Rajan Sidharth, Wanjara Priti, Gholipour Javad, Kabir Abu Syed
National Research Council Canada (NRC), Montréal, QC H3T 1J4, Canada.
Mechanical and Aerospace Department, Carleton University, Ottawa, ON K1S 5B6, Canada.
Materials (Basel). 2020 Dec 23;14(1):30. doi: 10.3390/ma14010030.
This paper presents the microstructural characteristics and mechanical properties of linear friction-welded (LFWed) Ti-6Al-2Sn-4Zr-2Mo-0.1Si (Ti-6242) in as-welded (AWed) and stress relief-annealed (SRAed) conditions. The weld center (WC) of the AWed Ti-6242 consisted of recrystallized prior-β grains with α' martensite that were tempered during SRA at 800 °C for 2 h and transformed into an acicular α + β microstructure. The peak hardness values, obtained in the AWed joints at the WC, sharply decreased through the thermomechanically affected zones (TMAZs) to the heat-affected zone (HAZ) of the Ti-6242 parent metal (PM). The SRA lowered the peak hardness values at the WC slightly and fully recovered the observed softening in the HAZ. The tensile mechanical properties of the welds in the AWed and SRAed conditions surpassed the minimum requirements in the AMS specifications for the Ti-6242 alloy. Fatigue tests, performed on the SRAed welds, indicated a fatigue limit of 468 MPa at 10 cycles, just slightly higher than that of the Ti-6242 PM (434 MPa). During tensile and fatigue testing, the welds failed in the PM region, which confirms the high mechanical integrity of the joints. Both the tensile and fatigue fracture surfaces exhibited characteristic features of ductile Ti-6242 PM.
本文介绍了线性摩擦焊接(LFWed)Ti-6Al-2Sn-4Zr-2Mo-0.1Si(Ti-6242)在焊态(AWed)和消除应力退火(SRAed)条件下的微观结构特征和力学性能。焊态Ti-6242的焊缝中心(WC)由再结晶的原始β晶粒和α'马氏体组成,在800℃下进行2小时的消除应力退火(SRA)时,α'马氏体发生回火,转变为针状α + β微观结构。在焊态接头的焊缝中心(WC)获得的峰值硬度值,通过热机械影响区(TMAZs)急剧下降至Ti-6242母材(PM)的热影响区(HAZ)。消除应力退火(SRA)略微降低了焊缝中心(WC)的峰值硬度值,并完全恢复了热影响区(HAZ)中观察到的软化现象。焊态和消除应力退火(SRAed)条件下焊缝的拉伸力学性能超过了AMS规范中Ti-6242合金的最低要求。对消除应力退火(SRAed)焊缝进行的疲劳试验表明,在10次循环时的疲劳极限为468MPa,略高于Ti-6242母材(434MPa)。在拉伸和疲劳试验过程中,焊缝在母材区域失效,这证实了接头具有较高的机械完整性。拉伸和疲劳断口表面均呈现出韧性Ti-6242母材的特征。