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Application of finite elements of various dimensions in strength calculations of thin-wall constructions of agro-industrial complex

机译:各种尺寸的有限元在农业工业综合体薄壁建设中的力量计算中的应用

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The article presents a comparative analysis of the effectiveness of the use of finite elements of various dimensions in the study of the stress-strain state (SSS) of objects of the agro-industrial complex (AIC). To determine the strength parameters of the AIC objects, which can be attributed to the class of thinwalled, it is proposed to use a two-dimensional finite element in the form of a fragment of the middle surface of a triangular shape with nodes at its vertices. To improve the compatibility of a two-dimensional finite element at the boundaries of adjacent elements, it is proposed to use the Lagrange multipliers introduced in additional nodes located in the middle of the sides of the triangular fragment as additional unknowns. It is proposed to use a three-dimensional finite element in the form of a prism with triangular bases to study the SSS of agricultural objects of medium thickness and thick-walled. To improve the compatibility of the prismatic element, Lagrange multipliers in the middle of the sides of the upper and lower bases are also used. On the example of calculating a fragment of a cylindrical pipeline rigidly clamped at the ends loaded with internal pressure, the effectiveness of the developed two-dimensional and three-dimensional finite elements with Lagrange multipliers was proved. The validity of the use of a twodimensional element for researching the SSS of agricultural objects belonging to the class of thin-walled was proved.
机译:本文介绍了在农业工业综合体(AIC)的对象的应力 - 应变状态(SSS)的研究中使用各种尺寸的有限元的有效性的比较分析。为了确定可以归因于稀疏的AIC对象的强度参数,建议使用三角形形状的片段形式的二维有限元,其顶点处的节点。为了提高相邻元件的边界处的二维有限元的兼容性,建议使用位于三角形片段的侧面中间的附加节点中引入的拉格朗日乘法器作为附加未知数。建议使用三维有限元,以棱镜的形式与三角形碱基研究中厚度和厚壁的农业物体的SSS。为了提高棱镜元件的兼容性,还使用了上下底座侧面中间的拉格朗日乘数。在计算刚性夹紧在装载内部压力的端部的圆柱形管道的片段的示例上,证明了具有拉格朗日乘数的开发的二维和三维有限元的有效性。证明了用于研究属于薄壁类别的农业物体SSS的二维元素的使用。

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