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:2014,Vol:19,Issue(4):251-254 |
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Citation: |
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DAI Yue, REN Chong, FANG Wei-xin. Design of the FDM Scanning Mode Based on ANSYS[J]. International Journal of Plant Engineering and Management, 2014, 19(4): 251-254 |
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Design of the FDM Scanning Mode Based on ANSYS |
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DAI Yue, REN Chong, FANG Wei-xin |
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Inner Mongolia University of Science & Technology, Baotou 014010, P.R.Chinese |
Abstract: |
Fused deposition rapid prototyping is an important technology of rapid prototyping. In order to improve the processing technology,the process plan to change its scanning mode is put forward,through the finite element simulation. The verification in the accumulation of fewer layers change the long and short side scanning to improve the rationality of fused deposition rapid prototyping. Based on the ANSYS version of the classic Gauss heat source on the use of mobile technology,it is reasonable to describe the formation process of fused deposition rapid prototyping,and put forward the improvement scheme is put forward. |
Key words:
rapid prototyping
FDM Process
ANSYS
gaussian heat moving source
scanning mode
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Received: 2014-11-10
Revised:
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DOI: 10.13434/j.cnki.1007-4546.2014.0410 |
Corresponding author:
Email: |
Author description:
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References: |
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[1] Fan L R. Uniform wall FDM technology in rapid prototyping technology research method based on thick filled [D]. Baotou: Inner Mongolia University of Science and Technology,2011 (in Chinese) [2] Pei L, Wu R D,Zhang J,et al. Scanning speed on fused deposition forming finite element analysis of the effect of [J]. China Mechanical Engineering, 2003, (8):687-690 (in Chinese) [3] Zhang H C. Where the wave.ANSYS13.0 from entry to the actual[M]. Beijing: Mechanical Industry Press, 2011 [4] Chen J. FDM scanning mode of[D]. Wuhan: Huazhong University of Science and Technology,2009 (in Chinese) [5] Gurr M,Thomann Y,Nedelcu M,et al. Novel acrylic nanocomposites constaining in-situ formed calcium phosphate/layered silicate hybrid nanoparticles for photochemical rapid prototyping, rapid tooling and rapid manufacturing processes[J].Polymer, 2010, (51):5058-5070 |
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