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首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >Optimal design problems in mechanics of growing composite solids, part II: shape optimization
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Optimal design problems in mechanics of growing composite solids, part II: shape optimization

机译:复合固体的力学优化设计问题,第二部分:形状优化

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摘要

Optimal design problems arising in mechanics of growing composite viscoelastic and elastic solids subjected to aging are considered. The growth means a continuous mass influx to the body surface. Due to this process, the size of the body increases in time. The mass influx with pretensioning causes the rise of stresses in the growing body. The purpose of the current study is to propose a new class of the optimal design problems for the growing viscoelastic composite solids subjected to aging, and to solve the mechanical design problems of this new type. In the current paper we analyze the optimal design of the shape of growing reinforced beams which minimizes their maximum deflection. The proposed approach and the obtained new solutions are of aspecial interest and importance for the design of the reinforced cantilevers and bridges.
机译:考虑了在经受老化的复合粘弹性和弹性固体的生长过程中出现的最佳设计问题。这种增长意味着不断有大量物质流入人体表面。由于这个过程,身体的大小随时间增加。具有预紧力的大量涌入会导致生长体中的压力升高。当前研究的目的是针对老化中不断增长的粘弹性复合固体提出一类新的最佳设计问题,并解决这种新型的机械设计问题。在当前的论文中,我们分析了增长中的增强梁形状的最佳设计,该设计可以最大程度地减小其最大挠度。所提出的方法和获得的新解决方案对于加固悬臂和桥梁的设计具有特殊的意义和重要性。

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