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Material Performance and Phase Transformation of Super Rapid-solidified Shape Memory TiNiCu Ribbon with Nano-amorphous Microstructures

机译:具有纳米非晶微观结构的超快速凝固形状记忆TinICu带的材料性能和相变

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The sputter-deposited nano-structured thin films of shape memory TiNiCu alloy show excellent shape memory properties by the addition of Ti composition over 50at%, which are brought by the unique nano-precipitation produced by low temperature crystallization (=Tx) treatment. However, the applicability of thin film actuator is restricted to only very small and tiny micro-machines due to the small mass and, hence, small recovery force as a mechanical actuator. In the present paper, we have investigated the possibility of obtaining larger mass of actuator material as well as improvement of shape memory properties of the same kind of TiNiCu for rapid-solidified (RS) thin ribbons that were about 2-5 times thickness than sputtered film. As a result, 1) an amorphous state was formed in the rapid-solidified Ti-rich Ti_(50)Ni_(40)Cu_(10) composition (Ti_(54)Ni_(40)Cu_6 ,at%) under a roll-speed over 45m/sec. condition as in the sputtering process, 2)by annealing just below Tx(=754K) for amorphous ribbons, nano-crystalline structures with nano-precipitation of bct (non-equilibrium phase) were observed in the matrix. These nano-micro-structured TiNiCu ribbons showed good material properties of tensile strength and almost the shape recovery stress to those of sputtered films.
机译:溅射沉积的纳米结构薄膜的形状记忆Tinicu合金,通过添加Ti组合物在50at%上添加了优异的形状记忆性能,这通过低温结晶(= Tx)处理产生的独特纳米沉淀。然而,由于体积小,薄膜致动器的适用性仅限于由于较小的质量而仅为非常小而微小的微机器,并且因此小的恢复力作为机械致动器。在本文中,我们研究了获得较大质量的致动器材料的可能性以及改善相同类型的Tinicu的形状记忆性能,用于快速凝固(RS)薄带的厚度约2-5倍厚度电影。结果,1)在卷下的快速固化的Ti的Ti-(50)Ni_(40)Cu_(10)组合物(Ti_(54)Ni_(40)Cu_6,%)下形成无定形状态。在卷下速度超过45米/秒。在溅射过程中的条件,2)通过用于非晶带的Tx(= 754K)的退火,在基质中观察到具有BCT(非平衡阶段)的纳米沉淀的纳米晶体结构。这些纳米微结构型TinICu丝带显示出抗拉强度的良好材料特性,并且几乎是溅射膜的形状回收应力。

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