CORROSION RESISTANCE OF A GOLD-TITANIUM ALLOY TI6AL4V WELD PRODUCED IN A DENTAL LASER WELDING MACHINE

Q4 Engineering
Grzegorz Jania, J. Żmudzki, Ł. Reimann, M. Staszuk, A. Woźniak
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Abstract

The corrosion resistance of the Ti6Al4V titanium alloy in combination with gold may increase or decrease, which is related to the amount of gold in the alloy. The aim of the work was to assess the weldability of pure gold with the Ti6Al4V titanium alloy using a prosthetic laser welding machine, and to assess the corrosivity. In the research was used a calibrated 24k gold wire with a diameter of 0.4 mm. The wire was welded to the surface of the Ti6Al4V titanium screw used in the connection of the prosthetic superstructure connector with an implant. For welding, a Bego Laser Star plus prosthetic laser welding machine was used. The samples were placed in resin, ground (500-4000 SiC), polished (Al2O3 slurry. An electrochemical corrosion test was carried out, simulating the potential formation of pitting corrosion, in a solution of artificial saliva, consisting of two stages: a. determination of the stationary potential in no-current conditions for 1 h until stabilization (Eocp - opec circuit potential), b. potentiodynamic test initial potential E start = Eocp-100 mV to E final = 2 V or the occurrence of the second condition: anode current density 1 mA /cm2, the potential increase rate of 1 mV/s, and then the samples were observed using light microscopy and SEM, and an attempt was made to identify corrosion products using EDS. The paper evaluates the possibility of gold welding with the Ti6Al4V titanium alloy in the conditions of a prosthetic laboratory, limitations in this process were indicated, and conclusions that could improve weldability were indicated. The heat affected zone was identified and the results of corrosion tests were evaluated. The weldability of gold with the mentioned titanium alloy was confirmed, however, in subsequent tests, attempts should be made to reduce the laser spot, which will reduce the heat affected zone. Traces of corrosion were found, but they were rare and even over the entire surface of the samples.
牙科激光焊接机生产的金钛合金TI6AL4V焊缝的耐蚀性
Ti6Al4V钛合金与金结合后的耐蚀性有增减的趋势,这与合金中金的含量有关。本工作的目的是利用假体激光焊接机评估纯金与Ti6Al4V钛合金的可焊性,并评估其腐蚀性。在研究中使用了直径为0.4 mm的校准24k金线。金属丝被焊接到Ti6Al4V钛螺钉的表面,用于连接假体上部结构连接器和种植体。焊接采用Bego Laser Star +假体激光焊接机。样品放置在树脂中,研磨(500-4000 SiC),抛光(Al2O3浆料)。在人工唾液溶液中进行电化学腐蚀试验,模拟点蚀电位的形成,包括两个阶段:a.测定无电流条件下1h直至稳定的固定电位(Eocp - opec回路电位),b.动电位试验初始电位E开始= Eocp- 100mv至E结束= 2v或出现第二种情况;阳极电流密度为1 mA /cm2,电位增加速率为1 mV/s,然后用光学显微镜和扫描电镜观察样品,并尝试用EDS鉴定腐蚀产物。本文评估了Ti6Al4V钛合金在假肢实验室条件下进行金焊接的可能性,指出了该工艺的局限性,并指出了可以提高可焊性的结论。确定了热影响区,并对腐蚀试验结果进行了评价。证实了金与上述钛合金的可焊性,但在后续的试验中,应尽量减少激光光斑,从而减少热影响区。发现了腐蚀的痕迹,但它们很罕见,甚至在样品的整个表面上都有。
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来源期刊
International Journal of Modern Manufacturing Technologies
International Journal of Modern Manufacturing Technologies Engineering-Industrial and Manufacturing Engineering
CiteScore
0.70
自引率
0.00%
发文量
15
期刊介绍: The main topics of the journal are: Micro & Nano Technologies; Rapid Prototyping Technologies; High Speed Manufacturing Processes; Ecological Technologies in Machine Manufacturing; Manufacturing and Automation; Flexible Manufacturing; New Manufacturing Processes; Design, Control and Exploitation; Assembly and Disassembly; Cold Forming Technologies; Optimization of Experimental Research and Manufacturing Processes; Maintenance, Reliability, Life Cycle Time and Cost; CAD/CAM/CAE/CAX Integrated Systems; Composite Materials Technologies; Non-conventional Technologies; Concurrent Engineering; Virtual Manufacturing; Innovation, Creativity and Industrial Development.
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