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Study on Thermomechanical Treatment, Mechanical Properties and Fatigue of Nitinol Superelastic Thin Sheet

机译:镍钛诺超弹性薄板的热机械处理,力学性能和疲劳研究

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A wide range of different thermomechanical treatments was performed on commercially available super-elastic Nitinol thin sheet. The ingot composition in the range of standard superelastic material with about 50.8 at.% Ni, balance Ti, was used to manufacture a series of samples with different thermomechanical conditions. Production parameters such as cold work, heat treatment temperature, and heat treatment time were varied. All finished samples were of the same final thickness of 0.3 mm and received the same industrial surface finishing process to obtain a smooth, defect, and oxide-free, shiny surface. Before carrying out the laser cutting, the material was characterized by tensile testing, DSC, and bend-and-free recovery test. Miniature dogbone specimens were cut from the as-manufactured sheets in both directions, longitudinal as well as transverse to the rolling direction. These samples were surface finished using standard deburring and electropolishing processes. For some specific parameter combinations, there were also samples taken at 45° to the rolling direction. All qualified samples were then exposed to fatigue testing in a bending mode until fracture or run-out. The results showed there is a significant effect on the fatigue performance of the samples from both the applied thermomechanical treatment as well as the sheet anisotropy. It is also obvious that the achieved strain data is on average lower than the data obtained in comparable studies on tube or wire, which can be attributed to the different test setup (bending mode in air at 37℃) as compared to most other studies as well as the larger surface.
机译:对市售的超弹性镍钛诺薄板进行了各种各样的热机械处理。具有约50.8 at。%Ni,其余为Ti的标准超弹性材料范围内的铸锭成分用于制造具有不同热机械条件的一系列样品。诸如冷作,热处理温度和热处理时间的生产参数是变化的。所有成品样品的最终厚度相同,均为0.3毫米,并接受相同的工业表面精加工工艺,以获得光滑,无缺陷和无氧化物的光泽表面。在进行激光切割之前,通过拉伸测试,DSC和无弯曲恢复测试对材料进行了表征。从制造的薄片上沿纵向和横向于轧制方向切下微型狗骨形试样。这些样品使用标准的去毛刺和电抛光工艺进行了表面处理。对于某些特定的参数组合,还存在与轧制方向成45度角的样品。然后将所有合格的样品以弯曲模式进行疲劳测试,直到断裂或跳动。结果表明,采用热机械处理以及片材各向异性对样品的疲劳性能都有显着影响。同样明显的是,与大多数其他研究相比,所获得的应变数据平均低于在钢管或金属丝的可比研究中获得的数据,这可以归因于不同的测试设置(37℃空气中的弯曲模式)。以及较大的表面。

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