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农业生物质颗粒在装卸和储存过程中不同高度下破碎行为的有限元建模

Finite element modeling of the breakage behavior of agricultural biomass pellets under different heights during handling and storage.

作者信息

Awny A, Radwan Mona N, Nour M A, Fouda Sally S, Al-Dhumri Sami A, Soliman Soliman M, El-Tahan Amira M, El-Saadony Mohamed T, Faid-Allah Reham S A

机构信息

Agricultural Engineering Department, Faculty of Agriculture, Zagazig University, Egypt.

Agricultural Engineering Research Institute (AENRI), Agricultural Research Center, Egypt.

出版信息

Saudi J Biol Sci. 2022 Mar;29(3):1407-1415. doi: 10.1016/j.sjbs.2021.11.034. Epub 2021 Nov 24.

Abstract

It is very important to determine the amount of mechanical damage to biomass pellets during handling, transportation, and storage. However, it is difficult to determine the amount of damage to biomass pellets caused by existing external forces. However, a useful method is the finite element methods, which can be used in different engineering fields to simulate the posture of the material under defined boundary conditions. In this research, a drop test simulation of biomass pellet samples was performed by using the finite element method. An experimental study (compressive test) was carried out to measure some mechanical properties of the sample and use the obtained data in the finite element method simulation. The stress-strain curve of different biomass pellets was determined. Yield strength, Poisson's ratio, ultimate strength and modulus of elasticity, and stress were identified. In the end, the maximum equivalent stress, highest contact force (generated normal force from target surface at impact), and shape of deformation of samples at impact were obtained from simulation results. The drop scenario was created with 25 steps after the impact site, and the FEM simulation was solved. The maximum stress value was 9.486 MPa, and the maximum generated force was 485.31 N. at step 8 of the FEM simulation. When the stress magnitudes were assessed, simulation outputs indicated that simulation stress values are inconsistent with experimental data.

摘要

确定生物质颗粒在处理、运输和储存过程中的机械损伤量非常重要。然而,很难确定现有外力对生物质颗粒造成的损伤量。然而,一种有用的方法是有限元方法,它可用于不同的工程领域,以模拟在定义的边界条件下材料的姿态。在本研究中,采用有限元方法对生物质颗粒样品进行了跌落试验模拟。进行了一项实验研究(压缩试验),以测量样品的一些力学性能,并将获得的数据用于有限元方法模拟。确定了不同生物质颗粒的应力-应变曲线。确定了屈服强度、泊松比、极限强度和弹性模量以及应力。最后,从模拟结果中获得了最大等效应力、最高接触力(冲击时从目标表面产生的法向力)以及冲击时样品的变形形状。在撞击点之后分25步创建跌落场景,并求解有限元模拟。在有限元模拟的第8步,最大应力值为9.486兆帕,最大产生力为485.31牛。当评估应力大小的时候,模拟输出表明模拟应力值与实验数据不一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ec4/8913545/6dffc3e234e3/gr1.jpg

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