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钛溅射涂层镍钛弓丝的可靠性性能:力学性能与镍释放评估

Reliability performance of titanium sputter coated Ni-Ti arch wires: mechanical performance and nickel release evaluation.

作者信息

Anuradha P, Varma N K Sapna, Balakrishnan Avinash

机构信息

Department of Orthodontics, Sree Anjaneya Institute of Dental Sciences, Calicut 673315, India.

Department of Orthodontics, Amrita School of Dentistry, Kochi 682041, India.

出版信息

Biomed Mater Eng. 2015;26(1-2):67-77. doi: 10.3233/BME-151550.

Abstract

The present research was aimed at developing surface coatings on NiTi archwires capable of protection against nickel release and to investigate the stability, mechanical performance and prevention of nickel release of titanium sputter coated NiTi arch wires. Coated and uncoated specimens immersed in artificial saliva were subjected to critical evaluation of parameters such as surface analysis, mechanical testing, element release, friction coefficient and adhesion of the coating. Titanium coatings exhibited high reliability on exposure even for a prolonged period of 30 days in artificial saliva. The coatings were found to be relatively stable on linear scratch test with reduced frictional coefficient compared to uncoated samples. Titanium sputtering adhered well with the Ni-Ti substrates at the molecular level, this was further confirmed by Inductive coupled plasma emission spectroscopy (ICPE) analysis which showed no dissolution of nickel in the artificial saliva. Titanium sputter coatings seem to be promising for nickel sensitive patients. The study confirmed the superior nature of the coating, evident as reduced surface roughness, friction coefficient, good adhesion and minimal hardness and elastic modulus variations in artificial saliva over a given time period.

摘要

本研究旨在开发能够防止镍释放的镍钛弓丝表面涂层,并研究钛溅射涂层镍钛弓丝的稳定性、机械性能以及镍释放的预防情况。将涂覆和未涂覆的试样浸入人工唾液中,对诸如表面分析、机械测试、元素释放、摩擦系数和涂层附着力等参数进行严格评估。钛涂层即使在人工唾液中暴露长达30天也表现出高可靠性。与未涂覆的样品相比,涂层在线性划痕试验中相对稳定,摩擦系数降低。钛溅射在分子水平上与镍钛基体良好附着,电感耦合等离子体发射光谱(ICPE)分析进一步证实了这一点,该分析表明镍在人工唾液中没有溶解。钛溅射涂层对镍敏感患者似乎很有前景。该研究证实了涂层的优越特性,表现为在给定时间段内人工唾液中的表面粗糙度降低、摩擦系数降低、附着力良好以及硬度和弹性模量变化最小。

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