首页> 外文期刊>Journal of biomedical materials research, Part A >Crystallographic texture for tube and plate of the superelastic/shape-memory alloy Nitinol used for endovascular stents.
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Crystallographic texture for tube and plate of the superelastic/shape-memory alloy Nitinol used for endovascular stents.

机译:用于血管内支架的超弹性/形状记忆合金镍钛诺的管和板的晶体学织构。

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摘要

The superelastic/shape-memory material, Nitinol, an approximately equiatomic alloy of Ni and Ti, is rapidly becoming one of the most important metallic implant materials in the biomedical industry, in particular for the manufacture of endovascular stents. As such stents are invariably laser-machined from Nitinol tubes or sheets rolled into tubes, it is important to fully understand the physical phenomena that may affect the mechanical behavior of this material. With tubing and plate, one major issue is crystallographic texture, which can play a key role in influencing the mechanical properties of Nitinol. In this article, we present a study on how geometry and heat treatment can affect the texture of Nitinol, with specific quantification of the texture of Nitinol tube used for the production of endovascular stents.
机译:超弹性/形状记忆材料镍钛诺是镍和钛的近似等原子的合金,正迅速成为生物医学工业中最重要的金属植入物材料之一,尤其是用于制造血管内支架。由于此类支架总是由镍钛诺管或卷成管的薄板进行激光加工,因此充分了解可能影响该材料机械性能的物理现象非常重要。对于管材和板材,主要问题是晶体学织构,这在影响镍钛诺的机械性能方面可以发挥关键作用。在本文中,我们对几何形状和热处理如何影响镍钛诺的质构进行了研究,并具体量化了用于生产血管内支架的镍钛诺管的质构。

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