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3D flexible NiTi-braided elastomer composites for smart structure applications

机译:适用于智能结构应用的3D柔性NiTi编织弹性体复合材料

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While outstanding functional properties of thin NiTi wires are nowadays well recognized and beneficially utilized in medical NiTi devices, development of 2D/3D wire structures made out of these NiTi wires remains challenging and mostly unexplored. The research is driven by the idea of creating novel 2D/3D smart structures which inherit the functional properties of NiTi wires and actively utilize geometrical deformations within the structure to create new/improved functional properties. Generally, textile technology provides attractive processing methods for manufacturing 2D/3D smart structures made out of NiTi wires. Such structures may be beneficially combined with soft elastomers to create smart deformable composites. Following this route, we carried out experimental work focused on development of 3D flexible NiTi-braided elastomer composites involving their design, laboratory manufacture and thermomechanical testing. We describe the manufacturing technology and structural properties of these composites; and perform thermomechanical tests on the composites, focusing particularly on quasistatic tensile properties, energy absorption, damping and actuation under tensile loading. Functional thermomechanical properties of the composites are discussed with regard to the mechanical properties of the components and architecture of the composites. It is found that the composites indeed inherit all important features of the thermomechanical behavior of NiTi wires but, due to their internal architecture, outperform single NiTi wires in some features such as the magnitude of recoverable strain, superelastic damping capacity and thermally induced actuation strain.
机译:如今,尽管细的NiTi导线具有出色的功能特性,并且在医疗NiTi设备中得到了有益的利用,但由这些NiTi导线制成的2D / 3D导线结构的开发仍然具有挑战性,并且尚未得到充分开发。这项研究基于创建新颖的2D / 3D智能结构的想法,该结构继承了NiTi线的功能特性并积极利用结构中的几何变形来创建新的/改进的功能特性。通常,纺织技术提供了有吸引力的加工方法来制造由NiTi线制成的2D / 3D智能结构。这样的结构可以有利地与软弹性体结合以产生智能的可变形复合材料。按照这条路线,我们进行了专注于3D柔性NiTi编织弹性体复合材料开发的实验工作,涉及其设计,实验室制造和热机械测试。我们描述了这些复合材料的制造技术和结构特性。并对复合材料进行热力学测试,特别是集中在准静态拉伸性能,能量吸收,阻尼和在拉伸载荷下的致动。关于复合材料的部件的机械性能和复合材料的结构,讨论了复合材料的功能热机械性能。发现复合材料确实继承了NiTi线的热机械性能的所有重要特征,但是由于其内部结构,其在某些特性(例如可恢复应变的大小,超弹性阻尼能力和热致动应变)方面优于单个NiTi线。

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