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Tribological and Electrical Properties of Diamond-Like Carbon Films Deposited by Filtered Vacuum Arc Method for Medical Guidewire Application

机译:用过滤真空电弧法沉积的金刚石状碳膜的摩擦学和电性能

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摘要

A good medical guidewires are used to introduce stents, catheters, and other medical devices inside the human body. In this study, diamond-like carbon (DLC) film was proposed to solve the poor adhesion problem of guidewire and to improve the tribological performance of guidewire. DLC films were fabricated on Si substrate by using FVA (Filtered Vacuum Arc) method. In this work, the tribological, structural, and electrical properties of the fabricated DLC films with various arc currents were experimentally investigated. All DLC films showed smooth and uniform surface with increasing applied arc current. The rms surface roughness was increased and the value of contact angle on the film surface was decreased with increasing arc current. The hardness and elastic modulus of DLC films were improved, and the resistivity value of DLC films were decreased with increasing arc current. These results are associated with ion bombardment effects by the applied arc current and bias voltage.
机译:良好的医疗导丝用于引入人体内的支架,导管和其他医疗器械。 在该研究中,提出了钻石状碳(DLC)膜来解决导丝的差粘附问题,并改善导丝的摩擦学性能。 通过使用FVA(过滤真空电弧)法在Si衬底上制造DLC薄膜。 在这项工作中,实验研究了具有各种电弧电流的制造的DLC膜的摩擦学,结构和电性能。 所有DLC薄膜都显示出光滑均匀的表面,随着施加的电弧电流增加。 增加了RMS表面粗糙度,随着电弧电流的增加而降低膜表面上的接触角的值。 改善了DLC膜的硬度和弹性模量,随着电弧电流的增加而降低了DLC膜的电阻率值。 这些结果与施加的电弧电流和偏置电压与离子轰击效应相关联。

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