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Neutron investigation of Nitinol stents and massive samples before and after PIRAC coating

机译:Nitinol支架和Pirac涂层前后大量样品的中子调查

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Nitinol, a thermoelastic Ni-Ti Shape Memory Alloy (SMA) with approximately 50 at.% Ti, is adopted in a wide range of medical equipment and devices used in interventional radiology, orthopaedics, neurology and cardiology, in particular as a smart material for stents. In this work, NiTi real stents and massive samples before and after different Powder Immersion Reaction Assisted Coating (PIRAC) treatments have been investigated by using two neutron techniques: (1) Small and Ultra-Small Angle Neutron Scattering (SANS, USANS) for nano- and micro-scale characterization, obtaining information on structure and the effects due to the coating treatment; and (2) High-Resolution Neutron Diffraction (HRND), evaluating the macrostrain components resulting from angular shifts of diffraction peaks and the micro-strains in the plastically deformation region by means of profile-broadening analysis. The obtained results contribute: improving knowledge of defects and other key features of the materials complementary to those achieved by using traditional examination techniques; helping to better understand the functional characteristics of Nitinol parts and predict the material's mechanical behaviour.
机译:镍钛诺,一种热弹性Ni-Ti形状记忆合金(SMA),大约50.%Ti,在介入的放射学,骨科,神经病学和心脏病学中使用的各种医疗设备和装置中采用,特别是作为智能材料支架。在这项工作中,通过使用两种中子技术研究了不同粉末浸入反应辅助涂层(Pirac)处理前后的Niti真正的支架和大规模样品:(1)纳米小型和超小角中子散射(SAN,USAN) - 和微尺度表征,获得结构的信息和由于涂层处理而产生的效果; (2)高分辨率中子衍射(HRND),通过轮廓扩展分析评估由衍射峰和塑性变形区域中的微菌株的角偏移产生的宏观棘轮组分。所获得的结果有助于:提高通过使用传统检查技术实现的材料互补的材料的知识和其他关键特征;帮助更好地了解镍钛诺零件的功能特征,并预测材料的力学行为。

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