Design and force analysis of end-effector for plug seedling transplanter.

Automatic transplanters have been very important in greenhouses since the popularization of seedling nurseries. End-effector development is a key technology for transplanting plug seedlings. Most existing end-effectors have problems with holding root plugs or releasing plugs. An efficient end-effect...

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Main Authors: Zhuohua Jiang, Yang Hu, Huanyu Jiang, Junhua Tong
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2017-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5498097?pdf=render
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spelling doaj-4a85bf9eab2344628e559b5914c40aec2020-11-24T20:45:47ZengPublic Library of Science (PLoS)PLoS ONE1932-62032017-01-01127e018022910.1371/journal.pone.0180229Design and force analysis of end-effector for plug seedling transplanter.Zhuohua JiangYang HuHuanyu JiangJunhua TongAutomatic transplanters have been very important in greenhouses since the popularization of seedling nurseries. End-effector development is a key technology for transplanting plug seedlings. Most existing end-effectors have problems with holding root plugs or releasing plugs. An efficient end-effector driven by a linear pneumatic cylinder was designed in this study, which could hold root plugs firmly and release plugs easily. This end-effector with four needles could clamp the plug simultaneously while the needles penetrate into the substrate. The depth and verticality of the needles could be adjusted conveniently for different seedling trays. The effectiveness of this end-effector was tested by a combinational trial examining three seedling nursery factors (the moisture content of the substrate, substrate bulk density and the volume proportion of substrate ingredients). Results showed that the total transplanting success rate for the end-effector was 100%, and the root plug harm rate was below 17%. A force measure system with tension and pressure transducers was installed on the designed end-effector. The adhesive force FL between the root plug and the cell of seedling trays and the extrusion force FK on the root plug were measured and analyzed. The results showed that all three variable factors and their interactions had significant effects on the extrusion force. Each factor had a significant effect on adhesive force. Additionally, it was found that the end-effector did not perform very well when the value of FK/FL was beyond the range of 5.99~8.67. This could provide a scientific basis for end-effector application in transplanting.http://europepmc.org/articles/PMC5498097?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Zhuohua Jiang
Yang Hu
Huanyu Jiang
Junhua Tong
spellingShingle Zhuohua Jiang
Yang Hu
Huanyu Jiang
Junhua Tong
Design and force analysis of end-effector for plug seedling transplanter.
PLoS ONE
author_facet Zhuohua Jiang
Yang Hu
Huanyu Jiang
Junhua Tong
author_sort Zhuohua Jiang
title Design and force analysis of end-effector for plug seedling transplanter.
title_short Design and force analysis of end-effector for plug seedling transplanter.
title_full Design and force analysis of end-effector for plug seedling transplanter.
title_fullStr Design and force analysis of end-effector for plug seedling transplanter.
title_full_unstemmed Design and force analysis of end-effector for plug seedling transplanter.
title_sort design and force analysis of end-effector for plug seedling transplanter.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2017-01-01
description Automatic transplanters have been very important in greenhouses since the popularization of seedling nurseries. End-effector development is a key technology for transplanting plug seedlings. Most existing end-effectors have problems with holding root plugs or releasing plugs. An efficient end-effector driven by a linear pneumatic cylinder was designed in this study, which could hold root plugs firmly and release plugs easily. This end-effector with four needles could clamp the plug simultaneously while the needles penetrate into the substrate. The depth and verticality of the needles could be adjusted conveniently for different seedling trays. The effectiveness of this end-effector was tested by a combinational trial examining three seedling nursery factors (the moisture content of the substrate, substrate bulk density and the volume proportion of substrate ingredients). Results showed that the total transplanting success rate for the end-effector was 100%, and the root plug harm rate was below 17%. A force measure system with tension and pressure transducers was installed on the designed end-effector. The adhesive force FL between the root plug and the cell of seedling trays and the extrusion force FK on the root plug were measured and analyzed. The results showed that all three variable factors and their interactions had significant effects on the extrusion force. Each factor had a significant effect on adhesive force. Additionally, it was found that the end-effector did not perform very well when the value of FK/FL was beyond the range of 5.99~8.67. This could provide a scientific basis for end-effector application in transplanting.
url http://europepmc.org/articles/PMC5498097?pdf=render
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