simulation are to be conducted with regards to bead spreading of each layers. Two different geometrical modelling regarding the weld bead are modelled which are arc and rectangular shape. Equivalent material properties from database and previous researches are implemented into simulation to ensure a realistic resemblance. It is shown that bead modelling with rectangular shape exhibits faster computational time with less error percentage on distortion result compared to arc shape. Moreover, by using the rectangular shape, the element and meshing are much easier to be designed rather than arc shape bead. |
Databáze: |
Directory of Open Access Journals |
Externí odkaz: |
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