首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Comparative Corrosion Performance of Black Oxide, Sandblasted, and Fine-Drawn Nitinol Wires in Potentiodynamic and Potentiostatic Tests: Effects of Chemical Etching and Electropolishing
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Comparative Corrosion Performance of Black Oxide, Sandblasted, and Fine-Drawn Nitinol Wires in Potentiodynamic and Potentiostatic Tests: Effects of Chemical Etching and Electropolishing

机译:在电位动力学和恒电位测试中,黑氧化物,喷砂和细拉镍钛诺丝的比较腐蚀性能:化学腐蚀和电抛光的影响

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摘要

The corrosion performance of sandblasted (SB) and smooth fine-drawn (FD) medical-use nitinol wires was compared with the performance of wires with black oxide (BO) formed in air during their manufacture. Potentiodynamic and ASTM F746 potentiostatic tests in a 0.9 percent NaCl solution were conducted on wires in their as-received, chemically etched, aged in boiling water, and electropolished states. As-received wires with various surface finishes revealed breakdown potentials in the range from - 100 mV to +500 mV; similar passive current density, 10~(-6) A/cm~2; and a wide hysteresis on the reverse scan, demonstrating strong susceptibility to localized corrosion. Chemically etched wires with original black oxide displayed consistent corrosion performance and surpassed, in corrosion resistance, electropolished wires that showed significantly lower breakdown (400-700 mV) and localized corrosion potentials (approx -50 to +113 mV). Sandblasted and fine-drawn wires exhibited rather inconsistent corrosion behavior. In potentiodynamic tests these wires could perform with equal probability either on the level of pretreated BO wires or rather similar to as-received wires. Both SB and FD wires revealed low breakdown potentials in the PS regime. SEM analysis performed before tests indicated that sandblasting was not efficient for the complete removal of the original scaling, and fine drawing aggravated the situation, resulting in a persistent scaling that contributed to the inferior corrosion performance. Inclusions (oxides, carbides, and oxidized carbides) inherited from the bulk and retained on electropolished surfaces are the cause of their inferior performance compared to chemically etched surfaces. In electropolished wires corrosion was initiated around inclusions.
机译:将喷砂(SB)和光滑细拉(FD)的医用镍钛诺电线的腐蚀性能与制造过程中在空气中形成的带有黑色氧化物(BO)的电线的性能进行了比较。在0.9%的NaCl溶液中对电势进行了电位动力学和ASTM F746恒电位测试,测试时按原样,化学蚀刻,在沸水中老化和电抛光的状态对电线进行了测试。收到的具有各种表面光洁度的电线显示出-100 mV至+500 mV的击穿电位;无源电流密度相似,10〜(-6)A / cm〜2;反向扫描具有较大的磁滞,表明对局部腐蚀很敏感。具有原始黑色氧化物的化学蚀刻线表现出一致的腐蚀性能,并且在耐蚀性方面超过电抛光的线,后者的击穿电流(400-700 mV)和局部腐蚀电位(约-50至+113 mV)明显较低。喷砂和细拉丝表现出相当不一致的腐蚀行为。在电位动力学测试中,这些线材在预处理的BO线材水平上具有相等的概率,或者与接收时的线材相似。 SB线和FD线在PS模式下均显示出较低的击穿电位。在测试之前进行的SEM分析表明,喷砂处理不能完全去除原始的水垢,而精细的绘图会加剧这种情况,导致持久的水垢,从而降低了腐蚀性能。从本体继承并保留在电抛光表面上的夹杂物(氧化物,碳化物和氧化的碳化物)是与化学蚀刻表面相比性能较差的原因。在电抛光线中,夹杂物周围开始腐蚀。

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