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Preliminary Experimental and Finite-Element Numerical Assessment of the Structural Performance of SMA-Reinforced GFRP Systems

机译:SMA增强GFRP系统结构性能的初步实验和有限元数值评估

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摘要

In this study, the feasibility and potentiality of a novel design concept is explored by means of small scale experimental tests and Finite-Element numerical simulation. Taking advantage of the intrinsic potentiality of Shape-Memory Alloys wires able to work as adaptive actuators when subjected to joule heating, a ‘smart-GFRP’ concept consisting in Glass-Fiber-Reinforced-Polymer (GFRP) structural members with a SMA reinforcement is preliminary assessed. As shown, as far as the working temperature increases, important structural benefits can be achieved in terms of overall performance of the proposed composite systems. The potentiality of the same design concept is then further assessed by means of a practical calculation example.
机译:在这项研究中,通过小规模的实验测试和有限元数值模拟,探索了一种新颖设计概念的可行性和潜力。利用形状记忆合金线材在经受焦耳加热时能够用作自适应致动器的固有潜力,采用由SMA增强材料制成的玻璃纤维增​​强聚合物(GFRP)结构构件构成的“智能GFRP”概念是初步评估。如图所示,只要工作温度升高,就建议的复合系统的整体性能而言,就可以获得重要的结构优势。然后,通过一个实际的计算示例进一步评估同一设计概念的潜力。

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