Study on Hardness and Microstructural Properties of Ti-6Al-4V Alloy using Overlapped Multipass Laser Transformation Hardening under Optimized Test Conditions

Q4 Materials Science
Dr. Duradundi Sawant Badkar
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Abstract

In this research paper, overlapped multipass Laser Transformation Hardening (LTH) of Ti-6Al-4V titanium alloy sheet of 2 mm thickness was analyzed experimentally for uniformly intense, CW spherical beam moving with constant speed using 2 kW Nd: YAG laser. Experiments were conducted for optimized two sets of laser process parameters: 1. High Laser Process Parameter (HLPP), Lp = 800 Watts, Ss = 3000 mm/min, Fp = -10 mm, with heat input 180 J/cm and 2. Low Laser Process Parameter (LLPP), Lp = 600 Watts, Ss = 2000 mm/min, Fp = -10 mm, with heat input 160 J/cm respectively having same Fp = -10 mm. The maximum, minimum and average hardened depths of 0.27, 0.19 and 0.23 mm respectively, achieved for HLPP were found to be minimum, as compared to the maximum, minimum and average hardened depths of 0.38, 0.29 and 0.33 mm, respectively, for LLPP. Measurements of Vickers micro-hardness survey of the hardened zone of the laser processed Ti-6Al-4V alloy are presented. Vickers micro-hardness of an as-received two-phase (α+β) Ti-6Al-4V titanium alloy is 328 HV. The results showed that Vickers micro-hardness on top of the surface (TS), in hardened or fusion zone (Fz), at the interface of Fz -Haz, in the heat affected zone (Haz) is higher than the bulk material. The high hardness values of 450 HV and 445 HV were investigated on the top surface for high and low laser process parameters respectively. This can be the quality characteristics of the dissolution of small amounts of oxygen, nitrogen, and carbon with hard martensite α' (transformed β) formation, thereby ensuring an increase in wear resistance of laser treated hardened surface of Ti-6Al-4V considerably in relation to the untreated or base alloy.
优化试验条件下Ti-6Al-4V合金多道激光相变硬化硬度及显微组织性能研究
本文采用2kw Nd: YAG激光对2 mm厚Ti-6Al-4V钛合金板材进行了均匀强连续波等速运动的多道激光相变硬化(LTH)实验研究。通过实验对两组激光工艺参数进行了优化:高激光工艺参数(HLPP), Lp = 800瓦,Ss = 3000 mm/min, Fp = -10 mm,热输入180 J/cm, 2。低激光工艺参数(LLPP), Lp = 600 Watts, Ss = 2000 mm/min, Fp = -10 mm,热输入分别为160 J/cm, Fp = -10 mm。HLPP的最大、最小和平均硬化深度分别为0.27、0.19和0.23 mm,而LLPP的最大、最小和平均硬化深度分别为0.38、0.29和0.33 mm。介绍了激光加工Ti-6Al-4V合金硬化区的维氏显微硬度测量方法。收到的两相(α+β)Ti-6Al-4V钛合金的维氏显微硬度为328 HV。结果表明:表面顶部(TS)、硬化区或熔合区(Fz)、Fz -Haz界面、热影响区(Haz)的维氏显微硬度均高于体材;在高、低激光工艺参数下,分别对顶表面进行了450 HV和445 HV的高硬度研究。这可以是少量氧、氮和碳与硬马氏体α'(转化β)形成的溶解的质量特征,从而确保激光处理的Ti-6Al-4V硬化表面的耐磨性大大增加,相对于未处理或基合金。
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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期刊介绍: The Indian Society for Surface Science and Technology is an organization for the cultivation, interaction and dissemination of knowledge in the field of surface science and technology. It also strives to promote Industry-Academia interaction
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