首页> 外文期刊>Journal of Applied Mechanics and Technical Physics >DESIGN OF A TRANSVERSELY LAYERED CANTILEVER OF MINIMUM MASS UNDER SPECIFIED MAXIMUM-DEFLECTION CONSTRAINT
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DESIGN OF A TRANSVERSELY LAYERED CANTILEVER OF MINIMUM MASS UNDER SPECIFIED MAXIMUM-DEFLECTION CONSTRAINT

机译:特定最大挠度约束的最小质量横向分层悬臂设计

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摘要

The problem of optimal design of a transversely layered cantilever beam of minimum mass composed of a finite set of elastic homogeneous isotropic materials is considered for the case where a constraint is imposed on the maximum deflection of the beam, and information on the loads applied to the beam is incomplete. It is shown that, among these loads, there exists the "worst" point load whose magnitude is equal to the resultant of the forces applied to the beam, for which the deflection is maximal for any material distribution along the beam. The necessary optimality conditions are obtained for the mass-minimization problem of the beam under the "worst" loading, a numerical algorithm is developed for the synthesis of the optimal cantilever, and a numerical example is given.
机译:对于在梁的最大挠度上施加约束的情况,考虑了由有限的一组弹性均质各向同性材料组成的最小质量的横向分层悬臂梁的最佳设计问题,以及施加在梁上的载荷的信息。光束不完整。结果表明,在这些载荷中,存在“最坏”的点载荷,其大小等于施加到梁上的力的合力,对于梁上的任何材料分布,其挠度最大。针对“最差”载荷下梁的质量最小化问题,获得了必要的最优条件,并为最优悬臂的合成开发了数值算法,并给出了数值示例。

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