The mechanism of resistance-reducing/anti-adhesion and its application on biomimetic disc furrow opener

The black soil of Northeast China is sticky and agglomerates easily, which often adheres to the surface of a traditional furrow opener during the furrowing process. In this paper, biomimetic design principles in resistance-reducing, anti-adhesion and resistance-reducing mechanism of biomimetic disc...

Full description

Bibliographic Details
Main Authors: Jiyu Sun, Yueming Wang, Shujun Zhang, Yunhai Ma, Jin Tong, Zhijun Zhang
Format: Article
Language:English
Published: AIMS Press 2020-07-01
Series:Mathematical Biosciences and Engineering
Subjects:
Online Access:https://www.aimspress.com/article/doi/10.3934/mbe.2020256?viewType=HTML
id doaj-e4b3eaa498c14c1997a82a3139e0c0db
record_format Article
spelling doaj-e4b3eaa498c14c1997a82a3139e0c0db2021-09-08T01:51:53ZengAIMS PressMathematical Biosciences and Engineering1551-00182020-07-011754657467710.3934/mbe.2020256The mechanism of resistance-reducing/anti-adhesion and its application on biomimetic disc furrow openerJiyu Sun0Yueming Wang1Shujun Zhang 2Yunhai Ma3Jin Tong 4Zhijun Zhang51. Key Laboratory of Bionic Engineering (Ministry of Education), Jilin University, Changchun, 130022, P. R. China1. Key Laboratory of Bionic Engineering (Ministry of Education), Jilin University, Changchun, 130022, P. R. China2. School of Computing and Technology, Gloucestershire University, Cheltenham GL50 2HR, UK1. Key Laboratory of Bionic Engineering (Ministry of Education), Jilin University, Changchun, 130022, P. R. China1. Key Laboratory of Bionic Engineering (Ministry of Education), Jilin University, Changchun, 130022, P. R. China3. Key Laboratory of CNC Equipment Reliability (Ministry of Education) and School of Mechanical and Aerospace Engineering, Jilin University, Changchun, 130022, P. R. ChinaThe black soil of Northeast China is sticky and agglomerates easily, which often adheres to the surface of a traditional furrow opener during the furrowing process. In this paper, biomimetic design principles in resistance-reducing, anti-adhesion and resistance-reducing mechanism of biomimetic disc furrow opener were studied. Nine kinds of singular convex hull, nine kinds of singular wedge and nine kinds of mixed convex hull and wedge structural biomimetic disc furrow opener were designed, and the furrowing process with the soil simulated by finite element method (FEM).Three types of biomimetic disc furrow opener with less resistance were manufactured by laser processing for comparative test in soil bin based on the simulation results. The test results showed that the resistance of the biomimetic disc furrow opener was less than that of the ordinary disc. The soil-disc stress, influence of biomimetic structures, moisture content and furrow speeds on resistance were discussed. The resistance-reducing rate of D-BC-3 reached the maximum value 15.36% at the furrow speed of 0.6 m/s and the soil moisture content of 20%. It is believed that the biomimetic design principles can provide the significant inspirations for the future design of disc furrow opener with drag reduction.https://www.aimspress.com/article/doi/10.3934/mbe.2020256?viewType=HTMLbiomimeticdisc furrow openerresistance-reducingoptimal design
collection DOAJ
language English
format Article
sources DOAJ
author Jiyu Sun
Yueming Wang
Shujun Zhang
Yunhai Ma
Jin Tong
Zhijun Zhang
spellingShingle Jiyu Sun
Yueming Wang
Shujun Zhang
Yunhai Ma
Jin Tong
Zhijun Zhang
The mechanism of resistance-reducing/anti-adhesion and its application on biomimetic disc furrow opener
Mathematical Biosciences and Engineering
biomimetic
disc furrow opener
resistance-reducing
optimal design
author_facet Jiyu Sun
Yueming Wang
Shujun Zhang
Yunhai Ma
Jin Tong
Zhijun Zhang
author_sort Jiyu Sun
title The mechanism of resistance-reducing/anti-adhesion and its application on biomimetic disc furrow opener
title_short The mechanism of resistance-reducing/anti-adhesion and its application on biomimetic disc furrow opener
title_full The mechanism of resistance-reducing/anti-adhesion and its application on biomimetic disc furrow opener
title_fullStr The mechanism of resistance-reducing/anti-adhesion and its application on biomimetic disc furrow opener
title_full_unstemmed The mechanism of resistance-reducing/anti-adhesion and its application on biomimetic disc furrow opener
title_sort mechanism of resistance-reducing/anti-adhesion and its application on biomimetic disc furrow opener
publisher AIMS Press
series Mathematical Biosciences and Engineering
issn 1551-0018
publishDate 2020-07-01
description The black soil of Northeast China is sticky and agglomerates easily, which often adheres to the surface of a traditional furrow opener during the furrowing process. In this paper, biomimetic design principles in resistance-reducing, anti-adhesion and resistance-reducing mechanism of biomimetic disc furrow opener were studied. Nine kinds of singular convex hull, nine kinds of singular wedge and nine kinds of mixed convex hull and wedge structural biomimetic disc furrow opener were designed, and the furrowing process with the soil simulated by finite element method (FEM).Three types of biomimetic disc furrow opener with less resistance were manufactured by laser processing for comparative test in soil bin based on the simulation results. The test results showed that the resistance of the biomimetic disc furrow opener was less than that of the ordinary disc. The soil-disc stress, influence of biomimetic structures, moisture content and furrow speeds on resistance were discussed. The resistance-reducing rate of D-BC-3 reached the maximum value 15.36% at the furrow speed of 0.6 m/s and the soil moisture content of 20%. It is believed that the biomimetic design principles can provide the significant inspirations for the future design of disc furrow opener with drag reduction.
topic biomimetic
disc furrow opener
resistance-reducing
optimal design
url https://www.aimspress.com/article/doi/10.3934/mbe.2020256?viewType=HTML
work_keys_str_mv AT jiyusun themechanismofresistancereducingantiadhesionanditsapplicationonbiomimeticdiscfurrowopener
AT yuemingwang themechanismofresistancereducingantiadhesionanditsapplicationonbiomimeticdiscfurrowopener
AT shujunzhang themechanismofresistancereducingantiadhesionanditsapplicationonbiomimeticdiscfurrowopener
AT yunhaima themechanismofresistancereducingantiadhesionanditsapplicationonbiomimeticdiscfurrowopener
AT jintong themechanismofresistancereducingantiadhesionanditsapplicationonbiomimeticdiscfurrowopener
AT zhijunzhang themechanismofresistancereducingantiadhesionanditsapplicationonbiomimeticdiscfurrowopener
AT jiyusun mechanismofresistancereducingantiadhesionanditsapplicationonbiomimeticdiscfurrowopener
AT yuemingwang mechanismofresistancereducingantiadhesionanditsapplicationonbiomimeticdiscfurrowopener
AT shujunzhang mechanismofresistancereducingantiadhesionanditsapplicationonbiomimeticdiscfurrowopener
AT yunhaima mechanismofresistancereducingantiadhesionanditsapplicationonbiomimeticdiscfurrowopener
AT jintong mechanismofresistancereducingantiadhesionanditsapplicationonbiomimeticdiscfurrowopener
AT zhijunzhang mechanismofresistancereducingantiadhesionanditsapplicationonbiomimeticdiscfurrowopener
_version_ 1717762966535798784