3D finite element analysis of tine cultivator and soil deformation

Q3 Agricultural and Biological Sciences Research in Agricultural Engineering Pub Date : 2023-09-03 DOI:10.17221/58/2022-rae
Muhammad Hashaam, Muhammad Waqar Akram, Moaz Ahmad, Muhammad Zuhaib Akram, Muhammad Faheem, Muhammad Maqsood, Muhammad Aleem
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Abstract

: For effective tillage, design and selection of tillage tool according to soil type and condition is very important. The present study is carried out for in-depth investigation of different types of shovels of tine cultivator and behavior of soil in response to loads subjected during tillage using finite element analysis. Different types of shovels like reversible, duck foot, seed drill and cultivator shovel are simulated with different types of soil like sand, clay and loam. The origination, level and distribution of stresses and deformations in shovels experienced in different types of soils are probed. Furthermore, high stressed and crack sensitive regions are identified. The stresses of 18, 53, 64 MPa are generated in reversible shovel of tine cultivator during ploughing in sandy, clay and loamy soil respectively. In addition, results of different shovels are compared, and it is found that the duck foot type shovel experiences highest stress and deformation. The duck foot shovel experiences about 20 and 71% higher stresses in loam compared to that in clay and sand respectively. Moreover, the study of soil mechanical behavior shows that the soil block (clay soil) experiences maximum stress of 34 MPa while tilling with reversible shovel. The statistical analysis is also conducted that shows high significance of simulation results.
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时空耕耘机三维有限元分析与土壤变形
根据土壤类型和土壤条件设计和选择耕作工具是有效耕作的关键。本研究采用有限元分析的方法,深入研究了不同类型的耕犁铲和土壤在耕作过程中对荷载的响应行为。不同类型的铲子,如可逆,鸭脚,播种机和耕耘铲模拟不同类型的土壤,如沙子,粘土和壤土。探讨了在不同类型的土中所经历的铲内应力和变形的产生、水平和分布。此外,还确定了高应力区和裂纹敏感区。在砂质土、粘土土和壤土中,时耕机可逆铲分别产生18、53、64 MPa的应力。此外,对不同铲的结果进行了比较,发现鸭脚铲承受的应力和变形最大。鸭脚铲在壤土中承受的应力分别比在粘土和砂土中高20%和71%。此外,土壤力学行为研究表明,土块(粘土)在可逆铲耕作时承受的最大应力为34 MPa。并进行了统计分析,表明仿真结果具有较高的显著性。
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来源期刊
Research in Agricultural Engineering
Research in Agricultural Engineering Engineering, agriculture-
CiteScore
1.40
自引率
0.00%
发文量
21
审稿时长
24 weeks
期刊介绍: Original scientific papers, short communications, information, and studies covering all areas of agricultural engineering, agricultural technology, processing of agricultural products, countryside buildings and related problems from ecology, energetics, economy, ergonomy and applied physics and chemistry. Papers are published in English.
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