Design and dynamics calculations of shallot seed feeding mechanism

Q2 Materials Science Engineering Solid Mechanics Pub Date : 2022-01-01 DOI:10.5267/j.esm.2021.10.001
C. H. Phi, Le Trung Hau, Cao Dang Long
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Abstract

Research on shallot planting feeding technology is an integral part of the shallot planter associations in which determines the suitable drop of shallot seeds to the planting mechanism. The shape of shallot seed will affect the process of selecting the feeding mechanism and feeding funnel shape. The dynamics study of shallot seeds in the feeding funnel and their movement (that is dependent on the profile and mass property of seeds) is important for manufacturing and running a good mechanism. The shallots will then be transferred by the feeding mechanism to the planting mechanism with a suitable falling trajectory. In this research, design and calculation of dynamics of the feeding mechanism of the shallot seeds is investigated using dynamics equations and also Autodesk Inventor Professional and Matlab Simulink codes. The suitable ranges of feeding mechanism parameters are obtained for the analyzed shallot seeds in terms of the specific shape, weight and mass center coordinates of the seeds.
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大葱投种机构的设计与动力学计算
大葱种植投料技术研究是大葱种植者协会的重要组成部分,它决定了大葱种子对种植的适宜投料机制。青葱种子的形状会影响进料机构和进料漏斗形状的选择过程。研究进料漏斗中青葱种子的动力学及其运动(取决于种子的形状和质量性质)对制造和运行一个好的机构具有重要意义。然后,青葱将由饲喂机构以合适的下落轨迹转移到种植机构。在本研究中,利用动力学方程和Autodesk Inventor Professional和Matlab Simulink代码对青葱种子的喂料机构进行了动力学设计和计算。根据所分析的青葱种子的具体形状、重量和质心坐标,得出了适宜的进料机构参数范围。
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来源期刊
Engineering Solid Mechanics
Engineering Solid Mechanics Materials Science-Metals and Alloys
CiteScore
3.00
自引率
0.00%
发文量
21
期刊介绍: Engineering Solid Mechanics (ESM) is an online international journal for publishing high quality peer reviewed papers in the field of theoretical and applied solid mechanics. The primary focus is to exchange ideas about investigating behavior and properties of engineering materials (such as metals, composites, ceramics, polymers, FGMs, rocks and concretes, asphalt mixtures, bio and nano materials) and their mechanical characterization (including strength and deformation behavior, fatigue and fracture, stress measurements, etc.) through experimental, theoretical and numerical research studies. Researchers and practitioners (from deferent areas such as mechanical and manufacturing, aerospace, railway, bio-mechanics, civil and mining, materials and metallurgy, oil, gas and petroleum industries, pipeline, marine and offshore sectors) are encouraged to submit their original, unpublished contributions.
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