The effect of laser surface re-melting on the surface roughness and micro-hardness of selective laser melting (SLM) fabricated Ti-6Al-4V samples

G. Molatlhegi, S. Hoosain, A. Popoola, N. Malatji, S. Pityana
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Abstract

Ti-6Al-4V is favourable due to its exquisite properties for example, low modulus, light weight, excellent strength, and corrosion resistance. Despite the excellent properties of the material, the fabrication process of titanium components is challenging due to the poor final surface quality components caused by non-uniform powder distribution during additive manufacturing (AM) using selective laser melting (SLM) process. SLM process produces fully denser parts with better mechanical properties compared to the bulk materials, although the surface quality is poor. This work aims to study the effect of laser surface re-melting (LSM) on the hardness and surface properties of Ti-6Al-4V alloy. The fabricated Ti-6Al-4V sheet was re-melted by a 3 kW IPG Fiber laser. Microstructural evaluations of the Ti-6Al-4V sheet were characterized using an optical microscope. Micro-hardness and surface roughness measurements were determined by means of an HV Vickers tester under an applied load of 300g and load time of 10s and MarSurf PS1 roughness tester machine respectively. Microstructural evolution and hardness properties were all examined before and after the LSM treatment. The experimental results showed the formation of martensitic structure on the areas treated. Micro-hardness depth profiling results showed an average increase of 15–25% which was higher compared to the average hardness of the as-received. The results indicated that the roughness measurements lowered when both the residence time and irradiance increase. Laser surface re-melting treatment showed an improvement of the microstructural modifications and hardness properties therefore, the process can be used to modify the component’s surface for reliable and best surface finish.
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研究了激光表面重熔对选择性激光熔制Ti-6Al-4V试样表面粗糙度和显微硬度的影响
Ti-6Al-4V因其优良的性能而受到青睐,例如,低模量,重量轻,优异的强度和耐腐蚀性。尽管钛材料具有优异的性能,但在采用选择性激光熔化(SLM)增材制造(AM)过程中,由于粉末分布不均匀导致最终表面质量差,因此钛部件的制造工艺具有挑战性。与散装材料相比,SLM工艺生产的零件密度更大,机械性能更好,尽管表面质量较差。本工作旨在研究激光表面重熔(LSM)对Ti-6Al-4V合金硬度和表面性能的影响。用3kw IPG光纤激光器对制备的Ti-6Al-4V薄片进行再熔化。利用光学显微镜对Ti-6Al-4V片材的显微组织进行了表征。显微硬度和表面粗糙度测量分别采用HV维氏硬度计和MarSurf PS1粗糙度测试机在300g载荷和10s载荷下进行。研究了LSM处理前后的显微组织演变和硬度性能。实验结果表明,处理部位形成了马氏体组织。显微硬度深度分析结果显示,与接收的平均硬度相比,显微硬度平均提高了15-25%。结果表明,随着停留时间和辐照度的增加,粗糙度测量值降低。激光表面重熔处理改善了零件的显微组织和硬度,因此,该工艺可用于零件表面的改性,以获得可靠和最佳的表面光洁度。
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