Simulation analysis of turbine blade in 3D printing aquarium

3D printing of the flexibility is the most admirable place, no matter when or where, as long as the machine can make the abstract design of finished products or difficult to process the finished product printed out as a sample. And in the product design, through the 3D print out the entity, to more...

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Main Authors: Chen Dyi-Cheng, Lai Bo-Yan, Gao Fu-Yuan
Format: Article
Language:English
Published: EDP Sciences 2017-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201712300008
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spelling doaj-0636a5acc9684e64ac5d81025205ac832021-02-02T00:03:47ZengEDP SciencesMATEC Web of Conferences2261-236X2017-01-011230000810.1051/matecconf/201712300008matecconf_icpmmt2017_00008Simulation analysis of turbine blade in 3D printing aquariumChen Dyi-ChengLai Bo-YanGao Fu-Yuan3D printing of the flexibility is the most admirable place, no matter when or where, as long as the machine can make the abstract design of finished products or difficult to process the finished product printed out as a sample. And in the product design, through the 3D print out the entity, to more specific observation of the advantages and disadvantages of finished products, which shorten the time of many creative research and development, but also relatively reduce the defective factors. As in recent years, 3D printing technology is progressing, material adhesion, precision and parts of the degree of cooperation has increased, coupled with many parts taking into account the cost, production and other issues, and then let a lot of light load small parts or special parts choose to use 3D to print the finished product to replace. This study focuses on the plastic turbine blades that drive water in the aquarium, but the 3D printing is done by stacking. However, the general stress analysis software can set the material to analyze the deformation results of the force, nor the 3D to analyze the software. Therefore, this study first analyzes the deformation of turbine blade by software, and then verifies the situation of 3D printing turbine blade, and then compares the actual results of software analysis and 3D printing. The results can provide the future of 3D product consider the strength factor. The study found that the spiral blade design allows the force points to be dispersed to avoid hard focus.https://doi.org/10.1051/matecconf/201712300008
collection DOAJ
language English
format Article
sources DOAJ
author Chen Dyi-Cheng
Lai Bo-Yan
Gao Fu-Yuan
spellingShingle Chen Dyi-Cheng
Lai Bo-Yan
Gao Fu-Yuan
Simulation analysis of turbine blade in 3D printing aquarium
MATEC Web of Conferences
author_facet Chen Dyi-Cheng
Lai Bo-Yan
Gao Fu-Yuan
author_sort Chen Dyi-Cheng
title Simulation analysis of turbine blade in 3D printing aquarium
title_short Simulation analysis of turbine blade in 3D printing aquarium
title_full Simulation analysis of turbine blade in 3D printing aquarium
title_fullStr Simulation analysis of turbine blade in 3D printing aquarium
title_full_unstemmed Simulation analysis of turbine blade in 3D printing aquarium
title_sort simulation analysis of turbine blade in 3d printing aquarium
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2017-01-01
description 3D printing of the flexibility is the most admirable place, no matter when or where, as long as the machine can make the abstract design of finished products or difficult to process the finished product printed out as a sample. And in the product design, through the 3D print out the entity, to more specific observation of the advantages and disadvantages of finished products, which shorten the time of many creative research and development, but also relatively reduce the defective factors. As in recent years, 3D printing technology is progressing, material adhesion, precision and parts of the degree of cooperation has increased, coupled with many parts taking into account the cost, production and other issues, and then let a lot of light load small parts or special parts choose to use 3D to print the finished product to replace. This study focuses on the plastic turbine blades that drive water in the aquarium, but the 3D printing is done by stacking. However, the general stress analysis software can set the material to analyze the deformation results of the force, nor the 3D to analyze the software. Therefore, this study first analyzes the deformation of turbine blade by software, and then verifies the situation of 3D printing turbine blade, and then compares the actual results of software analysis and 3D printing. The results can provide the future of 3D product consider the strength factor. The study found that the spiral blade design allows the force points to be dispersed to avoid hard focus.
url https://doi.org/10.1051/matecconf/201712300008
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AT laiboyan simulationanalysisofturbinebladein3dprintingaquarium
AT gaofuyuan simulationanalysisofturbinebladein3dprintingaquarium
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