Effect of fibre laser welding parameters on the microstructure and weld geometry of commercially pure titanium

M. Abdulridha, A. Jilabi
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引用次数: 2

Abstract

The primary purpose of the study was the metallurgical characterization of laser welds. The weldability of commercial production of pure titanium and titanium alloy (CP-Ti) has also been examined. In this research, the laser fibre method was used to weld sheets of pure titanium, and then microscopy and scanning electron microscopy were used to study the changes in the microstructure, the depth of weld penetration and the width of the weld area with changing welding parameters. The results proved that increasing the laser power significantly increases the depth of weld penetration and weld width. When the heat input is increased, the shape of the weld pool changes from a V shape to an hourglass shape. It was also observed that the depth of the crater formed increases with the increase in the laser power due to the increase in the melting and evaporation of the weld metal. Increasing the welding speed also has a negative impact on the weld geometry because it reduces the heat input and absorption of laser energy by the weld metal and thus reduces the melting of the metal. The microstructure of the fusion zone consists of acicular α. Fine grains formed in the weld centre at low heat input; the granules became columnar-like. Since commercially pure titanium contains a small amount of beta-phase stabilizers, the cooling rate is extremely high for martensite to occur. In the future, it is recommended to study the effect of changing welding parameters on the mechanical properties of pure titanium because of its great importance in industrial and medical applications. Studying the effect of changing laser power and welding speed on the metallurgical properties of pure titanium, and consequently its effect on the mechanical properties of welds.
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光纤激光焊接参数对工业纯钛显微组织和焊缝几何形状的影响
本研究的主要目的是对激光焊接的冶金特性进行研究。还对纯钛和钛合金(CP-Ti)商业生产的可焊性进行了检验。本研究采用激光纤维法对纯钛板材进行焊接,然后利用显微镜和扫描电子显微镜研究了焊接参数变化对组织、焊透深度和焊区宽度的影响。结果表明,提高激光功率可显著增加焊缝熔深和焊缝宽度。当热输入增加时,熔池的形状从V形变为沙漏形。还观察到,由于焊接金属的熔化和蒸发的增加,形成的凹坑的深度随着激光功率的增加而增加。增加焊接速度也会对焊接几何形状产生负面影响,因为它减少了焊接金属的热输入和激光能量的吸收,从而减少了金属的熔化。熔合区的微观结构由针状α组成。在低热输入时,焊缝中心形成细小晶粒;颗粒呈柱状。由于商业纯钛含有少量的β相稳定剂,因此冷却速率对于马氏体的发生是非常高的。由于纯钛在工业和医疗应用中具有重要意义,建议今后研究改变焊接参数对纯钛力学性能的影响。研究了改变激光功率和焊接速度对纯钛冶金性能的影响,以及对焊缝力学性能的影响。
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来源期刊
Archives of materials science and engineering
Archives of materials science and engineering Materials Science-Materials Science (all)
CiteScore
2.90
自引率
0.00%
发文量
15
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