莲藕主藕体弯曲破坏离散元仿真分析
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:财政部和农业农村部国家现代农业产业技术体系(CAR-24-D-02)


Discrete element simulation of bending failure of main lotus root
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    摘要:

    以鄂莲5号为试验对象,采用单轴压缩试验获取其主藕体弹性模量、剪切模量和泊松比等本征参数,通过摩擦、碰撞试验获取莲藕间及其与钢之间的碰撞恢复系数、静摩擦系数、滚动摩擦系数等接触参数。采用Geomagic studio 3D以及Solidworks软件对莲藕主藕体进行三维建模;利用EDEM仿真软件中的HertzMindlin with bonding模型,建立莲藕主藕体离散元模型。以莲藕主藕体弯曲破坏结果为对照,以法向粘结刚度、切向粘结刚度、法向临界应力、切向临界应力为影响因素,开展主藕体弯曲破坏离散元单因素和二因子模拟试验。试验结果显示,法向粘结刚度、切向粘结刚度对第一弯曲破坏发生时位移值以及第一峰值影响显著,法向临界应力、切向临界应力影响不显著;在法向临界应力为3.80 MPa、切向临界应力为3.12 MPa时,采用最速下降法分析确定主藕体法向粘结、切向粘结刚度最优解分别为5.814×108、3.450×108 N/m3,据此获得主藕体第一弯曲破坏仿真峰值和位移值分别为269.72 N、7.14 mm,仿真结果相对实测结果误差分别为2.56%、2.00%。

    Abstract:

    The Geomagic studio 3D and SolidWorks software were used to 3D modeling the main lotus root of Elian No.5 with the elastic modulus,shear modulus,Poisson’s ratio and other intrinsic parameters obtained by uniaxial compression test and the contact parameters including the collision coefficient of restitution,static friction coefficient and rolling friction coefficient among lotus roots and between lotus roots and steel obtained by friction and collision test.The Hertz Mindlin with bonding model in EDEM simulation software was used to establish the discrete element model of main lotus root.The bending failure test of the main lotus root was conducted on the texture analyzer.Referring to the test results,the singlefactor and twofactor discrete element simulation tests of the bending failure of the main lotus root were carried out with normal stiffness per unit area,shear stiffness per unit area,critical normal stress and critical shear stress as the influencing factors.The results showed that the normal stiffness per unit area and the shear stiffness per unit area significantly affected the displacement and the first peak value when the first bending failure occurred,while the critical normal stress and the critical shear stress had no obvious effects on them.When the critical normal stress was 3.80 MPa and the critical shear stress was 3.12 MPa,the optimal solutions of the normal stiffness per unit area and the shear stiffness per unit area were obtained by steepest descent method to be 5.814×108 N/m3 and 3.450×108 N/m3,respectively.Based on this,the simulation peak value of the first bending failure of the main lotus root was 269.72 N and the displacement value was 7.14 mm.The relative errors of the simulation results and the measured results were 2.56% and 2.00%,respectively.The discrete element model of lotus root established will provide important reference for simulating the mechanical harvesting process of lotus root and effectively reducing the damage of lotus root.

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焦俊,张国忠,杜俊,刘浩蓬,查显涛,邢赫.莲藕主藕体弯曲破坏离散元仿真分析[J].华中农业大学学报,2021,40(5):

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  • 收稿日期:2021-06-06
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  • 在线发布日期: 2021-09-29
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