Effect Of Electrolytic Cleaning on Mechanical Properties for Titanium Dental Implants with Surface Contamination.

Darcio Fonseca, Ramón Pons, Beatriz de Tapia, Alberto Monje, José Nart, Conrado Aparicio, Javier Gil
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Abstract

Purpose: Recently, galvanic cleaning techniques, such as Galvosurge®, which utilize hydrogen formation, have demonstrated significant efficacy in removing biofilm during the decontamination of implant surfaces in the reconstructive therapy of peri-implantitis, This decontamination method avoids the mechanization of the implant and therefore avoids the loss of mechanical properties, loss of good corrosion behavior and avoids the release of particles of different sizes with possible toxic effects, However, the formation of hydrogen on the surface could cause diffusion into the titanium and lead to hydrogen embrittlement of the dental implant, In this study we intend to study the effect of this treatment on the mechanical properties of dental implants, Materials and methods: Ninety dental implants were studied, of which 30 were control, 30 were treated with Galvosurge® and 30 were treated with concentrated hypochlorous acid, The amount of hydrogen in the titanium interior was determined for each of the samples by spectroscopy to elemental analysis of hydrogen TCH600 LECO. Electrochemical corrosion tests were performed on 30 dental implants to determine the corrosion potentials and corrosion intensity for the different treatments. One important factor for the fatigue behavior are the residual stresses which were studied by by Bragg-Bentano X-ray diffraction. Residual stresses were studied by by Bragg-Bentano X-ray diffraction. Fatigue tests were performed using a servohydraulic machine determining the S-N curves by performing triaxial tests (tensioncompression and 5 ̊ torsion) at different loads to simulate human mastication. A study of the fractures of the dental implants was carried out by scanning electron microscopy and the samples were observed by transmission electron microscopy to observe the possible appearance of hydrides in the titanium microstructure, Results: The results showed that the electrolytic technique reduces the presence of hydrogen in the dental implant and the acid treatment increases it causing the presence of hydrides at the grain boundaries of the titanium, It has been shown that galvanic treatments do not affect the corrosion resistance of dental implants. However, attacks with hypochlorous acid increase the corrosion rate due to the acid attack on the titanium surface that favors pitting points. Fatigue tests show that dental implants treated with Galvosurge® have a longer fatigue life than the control due to the lower hydrogen content, It was shown that the increase of hydrogen in the acid-treated implants reduces the fatigue life of the dental implant, Conclusions: This study allows us to conclude that the formation of hydrogen by electrolysis does not cause a diffusion of this element to the titanium nor does it affect corrosion resistance but on the contrary reduces the level of hydrogen which favors its mechanical properties in the long term.

电解清洗对表面污染钛种植体力学性能的影响。
目的:最近,电清洗技术,如Galvosurge®,利用氢气形成,在种植体周围炎重建治疗中,在去除种植体表面污染期间去除生物膜方面表现出显着的效果。这种去污染方法避免了种植体的机械化,因此避免了机械性能的损失,失去了良好的腐蚀行为,避免了不同大小的颗粒的释放,可能具有毒性作用。然而,表面氢气的形成会扩散到钛中,导致种植体的氢脆,在本研究中,我们打算研究这种处理对种植体力学性能的影响。研究了90个种植体,其中30个为对照组,30个为Galvosurge®处理组,30个为浓次氯酸处理组,采用TCH600 LECO氢元素光谱分析法测定每个样品钛内部的氢含量。对30个种植体进行电化学腐蚀试验,测定不同处理下种植体的腐蚀电位和腐蚀强度。用Bragg-Bentano x射线衍射研究了影响疲劳行为的一个重要因素是残余应力。用Bragg-Bentano x射线衍射研究了残余应力。疲劳试验采用伺服液压机,在不同载荷下进行三轴试验(拉伸压缩和5倍扭转),确定S-N曲线,模拟人体咀嚼。采用扫描电镜对种植体的断裂进行研究,并对样品进行透射电镜观察,观察钛微观结构中可能出现的氢化物。结果表明,电解处理降低了种植体中氢的存在,酸处理增加了氢的存在,导致钛晶界处存在氢化物,电处理不影响种植体的耐蚀性。然而,次氯酸的腐蚀增加了腐蚀速度,因为酸对钛表面的腐蚀有利于点蚀点。疲劳试验表明,Galvosurge®处理的种植体由于氢含量较低,其疲劳寿命比对照组更长,表明酸处理种植体中氢含量的增加会降低种植体的疲劳寿命。这项研究使我们得出结论,电解氢的形成不会导致这种元素扩散到钛上,也不会影响其耐腐蚀性,相反,从长远来看,它会降低氢的含量,这有利于钛的机械性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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