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The Decomposed Theorem of Torsional Circular Shaft with Two-Dimensional Dodecagonal Quasicrystal

机译:二维十二边形准晶体扭转圆轴的分解定理

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Gregory's decomposed theorem of isotropic plate is extended to investigate torsional circular shaft for two-dimensional dodecagonal quasicrystal (2D dodecagonal QCs)with homogeneous boundary conditions, and the theory of equivalence that Cheng's refined theory and Gregory's decomposed theorem is extended to the cylindrical coordinate.The decomposed theorem of torsional circular shaft of 2D dodecagonal QCs with homogeneous boundary conditions is proposed on the basis of the classical elasticity theory and stress-displacement relations of 2D dodecagonal QCs without ad hoc assumptions.At first expressions are obtained for all the displacements and stress components in term of some ID functions.Using Lur'e method, the exact equations were given.And the exact equations for the torsional circular shaft on 2D dodecagonal QCs without surface loadings consist of four governing differential equations: two harmonic equations and two transcendental equations.
机译:扩展了各向同性板的Gregory分解定理,以研究具有均匀边界条件的二维十二边形准晶体(2D十二边形QC)的扭转圆轴,并将Cheng的精炼理论和Gregory的分解定理的等价理论扩展到圆柱坐标系。在经典弹性理论和二维十二角形QC的应力-位移关系的基础上,提出了具有均匀边界条件的二维十二角形QC扭转圆轴的分解定理。利用Lur'e方法给出了精确的方程。在无表面载荷的二维十二边形QC上,扭转圆轴的精确方程由四个控制微分方程组成:两个谐和方程和两个超越方程。

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