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Study of an active deformable structure with embedded NiTi shape memory alloy strips

机译:嵌入NiTi形状记忆合金条的主动变形结构研究。

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摘要

The possibility of realising adaptive structures is of great interest in the control/automation fields, owing to the benefits related to enhanced performance. To accomplish this, a challenging approach is the employment of Shape Memory Alloys (SMAs) as active elements, which can recover seemingly permanent strains by temperature-induced phase transformations whereby the so-called Shape Memory Effect (SME) takes place. This paper deals with an experimental investigation of the bending recovery performance of a functional structure. The active material was a near-equiatomic NiTi alloy in the form of strips, which were embedded into a custom-made polymeric matrix. To study the influence of heating/cooling rates on the characteristic transformation temperatures of the NiTi material, several analyses were carried out by means of Differential Scanning Calorimetry (DSC). Prior to the insertion, the strips were thermo-mechanically treated to memorise a bent shape through experimentally evaluated shape setting parameters. The martensitic and reverse martensitic transformations were thermally activated by means of a hot/cold air stream flow. Experimental tests enabled the characterisation of the SME recovery behaviour evolution as well as the shape changes of the structure. Subsequently thermal activations were considered to assess the stability of the functional structure deformations (polymeric matrix with SMA strips) whose actual deflections were evaluated by means of digital image analysis.
机译:由于与增强性能有关的好处,实现自适应结构的可能性在控制/自动化领域中引起了极大的兴趣。为此,采用形状记忆合金(SMA)作为活性元素是一种具有挑战性的方法,它可以通过温度诱导的相变来恢复看似永久的应变,从而发生所谓的形状记忆效应(SME)。本文涉及功能结构的弯曲恢复性能的实验研究。活性材料是条状的近等原子的NiTi合金,被嵌入定制的聚合物基体中。为了研究加热/冷却速率对NiTi材料的特征转变温度的影响,通过差示扫描量热法(DSC)进行了一些分析。在插入之前,将条带进行热机械处理,以通过实验评估的形状设置参数来存储弯曲的形状。马氏体相变和马氏体逆相变通过热/冷空气流热活化。实验测试使得能够表征SME恢复行为的演变以及结构的形状变化。随后考虑使用热活化来评估功能结构变形(带有SMA条的聚合物基体)的稳定性,其变形通过数字图像分析进行了评估。

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