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A new shape memory alloy wire-woven trusses undergoing large deformation

机译:变形较大的新型形状记忆合金丝编织桁架

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Metallic wire-woven lattice trusses have been a heated research topic for a decade due to its low density and superior mechanical and thermal properties. The traditional wire-woven trusses are usually fabricated with common metals like steel or aluminum which yields at a very low strain level. Because of the low elastic strain, the deformation capability of the material is significantly limited. Shape memory alloy (SMA) is a kind of smart material which can bear large recoverable strain with producing hysteresis. In this paper, a novel lattice trusses fabricated by superelastic SMA coil springs was proposed. Furthermore, the treatment processes to prepare the SMA coil springs and the assembly method to manufacture the SMA wire-woven trusses were also introduced. To investigate the mechanical and thermal properties of the proposed material, the quasi-static compression test under different maximum deformation and different temperatures, as well as the cyclic compression test, were performed. The results show that the proposed materials can undergo a maximum deformation of 80% without residual strain left.
机译:金属丝编织的网格桁架由于其低密度以及优越的机械和热性能,已经成为十年来的热门研究课题。传统的金属编织桁架通常由常见的金属制成,例如钢或铝,其屈服强度非常低。由于低弹性应变,材料的变形能力受到极大限制。形状记忆合金(SMA)是一种智能材料,可承受较大的可恢复应变并产生磁滞。本文提出了一种由超弹性SMA螺旋弹簧制成的新型晶格桁架。此外,还介绍了制备SMA螺旋弹簧的处理工艺和制造SMA钢丝编织桁架的组装方法。为了研究所提出材料的机械性能和热性能,进行了在不同最大变形和不同温度下的准静态压缩试验以及循环压缩试验。结果表明,所提出的材料可以承受80%的最大变形,而不会残留残余应变。

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