Bionic Design of a Potato Digging Shovel with Drag Reduction Based on the Discrete Element Method (DEM) in Clay Soil

The resistance of ordinary potato digging shovels can increase dramatically when used in a clay soil because of the adhesion between the soil and shovel. In this paper, a new type of bionic potato digging shovel was designed to decrease adhesion. The bionic structural elements, i.e., scalelike units...

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Main Authors: Junwei Li, Xiaohu Jiang, Yunhai Ma, Jin Tong, Bin Hu
Format: Article
Language:English
Published: MDPI AG 2020-10-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/10/20/7096
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spelling doaj-0898cb19a4504edb9191a682f3ee9eaf2020-11-25T02:19:29ZengMDPI AGApplied Sciences2076-34172020-10-01107096709610.3390/app10207096Bionic Design of a Potato Digging Shovel with Drag Reduction Based on the Discrete Element Method (DEM) in Clay SoilJunwei Li0Xiaohu Jiang1Yunhai Ma2Jin Tong3Bin Hu4College of Mechanical and Electrical Engineering, Shihezi University, Shihezi 832000, ChinaKey Laboratory of Bionic Engineering, Ministry of Education, Jilin University, Changchun 130022, ChinaKey Laboratory of Bionic Engineering, Ministry of Education, Jilin University, Changchun 130022, ChinaKey Laboratory of Bionic Engineering, Ministry of Education, Jilin University, Changchun 130022, ChinaCollege of Mechanical and Electrical Engineering, Shihezi University, Shihezi 832000, ChinaThe resistance of ordinary potato digging shovels can increase dramatically when used in a clay soil because of the adhesion between the soil and shovel. In this paper, a new type of bionic potato digging shovel was designed to decrease adhesion. The bionic structural elements, i.e., scalelike units (S-U) were applied to the potato digging shovel with inspiration from pangolin scales. The discrete element method (DEM) considered cohesion was used to simulate the drag reduction performance in clayey soil conditions. An ordinary plane shovel (O-P-S) was used for comparison. Three indicators (total force, draft force and compressive force) were used to characterize the drag reduction performance. The effect of the design variables of the bionic structures (length [l] and height [h]) and the transversal and longitudinal arrangement spacing (S1 and S2) of the structures on the drag reduction performance were analyzed. The results showed that the drag reduction performance of the bionic shovels with suitable parameters was better than that of the O-P-S. The best bionic sample labeled as a bionic prototype had a 22.26% drag reduction rate during the soil bin test and a 14.19% drag reduction rate during the field test compared to the O-P-S.https://www.mdpi.com/2076-3417/10/20/7096bionic designclay soildrag reductiondiscrete element methodpotato digging shovel
collection DOAJ
language English
format Article
sources DOAJ
author Junwei Li
Xiaohu Jiang
Yunhai Ma
Jin Tong
Bin Hu
spellingShingle Junwei Li
Xiaohu Jiang
Yunhai Ma
Jin Tong
Bin Hu
Bionic Design of a Potato Digging Shovel with Drag Reduction Based on the Discrete Element Method (DEM) in Clay Soil
Applied Sciences
bionic design
clay soil
drag reduction
discrete element method
potato digging shovel
author_facet Junwei Li
Xiaohu Jiang
Yunhai Ma
Jin Tong
Bin Hu
author_sort Junwei Li
title Bionic Design of a Potato Digging Shovel with Drag Reduction Based on the Discrete Element Method (DEM) in Clay Soil
title_short Bionic Design of a Potato Digging Shovel with Drag Reduction Based on the Discrete Element Method (DEM) in Clay Soil
title_full Bionic Design of a Potato Digging Shovel with Drag Reduction Based on the Discrete Element Method (DEM) in Clay Soil
title_fullStr Bionic Design of a Potato Digging Shovel with Drag Reduction Based on the Discrete Element Method (DEM) in Clay Soil
title_full_unstemmed Bionic Design of a Potato Digging Shovel with Drag Reduction Based on the Discrete Element Method (DEM) in Clay Soil
title_sort bionic design of a potato digging shovel with drag reduction based on the discrete element method (dem) in clay soil
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2020-10-01
description The resistance of ordinary potato digging shovels can increase dramatically when used in a clay soil because of the adhesion between the soil and shovel. In this paper, a new type of bionic potato digging shovel was designed to decrease adhesion. The bionic structural elements, i.e., scalelike units (S-U) were applied to the potato digging shovel with inspiration from pangolin scales. The discrete element method (DEM) considered cohesion was used to simulate the drag reduction performance in clayey soil conditions. An ordinary plane shovel (O-P-S) was used for comparison. Three indicators (total force, draft force and compressive force) were used to characterize the drag reduction performance. The effect of the design variables of the bionic structures (length [l] and height [h]) and the transversal and longitudinal arrangement spacing (S1 and S2) of the structures on the drag reduction performance were analyzed. The results showed that the drag reduction performance of the bionic shovels with suitable parameters was better than that of the O-P-S. The best bionic sample labeled as a bionic prototype had a 22.26% drag reduction rate during the soil bin test and a 14.19% drag reduction rate during the field test compared to the O-P-S.
topic bionic design
clay soil
drag reduction
discrete element method
potato digging shovel
url https://www.mdpi.com/2076-3417/10/20/7096
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